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Mechanical Property and Structure of Polypropylene/Aluminum Alloy Hybrid Prepared via Ultrasound-Assisted Hot-Pressing Technology

机译:超声辅助热压技术制备聚丙烯/铝合金杂化材料的力学性能和结构

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摘要

The polypropylene/aluminum alloy hybrid was prepared via an ultrasonic-assisted hot-pressing technology (UAHPT). The mechanical property and structure of the UAHPT processed polypropylene/aluminum alloy hybrid were explored by the tensile shear test, scanning electron microscopy (SEM), and atomic force microscopy (AFM), respectively. Prior to obtaining the UAHPT processed hybrid, the microporous structures were prepared by the anodic oxidation in a phosphoric acid solution in which the polypropylene (PP) melt flowed into and formed the micro mechanical interlocking structure at the interface of polypropylene/aluminum alloy. The effects of bonding temperature, pressing pressure, ultrasonic amplitude, and ultrasonic time on the bonding properties of the hybrids were investigated via orthogonal experiment. The UAHPT processed hybrid was strengthened and the maximal tensile shear strength reached up to 22.43 MPa for the polypropylene/aluminum alloy hybrid prepared at the optimum vibration processing parameters.
机译:聚丙烯/铝合金杂化物是通过超声辅助热压技术(UAHPT)制备的。通过拉伸剪切试验,扫描电子显微镜(SEM)和原子力显微镜(AFM)分别研究了UAHPT处理的聚丙烯/铝合金杂化物的力学性能和结构。在获得经过UAHPT处理的杂化材料之前,通过在磷酸溶液中进行阳极氧化来制备微孔结构,其中聚丙烯(PP)熔体流入其中并在聚丙烯/铝合金界面处形成微机械互锁结构。通过正交实验研究了键合温度,压制压力,超声幅值和超声时间对杂化体键合性能的影响。在最佳振动处理参数下制备的聚丙烯/铝合金杂化材料,经UAHPT处理的杂化材料得到增强,最大拉伸剪切强度达到22.43 MPa。

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