FINE GRIT TREATMENT OF RANGY PLATES

V. Scriabin
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Abstract

The features of the final machining of thin-walled plates are given. The calculation scheme for the kinematic parameters of abrasive finishing of thin-walled easily deformable plates and the mathematical dependence for calculating the pressure on the lapping faceplates with the processed parts are determined. The aim of the work is to obtain an analytical dependence that establishes the relationship between the operating parameters and the conditions of the abrasive finishing process with the roughness of the working surface of the plates. The task, which the article is devoted to solve is theoretical and experimental studies of the influence of technological modes and conditions of abrasive finishing of plates with complex relative movement of parts and lapping on the roughness of the treated surfaces, as well as in the development of a methodology for determining rational modes and conditions of surface treatment of thin-walled plates. Theoretical research was carried out on the basis of the main provisions of mechanical engineering technology, grinding theory, theoretical mechanics, theory of elasticity and plasticity, probability theory and mathematical statistics. Experimental studies have been carried out according to standard methods in production and laboratory conditions using certified control and measuring equipment. The obtained data were processed using computer technology and presented in the form of empirical dependencies that are convenient for practical application. The originality of the work consists in obtaining mathematical dependencies for calculating the kinematic parameters and parameters of the contact interaction of abrasive particles with the treated surfaces of the plates, which allow determining the rational values of the ratio of the speeds of movement of the plates and lapping.
宽板的细粒度处理
给出了薄壁板最终加工的特点。确定了易变形薄壁板磨料精加工运动参数的计算方案,确定了磨料精磨面与被加工零件研磨面压力计算的数学相关性。这项工作的目的是获得一种分析依赖性,建立操作参数和磨料精加工过程条件与板材工作表面粗糙度之间的关系。本文致力于解决的任务是对具有复杂零件相对运动和研磨的板的磨料精加工的工艺模式和条件对处理表面粗糙度的影响进行理论和实验研究,以及确定薄壁板表面处理的合理模式和条件的方法的发展。理论研究在机械工程技术、磨削理论、理论力学、弹塑性理论、概率论、数理统计等主要规定的基础上进行。在生产和实验室条件下,使用经过认证的控制和测量设备,按照标准方法进行了实验研究。所得数据采用计算机技术处理,并以经验依赖关系的形式呈现,便于实际应用。这项工作的独创性在于获得了计算运动参数和磨料颗粒与处理过的板表面接触相互作用参数的数学依赖关系,从而可以确定板的运动速度和研磨速度之比的合理值。
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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