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The synthesis, characterization and properties of silicone adhesion promoters for addition-cure silicone rubber

机译:添加固化硅橡胶的硅氧烷粘附促进剂的合成,表征和性能

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摘要

Two types of polysiloxanes, GVPMS and GVHMS, were synthesized through nonhydrolytic sol-gel reaction from vinyltrimethoxysilane(VTMS), 3-glycidoxypropyltrimethoxysilane(KH560) and diphenylsilandiol(DPSD) or hydroxyl silicone oil, respectively. The chemical structures were characterized by Fourier transform infrared (FTIR) spectroscopy, H-1 nuclear magnetic resonance (H-1-NMR) spectroscopy and gel permeation chromatography (GPC). GVPMS and GVHMS were used as adhesion promoter for addition-cure silicone rubber. It was found that the adhesion promoters not only greatly improved adhesion strength but also had excellent compatibility with silicone rubber. Among them, GVPMS gave better adhesion strength in silicone rubber. The shear strength of silicone rubber reached 1.70MPa with addition of 1.5 phr GVPMS, which was about 317% higher than that of silicone rubber without the adhesion promoter. Meanwhile, the shear strength of silicone rubber reached 1.14MPa with addition of 2.0 phr GVHMS, which was 183% higher than that of silicone rubber without the adhesion promoter. Optical property test results revealed that the refractive indexes of GVPMS and GVHMS were 1.5185 and 1.4133 respectively and both of them had good compatibility with silicone rubber, which satisfied the application demand of high-refractive and low-refractive electron encapsulation. Thermal resistance test and SEM results further proved that adhesion promoter could significantly increase the adhesion between the copper substrate and silicone rubber, in which GVPMS had a better performance. Oxidation treatment experiment further explained the mechanism that adhesion promoter functioned as a bridge, linked silicone rubber and copper substrate through chemical bonds.
机译:通过从乙烯基三甲氧基硅烷(VTMS),3-丙酸氧基丙基三甲氧基硅烷(KH560)和二苯基硅烷二醇(DPSD)或羟基硅油(DPSD)或羟基硅油的非水溶性溶胶 - 凝胶反应合成两种类型的聚硅氧烷,GVPM和GVHM。化学结构的特征在于傅里叶变换红外(FTIR)光谱,H-1核磁共振(H-1-NMR)光谱和凝胶渗透色谱(GPC)。 GVPM和GVHMS用作添加固化硅橡胶的粘合促进剂。发现粘合促进剂不仅具有大大提高的粘合强度,而且还具有优异的与硅橡胶相容性。其中,GVPM在硅橡胶中产生了更好的粘合强度。硅橡胶的剪切强度达到1.70MPa,加入1.5phpms,比没有粘附促进剂的硅橡胶高约317%。同时,硅橡胶的剪切强度达到1.14MPa,加入2.0phvm,比没有粘附促进剂的硅橡胶高183%。光学性质测试结果表明,GVPMS和GVHM的折射率分别为1.5185和1.4133,两者都与硅橡胶具有良好的相容性,这使得高屈光和低屈光电子封装的应用需求满足了施用需求。热阻测试和SEM结果进一步证明了粘合促进剂可以显着增加铜基材和硅橡胶之间的粘附性,其中GVPM具有更好的性能。氧化处理实验进一步解释了通过化学键合作用作桥梁,连接硅橡胶和铜基材的粘合促进剂的机理。

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