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Relationship Between Machinability, Microstructure, and Mechanical Properties of Al-7Si Alloy

机译:Al-7Si合金的切削性能,组织与力学性能之间的关系

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摘要

In this work, commercially available Al-7Si alloy was used, and the microstructure was modified by the additions of AlSr15, AlTi5B1, and Al3B. Cylindrical samples were cast into a sand mold and the machinability of the alloys was characterized by means of surface roughness, chip morphology, and buildup edge of the chips. Tool life and surface finish can be improved by decreased chip size by lowering the energy required for machining. The surface finish is an indicator of the quality of the material during the machining process. Therefore, in addition, melt quality was measured by means of reduced pressure test and the calculation of the bifilm index was used to compare the melt quality with machinability. It was found that there is a good correlation between bifilm index and surface roughness of the machined parts. Thus, for a better surface finish, melt quality, which can be quantified by bifilm index, has to be high. AlSr15 modified alloy exhibits the lowest built-up edge with the lowest surface roughness, because strontium modification causes coarse silicon crystals to transform to fine fibrous structure, which enhances machinability.
机译:在这项工作中,使用了可商购的Al-7Si合金,并且通过添加AlSr15,AlTi5B1和Al3B对其微观结构进行了修改。将圆柱形样品浇铸到砂型中,并通过表面粗糙度,切屑形态和切屑堆积边缘来表征合金的切削性能。通过降低加工所需的能量,可通过减小切屑尺寸来改善刀具寿命和表面光洁度。表面光洁度是加工过程中材料质量的指标。因此,此外,通过减压试验测量熔体质量,并使用双膜指数的计算来比较熔体质量与可加工性。发现双膜指数与加工零件的表面粗糙度之间具有良好的相关性。因此,为了获得更好的表面光洁度,可以通过双膜指数定量的熔体质量必须很高。 AlSr15改性合金表现出最低的堆焊边缘和最低的表面粗糙度,因为锶改性会导致粗大的硅晶体转变为精细的纤维结构,从而提高了可加工性。

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