Effects of running conditions on the conductivity of copper cladding aluminum flat bars
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摘要: 采用數值分析方法,分析工作溫度、扁排與環境的換熱量、載流量等工作條件對銅包鋁扁排導電性能的影響.結果表明:當扁排工作溫度升高時,交流功率損耗增加的比值小于直流電阻增大的比例;當包覆層斷面結構相同時,扁排可承載的平均電流密度隨斷面面積的增大而減小;采用單位長度直流電阻相同的銅包鋁導電扁排替代銅扁排,在節省銅資源和原材料成本的同時,銅包鋁扁排可承載的最大載流量增加,功率損耗和工作溫度降低.Abstract: The effects of running conditions such as operating temperature, heat exchange quality between bars and ambient, and current capacity on the conductivity of copper cladding aluminum (CCA) flat bars were analyzed by a numerical analysis method. The results show that the rate of power loss increasing is smaller than that of direct current resistance increasing due to operating temperature rising. When the sectional configuration of cladding layers is the same, the mean current density which CCA fiat bars can carry decreases with the sectional area increasing. CCA flat bars can replace copper fiat bars when their direct current resistance is the same. This saves copper resource and reduces cost, at the same time the carrying capacity of bars increases. The power loss and operating temperature of CCA flat bars are lower than those of copper fiat bars.
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Key words:
- cladding materials /
- busbar /
- conductivity /
- numerical analysis
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