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NiTi-TiB自蔓延高温合成颗粒的质量分数对直接激光沉积制备的Inconel 625-NiTi-TiB复合材料的相组成、结构和力学性能的影响

Effect of the Mass Fraction of NiTi-TiB SHS-Particles on the Phase Composition, Structure, and Mechanical Properties of Inconel 625-NiTi-TiB Composites Produced by Direct Laser Deposition.

作者信息

Matveev Alexey, Promakhov Vladimir, Schulz Nikita, Bakhmat Vladislav, Babaev Artem, Semenov Artem, Vorozhtsov Alexander

机构信息

Scientific and Educational Center "Additive Technologies", National Research Tomsk State University, 634050 Tomsk, Russia.

"Nova-Health" Limited Liability Company, St. Visotsky, 28/7, 634040 Tomsk, Russia.

出版信息

Materials (Basel). 2022 Oct 2;15(19):6861. doi: 10.3390/ma15196861.

Abstract

This paper studies the impact of the mass fraction of NiTi-TiB particles obtained by the method of self-propagating high-temperature synthesis (SHS) on the phase composition, structure, and mechanical properties of composites made by direct laser deposition from an Inconel 625-NiTiz-TiB powder mixture. Composites were obtained from a powder mixture with the mass fraction of particles at 5-10 wt%, and they consisted of an Inconel 625 metal matrix wherein ceramic inclusions of titanium diboride TiB were distributed. Increasing the mass fraction of SHS-produced NiTi particles from 30 to 95 wt% led to the emergence of a NiTi intermetallide phase in the matrix material as well as an increase in the average TiB particle size and formation of their agglomerates. In addition, an increase in the microhardness of the materials was observed. The graph of tensile strength of Inconel 625-NiTi-TiB samples has a parabolic shape with a maximum at 1000 MPa (when the mass fraction of SHS-produced NiTi-TiB particles is at 30 wt%). A further increase in the mass fraction of NiTi-TiB led to a decrease in the tensile strength down to 400 MPa. Here the deformation of samples decreases linearly as the ratio of composite particles in the initial mixture increases. From a comparative analysis of the results obtained, the optimal mass fraction of composite NiTi-TiB particles in the Inconel 625-NiTi-TiB powder mixture was found to be 5 wt%.

摘要

本文研究了通过自蔓延高温合成(SHS)法获得的NiTi-TiB颗粒质量分数对由Inconel 625-NiTi-TiB粉末混合物直接激光沉积制成的复合材料的相组成、结构和力学性能的影响。复合材料由颗粒质量分数为5-10 wt%的粉末混合物制成,它们由Inconel 625金属基体组成,其中分布有二硼化钛TiB陶瓷夹杂物。将SHS制备的NiTi颗粒质量分数从30 wt%提高到95 wt%,导致基体材料中出现NiTi金属间相,同时平均TiB颗粒尺寸增大并形成团聚体。此外,还观察到材料的显微硬度增加。Inconel 625-NiTi-TiB样品的拉伸强度曲线呈抛物线形状,在1000 MPa时达到最大值(当SHS制备的NiTi-TiB颗粒质量分数为30 wt%时)。NiTi-TiB质量分数的进一步增加导致拉伸强度降至400 MPa。此处,随着初始混合物中复合颗粒比例的增加,样品的变形呈线性下降。通过对所得结果的比较分析,发现Inconel 625-NiTi-TiB粉末混合物中复合NiTi-TiB颗粒的最佳质量分数为5 wt%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2068/9571757/952fe6299b15/materials-15-06861-g001.jpg

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