首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural evolutions and fracture behaviors of a newly developed nickel-base superalloy during creep deformation
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Microstructural evolutions and fracture behaviors of a newly developed nickel-base superalloy during creep deformation

机译:新开发的镍基超合金在蠕变变形期间的微观结构演进和断裂行为

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The creep behaviors of the newly designed nickel-base superalloy M951G have been studied over a stress range of 120-760 MPa and a temperature range of 700 degrees C-1000 degrees C, and the corresponding relationship among testing conditions-microstructural evolutions and fracture characteristics-creep properties has been established. Results show that both the microstructural evolutions and fracture characteristics are dependent on testing temperatures and applied stresses. According to X-ray diffraction (XRD) examinations, creep deformations at 700-800 degrees C and high temperatures low stresses have not any distinctive effect on the acquired patterns. However, deformations at high temperatures relatively higher stresses have significantly highlighted the (220)(gamma &') planes, which may enhance the creep strength and lead to a better plasticity for M951G alloy. Furthermore, precipitate dimensional changes and their effects on creep properties also have been widely discussed. At the same testing temperature, creep life of M951G alloy decreases with applied stress increasing, which has been analyzed in detail. Fracture behaviors of M951G alloy are observed by using optical microscope (OM) and scanning electron microscope (SEM), which change from a mixed type of transgranular and intergranular to pure intergranular cracking with the variation of creep conditions. The values of apparent stress exponents at 700 degrees C and 1000 degrees C are calculated to be about 11.5 and 6.4 respectively, the difference of which is due to the changes of the deformation mechanisms, fracture modes and the degeneration of microstructures. (c) 2018 Published by Elsevier B.V.
机译:已经在120-760MPa的应力范围和700摄氏度的温度范围内研究了新设计的镍基超合金M951G的蠕变行为,以及测试条件 - 微观结构演进和断裂特性的相应关系 - 已经建立了探索性质。结果表明,微观结构演进和断裂特性都取决于测试温度和施加应力。根据X射线衍射(XRD)检查,700-800摄氏度的蠕变变形和高应力低应力对所获得的图案没有任何独特的影响。然而,在高温下的变形相对较高的应力显着突出了(220)(γ))平面,其可以提高蠕变强度并导致M951G合金的更好可塑性。此外,还广泛讨论了沉淀尺寸变化及其对蠕变性质的影响。在相同的测试温度下,M951G合金的蠕变寿命随着施加的应力增加而降低,这已经详细分析。通过使用光学显微镜(OM)和扫描电子显微镜(SEM)观察M951G合金的断裂行为,从混合型晶状体和晶间变化,与蠕变条件的变化改变。 700摄氏度的表观应力指数的值分别计算为约11.5和6.4,其差异是由于变形机构,断裂模式和微结构退化的变化。 (c)2018由elestvier b.v出版。

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