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Solid expandable tubular forming behavior based on twin shear stress yield criterion: Analytical, numerical simulation and experiment

机译:基于双剪切应力的固体可扩展管形成行为标准:分析,数值模拟和实验

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摘要

Solid Expandable Tubular (SET) technology is a recent important breakthrough in petroleum exploration and drilling. The expansion forming theory and the constitutive model of the tubular materials are the theoretical basis for the development of this technology. This work focuses on establishing analytical and finite element models on the basis of the Twin Shear Stress (TSS) yield criterion to investigate the forming behavior of solid expandable tubular. The expansion force expression of the power exponential hardening material model was derived. A constitutive model using the TSS yield criterion and related flow rules was proposed and implemented into the ABAQUS software. Further to this, variations of the expansion forces, residual stresses and plastic deformation under different expansion ratios and friction coefficients were investigated. In addition, a tubular expansion experiment was conducted to validate the analytical and finite element solutions. Results show that the expansion force expression is reliable, but there are discrepancies within a reasonable range. The finite element model is capable of predicting the expansion forces, residual stress distributions, thickness reduction and length shortening accurately. Moreover, it is found that the expansion ratio should be controlled below 35% to avoid burst and collapse of the expandable tubular in practical application. For expansion operations, suitable lubrication conditions should be determined to ensure an acceptable expansion force and maintain a certain friction coefficient.
机译:固体可扩展管状(设定)技术是石油勘探和钻井的最重要突破。膨胀形成理论和管状材料的本构模型是该技术发展的理论依据。这项工作侧重于基于双剪切应力(TSS)屈服标准来建立分析和有限元模型,以研究可膨胀管的成形行为。推导出功率指数淬火材料模型的膨胀力表达。建议使用TSS屈服标准和相关流程规则的构成模型并实施到ABAQUS软件中。此外,研究了不同膨胀比和摩擦系数下膨胀力,残余应力和塑性变形的变化。此外,进行了管状扩展实验以验证分析和有限元溶液。结果表明,扩展力表达是可靠的,但合理范围内存在差异。有限元模型能够预测膨胀力,剩余应力分布,厚度减小和长度准确缩短。此外,发现膨胀比应控制在35%以下,以避免在实际应用中突出和塌陷。对于膨胀操作,应确定合适的润滑条件以确保可接受的膨胀力并保持一定的摩擦系数。

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