Dimensional optimisation of the flat-faced grinding wheel to achieve interference free and rigid gear grinding

Siying Ling, Peng Qin, Liding Wang
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Abstract

Higher gear-grinding accuracy can be obtained by using a flat-faced grinding wheel (FGW) and a generating method. However, the phenomenon of interfering with the adjacent tooth will happen when an unsuitable outer-edge width of the FGW is dressed. In order to optimise the shape of the FGW and further improve its rigidity and grinding accuracy, studies on the relative motion trajectory of the FGW, the correlations of the maximum outer-edge width (wmax) with the head frame setting angle (HSA, αy) and the adjustment quantity (E) in the feed direction were conducted. Finally a motion simulation and a grinding experiment verified the reasonability of the mathematical model and several improved measures to achieve interference free and rigid gear grinding were obtained. The results have important significances on formulation of scientific ultra-precision gear-grinding processes. [Received 23 February 2014; Revised 23 October 2014; Accepted 02 December 2014]
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平面砂轮尺寸优化,实现无干涉、刚性齿轮磨削
采用平面砂轮和生成方法可以获得较高的磨齿精度。但是,当外缘宽度不合适时,会产生干扰相邻齿的现象。为了优化FGW的形状,进一步提高其刚度和磨削精度,研究了FGW的相对运动轨迹、最大外缘宽度(wmax)与头架设置角(HSA, αy)和进给方向调整量(E)的相关性。最后通过运动仿真和磨削实验验证了数学模型的合理性,并提出了实现无干涉刚性齿轮磨削的改进措施。研究结果对制定科学的超精密磨齿工艺具有重要意义。[2014年2月23日收到;2014年10月23日修订;接受2014年12月2日]
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