首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EDGE FORCES IN METAL CUTTING: FUNDAMENTAL ANALYSIS AND EXPERIMENTAL VERIFICATION
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EDGE FORCES IN METAL CUTTING: FUNDAMENTAL ANALYSIS AND EXPERIMENTAL VERIFICATION

机译:金属切割边缘力:基本分析和实验验证

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In metal cutting, some of the generated forces do not contribute to chip formation. These forces are referred to as plowing forces and are induced mainly as result of the finite sharpness of the tool (cutting edge radius) and the tool's land (flank). Determining the magnitude of these forces is essential to developing a better understanding of the mechanics and physics of applications that involve cutting at minimal feed values (e.g., micro-machining and vibration-assisted- micro-machining. It is well recognized that plowing forces increase with tool wear. This research estimates these forces by employing analytical and numerical simulations. An extensive experimental analysis is utilized to verify the simulated values of the plowing forces. The experimental verification is designed to measure these forces as a function of several cutting parameters. The developed methodology relates the plow ing forces to geometric factors and process parameters such as cutting-edge radius, tool feed, and cutting speed.
机译:在金属切割中,一些产生的力不贡献芯片形成。这些力被称为犁犁力,并且主要是由于工具(切削刃半径)和工具的陆地(侧翼)的有限清晰度的结果。确定这些力的大小对于开发更好地理解涉及在最小馈电值(例如,微加工和振动辅助微加工的应用的力学和物理学的力学和物理学是必要的。它很好地认识到犁犁力增加用刀具磨损。该研究通过采用分析和数值模拟来估计这些力量。利用广泛的实验分析来验证犁犁力的模拟值。设计用于测量这些力量作为几种切割参数的函数。该开发方法与几何因子和工艺参数(例如尖端半径,工具进料和切割速度)介绍犁轴。

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