脉冲喷流电弧金属化法镀层残余应力的检测

O. M. Serenko, I. Zakharova
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The data on the study of the main types of residual (internal) stresses, as I type, distributed in the volume of the whole part (sample) with coating, and II type, localized in the volume of sprayed particles, are systematized. Findings. We presented investigations of the residual stresses arising in the applied layer, the magnitude and nature of the distribution of which depend on the type, base and sprayed materials, methods and parameters of spraying, the rigidity of the part, and other factors. The important role of evaluating residual stresses in a thermal gas coating by the calculation method is shown in connection with the complexity of the experimental determination of the kinetics of stress development in the coating-base composite. Originality. 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引用次数: 0

摘要

目的。作者提出了一种基于基底几何(试样挠度)变化幅度和层厚导数变化规律的数学模型,用于计算确定热气体涂层任意层的残余应力,并通过改变每种喷涂涂层的喷涂工艺参数来进一步调节这些应力。方法。在已有焊接接头应力检测工作的基础上,提出了逐层喷涂后试样挠度的测定方法。这些挠度参数是建立影响应力状态的数学模型的基础。对主要残余(内)应力类型的研究数据进行了系统整理,其中I型分布在涂覆部分(样品)的整体体积中,II型分布在喷涂颗粒的体积中。发现。我们介绍了在涂层中产生的残余应力的研究,其分布的大小和性质取决于类型,基底和喷涂材料,喷涂方法和参数,零件的刚度和其他因素。通过计算方法评估热气体涂层中残余应力的重要作用与涂层基复合材料中应力发展动力学的实验测定的复杂性有关。创意。本工作的作者在第一个创建的数学模型和软件产品Mathcad-Prime 6 2020的基础上,对各种材料的气热逐层喷涂过程中涂层中残余应力形成的水平和原理进行了研究,包括使用脉动喷涂气流的可能性。分析研究表明,在过去的五到七年中,文献中的注意力只集中在焊接接头的残余应力和变形的研究上,只有对喷涂技术的日益增长的兴趣才为研究热气体涂层中应力场的形成开辟了广阔的可能性。实际的相关性。本文的结果证实了涂层中残余应力的形成,可以作为计算程序来解决设计任务,也可以用于工程领域专家培训的教育目的。
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DETECTION OF RESIDUAL STRESSES IN COATINGS OBTAINED BY THE METHOD OF ARC METALLIZATION WITH A PULSATING SPRAYING FLOW
Purpose. The authors propose to develop a mathematical model for the calculated determination of residual stresses in arbitrary layer of a thermal gas coating based on the change magnitude in the base geometry (sample deflection) and the variation law of the layer thickness derivative, further regulation of these stresses by changing the technological parameters of spraying for each type of sprayed coating. Methodology. Based on known works on stress detection of in welded joints, the approach of determination of samples deflection after layer-by-layer spraying was developed. These deflection parameters are the basis for the developed mathematical model of influence on the stress state. The data on the study of the main types of residual (internal) stresses, as I type, distributed in the volume of the whole part (sample) with coating, and II type, localized in the volume of sprayed particles, are systematized. Findings. We presented investigations of the residual stresses arising in the applied layer, the magnitude and nature of the distribution of which depend on the type, base and sprayed materials, methods and parameters of spraying, the rigidity of the part, and other factors. The important role of evaluating residual stresses in a thermal gas coating by the calculation method is shown in connection with the complexity of the experimental determination of the kinetics of stress development in the coating-base composite. Originality. The authors of this work, on the basis of the first created mathematical model and software product Mathcad-Prime 6 2020, conducted a study of the level and principles of the formation of residual stresses in the coating during gas-thermal layer-by-layer spraying with various material, including the possibility of using a pulsating spraying air flow. Analytical studies have shown that the attention in the literature over the past five to seven years has been paid only to the study of residual stresses and deformations in welded joints, and only the growing interest in spraying technology opens up wide possibilities for studying the formation of stress fields in a thermal gas coating. Practical relevance. The results obtained in this paper confirm the formation of residual stresses in coatings and can be used as computational programs to solve design tasks, as well as for educational purposes during experts training in engineering fields.
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