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China OPLC Filling Strip Suppliers - High-Quality Optical Power Line Communication Cable Factory Product
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China OPLC Filling Strip Suppliers - High-Quality Optical Power Line Communication Cable Factory Product

Introducing our high-quality Optical Power Line Communication Cable (OPLC) filling strip, a specialized solution designed for submarine cable applications. Manufactured from premium polyolefin plastic, this filling strip meets strict shape and performance criteria, ensuring durability and reliability. It features excellent corrosion resistance, superior high-voltage electrical insulation, and a balance of hardness and strength, combined with optimal softness and elongation. As a leading factory and supplier in China, we are committed to providing top-notch materials that enhance the performance and longevity of your underwater cables.

    Product Description

    The special filling strip for optoelectronic composite submarine cables is a filling material designed specifically for optoelectronic composite submarine cables, which plays a crucial role in the cable formation process. The following is a detailed introduction to the special filling strip for optoelectronic composite submarine cables:

    1. Basic Characteristics
    Material composition:
    The filling strip for optoelectronic composite submarine cables is usually made of PE (polyethylene) or composite PE as the substrate, and may add other materials such as rubber powder. It is plasticized by a single screw extruder, then made into a strip shape through a specific extrusion mold, and finally cooled and shaped. This material combination gives the filling strip excellent physical properties and chemical stability.
    Shape design:
    The shape design of the filling strip is diverse, some of which are part of a sector, with three vertices as arcs, and the two sides of the sector are also made into arcs, with a hole in the middle of the sector; Some may adopt other shapes, such as inverted W-shaped or hollow dovetail shaped, which are designed to better adapt to the structure of submarine cables and meet specific engineering requirements.
    Performance advantages:
    The special filling strip for optoelectronic composite submarine cables has the advantages of easy use, round filling, strong support, and good protection for fiber positioning. It can effectively locate and protect fiber optic units, avoiding damage caused by compression during cable formation, while making the entire submarine cable round and enhancing the stability and reliability of the cable formation.
    2. Application & Market
    Improve submarine cable performance:
    The use of filling strips can significantly improve the overall performance of optoelectronic composite submarine cables, including key indicators such as roundness, compressive strength, and tensile strength. These performance improvements help submarine cables maintain stable transmission performance and service life in complex marine environments.
    Reduce maintenance costs:
    High quality filling strips can reduce the failure rate of submarine cables during use, thereby lowering maintenance costs. Meanwhile, due to its excellent corrosion resistance and high-voltage electrical insulation, it can also reduce the risk of cable damage caused by environmental factors.
    3. Market and Development:
    With the widespread application of optoelectronic composite submarine cables in underwater communication, ocean observation, offshore wind power and other fields, the market demand for specialized filling strips for optoelectronic composite submarine cables is also constantly increasing. In the future, with the continuous advancement of materials science and processing technology, the performance and quality of filling strips will be further improved and optimized to meet the higher requirements of submarine cable manufacturing.

    Parameters

    Technical specifications of fan-shaped filling strip for optoelectronic composite submarine cable
    Voltage grade Specifications Height(H) Width(L) Opening width(b) Opening Diameter(D) Unit weight(g/m) Tensile strength(N)
    8.7/10KV 3*185 22±1.5mm 45±2.0mm 12±2.0mm 16±1.5mm ≤80g ≥650
    26/35KV 3*300 30±1.5mm 64±2.5mm 14±2.0mm 16±1.5mm ≤560g ≥800
    26/35KV 3*400 34.5±1.5mm 81.5±2.5mm 14±2.0mm 16±1.5mm ≤650g ≥850
    Support customizing other specifications

    Detailed Image

    Frequently Asked Questions

    Q: What materials are used to make the special filling strip for optoelectronic composite submarine cables?
    A: The filling strip is usually made using PE (polyethylene) or composite PE as the substrate. Other materials, such as rubber powder, may also be added to the composition. It is plasticized using a single screw extruder, extruded through a specific mold, and then cooled and shaped.
    Q: What shape designs are available for these submarine cable filling strips?
    A: The shape designs are diverse to suit different cable structures. They can be sector-shaped (with three arc vertices, arc sides, and a center hole), inverted W-shaped, or hollow dovetail shaped to meet specific engineering requirements.
    Q: How do the filling strips protect the fiber optic units inside the cable?
    A: They provide strong support and round filling, which effectively locates and protects the fiber optic units. This design prevents damage caused by compression during the cable formation process, enhancing overall stability.
    Q: Can these filling strips help in reducing cable maintenance costs?
    A: Yes. High-quality filling strips reduce the failure rate of submarine cables during operation. Their excellent corrosion resistance and high-voltage electrical insulation minimize the risk of damage from environmental factors, thereby lowering overall maintenance costs.
    Q: Are there custom specifications available for the optoelectronic composite filling strips?
    A: Yes. While standard technical specifications include sizes for 8.7/10KV (3*185) and 26/35KV (3*300, 3*400) voltage grades, custom specifications are fully supported to meet specific submarine cable design requirements.