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Effect of modifier elements on machinability of Al-20%Mg2Si metal matrix composite during dry turning

机译:改性剂对Al-20%Mg2Si金属基复合材料干切削加工性能的影响

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摘要

The principle aim of this study was to observe the effect of machining parameters as well as the separate additions of 0.4wt% bismuth, 0.01wt% strontium, and 0.8wt% antimony on the machinability of Al-20%Mg2Si in situ metal matrix composite. Microstructure alteration, surface roughness, main cutting force, and chip morphology were taken into account as indices to examine the effect of modifiers and machinability during dry turning. It was found that the additives modify the Mg2SiP particles by changing the particle shape from coarse primary to polygonal shape and decrease the particle size and aspect ratio as well as increase the particle density. Results show that the modified work-pieces present adequate machinability with respect to cutting force and surface roughness. The smaller reinforcements enable lower surface roughness values to be obtained even if they are pulled out, fractured, or elongated. In addition, the modified work-pieces encourage lower surface roughness values in comparison with unmodified work-piece due to less built-up-edge formation. A scenario for surface roughness of Al-Mg2Si composite with respect to the size and aspect ratio of reinforcement particles is proposed in this study.
机译:本研究的主要目的是观察加工参数以及分别添加0.4wt%的铋,0.01wt%的锶和0.8wt%的锑对Al-20%Mg2Si原位金属基复合材料可加工性的影响。 。将微观结构变化,表面粗糙度,主切削力和切屑形态作为指标,以研究干式车削过程中改性剂和切削性能的影响。已经发现,添加剂通过将颗粒形状从粗糙的初级形状改变为多边形形状而改变了Mg2SiP颗粒,并减小了颗粒尺寸和长径比并增加了颗粒密度。结果表明,改进的工件在切削力和表面粗糙度方面具有足够的切削性。较小的增强材料即使被拉出,断裂或拉长,也能获得较低的表面粗糙度值。另外,由于未堆积的边缘较少,因此与未修饰的工件相比,修饰的工件具有较低的表面粗糙度值。本研究提出了一种Al-Mg2Si复合材料的表面粗糙度相对于增强颗粒尺寸和长宽比的方案。

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