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Work Method Statements

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Safety Culture >> Work Method Statements >> Roof Edge Protection
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Roof Edge Protection Work Method Statement

The Roof Edge Protection includes:

  • PPE
  • Safety Notes
  • Planning
  • Preparation
  • Pre-operational Inspection
  • Operation
  • Maintenance
  • Emergency Procedures
  • References

Example SWMS
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Product Details:

  • 13 Page procedure
  • Written by ex WHS inspectors
  • Referenced
  • Risk ratings before and after control measures
  • MS Word format NOT PDF
  • Task specific and site specific details easy to add
  • Includes easy to complete boxes for Company details and project details
  • Employee sign off section
  • Instant download delivery

Related Products:

Roof Edge Protection Information:

The Roof Edge Protection Safe Work Method Statement (SWMS) is a comprehensive 13 page procedure. This SWMS covers general aspects associated with installation, use and subsequent dismantling of roof edge protection systems.

It does not include scaffolds used for perimeter protection. A site-specific SWMS must be developed for installation and dismantling of the system, and for use of specific height access equipment (such as particular Elevated Work Platform - EWP, or fall arrest systems).

The Roof Edge Protection Work Method Statement (WMS) is ready to use and is not a blank template. Simply add your company details, ABN, and include any site specific details or risks and make it specific to the task at hand. It is then ready for printing and to be incorporated as part of your overall OHS System.

The Roof Edge Protection Work Method Statement can be used as part of your OHS inductions, for Tool box talks or tender applications.

Planning:

Develop site specific SWMS for installation and dismantling activities. Include safe use of relevant height access equipment.

Ensure correct edge protection system installed. Consider:

  • Access points
  • Height and pitch of roof
  • Cladding materials, condition and method of fixing
  • Obstructions under roof area
  • Rafter truss length
  • Whether system can be fixed to structural members
  • Building materials and condition
  • Structural strength to support required load
  • Width and type of eaves
  • Batten type
  • Gutter and fascia types
  • Proximity to utilities and power lines
  • Presence of hazardous materials/conditions. Example:
    • Asbestos
    • Lead
    • Skylights, etc

Consult roof design engineer for advice on correct system.

Ensure all components of system meet relevant Australian Standards (AS 4994.1)

Ensure system can support expected loads and able to withstand likely impact from person falling onto system. Examples:

  • Not less than 600N static load in any direction
  • Dynamic loads from impact of person falling. Take into account:
    • Pitch
    • Sliding distance
    • Wind and environmental loads


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