Study of the structure and properties of products made of heat-resistant alloys based on Ni-Cr-CrN with a high nitrogen content by direct metal laser sintering

Manzur Kh. Ziatdinov, A. Zhukov, N. Evseev, M. A. Markov, V. Bobyr, D. A. Tkachev, P. Nikitin
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Abstract

This work presents a study of the preparation of additive materials based on a nickel-chromium alloy of the Ni-Cr-CrN system by direct metal laser sintering (DMLS). The additive materials were produced on the EOS M270 setup (with the option of open editing modes). The research range: laser radiation from 100 to 200 W, the speed of the laser beam from 600 to 1100 mm/s. The chemical composition of the obtained materials is investigated. The composition indicates a high final content of nitrogen in the alloy (0.5%). The structure of the obtained samples and their mechanical characteristics, namely, the bending strength (1500 MPa) and Vickers microhardness (450 HV), have been investigated. The morphology, microstructure, and elemental analysis of the initial powder and the resulting additive materials were studied by scanning electron microscopy and X-ray spectral microanalysis on the TESCAN Vega research complex. Analysis of the structure shows that the elements Ni, Cr and Fe are distributed evenly over the entire area of the samples, which indicates a uniform Ni-Cr-CrN melt. Contribution of the authors: the authors contributed equally to this article. The authors declare no conflicts of interests.
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直接金属激光烧结制备高氮含量Ni-Cr-CrN耐热合金产品的组织和性能研究
本文研究了基于Ni-Cr-CrN体系的镍铬合金的直接金属激光烧结(DMLS)添加剂材料的制备。添加材料是在EOS M270设置上制作的(可选择打开编辑模式)。研究范围:激光辐射100 ~ 200w,激光束速度600 ~ 1100mm /s。研究了所得材料的化学成分。组成表明合金中氮的最终含量很高(0.5%)。研究了所得样品的组织及其力学特性,即抗弯强度(1500 MPa)和维氏显微硬度(450 HV)。在TESCAN Vega研究复合体上通过扫描电子显微镜和x射线光谱微分析研究了初始粉末和最终添加剂材料的形貌、微观结构和元素分析。组织分析表明,Ni、Cr和Fe元素均匀分布在样品的整个区域,表明Ni-Cr- crn熔体均匀。作者的贡献:作者对本文的贡献是平等的。作者声明没有利益冲突。
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