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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Evaluation of a numerical model for tapered threaded connections subjected to combined loading using enhanced experimental measurement techniques
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Evaluation of a numerical model for tapered threaded connections subjected to combined loading using enhanced experimental measurement techniques

机译:使用增强的实验测量技术评估承受组合载荷的锥形螺纹连接的数值模型

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摘要

Threaded connections used in the oil and gas industry have to withstand ever-increasing axial and pressure loads. The structural behavior of these joints can be predicted using numerical models, provided these are soundly validated. Within this article, a finite element model of tapered, shoulderless connections containing a trapezoidal thread type is experimentally validated conducting a test load envelope experiment and a tensile failure test. The evaluation is performed using both conventional and advanced measurement techniques. Surface strains are validated by comparing digital image correlation and strain gage results with the numerical output. An almost perfect quantitative match between the numerically predicted axial strains and the experimentally measured strain gage data is obtained. In addition, a qualitative match can also be observed when considering the axial strains obtained by digital image correlation. Furthermore, infrared thermography measurements are compared to the numerical deformation energy, assuming that temperature is an additional, but indirect parameter to evaluate the validity of the model. From the results, the proposed model has proven to be reliable when a combination of axial tension and internal pressure is applied. While the model is originally designed to predict the connection's structural behavior for loads up to the yield strength, it is possible to estimate this behavior for higher loads by modifying the contact area.
机译:石油和天然气行业中使用的螺纹连接必须承受不断增加的轴向和压力负载。这些接头的结构行为可以使用数值模型进行预测,前提是这些方法已得到有效验证。在本文中,通过进行试验载荷包络试验和拉伸破坏试验,对包含梯形螺纹类型的锥形无肩连接的有限元模型进行了实验验证。评估使用常规和高级测量技术进行。通过比较数字图像相关性和应变计结果与数值输出来验证表面应变。获得了数值预测的轴向应变和实验测量的应变计数据之间几乎完美的定量匹配。另外,当考虑通过数字图像相关性获得的轴向应变时,也可以观察到定性匹配。此外,假设温度是评估模型有效性的附加但间接参数,则将红外热像仪测量结果与数值变形能进行比较。从结果可以证明,当应用轴向张力和内部压力的组合时,所提出的模型是可靠的。该模型最初旨在预测直至屈服强度的载荷的连接结构行为,但可以通过修改接触面积来估计更高载荷的连接行为。

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