首页> 外文会议>International Conference on Fracture and Strength of Solids(FEOFS 2005) pt.1; 20050404-06; Bali(ID) >Effect of Recrystallization on Low-cycle Fatigue Behavior of DZ4 Directionally-solidified Superalloy
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Effect of Recrystallization on Low-cycle Fatigue Behavior of DZ4 Directionally-solidified Superalloy

机译:再结晶对DZ4定向凝固高温合金低周疲劳行为的影响

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Effect of recrystallization on DZ4 directionally-solidified nickel-base superalloy was investigated both at room temperature and high temperature of 673K. In-situ SEM surface observation were performed. Experimental results reveal that the material performance is strongly influenced by surface recrystallization layer. All specimens were prepared under conditions of shot peening and 4h 1220℃ high temperature annealing. Different shot peening pressure specimens have different recrystallization states. High shot penning pressure specimens have clear and straight grain boundaries and the grain size appears to be a little bit larger. Recrystallization state seems not only affect the fatigue life, but also the crack initiation pattern and crack initiation life. Low shot peening pressure specimens have much lower fatigue life which is around 8-10% of virgin one, and SEM Real-time observation reveals that channeling cracks initiated at the early stage of fatigue life. High shot peening pressure specimens have higher fatigue life comparing to low shot peening pressure specimens, although it's almost half lower than the virgin one, and cracks initiated not until middle or latter stage of fatigue life. Crack initiation life is also much longer than those of low shot peening pressure. Low shot peening pressure specimens seems not fully recrystallized, and its grain boundaries are much fragile which is responsible for high density microcracks initiation, and finally leads to the failure. Further nano-indention experiments on surface recrystallized layers show that higher shot peening recrystallized layers have much lower elastic module, which may explain the longer crack initiation life.
机译:在室温和673K的高温下,研究了重结晶对DZ4定向凝固的镍基高温合金的影响。进行原位SEM表面观察。实验结果表明,材料性能受表面再结晶层的强烈影响。所有试样均在喷丸处理和1220℃4h高温退火条件下制备。不同的喷丸压力试样具有不同的重结晶状态。喷丸压力高的试样具有清晰而笔直的晶界,并且晶粒尺寸似乎稍大。再结晶状态似乎不仅影响疲劳寿命,而且影响裂纹萌生方式和裂纹萌生寿命。低喷丸压力试样的疲劳寿命要低得多,约为原始试样的8-10%,而SEM实时观察表明,在疲劳寿命的早期阶段就产生了通道裂纹。与低喷丸压力试样相比,高喷丸压力试样具有更高的疲劳寿命,尽管它几乎比原始喷丸压力试样低一半,并且直到疲劳寿命的中期或后期才开始产生裂纹。裂纹萌生寿命也比低喷丸压力长得多。低喷丸压力试样似乎没有完全重结晶,其晶界非常脆弱,这是高密度微裂纹引发的原因,并最终导致失败。在表面再结晶层上进行的进一步纳米压痕实验表明,较高的喷丸硬化再结晶层具有更低的弹性模量,这可以解释更长的裂纹萌生寿命。

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