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首页> 外文期刊>International Journal of Damage Mechanics >Prediction of ductile failure in materials for onshore and offshore pipeline applications
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Prediction of ductile failure in materials for onshore and offshore pipeline applications

机译:陆上和海上管道应用中材料的延性失效预测

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摘要

This paper shows the procedures needed to calibrate a numerical model intended for ductile damage estimation of bulk materials. For this purpose, an extensive experimental campaign has been carried out on three steels used for offshore/onshore pipe applications. Tests have been performed providing very different stress states: tensile and compressive uniaxial tests, multiaxial tensile tests on round notched bars, 3-point bend tests, again on notched geometries, and plane strain tensile tests on large grooved specimens. Based on the gathered results, a standard plasticity model has been tuned and then the damage model parameters have been identified for each investigated material. The chosen theoretical formulation can take into account all of the experimental evidence: hence, the numerical model represents a useful tool for finite element simulation of engineering problems where information concerning the materials ultimate resistance capability is needed. Moreover, the proposed calibration technique has general validity and can be used to tune other similar damage models.
机译:本文显示了校准用于散装材料延性损伤估计的数值模型所需的程序。为此,已经对用于海上/陆上管道应用的三种钢进行了广泛的实验。进行的测试提供了非常不同的应力状态:拉伸和压缩单轴测试,圆形带槽钢筋的多轴拉伸测试,三点弯曲测试,带槽几何形状的再次测试以及大型带槽试样的平面应变拉伸测试。根据收集的结果,已对标准可塑性模型进行了调整,然后为每种被调查材料确定了损伤模型参数。选择的理论公式可以考虑所有实验证据:因此,数值模型代表了工程问题的有限元模拟的有用工具,在工程问题中需要有关材料极限抗力能力的信息。此外,所提出的校准技术具有一般有效性,可用于调整其他类似的损伤模型。

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