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Effect of PWHT conditions on mechanical properties of W alloyed 9Cr weld metal -study of effect of PWHT conditions on properties of W alloyed 9Cr weld metal (report 2)

机译:PWHT条件对9Cr钨合金焊接金属力学性能的影响-PWHT条件对9Cr钨合金焊接金属性能的影响研究(报告2)

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Effects of PWHT (Post Weld heat Treatment) conditions on the mechanical properties of the W alloyed GTA weldment of 9Cr-1.8W ferritic heat resistant steel were studied. Tensile test at 293K and Charpy impact test at 293K were conducted on the weld metals. Creep rupture tests of the weld metals and the welded joints were carried out. Obtained results are summarized as follows(1) Tensile strength of the GTA weld metals decreased as PWHT temperature and PWHT time increased.(2) Toughness of the GTA weld metals increased as PWHT temperature increased. However, toughness of the weld metals decrased as PWHT time increased at PWHT temperature of 1013K. This increase of toughness with temperature seemed to due to the drop ofdislocation density and the decrease of toughness with time seemed to due to the growth of precipitates.(3) At 873K and 973K, the creep rupture strength of the GTA weld metals decreased as PWHT temperature increased. However, the influence of PWHT temperature on the creep rupture strength of the weld metals became small as the rupture lives becamelonger.(4) When the stress was higher than around 60 MPa in the creep rupture test of GTA welded joints at 973K, the location of rupture depended on the PWHT temperature. At higher PWHT temperature, welded joint ruptured in the weld metal because of decreasedcreep rupture strength of the weld metal. And at lower PWHT temperature, welded joint ruptured in the base metal. However lower than around 60 MPa, all welded joints ruptured in HAZ and there was little difference in rupture lives between weld metals with 993K-1073K PWHT temperatures.
机译:研究了PWHT(焊后热处理)条件对9Cr-1.8W铁素体耐热钢W合金GTA焊缝力学性能的影响。对焊接金属进行了293K拉伸试验和293K夏比冲击试验。对焊接金属和焊接接头进行了蠕变断裂测试。获得的结果概括如下:(1)随着PWHT温度和PWHT时间的增加,GTA焊缝金属的拉伸强度降低。(2)随着PWHT温度的升高,GTA焊缝金属的韧性增加。然而,在1013K的PWHT温度下,随着PWHT时间的增加,焊缝金属的韧性降低。这种韧性随温度的增加似乎是由于位错密度的降低,而韧性随时间的下降似乎是由于析出物的生长所致。(3)在873K和973K时,随着PWHT的作用,GTA焊接金属的蠕变断裂强度降低。温度升高。然而,随着断裂寿命的延长,PWHT温度对焊接金属的蠕变断裂强度的影响变小。(4)当在973K处GTA焊接接头的蠕变断裂试验中应力大于60 MPa时,该位置破裂的时间取决于PWHT温度。在较高的PWHT温度下,由于焊接金属的蠕变断裂强度降低,焊接接头在焊接金属中破裂。在较低的PWHT温度下,焊接接头在母材中破裂。但是,低于60 MPa时,所有焊接接头均在热影响区中破裂,并且在993K-1073K PWHT温度下,焊接金属之间的破裂寿命几乎没有差异。

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