机械加工
前角
炸薯条
耙
金刚石工具
机械工程
碎屑形成
钻石
机床
计算机科学
剪切力
材料科学
金刚石车削
工程制图
刀具磨损
结构工程
制造工程
工程类
复合材料
电信
作者
C. Arcona,Thomas A. Dow
出处
期刊:Journal of Manufacturing Science and Engineering-transactions of The Asme
[ASME International]
日期:1998-11-01
卷期号:120 (4): 700-707
被引量:126
摘要
The accuracy of precision machining operations could be improved through tool force feedback. Tool force is ideally suited for use in a control algorithm because it contains information on the instantaneous depth of cut, feed rate and condition of the tool. A tool force model that could form the basis of this new control technique has been developed. By measuring the shear angle from micrographs of chip cross sections, equations for the forces due to chip formation and the friction between the chip and the tool have been written. Furthermore, the effects of elastic deformation of the workpiece (spring back) on chip formation and the measured forces, which can be significant in precision machining, have been included in the model. Machining experiments were conducted with a 0 deg rake diamond tool and four metals that are commonly diamond turned. For machining with newly lapped as well as worn tools, the calculated forces were in excellent agreement with the measured values for the array of workpiece materials.
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