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Design of an Impedance-Graded Metallic Composite System as a Protective Mechanism for Concrete Structures

机译:阻抗金属复合系统作为混凝土结构保护机构的设计

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Protecting concrete structures from high energetic dynamic events such as blasts and impact is a major concern, in both civil- and military-related applications. Most conventional techniques fail to counter the unpredictable nature of dynamic loads, as well as the complex response of structures due to stress wave propagation. Hence, this paper explores the possibility of using a functionally graded—according to impedance—metallic composite system as a protective mechanism to a concrete structure. An analytical framework was developed using matlab , based on elastic and shock wave propagation theories, especially incorporating multiple interactions within the composite system, as well as reflections of free surfaces. A numerical analysis was carried out using the advanced finite element code LS-DYNA. The main objective of this paper was to compare the performance of the composite system against the conventional monolithic system.
机译:保护爆炸和影响等高能量动态事件的混凝土结构是民事和军事相关申请的主要问题。 大多数传统技术都无法抵消动态载荷的不可预测性,以及由于应力波传播引起的结构的复杂响应。 因此,本文探讨了使用功能梯度 - 金属复合系统的可能性作为混凝土结构的保护机构。 基于弹性和冲击波传播理论的MATLAB开发了一个分析框架,特别是在复合系统内的多个相互作用,以及自由表面的反射。 使用先进的有限元码LS-DYNA进行数值分析。 本文的主要目的是比较复合系统对传统整体系统的性能。

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