电火花加工硬质合金抛光后的表面完整性

T. Tamura, S. Matsumoto
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引用次数: 1

摘要

电火花加工(EDM)硬质合金会产生热影响区(haz),热影响区中存在许多裂纹和微孔。这些缺陷使材料的强度大大降低。作为应对措施之一,可以通过抛光来消除haz,而抛光依赖于手工处理。然而,通过抛光很难完全去除haz。目前,抛光操作人员根据抛光表面的光泽度,主观地评价抛光表面是否存在裂纹等缺陷。在本研究中,基于抛光到准镜面表面不一定伴随着材料强度的恢复的假设,实验研究了抛光表面的反射率与横向断裂强度(IRS)之间的关系。结果表明,表面粗糙度为0.2μm Ry的准镜面抛光表面的反射率比小于0.1μm Ry的镜面抛光表面的反射率低3- 4%,准镜面抛光表面的IRS比为0.7,放电加工表面的IRS比为0.6,而镜面抛光表面的IRS比为1.0。因此,我们观察到准镜面表面的反射率接近镜面表面,准镜面表面的IRS接近电火花加工表面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Integrity of Cemented Carbides Machined by Electrical Discharge Machining after Polishing
Heat-affected zones (HAZs), in which there are many cracks and microcraters, are generated by electrical discharge machining (EDM) of cemented carbides. These defects cause a substantial decrease in the strength of the materials. As one of the countermeasures, HAZs can be removed by polishing, which is dependent on hand finishing. However, it is difficult to remove HAZs completely through polishing. At present, a polishing operator subjectively evaluates whether defects such as cracks exist on a polished surface based on the degree of brilliance of the polished surface. In this study, the relationship between the reflectivity of the polished surface and the transverse rupture strength (IRS) was experimentally examined based on the assumption that polishing to a quasi-mirror-finish surface is not necessarily accompanied by recovery of the strength of the material. Our results showed that the reflectivity of the quasi-mirror-finish surface with surface roughness of 0.2μm Ry is 3-4 percent lower than that of a mirror-finish surface with surface roughness of less than 0.1μm Ry. The IRS ratio of a quasi-mirror-finish surface is 0.7, and that of an electrical discharge machined surface is 0.6 compared with 1.0 for a mirror-finish surface. Thus, we observed that the reflectivity of the quasi-mirror-finish surface is near that of the mirror-finish surface, and that the IRS of the quasi-mirror-finish surface is near that of the electrical discharge machined surface.
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