单轴张力
结构工程
应变硬化指数
材料科学
变形(气象学)
压力(语言学)
拉伸试验
应力-应变曲线
张力(地质)
极限抗拉强度
本构方程
硬化(计算)
复合材料
有限元法
工程类
语言学
哲学
图层(电子)
作者
P. Arasaratnam,K.S. Sivakumaran,Michael J. Tait
出处
期刊:ISRN Civil Engineering (Print)
[Hindawi Limited]
日期:2011-08-17
卷期号:2011: 1-11
被引量:65
摘要
A standard uniaxial tensile test, which establishes the engineering stress-strain relationship, in general, provides the basic mechanical properties of steel required by a structural designer. Modern numerical analysis techniques used for analysis of large strain problems such as failure analysis of steel structures and elements metal forming, metal cutting, and so forth, will require implementation and use of true stress-true strain material characterization. This paper establishes a five stage true stress-strain model for A992 and 350W steel grades, which can capture the behavior of structural steel, including the postultimate behavior of steel, until fracture. The proposed model uses a power law in strain hardening range and a weighted power law in the postultimate range. The true stress-true strain model parameters were established through matching of numerical analysis results with the corresponding standard uniaxial tensile test experimental results. The material constitutive relationship so derived was then applied to predict the load-deformation behavior of coupons with a hole in the middle region subjected to direct tension loading. The predicted load-deformation behavior of perforated tension coupons agreed well with the corresponding test results validating the proposed characterization of the true stress-true strain relationship for structural steel.
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