耐用陶化诱导的未涂层超水表面用于防结冰螺旋边缘
Yangyang Jia1, Anling Li2, Jiwen Wang3
1College of Civil Aviation Safety Engineering, Civil Aviation Flight University of China, Guanghan, Sichuan, 618307, China.
Advanced materials (Deerfield Beach, Fla.)
|August 2, 2025
概括
一个新的,耐用的超水抗结冰表面是使用激光诱导的陶化在的上创建的. 这种未涂层的表面在极端条件下为设备提供了卓越的抗冰性和寿命.
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?
- 部落学 (tribology) 是一个学科.
背景情况:
- 由于化学和机械不稳定性,传统的超疏水表面往往缺乏耐用性.
- 关键部件上的涂层表面,如螺旋前边,面临性能降低.
研究的目的:
- 开发一种超耐用的,未涂层的超水性抗结冰表面.
- 为了克服传统防冰涂料的局限性,用于实际应用.
主要方法:
- 使用激光诱导的陶微结构,在上制造一个超疏水的表面.
- 表面性质的表征,包括水接触角和滑动角.
- 在静态和动态 (风洞) 条件下对抗结冰性能的评估.
- 对抗机械磨损,化学腐蚀和冰粘合周期的表面耐用性的测试.
主要成果:
- 实现了168°的水接触角和0.3°的滑动角.
- 在-25°C下,冰的静态延迟时间为2880秒,动态防冰时间为132秒.
- 在经过>600秒磨损,>240小时腐蚀和30个冰粘合周期后保持稳定的超性和抗结冰性能.
结论:
- 激光诱导的陶化创造了一个坚固的,未涂层的超水表面,具有出色的抗结冰性能.
- 微结构和陶化的协同效应提高了环境耐用性和除冰效率.
- 这种方法为在极端条件下运行的设备的长期抗结冰提供了可行的策略.
相关概念视频
Masonry in Cold and Hot Weather Conditions
In cold weather, masonry construction requires specific precautions to ensure mortar does not freeze before curing, as this can significantly weaken its strength and watertightness. Mortar temperature should be maintained between 60°F and 80°F to support proper hydration and curing. Below 40°F, mortar water must be heated, but should not exceed 120°F as high temperatures can reduce mortar's compressive and bond strength.
Other key practices include keeping masonry units and sand dry and...
Other key practices include keeping masonry units and sand dry and...
Waterproofing and Anti-Bacterial Admixtures in Concrete
Concrete's susceptibility to water absorption is due to the capillary action within the pores of its hydrated cement paste. This action draws water in, creating the need for waterproofing admixtures to prevent such penetration. The efficacy of these admixtures is contingent upon the water pressure, with variations arising from different conditions such as rain, capillary rise, or hydrostatic pressure in structures intended to hold water.
Waterproofing admixtures render concrete hydrophobic,...
Waterproofing admixtures render concrete hydrophobic,...
Cold Weather Concreting
When freshly poured concrete is exposed to freezing temperatures before it has set, the water within the concrete can freeze. This expansion disrupts the setting process, delays chemical reactions necessary for hardening, and increases the volume of pores within the hardened concrete, which weakens its overall structure. If the concrete manages to reach an appreciable strength before it freezes, the damage can be somewhat mitigated.
To counteract the negative impacts of cold weather, ensuring...
To counteract the negative impacts of cold weather, ensuring...
Frost Action on Concrete
Concrete structures in cold climates, such as those along roadsides, can retain moisture. This moisture makes them susceptible to frost-related damage when temperatures fall below freezing. Adding moisture worsens the damage during temperature fluctuations, leading to repeated freezing and thawing. De-icing salts, spread over these structures to melt ice, add to the freeze-thaw cycle, and draw even more moisture into the concrete.
This freeze-thaw cycle primarily causes surface scaling, where...
This freeze-thaw cycle primarily causes surface scaling, where...
Frost Resistant Concrete
Concrete's susceptibility to frost damage during freeze-thaw cycles demands strategic measures to enhance its frost resistance. Employing techniques like air entrainment, adjusting the water-cement ratio, proper curing, and selecting appropriate aggregates are essential.
Introducing microscopic air bubbles into the concrete mix through air entrainment creates small voids that accommodate ice expansion, thereby reducing internal pressures and preventing cracking. The optimal amount of entrained...
Introducing microscopic air bubbles into the concrete mix through air entrainment creates small voids that accommodate ice expansion, thereby reducing internal pressures and preventing cracking. The optimal amount of entrained...
Surface Tension of Fluid
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 with...
Surface tension varies with...


