首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Estimation of static strength of adhesively bonded single lap joints with an acrylic adhesive under tensile shear condition based on cohesive zone model
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Estimation of static strength of adhesively bonded single lap joints with an acrylic adhesive under tensile shear condition based on cohesive zone model

机译:基于粘性区模型的拉伸剪切条件下丙烯酸粘合剂施加粘接单圈关节静脉强度的估计

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摘要

In this study, the tensile shear and bending tests of adhesively bonded single lap joints with the acrylic adhesive was evaluated experimentally and numerically. In the previous paper, the traction-separation laws in mode 1 and mode 2 for an acrylic adhesive were directly obtained from the observation of failure process using Arcan type adhesively bonded specimens: simultaneous measurements of the J-integral and the opening displacements in the directions normal, delta(n) and tangential to the adhesive layer, delta(s) respectively. The experimental results were compared with numerical simulations conducted in ABAQUS including cohesive damage model. The cohesive laws obtained in the previous paper were simplified to trapezoidal shape from the experimentally obtained ones which were indicated in the previous paper. A good agreement was found between the experimental and numerical results. Then, to investigate the damage evolution in the adhesive layer for some lap joints, microscopic video observation was conducted near the end of the adhesive layer, and the video image have been compared with the contours of damage variable obtained by FEM corresponding to the video images. The observed damage evolution also agrees with the trend of damage variable.
机译:在该研究中,通过实验和数值评价粘合的单圈接头的粘结粘结的单圈接头的拉伸剪切和弯曲试验。在前一篇文章中,使用Arcan型粘结试样直接从故障过程的观察中直接获得丙烯酸粘合剂的模式1和模式2中的牵引 - 分离定律:同时测量J-积分和方向的开口位移正常,Δ(n)和切向分别与粘合剂层,δ分别。将实验结果与在ABAQUS中进行的数值模拟进行了比较,包括内聚损伤模型。从先前纸张中指示的实验获得的梯形形状简化了先前论文中获得的凝血性法。在实验和数值结果之间发现了一个良好的一致性。然后,为了研究一些膝盖接头的粘合剂层中的损伤演变,在粘合剂层的末端进行微观视频观察,并且已经将视频图像与由VEAR与视频图像相对应的FEM获得的轮廓进行比较。观察到的伤害进化也同意损害变量的趋势。

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