首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >(152330)Microstructure and mechanical property of the 2024Al matrix hybrid composite reinforced with recycled SiCp/2024Al composite particles
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(152330)Microstructure and mechanical property of the 2024Al matrix hybrid composite reinforced with recycled SiCp/2024Al composite particles

机译:(152330)用再循环SICP / 2024AL复合颗粒加固2024AL基质杂化复合材料的微观结构和力学性能

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In the present work, the SiCp/2024Al composite chips have been recycled to be SiCp/2024Al composite particles (CPs for short) with average diameter of 900, 650 and 300 urn, which has been used as the reinforcement in the CP/2024Al hybrid composites prepared by pressure infiltration method. The CPs-Al interface was well bonded with an amorphous alumina interlayer. With the decrease of the dimension of the CPs from 900 to 300μm, the tensile strength of the CP/2024Al hybrid composites, was increased from 178 tg 392 MPa, while the height difference of the LSCM profiles curves was decreased from 458 to 216μm, and the length value of the LSCM profiles curves was increased from 1280 to 2184μm, respectively. Based on the finite element analysis (FEA) simulation, the stress and strain concentration phenomenon of the CP/2024Al hybrid composites have been discussed. It has been found that the applied tensile stresses in the composites for the occurrence of debonding were increased with the decreased CPs size. Moreover, according to the Griffith's fracture criterion, the corresponding tensile strength of the composites with 300 μm CPs was 1.73 times of that with 900 μm CPs, which was close to the experimental results (2.15 times). It is suggested that the interfacial bonding strength should be improved to further increase the mechanical properties of the CP/2024Al hybrid composites.
机译:在目前的工作中,SiC颗粒/ 2024Al复合芯片已被再循环至是SiC颗粒/ 2024Al复合粒子具有900,650和300瓮,其已被用作在CP / 2024Al混合加固平均直径(简称CP)进行复合材料制备通过压力渗透法。该CPS-A1接口良好用无定形氧化铝的层间粘合。与CP的尺寸的减小,从900至300微米,所述CP / 2024Al混杂复合材料的拉伸强度,是从178增加TG 392兆帕,而LSCM轮廓曲线的高度差从458减小到216μm,并且的LSCM轮廓曲线的长度值从1280分别增加至2184μm。基于有限元分析(FEA)模拟中,CP的应力和应变集中现象/ 2024Al混杂复合材料进行了讨论。已经发现的是,在复合材料剥离的发生所施加的拉伸应力分别增加与降低的CP的大小。此外,根据本格里菲斯的断裂准则,具有300点微米的CP复合材料的相应拉伸强度为的,与900点微米的CP,这是接近的实验结果(2.15倍)的1.73倍。有人建议,该界面粘结强度应加以改进,以进一步增加所述CP / 2024Al混杂复合材料的机械性能。

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