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The characterization of grinding wheels using 3D surface measurement techniques

机译:使用3D表面测量技术表征砂轮

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摘要

Surface measurement using 3D stylus instruments is a relatively new technique which offers numerous advantages over the more common profilometry methods. The information generated is, unlike profile measurements, less subjective and more statistically relevant providing additional insight regarding the surface structure. One application of surface measurement which has encountered problems when using the profilometry method is that of grinding wheel characterisation. The wheel surface texture (topography) and the conditions under which it is generated have a profound effect upon the grinding performance as characterised by the grinding forces, power consumption, temperature, and surface integrity of components. A detailed knowledge of the nature of the topography of the grinding wheel would provide further insight into the surface interaction of the grinding wheel as well as enabling unproved control of the grinding process in general. Through the employment of novel 3D surface descriptors, this paper will investigate the topographic change which occurs on both the wheel and workpiece and attempt to relate this to force data and scanning electron microscopy. The results will demonstrate that this topographic characterisation technique correlates well with more accepted methods.
机译:使用3D测针仪器进行表面测量是一种相对较新的技术,与更常见的轮廓测量方法相比,具有许多优势。与轮廓测量不同,生成的信息主观性较低,在统计上更相关,从而提供了有关表面结构的其他信息。在使用轮廓测量法时遇到问题的表面测量的一种应用是砂轮表征。砂轮表面纹理(形貌)及其产生的条件对磨削性能产生深远影响,其特征是磨削力,功耗,温度和零件的表面完整性。对砂轮形貌特性的详细了解将提供对砂轮表面相互作用的进一步了解,并能够对砂轮的总体加工过程进行未经证实的控制。通过使用新颖的3D表面描述符,本文将研究轮和工件上发生的形貌变化,并尝试将其与力数据和扫描电子显微镜相联系。结果将表明,这种地形表征技术与更广泛接受的方法具有很好的相关性。

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