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Evaluation of multiaxial low cycle creep-fatigue life for Mod.9Cr-1Mo steel under non-proportional loading

Mod.改良9Cr-1Mo鋼の非比例負荷における多軸低サイクルクリープ疲労寿命評価

中山 雄太*; 小川 文男*; 旭吉 雅健*; 橋立 竜太 ; 若井 隆純 ; 伊藤 隆基*

Nakayama, Yuta*; Ogawa, Fumio*; Hiyoshi, Noritake*; Hashidate, Ryuta; Wakai, Takashi; Ito, Takamoto*

高温において多軸負荷を受ける改良9Cr-1Mo鋼のクリープ疲労強度について述べる。中空円筒試験片を用いて、さまざまなひずみ波形での低サイクル疲労試験を実施した。低サイクル疲労試験は、軸ひずみを固定した比例負荷と、軸ひずみとせん断ひずみの位相差が90度の非比例負荷の下で実施した。応力緩和とひずみ保持が破壊寿命に及ぼす影響を検討するために、さまざまなひずみ速度での低サイクル疲労試験とさまざまな保持時間でのクリープ疲労試験も実施した。2種類の多軸クリープ疲労寿命評価方法を提案した。第一の方法は、非比例負荷係数とクリープ損傷を考慮したマンソンのユニバーサルスロープ法を使用してひずみ範囲を計算する。第二の方法は、線形損傷則を用いて非比例負荷係数を考慮して疲労損傷を計算し、修正延性損耗則からクリープ損傷を計算する。第二の方法は精度が優れ、第一の方法はそれより精度は劣るが、実用性が高い。

This study discusses the creep-fatigue strength for Mod.9Cr-1Mo steel at a high temperature under multiaxial loading. A low-cycle fatigue tests in various strain waveforms were performed with a hollow cylindrical specimen. The low cycle fatigue test was conducted under a proportional loading with a fixed axial strain and a non-proportional loading with a 90-degree phase difference between axial and shear strains. The low cycle fatigue tests at different strain rates and the creep-fatigue tests at different holding times were also conducted to discuss the effects of stress relaxation and strain holding on the failure life. In this study, two types of multiaxial creep-fatigue life evaluation methods were proposed: the first method is to calculate the strain range using Manson's universal slope method with considering a non-proportional loading factor and creep damage; the second method is to calculate the fatigue damage by considering the non-proportional loading factor using the linear damage law and to calculate the creep damage from the improved ductility exhaustion law. The accuracy of the evaluation methods is much better than that of the methods used in the evaluation of actual machines such as time fraction rule.

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パーセンタイル:33.99

分野:Metallurgy & Metallurgical Engineering

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