课题基金 / 基金详情

Research Initiation Award: Energy Based Damage Model and Procedure for Safety Analysis of Structural Systems In Steel Buildings

Research Initiation Award: Energy Based Damage Model and Procedure for Safety Analysis of Structural Systems In Steel Buildings
研究启动奖:基于能量的损伤模型和钢结构系统安全分析程序
批准号:
9010208
负责人:
Iqbal Singh Sohal
金额:
$6.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-07-01 至 1993-06-30

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
大多数工程结构的设计都是为了承受特定的服务或正常负荷。然而,计算机技术的最新发展为结构在其整个生命周期内的预期负荷设计创造了潜力。采用这种方法设计的结构将具有更好的耐久性、可维护性和易损性。本文将建立一种基于能量的损伤模型,用于计算损伤钢结构构件的剩余强度和刚度。剩余强度计算将利用构件的屈服面、极限面和破坏面,它们将根据钢结构构件的广义力来定义。为了对结构体系进行安全评价,需要开发一套损伤分析计算机程序。为了提高安全分析程序的效率,将通过采用随变形增加而变化的偏转形状来导出损坏构件的刚度矩阵。结构系统的安全性将通过利用修改现有可靠性技术开发的程序进行评估。确定结构系统损伤和失效概率的整个过程将实现自动化。上述发展将通过与现有实验和分析结果的比较来验证。所建立的损伤模型和安全分析算法将有助于基于期望损伤和失效概率的结构系统设计。它们还将有助于钢结构系统的设计,在极端载荷下,将避免集中损坏和过早失效。
英文摘要
Most engineering structures are being designed to carry specified service or normal loads. However, recent developments in computer technology have created a potential for design of structures against the loads expected during the whole cycle of their life. The structures designed by using this approach will have improved durability, maintainability and damageability. Herein, an energy based damage model will be developed for computation of residual strength and stiffness of damaged steel structural members. The residual strength computations will utilize yield, limit and failure surfaces of the member which will be defined in terms of generalized forces for steel structural members. For safety evaluation of structural systems, a damage analysis computer code is to be developed. For increasing the efficiency of the safety analysis procedure, a stiffness matrix will be derived for the damaged member by employing a deflected shape which varies with increasing deformations. The safety of structural systems will be evaluated by utilizing a procedure developed by modifying the existing reliability technique. The whole procedure of determining probabilities of damage and failure of structural systems will be automated. The above developments will be validated by comparisons with existing experimental and analytical results. The developed damage model and safety analysis algorithm will aid in design of structural systems based on desired probability of damage and failure. They will also aid in design of steel structural systems which, under the extreme loads, will avoid concentration of damage and premature failure.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金