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首页> 外文期刊>Annales de Chimie-Science des Materiaux >Processing, microstructure and properties of bulk metallic glass composites
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Processing, microstructure and properties of bulk metallic glass composites

机译:大块金属玻璃复合材料的加工,微观结构和性能

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A Zr-Nb-Cu-Ni-Al bulk metallic glass was reinforced with up to 80 volume-percent (% V-f) continuous fibers, short fibers or particles. Characterization based on X-ray diffraction, differential scanning calorimetry, electron microprobe and scanning electron microscopy is presented. The metallic glass matrix remains amorphous after adding reinforcements. Reactions at the matrix/reinforcement interfaces were examined using transmission electron microscopy. A narrow band of crystalline particles typically forms adjacent to the reinforcement. The composites were tested in compression. Compressive strain-to-failure increased by up to a factor of 12 compared to the unreinforced bulk metallic glass. The increase in compressive strain-to-failure is due to the particles restricting shear band propagation, promoting the generation of multiple shear bands and additional fracture surface area. [References: 9]
机译:Zr-Nb-Cu-Ni-Al大块金属玻璃用不超过80%(体积)(%V-f)的连续纤维,短纤维或颗粒增强。提出了基于X射线衍射,差示扫描量热法,电子探针和扫描电子显微镜的表征。添加增强剂后,金属玻璃基质仍保持非晶态。使用透射电子显微镜检查基质/增强界面处的反应。通常在增强物附近形成窄带的结晶颗粒。对复合材料进行压缩测试。与未增强的块状金属玻璃相比,断裂压缩应变提高了12倍。压缩应变破坏的增加是由于颗粒限制了剪切带的传播,从而促进了多个剪切带的产生和额外的断裂表面积。 [参考:9]

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