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Dynamic tensile deformation behavior of Zr-based amorphous alloy matrix composites reinforced with tungsten or tantalum fibers

机译:用钨或钽纤维增强Zr基非晶合金基质复合材料的动态拉伸变形行为

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摘要

Zr-based amorphous alloy matrix composites reinforced with tungsten (W) or tantalum (Ta) continuous fibers were fabricated by liquid pressing process. Their dynamic tensile properties were investigated in relation with microstructures and deformation mechanisms by using a split Hopkinson tension bar. The dynamic tensile test results indicated that the maximum strength of the W-fiber-reinforced composite (757 MPa) was much lower than the quasi-statically measured strength, whereas the Ta-fiber-reinforced composite showed very high maximum strength (2129 MPa). In the W-fiber-reinforced composite, the fracture abruptly occurred in perpendicular to the tensile direction because W fibers did not play a role in blocking cracks propagated from the amorphous matrix, thereby resulting in abrupt fracture within elastic range and consequent low tensile strength. The very high dynamic tensile strength of the Ta-fiber-reinforced composite could be explained by the presence of ductile Ta fibers in terms of mechanisms such as (1) interrupted propagation of cracks initiated in the amorphous matrix, (2) formation of lots of cracks in the amorphous matrix, and (3) sharing of loads and severe deformation (necking) of Ta fibers in cracked regions.
机译:通过液压工艺制造加强钨(W)或钽(TA)连续纤维的Zr基非晶合金基质复合材料。通过使用拆分霍普金森张紧棒对微结构和变形机制相关地研究了它们的动态拉伸性能。动态拉伸试验结果表明,W-纤维增强复合材料(757MPa)的最大强度远低于准静态测量的强度,而TA-纤维增强复合材料显示出非常高的最大强度(2129MPa) 。在W-纤维增强复合材料中,骨折突然发生在垂直于拉伸方向上,因为W纤维在从非晶基质传播的阻塞裂缝中没有发挥作用,从而在弹性范围内突然裂缝并因此的低拉伸强度。 TA-纤维增强复合材料的非常高的动态拉伸强度可以通过在诸如(1)中断在非晶基质中引发的裂缝中断的裂缝中断的裂缝,(2)形成许多的机制方面进行解释无定形基质的裂缝,(3)裂纹区域中TA纤维的载荷和严重变形(颈缩)分享。

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