凝结诱导的滴滴跳跃行为用于大气腐蚀保护
Xiaotong Chen1, Zhengshen Chen2, Hao Jiang2
1College of Chemistry and Chemical Engineering, Key Laboratory of Water Pollution Treatment & Resource Reuse of Hainan Province, Hainan Normal University, Haikou 571158, China.
ACS applied materials & interfaces
|January 29, 2026
概括
具有优化的微观结构的超疏水表面增强了水滴跳跃,以保护海洋腐蚀. 表面间距是有效去除水滴和抗腐蚀性能的关键.
科学领域:
- 材料科学 材料科学 材料科学
- 表面化学 表面化学
- 腐蚀工程 腐蚀工程
背景情况:
- 海洋大气腐蚀带来了重大的挑战.
- 超疏水表面通过排斥水来提供抗腐蚀保护的潜力.
- 优化表面纳米架构对于有效的滴滴行为至关重要.
研究的目的:
- 为了研究微观结构几何学对超表面的影响.
- 分析这些参数如何影响凝聚引起的滴滴跳跃行为 (CIDJB).
- 为了确定高效的CIDJB和海洋腐蚀保护的最佳设计.
主要方法:
- 制造出三种具有不同微观结构参数的超疏水表面.
- 对微观结构尺寸 (直径,间隙,高度) 的反应度影响的研究.
- 分析滴水的行为 (覆盖面,直径,抗凝结效率) 和防腐蚀保护.
主要成果:
- 较高的反应度改变了微观结构尺寸:直径增加,高度减少,以及非单调的间隙变化.
- 微结构间距被确定为滴滴跳跃和耐腐蚀性的关键因素.
- 较小的间距增强了向上拉普拉斯压力,促进滴滴凝聚,跳跃和卡西状态过渡.
结论:
- 微观结构设计,特别是间距,对于海洋环境中的超疏水表面至关重要.
- 优化的超疏水表面可以显著改善CIDJB,以有效地减轻海洋腐蚀.
- 本研究提供了开发先进的抗腐蚀超表面的设计标准.
相关概念视频
Corrosion
28.3K
The degradation of metals due to natural electrochemical processes is known as corrosion. Rust formation on iron, tarnishing of silver, and the blue-green patina that develops on copper are examples of corrosion. Corrosion involves the oxidation of metals. Sometimes it is protective, such as the oxidation of copper or aluminum, wherein a protective layer of metal oxide or its derivatives forms on the surface, protecting the underlying metal from further oxidation. In other cases, corrosion is...
28.3K
Hydraulic Jump: Problem Solving
541
To analyze a hydraulic jump in a rectangular channel with a flow speed of 6 meters per second, follow these steps:Calculate Effective Upstream Velocity:When the downstream gate closes, a hydraulic jump forms, traveling upstream at 2 meters per second. This wave speed combines with the initial channel flow velocity, creating an effective upstream velocity.Identify Flow Velocities Before and After the Hydraulic Jump:Upstream of the hydraulic jump, the effective flow velocity includes both the...
541
Hydraulic Jump
676
A hydraulic jump is a sudden rise in fluid depth in open channels, occurring when high-velocity (supercritical) flow transitions to low-velocity (subcritical) flow. This phenomenon requires an upstream Froude number greater than 1, as flows with Fr1<1 remain subcritical, making a hydraulic jump impossible due to the need for negative head loss, which violates thermodynamic principles.The characteristics of a hydraulic jump depend on the upstream Froude number and are classified as...
676
Corrosion of Reinforcement
577
The corrosion of steel reinforcement within concrete is a process influenced by the material's inherent properties and external factors. The high pH level of around 13, provided by calcium hydroxide present in concrete, initially protects the steel reinforcement by promoting the formation of a passive iron oxide layer on its surface.
However, over time and under certain conditions like carbonation, chloride ingress, and cracking this protective state can be compromised. Steel has areas with...
However, over time and under certain conditions like carbonation, chloride ingress, and cracking this protective state can be compromised. Steel has areas with...
577
Definition and Measurement of Pressure: Atmospheric Pressure, Barometer, and Manometer
43.3K
Gas pressure is caused by force exerted by gas molecules colliding with the surfaces of objects. Although the force of each collision is very small, any surface of an appreciable area experiences a large number of collisions in a short time, which can result in high pressure.
43.3K
Variation of Atmospheric Pressure
4.1K
Change in atmospheric pressure with height is particularly interesting. The decrease in atmospheric pressure with increasing altitude is due to the decreasing gravitational force per unit area as we move away from the surface of the earth.
Assuming the air temperature is constant at a given altitude and that the ideal gas law of thermodynamics describes the atmosphere to a good approximation, one can find the variation of atmospheric pressure with height.
Let p(y) be the atmospheric pressure at...
Assuming the air temperature is constant at a given altitude and that the ideal gas law of thermodynamics describes the atmosphere to a good approximation, one can find the variation of atmospheric pressure with height.
Let p(y) be the atmospheric pressure at...
4.1K


