An information model concept for a thermomechanical process in grinding

Anatoly V. Usov, Maksym V. Kunitsyn, Yuriy I. Zaychyk
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Abstract

The purpose of the work is to present the concept of an information modelof the thermomechanical process in grinding of products from materials prone to defect formation due to the fact that their surface layer has hereditary defects of structural or technological origin.The products' strength and functionality depend on the inhomogeneity and defectiveness of the structure of the materials from which they are made. Such materials have many different micro defects formed in the surface layer of parts during the technological operations of their production. Reducing number of defectsin the finishing operations of these materials and increasing the operational properties of products made of these materials is an essential national and economical task, the solution of which leads to a significant saving of material resources, labour intensity and cost of manufacturing parts. The currently available information on the thermal processes of diamond abrasive processing is obtained on the assumption of the homogeneity of the materials being polished and needs to consider the presence of defects in the technological heredity of the products. The phenomenological approach in studying the causes of cracking of materials prone to this type of defect does not allow to revealthe mechanism of genesis and development of grinding cracks. The choice of the method of investigation of the mechanism of crack formation is based on micro-research related to inhomogeneities, which are formed in the surface layer of parts during previous technological operations. A mathematical model has been developed that describes thermomechanical processes in the surface layer during grinding of parts made of materials and alloys, taking into account their inhomogeneities, which affect the intensity of the formation of grinding cracks. Calculated dependences between the crack resistance criterion and the main controlling technological parameters were obtained. According to the known characteristics of hereditary defects, the limit values of thermomechanical criteria, which ensure the necessary quality of the surfaces of the processed products, are determined. Based on the obtained criterion ratios, an algorithm for selecting technological possibilities for defect-free processing of products from materials prone to loss of quality of the surface layer of parts was built. A decision support system has been developed to increase the efficiency of the finishing process management.
磨削热机械过程的信息模型概念
这项工作的目的是提出一个信息模型的概念,在磨削产品的热机械过程中,由于其表面层具有结构或技术来源的遗传缺陷,容易形成缺陷。产品的强度和功能取决于制造它们的材料结构的不均匀性和缺陷。这类材料在其生产的工艺操作过程中,在零件的表层形成了许多不同的微缺陷。减少这些材料精加工过程中的缺陷数量,提高由这些材料制成的产品的使用性能是一项重要的国家和经济任务,解决这一问题将大大节省材料资源,劳动强度和制造零件的成本。目前关于金刚石磨料加工热过程的信息是建立在被抛光材料均匀性的假设上的,需要考虑产品技术遗传缺陷的存在。在研究易产生这类缺陷的材料的裂纹原因时,用现象学方法不能揭示磨削裂纹的产生和发展机制。裂纹形成机理研究方法的选择是基于对零件表面不均匀性的微观研究,这些不均匀性是在以前的工艺操作中形成的。建立了一个数学模型,描述了材料和合金零件磨削过程中表层的热力学过程,考虑了它们的不均匀性,这影响了磨削裂纹的形成强度。计算得到了抗裂准则与主要控制工艺参数之间的依赖关系。根据遗传缺陷的已知特征,确定了保证加工产品表面必要质量的热力学标准的极限值。基于所得到的准则比,建立了从零件表面易发生质量损失的材料中选择产品无缺陷加工工艺可能性的算法。为了提高精加工过程管理的效率,开发了一个决策支持系统。
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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