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Microstructural control in hot working of IN-718 superalloy using processing map

机译:IN-718合金热加工过程中的组织控制图

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摘要

The hot-working characteristics of IN-718 are studied in the temperature range 900 °C to 1200 °C and strain rate range 0.001 to 100 s−1 using hot compression tests. Processing maps for hot working are developed on the basis of the strain-rate sensitivity variations with temperature and strain rate and interpreted using a dynamic materials model. The map exhibits two domains of dynamic recrystallization (DRX): one occurring at 950 °C and 0.001 s−1 with an efficiency of power dissipation of 37 pct and the other at 1200 °C and 0.1 s−1 with an efficiency of 40 pct. Dynamic recrystallization in the former domain is nucleated by the δ(Ni3Nb) precipitates and results in fine-grained microstructure. In the high-temperature DRX domain, carbides dissolve in the matrix and make interstitial carbon atoms available for increasing the rate of dislocation generation for DRX nucleation. It is recommended that IN-718 may be hot-forged initially at 1200 °C and 0.1 s−1 and finish-forged at 950 °C and 0.001 s−1 so that fine-grained structure may be achieved. The available forging practice validates these results from processing maps. At temperatures lower than 1000 °C and strain rates higher than 1 s−1 the material exhibits adiabatic shear bands. Also, at temperatures higher than 1150°C and strain rates more than 1s−1, IN-718 exhibits intercrystalline cracking. Both these regimes may be avoided in hotworking IN-718.
机译:使用热压缩试验研究了IN-718在900°C至1200°C的温度范围和0.001至100 s-1的应变速率范围内的热加工特性。热加工的加工图是根据应变率灵敏度随温度和应变率变化而开发的,并使用动态材料模型进行解释。该图显示了两个动态重结晶(DRX)域:一个发生在950°C和0.001 s-1时,功耗为37 pct,另一个发生在1200°C和0.1 s-1时,效率为40 pct 。 δ(Ni3Nb)析出物使前一个域中的动态再结晶成核,并产生细晶粒的微观结构。在高温DRX域中,碳化物溶解在基质中并使间隙碳原子可用于增加DRX成核的位错生成速率。建议将IN-718最初在1200°C和0.1 s-1的温度下热锻,然后在950°C和0.001 s-1的温度下精锻,以便获得细晶粒的结构。可用的锻造实践可从加工图验证这些结果。在低于1000°C的温度和高于1 s-1的应变速率下,材料表现出绝热剪切带。同样,在高于1150°C的温度和超过1s-1的应变速率下,IN-718表现出晶间裂纹。在热加工IN-718中可以避免这两种情况。

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    Srinivasan N; Prasad YVRK;

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  • 年度 1994
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