首页> 外文期刊>Journal of land use science >Macro-architectured cellular materials: Properties, characteristic modes, and prediction methods
【24h】

Macro-architectured cellular materials: Properties, characteristic modes, and prediction methods

机译:宏观架构的蜂窝材料:性质,特征模式和预测方法

获取原文
获取原文并翻译 | 示例
           

摘要

Macro-architectured cellular (MAC) material is defined as a class of engineered materials having configurable cells of relatively large (i.e., visible) size that can be architecturally designed to achieve various desired material properties. Two types of novel MAC materials, negative Poisson's ratio material and biomimetic tendon reinforced material, were introduced in this study. To estimate the effective material properties for structural analyses and to optimally design such materials, a set of suitable homogenization methods was developed that provided an effective means for the multiscale modeling of MAC materials. First, a strain-based homogenization method was developed using an approach that separated the strain field into a homogenized strain field and a strain variation field in the local cellular domain superposed on the homogenized strain field. The principle of virtual displacements for the relationship between the strain variation field and the homogenized strain field was then used to condense the strain variation field onto the homogenized strain field. The new method was then extended to a stress-based homogenization process based on the principle of virtual forces and further applied to address the discrete systems represented by the beam or frame structures of the aforementioned MAC materials. The characteristic modes and the stress recovery process used to predict the stress distribution inside the cellular domain and thus determine the material strengths and failures at the local level are also discussed.
机译:宏观架构的蜂窝(MAC)材料被定义为具有相对较大(即可见的)尺寸的可配置细胞的一类工程材料,其可以在架构设计以实现各种所需的材料特性。本研究介绍了两种类型的新型MAC材料,负泊松比例的材料和肌肉肌腱增强材料。为了估计结构分析的有效材料特性并对这些材料进行最佳设计,开发了一组合适的均化方法,为MAC材料的多尺度建模提供了有效手段。首先,使用一种基于菌株的均化方法,采用将应变场分成均质菌域和彼此均质应变场上叠置的局部蜂窝结构域中的应变变化场的方法进行开发。然后使用应变变化场和均质应变场之间关系的虚拟位移原理将应变变化场(应变变化)凝集到均质应变场上。然后基于虚拟力的原理扩展到基于应力的均匀化过程,进一步应用于地址上述MAC材料的光束或框架结构表示的离散系统。还讨论了用于预测蜂窝结构域内的应力分布的特征模式和应力恢复过程,从而讨论了局部地确定局部的材料强度和故障。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号