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A bilinear cohesive zone model tailored for fracture of asphalt concrete considering viscoelastic bulk material

机译:考虑粘弹性散装材料的沥青混凝土断裂双线性内聚区模型

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摘要

A bilinear cohesive zone model (CZM) is employed in conjunction with a viscoelastic bulk (background) material to investigate fracture behavior of asphalt concrete. An attractive feature of the bilinear CZM is a potential reduction of artificial compliance inherent in the intrinsic CZM. In this study, finite material strength and cohesive fracture energy, which are cohesive parameters, are obtained from laboratory experiments. Finite element implementation of the CZM is accomplished by means of a user-subroutine which is employed in a commercial finite element code (e.g., UEL in ABAQUS). The cohesive parameters are calibrated by simulation of mode I disk-shaped compact tension results. The ability to simulate mixed-mode fracture is demonstrated. The single-edge notched beam test is simulated where cohesive elements are inserted over an area to allow cracks to propagate in any general direction. The predicted mixed-mode crack trajectory is found to be in close agreement with experimental results. Furthermore, various aspects of CZMs and fracture behavior in asphalt concrete are discussed including: compliance, convergence, and energy balance.
机译:将双线性内聚区模型(CZM)与粘弹性体(背景)材料结合使用,以研究沥青混凝土的断裂性能。双线性CZM的一个吸引人的特征是潜在CZM中固有的人为顺应性降低。在这项研究中,有限的材料强度和内聚破裂能是内聚参数,是通过实验室实验获得的。 CZM的有限元实现是通过用户子例程实现的,该子例程用于商业有限元代码(例如ABAQUS中的UEL)。内聚参数是通过模拟I型盘状紧密张力结果进行校准的。证明了模拟混合模式断裂的能力。模拟了单边缺口梁测试,其中将粘结元件插入到一个区域上,以允许裂纹沿任何大方向传播。发现预测的混合模式裂纹轨迹与实验结果非常吻合。此外,还讨论了沥青混凝土中CZM和断裂行为的各个方面,包括:顺应性,收敛性和能量平衡。

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