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Development and characterization of an all-olefin thermoplastic sandwich composite system

机译:全烯烃热塑性夹芯复合体系的开发与表征

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In this investigation an all-olefin thermoplastic sandwich system was developed and characterized. Commingled glass fiber polypropylene (PP) composite was used as skin and HDPE (PE) foam with closed cells as core. Infra-red heating was used for malting the surfaces of the substrates for surface fusion bonding with a cold press.Two tie layer films, viz. ethylene-propylene copolymer (EPC) and HDPE/elastomer blend, were used as hot melt adhesives for bonding the substrates. Single lap shear joints were prepared from PP composite and PE foam adherends with a bonding area of 25.4 mm X 25.4 mm to determine the interface strength.EPC tie layer provided higher bond strength (27.4 kg/cm~2) to the all-olefin sandwich system than HDPE/elastomer blend based one (19.7 kg/cm~2). For EPC tie layer based sandwiches, a mixed mode of failure was observed in the failed lap shear samples; about 40% is cohesive failure through tie layer, and the rest of failure was adhesive either at PP composite or PE surfaces. Environmental scanning electron micrographs (ESEM) reveal that in the process of surface fusion bonding, PE foam cells in the vicinity of 0.80 mm interphase area were calesced with high temperature and pressure. No macro level penetration of tie layer melt front into foam cells was observed. As the surface morphology of foam was altered on account of IR surface heating and the PP composite bonding side had a resin-rich layer, the bonding situation was closer to that between two polymer film surfaces.
机译:在这项研究中,开发并表征了全烯烃热塑性夹心体系。混合的玻璃纤维聚丙烯(PP)复合材料用作表皮,而HDPE(PE)泡沫则以闭孔为芯。红外加热用于使基片表面发芽,以便用冷压机进行表面熔合。两个粘结层薄膜,即。乙烯-丙烯共聚物(EPC)和HDPE /弹性体混合物用作粘合基材的热熔胶。由PP复合材料和PE泡沫被粘物制备单搭接剪切接头,其粘结面积为25.4 mm X 25.4 mm,以确定界面强度.EPC粘结层提供了对全烯烃夹层的更高粘结强度(27.4 kg / cm〜2)该系统比HDPE /弹性体共混物(19.7 kg / cm〜2)为主。对于基于EPC粘结层的三明治,在失效的搭接剪切样品中观察到混合失效模式。大约40%是通过粘结层的内聚破坏,其余的破坏是在PP复合材料或PE表面的粘附。环境扫描电子显微照片(ESEM)显示,在表面熔合过程中,在高温高压下对相间面积为0.80 mm附近的PE泡沫孔进行了煅烧。没有观察到粘结层熔体前沿宏观渗透到泡沫孔中。由于泡沫的表面形态由于IR表面加热而改变,并且PP复合物粘合侧具有富树脂层,因此粘合情况更接近于两个聚合物膜表面之间的粘合情况。

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