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Microstructures forming in friction welding of Inconel 718 alloy - joint performance and its controlling factors in friction welding of Inconel 718 alloy

机译:Inconel 718合金摩擦焊接的微观组织形成-Inconel 718合金摩擦焊接的接头性能及其控制因素。

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Microstructures forming in the friction welding of Inconel 718 alloy have been investigated in order to understand the phenomena occurring during the welding process and to determine the factor controlling the joint performance from a metallographic point of view. In the interfacial zone, liquation microstructures characterized by a eutectic structure consisting of gamma and Laves phases, and Nb-rich microstructures along the grain boundary (Nb-rich GB microstructures) were observed, and their amounts increased with the friction time and pressure. The volume fractions of these liquation structures were greater in the flash than in the interfacial zone, suggesting that the liquid phase was preferentially expelled into the flash by friction pressure, compared with the solid phase. Since the liquid phase was rich in Nb, this preferential expulsion of the liquid phase caused the depletion of Nb, a major element for the precipitation hardening of the alloy. The depletion of Nb brought about a decrease in the hardness in the interfacial zone after a post-weld heat treatment for precipitation hardening. Thus, although the friction bonding is a solid state welding process, the liquation occurs in the weld of Inconel 718 alloy having a wide solid-liquid coexisting temperature range, and has a significant influence on the joint performance.
机译:为了了解在焊接过程中出现的现象并从金相学的角度确定控制接头性能的因素,对Inconel 718合金的摩擦焊接中形成的微结构进行了研究。在界面区域,观察到以γ相和Laves相构成的共晶组织为特征的液化微结构,以及沿晶界的富Nb微结构(富Nb GB微结构),并且随着摩擦时间和压力的增加其数量增加。这些液化结构的体积分数在闪蒸中比在界面区域中大,这表明与固相相比,液相优先通过摩擦压力排入闪蒸。由于液相中富含Nb,因此优先排出液相导致Nb耗尽,Nb是合金沉淀硬化的主要元素。 Nb的消耗导致在用于沉淀硬化的焊后热处理后界面区域的硬度降低。因此,尽管摩擦接合是固态焊接工艺,但是在具有宽固液共存温度范围的Inconel 718合金的焊接中发生液化,并且对接头性能具有显着影响。

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