首页> 外文期刊>Journal of Thermal Spray Technology >Modification of Plasma-sprayed TiO2 Coatings Characteristics via Controlling the In-flight Temperature and Velocity of the Powder Particles
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Modification of Plasma-sprayed TiO2 Coatings Characteristics via Controlling the In-flight Temperature and Velocity of the Powder Particles

机译:通过控制飞行中粉末的飞行温度和速度改变等离子喷涂TiO2涂层的特性

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The study presents a comprehensive research on the plasma spray fabrication of TiO2 coatings with microstructural properties adjustable via controlling the respective in-flight properties of the feedstock particles. The in-flight properties can be, in return, governed by tuning the plasma system spray parameters. By determining and linking the two interrelationships, a connection between the important coating characteristics (composition, microstructure, surface and mechanical properties) to the plasma system settings was established. It was shown that by changing the values of six parameters representing the flexibility of the plasma system, the temperatures and velocities of the particles within the jet can be altered from 2125 to 2830 K and 137 to 201 m s(-1), respectively. The values of the in-flight temperature critically influenced the efficiency of the coating build-up (values ranging from 8 to 84 mu m per 1 torch pass) and the content of anatase phase in the fabricated coatings (0-5.8%), while the in-flight velocity of the TiO2 particles was found to be connected to the porosity of the coatings (ranging from 14.4 to 26.2%) and the adhesion strength at the coating-substrate interface (2.6 x difference).
机译:该研究对等离子喷涂TiO2涂层进行了全面的研究,该涂层具有微结构特性,可通过控制原料颗粒各自的飞行特性来调节。反过来,可以通过调整等离子体系统喷雾参数来控制飞行中的属性。通过确定和链接这两个相互关系,可以在重要的涂层特性(组成,微观结构,表面和机械性能)与等离子体系统设置之间建立联系。结果表明,通过改变代表等离子体系统灵活性的六个参数的值,射流内粒子的温度和速度可以分别从2125到2830 K和137到201 m s(-1)改变。飞行中的温度值严重影响涂层的形成效率(每1次火炬传递的值介于8到84微米之间)和制造的涂层中的锐钛矿相含量(0-5.8%),而发现TiO2粒子的飞行速度与涂层的孔隙率(从14.4%到26.2%)和涂层与基材界面的粘合强度(相差2.6倍)有关。

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