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Selective laser sintering and grinding performance of resin bond diamond grinding wheels with arrayed internal cooling holes

机译:具有串联内部冷却孔的树脂粘合金刚石磨轮的选择性激光烧结和研磨性能

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摘要

In this study, selective laser sintering was used to 3D print resin bond diamond grinding wheels with internal cooling holes. The mechanical properties and microstructures of the resin bond diamond grinding wheel were investigated. The grinding performance of 3D printed resin bond diamond grinding wheels with different internal cooling holes on the glass and cemented tungsten carbide was examined. The results show that 3D printed resin bond diamond wheels can be used to grind the glass and cemented tungsten carbide. Wheels containing internal cooling holes have lower grinding force. With increasing number and diameter of internal cooling holes, grinding forces on the glass decreased. Surface roughness up to 2-4 mu m on the glass and cemented carbide was obtained by present 3D printed resin bond diamond wheel.
机译:在该研究中,选择性激光烧结用于3d与内部冷却孔的印花树脂粘合金刚石砂轮。 研究了树脂粘合金刚石砂轮的机械性能和微观结构。 检查了3D印刷树脂粘合金刚石砂轮的研磨性能,玻璃上具有不同内部冷却孔和碳酸碳化钨。 结果表明,3D印刷树脂粘合金刚石轮毂可用于研磨玻璃和胶合碳化钨。 含有内部冷却孔的轮子具有较低的研磨力。 随着内部冷却孔的数量和直径增加,玻璃上的研磨力降低。 通过现有的3D印刷树脂粘合金刚石轮获得玻璃和硬质合金的表面粗糙度高达2-4μm。

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