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Mixed-mode fracture in lightweight aggregate concrete by using a moving mesh approach within a multiscale framework

机译:在多尺度框架内使用移动网格方法在轻质骨料混凝土中进行混合模式断裂

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摘要

Lightweight aggregate concrete (LWAC) has gained popularity as an alternative to ordinary concrete for structural purposes, due to its higher strength-to-weight ratio. The present work aims to present novel numerical results of complete failure simulations performed on pre-cracked beams made of LWAC, subjected to a mixed-mode fracture test. To this end, an innovative simulation algorithm for crack propagation within a multiscale framework has been adopted, specifically conceived for predicting micro-cracking in quasi-brittle heterogeneous materials under general loading conditions; such a strategy allows to take into account both the continuous crack propagation along a non-prescribed path and the crack penetration through a material interface. Path tracking for continuous crack propagation has been performed by using an advanced geometry optimization method coupling a moving mesh approach and a gradient-free optimization solver, whereas crack penetration has been simulated by means of a simplified re-initiation criterion at the interface, involving a material characteristic length. Several numerical experiments have been carried out, in order to investigate the influence of the Young's modulus of lightweight aggregates on the peak and post-peak behavior. These results have been validated by comparing them with those obtained from fully homogenized analyses based on the LEFM approach. (C) 2014 Elsevier Ltd. All rights reserved.
机译:轻质集料混凝土(LWAC)由于具有较高的强度重量比,因此已成为结构性普通混凝土的替代品。本工作旨在提出对由LWAC制成的预裂纹梁进行混合模式断裂试验的完全破坏模拟的新颖数值结果。为此,采用了一种创新的多尺度框架内裂纹扩展仿真算法,该算法专门用于预测一般脆性非均质材料在一般载荷条件下的微裂纹。这种策略既可以考虑沿非规定路径的连续裂纹扩展,也可以考虑通过材料界面的裂纹渗透。通过使用先进的几何优化方法结合移动网格方法和无梯度优化求解器来执行连续裂纹扩展的路径跟踪,而裂纹渗透已通过界面处的简化重新初始化准则进行了模拟,包括材料特征长度。为了研究轻质骨料的杨氏模量对峰值和峰后行为的影响,已经进行了一些数值实验。通过将它们与基于LEFM方法从完全均质化分析中获得的结果进行比较,已验证了这些结果。 (C)2014 Elsevier Ltd.保留所有权利。

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