首页> 外文会议>ASME Pressure Vessels and Piping conference >EXPRESSION OF A GENERIC FULL-RANGE TRUE STRESS-TRUE STRAIN MODEL FOR PIPELINE STEELS USING THE PRODUCT-LOG (OMEGA) FUNCTION
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EXPRESSION OF A GENERIC FULL-RANGE TRUE STRESS-TRUE STRAIN MODEL FOR PIPELINE STEELS USING THE PRODUCT-LOG (OMEGA) FUNCTION

机译:使用积对数(OMEGA)函数表示管道的一般全应力真实应力真实应变模型

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Steel pipelines are subjected to a variety of complex, and sometimes difficult to predict, loading schemes during the fabrication, installation and operation phases of their lifecycles. Consequently, the mechanical behavior of steel pipelines is not only influenced by the steel grade but also by the loading history of the pipe segments. Due to the resultant intricacies of the nonlinear load-deformation behavior of pipelines, adequate numerical analysis techniques are usually required for simulation of pipelines under different loading schemes. The validity of such numerical simulations is largely influenced by the accuracy of the true stress-true strain characterization of the pipeline steels. However, existing stress-strain mathematical expressions, developed for the characterization of metallic materials over the full-range of the stress-strain relationship, have been observed to either loose predictive accuracy beyond a limited strain range or, for the more accurate full-range models, are cumbersome due to their requirement of a large number of constituent parameters. This paper presents a relatively accurate and simple true stress-true strain model which is capable of accurately predicting the stress-strain behavior of pipeline steels over the full range of strains. The proposed stress-strain model is characteristically unlike existing stress-strain models as it is essentially defined by a Product-Log function using two proposed parameters, and is capable of capturing a reasonable approximation of the yield plateau in the stress-strain curve. To validate the proposed model, curve-fitting techniques are employed for comparison to experimental data of the stress-strain behavior of different pipeline steel grades (X52 - X100). Excellent agreements are observed between the proposed model and the different pipeline steels over the full-range of the true stress-true strain relationship. Furthermore, the applicability of the proposed model is validated by means of a proposed parametric procedure for predicting the ultimate compressive strength of shell elements.
机译:钢管道在其生命周期的制造,安装和操作阶段会经受各种复杂的,有时难以预测的加载方案。因此,钢管的机械性能不仅受钢种的影响,还受管段的加载历史的影响。由于管道的非线性载荷-变形行为的复杂性,通常需要采用适当的数值分析技术来模拟不同载荷方案下的管道。这种数值模拟的有效性在很大程度上受管线钢的真实应力-真实应变表征的准确性影响。但是,已经发现,现有的应力-应变数学表达式是为在应力-应变关系的整个范围内表征金属材料而开发的,其预测精度超出了有限的应变范围,或者对于更精确的全范围而言,其预测精度较差。由于需要大量的组成参数,因此模型很麻烦。本文提出了一个相对准确和简单的真实应力-真实应变模型,该模型能够准确预测管道钢在整个应变范围内的应力-应变行为。所提出的应力-应变模型在特征上不同于现有的应力-应变模型,因为它实质上是由使用两个建议参数的乘积对数函数定义的,并且能够捕获应力-应变曲线中屈服平稳期的合理近似值。为了验证所提出的模型,采用曲线拟合技术与不同管线钢等级(X52-X100)的应力-应变行为的实验数据进行比较。在真实应力-真实应变关系的整个范围内,所提出的模型与不同的管线钢之间都观察到了极好的协议。此外,所提出的模型的适用性通过所提出的用于预测壳单元的最终抗压强度的参数过程进行了验证。

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