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Determination of opening mode stress intensity factor in edge cracked specimen by means of digital shearography

机译:用数字剪切技术测定边缘开裂试样的开模应力强度因子

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In this paper, digital Shearography as a non-destructive technique is deployed to determine the opening mode stress intensity factor in an edge cracked specimen subjected to tensile loading. The optical setup was consisted of two in-plane illumination sources to determine purposed strain variable and consequently to obtain the opening mode stress intensity factor based on the assumptions of linear elastic fracture mechanics (LEFM). The speckle pattern images taken by a CCD camera were recorded and saved on a computer. In order to utilize the advantage of whole field Shearography and minimise the random experimental errors, the least square technique was used to obtain the stress intensity factors. A finite element model of the specific geometry was constructed, and ABAQUS v6.7 commercial software was used to perform the analyses. Comparison of the experimental data with the numerical results proved the credibility and potential of this non-destructive method as a practical measurement technique. The average difference between the results obtained from experiments and those of finite element analyses was nearly 8%.
机译:在本文中,采用数字剪切作为一种非破坏性技术来确定边缘拉伸试样在拉伸载荷下的开模应力强度因子。光学装置由两个面内照明光源组成,以确定线性应变变量,从而基于线性弹性断裂力学(LEFM)的假设获得张模应力强度因子。记录由CCD相机拍摄的斑点图案图像,并将其保存在计算机上。为了利用全场剪切的优势并最大程度地减少随机实验误差,使用最小二乘技术获得应力强度因子。构建了特定几何形状的有限元模型,并使用ABAQUS v6.7商业软件进行了分析。实验数据与数值结果的比较证明了这种无损检测方法作为一种实用的测量技术的可靠性和潜力。从实验获得的结果与有限元分析的结果之间的平均差将近8%。

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