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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >The Microstructure and Fracture Behavior of the Dissimilar Alloy 690-SUS 304L Joint with Various Nb Addition
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The Microstructure and Fracture Behavior of the Dissimilar Alloy 690-SUS 304L Joint with Various Nb Addition

机译:各种添加Nb的690-SUS 304L异种合金接头的组织和断裂行为

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This study investigates the microstructure and fracture behavior of dissimilar weldments of alloy 690 and SUS 304L for various additions of niobium (0.1, 1.03, 2.49, and 3.35 wt pct) in the flux. With identical parameters and procedures, weldments were butt welded by the shielding metal arc welding (SMAW) process using three layers, with each layer being deposited in a single pass. The results indicate that the microstructure of the fusion zone was primarily dendritic and that the contents of Ni, Cr, and Fe within this zone remain relatively constant and resemble alloy 690. With Nb addition, it is noted that the microstructure changes from a cellular to columnar dendrite and equiaxed dendrite. Meanwhile, the dendrite arm spacing reduces and the secondary arms grow longer. Moreover, the composition of the interdendritic phase, whose precipitate volume percentage increases from 5 to 25 pct, changes from Al-Ti-O to Nb rich. The spread of the interdendritic phase is less in the root bead than in the cap bead due to the greater influence of base metal dilution in this region. Mechanical tests indicate that Nb addition increases the average hardness of the weldment and reduces its elongation prior to rupture. However, the tensile strength is essentially unchanged by Nb addition. It is found that the average hardness of the root bead is generally lower than the cap bead, and that the tensile specimens all rupture in the fusion zone, with the fracture surfaces exhibiting ductile features. It is noted that the cap bead tends to rupture interdendritically with increasing Nb addition. Finally, fractography shows that the dimples in the root become larger and shallower with Nb addition and are rich with an interdendritic phase.
机译:这项研究研究了在焊剂中各种添加铌(0.1、1.03、2.49和3.35 wt pct)的合金690和SUS 304L的异种焊件的显微组织和断裂行为。在相同的参数和步骤下,采用三层屏蔽金属电弧焊(SMAW)工艺对焊件进行对接焊,每层焊道一次沉积。结果表明,熔合区的显微组织主要是树枝状的,并且该区内的Ni,Cr和Fe的含量保持相对恒定并类似于690合金。柱状枝晶和等轴枝晶。同时,枝晶臂间距减小,次级臂长一些。此外,其析出物体积百分比从5增加到25 pct的枝晶间相的组成从Al-Ti-O变为富Nb。由于贱金属稀释在该区域中的更大影响,根部珠中的枝晶间相的扩散小于盖珠中的扩散。机械测试表明,添加Nb可以增加焊件的平均硬度,并降低其断裂前的伸长率。但是,通过添加Nb,抗拉强度基本不变。发现根珠的平均硬度通常低于盖珠,并且拉伸试样在融合区均破裂,断裂表面表现出延展性。应注意的是,随着Nb添加量的增加,盖珠容易发生齿状断裂。最后,断层扫描显示,添加Nb后,根部的凹坑变得更大,更浅,并且富含树突间相。

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