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A multiscale quasicontinuum method for lattice models with bond failure and fiber sliding

机译:具有键失效和纤维滑动的晶格模型的多尺度拟连续谱方法

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Structural lattice models incorporating trusses and beams are frequently used to mechanically model fibrous materials, because they can capture (local) mesoscale phenomena. Physically relevant lattice computations are however computationally expensive. A suitable multiscale approach to reduce the computational cost of large-scale lattice computations is the quasicontinuum (QC) method. This method resolves local mesoscale phenomena in regions of interest and Coarse grains elsewhere, using only the lattice model. In previous work, a virtual-power-based QC framework is proposed for lattice models that include local dissipative mechanisms. In this paper, the virtual-power-based QC method is adopted for lattice models in which bond failure and subsequent frictional fiber sliding are incorporated - which are of significant importance for fibrous materials such as paper, cardboard, textile and electronic textile. Bond failure and fiber sliding are nonlocal dissipative mechanisms and to deal with this nonlocality, the virtual-power-based QC method is equipped with a mixed formulation in which the kinematic variables as well as the internal history variables are interpolated. Previously defined summation rules Can still be used to sample the governing equations in this QC framework. Illustrative examples are presented.
机译:结合了桁架和梁的结构晶格模型经常用于对纤维材料进行机械建模,因为它们可以捕获(局部)中尺度现象。然而,物理上相关的晶格计算在计算上是昂贵的。减少大规模晶格计算的计算成本的合适多尺度方法是准连续(QC)方法。此方法仅使用晶格模型即可解决感兴趣区域中的局部中尺度现象和其他地方的粗晶粒。在先前的工作中,针对包含局部耗散机制的晶格模型,提出了基于虚拟功率的QC框架。在本文中,基于虚拟功率的QC方法被应用于晶格模型,其中结合了粘结失效和随后的摩擦纤维滑动-这对于纸,纸板,纺织品和电子纺织品等纤维材料具有重要意义。粘结失效和纤维滑动是非局部耗散机制,为了解决这种非局部性,基于虚拟功率的QC方法配备了混合公式,其中插补了运动学变量和内部历史变量。先前定义的求和规则仍可用于在此QC框架中采样控制方程。给出了说明性示例。

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