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Modeling and predicting ground surface topography on grinding chatter

机译:磨削聊天地面造型和预测地面地形

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Surface integrity is a major factor to influence the contact property of the workpiece. Grinding is the common process to accomplish the workpiece’s surface integrity in modern mechanical processing. However, grinding chatter always stems from the inside of the grinding system and can result in the low precision of the workpiece’s surface topography. In order to investigate the relationship between the system’s dynamic characteristic and the workpiece’s surface topography, a two-DOF(Degree of Freedom) dynamic model in consideration with the three kind impacts is established accordingly. Then, the dynamic results are coupled into the grit trajectory equation with the grits’ non-Gaussian distribution on the grinding wheel. Finally, experiments are conducted to testify the validity of the proposed model. The conclusions can be applied to optimize the workpiece’s topography by adjusting the dynamic parameters to weaken the chatter’s influence.
机译:表面完整性是影响工件接触性能的主要因素。研磨是实现工件在现代机械加工中的工件表面完整性的共同过程。然而,研磨颤壳总是源于研磨系统的内部,并且可以导致工件表面形貌的低精度。为了研究系统的动态特性与工件表面形貌之间的关系,相应地建立了考虑三种(自由度)动态模型的动态模型。然后,动态结果与砂轮上的砂砾的非高斯分布耦合到砂砾轨迹方程中。最后,进行实验以证明所提出的模型的有效性。可以应用结论来通过调整动态参数来削弱喋喋不休的影响来优化工件的形貌。

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