首页> 外文期刊>Journal of Materials Science >GAMMA PRIME (GAMMA') PRECIPITATING AND AGEING BEHAVIOURS IN TWO NEWLY DEVELOPED NICKEL-BASE SUPERALLOYS
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GAMMA PRIME (GAMMA') PRECIPITATING AND AGEING BEHAVIOURS IN TWO NEWLY DEVELOPED NICKEL-BASE SUPERALLOYS

机译:GAMMA PRIME(GAMMA')在两种新开发的镍基超级合金中的析出和时效行为

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摘要

Two cast nickel-base superalloys with superior creep rupture lives at high temperatures and high stresses were developed. In the present study, the microstructural characteristics of gamma'-precipitates and the hardening behaviour were studied by electron microscopy and micro-hardness testing. The alloys were solution-treated at 1553 K for 2 h and air-cooled followed by step ageing heat treatments. Ageing up to 300 h at 1143, 1223 and 1293 K was carried out to examine the effects of ageing temperature and ageing time on the growth of gamma'-precipitates. The growth kinetics of gamma'-precipitates was analysed. The experimental evidence reveals that the morphology of gamma' does not change in shape during heat treatments. The gamma' is usually cubic in both Alloy B and Allay C. Growth of yl precipitates proceeds by Ostwald ripening controlled by volume diffusion of solute atoms despite the high volume fraction of gamma' and complex compositions in these two alloys. The activation energies for the growth are evaluated as 272 and 277 kJ mol(-1) for Alloy B and Alloy C, respectively, which correlate well to coarsening of gamma' in other commercial and developed superalloys. The hardness increases to a peak value at about 20 to 60 h for Alloy B and at about 10 to 20 h for Alloy C du ring ageing. The hardness of the alloys hardly decreases and still maintains a high value at high temperatures after passing the hardness peak. [References: 26]
机译:开发了两种在高温和高应力下具有优异蠕变断裂寿命的铸造镍基高温合金。在本研究中,通过电子显微镜和显微硬度测试研究了γ'析出物的微观结构特征和硬化行为。将合金在1553 K下固溶处理2小时,然后空冷,然后进行时效时效热处理。在1143、1223和1293 K下进行了长达300小时的时效处理,以考察时效温度和时效对γ'沉淀物生长的影响。分析了γ'沉淀的生长动力学。实验证据表明,在热处理过程中,γ'的形态不会改变形状。 γ'在合金B和Alay C中通常都是立方晶。尽管在这两种合金中γ'和复杂成分的体积分数很高,但通过溶质原子的体积扩散控制的奥斯特瓦尔德熟化来促进yl沉淀的生长。合金B和合金C的生长活化能分别评估为272和277 kJ mol(-1),与其他商业和开发的超级合金中γ'的粗化密切相关。合金B的硬度在约20至60 h时达到峰值,而合金C在环时效时则在10到20 h时达到峰值。经过硬度峰值后,合金的硬度几乎不会降低,并且在高温下仍保持较高的值。 [参考:26]

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