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    800 lbs Hand Crank Winch with Brake

    Factory price hand crank winch with 800 lbs (0.4 ton) working load, 400 lbs (0.2 ton) lifting tension, and 1200 lbs (0.6 ton) breaking strength. Features a 3.2:1 gear ratio, rolled steel body, and 4mm x 8m cable. Ideal for trucks, car trailers, boat trailers, and off-road recovery.
    SKU: T-HW-800
    $93.87
    i h
    Free shipping
    Delivery date: 6-12 days
    Overview

    This winch is ideal for a range of applications, including vehicle recovery, boat trailers, and general utility tasks. The winch comes with a 4mm x 8m steel cable and a 3.2:1 gear ratio, providing excellent control and ease of use. Its compact, portable design makes it a great choice for on-the-go jobs.

    Specification

    • Model: T-H800LB
    • Working Load: 800 lbs (0.4 ton)
    • Lifting Tension: 400 lbs (0.2 ton)
    • Breaking Strength: 1200 lbs (0.6 ton)
    • Material: Rolled Steel
    • Gear Ratio: 3.2:1
    • Cable (Dia x L): Ø4mm x 8m
    • Dimension: 150mm (L) x 85mm (W) x 120mm (H)
    • Weight: 2.5kg

    Note: Never exceed working load limit.

    Details

    Tips: Understanding the Mechanical Advantage of a Hand Winch

    • Gear Ratio Impact: The mechanical advantage of a hand winch is determined by its gear ratio. A higher gear ratio means more pulling power with less physical effort, but it will take more cranks to complete the task.
    • Effort Reduction: Hand winches with a mechanical advantage allow users to lift or pull heavy loads with minimal physical strain. This makes them ideal for tasks like vehicle recovery or loading trailers.
    • Efficiency in Heavy Loads: The winch's mechanical advantage enables lifting and moving heavier loads than what manual force alone could handle, improving efficiency in various situations.
    • Speed vs. Power Trade-Off: A higher mechanical advantage results in more pulling power, but this can slow down the winching process. Consider the task at hand when choosing the winch.
    • Understanding Torque: The mechanical advantage increases torque, which means less effort is required at the handle to generate the force needed to move the load.

     

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