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Real-time estimation of weld penetration using weld pool surface based calibration

机译:使用基于焊池表面的校准实时估算焊缝熔深

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Appropriate depth of weld penetration is required in many precision joining application but the weld penetration underneath the work-piece is not directly/conventionally measurable during the welding process. This work aims at establishing an analytic model to correlate the measurable weld pool surface to the development of the weld pool. To this end, the analytical solution of single-ellipsoidal static heat source in finite thick plate is used to calculate the temperature filed that provides the penetration of the developing weld pool. However, the analytical solution may not be as accurate as expected because the convection, radiation etc. have been omitted in order to obtain the analytic solution. A 3D measurement of the weld pool surface is thus used to calibrate the size and shape of the calculated weld pool such that the analytical model after the calibration will provide weld pool boundary and penetration to control the welding parameters. It is found that such calibration that combines analytic model and on-line weld pool surface can provide an estimation for the weld pool underneath the work-piece with an accuracy better than 90% in all three dimensions. As a result, the weld pool development will be able to be dynamically controlled to assure the desired weld penetration for the desired weld integrity as well as for future optimal control of the welding process.
机译:在许多精密连接应用中,需要适当的焊缝熔深,但是在焊接过程中,不能直接/常规地测量工件下方的焊缝熔深。这项工作旨在建立一个分析模型,以将可测量的熔池表面与熔池的发展相关联。为此,使用有限厚板中的单椭圆形静态热源的解析解来计算提供扩展的焊缝熔深的温度场。但是,由于为了获得分析溶液而省略了对流,辐射等,因此分析溶液可能不如预期的那样准确。因此,焊池表面的3D测量用于校准计算出的焊池的大小和形状,以使校准后的分析模型将提供焊池边界和熔深以控制焊接参数。已经发现,将分析模型和在线焊池表面结合起来的这种校准可以在三个维度上提供优于工件90%的精度的工件下方焊池的估计值。结果,将能够动态地控制焊缝的发展,以确保对于期望的焊缝完整性以及对焊接工艺的将来的最佳控制的期望的焊缝熔深。

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