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Fracture toughness and fatigue-crack propagation in a Zr–Ti–Ni–Cu–Be bulk metallic glass

机译:Zr-Ti-Ni-Cu-Be大块金属玻璃中的断裂韧性和疲劳裂纹扩展

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摘要

The recent development of metallic alloy systems which can be processed with an amorphous structure over large dimensions, specifically to form metallic glasses at low cooling rates (similar to 10 K/s), has permitted novel measurements of important mechanical properties. These include, for example, fatigue-crack growth and fracture toughness behavior, representing the conditions governing the subcritical and critical propagation of cracks in these structures. In the present study, bulk plates of a Zr41.2Ti13.8Cu12.5Ni10Be22.5 alloy, machined into 7 mm wide, 38 mm thick compact-tension specimens and fatigue precracked following standard procedures, revealed fracture toughnesses in the fully amorphous structure of K(lc)similar to 55 MPa root m, i.e., comparable with that of a high-strength steel or aluminum ahoy. However, partial and full crystallization, e.g., following thermal exposure at 633 K or more, was found to result in a drastic reduction in fracture toughness to similar to 1 MPa root m, i.e., comparable with silica glass. The fully amorphous alloy was also found to be susceptible to fatigue-crack growth under cyclic loading, with growth-rate properties comparable to that of ductile crystalline metallic alloys, such as high-strength steels or aluminum alloys; no such fatigue was seen in the partially or fully crystallized alloys which behaved like very brittle ceramics. Possible micromechanical mechanisms for such behavior are discussed.
机译:可以用大尺寸的非晶态结构进行处理的金属合金系统的最新发展,特别是在低冷却速率(类似于10 K / s)下形成金属玻璃,已经允许对重要的机械性能进行新颖的测量。这些包括,例如,疲劳裂纹扩展和断裂韧性行为,代表了控制这些结构中裂纹的亚临界和临界传播的条件。在本研究中,将Zr41.2Ti13.8Cu12.5Ni10Be22.5合金的块状板加工成7毫米宽,38毫米厚的致密试样,并按照标准程序进行了预裂纹处理,揭示了K的完全非晶态结构的断裂韧性。 (lc)类似于55 MPa的根m,即,与高强度钢或铝的可比性相当。但是,发现部分和全部结晶,例如在633K或更高温度下的热暴露之后,导致断裂韧性急剧降低,类似于1MPa的根部m,即,与石英玻璃相当。还发现这种全非晶态合金在循环载荷下容易出现疲劳裂纹,其生长速率性能与高强度钢或铝合金等延性结晶金属合金相当。在部分或完全结晶的合金中没有观察到这种疲劳,这种合金的行为就像非常脆的陶瓷。讨论了可能的这种行为的微机械机制。

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