Rayneau-Kirkhope Daniel, Mao Yong, Farr Robert
Aalto Science Institute, School of Science, Aalto University, 02150 Espoo, Finland.
School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Feb;89(2):023201. doi: 10.1103/PhysRevE.89.023201. Epub 2014 Feb 12.
Hierarchical and fractal designs have been shown to yield high mechanical efficiency under a variety of loading conditions. Here a fractal frame is optimized for compressive loading in a two-dimensional space. We obtain the dependence of volume required for stability against loading for which the structure is optimized and a set of scaling relationships is found. We evaluate the dependence of the Hausdorff dimension of the optimal structure on the applied loading and establish the limit to which it tends under gentle loading. We then investigate the effect of a single imperfection in the structure through both analytical and simulational techniques. We find that a single asymmetric perturbation of beam thickness, increasing or decreasing the failure load of the individual beam, causes the same decrease in overall stability of the structure. A scaling relationship between imperfection magnitude and decrease in failure loading is obtained. We calculate theoretically the limit to which the single perturbation can effect the overall stability of higher generation frames.
分层和分形设计已被证明在各种加载条件下都能产生较高的机械效率。在此,一个分形框架在二维空间中针对压缩加载进行了优化。我们获得了针对结构所优化的加载条件下稳定所需体积的依赖性,并发现了一组标度关系。我们评估了最优结构的豪斯多夫维数对所施加加载的依赖性,并确定了在温和加载下它趋于的极限。然后,我们通过分析和模拟技术研究了结构中单个缺陷的影响。我们发现,梁厚度的单个不对称扰动,无论增加还是减少单个梁的破坏载荷,都会导致结构整体稳定性出现相同程度的下降。获得了缺陷大小与破坏载荷下降之间的标度关系。我们从理论上计算了单个扰动对更高代框架整体稳定性的影响极限。