...
首页> 外文期刊>International Journal of Heat and Mass Transfer >Hydrodynamic pattern transition of droplet train impinging onto heated titanium substrates with or without nanotube coating
【24h】

Hydrodynamic pattern transition of droplet train impinging onto heated titanium substrates with or without nanotube coating

机译:液滴列车撞击加热钛基材与纳米管涂层的流体动力学图案转变

获取原文
获取原文并翻译 | 示例
           

摘要

The impingement of ethanol droplet train on the heated titanium substrates without or with the titanium oxide nanotube coating has been experimentally investigated in close view. The coating makes the substrate with high wettability. Four distinct but steady hydrodynamic patterns are observed on both two surfaces, namely, liquid aggregation and crown periphery instability; sub-droplet splashing and crown periphery instability; splashing and stable crown; and splashing with stable angle. However, the more wetting nanotube coated substrates push the transition between the patterns to a higher temperature. The quantitatively analysis of spreading length, diameter and height of crown and stable splashing angle further proved the transitions between the hydrodynamic patterns on the two titanium surfaces. The instability at the crown periphery may result from the low surface tension of the working fluids in first and second patterns, while the crown becomes stable on the third pattern. In the fourth pattern, a sharp shift of the splashing angle from decreasing to increasing is found at the surface temperature of 323 °C and 404 °C for the bare titanium surface and the nanotube coated surface, respectively. The shift could be attributed to the emergence of Leidenfrost effect. It is found that the Leidenfrost point at the droplet train impingement on the nanotube coated surface has been remarkably delayed.
机译:在密切的视图中实验研究了耐氧化钛基材上的乙醇液滴列车的冲击,在没有或与氧化钛纳米管涂层进行了实验研究。涂层使基板具有高润湿性。在两个表面上观察到四个不同但稳定的流体动力学图案,即液体聚集和冠周周围不稳定性;子液滴飞溅和冠外周期不稳定性;飞溅和稳定的冠;并用稳定的角度溅起。然而,较湿的纳米管涂覆的基材将使图案之间的过渡推向较高的温度。冠的扩散长度,直径和高度的定量分析以及稳定的飞溅角进一步证明了两个钛表面上的流体动力学模式之间的过渡。冠外周的不稳定性可以由第一和第二图案的工作流体的低表面张力导致,而冠部在第三图案上变得稳定。在第四图案中,对于裸钛表面和纳米管涂层表面的表面温度,在323℃和404℃的表面温度下发现溅角减小的急剧偏移。转变可能归因于利德策略效应的出现。发现液滴列车在纳米管涂覆表面上冲击的leidenfrost点显着延迟。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号