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Experimental Study of Tangential-feed Centerless Grinding Process Performed on Surface Grinder

机译:平面磨床切向进给无心磨削工艺的实验研究

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In our previous study, a new centerless grinding method using surface grinder was proposed. In this method, a compact unit consisting mainly of an ultrasonic elliptic-vibration shoe, a blade, and their respective holders is installed on the worktable of a multipurpose surface grinder to conduct tangential-feed centerless grinding operations. For the complete establishment of this new method, firstly in this paper workpiece rotational speed control tests were carried out to make sure that the workpiece rotational speed is exactly controlled by the elliptic vibration of shoe to achieve high-precision centerless grinding. Then, the effects of the process parameters such as the worktable feed rate, the stock removal and the workpiece rotational speed on the workpiece roundness were clarified experimentally. The obtained results showed that (1) The workpiece rotational speed can be controlled exactly by the shoe ultrasonic vibration, (2) The roundness is improved with the increases in the voltage applied and the stock removal, but the decrease in the worktable feed rate; The best roundness obtained was 0.84μm.
机译:在我们以前的研究中,提出了一种新的使用平面磨床的无心磨削方法。在这种方法中,将紧凑型单元安装在多功能平面磨床的工作台上,该紧凑单元主要由超声波椭圆振动靴,刀片及其各自的支架组成,以进行切向进给无心磨削操作。为了完全建立这种新方法,本文首先进行了工件转速控制试验,以确保工件的转速由靴的椭圆振动精确控制,以实现高精度的无心磨削。然后,通过实验弄清了工作参数,如工作台进给速度,切削量和工件转速对工件圆度的影响。得到的结果表明:(1)可以通过靴形超声波振动精确地控制工件的转速;(2)随着施加电压的增加和切削量的增加,圆度得到改善,但工作台进给速度的降低;获得的最佳圆度为0.84μm。

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