Alloy conductive wire and preparation method thereof
A conductive wire and alloy technology, which is applied in the field of composite material manufacturing, can solve problems such as high cost, instability, and easy-to-break conductive wire, and achieve the effects of prolonging service life, reducing waste, and reducing temperature measurement deviation
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Embodiment 1
[0011] Embodiment 1, an alloy conductive wire, is characterized in that the weight percentage of the alloy is composed of 3%-6% Ti, 0.40±0.02% silicon, 0.05±0.005% calcium, 0.05±0.005% yttrium, and 1.0±0.0% cobalt 0.02%, mixed rare earth 0.05±0.005%, not more than 0.04% carbon, not more than 0.005% sulfur, not more than 0.05% iron and the balance of nickel, chromium 9.0±0.02% and carbon 0.02%-0.5%, the rest for aluminum and unavoidable impurities.
Embodiment 2
[0012] Embodiment 2, in a kind of alloy conductive wire described in embodiment 1: the weight percentage of the alloy is composed of 3%-6% Ti, 0.40±0.02% silicon, 0.05±0.005% calcium, 0.05±0.005% yttrium, Cobalt 1.0±0.02%, mixed rare earth 0.05±0.005%, carbon not greater than 0.04%, sulfur not greater than 0.005%, iron not greater than 0.05% and nickel in the balance, chromium 9.0±0.02% and carbon 0.02%-0.5 %, talc powder 0.02%-0.5%, mica powder 0.40±0.02%, the rest is aluminum and unavoidable impurities.
Embodiment 3
[0013] Embodiment 3, in the alloy conductive wire described in Embodiment 1 or 2: the weight percentage of the alloy is composed of 4% Ti, 0.41% silicon, 0.051% calcium, 0.053% yttrium, 1.01% cobalt, 0.053% mixed rare earth, Not more than 0.04% of carbon, not more than 0.005% of sulfur, not more than 0.05% of iron and the rest of nickel, 9.0±0.02% of chromium and 0.02%-0.5% of carbon, 0.02%-0.5% of talcum powder, 0.40 of mica powder ±0.02%, the rest is aluminum and unavoidable impurities.
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