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Experimental and numerical evaluation of the mechanical behavior of strongly anisotropic light-weight metallic fiber structures under static and dynamic compressive loading

机译:静态和动态压缩载荷下强各向异性轻量金属纤维结构力学性能的试验和数值计算

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摘要

Rigid metallic fiber structures made from a variety of different metals and alloys have been investigated mainly with regard to their functional properties such as heat transfer, pressure drop, or filtration characteristics. With the recent advent of aluminum and magnesium-based fiber structures, the application of such structures in light-weight crash absorbers has become conceivable. The present paper therefore elucidates the mechanical behavior of rigid sintered fiber structures under quasi-static and dynamic loading. Special attention is paid to the strongly anisotropic properties observed for different directions of loading in relation to the main fiber orientation. Basically, the structures show an orthotropic behavior
机译:主要研究了由各种不同金属和合金制成的刚性金属纤维结构的功能特性,例如传热,压降或过滤特性。随着近来铝和镁基纤维结构的出现,已经可以想到将这种结构应用于轻型碰撞吸收器。因此,本论文阐明了刚性烧结纤维结构在准静态和动态载荷下的力学行为。要特别注意在相对于主纤维取向的不同载荷方向上观察到的强各向异性。基本上,这些结构表现出正交各向异性行为

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