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STUDY OF CONSTRAINT ISSUES IN ELASTO-PLASTIC FRACTURE ANALYSIS USING EXPERIMENTAL AND FINITE ELEMENT SIMULATION

机译:实验与有限元模拟的弹塑性断裂分析中的约束问题研究

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In this investigation, the variation of J-integral considering Compact Tension (CT) specimen geometry varying a/W and a using 2D and 3D elasto-plastic Finite Element (FE) analysis have been studied. Further, the investigation has been done to examine the relationship between the J and 8 for varied a/W and a. The plane stress and plane strain elasto-plastic FE analyses have been conducted on the CT specimen with a/W=0.45-0.65 to extract the J and Crack-tip Opening Displacement (CTOD) values for mild steel. The comparative study of the variation of d_n with a/W of mild steel with earlier results of IF steel is carried out. The study clearly infers the effect of yield stress on the variation of the magnitude of d_n with reference to a/W ratio. The present analysis infers that while converting the magnitude of the CTOD to J one needs to carefully evaluate the value of d_n depending on the material rather than considering it to be unity. Further, the study was extended to experimental and 3D FEA wherein J-integral and CTOD were estimated using the CT specimen. Experimental results reveal that the crack length, the specimen thickness, and the loading configuration have an effect on the fracture toughness measurements. The error analysis between the results obtained by 3D FEA and experimentation were conducted and found to be within limits.
机译:在这项研究中,研究了考虑紧凑张力(CT)样品几何形状随A / W变化以及使用2D和3D弹塑性有限元(FE)分析的J积分的变化。此外,已经进行了研究以检查对于变化的a / W和a,J和8之间的关系。在a / W = 0.45-0.65的CT样品上进行了平面应力和平面应变弹塑性有限元分析,以提取低碳钢的J和裂纹尖端开口位移(CTOD)值。进行了d_n随低碳钢的a / W变化与IF钢早期结果的比较研究。这项研究清楚地推断出屈服应力对d_n大小变化的影响(相对于a / W比)。本分析推断,在将CTOD的幅度转换为J时,需要根据材料仔细评估d_n的值,而不是将其视为单一的。此外,该研究扩展到了实验和3D FEA,其中使用CT样本估算了J积分和CTOD。实验结果表明,裂纹的长度,试样的厚度和载荷形态对断裂韧性的测量有影响。进行了通过3D FEA获得的结果与实验之间的误差分析,发现误差在限制范围内。

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