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首页> 外文期刊>Engineering Fracture Mechanics >Fracture toughness evaluation of interstitial free steel sheet using Essential Work of Fracture (EWF) method
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Fracture toughness evaluation of interstitial free steel sheet using Essential Work of Fracture (EWF) method

机译:裂缝(EWF)法的间隙自由钢板裂缝韧性评估

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摘要

Essential Work of Fracture (EWF) method has been used to evaluate ductile tearing resistance of interstitial-free (IF) steel sheet of 1mm thickness. Experiments have been done on double edge notched tensile (DENT) specimens with and without fatigue precracking at three different quasistatic ramp rates. The fracture in all cases was flat with maximum specimen necking of 36% of thickness. The estimated crack tip opening angle (CTOA, psi(e)) was found to be essentially independent of rho, and also of deformation rate. The critical CTOA (phi(e)) was optically estimated using a precracked DENT specimen. Also, the tearing resistance parameters obtained from EWF tests have been compared with that determined using 3-dimentional Finite Element Modeling (FEM). Results of FEM, along with a chosen traction-separation law, were used in a 3-dimentional Cohesive Zone Model (CZM) for flat fracture to simulate crack growth behavior in the DENT specimens.
机译:裂缝(EWF)方法的基本作用已被用于评估厚度1mm厚度(IF)钢板的延性撕裂性。 在双边缘缺口拉伸(凹部)样本上已经进行了实验,并且在三种不同的Quasistatic斜坡速率下没有疲劳预夹。 所有情况下的骨折都是平坦的,最大标本颈颈部厚度为36%。 发现估计的裂缝尖端开口角度(CTOA,PSI(e))基本上与ROO和变形率不同。 使用预粘的凹痕标本光学估计临界CTOA(PHI(e))。 此外,已经将从EWF测试获得的撕裂性参数与使用3-二维有限元建模(FEM)进行比较。 FEM的结果以及所选择的牵引分离法用于3-二维内聚区模型(CZM),用于平坦骨折,以模拟凹痕标本中的裂纹生长行为。

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