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Preparation and performance of resin-bonded grinding wheel with braze-coated diamond grits

机译:用铜涂层金刚石砂砾的树脂粘合砂轮的制备与性能

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摘要

The use of braze coating is proposed to obtain a layer of filler alloy on different types of diamond grits for improving diamond grit retention in resin-bonded diamond wheels. The effects of brazing on surface morphology and mechanical properties of diamond grits were evaluated. Resin-bonded diamond wheels with braze-coated diamond grits were prepared, and the grinding performances of cemented carbide wheels with different diamond grits were tested. Brazing could successfully cover most of the diamond grits with a layer of filler alloy. Pores and bumps of several microns in size were observed as well as the formation of titanium carbide (TiC) between the coating and diamond grit. Toughness indexes (TIs) of coated single-crystal diamond grits (RVD) decreased only slightly, but significantly increased for coated polycrystal diamond grits (PDGF1). The wheel containing coated PDGF1 diamond grits exhibited the lowest grinding forces and highest grinding ratio among the four wheels evaluated, whereas the wheel with coated RVD diamond grits produced the highest grinding force and a relatively low grinding ratio.
机译:提出使用钎焊涂层以在不同类型的金刚石砂粒上获得一层填充合金,用于改善树脂粘合金刚石轮廓中的金刚石砂砾保持。评价钎焊对表面形态的影响和金刚石砂粒的力学性能。制备具有钎焊金刚石砂粒的树脂键合金刚石轮,并测试具有不同金刚石砂砾的硬质合金轮子的研磨性能。钎焊可以成功地用一层填充合金覆盖大部分金刚石砂砾。观察到尺寸尺寸的孔和凸起以及涂层和金刚石砂砾之间的碳化钛(TIC)的形成。涂覆的单晶金刚石粗砂(RVD)的韧性指数仅略微降低,但对于涂覆的多晶金刚石砂岩(PDGF1)显着增加。含有涂覆的PDGF1金刚石砂轮的车轮在评估的四个轮子中表现出最低的研磨力和最高的研磨比,而具有涂覆的RVD金刚石的车轮产生最高的研磨力和相对低的研磨比。

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