首页> 外文会议>ASME Pressure Vessels and Piping Conference >RESIDUAL STRESS FINITE ELEMENT ANALYSIS AND MEASUREMENTS OF A TUBE PENETRATION J-GROOVE ATTACHMENT WELD IN A HEMISPHERICAL HEAD OF A LARGE FERRITIC PRESSURE VESSEL - PART II OUTER NOZZLE
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RESIDUAL STRESS FINITE ELEMENT ANALYSIS AND MEASUREMENTS OF A TUBE PENETRATION J-GROOVE ATTACHMENT WELD IN A HEMISPHERICAL HEAD OF A LARGE FERRITIC PRESSURE VESSEL - PART II OUTER NOZZLE

机译:大铁素体压力容器半球头管渗透J槽附接焊接的残余应力有限元分析及测量。第二型外喷嘴

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A programme of work was undertaken to gain an understanding of the residual stress levels in the tube penetration J-groove welds in a hemispherical head of a large stainless steel clad ferritic pressure vessel. This second part of a two-part paper describes the finite element analysis that was carried out to model an off-centre outer tube to vessel head weld. A 3D finite element residual stress model was developed. The complex bead deposition sequence of the actual weld was simulated by a bead lumping approach using 9 passes. The results from the finite element analyses were compared with both surface and through thickness stress measurements. These measurements were taken on a mock weld that was representative of the actual component. The surface measurements were taken by using an incremental centre hole drilling technique. The through thickness values were obtained from deep hole drilling measurements at three positions around the circumference of the weld. For this off-centre penetration the cladding process was not modelled nor was clad applied to the test mock-up. The finite element results and the measured values showed similar trends in the variation of stress around the circumference of the weld. A poor correlation between measurements and analytical results was obtained at the lower hillside position. A major reason for the discrepancy is believed to be that the bead lumping approach that was used in the finite element model was not a sufficiently refined representation of the actual weld bead deposition sequence. Note however that one of the aims of this finite element analysis was to quantify the variations between the centre tube presented in the first part of this paper and the off centre tube presented here. In this regard the finite element model and measurements compared well. The finite element model was also used to carry out two sensitivity studies that investigated the effects upon residual stress of tube geometry and material properties. For the case where a nozzle tube was extended significantly below the vessel head inner surface the results showed the stresses to be significantly higher than the baseline case.
机译:开展了一项工作计划,以了解大型不锈钢包层铁素体压力容器的半球形头部管渗透J沟焊缝中的残余应力水平。两个部分纸的第二部分描述了将偏心外管模拟到船头焊缝的有限元分析。开发了3D有限元残余应力模型。通过使用9次通过的珠子拉伸方法模拟实际焊缝的复合珠沉积序列。将有限元分析的结果与表面和厚度应力测量进行比较。这些测量结果是在代表实际组分的模拟焊缝上。通过使用增量中心钻孔技术进行表面测量。通过在焊缝圆周周围的三个位置处从深孔钻孔测量获得通过厚度值。对于这种偏离中心渗透,包层的过程未建模,也不适用于测试模拟。有限元结果和测量值显示出相似的趋势在焊缝的圆周周围的应力变化。在较低的山坡位置获得测量和分析结果之间的相关性差。据信差异的主要原因是有限元模型中使用的珠子拉伸方法不是实际焊缝沉积序列的充分精制表示。然而,注意到这种有限元分析的目的之一是量化本文第一部分和这里呈现的偏离中心管所示的中心管之间的变化。在这方面,有限元模型和测量比较良好。有限元模型还用于进行两个敏感性研究,该研究研究了对管几何形状和材料性能的残余应力的影响。对于喷嘴管显着低于血管头内表面的情况,结果显示了应力明显高于基线情况。

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