相关实验视频
Updated: Jul 21, 2025

08:34
Visualization of High Speed Liquid Jet Impaction on a Moving Surface
Published on: April 17, 2015
11.5K
研究具有负担得起的表面特征的液体注入表面,透在腐蚀,生物污染和流体拖动视角的各种滑剂中
Hossein Pakzad1, Ali Nouri-Borujerdi1, Ali Moosavi1
1Center of Excellence in Energy Conversion (CEEC), School of Mechanical Engineering, Sharif University of Technology, Azadi Avenue, P. O. Box, Tehran 11365-9567, Iran.
Langmuir : the ACS journal of surfaces and colloids
|July 25, 2023
概括
研究人员开发了受自然界启发的新型滑动表面,以对抗流体系统中的阻力,腐蚀和生物污染. 这些表面表现出优异的抗腐蚀和阻力降低性能,为提高操作可靠性提供了有前途的解决方案.
科学领域:
- 材料科学 材料科学 材料科学
- 表面工程是什么?表面工程是什么?
- 流体动力学 流体动力学
背景情况:
- 拖拉力,腐蚀和生物污染阻碍了流体系统的效率.
- 灵感来自自然的液体或固体注入的表面提供了潜在的解决方案.
研究的目的:
- 在基板上研究新型纳米和微尺度表面结构的有效性.
- 评估它们在减少阻力,抵抗腐蚀和防止生物污染方面的性能.
主要方法:
- 制造具有多种结构 (纳米到微观) 的表面.
- 用酸或八基三西兰进行修改,并通过滑剂透.
- 通过湿,偏振,抗菌和阻力减小测试进行性能评估.
主要成果:
- 表面表现出极好的滑性 (接触角歇斯底里 <10°).
- 氧化/博伊米特结构显示出良好的抗腐蚀性能,由更高的滑剂粘度增强.
- 液体滑剂在抗菌性能方面优越,喜欢较低的粘度.
- 在粘性液体中使用层叠双氧化物 (LDH) 表面和5mPa·s油实现了最大18%的阻力降低.
- 使用低粘度滑剂的化表面在较低粘度的液体中降低了15%的阻力.
结论:
- 新型注入表面有效地应对阻力,腐蚀和生物污染的挑战.
- 表面结构,滑剂类型和粘度显著影响性能.
- 基于LDH的表面表现出良好的耐用性和实际应用的潜力.
相关概念视频
Surface Tension of Fluid
335
Surface tension is a fundamental property of fluids, occurring at the boundary between a liquid and a gas or between two immiscible liquids. This phenomenon arises from the cohesive forces between molecules at the fluid's surface, creating an effect similar to a stretched elastic membrane. Inside each fluid, molecules are equally attracted in all directions by neighboring molecules, but surface molecules experience a net inward force, resulting in surface tension.
Surface tension varies...
Surface tension varies...
335
Design Example: Deciding Thickness of Lubricating Fluid in a Shaft
133
Effective lubrication between a rotating shaft and its bearing housing is essential in rotating machinery to minimize friction, wear, and energy loss. With carefully controlled thickness and viscosity, the lubricant layer prevents metal-to-metal contact, ensuring smooth operation.
To calculate the required thickness of the lubricant layer, the tangential velocity at the shaft's surface must first be determined. This velocity is calculated by converting the rotational speed to angular...
To calculate the required thickness of the lubricant layer, the tangential velocity at the shaft's surface must first be determined. This velocity is calculated by converting the rotational speed to angular...
133
Surface Tension, Capillary Action, and Viscosity
28.1K
Surface Tension
The various IMFs between identical molecules of a substance are examples of cohesive forces. The molecules within a liquid are surrounded by other molecules and are attracted equally in all directions by the cohesive forces within the liquid. However, the molecules on the surface of a liquid are attracted only by about one-half as many molecules. Because of the unbalanced molecular attractions on the surface molecules, liquids contract to form a shape that minimizes the number...
The various IMFs between identical molecules of a substance are examples of cohesive forces. The molecules within a liquid are surrounded by other molecules and are attracted equally in all directions by the cohesive forces within the liquid. However, the molecules on the surface of a liquid are attracted only by about one-half as many molecules. Because of the unbalanced molecular attractions on the surface molecules, liquids contract to form a shape that minimizes the number...
28.1K
Capillarity in Fluid
259
Capillarity describes the movement of liquid in small spaces without external forces acting on it. The capillarity is driven by surface tension and adhesive interactions between the liquid and surrounding solid surfaces. This effect is often seen in narrow tubes, porous materials, and fine particles.
Surface tension is crucial to capillarity. It results from cohesive forces between liquid molecules at the liquid-air boundary, forming a skin that resists external forces. When the capillary tube...
Surface tension is crucial to capillarity. It results from cohesive forces between liquid molecules at the liquid-air boundary, forming a skin that resists external forces. When the capillary tube...
259
Contact Angle
12.5K
When a solid is dipped inside a liquid, the liquid surface becomes curved near the contact. For some solid–liquid interfaces, the liquid is pulled up along the solid, while for others, the liquid surface is convex or depressed near the solid surface. This phenomenon can be explained using the concept of cohesive and adhesive forces.
The adhesive force is the molecular force between molecules of different materials, that is, between the molecules of the solid and the liquid. The cohesive...
The adhesive force is the molecular force between molecules of different materials, that is, between the molecules of the solid and the liquid. The cohesive...
12.5K
Hydrostatic Pressure Force on a Curved Surface
1.9K
Hydrostatic pressure on curved surfaces is a fundamental concept in fluid mechanics with broad applications in the civil engineering field. When fluid is in contact with a curved surface, as in a reservoir, dam, or storage tank, it exerts pressure that varies in magnitude and direction along the curved surface. To assess the total hydrostatic force exerted by the fluid on a curved structure, engineers typically isolate the fluid volume adjacent to the surface and analyze the forces acting on...
1.9K

