引入钨粉,采用线喂添加剂电子束法制备钢基金属基复合材料

A. Chumaevsky, N. Shamarin, A. Panfilov, A. Zykova, A. Filippov, E. Moskvichev, V. Е. Rubtsov, E. Kolubaev
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引用次数: 0

摘要

通过在打印过程中额外引入钨粉,采用线馈式电子束添加剂技术制备了基于40Cr9Si2钢的复合材料样品。控制线材和粉末的进给,可以在样品的表层形成复合结构,同时保持样品体的高强度和塑性。表面层中钨的含量平稳增加。这对样品的结构有积极的影响,并防止在母材和表层之间的边界开裂或分层。与样品体相比,随着钨的引入,层的抗拉强度降低。在这种情况下,表面层的特点是耐磨性成倍增加,特别是在升高的测试温度下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Obtaining a steel-based metal matrix composite by wire-feed additive electron beam manufacturing with the introduction of tungsten powder
Wire-feed electron-beam additive technology is used to produce samples of a composite material based on the 40Cr9Si2 steel by additionally introducing tungsten powder during printing. Controlling the feed of wire and powder makes it possible to form composite structures in the surface layers of the samples while maintaining the sample bulks with high strength and plasticity. The content of tungsten in the surface layer increases smoothly. This has a positive effect on the structure of the samples and prevents cracking or delamination at the boundary between the base metal and the surface layer. The tensile strength of the layers decreases with the introduction of tungsten in comparison with the bulk of the sample. In this case, the surface layers are characterized by a multiple increase in wear resistance, especially at elevated test temperatures.
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