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Influence of Crack-Surface Oxidation on Creep-Fatigue Crack Behavior of 1Cr- and 10Cr-Steels

机译:裂纹表面氧化对1Cr-和10Cr钢蠕变疲劳裂纹行为的影响

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High temperature components with notches, defects, and flaws can introduce crack initiation and crack propagation under service conditions. Fracture mechanics procedures are needed to study crack problems and to support an advanced remnant life evaluation. Since a more flexible service mode of steam power plants causes a higher number of start-up and shut-down events, creep-fatigue crack behavior is decisive for life assessment and integrity of components. Usually, fracture mechanics experiments are carried out under air conditions, although in cases of internal cracks they are not in contact with air. Therefore, it is of interest to realize the degree to which environmental conditions, e.g., crack-tip oxidation, can influence crack initiation and crack growth behavior. In order to reveal problems related to high temperature components, the crack initiation time and crack growth rate were determined in air environment and in a gas with controlled atmosphere on 1CrMo(Ni)V- and 10CrMoWVNbN-steels. Crack initiation and propagation under creep-fatigue conditions have been described with the fracture mechanics parameters C~*, K_I, and ΔK_I and C~*. A modified "Two-Criteria-Diagram" was used to describe creep-fatigue crack initiation.
机译:具有缺口,缺陷和缺陷的高温组分可以在服务条件下引入裂纹启动和裂纹传播。需要裂缝力学程序来研究裂缝问题,并支持高级残余寿命评估。由于蒸汽发电厂的更灵活的服务模式引起了较高数量的启动和关闭事件,因此蠕变 - 疲劳裂纹行为对于寿命评估和组件的完整性是决定性的。通常,骨折力学实验在空气条件下进行,尽管在内裂的情况下,它们不与空气接触。因此,实现环境条件的程度,例如裂纹尖端氧化,可以影响裂纹引发和裂纹生长行为。为了揭示与高温成分相关的问题,在空气环境中确定裂纹引发时间和裂纹生长速率,并在1crmo(Ni)V-和10crmowvnbn-钢上具有受控气氛的气体中。已经用裂缝力学参数C〜*,K_I和ΔK_I和C〜*描述了蠕变疲劳条件下的裂纹启动和传播。改进的“双标准 - 图”用于描述蠕变疲劳裂纹启动。

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