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Approaches to Enhance Surface Integrity in Turning of Aluminium Matrix Composites

机译:增强铝基复合材料车削表面完整性的方法

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Aluminium matrix composites are innovative lightweight construction materials, which usually consist of a relatively soft and ductile matrix and a hard ceramic reinforcing component. The high hardness of the reinforcing component results in extensively increased cutting tool wear by abrasion as well as defects of the machined surface in the form of voids and scaling. In this study, turning tests were conducted on Al_2O_3 particle-reinforced aluminium to evaluate the effect of tool edge geometry on cutting performance and surface integrity. These investigations have shown a significant reduction of the roughness and surface defects using tools with appropriate rake geometries.
机译:铝基复合材料是创新的轻质建筑材料,通常由相对较软且易延展的基体和硬质陶瓷增强成分组成。增强部件的高硬度导致切削刀具因磨损而大量磨损,以及以空隙和结垢的形式出现的机加工表面缺陷。在这项研究中,对Al_2O_3颗粒增强型铝进行了车削测试,以评估刀具刃口几何形状对切削性能和表面完整性的影响。这些研究表明,使用具有合适前刀几何形状的工具,可以显着降低粗糙度和表面缺陷。

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