简体中文

Laser direct writing technology for preparing micrometer scale heatable graphene de icing and anti icing surfaces broadens the preparation method of new de icing and anti icing devices

418
2023-10-16 11:28:42
查看翻译

Research background
In transportation, industrial production, and practical life, icing often brings great troubles, and the most serious is that during the flight of an aircraft, key components once frozen will seriously affect navigation safety.

The traditional passive deicing and anti icing strategies for aircraft, such as mechanical vibration and anti freezing liquids, have problems such as incomplete deicing effect, environmental pollution, and reduced skin life; However, the common pneumatic and thermal active deicing and anti icing strategies on aircraft face problems such as inaccurate control and increased energy consumption. Although the new electric thermal active deicing and anti icing system has advantages such as high efficiency, good reliability, and easy control, the drawbacks of high electrical energy consumption have always limited its development. Currently, the industry urgently needs stable, efficient, and reliable new deicing and anti icing technologies.

Research Highlights 
This article focuses on the development bottleneck of high energy consumption in electric active deicing and anti icing, combined with the cutting-edge anti icing technology of hydrophobic materials in the current industry. With the help of Laser Induced Graphene (LIG) technology, which can simultaneously achieve graphene generation and precision patterning design, the common 10.6 μ By directly irradiating polyimide film (PI) with m CO2 laser and adjusting the scanning speed of the laser (50-125 mm/s), a micron scale grooved graphene surface with both hydrophobicity/superhydrophobicity and electrothermal function was successfully prepared under atmospheric pressure, expanding the preparation methods of new deicing and anti icing devices.

The basic characterization and performance testing of hydrophobic graphene surfaces revealed for the first time a significant linear negative correlation between the width of the grooves and scanning speed, which is of great significance for precise micro adjustment in laser manufacturing.

Low temperature icing tests and stability tests have shown that graphene surfaces have the potential to be reused for long-term hydrophobic and delayed icing applications.

Joule thermal performance tests have shown that graphene surfaces can achieve an electric heating effect of 45.5 ℃ -151.3 ℃ under low DC voltage supply (3 V-7 V), and can achieve surface defrosting and deicing functions (such as defrosting within 5 seconds and deicing within 90 seconds under 5V power supply) in an environment of -23 ℃.

The above research content and results demonstrate that laser induced graphene technology can efficiently and quickly convert polymer surfaces with hydrophilic wetting properties into micron scale hydrophobic graphene surfaces with hydrophobic wetting properties, providing a new approach and preparation method for preparing multifunctional deicing and anti icing surfaces with both hydrophobic and electrothermal functions.

The corresponding results were published in the Coatings journal under the title of "Fabric of Micron Structured Headable Graphene Hydrophobic Surfaces for Decking and Anti Icing by Laser Direct Writing". The first author of the article was Li Shichen, a 2021 master's student at the School of Avionics and Electrical Engineering, China Civil Aviation University, The co corresponding authors are Associate Professor Zhong Mian from the School of Avionics and Electrical Engineering, China Civil Aviation Flight Academy, and Professor He Qiang from the School of Civil Aviation Safety Engineering.

Source: Sohu


相关推荐
  • STL's new 160 micron fiber optic can meet emerging network and pipeline capacity requirements

    STL unveiled its new 160 micron fiber optic for the first time at the 2023 India Mobile Conference Trade Show.The company claims that its 160 micron fiber optic was conceptualized and developed at its Center of Excellence in Maharashtra, India, and its cable capacity is three times that of traditional 250 micron fiber optic. STL Company.After the launch of 160 micron fiber at the 2023 India Mobile...

    2023-11-01
    查看翻译
  • Dublin City University has successfully tested the laser components of the next generation space navigation atomic clock

    The team collaborated with Eblana Photonics and Enlightra to showcase for the first time a new caliber laser, which will enable atomic clocks to be more efficient and compact for future satellite missions.This innovation addresses the key needs identified by the European Space Agency, which is the leading organization for the next generation of space navigation systems. This work was recently publ...

    2023-09-22
    查看翻译
  • Application of Multipurpose Femtosecond Laser Interferometry in High Precision Silicon Nanostructures

    Researchers from the Laser Processing Group of the IO-CSIC Institute of Optics in Spain report on the application of multi-purpose femtosecond laser interference in high-precision silicon nanostructures. The related research was published in Optics&Laser Technology with the title "Versatile femtosecond laser interference pattern applied to high precision nanostructured of silicon".Highlights:...

    2024-07-10
    查看翻译
  • Upgrading 3000W fiber laser to high energy and miniaturization has become a new trend

    Recently, the discussion on "miniaturization" in the domestic laser industry has become increasingly heated. From various exhibition venues, miniaturization and lightweight have become important display directions for fiber laser manufacturers.High energy and miniaturization have become new trendsIn the past few years, high-power has undoubtedly been the main development direction in the field of ...

    2023-09-20
    查看翻译
  • Leading listed laser company Novanta moves to new location

    Recently, Novanta, a pioneer in advanced laser and optical subsystems for medical and industrial applications, announced that the company will relocate from its original official address (Emery Court in Stockport, UK) to a state-of-the-art 70000 square foot factory facility in nearby Orion Business Park. Its business capabilities will also be expanded fourfold to serve an expanding team and custom...

    2024-08-08
    查看翻译