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Numerical Study on the Asphalt Concrete Structure for Blast and Impact Load Using the Karagozian and Case Concrete Model

机译:使用karagozian及壳混凝土模型对沥青混凝土结构沥青混凝土结构的数值研究

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The behaviour of an asphalt concrete structure subjected to severe loading, such as blast and impact loadings, is becoming critical for safety and anti-terrorist reasons. With the development of high-speed computational capabilities, it is possible to carry out the numerical simulation of an asphalt concrete structure subjected to blast or impact loading. In the simulation, the constitutive model plays a key role as the model defines the essential physical mechanisms of the material under different stress and loading conditions. In this paper, the key features of the Karagozian and Case concrete model (KCC) adopted in LSDYNA are evaluated and discussed. The formulations of the strength surfaces and the damage factor in the KCC model are verified. Both static and dynamic tests are used to determine the parameters of asphalt concrete in the KCC model. The modified damage factor is proposed to represent the higher failure strain that can improve the simulation of the behaviour of AC material. Furthermore, a series test of the asphalt concrete structure subjected to blast and impact loadings is conducted and simulated by using the KCC model. The simulation results are then compared with those from both field and laboratory tests. The results show that the use of the KCC model to simulate asphalt concrete structures can reproduce similar results as the field and laboratory test.
机译:沥青混凝土结构对严重负载(如爆炸和冲击载荷)的行为对安全和抗恐怖主义的原因变得至关重要。随着高速计算能力的发展,可以执行经过爆炸或冲击载荷的沥青混凝土结构的数值模拟。在模拟中,本构模型在模型定义了不同的应力和装载条件下的材料的基本物理机制来扮演关键作用。本文评估并讨论了LSDYNA采用的喀古氏和壳具体模型(KCC)的关键特征。验证了强度表面和KCC模型中的损伤因子的制剂。静态和动态测试都用于确定KCC模型中沥青混凝土的参数。提出了改进的损伤因子来表示能够改善交流材料行为的模拟的更高的失效菌株。此外,通过使用KCC模型进行和模拟经过喷砂和冲击载荷的沥青混凝土结构的串联测试。然后将模拟结果与来自场和实验室测试的仿真结果进行比较。结果表明,使用KCC模型来模拟沥青混凝土结构可以再现与现场和实验室测试类似的结果。

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