平面磨削几何精度的研究。横向磨削中工件的热变形。

S. Okuyama, Tokuhiko Nishihara, S. Kawamura, S. Hanasaki
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引用次数: 16

摘要

用有限元法从理论上研究了磁性吸盘在横磨过程中工件的热变形。结果与实测的地面剖面进行了比较。计算了磁性卡盘约束工件底面翘曲所需的力。主要结果如下:(1)磨削热产生的热应力使工件底面中心部分与磁性吸盘分离。(2)工件中心部位局部热变形随磨削道次的增加而增大。在各磨道口的入口和出口部分周围,发生局部热弯曲变形。(3)工件底表面的分离和局部热变形导致地面凹形轮廓。(4)对于尺寸为10×60×40(mm)的工件,在每道次下进给10 μm、横进给5mm的条件下进行磨削时,所需的约束力约为12MPa。
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Study on the Geometrical Accuracy in Surface Grinding. Thermal Deformation of Workpiece in Traverse Grinding.
Thermal deformation of a workpiece attracted by a magnetic chuck in traverse grinding is theoretically investigated by a finite element method. The results are compared with the measured profiles of ground surfaces. Necessary force of a magnetic chuck to constrain the warp of workpiece bottom surface is also computed. The main results are as follows:(1) Central part of the workpiece bottom surface separates from the magnetic chuck by the thermal stress due to the grinding heat. (2) The local thermal deformation at the central part of a workpiece increases with the number of grinding passes. Around the entrance and exit part of each grinding pass, the local thermal bending deformation occurs. (3) The separation of the workpiece bottom surface and the local thermal deformation lead to a concave profile of the ground surface. (4) When a workpiece of 10×60×40(mm) in dimension is ground under a condition of 10 μm down feed and 5mm cross feed per a pass, the necessary constraining force is about 12MPa.
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