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CDM predictions of creep damage initiation and growth in ferritic steel weldments in a medium-bore branched pipe under constant pressure at 590℃ using a four-material weld model

机译:使用四材料焊接模型的CDM预测在590℃恒压下中孔支管中铁素体钢焊接件的蠕变损伤的发生和增长

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The paper reports the use of three-dimensional creep continuum damage mechanics techniques to study the creep failure of a medium-bore low-alloy ferritic-steel cylinder-cylinder branched pressure vessel welded connection, tested at a constant pressure of 4 MPa, at a uniform temperature of 590℃. The development of computational techniques is reported to analyse this problem with a four-material model of the welded connection which includes: parent, type IV, heat-affected zone (HAZ) and weld materials. The results of analyses are presented for two sets of creep damage constitutive equations. For both equation sets, lifetimes are conservatively, yet accurately predicted; however, the results of metallographic examinations of a tested vessel are not accurately predicted. To overcome this deficiency further analyses of the vessel are recommended which include: a coarse-grained HAZ (CGHAZ), adjacent to the weld material; and, more-refined finite element modelling.
机译:本文报道了使用三维蠕变连续介质损伤力学技术研究中孔低合金铁素体-钢瓶-圆柱分叉压力容器焊接连接的蠕变破坏的方法,并在4 MPa的恒压下进行了测试。均匀温度590℃。据报道,计算机技术的发展利用焊接的四材料模型来分析此问题,该模型包括:母体,IV型,热影响区(HAZ)和焊接材料。给出了两组蠕变损伤本构方程的分析结果。对于这两个方程组,寿命都是保守的,但可以准确预测。但是,不能准确预测被测容器的金相检查结果。为了克服这一缺陷,建议对容器进行进一步分析,包括:与焊接材料相邻的粗粒热影响区(CGHAZ);以及更完善的有限元建模。

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