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Analysis of the Grinding Mechanism with Wheel Head Oscillating Type CNC Crankshaft Pin Grinder

机译:砂轮机摆动式数控曲轴销磨床的磨削机理分析

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摘要

In this study, the crankshaft pin grinding mechanism, which is carried out with wheel head oscillating type CNC crankshaft pin grinder, is theoretically analyzed. In order to maintain grinding process, the pin rotates and also rocks along wheel working surface, because the wheel head oscillates with journal rotation. Then, it is made clear that cylindrical plunge grinding process progresses in the pin grinding process for the first time. Therefore, grinding speed ratio, which is defined as ratio of substantial pin surface speed to wheel surface speed, is firstly formulated. Secondly, undeformed chip size generated by a grain is estimated with the grinding velocity ratio. Finally, the grinding performance is predicted with experimental equations, which obtained previous study. By this simulation, it is made clear that dimensional accuracy and also surface roughness vary on whole of the pin surface with constant journal rotation grinding method. On the contrary, deviations of both the dimensional accuracy and the surface roughness are reduced with controlled speed ratio grinding method, in which journal rotation speed is adequately controlled.
机译:本研究从理论上分析了用砂轮头摆动型数控曲轴销磨床进行曲轴销磨削的机理。为了保持磨削过程,销会旋转,并且还会沿砂轮工作面摇摆,因为砂轮头会随着轴颈旋转而摆动。然后,可以清楚地看出,在销磨削过程中首次进行了圆柱切入磨削过程。因此,首先制定磨削速度比,该磨削速度比被定义为大的销表面速度与砂轮表面速度之比。其次,用磨削速度比估计由晶粒产生的未变形的切屑尺寸。最后,通过实验方程预测了磨削性能,该方程已获得了先前的研究。通过该模拟,可以清楚地看出,采用恒定轴颈旋转磨削方法,在整个销表面上尺寸精度以及表面粗糙度都会发生变化。相反,通过控制速度比磨削方法可以减小尺寸精度和表面粗糙度的偏差,在该方法中,轴颈旋转速度得到了适当的控制。

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