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首页> 外文期刊>Materials and Manufacturing Processes >The Influence of Bismuth, Antimony, and Strontium on Microstructure, Thermal, and Machinability of Aluminum-Silicon Alloy
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The Influence of Bismuth, Antimony, and Strontium on Microstructure, Thermal, and Machinability of Aluminum-Silicon Alloy

机译:铋,锑和锶对铝硅合金组织,热性能​​和切削性能的影响

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摘要

In this article, the influence of separate additions of bismuth, antimony, and strontium on microstructure, thermal, and machinability of Al-1 l%Si-2%Cu alloy (ADC 12) has been reported. Additives depressed the aluminum-silicon eutectic growth temperature (T_G) and altered the silicon morphology. Different silicon morphologies, namely flake, lamellar, and fibrous influenced the main cutting force, feed force, and surface roughness during turning. Workpieces with fibrous silicon morphology produced the highest cutting force, feed force, and surface roughness while that of bismuth-containing workpieces produced the lowest cutting force, feed force, and the best surface roughness due to the formation of bismuth compound which acts as lubricant during turning. The results showed that the highest T_G is related to the best surface roughness and as such the best machinable alloy investigated.
机译:在本文中,已经报道了单独添加铋,锑和锶对Al-1 l%Si-2%Cu合金(ADC 12)的组织,热性能​​和可切削性的影响。添加剂降低了铝硅共晶生长温度(T_G)并改变了硅的形态。片状,层状和纤维状的不同硅形态会影响车削过程中的主切削力,进给力和表面粗糙度。具有纤维硅形态的工件产生最高的切削力,进给力和表面粗糙度,而含铋工件则产生最低的切削力,进给力和最佳表面粗糙度,这是因为在加工过程中形成了用作润滑剂的铋化合物。转。结果表明,最高的T_G与最佳的表面粗糙度有关,因此也是研究的最佳可切削合金。

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