通过选择性激光熔化获得的 Zr57Cu15Ni10Nb5 合金的相组成、显微结构和力学性能

IF 3.3 Q2 ENGINEERING, MANUFACTURING Journal of Manufacturing and Materials Processing Pub Date : 2024-01-04 DOI:10.3390/jmmp8010010
R. Khmyrov, A. Korotkov, M. Gridnev, P. Podrabinnik, Tatiana V. Tarasova, Andrey V. Gusarov
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引用次数: 0

摘要

Zr57Cu15Ni10Nb5(又称 Vit-106)是一种前景看好的锆基合金,具有很高的玻璃化能力,属于所谓的块状金属玻璃(BMG)。BMG 合金可通过铸造获得三维尺寸均在一厘米左右的工件。然而,进一步增大铸件尺寸会降低冷却速度,从而导致结晶。选择性激光熔化(SLM)是一种众所周知的克服 BMG 尺寸限制的技术,因为工件是由多个熔体部分组成的,其中的冷却速率保持在临界速率以上。目前,通过 SLM 获得的 BMG 零件存在部分结晶的问题。本研究通过金相学研究了 SLM 工艺参数对 Vit-106 部分结晶的影响,并通过显微硬度和耐磨性测试研究了微观结构对机械性能的影响。在通过 SLM 获得的 Vit-106 合金的无定形基体中观察到了亚微米结晶夹杂物。夹杂物的大小和浓度可通过改变激光扫描速度来控制。结果表明,在 SLM 过程中在无定形基体中形成的亚微米晶体夹杂物会对显微硬度和耐磨性产生有利影响。
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Phase Composition, Microstructure and Mechanical Properties of Zr57Cu15Ni10Nb5 Alloy Obtained by Selective Laser Melting
Zr57Cu15Ni10Nb5 (more known as Vit-106) is a promising zirconium-based alloy with a high glass-forming ability, and belongs to the so-called bulk metallic glasses (BMG). Workpieces with a size of around one centimeter in all three dimensions can be obtained from a BMG alloy by casting. However, further increasing the cast size decreases the cooling rate and thus induces crystallization. Selective laser melting (SLM) is a well-known technique to overcome size limitations for BMGs because a workpiece is built by the addition of multiple melt portions in which the cooling rate is kept above the critical one. Currently, BMG parts obtained by SLM suffer from partial crystallization. The present work studies the influence of SLM process parameters on the partial crystallization of Vit-106 by metallography and the influence of the microstructure on mechanical properties by microhardness and wear resistance testing. Submicron crystalline inclusions are observed in an amorphous matrix of a Vit-106 alloy obtained by SLM. The size and the concentration of the inclusions can be controlled by varying the laser scanning speed. It is shown that submicron crystalline inclusions formed in the amorphous matrix during SLM can favorably affect microhardness and wear resistance.
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
期刊最新文献
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