首页> 外文期刊>Computational Mechanics >Characterization of fracture processes by continuum and discrete modelling
【24h】

Characterization of fracture processes by continuum and discrete modelling

机译:通过连续模型和离散模型表征断裂过程

获取原文
获取原文并翻译 | 示例
           

摘要

A large number of methods to describe fracture mechanical features of structures on basis of computational algorithms have been developed in the past due to the importance of the topic. In this paper, current and promising numerical approaches for the characterization of fracture processes are presented. A fracture phenomenon can either be depicted by a continuum formulation or a discrete notch. Thus, starting point of the description is a micromechanically motivated formulation for the development of a local failure situation. A current, generalized method without any restriction to material modelling and loading situation in order to describe an existing crack in a structure is available through the material force approach. One possible strategy to simulate arbitrary crack growth is based on an adaptive implementation of cohesive elements in combination with the standard discretization of the body. In this case, crack growth criteria and the determination of the crack propagation direction in combination with the modification of the finite element mesh are required. The nonlinear structural behaviour of a fibre reinforced composite material is based on the heterogeneous microstructure. A two-scale simulation is therefore an appropriate and effective way to take into account the scale differences of macroscopic structures with microscopic elements. In addition, fracture mechanical structural properties are far from being sharp and deterministic. Moreover, a wide range of uncertainties influence the ultimate load bearing behaviour. Therefore, it is evident that the deterministic modelling has to be expanded by a characterization of the uncertainty in order to achieve a reliable and realistic simulation result. The employed methods are illustrated by numerical examples.
机译:由于该主题的重要性,过去已经开发了许多基于计算算法来描述结构的断裂力学特征的方法。本文提出了表征断裂过程的当前和有希望的数值方法。断裂现象可以用连续的公式表示,也可以用不连续的缺口表示。因此,描述的起点是用于局部故障情况发展的微机械动机的公式。通过材料力方法可以得到一种当前通用的方法,该方法对材料建模和载荷情况没有任何限制,以描述结构中存在的裂缝。一种模拟任意裂纹扩展的可能策略是基于对粘性元素的自适应实现并结合标准的主体离散化。在这种情况下,需要结合有限元网格的修改来确定裂纹扩展准则和确定裂纹扩展方向。纤维增强复合材料的非线性结构行为基于异质微观结构。因此,两尺度模拟是考虑具有微观元素的宏观结构的尺度差异的一种合适而有效的方法。此外,断裂的机械结构特性远非确定性的。此外,各种各样的不确定性会影响最终的承载行为。因此,很明显,必须通过不确定性的表征来扩展确定性建模,以便获得可靠,逼真的仿真结果。数值示例说明了所采用的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号