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Double Sides Dragging Cable Grip Type WTG
Cable Grip

Double Sides Dragging Cable Grip Type WTG

The WTG net sleeve is a dual-sided pull cable net, the head can go through it, making it convenient to fix and hang the net head after pulling. It is of critical and diverse use for large high-voltage cables during undersea pulling construction.

When using hot-dip galvanized steel wire net sleeve, its excellent strength allows it to hold tightly onto large high-pressure cables in complex and harsh undersea environments. During undersea pulling operations, it can effectively prevent the cable from slipping, ensuring that it follows its predetermined undersea route steadily, thereby guaranteeing the continuity and precision of undersea cable laying projects. This enables power energy to be transmitted smoothly from land to various electrical facilities in the ocean, such as power supply systems on islands and offshore oil drilling platforms.

    Product Parameters

    Model Size Range Mesh length Total length Breaking load
    WTG-6 45388 400 550 600
    WTG-8 45452 500 650 600
    WTG-10 45547 500 700 900
    WTG-16 13-18 600 800 3000
    WTG-20 16-21 800 1000 4000
    WTG-25 22-28 1100 1300 7000
    WTG-30 29-36 1200 1420 7000
    WTG-40 37-45 1300 1550 10000
    WTG-50 45-55 1400 1650 12000
    WTG-60 56-68 1550 1900 12000
    WTG-75 69-80 1650 2080 12000
    WTG-90 80-95 1750 2150 15000
    WTG-115 88-101 1800 2220 18000
    WTG-130 101-114 1900 2350 18000
    WTG-155 115-127 2100 2560 20000
    WTG-180 124-152 2200 2680 20000
    WTG-220 153-180 2300 2780 20000
    WTG-230 180-230 2400 2700 20000
    WTG-280 230-280 2550 2850 20000
    WTG-320 280-320 2770 2950 20000
    If stainless steel 304 net sleeve is used, its excellent corrosion resistance is fully demonstrated in high-salinity seawater. In long-time undersea operation, it can resist the corrosion of seawater and maintain its own structural integrity and strength, stably attached to the cable and smoothly guide the cable to the designated position, helping to build and improve the undersea cable network and provide solid support for the infrastructure construction of communication and energy supply in marine areas.

    The stainless steel 316 net sleeve, with higher corrosion resistance and strength, is particularly suitable for deep sea areas or more severe marine environments for submarine cable pulling operations. In deep sea high pressure, low temperature and strong corrosive environments, it can still function reliably, tightly wrapping the cable and ensuring that the cable arrives at its destination intactly over long distances and deep in the sea, thus ensuring stable and reliable power and communication connections in the deep sea region and serving as a guardian for cable laying work in deep sea scientific research, deep sea resource development and other projects.

    For the net sleeve of the aluminum alloy pressed section, the aluminum alloy material ensures a certain strength while having the advantage of being light. In undersea traction construction, the lighter weight can reduce the load requirements on the traction equipment, making it easier to operate and control the traction process, making the entire traction operation more efficient and precise, which helps to improve the speed and quality of large high-pressure cable laying in the sea, reduces construction costs and time costs.

    The stainless steel-pressed section of the net sleeve relies on the high strength and corrosion resistance of stainless steel to provide a stable and protective support for the connection points in the harsh undersea environment. When subjected to huge tensile forces, the pressed section will not easily deform or damage, ensuring that the net sleeve and cable connection is tight and reliable, guaranteeing the safety and stability of cable pulling construction, and preventing cable drop-off and construction accidents caused by connection failure.

    A copper-clad net sleeve, with its excellent conductivity, has unique value in certain special undersea cable construction scenarios. For example, in engineering projects involving undersea power transmission and requiring precise monitoring and control of the cable's electrical performance, the copper-clad compression area can ensure the stability of the net sleeve connection while not affecting the electrical characteristics of the cable, allowing the construction process to complete the cable's traction laying smoothly while meeting the requirements for precise power transmission and stability, ensuring the efficient operation and intelligent management of the undersea power network.

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