Characterization of Machined Surfaces of Al-based Automotive Alloys with Different Levels of Si Content under Up Milling and Down Milling Operation

Salman Ahammed, Asif Razin, Maglub Al-Nur, S. Kaiser
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Abstract

: This paper aims to investigate and compare the characteristics of machined surfaces and chips formation of aluminium-based automotive alloys with varying silicon content. The milling operations are performed using horizontal milling machine under two peripheral up milling and down milling methods with an HSS slab milling cutter. The experiment has conducted for different cutting speeds in dry condition while the depth of cut and machining feed are kept constant throughout the evaluation. The study reveals that the down-milled surface has higher hardness and better surface finish resulting in lower roughness as the cutting force is compressive in nature. On the contrary, the up-milled surface has lower hardness and micro cracks on it, which resulted in relatively higher surface roughness as the cutting force is tensile shear in nature. In addition, the surface hardness increases with the increment of silicon content in the alloys for both milling methods for the presence of hard Si rich intermetallics. The chips produced during up milling are shorter whereas the chips produced during down milling are longer for creation of higher temperature and pressure. Higher Si added alloy shows the curly like chips for its lower elongation behaviour. Fracture behaviour of higher Si alloy also confirms crack propagation obtained by the massive cleavage of the brittle and plate-types Si rich intermetallics.
上铣削和下铣削下不同Si含量铝基汽车合金加工表面的表征
本文旨在研究和比较不同硅含量的铝基汽车合金的加工表面和切屑形成特性。铣削操作是用卧式铣床在两种外围上铣削和下铣削方法下用高速钢板坯铣刀进行的。在干燥条件下,在保持切削深度和加工进给量不变的情况下,进行了不同切削速度下的试验。研究表明,由于切削力本质上是压缩的,下铣削表面具有较高的硬度和较好的表面光洁度,从而降低了粗糙度。相反,上铣削表面硬度较低,表面有微裂纹,由于切削力本质上是拉伸剪切,导致表面粗糙度相对较高。此外,两种铣削方法的表面硬度随合金中硅含量的增加而增加,因为存在坚硬的富硅金属间化合物。在上铣削过程中产生的切屑较短,而在下铣削过程中产生的切屑较长,以产生更高的温度和压力。高硅合金的延伸率较低,呈现出卷曲状切屑。高硅合金的断裂行为也证实了脆性和板型富硅金属间化合物的大量解理所产生的裂纹扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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