Optimization of Coating Process from Cermet Powders by Plasma Spraying in Air

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
V. Okovity, F. Panteleenko, V. V. Okovity, V. Astashinsky
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引用次数: 1

Abstract

The paper presents studies on the optimization of the process of applying coatings from cermet powders with different solid phase contents by plasma spraying in air to restore and harden parts of machines and mechanisms operating under adverse conditions. Such conditions are usually created in heavily loaded tribojoints when the mechanisms operate at a low speed of relative movement of surfaces during friction. At the same time, the destruction of the working surfaces is mainly due to the process of microcontact setting and subsequent detachment of the formed particles at their contact points. The application of special protective coatings with the required properties is possible with the manufacture of high-quality starting powder materials and optimization of the technology for their application. Such powders and powder compositions can be obtained by the method of agglomeration of a fine powder mixture with its subsequent high-temperature sintering. To identify the hardening mechanism of composite coatings made of cermet by gas-thermal spraying, important stages are the optimization of the deposition process parameters and the study of the properties of plasma coatings obtained in this case. When optimizing the technological parameters of plasma spraying of coatings, the utilization rate of the sprayed powder material has been taken into account as the main indicator of the process efficiency, the structure of the obtained layers, and the morphology of individual particles deposited on the polished surface. The paper provides data on the structural elements of sprayed materials for wear-resistant coatings obtained by plasma spraying at optimal conditions. Taking into account the processes that occur during the wear of tribological conjugations, the data indicate the existing prerequisites for the wear resistance of the studied composite coatings made of metal ceramics. Special wear-resistant coatings made of materials with a soft matrix hardened by solid inclusions Al2O3–TiO2–Ni–Cr–Al–Y are widely used in various industries. Based on the detailed analysis of the features of cermet plasma coatings, it can be stated that such powder compositions (complex oxides-metal component) are often used as wear-resistant plasma coatings. The research results can be taken into account in cases of application of wear-resistant plasma coatings made of metal-ceramics and compositions based on them, containing solid phases in the form of oxides, as well as the manufacture of a whole range of parts operating under conditions of intense wear.
空气等离子喷涂金属陶瓷粉末涂层工艺的优化
本文研究了在空气中等离子喷涂不同固相含量的金属陶瓷粉末涂层的工艺优化,以修复和硬化在恶劣条件下运行的机械和机构零件。当机构在摩擦过程中以较低的表面相对运动速度运行时,通常会在重载摩擦关节中产生这种情况。同时,工作面的破坏主要是由于微接触设置过程以及随后形成的颗粒在其接触点处的脱离。通过制造高质量的起始粉末材料和优化其应用技术,可以应用具有所需性能的特殊保护涂层。这种粉末和粉末组合物可以通过细粉末混合物的团聚及其随后的高温烧结的方法获得。为了确定气热喷涂金属陶瓷复合涂层的硬化机理,对沉积工艺参数进行优化和对所获得的等离子涂层性能进行研究是重要的两个阶段。在优化等离子喷涂涂层的工艺参数时,考虑了喷涂粉末材料的利用率作为工艺效率、获得的层的结构以及沉积在抛光表面的单个颗粒的形貌的主要指标。本文提供了在最佳条件下等离子喷涂耐磨涂层材料的结构元素数据。考虑到摩擦学共轭磨损过程中发生的过程,数据表明所研究的金属陶瓷复合涂层具有耐磨性的先决条件。由软基体经固体夹杂物Al2O3-TiO2-Ni-Cr-Al-Y硬化而成的特殊耐磨涂层广泛应用于各行业。在详细分析金属陶瓷等离子体涂层特点的基础上,指出这种粉末组合物(复合氧化物-金属成分)常被用作耐磨等离子体涂层。研究结果可用于应用由金属陶瓷和基于它们的组合物制成的含有氧化物形式的固相的耐磨等离子涂层,以及在强烈磨损条件下工作的所有部件的制造。
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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来源期刊
Science & Technique
Science & Technique ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
47
审稿时长
8 weeks
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