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Cracking simulation of asphalt concrete beam specimen using cohesive zone model

机译:粘性区模型沥青混凝土梁样本的开裂模拟

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Bending beam test is widely used for evaluating the tensile strength of asphalt concrete (AC). The test results are strongly influenced by the types of raw materials and their characteristics. Cohesive Zone Model (CZM) provides a new available approach for the cracking simulation of this test. After the parameters of materials were measured by adjusted Indirect Tensile Test (1DT) and Single-Edge notched Beam (SEB) test, CZM model was used to simulate the beginning and propagation of cracking through asphalt concrete beam. 2D and 3D digital specimen were generated from the digital picture and mathematical software separately. Under the same loading speed, actual test and digital simulations were accomplished and compared. Fracture energy, displacement at mid-span and maximum load during the test were recorded or computed. Through the comparability of the data above, it can be concluded that the cracking propagation path of the simulation result was very similar to the actual one. The fracture energies of 2D and 3D models were 21.00% and 7.68% lower than the measured result separately. The method using in this paper provides a new digital test approach to simulate the fracture of AC specimen. (C) 2019 Elsevier Ltd. All rights reserved.
机译:弯曲梁试验广泛用于评估沥青混凝土(AC)的拉伸强度。测试结果受原料类型及其特征的强烈影响。凝聚区域模型(CZM)为该测试的裂缝模拟提供了一种新的可用方法。通过调节的间接拉伸试验(1DT)测量材料的参数和单边缘切割梁(SEB)测试,CZM模型用于通过沥青混凝土梁模拟开裂的开始和传播。 2D和3D数字样本分别从数字图像和数学软件生成。在相同的加载速度下,实际测试和数字模拟进行了完成并进行比较。折断能量,记录或计算测试期间中间跨度和最大载荷的位移。通过上述数据的可比性,可以得出结论,仿真结果的开裂传播路径与实际的裂缝传播路径非常相似。 2D和3D模型的断裂能量分别比测量结果低21.00%和7.68%。本文中使用的方法提供了一种新的数字测试方法来模拟交流标本的骨折。 (c)2019 Elsevier Ltd.保留所有权利。

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