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Interactions of BTESPT silane and maleic anhydride grafted polypropylene with epoxy and application to improve adhesive durability between epoxy and aluminium sheet

机译:BTESPT硅烷与马来酸酐接枝的聚丙烯与环氧树脂的相互作用及其在改善环氧树脂和铝板之间的粘合耐久性方面的应用

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For improvement of adhesive strength and durability of adhesion between epoxy and aluminium sheet bis-(triethoxysilyipropyl)tetrasulfide (BTESPT) silane and maleic anhydride grafted polypropylene (PP-g-MAH) are chosen for surface pretreatment of the aluminium sheet respectively. Fourier transform infrared (FTIR) spectroscopy was used for characterization of the structure and the interactions in the systems. It is shown that BTESPT silane and the anhydride on PP-g-MAH take part in the curing reactions of the epoxy/polyamide system. The adhesive shear strength of the samples, prepared under different curing temperatures, and after immersion in boiling water and 3.5% NaCl water solution respectively, was tested. The features of the shear fractured surfaces were examined by scanning electron microscope (SEM). For the aluminium sheet pretreated by BTESPT silane, the maximum adhesive shear strength is 22.2 MPa, which is higher than that of 17.5 MPa for aluminium sheet without pretreatment by the silane. After immersion in boiling water for 80h and in NaCl water solution at 50 degrees C for 180h the adhesive shear strengths are 13.39 MPa and 18.4 MPa respectively, which are higher than these (below 6 MPa) for aluminium sheet without pretreatment by the silane. As for the aluminium sheet pretreated by PP-g-MAH, the maximum adhesive shear strength is 13.17 MPa. After immersion in boiling water for 80 h and in NaG water solution at 50 degrees C for 180 h the adhesive shear strengths decline to 10.67 MPa and 8.1 MPa respectively.
机译:为了提高环氧树脂和铝片之间的粘合强度和粘合耐久性,分别选择双(三乙氧基甲硅烷基丙基)四硫化物(BTESPT)硅烷和马来酸酐接枝聚丙烯(PP-g-MAH)进行铝片的表面预处理。傅里叶变换红外(FTIR)光谱用于表征结构和系统中的相互作用。结果表明,BTESPT硅烷和PP-g-MAH上的酸酐参与了环氧/聚酰胺体系的固化反应。测试了在不同固化温度下以及分别浸入沸水和3.5%NaCl水溶液后制备的样品的粘合剪切强度。通过扫描电子显微镜(SEM)检查剪切断裂表面的特征。对于用BTESPT硅烷预处理的铝板,最大粘合剪切强度为22.2 MPa,高于未使用硅烷进行预处理的铝板的最大粘合剪切强度为17.5 MPa。在沸水中浸泡80h和在50°C的NaCl水溶液中浸泡180h后,粘合剪切强度分别为13.39 MPa和18.4 MPa,这比未经硅烷处理的铝板要高(6 MPa以下)。 PP-g-MAH预处理的铝板的最大粘合剪切强度为13.17 MPa。在沸水中浸泡80小时,在50摄氏度的NaG水溶液中浸泡180小时后,粘合剪切强度分别下降至10.67 MPa和8.1 MPa。

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