Study of quality criteria for two-phase iron-based composite coatings formed by plasma spraying

S. Y. Zhachkin, G. Trifonov, G. N. Egorova, A. G. Belyh
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引用次数: 1

Abstract

The increasing relevance in the field of repair and restoration of machines and mechanisms is acquiring gas-thermal methods of applying functional coatings to the working surfaces of parts of machine assemblies. The purpose of gas-thermal coating methods is to provide and obtain special physical and mechanical properties of the surface of the part, as well as to restore worn-out components and mechanisms after their long-term and intensive operation. Plasma spraying of composite coatings is an effective method of gas-thermal treatment of the surface of a part. In this paper, a study was conducted on the optimal selection of material for plasma spraying of a part, taking into account its operational features and types of wear of working surfaces. In particular, the operating conditions of the screw of the conveying conveyor are analyzed. The technological features of the application of composite materials by plasma spraying technology are considered. The theoretical selection of a two-phase dispersed-filled composite for application to the working surfaces of the screw in order to restore and harden it has been carried out. Studies and analysis of one of the main indicators of the quality of the formed coating after plasma spraying – the magnitude of the resulting residual stresses (stretching and compression) have been carried out. Taking as a basis the kinematic modes and geometry features of the working surfaces of the screw, as well as the criteria for the formation of the thickness of the sprayed layer, the calculation equations for determining the residual stresses arising on the screw and cylindrical surfaces of the screw of the conveying conveyor are obtained. It is concluded that in order to achieve the required physical and mechanical properties of the coating, the volume fraction of the filler in the matrix of the PG-SR4 composite powder should be in the range of 20–25%. Therefore, it is possible to use in practice a particulate-filled composite of the NiСrВSiFе type with 20–25% reinforcing TiC filler particles in order to restore parts of machines and mechanisms.
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等离子喷涂两相铁基复合涂层质量标准研究
在机器和机构的维修和修复领域,越来越多的相关性是获得将功能涂层应用于机器组件部件工作表面的气热方法。气热镀膜方法的目的是提供和获得零件表面的特殊物理和机械性能,以及恢复长期密集运行后磨损的部件和机构。等离子喷涂复合涂层是零件表面气热处理的一种有效方法。本文结合某零件的工作特点和工作表面的磨损类型,对其等离子喷涂材料的优化选择进行了研究。重点分析了输送输送机螺杆的运行工况。分析了等离子喷涂技术应用于复合材料的工艺特点。对螺杆工作表面的两相分散填充复合材料进行了理论选择,使螺杆工作表面得到恢复和硬化。对等离子喷涂后成形涂层质量的主要指标之一——残余应力(拉伸和压缩)的大小进行了研究和分析。以螺杆工作表面的运动模式和几何特征以及喷射层厚度形成的判据为基础,得到了确定输送输送机螺杆和螺杆圆柱表面残余应力的计算公式。结果表明,为获得镀层所需的物理力学性能,填料在PG-SR4复合粉末基体中的体积分数应在20 ~ 25%之间。因此,有可能在实践中使用含有20-25%增强TiC填充颗粒的NiСrВSiFе型颗粒填充复合材料,以恢复机器和机构的部件。
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