Electric cable for solar energy street lamp installation
A solar street light and installation technology, applied in plastic/resin/wax insulators, organic insulators, etc., can solve the problem of inability to meet the special use requirements of photovoltaic power distribution cabinets, achieve strong shrinkage and cracking deformation adaptability, and large elongation , The effect of excellent flame retardant performance
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0017] The cable for installing solar street lamps in this embodiment includes multiple copper alloy wires and protective sleeves. The copper alloy wires are placed parallel to each other. The outer layer of each copper alloy wire is covered with a protective sleeve. The protective sleeve consists of the following parts by mass: The composition of the composition: 16 parts of nano-magnesium oxide, 14 parts of rubber powder, 12 parts of natamycin, 14 parts of aluminum hydroxide powder, 14 parts of pearl powder, 12 parts of aluminum silicate, 18 parts of sodium lauryl sulfate, 14 parts of chlorothalonil, 18 parts of acrylic resin, 14 parts of chlorinated polyethylene, 18 parts of ethyl tetrasilicate, and 14 parts of ABS resin.
[0018] The steps of the above-mentioned cable preparation method for solar street lamp installation are as follows:
[0019] (1) Nano magnesium oxide, rubber powder, natamycin, aluminum hydroxide powder, pearl powder, aluminum silicate, propylene ester r...
Embodiment 2
[0021] The cable for installing solar street lamps in this embodiment includes multiple copper alloy wires and protective sleeves. The copper alloy wires are placed parallel to each other. The outer layer of each copper alloy wire is covered with a protective sleeve. The protective sleeve consists of the following parts by mass: The composition of the ingredients: 18 parts of nano-magnesia, 16 parts of rubber powder, 14 parts of natamycin, 16 parts of aluminum hydroxide powder, 16 parts of pearl powder, 14 parts of aluminum silicate, 20 parts of sodium lauryl sulfate, 16 parts of chlorothalonil, 20 parts of acrylic resin, 16 parts of chlorinated polyethylene, 20 parts of ethyl tetrasilicate, and 16 parts of ABS resin.
[0022] The steps of the above-mentioned cable preparation method for solar street lamp installation are as follows:
[0023] (1) Nano magnesium oxide, rubber powder, natamycin, aluminum hydroxide powder, pearl powder, aluminum silicate, propylene ester resin, c...
Embodiment 3
[0025] The cable for installing solar street lamps in this embodiment includes multiple copper alloy wires and protective sleeves. The copper alloy wires are placed parallel to each other. The outer layer of each copper alloy wire is covered with a protective sleeve. The protective sleeve consists of the following parts by mass: The composition of the ingredients: 20 parts of nano-magnesia, 18 parts of rubber powder, 16 parts of natamycin, 18 parts of aluminum hydroxide powder, 18 parts of pearl powder, 16 parts of aluminum silicate, 22 parts of sodium lauryl sulfate, 18 parts of chlorothalonil, 22 parts of acrylic resin, 18 parts of chlorinated polyethylene, 22 parts of ethyl tetrasilicate, and 18 parts of ABS resin.
[0026] The steps of the above-mentioned cable preparation method for solar street lamp installation are as follows:
[0027] (1) Nano magnesium oxide, rubber powder, natamycin, aluminum hydroxide powder, pearl powder, aluminum silicate, propylene ester resin, c...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More