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Overmolded hybrid thermoset‐thermoplastic structures: Experimental study on the bonding strength of co‐curing thermoplastic film onto thermoset composite

机译:包覆成型混合热固性-热塑性结构:共固化热塑性薄膜与热固性复合材料结合强度的实验研究

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摘要

Abstract In the present study, an innovative approach to produce hybrid thermoset‐thermoplastic structure by means of co‐curing technique together with injection overmolding technique is proposed. To make thermoset composite bondable, a thermoplastic film was firstly co‐cured on the surface of thermoset composite. Five different types of thermoplastic film were chosen to co‐cure with thermoset composite. The bonding strength between thermoplastic film and thermoset composite was evaluated with lap shear strength. The results show that plasma treatment on thermoplastic film can promote polar groups at interface, which has positive effect on increasing wettability and can increase bonding strength by up to 69.7 of co‐cured structure. Meanwhile, increasing the surface roughness of thermoplastic film can also increase bonding strength by 162.9 because of mechanical interlock. Especially, because of low melting temperature of metallocene polypropylene, some fiber bundles in the interface zone were impregnated with molten metallocene polypropylene, resulting in strong bonding strength increased by 266.2 of the resultant co‐cured structure. Based on these results, polyamide 6 film was selected as the best thermoplastic boundary for co‐cured structure. Finally, hybrid thermoset‐thermoplastic was fabricated by injection overmolding of molten polyamide 6 on co‐cured structure, which has high average lap shear strength of around 14.9 MPa.
机译:摘要 提出了一种利用共固化技术结合注塑包覆成型技术生产热固性-热塑性混合结构的创新方法。为了使热固性复合材料具有可粘合性,首先在热固性复合材料表面共固化了一层热塑性薄膜。选择五种不同类型的热塑性薄膜与热固性复合材料共固化。采用搭接剪切强度评价了热塑性薄膜与热固性复合材料之间的粘结强度。结果表明,热塑性薄膜上的等离子体处理可以促进界面处的极性基团,对提高润湿性有积极作用,可使粘结强度提高69.7%。同时,由于机械互锁,增加热塑性薄膜的表面粗糙度也可以使粘接强度提高162.9%。特别是茂金属聚丙烯熔融温度低,界面区部分纤维束浸渍了熔融茂金属聚丙烯,使粘结强度提高了266.2%。基于这些结果,聚酰胺6薄膜被选为共固化结构的最佳热塑性边界。最后,通过在共固化结构上注塑包覆成型熔融聚酰胺6,制备了混合热固性热塑性塑料,其平均搭接剪切强度高达14.9 MPa左右。

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