首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Microfracture Behavior of Metallic-Continuous-Fiber-Reinforced Amorphous Matrix Composites Fabricated by Liquid Pressing Process
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Microfracture Behavior of Metallic-Continuous-Fiber-Reinforced Amorphous Matrix Composites Fabricated by Liquid Pressing Process

机译:液体压制法制备金属连续纤维增强非晶基复合材料的微断裂行为

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摘要

Zr-based amorphous alloy matrix composites reinforced with metallic continuous fibers were fabricated by liquid pressing process, and their fracture properties were investigated by directly observing microfracture process using an in situ loading stage installed inside a scanning electron microscope chamber. About 60 vol percent of metallic fibers were homogeneously distributed inside the amorphous matrix. Apparent fracture toughness of the stainless-steel- and tungsten-fiber-reinforced composites was lower than that of monolithic amorphous alloy, while that of the Ta-fiber-reinforced composite was higher. According to the microfracture observation, shear bands or cracks were initiated at the amorphous matrix, and the propagation of the initiated shear bands or cracks was effectively blocked by fibers, thereby resulting in stable crack growth which could be confirmed by the fracture resistance curve (R-curve) behavior. This increase in fracture resistance with increasing crack length improved fracture properties of the fiber-reinforced composites, and could be explained by mechanisms of formation of multiple shear bands or multiple cracks at the amorphous matrix and blocking of crack or shear band propagation and multiple necking at metallic fibers.
机译:通过液体加压法制备了以金属连续纤维增强的Zr基非晶合金基复合材料,并通过使用安装在扫描电子显微镜室内的原位加载台直接观察微断裂过程来研究其断裂性能。约60vol%的金属纤维均匀地分布在非晶基质内。不锈钢和钨纤维增强复合材料的表观断裂韧性低于整体非晶合金,而钽纤维增强复合材料的表观断裂韧性更高。根据微断裂观察,在非晶态基体上产生了剪切带或裂纹,并且纤维有效地阻止了所产生的剪切带或裂纹的传播,从而导致了稳定的裂纹扩展,这可以通过抗断裂曲线(R -曲线)行为。随着裂纹长度的增加,抗断裂性的提高改善了纤维增强复合材料的断裂性能,这可以通过在非晶态基体上形成多个剪切带或多个裂纹以及阻塞裂纹或剪切带的传播以及多个颈缩的机理来解释。金属纤维。

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