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TECHNICAL MANUALS

Please login to download the Technical Manuals

  • MASONRY HANDBOOK
  • WALLING
  • RETAINING STRUCTURES
  • PAVING
  • DETAIL DRAWINGS
  • TOLERANCES
  • Health and Safety
  • Case Studies

The Concrete Masonry Handbook serves as a comprehensive resource for architects, engineers, builders, and designers engaged in concrete masonry construction. To enhance accessibility, the content has been divided into distinct sections, each addressing critical aspects of concrete masonry design and construction.

MA55 – The Concrete Masonry Handbook (2024)
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Chapter 01 – Application of Concrete Masonry
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Chapter 02 – Manufacturing
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Chapter 03 – Common Masonry Units
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Chapter 04 – Applied Finishes
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Chapter 05 – Properties
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Chapter 06 – Design Requirements
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Chapter 07 – Acoustics
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Chapter 08 – Robustness
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Chapter 09 – Fire
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Chapter 10 – Vertical Loads
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Chapter 11 – Horizontal Loads
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Chapter 12 – Movement
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Chapter 13 – Durability
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Chapter 14 – Thermal Performance
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Chapter 15 – Footings
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Chapter 16 – Construction
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Chapter 17 – Detailing
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Chapter 18 – Estimating
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Chapter 19 – Cleaning & Maintenance
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CMAA’s Manuals and documents in this section relate to concrete blocks and concrete masonry walling. Manual 55 Design and Construction of Concrete Masonry Buildings is a comprehensive guide aimed at assisting engineers, architects and builders with the design and construction of concrete masonry walls in accordance with relevant Australian Standards.

Check out our concrete masonry walling FAQs for more information.

  • SHOW ALL
  • MANUALS
  • DATA SHEETS
  • FACT SHEETS
Concrete Masonry Sustainability Strategy and Roadmap
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Industry Sustainability Snapshot 2024
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MA55 – The Concrete Masonry Handbook (2024)
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CM01 – Concrete Masonry Construction Guide
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CM02 – Single-Leaf Concrete Masonry Design Manual
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CM03 – Concrete Masonry Cleaning Manual
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CM04 – Concrete Masonry Manufacturing Manual
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CM05 – Breeze Block Manual
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CM06 – Unreinforced Concrete Masonry in Residential Construction
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MA 55 – Edition 7 (2016) [SUPERSEDED]
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Fact Sheet - FRL Design
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Fact Sheet - Single Skin Masonry
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Fact Sheet - NCC 2022 Compliance
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Fact Sheet - Stackbonding
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Fact Sheet - Hit & Miss Walls
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Fact Sheet - Efflorescence
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Fact Sheet - Curved Masonry Walls
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Fact Sheet - Reinforced Masonry FRLs
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Fact Sheet - Energy Efficiency
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DS 1 – National Metric Coding System
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DS 4 – Compressive Load Capacity of Concrete Masonry
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DS 5 – Concrete Masonry Fences
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DS 3 – Concrete Masonry Lintels
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DS 5Bx – Concrete Masonry Fences built on Strip Footings
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Fact Sheet - Non-Combustibility of Concrete Masonry
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AS 3700 (2018) flyer for engineers
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AS 3700 (2018) flyer for builders
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NCC 2019 Key changes – what you need to know about blocks
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Product Technical Statement for Blocks
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Fact Sheet - Fire Resistance of Concrete Masonry Walls
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Pathway to NCC 2019
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Masonry Wall Safety during Construction Work
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Concrete Masonry Sustainability Strategy and Roadmap
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Industry Sustainability Snapshot 2024
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MA55 – The Concrete Masonry Handbook (2024)
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CM01 – Concrete Masonry Construction Guide
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CM02 – Single-Leaf Concrete Masonry Design Manual
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CM03 – Concrete Masonry Cleaning Manual
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CM04 – Concrete Masonry Manufacturing Manual
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CM05 – Breeze Block Manual
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CM06 – Unreinforced Concrete Masonry in Residential Construction
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MA 55 – Edition 7 (2016) [SUPERSEDED]
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Masonry Wall Safety during Construction Work
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DS 1 – National Metric Coding System
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DS 4 – Compressive Load Capacity of Concrete Masonry
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DS 5 – Concrete Masonry Fences
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DS 3 – Concrete Masonry Lintels
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DS 5Bx – Concrete Masonry Fences built on Strip Footings
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NCC 2019 Key changes – what you need to know about blocks
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Product Technical Statement for Blocks
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Pathway to NCC 2019
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Fact Sheet - FRL Design
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Fact Sheet - Single Skin Masonry
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Fact Sheet - NCC 2022 Compliance
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Fact Sheet - Stackbonding
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Fact Sheet - Hit & Miss Walls
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Fact Sheet - Efflorescence
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Fact Sheet - Curved Masonry Walls
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Fact Sheet - Reinforced Masonry FRLs
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Fact Sheet - Energy Efficiency
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Fact Sheet - Non-Combustibility of Concrete Masonry
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AS 3700 (2018) flyer for engineers
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AS 3700 (2018) flyer for builders
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Fact Sheet - Fire Resistance of Concrete Masonry Walls
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The publications below relate to different types of segmental concrete retaining walls - including soil retaining walls, cantilever retaining walls and gravity retaining walls. The manuals are aimed at assisting architects, engineers and builders in the design and construction of concrete block retaining walls.

  • SHOW ALL
  • MANUALS
  • RESEARCH PAPERS
RW01 – Reinforced Cantilever Retaining Walls
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RW02 – Reinforced Soil Retaining Walls
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RW03 – Gravity Retaining Walls
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TP14 – Structural Reliability of Retaining Walls (AS 4678)
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RW01 – Reinforced Cantilever Retaining Walls
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RW02 – Reinforced Soil Retaining Walls
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RW03 – Gravity Retaining Walls
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TP14 – Structural Reliability of Retaining Walls (AS 4678)
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)

Information and guides on concrete segmental paving, permeable paving, concrete flag paving and heavy-duty pavements using concrete segmental pavers.

  • SHOW ALL
  • MANUALS PAVING
  • FACT SHEETS
  • RESEARCH PAPERS
PA01 – Concrete Segmental Pavements Detailing Guide
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PA02 – Concrete Segmental Pavements Design Guide for Residential Accessways, Roads and Commercial Spaces
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PA03 – Concrete Segmental Pavements Specifying Guide
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PA04 – Concrete Segmental Pavements Maintenance Guide
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PA05 – Concrete Flag Pavements Design and Construction Guide
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PA06 – Industrial Concrete Segmental Pavements
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PE01 – Permeable Interlocking Concrete Pavements Manual
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Surface Requirements for Pavers and TGSIs Factsheet
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Permeable Paving Around Trees Factsheet
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Permeable Paving Driveway Factsheet
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Paving a Residential Driveway Factsheet
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Product Technical Statement for Pavers
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Concrete Segmental Pavement Interlocking Factsheet
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Datasheet - Concrete Flag Pavement Material Specification
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British Ports Association Port and Heavy Duty Pavement Design Manual
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Improvement of Water Quality by Coarse Graded Aggregates in Permeable Pavements
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Back to Basics – Measuring the Progress of Understanding of over 35 years of the use of Concrete Block Paving in the UK
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Development of North American Certificate program for installers of permeable interlocking concrete pavement
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Assessment of Embodied Carbon in Conventional and Permeable Pavements surfaced with Pavers
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Development of the Permeable Design Pro Permeable Interlocking Concrete Pavement Design System
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Revised Manual for Interlocking Block Pavement Design and Construction
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Combining Permeable Paving with Renewable Energy Devices – Installation, Performance and Future Proposals
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Development of Design Software for Permeable Interlocking Concrete Pavements
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Study on Heat Island Mitigation on Interlocking Block Pavement
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Swedish Education and Training on Concrete Block Pavements
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Construction and Rehabilitation of Aircraft Pavements using Concrete Blocks having Mechanical Interlock
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Experience in the Application of Permeable Interlocking Concrete Paving in Australia
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Study on Evaluation of Pavement Smoothness on Sidewalk for Pedestrians
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Water Permeable Pavements in Belgium from Research Project to Real Application
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Flexible-Bounded Bedding Layer as an Improvement for Concrete Block Pavement
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Hydrologic and Water Quality Evaluation of Four Permeable Pavements in North Carolina, USA
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Stormwater Management for Urban Environments
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The Storage and Protection of Rainfall Resources Stored in Permeable Paving
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A Pilot Study of Cement-Treated Basecourses for use in Permeable Interlocking Concrete Pavements
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Working with Regulators to change Permeable Paving Acceptance
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The City of Eilat is going for Concrete Block Paving
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Water Stored within permeable Paving and the Effect on Ground Source Heat Pump Applications on Water
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Permeable Pavements for Heavily Trafficked Roads – A Full Scale Trial
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Optimized Numerical Tool for the Analysis of Segmented Concrete Block Pavements
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The Powerful Possibilities of Small Element Pavement for Designers of Public Space
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TP1 – Permeable Concrete Eco-Paving as best management practice in Australian urban road engineering
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TP2 – Accelerated trafficking tests of Concrete Flag Paving
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TP3 – Concrete flag paving in municipal engineering
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TP4 – A Survey of Australian container port pavements surfaced with concrete segmental paving
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TP5 – The challenges of concrete block paving as a mature technology
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TP6 – Using permeable eco-paving to achieve improved water quality for urban pavements
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TP7 – Mechanisms of Paver Interlock
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TP8 – King William Rd, Adelaide – Revisited, Australia’s Longest Streetscape Incorporating Concrete Segmental Paving
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TP9 – Technologies and opportunities for permeable segmental paving in Australia
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TP10 – Design of Permeable pavements for Australian conditions
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TP12 – Experience in Applying Permeable Interlocking Concrete Paving in Australia
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TP13 – The Design, construction and evaluation of permeable pavements in Australia
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PA01 – Concrete Segmental Pavements Detailing Guide
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PA02 – Concrete Segmental Pavements Design Guide for Residential Accessways, Roads and Commercial Spaces
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PA03 – Concrete Segmental Pavements Specifying Guide
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PA04 – Concrete Segmental Pavements Maintenance Guide
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PA05 – Concrete Flag Pavements Design and Construction Guide
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PA06 – Industrial Concrete Segmental Pavements
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PE01 – Permeable Interlocking Concrete Pavements Manual
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Surface Requirements for Pavers and TGSIs Factsheet
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Permeable Paving Around Trees Factsheet
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Permeable Paving Driveway Factsheet
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Paving a Residential Driveway Factsheet
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Product Technical Statement for Pavers
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Concrete Segmental Pavement Interlocking Factsheet
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Datasheet - Concrete Flag Pavement Material Specification
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British Ports Association Port and Heavy Duty Pavement Design Manual
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Improvement of Water Quality by Coarse Graded Aggregates in Permeable Pavements
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Back to Basics – Measuring the Progress of Understanding of over 35 years of the use of Concrete Block Paving in the UK
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Development of North American Certificate program for installers of permeable interlocking concrete pavement
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Assessment of Embodied Carbon in Conventional and Permeable Pavements surfaced with Pavers
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Development of the Permeable Design Pro Permeable Interlocking Concrete Pavement Design System
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Revised Manual for Interlocking Block Pavement Design and Construction
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Combining Permeable Paving with Renewable Energy Devices – Installation, Performance and Future Proposals
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Development of Design Software for Permeable Interlocking Concrete Pavements
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Study on Heat Island Mitigation on Interlocking Block Pavement
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Swedish Education and Training on Concrete Block Pavements
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Construction and Rehabilitation of Aircraft Pavements using Concrete Blocks having Mechanical Interlock
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Experience in the Application of Permeable Interlocking Concrete Paving in Australia
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Study on Evaluation of Pavement Smoothness on Sidewalk for Pedestrians
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Water Permeable Pavements in Belgium from Research Project to Real Application
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Flexible-Bounded Bedding Layer as an Improvement for Concrete Block Pavement
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Hydrologic and Water Quality Evaluation of Four Permeable Pavements in North Carolina, USA
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Stormwater Management for Urban Environments
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The Storage and Protection of Rainfall Resources Stored in Permeable Paving
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A Pilot Study of Cement-Treated Basecourses for use in Permeable Interlocking Concrete Pavements
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Working with Regulators to change Permeable Paving Acceptance
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The City of Eilat is going for Concrete Block Paving
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Water Stored within permeable Paving and the Effect on Ground Source Heat Pump Applications on Water
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Permeable Pavements for Heavily Trafficked Roads – A Full Scale Trial
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Optimized Numerical Tool for the Analysis of Segmented Concrete Block Pavements
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The Powerful Possibilities of Small Element Pavement for Designers of Public Space
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TP1 – Permeable Concrete Eco-Paving as best management practice in Australian urban road engineering
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TP2 – Accelerated trafficking tests of Concrete Flag Paving
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TP3 – Concrete flag paving in municipal engineering
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TP4 – A Survey of Australian container port pavements surfaced with concrete segmental paving
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TP5 – The challenges of concrete block paving as a mature technology
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TP6 – Using permeable eco-paving to achieve improved water quality for urban pavements
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TP7 – Mechanisms of Paver Interlock
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TP8 – King William Rd, Adelaide – Revisited, Australia’s Longest Streetscape Incorporating Concrete Segmental Paving
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TP9 – Technologies and opportunities for permeable segmental paving in Australia
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TP10 – Design of Permeable pavements for Australian conditions
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TP12 – Experience in Applying Permeable Interlocking Concrete Paving in Australia
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TP13 – The Design, construction and evaluation of permeable pavements in Australia
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See our range of generic detail drawings that can be used for reference to standard details. These are also included in our MA55 – Concrete Masonry Handbook. For more project-specific details, refer to an engineer.

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  • Lintels
  • VERTICAL REINFORCEMENT & MULLIONS
  • BOND BEAMS
  • SHEAR WALLS & CONNECTIONS
  • CONTROL JOINTS
  • ANCILLARY DETAILS
MA55 Details – Full Set
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Paving Details – Full Set
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DW01 – Reinforced Concrete Masonry Lintel (190 mm)
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DW02 – Reinforced Concrete Masonry Lintel (140 mm)
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DW03 – Single Reinforced Double Height Lintel
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DW04 – Double Reinforced Double Height Lintel
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DW05 – Single Reinforced Single Height Lintel
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DW06 – Double Reinforced Single Height Lintel
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DW07 – Steel Positioning Detail
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DW08 – Single Galvanised Wire Hanger
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DW09 – Double Galvanised Wire Hangers
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DW10 – 75 mm x 8 mm Flat Lintel
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DW11 – 75 mm x 10 mm Flat Lintel
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DW12 – 90 mm x 90 mm x 6 mm Equal Angle Lintel
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DW13 – 90 mm x 90 mm x 8 mm Equal Angle Lintel
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DW14 – 100 mm x 100 mm x 6 mm Equal Angle Lintel
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DW15 – 100 mm x 100 mm x 8 mm Equal Angle Lintel
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DW16 – 150 mm x 90 mm x 8 mm Unequal Angle Lintel
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DW17 – 150 mm x 100 mm x 10 mm Unequal Angle Lintel
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DW18 – Temporary Steel Spacer
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DW19 – Double Reinforced Masonry Wall (190 mm)
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DW20 – Single Reinforced Masonry Wall (190 mm)
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DW21 – Double Reinforced Masonry Wall End (190 mm)
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DW22 – Single Reinforced Masonry Wall End (190 mm)
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DW23 – Reinforced Masonry Wall (140 mm)
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DW24 – Reinforced Masonry Wall End (140 mm)
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DW25 – Single N16 Reinforced Masonry
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DW26 – Single N20 Reinforced Masonry
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DW27 – Double N20 Reinforced Masonry
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DW28 – SHS Reinforced Single-Leaf Masonry (190 mm)
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DW29 – SHS Reinforced Single-Leaf Masonry (140 mm)
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DW30 – RHS Reinforced Single-Leaf Masonry (190 mm)
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DW31 – RHS Reinforced Single-Leaf Masonry (140 mm)
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DW32 – RHS Reinforced Cavity Brick Masonry
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DW33 – RHS Reinforced Cavity Brick with Plasterboard
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DW34 – Composite Masonry Mullions
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DW35 – Single Reinforced Double Height Bond Beam (140 mm)
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DW36 – Single Reinforced Single Height Bond Beam (190 mm)
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DW37 – Single Reinforced Double Height Bond Beam (140 mm)
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DW38 – Double Reinforced Single Height Bond Beam (190 mm)
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DW39 – Single Reinforced Double Height Bond Beam (190 mm)
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DW40 – N20 Reinforced Bond Beam Supports
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DW41 – Double Reinforced Double Height Bond Beam (190 mm)
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DW42 – N16 Reinforced Bond Beam Supports
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DW43 – Diagonal Brace Detail
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DW44 – Bracket for Diagonal Brace Detail
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DW45 – 2N20 Reinforced Masonry Shear Wall (190 mm)
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DW46 – 1N16 Reinforced Masonry Shear Wall (140 mm)
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DW47 – 1N20 Reinforced Masonry Shear Wall (190 mm)
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DW48 – N12 Reinforced Masonry Top Starter Bars
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DW49 – N16 Reinforced Masonry Top Starter Bars
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DW50 – N20 Reinforced Masonry Top Starter Bars
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DW51 – Control Joint Above Opening
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DW52 – Control Joint Below Opening
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DW53 – Control Joint at Reinforced Lintel
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DW54 – Control Joint Terminating at Bond Beam
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DW55 – Control Joint Through Bond Beam
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DW56 – Single Skin Masonry Wall Control Joint
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DW57 – Control Joint Ties
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DW58 – Control Joint at Hidden Column
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DW59 – Control Joints at Exposed Columns
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DW60 – Staggered Control Joint
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DW61 – Aluminium Window in Single-Leaf Masonry
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DW62 – Single-Leaf Footing Detail
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DW63 – Slip Joint and DPC Detail
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DW64 – Timber Window in Brick Veneer
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DW65 – Timber Window in Cavity Brick
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DW66 – Aluminium Window in Brick Veneer
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DW67 – Aluminium Window in Cavity Brick
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DW68 – 90 mm to 90 mm Concrete Masonry Corners
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DW69 – 140 mm to 140 mm Concrete Masonry Corners
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DW70 – 90 mm to 140 mm Concrete Masonry Corners
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DW71 – 190 mm to 190 mm Concrete Masonry Corners
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DW72 – 290 mm to 290 mm Concrete Masonry Corners
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DW73 – 90 mm to 190 mm Concrete Masonry Corners
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DW74 – 90 mm to 290 mm Concrete Masonry Corners
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DW75 – 140 mm to 190 mm Concrete Masonry Corners
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DW76 – 140 mm to 290 mm Concrete Masonry Corners
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DW77 – 190 mm to 290 mm Concrete Masonry Corners
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DW78 – 290 mm to 290 mm Alternative Corner
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DW79 – 90 mm Brick Concrete Masonry Single-Leaf Corners
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DW80 – 90 mm to 90 mm Concrete Masonry Intersection
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DW81 – 90 mm to 140 mm Concrete Masonry Intersection
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DW82 – 90 mm to 190 mm Concrete Masonry Intersection
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DW83 – 90 mm to 290 mm Concrete Masonry Intersection
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DW84 – 140 mm to 140 mm Concrete Masonry Intersection
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DW85 – 140 mm to 190 mm Concrete Masonry Intersection
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DW86 – 140 mm to 290 mm Concrete Masonry Intersection
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DW87 – 190 mm to 190 mm Concrete Masonry Intersection
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DW88 – 190 mm to 290 mm Concrete Masonry Intersection
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DW89 – 290 mm to 290 mm Concrete Masonry Intersection
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DW90 – 390 mm x 190 mm Concrete Masonry Engaged Pier
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DW91 – 390 mm x 240 mm Concrete Masonry Engaged Pier
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DW92 – 390 mm x 340 mm Concrete Masonry Engaged Pier
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DW93 – 390 mm x 390 mm Concrete Masonry Engaged Pier
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DW94 – 390 mm x 290 mm Concrete Masonry Engaged Piers
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DW95 – Concrete Masonry Column Corner
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DW96 – Concrete Masonry End Column
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DW97 – Concrete Masonry Engaged Pier
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DW98 – Flexible Wall to Column Connections
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DP01 – Kerbed Paving for Street or Parking
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DP02 – Typical Concrete Paver Base Detail (60 mm)
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DP03 – Typical Concrete Paver Base Detail (80 mm)
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DP04 – Concrete Kerb and Gutter with Subsurface Drain
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DP05 – Concrete Kerb and Gutter on In-situ Concrete Footing
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DP06 – Manhole Detail with No Direct Bedding Course Drainage
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DP10 – Typical Detail for Pavers Over Reactive Soils
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DP11 – Patio Overlay on Concrete/Asphalt Base
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DP12 – Paver Overlay on Existing Base with Drainage
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DP13 – Steps Using Concrete Segmental Pavers
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DP14 – Permeable Pavers with Full Infiltration
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DP15 – Permeable Pavers with Partial Infiltration
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DP16 – Permeable Pavers with No Infiltration
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DP17 – Tree Pit with Permeable Pavers
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DP18 – Flag Pavers Joined to Existing Asphalt Surface
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DP19 – Flag Pavers Joined to Concrete Kerb and Gutter
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DP20 – Flag Pavers Joined to Drainage Pit / Manhole
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DP21 – Flag Pavers Joined to Existing Masonry Wall
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DP22 – Flag Pavers with Dished Concrete Channel
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DP23 – Flag Pavers with Grated Drainage Channel
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DP27 – Flag Pavers with Paved Edge Restraint
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DP28 – Flag Pavers with Metal Edge Restraint
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DP29 – Flag Pavers with Plastic Edge Restraint
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DP30 – Expansion Joint in Rigid Flag Pavement
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DP31 – Flag Pavers with Drainage Mat
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DP32 – Flag Pavers on Pedestals
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DP33 – Segmental Pavers at Existing Masonry Wall
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DP34 – Segmental Pavers with Dished Concrete Channel
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DP35 – Segmental Pavers with Grated Drainage Channel
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DP36 – Segmental Pavers with Paved Edge Restraint
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DP37 – Segmental Pavers with Metal Edge Restraint
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DP38 – Segmental Pavers with Plastic Edge Restraint
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DP39 – Expansion Joint in Rigid Segmental Pavement
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DP40 – Airfield or Industrial Paving Base Detail
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DP41 – Swimming Pool Coping Detail
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DP42 – Raised Paving on Retaining Wall
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DP43 – Paved Railway Crossing Detail
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DP44 – Permeable Pavers with Paved Edge Restraint
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DP45 – Permeable Pavers at Foundation Wall
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DP46 – Permeable Pavers at Alternative Surface Material
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DP47 – Sloped Permeable Pavers Detail
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DW01 – Reinforced Concrete Masonry Lintel (190 mm)
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DW02 – Reinforced Concrete Masonry Lintel (140 mm)
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DW03 – Single Reinforced Double Height Lintel
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DW04 – Double Reinforced Double Height Lintel
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DW05 – Single Reinforced Single Height Lintel
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DW06 – Double Reinforced Single Height Lintel
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DW07 – Steel Positioning Detail
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DW08 – Single Galvanised Wire Hanger
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DW09 – Double Galvanised Wire Hangers
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DW10 – 75 mm x 8 mm Flat Lintel
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DW11 – 75 mm x 10 mm Flat Lintel
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DW12 – 90 mm x 90 mm x 6 mm Equal Angle Lintel
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DW13 – 90 mm x 90 mm x 8 mm Equal Angle Lintel
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DW14 – 100 mm x 100 mm x 6 mm Equal Angle Lintel
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DW15 – 100 mm x 100 mm x 8 mm Equal Angle Lintel
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DW16 – 150 mm x 90 mm x 8 mm Unequal Angle Lintel
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DW17 – 150 mm x 100 mm x 10 mm Unequal Angle Lintel
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DW18 – Temporary Steel Spacer
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DW19 – Double Reinforced Masonry Wall (190 mm)
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DW20 – Single Reinforced Masonry Wall (190 mm)
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DW21 – Double Reinforced Masonry Wall End (190 mm)
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DW22 – Single Reinforced Masonry Wall End (190 mm)
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DW23 – Reinforced Masonry Wall (140 mm)
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DW24 – Reinforced Masonry Wall End (140 mm)
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DW25 – Single N16 Reinforced Masonry
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DW26 – Single N20 Reinforced Masonry
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DW27 – Double N20 Reinforced Masonry
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DW28 – SHS Reinforced Single-Leaf Masonry (190 mm)
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DW29 – SHS Reinforced Single-Leaf Masonry (140 mm)
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DW30 – RHS Reinforced Single-Leaf Masonry (190 mm)
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DW31 – RHS Reinforced Single-Leaf Masonry (140 mm)
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DW32 – RHS Reinforced Cavity Brick Masonry
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DW33 – RHS Reinforced Cavity Brick with Plasterboard
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DW34 – Composite Masonry Mullions
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DW35 – Single Reinforced Double Height Bond Beam (140 mm)
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DW36 – Single Reinforced Single Height Bond Beam (190 mm)
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DW37 – Single Reinforced Double Height Bond Beam (140 mm)
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DW38 – Double Reinforced Single Height Bond Beam (190 mm)
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DW39 – Single Reinforced Double Height Bond Beam (190 mm)
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DW40 – N20 Reinforced Bond Beam Supports
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DW41 – Double Reinforced Double Height Bond Beam (190 mm)
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DW42 – N16 Reinforced Bond Beam Supports
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DW43 – Diagonal Brace Detail
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DW44 – Bracket for Diagonal Brace Detail
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DW45 – 2N20 Reinforced Masonry Shear Wall (190 mm)
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DW46 – 1N16 Reinforced Masonry Shear Wall (140 mm)
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DW47 – 1N20 Reinforced Masonry Shear Wall (190 mm)
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DW48 – N12 Reinforced Masonry Top Starter Bars
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DW49 – N16 Reinforced Masonry Top Starter Bars
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DW50 – N20 Reinforced Masonry Top Starter Bars
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DW51 – Control Joint Above Opening
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DW52 – Control Joint Below Opening
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DW53 – Control Joint at Reinforced Lintel
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DW54 – Control Joint Terminating at Bond Beam
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DW55 – Control Joint Through Bond Beam
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DW56 – Single Skin Masonry Wall Control Joint
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DW57 – Control Joint Ties
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DW58 – Control Joint at Hidden Column
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DW59 – Control Joints at Exposed Columns
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DW60 – Staggered Control Joint
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DW61 – Aluminium Window in Single-Leaf Masonry
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DW62 – Single-Leaf Footing Detail
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DW63 – Slip Joint and DPC Detail
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DW64 – Timber Window in Brick Veneer
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DW65 – Timber Window in Cavity Brick
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DW66 – Aluminium Window in Brick Veneer
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DW67 – Aluminium Window in Cavity Brick
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DW68 – 90 mm to 90 mm Concrete Masonry Corners
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DW69 – 140 mm to 140 mm Concrete Masonry Corners
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DW70 – 90 mm to 140 mm Concrete Masonry Corners
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DW71 – 190 mm to 190 mm Concrete Masonry Corners
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DW72 – 290 mm to 290 mm Concrete Masonry Corners
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DW73 – 90 mm to 190 mm Concrete Masonry Corners
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DW74 – 90 mm to 290 mm Concrete Masonry Corners
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DW75 – 140 mm to 190 mm Concrete Masonry Corners
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DW76 – 140 mm to 290 mm Concrete Masonry Corners
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DW77 – 190 mm to 290 mm Concrete Masonry Corners
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DW78 – 290 mm to 290 mm Alternative Corner
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DW79 – 90 mm Brick Concrete Masonry Single-Leaf Corners
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DW80 – 90 mm to 90 mm Concrete Masonry Intersection
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DW81 – 90 mm to 140 mm Concrete Masonry Intersection
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DW82 – 90 mm to 190 mm Concrete Masonry Intersection
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DW83 – 90 mm to 290 mm Concrete Masonry Intersection
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DW84 – 140 mm to 140 mm Concrete Masonry Intersection
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DW85 – 140 mm to 190 mm Concrete Masonry Intersection
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DW86 – 140 mm to 290 mm Concrete Masonry Intersection
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DW87 – 190 mm to 190 mm Concrete Masonry Intersection
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DW88 – 190 mm to 290 mm Concrete Masonry Intersection
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DW89 – 290 mm to 290 mm Concrete Masonry Intersection
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DW90 – 390 mm x 190 mm Concrete Masonry Engaged Pier
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DW91 – 390 mm x 240 mm Concrete Masonry Engaged Pier
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DW92 – 390 mm x 340 mm Concrete Masonry Engaged Pier
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DW93 – 390 mm x 390 mm Concrete Masonry Engaged Pier
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DW94 – 390 mm x 290 mm Concrete Masonry Engaged Piers
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DW95 – Concrete Masonry Column Corner
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DW96 – Concrete Masonry End Column
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DW97 – Concrete Masonry Engaged Pier
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DW98 – Flexible Wall to Column Connections
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CMAA’s Guide to Standards and Tolerances is intended to be used by builders and building owners as a convenient reference to the minimum quality of building work expected as prescribed by various Australian Standards

Guide to Standards and Tolerances 2015 (Victorian Building Authority)
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Guide to Standards and Tolerances 2017 (NSW)
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Standards and Tolerances Guide 2023 (QBCC)
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Guide to Standards and Tolerances 2019 (WA)
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Guide to Standards and Tolerances 2017 (CBOS Tasmania)
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Load Restraint Guide 2018
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CMAA represents Australia’s concrete masonry and segmental paving manufacturers. Safety is a major issue and concern for our members from manufacturing concrete masonry units and pavers to delivering them. CMAA takes safety issues very seriously and wants to ensure the safety of everyone working with concrete masonry units and pavers. CMAA encourages you to check out our resources that provide general guidance on work health and safety practices when working with concrete masonry units and pavers.

Factsheet - Silica Dust - What You Need To Know
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Fact Sheet - Working near power lines
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Fact Sheet - Transport Safety
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Fact Sheet - Delivery onto Slabs
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Fact Sheet - Silica Safety
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CMAA's range of case studies include projects conducted in several areas across Australia

Leppington Bus Depot Case Study
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King William Road Case Study
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Gunnerson Allen Metals Carpark Case Study
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House at Otago Bay Case Study
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Townsville Port Case Study
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Email Manual

Concrete Masonry Association of Australia: Suite 7.01, Level 7, 154 Pacific Highway, St Leonards NSW 2065. info@cmaa.com.au| Privacy | Personal