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首页> 外文期刊>Materials Science and Engineering >Influence of dwell time on the creep-fatigue behavior of a directionally solidified Ni-based superalloy DZ445 at 850 ℃
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Influence of dwell time on the creep-fatigue behavior of a directionally solidified Ni-based superalloy DZ445 at 850 ℃

机译:停留时间对定向凝固Ni基高温合金DZ445在850℃下蠕变疲劳行为的影响

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摘要

Total strain-controlled creep-fatigue tests were performed for a directionally solidified Ni-based superalloy at 850 °C in air. Dwell times of 0, 1, 2, 3, 5, and 8 min were introduced at the tensile peak for each cycle. The results demonstrated that the fatigue life firstly decreased and then slightly increased with increasing dwell time. The fatigue life showed a minimum at a dwell time of 3 min. The initial softening rate was faster than the subsequent softening rate when dwell times of 1 and 2 min were used compared to the case with no dwell time. A compressive mean stress was produced by stress relaxation in the tensile dwell period. The reduction in the fatigue life was caused by a mixture of fatigue and creep deformation behaviors. However, the initial softening rate increased and a small amount of subsequent hardening occurred when 5 and 8 min of dwell times were applied. The higher compressive mean stress and a slight increase in the fatigue life for these samples of 5 and 8 min dwell times were attributed to a mixture of creep and plastic deformation. The change in the fatigue life with increasing dwell time was explained on the basis of the mechanical response, deformation mechanism, and fracture mechanism of the DZ445 superalloy.
机译:在850 C的空气中对定向凝固的Ni基高温合金进行了总应变控制的蠕变疲劳试验。在每个循环的拉伸峰值处引入了0、1、2、3、5和8 8分钟的停留时间。结果表明,疲劳寿命随着保压时间的增加先降低然后略有增加。在3分钟的停留时间下,疲劳寿命最小。与没有停留时间的情况相比,使用1和2?min的停留时间时,初始软化速度要快于随后的软化速度。通过在拉伸停留时间内的应力松弛产生压缩平均应力。疲劳寿命的减少是由于疲劳和蠕变变形行为的混合引起的。然而,当施加5和8分钟的停留时间时,初始软化速率增加并且随后发生少量的硬化。在5和8分钟的停留时间下,这些样品的压缩平均应力较高,疲劳寿命略有增加,这归因于蠕变和塑性变形的混合。根据DZ445高温合金的力学响应,变形机理和断裂机理,解释了疲劳寿命随停留时间的增加而发生的变化。

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