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Fine Grains Forming Process, Mechanism of Fine Grain Formation and Properties of Superalloy 718

机译:718合金的细晶形成过程,细晶形成机理及性能

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The mechanical properties of Inconel 718 superalloy are determined primarily by its microstructure and grain size. The grain structure of Inconel 718 is traditionally refined by aging treatment, and a high volume fraction of acicular S phase precipitates before the structure forms. During the following static or dynamic recrystallization process, the existing S phase inhibits recrystallized grain growth and acquires a fine grain structure. In the proposed approach, the Inconel 718 specimens are re-solution heat treated at a temperature higher than the <5 solvus temperature to ensure thorough dissolution of the precipitated S phase into the austenite matrix and produce a niobium oversaturated matrix. The specimens are then cold compressed to produce a dislocation saturated matrix and are finally recrystallized at 950°C to induce the precipitation of fine S phase. The S phase precipitates exert a strong grain-boundary pinning effect, and thus a fine grain structure is obtained despite the high recrystallization temperature. The average grain size in the refined microstructure is found to be 2-3 um, which is around half that of the grain size in the specimens prepared using the conventional process. Hardness testing and tensile testing at 25 and 650°C revealed its superior mechanical properties.
机译:Inconel 718高温合金的机械性能主要取决于其微观结构和晶粒尺寸。传统上,Inconel 718的晶粒结构通过时效处理进行细化,并且在结构形成之前会析出大量的针状S相。在随后的静态或动态再结晶过程中,现有的S相会抑制再结晶晶粒的生长,并获得细晶粒结构。在提出的方法中,对Inconel 718试样进行固溶热处理,其温度要高于<5固溶线温度,以确保将沉淀的S相彻底溶解到奥氏体基体中并产生铌过饱和的基体。然后将样品冷压缩以产生位错饱和基体,最后在950°C下重结晶以诱导细S相的沉淀。 S相析出物发挥强的晶界钉扎作用,因此,即使再结晶温度高,也能得到微细的晶粒组织。发现细化的微结构中的平均晶粒尺寸为2-3μm,约为使用常规方法制备的样品中晶粒尺寸的一半。在25和650°C下的硬度测试和拉伸测试显示出其优越的机械性能。

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