Investigation of The Chip Formed as a Result of Machining of GGG50 Casting Material by Turning Method

Kübra Kaya, Rüstem Binali, Mustafa Kuntoğlu
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Abstract

– In this study, the relationship between the chips formed during the machining of GGG50 materialby turning method in different parameters was investigated. GGG50 material is spheroidal graphite castiron, which can melt at low temperatures and has high wear resistance. Silicon, which is present at the rateof 2-4% in cast iron, causes the carbon to be found in the form of graphite leaflets, which facilitates themachinability of the material. Chips reflect the machining properties of the material in the manufacturingindustry and are also responsible for removing heat from the cutting zone. It also plays an important role inmeasuring the machining capabilities and strengths of cutting tools. In the experiments, three main factorsaffecting the state of the chips in the turning process were discussed. These are cutting speed, depth of cutand feed rate. As a result of the study, the most important parameter affecting the chips in the turning ofthe GGG50 material in terms of thickness was determined as the cutting speed. The results of theseexperiments are expected to guide future studies in the manufacturing sector.
GGG50铸造材料车削加工切屑的研究
-本研究研究了GGG50材料车削加工过程中不同参数下切屑形成的关系。GGG50材料为球墨铸铁,低温下可熔化,耐磨性高。在铸铁中以2-4%的比例存在的硅,使碳以石墨叶的形式存在,这有利于材料的可加工性。在制造业中,切屑反映了材料的加工性能,也负责从切削区去除热量。它在衡量刀具的加工能力和强度方面也起着重要作用。在实验中,讨论了车削过程中影响切屑状态的三个主要因素。这些是切削速度,切削深度和进给速度。研究结果确定了影响GGG50材料车削切屑厚度的最重要参数为切削速度。这些实验的结果有望指导未来制造业的研究。
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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