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Experimental and numerical study of strength mismatch in cross-weld tensile testing

机译:交叉焊缝拉伸试验中强度失配的实验与数值研究

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摘要

The mechanical properties of welded boiler tubes used in power plants can be significantly altered as a result of the fabrication history, such as pre-straining and heat treatment. The primary aim of the study was to determine the effect of fabrication history on local tensile properties across the welds. This was achieved by testing cross-weld specimens machined from welded thin-walled tubes (with unstrained or pre-strained base metal) before and after heat treatment. Digital image correlation, which is a full-field strain measurement technique, was implemented in order to obtain the local stress–strain curves and to extract the corresponding local tensile properties such as offset proof stress. Evidence of strain hardening due to the constraint and thermo-mechanical cycles during the welding process was found in the heat-affected zone and evidence of softening was observed in the pre-strained base metal. It was found that the heat treatment process removed the effect of pre-straining and welding on the proof stress and the strength along the specimen was nearly homogenized. However, mapping the local stress–strain curves in the as-welded cross-weld specimens with pre-strained base metal has revealed abnormal strain relaxation with increase in load in the weld-affected region. For a better understanding of this behaviour, a tensile test of a cross-weld specimen with a large strength mismatch between the weld metal and the base metal was simulated using the finite element method. It was found that the strength mismatch in the specimen causes the development of biaxial stresses in the heat-affected zone once local yielding begins, and the use of global axial stress to construct the local stress–strain curve results in an apparent ‘reduced-strain’ anomaly. Nevertheless, for the strength mismatch ratios studied, this anomalous behaviour did not seem to significantly affect the determination of the local proof stress in the specimens.
机译:发电厂使用的焊接锅炉管的机械性能会因制造过程(例如预应变和热处理)而发生显着变化。该研究的主要目的是确定制造历史对整个焊缝局部拉伸性能的影响。这是通过在热处理之前和之后测试由焊接薄壁管(具有未应变或预应变的母材)加工而成的交叉焊接试样而实现的。为了获得局部应力-应变曲线并提取相应的局部拉伸特性(如抗偏应力),实施了数字图像关联(这是一种全场应变测量技术)。在热影响区发现了由于焊接过程中的约束和热机械循环而导致的应变硬化的迹象,而在预应变的母材中观察到了软化的迹象。发现热处理工艺消除了预应变和焊接对屈服应力的影响,并且沿试样的强度几乎均匀化。但是,绘制带有预应变母材的焊接后交叉焊接试样中的局部应力-应变曲线,发现在焊接影响区域中,随着载荷的增加,应变异常松弛。为了更好地理解这种行为,使用有限元方法对在焊接金属和母材之间具有较大强度失配的交叉焊接试样进行了拉伸试验。研究发现,一旦局部屈服开始,试样中的强度失配就会引起热影响区中的双轴应力的发展,并且使用整体轴向应力来构建局部应力-应变曲线会导致明显的“减小应变”。异常。然而,对于所研究的强度失配率,这种异常行为似乎并没有显着影响试样中局部屈服强度的确定。

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    Acar Murat O.; Gungor Salih;

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  • 年度 2015
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