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Fracture Assessment of Axial Crack in Steel Pipe under Internal Pressure

机译:内部压力下钢管轴裂的断裂评估

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Fracture assessment of axial crack in steel pipe subjected to internal pressure is reviewed. Assessment results were obtained using different methods FC, GS and FAD in order to compare between their results and facilitate their use in any maintenance program. Material type and crack geometry are considered as the main two parameters controlling the failure of the pipe. The constitutive equation of the material is represented by the Ramberg-Osgood model. Six different half crack lengths (40, 60, 80, 100, 120 ,and 140 mm) and four values of the ratio between the crack depth and the pipe thickness are considered (0.2, 0.4, 0.6 and 0.8). The relationship between the fracture parameters (i.e., stress intensity factor K and the J-integral) and the crack length for each assessment method is used. The material properties, plane strain fracture toughness K_(Ic) as well as the critical value of J-integral J_(cr), are used to determine the critical crack size under specified internal pressure. The assessment method that gives smaller critical crack size is the one which is more conservative than the others. The results obtained by using GS and FAD assessment methods show this type of conservation.
机译:综述了经受内部压力的钢管轴裂的断裂评估。使用不同方法FC,GS和FAD获得评估结果,以便在其结果之间进行比较,并促进其在任何维护计划中使用。材料类型和裂缝几何形状被认为是控制管道故障的主要两个参数。材料的组成方程由Ramberg-Osgood模型表示。考虑六个不同的半裂纹长度(40,60,80,10,120和140mm)和裂缝深度与管厚度之间的比率的四个值(0.2,0.4,0.6和0.8)。使用裂缝参数(即应力强度因子K和J-积分)之间的关系和每种评估方法的裂缝长度。材料特性,平面应变断裂韧性K_(IC)以及J-积分J_(CR)的临界值,用于确定规定内部压力下的临界裂纹尺寸。提供较小的临界裂缝尺寸的评估方法是比其他更保守的方法。使用GS和FAD评估方法获得的结果显示了这种保护。

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