首页> 外文会议>World Congress on Computational Mechanics and Asian-Pacific Congress on Computational Mechanics; 20040905-10; Beijing(CN) >Buckling in Thin Walled Micro and Meso Structures of Lightweight Materials and Material Compounds
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Buckling in Thin Walled Micro and Meso Structures of Lightweight Materials and Material Compounds

机译:轻质材料和化合物的薄壁微结构和介观结构的屈曲

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摘要

Modern materials and material compounds for application in lightweight structures exhibit, in addition to the use of constituents of high specific stiffness and strength, very special micro- and meso-structures. Typical representatives of such material compounds are sandwiches with thin homogeneous or composite face layers and structured core materials (for instance honeycombs and closed or open cell metallic foams). The load carrying capacity of lightweight structures made of such materials and material compounds, respectively, is limited by a considerable number of rather different but interconnected instability modes occurring at length scales which are several orders of magnitude smaller than the size of the structural part. These non-global instabilities are the subject of the presented contribution.
机译:除了使用具有高比刚度和强度的成分外,用于轻型结构的现代材料和材料化合物还具有非常特殊的微结构和中观结构。这种材料混合物的典型代表是具有薄的均质或复合表面层和结构化芯材(例如蜂窝状和闭孔或开孔金属泡沫)的三明治。分别由这种材料和材料化合物制成的轻质结构的承载能力受到在长度尺度上出现的相当数量的相当不同但相互关联的不稳定性模式的限制,该长度尺度比结构部件的尺寸小几个数量级。这些非全局性不稳定是所提出的贡献的主题。

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