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Analysis of the effect of molecular weight and testing rate on shear strength of epoxidized natural rubber-based adhesives with a statistical model

机译:用统计模型分析分子量和测试速率对环氧化天然橡胶基胶粘剂剪切强度的影响

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The effect of the molecular weight and testing rate on shear strength of epoxidized natural rubber (ENR 25)-based adhesives with statistical model was investigated using gum rosin as the tackifying resin. Toluene and polyethylene terephthalate (PET) were used as the solvent and substrate, respectively, throughout the study. A SHEEN hand coater was used to coat the adhesive on the substrate at a coating thickness of 120 μm. All the adhesion properties were determined by a Lloyd Adhesion Tester operating at different rates of testing. Result shows that shear strength increases up to an optimum molecular weight of 6.5×10~(-4) ENR 25. Shear strength increases with coating thickness, an observation that is ascribed to the increasing amount of adhesive present in the coating layer, which enhances the shear resistance of the adhesive. It also increases with increase in rate of testing, a phenomenon that is associated with the viscoelastic response of the adhesive.
机译:以松香胶为增粘树脂,采用统计模型研究了分子量和测试速率对环氧天然橡胶(ENR 25)胶粘剂剪切强度的影响。在整个研究过程中,甲苯和聚对苯二甲酸乙二醇酯(PET)分别用作溶剂和底物。使用SHEEN手动涂布机以120μm的涂层厚度在基板上涂布粘合剂。所有的粘合性能均由劳埃德粘合力测试仪以不同的测试速率进行测定。结果表明,剪切强度增加至最适分子量6.5×10〜(-4)ENR25。剪切强度随涂层厚度的增加而增加,这是由于涂层中粘合剂的含量增加所致。粘合剂的抗剪切力。随着测试速率的增加,它也增加了,这种现象与粘合剂的粘弹性响应有关。

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