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Empirical estimation of grinding specific forces and energy based on a modified Werner grinding model

机译:基于改进的Werner研磨模型的研磨特定力和能量的经验估计

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Advanced grinding processes include relatively new grinding processes such as Creep Feed, HEDG and VIPER grinding. These processes are more productive than conventional ones as a result of favourable process kinematics. Proper understanding of grinding forces can be useful in designing grinding machine tools and fixtures. Additionally information on specific energy helps in selecting process parameters for achieving optimum output In the present paper, analysis of the effects of process parameters, tribology, work material and auxiliary equipment on grinding forces and specific energy has been carried out. Existing models have been critically analysed and Werner's specific force model was found to be quite promising for advanced grinding processes. It was found that under specific boundary conditions and environment, similar to advanced grinding processes, this model estimates grinding forces with acceptable accuracy. Werner's model was further analysed and an alternative and slightly modified one was proposed. The proposed models were validated using experimental data from the literature and good agreement between the calculations and the experiments was found.
机译:先进的研磨方法包括相对较新的研磨过程,如蠕变饲料,河床和毒剂研磨。由于有利的过程运动学,这些过程比传统的过程更高效。正确理解磨削力可用于设计磨床和固定装置。另外具体的能量信息在用于实现最佳的输出在本文件中选择的工艺参数会有所帮助,的工艺参数,摩擦学,工作材料和辅助设备上磨削力和比能的影响分析已经进行了。现有模型受到严格分析,并且发现Werner的特定力模型对于高级磨削过程非常有前途。发现,在特定的边界条件和环境下,类似于先进的研磨过程,该模型以可接受的准确度估计研磨力。 Werner的模型进一步分析,提出了另一种和略微修改的模型。拟议的模型使用来自文献的实验数据和计算和实验之间的良好一致性验证。

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