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Chemical interaction at the interface of metal-plastic direct joints fabricated via injection molded direct joining

机译:通过注塑直接连接制造的金属塑料直接接头界面的化学相互作用

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Injection molded direct joining (IMDJ) is a promising metal-plastic direct joining method to make products lighter. IMDJ first treats the metal surface and then injects melted plastic onto the surface via injection insert molding. In this study, the chemical interaction between metal and plastic was discussed with aluminum plates whose surface textures and chemical conditions were carefully controlled. The different joining strengths for these different chemical conditioned plates indicated that the chemical interaction existed between aluminum and polyamide 6 (PA6). We characterized the joint interface with AFM-IR. The IR spectrums change indicated that -CONH in PA6 formed the hydrogen bond with the hydroxyl groups on the aluminum surface. The chemisorbed water on the surface was suspected to undermine the formation of the hydrogen bond. Our study showed that the hydrogen bond existed and contributed to the joining strength, which provided a better understanding of the joining mechanisms.
机译:注塑直接加入(IMDJ)是一种有前途的金属塑料直接加入方法,以制造更轻的产品。 IMDJ首先处理金属表面,然后通过喷射嵌件成型喷射到表面上的熔化塑料。在该研究中,用铝板讨论了金属和塑料之间的化学相互作用,铝板仔细控制了表面纹理和化学条件。这些不同化学条件平板的不同连接强度表明,铝和聚酰胺6(PA6)之间存在化学相互作用。我们以AFM-IR为特征。 IR光谱变化表明,PA6中的-CONH在铝表面上与羟基形成氢键。怀疑表面上的化学用水以破坏氢键的形成。我们的研究表明,氢键存在并导致连接强度,这提供了更好地理解加入机构。

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