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A study on diamond grinding wheels with regular grain distribution using additive manufacturing (AM) technology

机译:利用增材制造(AM)技术研究具有规则晶粒分布的金刚石砂轮

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In this paper, a metal bound diamond grinding wheel with a regular grain distribution was fabricated based on 3D printing technology, which provides a solution to the irregular grain distribution and complicated preparation processes of diamond grinding wheels for use in precise/ultraprecise grinding. A grinding wheel was designed in 3D with pro/E, and the data transformation to the stereo-lithography format was carried out. The fabrication of the diamond grinding wheel was achieved with Ni-Cr alloy and diamond by 3D printing and sintering layer by layer. Scanning Electron Microscopy (SEM), Energy Dispersive Spectrometry (EDS) and X-ray diffraction (XRD) were employed to characterize the grains and the micro-structures between the substrate and the Ni-Cr alloy in the diamond grinding wheel, suggesting the infiltration mechanism of Ni-Cr towards the diamond and steel substrate. Finally, the grinding performance was evaluated with an experiment. It was shown that the abrasion of the diamond grinding grains was normal, and no grains fell off the wheel. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,基于3D打印技术制造了具有规则晶粒分布的金属结合金刚石砂轮,这为用于精密/超精密磨削的金刚石砂轮的不规则晶粒分布和复杂的制备工艺提供了解决方案。使用pro / E在3D中设计了一个砂轮,并将数据转换为立体光刻格式。金刚石砂轮的制造是通过Ni-Cr合金和金刚石通过3D打印和逐层烧结实现的。利用扫描电子显微镜(SEM),能量色散谱(EDS)和X射线衍射(XRD)表征了金刚石砂轮中基体与Ni-Cr合金之间的晶粒和微观结构,表明其渗透铬对金刚石和钢基底的腐蚀机理。最后,通过实验评价研磨性能。结果表明,金刚石磨粒的磨损是正常的,并且没有任何颗粒从砂轮上掉落。 (C)2016 Elsevier Ltd.保留所有权利。

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