论文标题

弹性晶格弹簧模型中的压力分析的扫描过程方法,并应用于超均匀网络材料

Sweeping process approach to stress analysis in elastoplastic Lattice Springs Models with applications to Hyperuniform Network Materials

论文作者

Gudoshnikov, Ivan, Jiao, Yang, Makarenkov, Oleg, Chen, Duyu

论文摘要

在自然界和合成情况下,无序的网络材料在非线性机械行为中的严格分析仍然非常具有挑战性。本文的目的是将最初由Moreau提出的清扫过程的数学框架与具有可塑性现象的一类晶格弹簧模型联系起来。我们明确构建了一个清晰的过程,并提供数值方案,以在具有无限菌株和完美可塑性的晶格弹簧模型中找到应力的演变。特别是,我们开发了一个高效的“跨越”计算框架,该框架使人们可以根据扫描过程理论严格跟踪系统中塑料事件的进展。通过分析具有非常均匀性特性的新型无序网络材料中的弹性应激,证明了我们框架的效用,其中无限波长度的密度波动与网络节点的分布相关。我们发现随着材料系统的过度均匀性的增加,我们发现了增强的机械性能,例如刚度增加,屈服强度和拉伸强度。我们的结果对最佳网络材料设计具有影响,我们的基于事件的框架可以很容易地概括为其他异质材料系统的非线性应力分析。从刚性理论的角度来看,我们还为模型提供了一些见解。

Disordered network materials abound in both nature and synthetic situations while rigorous analysis of their nonlinear mechanical behaviors still is very challenging. The purpose of this paper is to connect the mathematical framework of sweeping process originally proposed by Moreau to a generic class of Lattice Spring Models with plasticity phenomenon. We explicitly construct a sweeping process and provide numerical schemes to find the evolution of stresses in a Lattice Spring Model with infinitesimal strains and perfect plasticity. In particular, we develop a highly efficient "leapfrog" computational framework that allow ones to rigorously track the progression of plastic events in the system based on the sweeping process theory. The utility of our framework is demonstrated by analyzing the elastoplastic stresses in a novel class of disordered network materials exhibiting the property of hyperuniformity, in which the infinite wave-length density fluctuations associated with the distribution of network nodes are completely suppressed. We find enhanced mechanical properties such as increasing stiffness, yield strength and tensile strength as the degree of hyperuniformity of the material system increases. Our results have implications for optimal network material design and our event-based framework can be readily generalized for nonlinear stress analysis of other heterogeneous material systems. We also include some insights to the model from the viewpoint of the rigidity theory.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源