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Microstructures and Electrical Conductivity of Cu-Ca Alloys for High Efficiency Induction Motors

机译:高效感应电动机用Cu-Ca合金的微观结构和电导率

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摘要

The microstructures and electrical conductivity of newly developed Cu-Ca alloys for semi-solid forming have been investigated. High purity calcium was added to molten copper up to 1.4% by weight and mold-cast into a rod. Thermomechanical treatment (TMT) has been carried out to evaluate the variation in electrical conductivity and microstructures of Cu-Ca alloys. The electrical conductivity of copper was reduced linearly with the concentration of calcium by x(%IACS) = 101 - k·C, where k is a constant having the values ranging from 16.7 to 20, depending on the processing condition. The introduction of prestrain significantly reduced the grain size during subsequent heating by recrystallization, influencing the electrical conductivity of Cu-Ca alloys.
机译:研究了新开发的用于半固态成形的Cu-Ca合金的微观结构和电导率。将高纯度钙添加至熔融铜中,其含量最高为1.4%(重量),并模制成棒。已经进行了热机械处理(TMT)来评估Cu-Ca合金的电导率和微观结构的变化。铜的电导率随钙浓度线性降低x(%IACS)= 101-k·C,其中k是一个常数,取值范围为16.7至20,具体取决于加工条件。预应力的引入在随后的再结晶加热中显着减小了晶粒尺寸,从而影响了Cu-Ca合金的电导率。

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