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Development of a new 718-type Ni-Co superalloy family for high temperature applications at 750°C

机译:开发适用于750°C高温应用的新型718型Ni-Co高温合金系列

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Alloy718 has been used for many years in the aerospace industry due to its unique mechanical properties and good processing characteristics, especially its workability. However, the temperature limit of Alloy718 is about 650?°C because of the thermal instability of the main strengthening phase γ′′-Ni3(Nb,Ti,Al). Numerous attempts have been made to develop a new wrought 718-type alloy for high temperature applications. The approach was to increase the stability, i.e. the solvus temperature of the γ′-phase (Tγ′,s). However, this affected workability as the solvus temperature of the δ-phase (Tδ,s) did not increase accordingly so that the window for fine grain forging Tδ,s-Tγ′,s became smaller. In this paper the development of a new γ′/γ′-alloy on the basis of Alloy718 is presented, where the microstructure is stable at 800?°C, mechanical properties are similar to Alloy718, yet do not deteriorate beyond 650?°C, and the forging window is wider than the one of Alloy718, allowing for good workability. This was essentially achieved by the addition of about 17%–30% Co in combination with an Al/Ti-ratio of more than 5.0 and an Al-content of about 1.6%–2.2%. The key role of cobalt is to stabilize the δ-phase, allowing for solvus temperatures in excess of 1100?°C. Consequently, the stability of the γ′ -phase can be increased by further addition of aluminium. At the same time the Ti-content is reduced to prevent formation of the η-(Ni,Co)3(Ti,Al,Nb) phase. Besides discussion of the alloy development concept, information on microstructure evolution and mechanical properties will be given.
机译:由于其独特的机械性能和良好的加工特性,特别是其可加工性,Alloy718已在航空航天工业中使用了很多年。然而,由于主要强化相γ''-Ni3(Nb,Ti,Al)的热不稳定性,Alloy718的温度极限约为650°C。已经进行了许多尝试来开发用于高温应用的新型锻造718型合金。该方法是增加稳定性,即γ′相的固溶温度(Tγ′,s)。但是,由于δ相的固溶温度(Tδ,s)没有相应地增加,因此影响了可加工性,因此细晶粒锻造的窗口Tδ,s-Tγ′,s变小。本文介绍了基于Alloy718合金的新型γ'/γ'合金的开发,该合金的微观结构在800°C时稳定,力学性能与Alloy718相似,但在650°C时不会劣化。 ,并且锻造窗口比Alloy718宽,因此具有良好的可加工性。这基本上是通过添加约17%–30%的Co与超过5.0的Al / Ti比和约1.6%–2.2%的Al含量实现的。钴的关键作用是稳定δ相,使固溶温度超过1100?C。因此,可以通过进一步添加铝来提高γ'相的稳定性。同时,减少Ti含量以防止形成η-(Ni,Co)3(Ti,Al,Nb)相。除了讨论合金开发概念外,还将提供有关微观组织演变和力学性能的信息。

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