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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and mechanical property of bimodal-size metallic glass particle-reinforced Al alloy matrix composites
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Microstructure and mechanical property of bimodal-size metallic glass particle-reinforced Al alloy matrix composites

机译:双峰金属玻璃粒子增强Al合金基质复合材料的组织和力学性能

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摘要

A bimodal size metallic glassy particles reinforced 7075 aluminum composite was fabricated by powder metallurgy via ball milling and hot extrusion. The results show that metallic glassy reinforcements help to improve the densification due to the liquid-like behavior in the supercooled liquid region. The metallic glassy reinforcements were found to have a bimodal size distribution at nanoscale and microscale, and were uniformly distributed in the matrix. An interphase layer with a thickness of 60-80 nm was observed between the reinforcement/matrix resulted from elemental diffusion and chemical reaction. The introduction of bimodal size metallic glassy particles have significantly improved the mechanical properties, where the yield strength and fracture strength increase from 442 and 648 MPa for Al7075 to 869 and 962 MPa for composite with 17 vol% reinforcement, respectively. The strengthening mechanisms of the composites were revealed. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过球磨和热挤出制造了增强7075铝合金复合材料的双峰尺寸金属玻璃颗粒。 结果表明,金属玻璃增强有助于改善由于超冷却液区中的液体状行为引起的致密化。 发现金属玻璃增强件在纳米级和微尺寸下具有双峰尺寸分布,并均匀地分布在基质中。 在增强/基质之间观察到具有60-80nm的厚度为60-80nm的差异层,从而由元素扩散和化学反应产生。 双模尺寸金属玻璃颗粒的引入具有显着改善的机械性能,其中屈服强度和裂缝强度从442和648MPa增加到Al7075至869和962MPa,分别具有17体积%的增强剂的复合材料。 揭示了复合材料的强化机制。 (c)2019 Elsevier B.v.保留所有权利。

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