Composite core high stretching rate heat resisting aluminum alloy conductor for smart energy source and manufacture method thereof
A technology of aluminum alloy wires and smart energy, which is applied in the direction of metal/alloy conductors, cable/conductor manufacturing, and extensible conductors, etc. It can solve the problems of low breaking force of wires, inability to exert high strength and high modulus of composite cores, etc. , to achieve the effect of large draw-to-weight ratio, high overall breaking force and various structures
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Embodiment 1
[0038] See figure 1 , the composite core high elongation heat-resistant aluminum alloy wire of this embodiment includes a fiber-reinforced resin-based composite core 1 tightly twisted with high conductivity duralumin round wires to form a high conductivity duralumin strand layer 2 .
Embodiment 2
[0040] See figure 2 , the composite core high elongation heat-resistant aluminum alloy wire of the present embodiment comprises a fiber-reinforced resin-based composite core 1 and is tightly stranded with a high-elongation heat-resistant aluminum alloy wire to form a high-conductivity duralumin strand layer 2; fiber-reinforced resin The base composite core 1 is composed of 7 composite cores; the high-elongation heat-resistant aluminum alloy wire stranding layer 2 is composed of two layers, one layer is tightly twisted circular single wire, and the other layer is tightly twisted trapezoidal wire.
Embodiment 3
[0042] See image 3 , the composite core high-elongation heat-resistant aluminum alloy wire of the present embodiment comprises a fiber-reinforced resin-based composite core 1 and is tightly stranded with a high-elongation heat-resistant aluminum alloy wire to form a high-conductivity duralumin strand layer 2; high elongation The heat-resistant aluminum alloy wire stranding layer 2 is composed of two layers of tightly twisted trapezoidal wires.
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