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Simulation investigation of through-feed centerless grinding process performed on a surface grinder

机译:平面磨床进给无心磨削过程的仿真研究

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This paper proposes a simulation method for investigating the through-feed centerless grinding process performed on a surface grinder, where a compact centerless grinding unit, composed of a guide plate, an ultrasonic elliptic-vibration shoe, a blade, and their respective holders, is installed onto the worktable of a surface grinder, and the through-feed centerless grinding operation is performed as the workpiece located on the guide plate is fed into the space between the grinding wheel and ultrasonic shoe. The geometrical arrangement of the grinding apparatus including the contact lines on the grinding wheel, ultrasonic shoe, and blade are analyzed firstly for building a 3-D simulation model. Then, the workpiece forming process and the effects of major process parameters such as the workpiece eccentric angle, the stock removal, the ultrasonic shoe tilt angle and the applied voltage amplitude on the machining accuracy (i.e. workpiece cylindricity and roundness) are clarified by simulation and experiments. The obtained results indicate that higher machining accuracy can be achieved under the conditions of larger workpiece stock removal, smaller ultrasonic shoe tilt angle and higher applied voltage amplitude, while the workpiece eccentric angle is at 6.
机译:本文提出了一种模拟方法,用于研究在平面磨床上进行的直进式无心磨削过程,其中,紧凑型无心磨削单元由导向板,超声波椭圆振动靴,刀片及其各自的支架组成。安装在平面磨床的工作台上,然后将位于导向板上的工件送入砂轮和超声靴之间的空间中,从而进行无馈通无心磨削操作。首先分析包括在砂轮,超声靴和刀片上的接触线的研磨设备的几何布置,以建立3-D仿真模型。然后,通过仿真和仿真,阐明了工件的成型过程以及主要工艺参数(如工件偏心角,切削量,超声靴倾斜角和施加的电压幅度)对加工精度(即工件的圆柱度和圆度)的影响。实验。所获得的结果表明,在工件偏心角为6的情况下,较大的工件切削量,较小的超声靴倾斜角和较高的施加电压幅度可以实现更高的加工精度。

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