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Detection of Friction Stir Welding Defects of AA1060 Aluminum Alloy Using Specific Damping Capacity

机译:利用特定阻尼能力检测AA1060铝合金的搅拌摩擦焊接缺陷

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摘要

The demand for nondestructive testing has increased, especially in welding testing. In the current study, AA1060 aluminum plates were jointed using the friction stir welding (FSW) process. The fabricated joints were subjected to free vibration impact testing in order to investigate the dynamic properties of the welded joint. Damping capacity and dynamic modulus were used in the new prediction method to detect FSW defects. The data acquired were processed and analyzed using a dynamic pulse analyzer lab shop and ME’Scope’s post-processing software, respectively. A finite element analysis using ANSYS software was conducted on different types of designed defects to predict the natural frequency. The results revealed that defective welded joints significantly affect the specific damping capacity. As the damping ratio increased, so did the indication of opportunities to increase the presence of defects. The finite element simulation model was consistent with experimental work. It was therefore revealed that natural frequency was insufficient to predict smaller defects.
机译:对非破坏性测试的需求已经增加,尤其是在焊接测试中。在当前的研究中,AA1060铝板是使用搅拌摩擦焊(FSW)工艺进行接合的。为了研究焊接接头的动态特性,对制成的接头进行了自由振动冲击测试。在新的预测方法中使用了阻尼能力和动态模量来检测FSW缺陷。分别使用动态脉冲分析仪实验室和ME’Scope的后处理软件对获取的数据进行处理和分析。使用ANSYS软件对不同类型的设计缺陷进行了有限元分析,以预测固有频率。结果表明,不良的焊接接头会显着影响比阻尼能力。随着阻尼比的增加,表明存在缺陷的机会也会增加。有限元仿真模型与实验工作相吻合。因此,发现自然频率不足以预测较小的缺陷。

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