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High temperature low cycle fatigue behavior of a directionally solidified Ni-base superalloy DZ951

机译:定向凝固镍基高温合金DZ951的高温低周疲劳行为

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摘要

Total strain-controlled low cycle fatigue (LCF) tests were performed at a temperature range from 700 to 900 ℃ in ambient air condition on a directionally solidified Ni-base superalloy DZ951. The fatigue life of DZ951 alloy does not monotonously decrease with increasing temperature, but exhibits a strong dependence on the total strain range. The dislocation characteristics and failed surface observation were evaluated through transmission electron microscopy and scanning electron microscopy. The alloy exhibits cyclic hardening, softening or cyclic stability as a whole, which is dependent on the testing temperature and total strain range. At 700 ℃, the cyclic plastic deformation process is the main cause of fatigue failure. At 900 ℃, the failure mostly results from combined fatigue and creep damage under total strain range from 0.6 to 1.2% and the reduction in fatigue life can be taken as the cause of oxidation, creep and cyclic plastic deformation under total strain range of 0.5%.
机译:在定向凝固的镍基高温合金DZ951上,在环境空气条件下,温度范围为700至900℃的条件下,进行了总应变控制的低循环疲劳(LCF)测试。 DZ951合金的疲劳寿命不会随温度的升高而单调降低,但对总应变范围的依赖性很大。通过透射电子显微镜和扫描电子显微镜评价位错特征和失效表面观察。合金整体上表现出循环硬化,软化或循环稳定性,这取决于测试温度和总应变范围。在700℃时,循环塑性变形过程是疲劳破坏的主要原因。在900℃时,失效主要是由于总应变在0.6〜1.2%范围内引起的疲劳和蠕变损伤共同引起的,疲劳寿命的降低可以被认为是在0.5%的总应变范围内发生氧化,蠕变和循环塑性变形的原因。 。

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