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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Layer-to-Layer Height Control for Laser Metal Deposition Process
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Layer-to-Layer Height Control for Laser Metal Deposition Process

机译:激光金属沉积工艺的层间高度控制

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摘要

A laser metal deposition height control methodology is presented in this paper. The height controller utilizes a particle swarm optimization (PSO) algorithm to estimate model parameters between layers using measured temperature and track height profiles. Using the estimated model, the powder flow rate reference profile, which will produce the desired layer height reference, is then generated using iterative learning control (ILC). The model parameter estimation performance using PSO is evaluated using a four-layer single track deposition, and the powder flow rate reference generation performance using ILC is tested using simulation. The results show that PSO and ILC perform well in estimating model parameters and generating powder flow rate references, respectively. The proposed height control methodology is then tested experimentally for tracking a constant height reference with constant traverse speed and constant laser power. The experimental results indicate that the controller performs well in tracking constant height references in comparison with the widely used fixed process parameter strategy. The application of layer-to-layer height control produces more consistent layer height increment and a more precise track height, which saves machining time and increases powder efficiency.
机译:本文提出了一种激光金属沉积高度控制方法。高度控制器利用粒子群优化(PSO)算法,使用测得的温度和轨道高度轮廓来估计各层之间的模型参数。使用估计的模型,然后使用迭代学习控制(ILC)生成粉末流速参考曲线,该曲线将产生所需的层高参考。使用PSO的模型参数估计性能是通过四层单轨沉积进行评估的,而使用ILC的粉末流量参考生成性能是通过仿真进行测试的。结果表明,PSO和ILC分别在估计模型参数和生成粉末流量参考方面表现良好。然后对提出的高度控制方法进行实验测试,以跟踪具有恒定移动速度和恒定激光功率的恒定高度参考。实验结果表明,与广泛使用的固定过程参数策略相比,该控制器在跟踪恒定高度参考方面表现良好。层到层高度控制的应用可产生更一致的层高度增量和更精确的轨道高度,从而节省了加工时间并提高了粉末效率。

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