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Crack-Free Welding of IN 738 by Linear Friction Welding

机译:通过线性摩擦焊接在738中无裂缝焊接

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Inconel 738 (IN 738), like other precipitation-hardened nickel-base superalloys that contain a substantial amount of Al and Ti, is very difficult to weld due to its high susceptibility to heat-affected zone (HAZ) cracking during conventional fusion welding processes. The cause of this cracking, which is usually intergranular in nature, has been attributed to the liquation of various phases in the alloy, subsequent wetting of the grain boundaries by the liquid and decohesion across one of the solid-liquid interfaces due to on-cooling tensile stresses. In the present work, crack-free welding of the alloy was obtained by linear friction welding (LFW), notwithstanding the high susceptibility of the material to HAZ cracking. Gleeble thermo-mechanical simulation of the LFW process was carefully performed to study the microstructural response of IN 738 to the welding thermal cycle. Correlation between the simulated microstructure and that of the weldments was obtained, in that, a significant grain boundary liquation was observed in both the simulated specimens and actual weldments due to non-equilibrium reaction of second phase particles, including the strengthening gamma prime phase. These results show that in contrast to the general assumption of LFW being an exclusively solid-state joining process, intergranular liquation is possible during LFW. However, despite a significant occurrence of liquation in the alloy, no HAZ cracking was observed, which can be partly related to the nature of the imposed stress during LFW.
机译:Inconel 738(在738中),如含有大量Al和Ti的其他沉淀硬化的镍基超合金,由于其在传统熔接过程中的热影响区域(HAZ)开裂的高易感性,因此非常难以焊接。这种裂化的原因通常是性质中的晶间,其归因于合金中各种相的液相,随后由于冷却而导致的固体液体界面之一的液体和脱粘的晶界润湿拉伸应力。在本作工作中,通过线性摩擦焊接(LFW)获得合金的无裂缝焊接,尽管材料对HAZ裂缝的高易感性,但对于HAZ开裂的敏感性高。 Gleeble热机械模拟LFW工艺进行了仔细进行,以研究738对焊接热循环的微观结构响应。获得模拟微观结构与焊焊的相关性,其中,由于第二相颗粒的非平衡反应,在模拟试样和实际焊接中观察到显着的晶界,包括强化γ蛋白相。这些结果表明,与LFW的一般假设相比,在LFW期间,晶间液相可能是可能的。然而,尽管合金中存在显着发生的液化,但没有观察到HAZ裂缝,其可以与LFW期间施加的应力的性质部分相关。

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