OPTIMISATION OF INTERRUPTED GRINDING PARAMETERS ACCORDING TO THE TEMPERATURE CRITERION

Fedir Nоvikоv
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Abstract

In the paper analytical optimization of discontinuous grinding parameters according to temperature criterion is carried out and on its basis conditions for significant reduction of cutting temperature, which consist mainly in increasing the number of contacts of working ledges of discontinuous wheel with fixed cross-section of machined workpiece, are determined. It is established by calculations that providing 20 contacts the cutting temperature may be reduced up to 3 times in comparison with the conventional grinding by a continuous wheel. This is achieved in the conditions of deep interrupted grinding with relatively low workpiece speed, as in the conditions of traditionally used multipass interrupted grinding not more than 6 contacts of working ledges of an interrupted wheel with the fixed cross-section of the workpiece are realized and the cutting temperature is reduced only in the range of 50 %. It is established by calculations that the minimum of cutting temperature at discontinuous grinding is achieved under conditions of equality of lengths of the working shoulder and the notch on the discontinuous grinding wheel and their reduction. It is also established that excess of the length of the working ledge over the length of the notch of the discontinuous wheel leads to insignificant increase of the cutting temperature. This reduces the wear of the discontinuous wheel and increases the machining capacity without actually increasing the cutting temperature. The paper shows that the obtained theoretical solutions are a necessary condition for ensuring a significant reduction of cutting temperature in discontinuous grinding. A sufficient condition should be considered as complete or partial cooling of grinding zone between contacts of machined workpiece with working jaws of discontinuous grinding wheel by intensive supply of effective technological media into the grinding zone.
根据温度准则对中断磨削参数进行优化
本文根据温度准则对断续磨削参数进行了解析优化,并在此基础上确定了显著降低切削温度的条件,主要是增加被加工工件横截面固定的断续砂轮工作缘的接触次数。通过计算确定,在提供20个接触点的情况下,与传统的连续砂轮磨削相比,切削温度可降低3倍。这是在工件速度相对较低的深度中断磨削条件下实现的,因为在传统使用的多道中断磨削条件下,一个中断轮的工作边缘与工件的固定横截面不超过6个接触,并且切割温度仅降低了50%。通过计算得出,在工作肩与断续砂轮上的缺口长度及其减小量相等的条件下,实现了断续磨削时切削温度的最小值。研究还表明,当工作凸台长度超过不连续砂轮缺口长度时,切削温度的升高不显著。这减少了不连续轮的磨损,增加了加工能力,而实际上没有增加切削温度。得到的理论解是保证断续磨削时切削温度显著降低的必要条件。在被加工工件与不连续砂轮的工作爪接触之间,通过向磨削区大量提供有效的工艺介质,使磨削区完全或部分冷却是充分条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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