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首页> 外文期刊>Journal of Thermal Spray Technology >Numerical Study on Plasma Jet and Particle Behavior in Multi-arc Plasma Spraying
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Numerical Study on Plasma Jet and Particle Behavior in Multi-arc Plasma Spraying

机译:多电弧等离子体喷涂中等离子体射流和颗粒行为的数值研究

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Plasma jet and particle behavior in conventional single-arc plasma spraying has been subject to intensive numerical research. However, multi-arc plasma spraying is a different case which has yet to be investigated more closely. Numerical models developed to investigate the characteristics of multi-arc plasma spraying (plasma generator, plasma jet, and plasma-particle interaction models) were introduced in previous publications by the authors. The plasma generator and plasma jet models were already validated by comparing calculated plasma temperatures with results of emission spectroscopic computed tomography. In this study, the above-mentioned models were subjected to further validation effort. Calculated particle in-flight characteristics were compared with those determined by means of particle diagnostics and high-speed videography. The results show very good agreement. The main aim of the current publication is to derive conclusions regarding the general characteristics of plasma jet and particle in-flight behavior in multi-arc plasma spraying. For this purpose, a numerical parameter study is conducted in which the validated models are used to allow variations in the process parameters. Results regarding plasma jet/particle in-flight temperatures and velocities are presented. Furthermore, the general characteristics of plasma jet and particle behavior in multi-arc plasma spraying are discussed and explained. This contributes to better understanding of the multi-arc plasma spraying process, in particular regarding the injection behavior of particles into hot regions of the plasma jet. Finally, an example test case showing a possible practical application area of the models is introduced.
机译:传统的单弧等离子体喷涂中的等离子体射流和颗粒行为已经受到密集的数值研究。然而,多电弧等离子体喷涂是尚未更接近地研究的不同情况。作者在先前的出版物中引入了研究以研究多弧等离子体喷涂(等离子体发生器,等离子体射流和等离子体粒子相互作用模型的特性的数值模型。通过将计算的等离子体温度与发射光谱计算断层扫描结果的结果进行比较,已经验证了等离子体发生器和等离子体喷射模型。在这项研究中,上述模型进行了进一步的验证努力。将计算出的颗粒在飞行中的特性与通过粒子诊断和高速摄像机确定的那些。结果表明很好。目前出版物的主要目的是衍生关于多电弧等离子体喷涂中等离子体射流和颗粒在飞行中行为的一般特征的结论。为此目的,进行数值参数研究,其中验证的模型用于允许过程参数中的变化。提出了关于等离子体喷射/颗粒在飞行中温度和速度的结果。此外,讨论和解释了多弧等离子体喷涂中等离子体射流和颗粒行为的一般特征。这有助于更好地理解多电弧等离子体喷涂过程,特别是关于颗粒的喷射行为进入等离子体射流的热区域。最后,介绍了显示模型的可能的实际应用面积的示例测试用例。

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