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低温下Zr基金属玻璃的磨损机制及亚表面变形

On the Wear Mechanism and Subsurface Deformation of Zr-Based Metallic Glass at Subzero Temperature.

作者信息

Li Xin, Fu Jianan, Li Zhen, Sun Fei, Song Kaikai, Ma Jiang

机构信息

School of Mechanical, Electrical & Information Engineering, Shandong University, Weihai 264209, China.

State Key Laboratory of Radio Frequency Heterogeneous Integration, College of Mechatronics and Control Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

Materials (Basel). 2025 Jun 25;18(13):3012. doi: 10.3390/ma18133012.

Abstract

Metallic glasses (MGs) with excellent mechanical properties have significant applications in frontier technological fields such as medical, energy and aerospace industries. Recently, MGs have been considered as ideal candidates for subzero engineering applications due to their disordered atomic structure array. However, the mechanical properties and wear behaviors of MGs at subzero temperatures have rarely been explored. In this work, the wear properties and wear mechanisms of Zr-based MG were systematically evaluated at a subzero temperature of -50 °C. Compared to the wear results at room temperature, MG in a subzero environment shows a ~60% reduction in wear rate. The main contributing factor is that MG at room temperature will easily forms a thin, brittle oxide layer at the sliding interface, which will lead to oxidation, adhesive and abrasive wear on its surface, whereas these wear behaviors do not occur in subzero conditions where only abrasive wear occurs. Meanwhile, MG at subzero temperatures has a higher elastic modulus. These properties make MG more wear-resistant in subzero environments. The current study will provide new perspectives on the wear mechanisms and subsurface deformation of MG in subzero environments and valuable insights into the use of MG in subzero engineering applications, such as deep space and polar exploration.

摘要

具有优异机械性能的金属玻璃(MGs)在医学、能源和航空航天工业等前沿技术领域有着重要应用。近年来,由于其无序的原子结构阵列,金属玻璃被认为是零下工程应用的理想候选材料。然而,金属玻璃在零下温度下的机械性能和磨损行为鲜有研究。在这项工作中,系统地评估了Zr基金属玻璃在-50°C的低温下的磨损性能和磨损机制。与室温下的磨损结果相比,在零下环境中的金属玻璃磨损率降低了约60%。主要原因是室温下的金属玻璃在滑动界面处容易形成一层薄而脆的氧化层,这会导致其表面发生氧化、粘着和磨料磨损,而在仅发生磨料磨损的零下条件下,这些磨损行为不会出现。同时,零下温度下的金属玻璃具有更高的弹性模量。这些特性使金属玻璃在零下环境中更耐磨。当前的研究将为金属玻璃在零下环境中的磨损机制和亚表面变形提供新的视角,并为其在深空和极地探索等零下工程应用中的使用提供有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/472e/12251469/ff7313ac2cc2/materials-18-03012-g001.jpg

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