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STUDY ON THE ANGULAR DEFORMATION OF LASER CLADDING ON THIN PLATE

机译:薄板激光覆层角变形的研究

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Laser cladding stainless steel alloying powder on 316 stainless steel thin plate substrate with thickness of 1.2mm was carried out by use of ROFIN DY011 Nd:YAG laser equipped with a coaxial powder feed nozzle. The effects of laser power, scanning speed and line energy on the deformation extent of the thin plates during laser cladding processing were studied system atically. The experimental results demonstrate that the deformation of 316 stainless steel thin plate is serious, and the thin plates become saddle form after laser cladding. The bending angle of substrate increases with the increase of laser power, scanning speed and line energy firstly, and then decrease when the parameters are bigger than some critical values. The bending extent is related to the yield strength, temperature gradient and size of plastic zone of the substrate.
机译:通过使用Rofin DY011 Nd:YAG激光器配有同轴粉末进给喷嘴,通过使用厚度为1.2mm的316不锈钢薄板基板上的316不锈钢薄板基板。系统地研究了激光功率,扫描速度和线能量对激光包层加工过程中薄板变形程度的影响。实验结果表明,316不锈钢薄板的变形是严重的,并且薄板在激光熔覆后成为鞍形式。衬底的弯曲角度随着激光功率的增加而增加,扫描速度和线能量首先增加,然后当参数大于一些临界值时减少。弯曲程度与基板的塑性区的屈服强度,温度梯度和尺寸有关。

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