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Creep fracture mechanism in welded joints of P91 steel

机译:P91钢焊接接头的蠕变断裂机理

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The creep rupture strength of the welded joint of P91 steel (9Cr-1Mo-V-Nb) is limited by that of the fine grained region of its heat affected zone (HAZ). The fine grained HAZ has the lowest creep rupture strength, and the creep voids are mostly concentrated in this region in comparison with the coarse grained HAZ, the weld metal and the base metal of the welded joint. This is mainly due to the higher rate of recovery of the subgrain structure (coarsening of subgrains and recovery of dislocations within the subgrains) in the fine grained HAZ. Type IV fracture occurred in the fine grained HAZ of the cross-weld specimens after the long term creep tests at low stresses at 600 and 650°C. It occurred by the formation of creep voids. There are two types of voids. The first is the voids that form wedge type cracks at the triple points between the prior austenite grain boundaries at intermediate stresses at 600 and 650°C. The second is the voids that form round type cracks on the prior austenite grain boundaries and the subgrain boundaries at low stresses in long term creep tests at 600 and 650°C. These voids form at the interfaces between the matrix and the coarse intergranular particles of Laves, Z and Cr rich carbide phases.
机译:P91钢(9Cr-1Mo-V-Nb)的焊接接头的蠕变断裂强度受到其热影响区(HAZ)的细晶粒区域的蠕变断裂强度的限制。细晶粒的热影响区具有最低的蠕变断裂强度,并且与粗晶粒的热影响区,焊接接头的母材和母材相比,蠕变空隙大部分集中在该区域。这主要是由于细粒热影响区的亚晶粒结构恢复速率较高(亚晶粒粗化和亚晶粒内位错的恢复)。经过长期蠕变试验,在600和650°C的低应力下进行长期蠕变试验后,IV型断裂发生在交叉焊接试样的细晶粒热影响区中。它是由于蠕变空隙的形成而发生的。有两种类型的空隙。第一个是在600和650°C的中间应力下在先前奥氏体晶界之间的三点处形成楔形裂纹的空隙。第二个是在600和650°C的长期蠕变试验中,在低应力下,在先前的奥氏体晶界和亚晶界上形成圆形裂纹的空隙。这些空隙形成在基体与富拉夫斯,富Z和富Cr的碳化物相的粗粒间颗粒之间的界面上。

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