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首页> 外文期刊>Welding International >Analysis of distortion in the welding of 'X' and 'V' joints in reduced-scale models of segmented rings using continuous monitoring with laser sensors
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Analysis of distortion in the welding of 'X' and 'V' joints in reduced-scale models of segmented rings using continuous monitoring with laser sensors

机译:用连续监测用激光传感器连续监测焊接尺度型号焊接模型焊接焊接失真分析

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摘要

Distortion in welded components is a permanent change of shape and dimensions from plastic deformations that occur due to thermal stresses developed during the welding process. Due to the high costs to correct the welding distortion, there is great interest from industries to predict, monitor and control these distortions. This paper compares the distortions occurring during welding models of the segmented ring scaled with two types of joints ('X' and 'V') using the method of monitoring progress of welding distortion with the laser sensors. For continuous monitoring are used laser sensors that are supported on the piece and the beams were projected on a translucent screen placed in front of the same. With the progression of distortion during welding light beams move around the screen in proportion to deformation occurred in the part. The displacements of points of light reflected on the screen are filmed from the opposite side of the bulkhead. The discretization of the film allows to analyze deformations along the welding process and determines the evolution of the distortion in function of time. It was confirmed that the welds performed joints in 'X' exhibit distortion values smaller than the joints in 'V. The results demonstrate that for the samples used in this experiment at least 60% of the distortion occurred after arc extinction. By experimental testing, it was possible to say that the technique of laser sensors monitoring is viable for use in industry and laboratories of welding, although it is necessary to optimize the data processing obtained by filming, allowing the instantaneous monitoring. The information on the evolution of distortion during welding will be useful to define and monitor more efficiently the best method of control. In addition, it may assist in experimental calibration numerical and computational models, or even to feed back the trajectory of a robot identifying deformations to perform corrections in the welding sequence ensuring also minor distortions.
机译:焊接部件中的变形是由于在焊接过程中产生的热应力而发生的塑性变形的形状和尺寸的永久性变化。由于纠正焊接失真的高成本,从行业预测,监控和控制这些扭曲都很有兴趣。本文比较了使用两种类型的接头('X'和'V')的分段环的焊接模型中发生的扭曲,使用了与激光传感器的焊接变形的进展进行了两种关节('X'和'V')。对于连续监测,使用支撑在件上的激光传感器,并且梁突出在放置在前面的半透明屏幕上。随着焊接光束期间的变形的进展,围绕屏幕移动成比例地发生变形。在屏幕上反射的光点的位移从隔板的相对侧拍摄。薄膜的离散化允许分析沿着焊接过程的变形,并确定时间的变形的演变。它被证实焊缝在“X”表现出比“V”中的关节小的“X”表现出的关节。结果表明,对于在该实验中使用的样品,在灭火后至少发生畸变的至少60%。通过实验测试,可以说,激光传感器监测技术可用于工业和焊接实验室的可行性,尽管有必要优化通过拍摄获得的数据处理,允许瞬时监测。有关焊接期间变形演变的信息将有助于定义和监测更有效的控制方法。另外,它可以有助于实验校准数值和计算模型,甚至还馈回机器人的轨迹识别变形以在焊接序列中执行校正,确保细微的失真。

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