首页> 外文期刊>Journal of Thermal Spray Technology >Particle In-Flight and Coating Properties of Fe-Based Feedstock Materials Sprayed with Modern Thermal Spray Systems
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Particle In-Flight and Coating Properties of Fe-Based Feedstock Materials Sprayed with Modern Thermal Spray Systems

机译:现代热喷涂系统喷涂的铁基原料的飞行中颗粒和涂层性能

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摘要

New developments in the field of thermal spraying systems (increased particle velocities, enhanced process stability) are leading to improved coatings. Innovations in the field of feedstock materials are supporting this trend. The combination of both has led to a renaissance of Fe-based feedstocks. Using modern APS or HVOF systems, it is now possible to compete with classical materials for wear and corrosion applications like Ni-basis or metal-matrix composites. This study intends to give an analysis of the in-flight particle and spray jet properties achievable with two different modern thermal spraying systems using Fe-based powders. The velocity fields are measured with the Laser Doppler Anemometry. Resulting coatings are analyzed and a correlation with the particle in-flight properties is given. The experiments are accompanied by computational fluid dynamics simulations of spray jet and particle velocities, leading to a comprehensive analysis of the achievable particle properties with state-of-the-art HVOF and APS systems.
机译:热喷涂系统领域的新发展(增加的颗粒速度,增强的工艺稳定性)正在导致涂层的改进。原料领域的创新正在支持这一趋势。两者的结合导致了铁基原料的复兴。使用现代的APS或HVOF系统,现在有可能与经典材料在镍基或金属基复合材料等磨损和腐蚀应用中竞争。这项研究旨在对使用铁基粉末的两种不同的现代热喷涂系统可获得的飞行中颗粒和喷雾特性进行分析。用激光多普勒风速仪测量速度场。分析得到的涂层,并给出与飞行中粒子性能的相关性。实验伴随着喷射射流和粒子速度的计算流体动力学模拟,从而利用最新的HVOF和APS系统对可获得的粒子特性进行了全面分析。

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