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首页> 外文期刊>Materials Characterization >Tuning microstructure and mechanical properties of squeeze-cast whisker-reinforced 2024Al composites by hot forging process design
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Tuning microstructure and mechanical properties of squeeze-cast whisker-reinforced 2024Al composites by hot forging process design

机译:用热锻工艺设计调节挤压釜罐加固2024AL复合材料的微观结构和力学性能

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摘要

In order to minimize defects and obtain a uniform and consistent microstructure in Al-matrix composites, the hot forging process design, microstructure, and mechanical properties evolution in squeeze-cast 20 vol% Al18B4O33w/2024Al composites were investigated. Uniaxial cushioned forging was more effective than uniaxial free forging and uniaxial canned forging in increasing hot deformability and improving homogeneity of strain and microstructure in composites. Bi-directional forging accumulated larger strain in the microstructure, which produced alignment of whiskers and associated anisotropy in mechanical response. Both the strength factor and the whisker length affected composite strength. When loading parallel to whisker alignment, composites exhibited increased strength factor and greater distance between adjacent whiskers along the microcrack propagation direction, both of which resulted in higher strength and elongation. When loading normal to the whisker alignment, composite strength and ductility decreased due to a smaller strength factor, shorter microcrack propagation distance, and increased likelihood of interface debonding.
机译:为了最小化缺陷并获得Al-Matrix复合材料的均匀和一致的微观结构,研究了挤压铸造20Vol%Al18B4O33W / 2024AL复合材料中的热锻造工艺设计,微观结构和机械性能演化。单轴缓冲锻造比单轴自由锻造和单轴罐装锻造更有效地提高热可变形性和改善复合材料中应变和微观结构的均匀性。双向锻造在微观结构中累积较大的菌株,其在机械反应中产生了晶须和相关各向异性的对准。强度因子和晶须长度影响复合强度。当加载平行于晶须对准时,复合材料沿着微裂纹传播方向表现出增加的强度因子和相邻晶须之间的距离,这两者都导致更高的强度和伸长率。当加载正常到晶须对准时,由于强度因子,短片传播距离较短,并且界面剥离的可能性增加,复合强度和延展性降低。

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