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首页> 外文期刊>ACS Omega >Highly Efficient Rubber-to-Stainless Steel Bonding by Nanometer-Thin Cross-linked Polymer Brushes
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Highly Efficient Rubber-to-Stainless Steel Bonding by Nanometer-Thin Cross-linked Polymer Brushes

机译:纳米稀薄的交联聚合物刷对橡胶与不锈钢的高效粘合

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Stainless steel (SS) surfaces were grafted with poly(glycidyl methacrylate) (PGMA) brushes that were post-modified using allylamine, diallylamine, and propylamine as reagents. Likewise, poly[2-(diethylamino)ethyl methacrylate] brushes were synthesized. All samples were compression molded with uncured ethylene-propylene-diene M-class rubber and dicumyl peroxide and vulcanized for 12 min at 170 °C. The efficiency of the novel bonding solution was evaluated through peel experiments. Two parameters, the fracture toughness () and the cohesive-to-adhesive fracture ratio (Ar), were calculated to evaluate the strength and the performance of the coupling, respectively. For the nanometer-thin PGMA films modified with allylamine, in particular, full cohesive fracture was obtained. The obtained values of (15.4 ± 1.1 N mm–1) and Ar (1.00 ± 0.01) matched those obtained for a micrometer-thick commercial bonding agent. Cross-linking of polymer brushes by intermolecular reactions by the primary amines proved to have a significant impact on the type of fracture (cohesive/adhesive) and the performance of the adhesives.
机译:不锈钢(SS)表面嫁接了聚甲基丙烯酸缩水甘油酯(PGMA)刷子,该刷子使用烯丙胺,二烯丙基胺和丙胺作试剂进行了后改性。同样,合成了聚[甲基丙烯酸2-(二乙氨基)乙酯]刷子。所有样品均用未固化的乙烯-丙烯-二烯M级橡胶和过氧化二枯基压制成型,并在170°C下硫化12分钟。通过剥离实验评估了新型粘合溶液的效率。计算了两个参数,分别为断裂韧性()和内粘合断裂比(Ar),以评估联轴器的强度和性能。特别是对于用烯丙胺改性的纳米级PGMA薄膜,获得了完全的内聚断裂。所获得的(15.4±1.1 N mm-1)和Ar(1.00±0.01)的值与从微米级的商业粘合剂获得的值相匹配。通过伯胺的分子间反应,聚合物刷的交联被证明对断裂的类型(内聚/胶粘)和胶粘剂性能有重大影响。

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