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CABLE SUPPORT GRIPS FOR WIND TURBINE | ||||||
Part No | Cable Diameter in mm | Material | Weave | Working Load Limit in Kg | Grip Length in mm | Total Length in mm |
AEP12/SUP | 09 12 | Stainless Steel | Single | 125 | 200 | 400 |
AEP15/SUP | 12 15 | Stainless Steel | Single | 200 | 250 | 450 |
AEP19/SUP | 15 19 | Stainless Steel | Single | 250 | 300 | 500 |
AEP25/SUP | 19 25 | Stainless Steel | Single | 250 | 350 | 550 |
AEP30/SUP | 25 30 | Stainless Steel | Single | 400 | 400 | 650 |
AEP40/SUP | 30 40 | Stainless Steel | Single | 800 | 450 | 700 |
AEP50/SUP | 40 50 | Stainless Steel | Double | 800 | 550 | 900 |
AEP60/SUP | 50 60 | Stainless Steel | Double | 800 | 600 | 950 |
AEP70/SUP | 60 70 | Stainless Steel | Double | 1000 | 600 | 950 |
AEP80/SUP | 70 80 | Stainless Steel | Double | 1400 | 650 | 1000 |
AEP100/SUP | 80 100 | Stainless Steel | Double | 1700 | 700 | 1200 |
Cable Support Grips for Wind Turbines are essential components used to support and secure vertical and sloped cable runs inside turbine towers. Made from durable woven steel mesh, these grips are designed to carry the weight of power, control, and communication cables, preventing sagging and reducing mechanical stress on cable terminations. They are installed at intervals along the tower to provide stable, long-lasting support.
These grips are especially important in wind turbines due to constant movement, vibration, and vertical height. They help maintain proper cable alignment and prevent wear caused by swinging or rubbing against tower walls. Common types include closed mesh, split mesh, and rod closing support grips, depending on cable type and installation method.
Safety is a key prioritygrips must be properly sized, securely anchored, and regularly inspected for signs of wear, corrosion, or fraying. Using the wrong grip or poor installation can lead to cable damage, system failure, or even safety hazards for maintenance crews.
We use Cable Support Grips in Wind Turbines to protect critical wiring, reduce downtime, and extend the life of high-value electrical systems. Their strength, flexibility, and reliability make them a vital part of modern wind turbine cable management.
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