The Prospects of Abrasive Treatment of Tough-To-Machine Materials

M. Palacz, T. Ivanova, A. Kozlov, Wojciech Kaniak
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Abstract

Abstract In current conditions, great attention is paid to the quality of parts, which is in many ways determined by finishing operations of mechanical treatment, with surface grinding being the most widespread. Grinding process efficiency, abrasive tool wear intensity, machined surface quality and other features of grinding process depend on properties of the environment, where the cutting process takes place. Forced changing of conditions of this environment is one of the ways to control and optimize the grinding process, which can be reached due to finding new technological decisions. One of the most promising directions to solve this problem is the process of face grinding with discontinuous grinding tool and supply of cooling fluid or air in the cutting zone directly. Carried analysis of features of face grinding has shown that heat density can be decreased by the usage by grooved wheels with vortex air cooling or by supply of cooling-lubricant technological fluid. Obtained dependences of temperature field of part surface during grinding establish the influence of the length of working shoulders and grooves, vortex tubes number, outflow rate, temperature and flow rate of cold vortex flow of air. These data provide conscious control over the process of discontinuous face grinding by changing wheel grain size and grinding speed.
难加工材料磨料处理的展望
在目前的条件下,人们非常重视零件的质量,而零件的质量在很多方面都是由机械处理的精加工操作决定的,其中表面磨削是最普遍的。磨削过程的效率、磨具磨损强度、加工表面质量等磨削过程的特征取决于切削过程发生的环境的性质。强制改变这种环境条件是控制和优化磨削过程的途径之一,这可以通过寻找新的工艺决策来实现。解决这一问题的一个最有前途的方向是在切削区直接提供冷却液或空气的非连续磨刀面磨削过程。对端面磨削的特点进行了分析,表明采用带涡冷的槽形砂轮或提供冷却-润滑工艺液可以降低磨削的热密度。得到了磨削过程中零件表面温度场的依赖关系,建立了工作肩和工作槽长度、涡流管数量、空气冷涡流量、温度和流量对工件表面温度场的影响。这些数据可以通过改变砂轮粒度和磨削速度来实现对断裂面磨削过程的有意识控制。
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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