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Experimental investigations of grinding forces in elliptical ultrasonic assisted grinding (EUAG) of monocrystal sapphire

机译:椭圆形超声辅助研磨(EuAg)磨削力的实验研究单晶蓝宝石

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Grinding forces characteristics in elliptical ultrasonic assisted grinding (EUAG) of sapphire are investigated experimentally. The EUAG is a new grinding method proposed by the present authors in which an elliptical ultrasonic vibration is imposed on the workpiece by using an elliptical ultrasonic vibrator. In this paper, grinding experiments under the presence/absence of ultrasonic vibration assistance are performed. The effects of the vibration amplitude and grinding parameters such as the depth of cut, the grinding wheel speed on the grinding forces, grinding force ratio F_n/F_t are clarified. The obtained conclusions are as follows: the grinding forces during EUAG lowers to 50% and grinding forces ratio becomes reduced by 33% compared that during conventional grinding (CG); the grinding forces during EUAG have the less variation rate than those during CG as grinding parameters change; higher grinding wheel speed causes the larger grinding forces in CG, but has little effect on the variation of grinding forces in EUAG. By using EUAG method, the grinding forces and force ratio are greatly decreased, and surface quality is better, meaning that grindability of sapphire material is improved.
机译:实验研究了蓝宝石椭圆形超声波辅助研磨(EuAg)的磨削力特征。 EuAg是本作者提出的新研磨方法,其中通过使用椭圆形超声振动器在工件上施加椭圆形超声波振动。在本文中,进行了在存在/不存在超声波振动辅助下进行研磨实验。振动幅度和研磨参数如诸如切割深度,研磨车轮速度对磨削力的影响,阐明了研磨力比F_n / F_t。所获得的结论如下:在EuAg期间的研磨力降低至50%,并且在常规研磨(CG)期间,研磨力比率降低了33%;在EuAG期间的研磨力具有比CG期间的变化率较小,因为研磨参数变化;较高的磨轮速度导致CG中的较大的研磨力,但对EuAg中研磨力的变化几乎没有影响。通过使用EuAg方法,磨削力和力比大大降低,表面质量更好,这意味着蓝宝石材料的研磨性得到改善。

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