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Progress in studying the fatigue behavior of Zr-based bulk-metallic glasses and their composites

机译:锆基大块金属玻璃及其复合材料的疲劳行为研究进展

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Zr-based amorphous alloys with a high glass-forming ability and thermal stability were discovered in 1990. In the following years, the alloy design increased the critical casting thickness to several centimeters, and a homogeneous dispersion of nanoscale particles was found to improve the ductility. Therefore, Zr-based bulk-metallic glasses (BMGs) are being studied widely because of their potential as structural materials. The fatigue behavior is an important characteristic of structural materials. The current review documents the fatigue studies of Zr-based BMGs and their composites. The fatigue characteristics of these alloys in different loading conditions and environments are summarized and compared in this paper. The factors affecting the fatigue behavior of the Zr-based BMGs and their composites are discussed. The mechanisms of fatigue-crack initiation and propagation in BMGs are addressed in this review. In order to broaden the scope of applications of BMGs, a fundamental understanding of the fatigue behavior is important for the design of new alloy systems and the development of the processing techniques. d
机译:1990年发现了具有高玻璃形成能力和热稳定性的Zr基非晶合金。在随后的几年中,合金设计将临界铸造厚度增加到几厘米,并且发现纳米级颗粒的均匀分散提高了延展性。 。因此,基于Zr的块状金属玻璃(BMG)由于其作为结构材料的潜力而正在被广泛研究。疲劳行为是结构材料的重要特征。本篇综述记录了基于Zr的BMG及其复合材料的疲劳研究。本文总结并比较了这些合金在不同载荷条件和环境下的疲劳特性。讨论了影响Zr基BMG及其复合材料疲劳行为的因素。 BMGs中疲劳裂纹萌生和扩散的机制已在本文中得到解决。为了扩大BMG的应用范围,对疲劳行为的基本了解对于新合金系统的设计和加工技术的发展很重要。 d

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