机械加工
可加工性
机械工程
刀具磨损
插入(复合材料)
刀具
机床
数控
侧面
质量(理念)
工程类
表面粗糙度
工程制图
均方根
表面光洁度
冶金
制造工程
工具钢
材料科学
计算机科学
生产力
作者
Manojkumar Sheladiya,Shailee Acharya,G. D. Acharya
出处
期刊:Obrabotka metallov
[Novosibirsk State Technical University]
日期:2020-12-08
卷期号:22 (4): 41-53
被引量:1
标识
DOI:10.17212/1994-6309-2020-22.4-41-53
摘要
Introduction. The machinability is typical criteria to be investigated and different authors suggested different parameters describing its quantification. Different parameters i. e. speed, feed, depth of cut, tool work-piece combination, machine types and its condition, cutting fluid, machinist expertise, etc. are contributing directly to the tool life. The selection of the tool for the machining impacts greatly on the economic viability of the machining in terms of energy usage and tooling costs. The method of investigation. The current research emphasis mainly on tool life investigation when machining the mild steel specimens ISRO 50, BIS 1732:1989 at constant cutting speed i.e. 200 m / min. In the industries the mild steel material is commonly used for various products manufacturing. Considering the high demands on productivity and surface finish, machining at 200 m / min is the preferred. The computerized numerical control machine (CNC DX-150) is used for the turning. The four corner insert (TNMG 120408) is used for different machining times i.e. 10, 15, 20 and 25 minutes respectively. The flank wear of the tool is measured with calibrated optical microscope. The temperature of the tool corner during machining is continuously measured for possible impact of temperature on bonding properties of the tool insert and impact on red hardness. Results and discussion. The plot of flank wear vs. machining time will give the value of tool life. The other quality output parameter, such as surface roughness, is measured after machining, indicating surface irregularities in root means square value. Efforts have been made to identify the relationship of tool life, machining time, the quantity of metal removed, surface roughness, and tool bit temperature.
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