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In-process measurement of melt pool cross-sectional geometry and grain orientation in a laser directed energy deposition additive manufacturing process

机译:激光定向能量沉积添加剂制造工艺中熔池横截面几何和晶体取向的过程测量

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摘要

Understanding the behaviour of melt pool during laser directed energy deposition (L-DED) is essential for the prediction and control of process quality. Previous effort was focused on the observation of melt pool surface characteristics. In this paper, a coaxial imaging system was employed to determine the melt pool cross sectional geometry and to predict solidified grain orientation during a high deposition rate L-DED process. The image processing procedure, deposition track cross-sectional profile prediction and the relationship between melt pool shape and melt pool dynamics, and grain growth orientation were investigated. Results show that sharp melt pool edges can be obtained so that melt pool width can be predicted with an accuracy of more than 95%. The estimation method of melt pool length has an accuracy of 90%. With the experimental melt pool width and depth data, the cross-sectional profiles of deposited track are predicted at an accuracy of 92% and a good match with experimental data is obtained. The melt pool formation is found to be able to allow the prediction of crystal growth directions during solidification.
机译:了解激光定向能量沉积期间熔池池的行为(L-DED)对于过程质量的预测和控制是必不可少的。以前的努力集中在熔融池表面特征的观察。在本文中,采用同轴成像系​​统来确定熔融池横截面几何形状,并在高沉积速率L-DED工艺期间预测凝固晶粒取向。研究了图像处理过程,沉积轨道横截面轮廓预测和熔融池形状和熔融池动力学的关系,以及晶粒生长取向。结果表明,可以获得夏普熔池边缘,从而可以预测熔池池宽度,精度超过95%。熔融池长度的估计方法具有90%的精度。利用实验熔池宽度和深度数据,预测沉积轨道的横截面轮廓以92%的精度预测,获得与实验数据的良好匹配。发现熔融池形成能够在凝固过程中允许预测晶体生长方向。

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