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在富钽金属玻璃中实现类金刚石磨损

Achieving Diamond-Like Wear in Ta-Rich Metallic Glasses.

作者信息

Li Fucheng, Li Mingxing, Hu Liwei, Cao Jiashu, Wang Chao, Sun Yitao, Wang Weihua, Liu Yanhui

机构信息

Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.

Songshan Lake Materials Laboratory, Dongguan, 523808, China.

出版信息

Adv Sci (Weinh). 2023 Aug;10(22):e2301053. doi: 10.1002/advs.202301053. Epub 2023 May 21.

Abstract

Most metals and alloys suffer from high friction and wear due to their low hardness and lack of self-lubrication. Although plenty of strategies have been proposed, it is still a long-standing challenge to achieve diamond-like wear in metals. Metallic glasses (MGs) are supposed to possess low coefficient of friction (COF) because of their high hardness and fast surface mobility. However, their wear rate is larger than that of diamond-like materials. Here, this work reports the discovery of Ta-rich MGs that exhibit diamond-like wear. This work develops an indentation approach for high-throughput characterization of crack resistance. By employing deep indentation loading, this work is able to efficiently identify the alloys that exhibit better plasticity and crack resistance according to the differences of indent morphology. With high temperature stability, high hardness, improved plasticity, and crack resistance, the discovered Ta-based MGs exhibit diamond-like tribological properties, featured by COF as low as ≈0.05 for diamond ball test and ≈0.15 for steel ball test, and specific wear rate of only ≈10 mm N m . The discovery approach and the discovered MGs exemplifie the promise to substantially reduce friction and wear of metals and may unleash the potential of MGs in tribological applications.

摘要

大多数金属和合金由于硬度低且缺乏自润滑性,存在高摩擦和磨损问题。尽管已经提出了许多策略,但在金属中实现类金刚石磨损仍然是一个长期挑战。金属玻璃(MGs)因其高硬度和快速的表面迁移率,被认为具有低摩擦系数(COF)。然而,它们的磨损率比类金刚石材料的磨损率大。在此,这项工作报道了具有类金刚石磨损特性的富钽金属玻璃的发现。这项工作开发了一种用于高通量表征抗裂性的压痕方法。通过采用深压痕加载,这项工作能够根据压痕形态的差异,有效地识别出具有更好塑性和抗裂性的合金。所发现的钽基金属玻璃具有高温稳定性、高硬度、改善的塑性和抗裂性,表现出类金刚石摩擦学性能,在金刚石球测试中摩擦系数低至约0.05,在钢球测试中约为0.15,比磨损率仅约为10 mm N m 。这种发现方法以及所发现的金属玻璃例证了大幅降低金属摩擦和磨损的前景,并可能释放金属玻璃在摩擦学应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d67b/10401100/22b19c391b8c/ADVS-10-2301053-g005.jpg

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