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Inspection of the residual stress on welds using laser ultrasonic supported with finite element analysis

机译:使用有限元分析使用激光超声波焊接对焊缝的残余应力检查

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摘要

Ultrasonic evaluation for residual stress measurement has been an effective method owing to its easy implementation, low cost and intrinsically being nondestructive. The velocity variations of acoustic waves in materials can be related to the stress state in the deformed medium by the acoustoelastic effects. In this study, a laser/EMAT ultrasonic method is proposed to evaluate the surface/subsurface longitudinal residual stress distribution generated by gas metal arc welding (GMAW). The velocity variation V/V of Rayleigh wave, which is a surface wave, will be experimentally measured. Q-Switched Nd:YAG laser is used to generate a broadband ultrasonic wave. An electromagnetic acoustic transducer (EMAT) is attached to the welding plate for Rayleigh wave pick up. As the ultrasound receiver, the EMAT is used to measure time of flight (ToF) of the Rayleigh waves traveling along a specific path parallel to the direction of the welding seam. ToF measurements are obtained by changing Rayleigh wave path to welding zone center distance from 0 to 45 mm. A 3D thermomechanical-coupled finite element model is then developed to validate the capability of the proposed technique for welding-induced residual stress evaluation. The distributions of the normalized velocity variations from ToF experiments are compared with the distribution of the normalized longitudinal residual stresses from finite element analysis (FEA). It has been shown that there is a good correlation between these two distributions. The proposed technique provides a potential nondestructive avenue for surface/subsurface residual stress evaluation for welding parts.
机译:由于其易于实施,低成本和无损性无损,对残余应力测量的超声评估是一种有效的方法。材料中声波的速度变化可以通过声弹性效应与变形介质中的应力状态有关。在本研究中,提出了一种激光/ EMAT超声波方法来评估气体金属弧焊(GMAW)产生的表面/地下纵向残余应力分布。实验测量是表面波的瑞利波的速度变化V / V。 Q开关ND:YAG激光器用于产生宽带超声波。电磁声换能器(EMAT)连接到瑞利波拾取的焊接板上。作为超声接收器,EMAT用于测量沿着平行于焊缝方向的特定路径行进的瑞利波的飞行时间(TOF)。通过将瑞利波路径更改为焊接区域中心距离0至45mm来获得TOF测量。然后开发了3D热机械耦合有限元模型以验证所提出的焊接诱导的残余应力评估技术的能力。将来自TOF实验的归一化速度变化的分布与来自有限元分析(FEA)的归一化纵向残余应力的分布进行了比较。已经表明这两个分布之间存在良好的相关性。该技术为焊接部件提供了一种潜在的非破坏性途径,用于焊接部件的表面/地下残余应力评估。

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