Low-smoke halogen-free fireproof communication cable for ship and manufacturing method thereof
A technology for communication cables and ships, which is applied in the field of low-smoke, halogen-free, fire-resistant communication cables for ships and its manufacture. It can solve the problems of large cable bending radius and large space occupied by cables, so as to protect safety and solve the difficulty of escape. , Reduce the effect of harm to the human body
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Embodiment 1
[0038] A low-smoke, halogen-free, fire-resistant communication cable for ships, including a core wire and a flame-retardant tape layer 6, the core wire is divided into six bundles of peripheral core wires and a bundle of central core wires, and a set of There is a filling layer 5, and each bundle of core wires includes a refractory insulating layer 2, a sub-shielding layer 3, an explosion-proof safety layer 4 and a plurality of conductors 1, and the refractory insulating layer 2 is extruded on the conductor 1, and the plurality of extruded The conductor 1 of the refractory insulating layer 2 is stranded for the first time, the sub-shielding layer 3 is braided on the refractory insulating layer 2 twisted for the first time, and the explosion-proof safety layer 4 is extruded on the sub-shielding layer 3 A bundle of core wires is formed, six bundles of peripheral core wires and a bundle of central core wires are twisted for the second time to form a finished core wire, and the fla...
Embodiment 2
[0043] The difference from Example 1 is that in the present invention, an inner sheath layer 7, a total shielding layer 8 and an outer sheath layer 9 are also included, and the inner sheath layer 7 is extruded on the flame-retardant tape layer 6 , the overall shielding layer 8 is braided on the inner sheath layer 7 , and the outer sheath layer 9 is extruded on the overall shielding layer 8 .
[0044] In the present invention, both the inner sheath layer 7 and the outer sheath layer 9 are low-smoke halogen-free polyurethane layers.
[0045] In the present invention, the filling layer 5 is a fan-shaped low-smoke halogen-free polyolefin layer.
Embodiment 3
[0047] A method for manufacturing a low-smoke, halogen-free, fire-resistant communication cable for ships, comprising the following steps:
[0048] 1) Material selection: use tinned copper as the conductor 1;
[0049] 2) Extruded refractory insulating layer 2 and the first stranding: ceramic silicone rubber is used as the refractory insulating layer 2 to extrude on the conductor 1, and multiple conductors 1 extruded with the refractory insulating layer 2 are subjected to the first stranding. stranded;
[0050] 3) Braided sub-shielding layer: Tinned copper wire is used as the sub-shielding layer 3 on the refractory insulating layer 2 after braiding multiple conductors 1;
[0051] 4) Extruded explosion-proof safety layer: use low-smoke halogen-free polyurethane elastomer as the explosion-proof safety layer 4 and extrude it on the sub-shielding layer 3 to form a bundle of core wires;
[0052] 5) Repeat steps 1)-4) to produce six bundles of peripheral core wires and one bundle o...
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