The effect of gas atmosphere on the coating formation by electric arc surfacing with cermet SHS electrodes of the TiB2–Co2B composition

A. O. Zhidovich, A. Stolin, A. Chizhikov, P. Bazhin, A. Konstantinov
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Abstract

Due to their unique properties, metal-matrix composite materials, when used as a surfacing material for electric arc surfacing, provide high properties of the deposited layers. SHS-extrusion is a promising method for a wide range of surfacing metal-matrix electrodes. The gas environment of surfacing affects the quality of coatings formed by SHS electrodes, their microstructure and properties. In this paper, cermet SHS electrodes of the TiB2–Co2B composition obtained by SHS-extrusion were used to form protective coatings on a steel substrate by electric arc surfacing in an argon atmosphere and in a nitrogen atmosphere. The elemental and phase composition, as well as the microstructure of the deposited layers, were investigated. Based on the conducted studies, the influence of the gas atmosphere on the formation of the structure of cermet coatings was established. It is shown that, despite the similar phase composition, there are fundamental differences in the microstructures of the deposited coatings, which are caused by the partial fusion of the tungsten electrode and the transfer of the electrode material in the coating during surfacing in an argon atmosphere. The maximum values of the microhardness of coatings deposited in a nitrogen atmosphere exceed the maximum microhardness of coatings obtained by surfacing in an argon atmosphere by 200–450 HV.
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研究了气氛对TiB2-Co2B陶瓷SHS电极电弧堆焊形成镀层的影响
由于其独特的性能,金属基复合材料作为电弧堆焊的堆焊材料,可以提供较高的堆焊层性能。shs挤压是一种很有前途的方法,可用于各种表面金属基电极。表面气体环境影响SHS电极镀层的质量、微观结构和性能。本文利用SHS挤压法制备的TiB2-Co2B成分的金属陶瓷SHS电极,在氩气气氛和氮气气氛下电弧堆焊,在钢基体上形成保护涂层。研究了沉积层的元素组成、相组成和显微组织。在此基础上,确定了气体气氛对金属陶瓷涂层结构形成的影响。结果表明,尽管相组成相似,但镀层的显微组织存在根本差异,这是由于在氩气气氛中堆焊时钨电极的部分熔合和镀层中电极材料的转移造成的。在氮气气氛中沉积的涂层的最大显微硬度值超过在氩气气氛中沉积的涂层的最大显微硬度值200-450 HV。
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