OPTIMIZATION OF STRENGTHENING TREATMENT OF PARTS WITH AN OSCILLATING TOOL

M. Tamarkin, E. Tischenko, Omar S.A. Hashash, R. Tishchenko
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Abstract

The research objective is to study the technological capabilities and develop methods for designing highly efficient technological processes of strengthening treatment of parts with an oscillating tool - an eccentric strengthener. The tasks are theoretical modeling of the the oscillating tool processing dynamics, theoretical modeling and experimental studies of forming surface roughness, the depth of the strengthened layer and the degree of parts deformation during treatment with an oscillating tool, as well as the development of a technique for designing high-efficiency technological processes. A new method of machining parts by surface plastic deformation is proposed. The dependences of the influence of treatment modes, design characteristics of the equipment and physical and mechanical properties of treated part materials on the quality parameters of the surface layer (surface roughness, depth of the strengthened layer and the degree of deformation) are obtained. The dependence for determining the treatment time is presented. The theoretical dependences obtained are experimentally verified and found to be adequate according to the results of experimental studies. The regularities of designing technological processes ensuring an increase in the operational properties of the machined parts are developed. An engineering calculation technique of optimal parameters of technological processes for machining parts with an oscillating tool is developed in order to increase their operational properties. A method for optimizing the technological processes of machining parts with an oscillating tool is proposed. A software product is developed that allows performing technological design using microprocessor technology.
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摆动刀具零件强化处理的优化
本研究的目的是研究偏心强化器振荡刀具对零件进行强化处理的技术能力,并开发设计高效工艺流程的方法。主要工作包括:振荡刀具加工动力学的理论建模,振荡刀具加工过程中成形表面粗糙度、强化层深度和零件变形程度的理论建模和实验研究,以及高效工艺流程设计技术的开发。提出了一种利用表面塑性变形加工零件的新方法。得到了处理方式、设备设计特点和被处理零件材料的物理力学性能对表层质量参数(表面粗糙度、强化层深度和变形程度)的影响的依赖关系。给出了确定处理时间的依赖关系。根据实验研究的结果,所得到的理论依赖关系经过实验验证,是充分的。提出了提高加工零件使用性能的工艺流程设计规律。为提高摆动刀具加工零件的操作性能,提出了摆动刀具加工工艺过程最优参数的工程计算方法。提出了一种用摆动刀具加工零件的工艺流程优化方法。开发了一种软件产品,允许使用微处理器技术进行工艺设计。
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