首页> 外文会议>Scientific Conference Week of Science in SPbSPU - Civil Engineering >Modeling Nonlinear Deformation and Destruction Masonry Under Biaxial Stresses Part 2 - Strength Criteria and Numerical Experiment
【24h】

Modeling Nonlinear Deformation and Destruction Masonry Under Biaxial Stresses Part 2 - Strength Criteria and Numerical Experiment

机译:双轴应力下建模非线性变形和破坏砌体部分2 - 强度标准和数值实验

获取原文

摘要

Masonry is a complex multicomponent composite consisting of dissimilar materials (brick/stone and mortar). Masonry deformation process under loading depends on the mechanical characteristics of the basic composite materials, as well as of the parameters of the elements defining binding between brick and mortar being the interface elements. Traditional methods of masonry modeling are based on the use of generalized ("effective") mechanical properties of the composite as a continuant homogeneous continuant medium. This paper presents an overview and analysis of continuant masonry models adequately reflecting the process of elastic, and in some cases elastic-plastic masonry deformation within the composition of stone structural elements. The paper provides analysis of the experimental research results of masonry behaviour in a biaxial stress state at primary stresses of opposite signs; identifies masonry destruction mechanisms complying with the conditions of stress state. The work demonstrates the key role played by interface elements in the formation of masonry destruction processes. Based on destruction mechanisms deduced from experiments, there was developed a discrete model of masonry. A system of masonry strength criteria was proposed corresponding to the biaxial stress state conditions at primary stresses of opposite signs. For purposes of studying the elastic-plastic deformation and destruction of masonry, there was developed a technology of numerical experiment performance using calculation technologies with a stepwise tracking of stress-and-strain state, at step-by-step loading. The scope of this paper includes verification of modeling method and technology of numerical experiment at various parameters of interface elements defining binding between bricks and mortar.
机译:砌体是由不同材料(砖/石头和砂浆)组成的复杂多组分复合材料。负载下的砌体变形过程取决于基本复合材料的机械特性,以及在砖和砂浆之间定义绑定的元件的参数是界面元件。砌体建模的传统方法基于复合材料的广义(“有效”)机械性能作为连续的均匀连续介​​质。本文概述了持续的砌体模型,充分反映了弹性的过程,在某些情况下,在石结构元素的组成内弹性塑料砌体变形。本文提供了对相反迹象的初级应力的双轴应力状态下砌体行为的实验研究结果的分析;确定符合压力状态条件的砌体毁灭机制。该工作展示了界面元素在形成砌体销毁过程中的关键作用。基于从实验推导的破坏机制,开发了一种离散模型的砌体模型。提出了一种砌体强度标准的系统,对应于对相反符号的原代应力的双轴应力状态条件。出于研究砌体的弹性变形和破坏的目的,在逐步载入时,使用计算技术开发了使用计算技术的数值实验性能技术。本文的范围包括验证在砖和砂浆之间的界面元件的各种参数下数值实验的建模方法和技术。

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