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Non-ideal effects in bending response of soft substrates covered with biomimetic scales

机译:用仿生尺度覆盖的软基板弯曲响应的非理想效果

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摘要

Biomimetic scales are known to substantially alter the mechanics response of the underlying substrate engendering complex nonlinearities that can manifest even in small deformations due to scales interaction. This interaction is typically modeled using a-priori homogenization with an enforced periodicity of engagement. Such a framework is fairly useful especially when dealing with the structural length scale which is at least one order of magnitude greater than the scales themselves since individual tracking of a large number of scales become insurmountable. On the other hand, this scheme makes several assumptions whose validity has not yet been investigated including infinite length of the substrate and rigidity of the scales. The validity of these assumptions and the accuracy and limitations of associated analytical models are investigated. Finite element based numerical studies were carried out to identify the critical role of edge effects and other non-ideal behavior such as violation of periodicity and nonlinear constitutive response on scale rotation. Our investigation shows that several important quantities show a strong saturation characteristic which justify many of the simplifying assumptions whereas others need much greater care.
机译:已知仿真缩放基本上改变了底层基底的力学响应,该基板的合成非线性可以表现在由于尺度相互作用的小变形。这种相互作用通常使用先验的均质化建模,其具有强制接合周期性。这样的框架特别有用,特别是在处理结构长度的结构长度范围内,这比秤本身的数量级至少大,因为大量尺度的单独跟踪变得不可堵车。另一方面,该方案使得几种假设尚未研究其有效性,包括秤的无限长度和秤的刚性。研究了这些假设的有效性以及相关分析模型的准确性和限制。进行了有限元的数值研究,以确定边缘效应和其他非理想行为的关键作用,例如违反周期性和非线性本构型响应的违反规模旋转。我们的调查表明,几个重要的数量显示出强烈的饱和特性,这是良好的简化假设,而其他人则需要更大的小心。

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