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Workshop "Steel Tendon": Flatbed Lifting Rules for Wire Rope Slings

Wire rope slings are made of wire rope and processed through processes such as braiding, pressing, and casting. They are flexible lifting components (including joint accessories at both ends) used for lifting, pulling, tensioning, and carrying. They are widely suitable for lifting and transporting various heavy objects.

    When smooth flat plates hang like isolated islands in the air, wire rope rigging tackles the tough challenges of lifting with a three-pronged approach:

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    1. Anti-Abrasion Armor: Fighting Burrs and Sharp Edges

    The 6x37-strand core is wrapped in galvanized armor, and each wire feels as if it has been tempered:

    Rust and cutting burrs on the plate's edges can't chip away at its outer layer;

    Welding slag and sharp scrapes in the workshop will at most remove a thin oxide film;

    Even if a strand is occasionally scraped by a steel plate edge, the remaining strands can withstand the load, preventing a chain reaction of breakage.

    2. Locking Grip: Suppressing Slippage

    The wedge-shaped lock and double-ring buckle design offer a slip-proof design:

    No matter how smooth the plate, the lock bites into the lifting point like a steel claw, preventing even a 10° swing during lifting.

    Is the old lifting point worn and deformed? A different rope loop can be twisted into a "bottom knot" to secure all four sides of the platform.
    With a simple click, the lock automatically returns to its original position, eliminating time-consuming "repeated checks."

    3. The Magic of Pressure Distribution: Turning "Center of Gravity Shift" into a Safety Ripple
    Multiple rope strands are distributed, in line with mechanical calculations:
    Extra-long platform weighing at both ends? Automatically compensate for the tension difference between the front and rear rope strands, minimizing the risk of tilt to a safe threshold.
    Irregular-shaped holes, misaligned lifting points? Flexible "bridge" rope routing allows distributed forces to counteract concentrated loads.
    When the overhead crane in the workshop swings, multiple ropes cushion the impact, minimizing the impact and protecting the delicate components within the platform.

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