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THE LAW OF CRACK GROWTH LIFE UNDER LOAD CONTROLLED CREEP-FATIGUE CONDITIONS FOR W-ADDED 12 CR STEEL

机译:含W的12%CR钢的负荷控制蠕变疲劳条件下的裂纹扩展寿命定律

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W-added 12% Cr ferritic heat resistant steel has been used as a steam turbine rotor material. The turbine rotor material is damaged by high temperature creep and fatigue due to starts and stops and changing load of power generation, which results in crack initiation and growth. In the studies done before, the law of crack growth life under creep-fatigue conditions was characterized and clarified that the characteristics of crack growth life of various load frequencies under different temperatures change from fatigue to creep behavior through an inflection region. The law of crack growth life under creep-fatigue interactive conditions has been reported and evaluated by monotonous linear law. On the other hand, it has been indicated that the characteristics of crack growth life under creep-fatigue condition can be represented mathematically by a three dimensional characteristic curved surface based on non-equilibrium science. In this study, crack growth tests using standardized C(T) specimens of W-added 12% Cr ferritic heat resistant steel were conducted under various conditions of stress holding time, applied stress and temperature. To evaluate the effect of cycle dependent and time dependent mechanisms on crack growth life, a method of separate estimation of cycle dependent mechanism from the time dependent mechanism based on the concept of three dimensional characteristic curved surface based on non-equilibrium science were used. As a result, the effect of load frequency on crack growth life was characterized and the predictive law of crack growth life for W-added 12% Cr ferritic heat resistant steel under creep-fatigue interactive conditions based on the concept of Q~* with the transition function of crack growth life was estimated.
机译:含钨的12%Cr铁素体耐热钢已被用作蒸汽轮机转子材料。涡轮转子材料会因启动和停止以及发电负载的变化而受到高温蠕变和疲劳的损害,从而导致裂纹的产生和扩展。在之前的研究中,表征并阐明了蠕变疲劳条件下裂纹扩展寿命的规律,并阐明了在不同温度下,各种载荷频率下的裂纹扩展寿命的特性会从疲劳到蠕变行为,都通过拐点区域发生变化。已经报道了单调线性定律并评估了蠕变-疲劳相互作用条件下的裂纹扩展寿命定律。另一方面,已经表明基于蠕动疲劳条件下的裂纹扩展寿命的特征可以通过基于非平衡科学的三维特征曲面来数学表示。在这项研究中,使用添加了W的12%Cr铁素体耐热钢的标准化C(T)试样在各种应力​​保持时间,施加应力和温度条件下进行了裂纹扩展测试。为了评估周期依赖和时间依赖机制对裂纹扩展寿命的影响,使用了一种基于非平衡科学的三维特征曲面概念,将周期依赖机制与时间依赖机制分开估算的方法。结果,基于Q〜*的概念,表征了载荷频率对裂纹扩展寿命的影响,以及蠕变疲劳交互条件下添加W的12%Cr铁素体耐热钢的裂纹扩展寿命的预测规律。估计了裂纹扩展寿命的过渡函数。

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