机械加工
可加工性
材料科学
表面粗糙度
表面光洁度
刀具磨损
冶金
环境友好型
机械工程
生产力
制造工程
刀具
工艺工程
复合材料
工程类
经济
宏观经济学
生物
生态学
作者
P. Sivaiah,M. Sudheera,Muralidhar Singh M,C. Yuvaraj
标识
DOI:10.1080/10426914.2023.2260460
摘要
ABSTRACTNowadays, productivity enhancement in machining operations in eco-friendly machining environment is a front-end requirement in the machining industries. In general, minimizing tool wear (Vb) and surface roughness (Ra) in machining processes can directly boost productivity. Therefore, the current effort attempts to improve productivity by regulating tool wear and surface roughness in an environmentally friendly machining environment. In this study, innovative textured tools (TT) were created, and the machinability performance of the produced tools was assessed under dry, conventional, and MQL conditions. According to the study's findings, MQL cooling with TT considerably reduced the cutting temperature (T), Vb, and Ra to maximum values of 13%, 17%, and 29%, respectively, over untextured tools (UT). In addition, it was shown that MQL cooling considerably enhanced turning performance in both tools compared to without cooling and conventional cooling, respectively. Additionally, chip morphology research was done and showed promise using textured tools in MQL conditions as opposed to other machining settings.KEYWORDS: Machiningtextured toolswearroughnessAISI 321dryconventionalchip morphologyturningMQL Disclosure statementNo potential conflict of interest was reported by the author(s).
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