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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Grinding efficiency and profile accuracy of diamond grinding wheels dressed with wire electrical discharge conditioning (WEDC)
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Grinding efficiency and profile accuracy of diamond grinding wheels dressed with wire electrical discharge conditioning (WEDC)

机译:采用线切割调节 (WEDC) 修整金刚石砂轮的磨削效率和轮廓精度

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摘要

Super abrasive diamond grinding wheels are the most promising tools for the precision machining of advanced ceramics and carbide materials. However, the efficiency of conventional conditioning of these tools is limited owing to high dressing tool wear, long process time, low form flexibility, and induced damage to the abrasive grains. Wire electrical discharge machining (WEDM) is an alternative method for conditioning of superabrasive grinding wheels with electrically conductive bonding materials. In this study, cylindrical plunge grinding of an alumina ceramic with a resin-bonded diamond grinding wheel is investigated. The assigned type of resin bond contains copper particles and is accordingly electrically conductive for wire electrical discharge conditioning (WEDC). Conventional (mechanical) and WEDC methods are used for generating the same profile on two similar diamond grinding wheels. As a result, the specific grinding energy was reduced up to 26 and 29 during rough and finish plunge grinding, respectively. Reduced specific grinding energy and forces, along with more effective grain protrusion and sharpness by using WEDC for profiling of grinding wheels, have contributed positively to the ground surface conditions despite the relatively rougher wheel surface topography in comparison to the conventional profiling. The more considerable reduction in the mean roughness depth (Rz) than in the arithmetical mean roughness value (Ra) (11 smaller Rz values in WEDC versus mechanical conditioning) verifies that the workpiece surface underwent less surface degradation in case of WEDC because of smaller grinding forces. Furthermore, the profile wear behavior of the workpiece ground with the WED conditioned grinding wheel was superior to the conventionally conditioned one.
机译:超磨砂金刚石砂轮是先进陶瓷和硬质合金材料精密加工最有前途的工具。然而,由于修整工具磨损大、加工时间长、形状柔韧性低以及对磨粒的诱发损坏,这些工具的常规调节效率受到限制。线切割加工 (WEDM) 是使用导电粘合材料对超硬磨料砂轮进行调质的替代方法。本研究研究了使用树脂结合金刚石砂轮对氧化铝陶瓷进行外圆切入磨削的研究。指定类型的树脂粘结剂含有铜颗粒,因此具有导电性,可用于电线放电调节 (WEDC)。传统(机械)和WEDC方法用于在两个相似的金刚石砂轮上生成相同的轮廓。因此,在粗磨和精切磨期间,比磨削能量分别降低了 26% 和 29%。尽管与传统仿形相比,砂轮表面形貌相对粗糙,但通过使用 WEDC 对砂轮进行轮廓加工,降低了比磨削能量和力,以及更有效的晶粒突出和锋利度,对磨削表面状况做出了积极贡献。平均粗糙度深度 (Rz) 的减少比算术平均粗糙度值 (Ra) 的减少更大(与机械调节相比,WEDC 的 Rz 值小 11%)验证了在 WEDC 情况下,由于磨削力较小,工件表面的表面退化较小。此外,使用WED调理砂轮磨削的工件的轮廓磨损行为优于传统调质砂轮。

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