纯镍钢基于电弧沉积的成形质量分析及视觉监测

    Forming Quality Analysis and Visual Monitoring of Pure Nickel Steel Arc Deposition

    • 摘要: 使用电弧增材制造技术在Q235钢基板上采用纯镍焊丝进行单道多层往复沉积实验,研究分析了沉积电流、沉积速度及层间温度对表面成形质量的影响。结果表明:送丝沉积速度比恒定时,电流增大,表面粗糙度升高;电流恒定,沉积速度增大时,表面粗糙度先降低后升高;只有层间温度升高时,表面粗糙度随之升高。纯镍增材时的热影响区金属过热时间过长使热裂纹的形成倾向增加。因此,基于有限元分析,建立了层间温度与冷却时间关系预测模型,并与实验结果验证。对于沉积物宽度的反馈,通过设计视觉监测传感系统,将高度检测和宽度检测结合,利用Laplacian算子边缘检测等图像处理算法进行拟合,实时获取沉积金属尺寸数据,为后续闭环控制过程提供反馈数据。

       

      Abstract: Arc additive manufacturing technology carried out the single-channel multi-layer reciprocating deposition experiment of pure nickel welding wire on Q235 steel substrate. The effects of deposition current, deposition speed, and interlayer temperature on surface forming quality were studied and analyzed. The results show that when the wire feed deposition speed ratio is constant, the current and surface roughness increase. When the current is constant and the deposition rate increases, the surface roughness decreases first and then increases. Only when the interlayer temperature increases does the surface roughness increase, the overheat time of the heat-affected zone metal during pure nickel additive increases the tendency of hot crack formation. Therefore, based on the finite element analysis, a prediction model of the relationship between interlayer temperature and cooling time is established and verified with the experimental results. For the feedback of sediment width, by designing a visual monitoring sensing system, the height detection and width detection are combined, and the image processing algorithm such as Laplacian operator edge detection is used for fitting to obtain the size data of deposited metal in real-time and provide feedback data for the subsequent closed-loop control process.

       

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