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Shop Allen 20mm Extreme High Load Single Block
A2020XHL-BLACK[1].jpeg Image 1 of
A2020XHL-BLACK[1].jpeg
A2020XHL-BLACK[1].jpeg

Allen 20mm Extreme High Load Single Block

£128.23

XHL blocks have been designed to deal with extremely high static loads without compromising on low-load dynamic performance. 

Ideal for use in vang cascades or halyard turning points where static loads can be extremely high but low load fast rolling speeds are required.

  • XHL Bearings – Twin rows of stainless-steel ball bearings running on a stainless-steel axle with the addition of a protective plain bearing washer.

  • Body – The aluminium body features “ears” at the top of the block. These are to be used when attaching the block and stop the block from capsizing when under load.

  • Sheave – The stainless-steel sheave allows the block to be paired with both rope and wire.

A key feature within the XHL bearing system is the precision plain bearing washer. When the XHL is exposed to extreme static loads (which would normally cause damage to the internal bearing system) it changes to a plain bearing block. This stops the ball bearings from getting damaged and thus no longer performing as designed. As soon as the static load is reduced the XHL returns to a high-performing dynamic block.

We recommend using 1.5mm kiteline dyneema or 2mm dyneema to attach the A2020XHL.

Maximum Working Load = 400kg. If exceeded the block may not perform as designed. 
Breaking Load = 900kg. The load at which a major block failure is likely to occur. 

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XHL blocks have been designed to deal with extremely high static loads without compromising on low-load dynamic performance. 

Ideal for use in vang cascades or halyard turning points where static loads can be extremely high but low load fast rolling speeds are required.

  • XHL Bearings – Twin rows of stainless-steel ball bearings running on a stainless-steel axle with the addition of a protective plain bearing washer.

  • Body – The aluminium body features “ears” at the top of the block. These are to be used when attaching the block and stop the block from capsizing when under load.

  • Sheave – The stainless-steel sheave allows the block to be paired with both rope and wire.

A key feature within the XHL bearing system is the precision plain bearing washer. When the XHL is exposed to extreme static loads (which would normally cause damage to the internal bearing system) it changes to a plain bearing block. This stops the ball bearings from getting damaged and thus no longer performing as designed. As soon as the static load is reduced the XHL returns to a high-performing dynamic block.

We recommend using 1.5mm kiteline dyneema or 2mm dyneema to attach the A2020XHL.

Maximum Working Load = 400kg. If exceeded the block may not perform as designed. 
Breaking Load = 900kg. The load at which a major block failure is likely to occur. 

XHL blocks have been designed to deal with extremely high static loads without compromising on low-load dynamic performance. 

Ideal for use in vang cascades or halyard turning points where static loads can be extremely high but low load fast rolling speeds are required.

  • XHL Bearings – Twin rows of stainless-steel ball bearings running on a stainless-steel axle with the addition of a protective plain bearing washer.

  • Body – The aluminium body features “ears” at the top of the block. These are to be used when attaching the block and stop the block from capsizing when under load.

  • Sheave – The stainless-steel sheave allows the block to be paired with both rope and wire.

A key feature within the XHL bearing system is the precision plain bearing washer. When the XHL is exposed to extreme static loads (which would normally cause damage to the internal bearing system) it changes to a plain bearing block. This stops the ball bearings from getting damaged and thus no longer performing as designed. As soon as the static load is reduced the XHL returns to a high-performing dynamic block.

We recommend using 1.5mm kiteline dyneema or 2mm dyneema to attach the A2020XHL.

Maximum Working Load = 400kg. If exceeded the block may not perform as designed. 
Breaking Load = 900kg. The load at which a major block failure is likely to occur. 

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