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Direct Joining of Acrylic Rubber to Cast Iron with Functional Nanofilm by Polymer Plating

机译:用聚合物电镀将丙烯酸橡胶直接连接铸铁铸铁

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The nanoscale functional thin film with the affinity to acrylic rubber was formed on the surface of a high ductile spheroidal-graphite cast iron by means of polymer plating of 6-diallylamino-l,3,5-triazine-2,4-dithiol monosodium salt. The direct joining of acrylic rubber to the cast iron was achieved with the functional nanofilm during curing. High peel strength adherend of the rubber/cast iron was obtained with suitable film thickness and good film quality under curing at 453 K for 18 min. When the film thickness was 8.53 run, peel strength of the adherend was high to 4.9 kNm~(-1), and its broken-out section was rubber cohesive failure. The film thickness considerably affected peel strength and rubber coverage. Moreover, the current density of polymer plating had largely influence on mass and quality of thin film, thereby on joining property of acrylic rubber to the cast iron. The good joining property results from chemical bond within interfacial layer of acrylic rubber chain and reactive groups of nanofilm polymer-plated on the surface of cast iron.
机译:通过聚合物电镀在高延展性球形 - 石墨铸铁的表面上形成具有亲和力的纳米级功能薄膜,通过聚合物电镀,3,5-三嗪-2,4-二钠盐的聚合物镀形成。固化过程中的功能纳米膜实现丙烯酸橡胶与铸铁的直接连接。用合适的薄膜厚度和良好的薄膜质量在453k下固化18分钟获得高剥离强度粘物。当薄膜厚度为8.53次运行时,粘附的剥离强度高至4.9knm〜(-1),其破碎部分是橡胶粘性衰竭。薄膜厚度显着影响了剥离强度和橡胶覆盖率。此外,聚合物电镀的电流密度大大对薄膜的质量和质量影响,从而基于丙烯酸橡胶与铸铁的性能。良好的加入属性由化学键合,在丙烯酸橡胶链的界面层内的化学键和纳米丝聚合物的反应组在铸铁表面上。

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