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Numerical Investigations on the Mechanical Properties of Adhesively Bonded Hollow Sphere Structures

机译:胶粘空心球结构力学性能的数值研究

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This article is on the numerical determination of the mechanical properties of adhesively bonded hollow sphere structures (HSS). Two types of morphologies, namely syntactic and partial HSS, are considered. In the case of syntactic HSS, the hollow steel spheres are completely embedded in adhesive matrix, whereas for partial HSS the adhesive is concentrated at the contact points of neighbouring spheres. In addition to the elastic properties of the structure, the initial tensile and compressive yield strengths and the 1% offset yield strengths are calculated and compared for both configurations. Here, the anisotropic behavior of the adhesive in the tensile and compressive regime is incorporated. It could be shown that both configurations reveal quite different behavior on the macro-scale and therefore can be chosen according to specific requirements. Furthermore, the applicability of the adhesive as design parameter for the mechanical properties of HSS is shown.
机译:本文是对粘合空心球结构(HSS)力学性能的数值测定。考虑了两种类型的形态,即句法和部分HSS。在语法HSS的情况下,空心钢球完全嵌入粘合剂基质中,而对于部分HSS,粘合剂则集中在相邻球体的接触点上。除了结构的弹性特性,还计算并比较了两种配置的初始拉伸和压缩屈服强度和1%偏移屈服强度。在此,引入了粘合剂在拉伸和压缩状态下的各向异性行为。可以证明,两种配置在宏观尺度上都表现出完全不同的行为,因此可以根据特定要求进行选择。此外,示出了粘合剂的适用性作为用于HSS的机械性能的设计参数。

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