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The Methacrylate Adhesive to Double-Lap Shear Joints Made of High-Strength Steel—Experimental Study

机译:高强度钢对双搭接剪切接头的甲基丙烯酸酯胶粘剂的实验研究

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摘要

In typical technical applications, steel components are usually connected by welding or with mechanical connectors. An alternative solution, typical in the aviation and automotive industry, but not widespread in engineering structures, is to join thin sheet metal using adhesives. The article presents an experimental study of adhesive joints used in overlap connections subjected to static tension. A methacrylate adhesive, selected experimentally from a range of adhesives, which combines the optimum strength and strain properties, was tested. The laboratory tests were carried out on double-lap specimens made of high-strength Domex 700 steel. On the basis of the experimental results, the behavior of the specimens and their failure mechanism, depending on the anchorage lengths used (200, 300 and 400 mm), are described. The tests confirmed the effectiveness of the selected methacrylate adhesive in a practical application. It was shown that with the appropriate anchorage length (adequate to the type of steel components and the joint geometry) between 300 and 400 mm, the capacity of the adhesive joint is higher than the capacity of a single steel component. Two types of specimen behavior were recognized: Quasi-brittle, which occurs at the anchorage length of 200 mm, and ductile, observed for 300 mm and 400 mm anchoring. In addition, thanks to the optical measurement method used, a detailed strain distribution on the specimen surface was determined. The data will be used for subsequent validation of an analytical and numerical model.
机译:在典型的技术应用中,钢部件通常通过焊接或机械连接器连接。在航空和汽车行业中常见但在工程结构中不广泛使用的另一种解决方案是使用粘合剂连接薄金属板。这篇文章提出了一种在静态应力作用下的搭接连接中使用的粘合接头的实验研究。测试了从一系列粘合剂中实验选择的甲基丙烯酸酯粘合剂,该粘合剂结合了最佳强度和应变性能。实验室测试是在高强度Domex 700钢制成的双搭接试样上进行的。根据实验结果,描述了试样的行为及其破坏机理,具体取决于所用的锚固长度(200、300和400 mm)。测试证实了所选甲基丙烯酸酯粘合剂在实际应用中的有效性。结果表明,在300至400 mm之间具有适当的锚固长度(与钢构件的类型和接头几何形状相称)时,胶粘接头的承载能力高于单个钢构件的承载能力。可以识别两种类型的标本行为:准脆性发生在锚固长度为200 mm时,而易延展性发生在300 mm和400 mm锚固中。另外,由于使用了光学测量方法,因此可以确定样品表面的详细应变分布。数据将用于分析和数值模型的后续验证。

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