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Determination of traction-separation laws on an acrylic adhesive under shear and tensile loading

机译:剪切和拉伸载荷下丙烯酸粘合剂上牵引分离规律的测定

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摘要

Structural acrylic adhesives are of special interest because those adhesives are cured at room temperature and can be bonded to oily substrates. To use those adhesives widely for structural bonding, it is necessary to clarify the methodology for predicting strengths of bonding structures with those adhesives. Recently, cohesive zone models (CZMs) have been receiving intensive attentions for simulation of fracture strengths of adhesive joints, especially when bonded with ductile adhesives. The traction-separation laws under mode I and mode II loadings require to estimate fracture toughness of adhesively bonded joints. In this paper, the traction-separation laws of an acrylic adhesive in mode I and mode II were directly obtained from experiments using Arcan type adhesively bonded specimens. The traction-separation laws were determined by simultaneously recording the J-integral and the opening displacements in the directions normal and tangential to the adhesive layer, respectively.
机译:结构丙烯酸粘合剂具有特别兴趣,因为这些粘合剂在室温下固化,并且可以与油性底物键合。 为了使用这些粘合剂,广泛用于结构粘合,有必要阐明用于预测与这些粘合剂的粘合结构的强度的方法。 最近,粘性区域模型(CZMS)一直在接受密集的注意,用于模拟粘合接头的断裂强度,特别是当与韧带粘合时。 模式I和模式II载荷下的牵引分离法需要估计粘合接头的断裂韧性。 本文通过使用Arcan型粘合标本直接从实验中直接获得丙烯酸类粘合剂的牵引定律,从实验中直接获得。 通过分别同时记录正常和切向于粘合剂层的方向上的J-积分和开口位移来确定牵引分离定律。

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