Русский

The United States has successfully developed a full 3D printed electric spray engine

440
2025-02-20 15:02:34
Посмотреть перевод

The fully 3D printed electric spray engine is suitable for small satellite in orbit maneuver, and its production cost is only a small part of that of traditional thrusters.


Image source: Massachusetts Institute of Technology, USA


The Massachusetts Institute of Technology team recently demonstrated an electric spray engine made entirely of 3D printing technology, which can be propelled by emitting droplets. This innovative device not only produces quickly, but also has a much lower cost than traditional thrusters. It utilizes commercially available 3D printing materials and technology, and can even complete printing in space. The relevant paper was published in the journal Advanced Science.

The working principle of the electric spray engine is to apply an electric field to the conductive liquid to generate a high-speed micro droplet jet to propel the spacecraft. This type of micro engine is particularly suitable for small satellites, such as cube satellites. Compared with chemical fuel rockets, electric spray engines are more efficient in the use of propellants, so they are more suitable for performing precise in orbit maneuver tasks. Although the thrust generated is small, the required thrust level can be achieved by paralleling multiple electric spray launchers.

The team has developed a modular process that combines two 3D printing methods, solving the challenges encountered in manufacturing complex equipment composed of macroscopic and microscopic components. They use restoration photopolymerization printing (VPP) technology, including digital light processing technology, to shine light onto photosensitive resin through a chip sized projector and solidify layer by layer to form high-resolution 3D structures. In addition, they also designed a clamping mechanism to connect various components, ensuring the water tightness of the equipment. This allows astronauts to directly print satellite engines in space without relying on equipment sent from Earth.

The printed thruster contains 32 electric spray emitters, which work together to ensure stable and uniform propellant jet. The final prototype equipment is comparable to or even better than existing equipment in terms of thrust performance.

Further research has shown that by adjusting the pressure of the propellant and the voltage applied to the engine, the droplet flow rate can be controlled to achieve a wider range of thrust output.

The researchers said that this method simplified the system design, reduced the complex pipeline, valve or pressure signal network, and provided a more portable, economical and efficient electric spray propulsion solution.

The 3D printed electric spray engine can almost mark an important breakthrough in space propulsion technology. Due to its ability to produce quickly and customize, it can quickly adjust designs according to specific needs in space missions, greatly improving execution flexibility and response speed. Especially in emergency repairs or the need for rapid deployment of new satellites, this immediate production capability is particularly important. Being able to directly manufacture engines in space means that future space missions will no longer rely solely on equipment sent from Earth, but will be able to self repair and upgrade in orbit. Therefore, this innovation not only significantly reduces production costs and time, but also brings more flexible and efficient solutions for future space exploration.

Source: laserfair

Связанные рекомендации
  • Chinese researchers have developed for the first time a room temperature HoYLF thin film laser

    In a study published in Optics Express, the research team led by Professor Fu Yuxi of the Xi'an Institute of Optics and Precision Mechanics (XIOPM) of the Chinese Academy of Sciences developed the room temperature holmium doped lithium yttrium fluoride (Ho: YLF) composite thin slice laser for the first time, which can achieve high efficiency and high-quality CW laser output.Laser devices operating...

    02-21
    Посмотреть перевод
  • Shanghai Optical Machinery Institute has made progress in high-efficiency optical parametric amplification technology

    Recently, a joint research team composed of Sun Meizhi, associate researcher of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Precision Mechanics, and Tu Xiaoniu, associate researcher of the Chinese Academy of Sciences Shanghai Institute of Silicate, proposed a new configuration of cross Fabry Perot intracavity optical parametric ...

    2024-07-11
    Посмотреть перевод
  • RTX Raytheon Company will develop ultra wide bandgap semiconductors for ultraviolet lasers

    The UWBGS program will develop and optimize ultra wide bandgap materials and manufacturing processes for the next revolution in the semiconductor electronics field.US military researchers need to develop new integrated circuit substrates, device layers, junctions, and low resistance electrical contacts for the new generation of ultra wide bandgap semiconductors. They found a solution from RTX comp...

    2024-09-30
    Посмотреть перевод
  • Single photon avalanche diode for millimeter level object recognition using KIST

    LiDAR sensors are crucial for implementing modern technologies such as autonomous driving, AR/VR, and advanced driving assistance systems. For example, more accurate shape detection in AR/VR devices and smartphones depends on the improved range resolution of medium and short range LiDAR. This requires a single photon detector with improved timing jitter performance.LiDAR calculates the distance an...

    2024-02-03
    Посмотреть перевод
  • Photon automation expands through new laser application laboratories

    Photon Automation, Inc., headquartered in Greenfield, Indiana, has been committed to providing automated laser technology solutions since 2000. The company is pleased to announce the opening of its state-of-the-art laser application laboratory in Farmington Hills, Michigan. This 7400 square foot facility will be led by renowned laser physicist Dr. Najah George, who has over 35 years of extensive e...

    2023-09-01
    Посмотреть перевод