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On the correlation between microscopic structural heterogeneity and embrittlement behavior in metallic glasses

机译:金属玻璃的微观结构异质性与脆化行为的相关性

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摘要

In order to establish a relationship between microstructure and mechanical properties, we systematically annealed a Zr-based bulk metallic glass (BMG) at 100 ~ 300 °C and measured their mechanical and thermal properties. The as-cast BMG exhibits some ductility, while the increase of annealing temperature and time leads to the transition to a brittle behavior that can reach nearly-zero fracture energy. The differential scanning calorimetry did not find any significant changes in crystallization temperature and enthalpy, indicating that the materials still remained fully amorphous. Elastic constants measured by ultrasonic technique vary only slightly with respect to annealing temperature and time, which does obey the empirical relationship between Poisson’s ratio and fracture behavior. Nanoindentation pop-in tests were conducted, from which the pop-in strength mapping provides a “mechanical probe” of the microscopic structural heterogeneities in these metallic glasses. Based on stochastically statistic defect model, we found that the defect density decreases with increasing annealing temperature and annealing time and is exponentially related to the fracture energy. A ductile-versus-brittle behavior (DBB) model based on the structural heterogeneity is developed to identify the physical origins of the embrittlement behavior through the interactions between these defects and crack tip.
机译:为了建立微观结构和机械性能之间的关系,我们在100〜300 C的温度下对Zr基大块金属玻璃(BMG)进行了系统退火,并测量了其机械性能和热性能。铸态的BMG表现出一定的延展性,而退火温度和时间的增加导致向脆性行为的转变,可以达到接近零的断裂能。差示扫描量热法没有发现结晶温度和焓的任何显着变化,表明该材料仍然保持完全非晶态。通过超声技术测量的弹性常数相对于退火温度和时间仅略有变化,这确实服从了泊松比与断裂行为之间的经验关系。进行了纳米压痕弹入测试,弹入强度映射从中提供了这些金属玻璃中微观结构异质性的“机械探针”。基于随机统计缺陷模型,我们发现缺陷密度随着退火温度和退火时间的增加而降低,并且与断裂能呈指数关系。建立了基于结构异质性的延性-脆性行为(DBB)模型,以通过这些缺陷和裂纹尖端之间的相互作用来识别脆化行为的物理起源。

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