Three-Dimensional Evaluation of Microscopic Wheel Surface Topography in Creep Feed Grinding Using Ceramics Grinding Wheel

M. Fujimoto, M. Fujita
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引用次数: 3

Abstract

The surface topography of ceramic grinding wheels used in creep feed grinding is examined in this study. Creep feed grinding experiments are performed using seeded gel (SG) grinding wheels. The three-dimensional surface of the grinding wheel is observed using a two-dimensional high-definition laser displacement sensor, and the effective cutting-edge number is calculated based on three-dimensional surface observations. Microscopic wear behaviors of grain cutting edges are examined based on scanning electron microscope (SEM) images. The cutting-edge area percentage is calculated based on SEM images via the discriminant analysis method. Results show that the micro self-sharpening phenomenon can be evaluated quantitatively. Micro sharp cutting edges on grains and normal grinding forces are suppressed. Subsequently, the relationship between the grinding characteristics and behaviors of the SG wheel working surface is investigated.
陶瓷砂轮蠕变进给磨削细观砂轮表面形貌的三维评价
对蠕变进给磨削用陶瓷砂轮的表面形貌进行了研究。采用种子凝胶(SG)砂轮进行了蠕变进给磨削试验。利用二维高清激光位移传感器对砂轮三维表面进行观测,并根据三维表面观测结果计算有效尖端数。基于扫描电子显微镜(SEM)图像,研究了晶粒切削刃的微观磨损行为。基于扫描电镜图像,采用判别分析方法计算尖端面积百分比。结果表明,微自锐现象可以定量评价。晶粒上的微锐切削刃和正常磨削力被抑制。在此基础上,研究了SG砂轮工作表面磨削特性与磨削行为之间的关系。
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