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Resin Bonded CBN Grinding Wheel Dressing by Laser —Simulation and Experiment

机译:树脂粘结CBN砂轮的激光修整—模拟与实验

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摘要

Due to the large difference in thermal properties of the resin and the abrasive grits, the laser-assisted dressing technology is of great interest for grinding wheel preparation. From a viewpoint of thermal induced material removal mechanism, a numerical method was presented to simulate the laser dressing process. The numerical simulation results could reveal the relations between the laser parameters and the groove formation. The overlap coefficient was introduced for practical application. Simulation for the variation of the number of active grinding points was also made for non-uniform wheel topography. Based on the numerical modeling, the suitable grinding wheel surface topography can be achieved through the laser-assisted dressing technology. The comprehensive researches on the laser-assisted dressing process control, grinding wheel topography reconfiguration by 3D laser scanning technology and analyses of grinding temperature were made. A series of grinding tests with the laser-assisted dressed grinding wheel and mechanically dressed grinding wheel were conducted for comparison. The results proved the feasibility of laser-assisted dressing for resin bonded superabrasive grinding wheels and revealed the importance of choosing appropriate laser dressing parameters.
机译:由于树脂和磨粒的热性能差异很大,因此激光辅助修整技术对砂轮的制备非常感兴趣。从热诱导材料去除机理的角度出发,提出了一种数值方法来模拟激光修整过程。数值模拟结果可以揭示激光参数与沟槽形成之间的关系。介绍了重叠系数的实际应用。对于非均匀砂轮形貌,还对有效磨削点数量的变化进行了仿真。基于数值模型,可以通过激光辅助修整技术获得合适的砂轮表面形貌。进行了激光辅助修整过程控制,利用3D激光扫描技术对砂轮形貌进行重构以及对磨削温度进行分析的综合研究。为了进行比较,使用了激光辅助修整砂轮和机械修整砂轮进行了一系列磨削测试。结果证明了激光辅助修整树脂粘结的超级磨料砂轮的可行性,并揭示了选择合适的激光修整参数的重要性。

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