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Catalogue > Working at Heights and Confined Spaces

B-Safe Elasticised Twin Access Lanyards

Image of B-Safe Elasticised Twin Access Lanyards.

Twin access elasticised lanyard with shock absorber, double locking snap hook at S/A and two double locking scaffold hooks at free ends.

The twin lanyard permits the user to move around to a different anchor point whilst having one hook attached at all times. All the rules regarding the use of an energy absorbing lanyard must be maintained.



Purpose:

Energy absorbing lanyards are designed to reduce the fall arrest forces on the body.



Correct Use of a Twin Lanyard:

- The personal energy absorbing end of the lanyard MUST be attached to the fall arrest attachment point on the harness at all times.

- DO NOT attach the lanyard tails to any part of the harness at any time. This is known as 'short-circuiting' and could cause the lanyard to fail in the event of a fall.

- It is best to use both lanyard tails at all times.

- Either or both of the lanyard tails MUST be attached to an anchorage at all times.

- DO NOT attach the unused leg of the lanyard to anything other than the designated attachment / stowage point as advised by the manufacturer.



B-Safe energy absorbing lanyards are tested by dropping a 100kg mass a distance of 3.8 metres, generating a force of up to 20kN (2040kg). The lanyard must be capable of reducing this force to below 6kN (612kg). This is achieved by increasing the deceleration distance with the use of controlled tear webbing which pulls apart at a pre-determined load. The end result is a much softer impact on both the worker and the structure to which they are attached. All B-Safe lanyards are 100% individually proof loaded prior to final assembly and feature construction techniques designed to make visual inspection easier, both during manufacture and in the field.



44mm polyester tear webbing with back up loop. Individually proof loaded to 7.5kN.

Hardware: Zinc coated alloy steel doubled locking snap hooks MBS 22kN.

Specifications: Certified to AS 1891.1 

Code: ipsBL071221_5
$239.50  

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