Production of the VZh159-BrKhTsrT Multi-Material Using Selective Laser Melting Method

IF 0.6 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
A. V. Repnin, E. V. Borisov, A. A. Popovich, A. I. Shamshurin
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Abstract

The use of multiple materials in the design and manufacturing of components enhances their operational characteristics. The application of additive technologies is promising for creating complex multi-material products. There are prospects for producing multi-material components from heat-resistant alloys, including nickel alloys, for the aerospace industry. The aim of this study was to investigate the influence of printing parameters using selective laser melting on the porosity and structure of bronze alloy BrKhTsrT V and VZh159, including the effect of heat treatment on the structure, chemical and phase composition, and the hardness of the transition zone in multi-materials. Multi-material samples were manufactured using an SLM 280HL selective laser melting system. Various regimes were used to study the impact of printing parameters on the porosity in the transition zone of the multi-material samples. On the basis of results of the conducted research, the following conclusions were drawn: only a significant increase in energy leads to a reduction in porosity in the transition zones of multi-material samples. Heat treatment according to regimes characteristic of the BrKhTsrT V alloy and the VZh159 alloy does not have a significant effect on the microstructure and chemical composition of the transition zones. The sizes of the transition zones were evaluated, measuring 300 µm when building the BrKhTsrT V alloy on VZh159 and 250 µm when building the VZh159 alloy on BrKhTsrT V, respectively. After heat treatment typical for each alloy, peaks corresponding to the phases of both alloys are observed in the transition zones. Different heat treatments significantly affect the microhardness of the alloys for which they are standard.

Abstract Image

选择性激光熔化法制备VZh159-BrKhTsrT复合材料
在部件的设计和制造中使用多种材料可以增强其操作特性。增材制造技术在制造复杂的多材料产品方面具有广阔的应用前景。利用耐热合金(包括镍合金)生产多材料部件用于航空航天工业具有广阔的前景。本研究的目的是研究选择性激光熔融打印参数对BrKhTsrT V和VZh159青铜合金孔隙率和组织的影响,包括热处理对组织、化学成分和物相组成以及多材料过渡区硬度的影响。采用SLM 280HL选择性激光熔化系统制备多材料样品。采用不同的方法研究了打印参数对多材料样品过渡区孔隙率的影响。根据所进行的研究结果,得出以下结论:只有能量的显著增加才会导致多材料样品过渡区的孔隙率降低。根据BrKhTsrT V合金和VZh159合金的特点进行热处理,对过渡区的组织和化学成分没有显著影响。对过渡区尺寸进行了评估,在VZh159上构建BrKhTsrT V合金时,过渡区尺寸为300µm,在BrKhTsrT V上构建VZh159合金时,过渡区尺寸为250µm。经过每种合金的典型热处理后,在过渡区观察到两种合金相对应的峰。不同的热处理方式对标准合金的显微硬度有显著影响。
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来源期刊
Russian Journal of Non-Ferrous Metals
Russian Journal of Non-Ferrous Metals METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.90
自引率
12.50%
发文量
59
审稿时长
3 months
期刊介绍: Russian Journal of Non-Ferrous Metals is a journal the main goal of which is to achieve new knowledge in the following topics: extraction metallurgy, hydro- and pirometallurgy, casting, plastic deformation, metallography and heat treatment, powder metallurgy and composites, self-propagating high-temperature synthesis, surface engineering and advanced protected coatings, environments, and energy capacity in non-ferrous metallurgy.
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