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Creep crack growth behavior of P91 steel weldments

机译:P91钢焊件的蠕变裂纹扩展行为

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The steels operating at elevated temperatures are well known to be exposed to premature failure due to cracking caused by constant thermal stress, i. e. secondary creep process. Therefore, creep crack growth tests were carried out on compact tension specimens machined from P91 weld joint at 600°C to determine its behavior in realistic conditions. At the same time, numerical method for predicting the creep crack growth in compact tension specimens by a series of incremental steady-state finite element analysis were performed using Norton’s law to represent creep behavior. Verification of the finite element predictions were obtained for weld metal and heat affected zone by comparison with experimental results, indicating at the same time that creep crack growth rates are significantly higher for weld metal than for base metal.
机译:众所周知,在高温下操作的钢由于恒定的热应力即开裂而导致的开裂会遭受过早的破坏。 e。二次蠕变过程。因此,在600°C下对由P91焊接接头加工而成的紧凑拉伸试样进行了蠕变裂纹扩展测试,以确定其在实际条件下的行为。同时,采用诺顿定律来表示蠕变行为,通过一系列的增量稳态有限元分析,采用数值方法来预测紧凑拉伸试样中的蠕变裂纹扩展。通过与实验结果进行比较,获得了对焊接金属和热影响区的有限元预测的验证,同时表明,焊接金属的蠕变裂纹增长率明显高于母材。

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