首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >FRACTURE BEHAVIOR OF X65 QT SEAMLESS PIPELINE STEEL UNDER DIFFERENT STRAIN RATES AND STRESS STATES
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FRACTURE BEHAVIOR OF X65 QT SEAMLESS PIPELINE STEEL UNDER DIFFERENT STRAIN RATES AND STRESS STATES

机译:不同应变率和应力状态下X65 Q&T无缝管线钢的断裂行为

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Dynamic crack propagation in pressurized pipelines is usually investigated by means of lab-scale specimens due to its economic feasibility and material saving. More recently, new generation of pipeline steels have incredibly shown a combined fracture toughness and plastic strength capabilities with even more heavier wall thickness, for which current design standards and practice codes underpredict largely the actual material response under different strain rates. The Drop-Weight Tear Test (DWTT) is commonly used to characterize dynamic fracture behavior of pipeline steel and its numerical implementation with appropriate constitutive equations has become essential in the fundamental understanding of the interaction between fracture process and local stress-strain fields. In the present study, a X65 Q&T seamless pipeline steel is fully characterized under different strain rate levels and stress states for dynamic fracture initiation. A rate dependent phenomenological fracture criterion is proposed in the form of Modified Mohr-Coulomb (MMC) fracture model coupling with a multiplicative decomposition of the hardening law to describe strain rate effect on post-necking behavior. The model implementation is then validated through a drop-weight tearing analysis on standard and non-standard specimen configurations including different wall thickness.
机译:由于其经济可行性和材料储蓄,通常通过实验室标本调查加压管道中的动态裂纹繁殖。最近,新一代管道钢非常令人难以置信的骨折韧性和塑料强度能力,墙壁厚度更加较重,目前的设计标准和实践代码在很大程度上基本上是不同应变率下的实际材料响应。滴重撕裂试验(DWTT)通常用于表征管道钢的动态断裂行为,其数值实现具有适当的本构体方程,对裂缝过程与局部应力 - 应变场之间的相互作用的基本理解是必不可少的。在本研究中,X65 Q&T无缝管线钢完全表征在不同的应变速率水平和应力状态下进行动态骨折开始。以修饰的MoHR-COULOMB(MMC)裂缝模型耦合的形式提出了一种速率依赖性现象骨折标准,其与硬化定律的乘法分解,描述对颈后行为的应变率效应。然后通过对包括不同壁厚的标准和非标准标本配置的滴重撕裂分析来验证模型实现。

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