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Optimization Study of the Operating Conditions to Improve the Quality of Surfaces Coating Obtained by Plasma Spraying Process

机译:等离子喷涂工艺改善表面涂层质量的操作条件优化研究

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In the present paper we aim to present a numerical optimizing stud y on the operating conditions of an atmospheric plasma spraying process. The focus is mainly made on the powder injection parameters and the objective is to improve the quality of surface coatings. First, a 'validation' test of the Jets&Poudres code is conducted based on various numerical and experimental former works. The results of the Jets&Poudres code seem to be a good compro mise between the results of different numerical methods and the experimental measurements. Second, a Taguchi experimental design is conducted to explore the influence parts for five operating parameters in the spraying process. This, results in a primary gas flow rate of 45 SL/min, a spray distance of 12 cm, a particle size around 55μm, a powder feed rate ranging close to 1 l/min and finally an electric power of about 25 kW. Finally, a test case for a ternary gas mixture is conducted on 15000 particles using the Jets&Poudres code to assess the conclusions drawn in the studies using the experimental design. The results are confronted together and discussed.
机译:在本文中,我们旨在提出一种在大气等离子喷涂工艺操作条件下的数值优化研究。重点主要放在粉末注射参数上,目的是提高表面涂层的质量。首先,根据各种数值和实验性的前作对Jets&Poudres代码进行“验证”测试。 Jets&Poudres代码的结果似乎是对不同数值方法的结果和实验测量结果之间的很好的折衷。其次,进行了Taguchi实验设计,以探索喷涂过程中五个操作参数的影响部分。这导致一次气体流速为45 SL / min,喷雾距离为12 cm,粒径约为55μm,粉末进料速度接近1 l / min,最终产生约25 kW的电力。最后,使用Jets&Poudres代码对15000个粒子进行了三元气体混合物的测试,以评估使用实验设计在研究中得出的结论。共同面对和讨论结果。

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