首页> 外文期刊>Journal of Thermal Spray Technology >In Situ Measurement System for Deformation and Solidification Phenomena of Yttria-Stabilized Zirconia Droplets Impinging on Quartz Glass Substrate under Plasma-Spraying Conditions
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In Situ Measurement System for Deformation and Solidification Phenomena of Yttria-Stabilized Zirconia Droplets Impinging on Quartz Glass Substrate under Plasma-Spraying Conditions

机译:等离子喷涂条件下氧化钇稳定的氧化锆液滴撞击石英玻璃基板的形变和凝固现象的原位测量系统

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摘要

The authors have developed an in situ measurement system for precise one-to-one correlation between splat morphology and thermal history during particle impingement on a temperature-controlled substrate inside an airtight chamber under plasma-spraying conditions. The system has made it possible to collect about 10 single particles successively within a 10 s time frame, and to correlate exactly the relationship between the size, the temperature, and the impacting velocity of each droplet, and the morphology of the splats. The most striking finding is that a part of the yttria-stabilized zirconia (YSZ) droplets may be actually in supercooled condition before impinging, although a marked difference was not found in the splat morphology. In addition, as secondary results, we could evaluate the viscosity, μ, of YSZ, and the thermal contact resistance between YSZ splat and the quartz glass substrate as μ [Pa · s] = 0.0037 exp (6110/T) and 3 × 10{sup}(-6)-4 × 10{sup}(-5) m{sup}2 K/W, respectively.
机译:作者开发了一种原位测量系统,用于在等离子喷涂条件下,将粒子撞击到气密室内的温度可控基板上时,在喷射形态和热历史之间实现精确的一对一关联。该系统使得在10 s的时间范围内连续收集约10个单个颗粒成为可能,并使各个液滴的大小,温度和撞击速度之间的关系与碎片的形态精确相关。最显着的发现是,虽然在飞溅形态上未发现明显差异,但氧化钇稳定的氧化锆(YSZ)小滴实际上可能在撞击前处于过冷状态。此外,作为次要结果,我们可以评估YSZ的粘度μ和YSZ splat与石英玻璃基板之间的热接触电阻,μ[Pa·s] = 0.0037 exp(6110 / T)和3×10 {sup}(-6)-4×10 {sup}(-5)m {sup} 2 K / W。

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