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Microstructure and Mechanical Properties of Amorphous Matrix Composite Reinforced with Tungsten Porous Foam

机译:钨多孔泡沫增强非晶基复合材料的组织和力学性能

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摘要

In the present study, a Zr-based amorphous alloy matrix composite reinforced with tungsten porous foam was fabricated without pores or defects by liquid pressing process, and its microstructures and mechanical properties were investigated. About 69 vol.% of tungsten foam was homogeneously distributed inside the amorphous matrix, although the matrix of the composite contained a small amount of crystalline phases. The compressive test results indicate that the composite was not fractured at one time after reaching the maximum compressive strength, but showed considerable plastic strain as the compressive load was sustained by tungsten foam. The tungsten foam greatly improved the strength (2764 MPa) and ductility (39.4%) of the composite by homogeneously dispersing the stress applied to the matrix. This was because the tungsten foam and matrix were simultaneously deformed without showing anisotropic deformation due to the excellent bonding of tungsten/matrix interfaces. These findings suggest that the liquid pressing process is useful for the development of amorphous matrix composites with improved strength and ductility.
机译:本研究通过液体压制工艺制备了无孔无缺陷的钨多孔泡沫增强Zr基非晶合金基复合材料,并对其微观结构和力学性能进行了研究。尽管复合材料的基体含有少量的结晶相,但约有69%(体积)的钨泡沫均匀地分布在非晶基体内。压缩试验结果表明,在达到最大压缩强度后,复合材料没有一次断裂,但由于钨泡沫承受了压缩载荷,因此显示出相当大的塑性应变。通过均匀分散施加到基体上的应力,钨泡沫极大地提高了复合材料的强度(2764 MPa)和延展性(39.4%)。这是因为由于钨/基体界面的优良结合,钨泡沫和基体同时变形而没有表现出各向异性变形。这些发现表明,液体压制方法对于开发具有改善的强度和延展性的无定形基体复合材料是有用的。

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