材料科学
延展性(地球科学)
复合材料
脆性
非晶态金属
极限抗拉强度
韧性
钛合金
钛
断裂韧性
变形(气象学)
合金
冶金
蠕动
作者
Douglas C. Hofmann,Jin‐Yoo Suh,Aaron Wiest,Mary Laura Lind,Marios D. Demetriou,William L. Johnson
标识
DOI:10.1073/pnas.0809000106
摘要
The mechanical properties of bulk metallic glasses (BMGs) and their composites have been under intense investigation for many years, owing to their unique combination of high strength and elastic limit. However, because of their highly localized deformation mechanism, BMGs are typically considered to be brittle materials and are not suitable for structural applications. Recently, highly-toughened BMG composites have been created in a Zr-Ti-based system with mechanical properties comparable with high-performance crystalline alloys. In this work, we present a series of low-density, Ti-based BMG composites with combinations of high strength, tensile ductility, and excellent fracture toughness.
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