Türkçe

New two-photon aggregation technology significantly reduces the cost of femtosecond laser 3D printing

859
2024-07-05 14:17:54
Çeviriyi gör

Scientists at Purdue University in the United States have developed a new type of two-photon polymerization technology. This technology cleverly combines two lasers and utilizes 3D printing technology to print complex high-resolution 3D structures while reducing femtosecond laser power by 50%. It helps to reduce the cost of high-resolution 3D printing technology, thereby further expanding its application range. The relevant research paper was published in the latest issue of the journal Optics Letters.

High resolution 3D printing structure. Image source: Optical Express magazine

Two photon polymerization is an advanced additive manufacturing technology that relies on the precise 3D printing of materials using femtosecond lasers. Despite its outstanding performance in manufacturing high-resolution microstructures, the high cost has become a roadblock to its widespread application.

In view of this, the research team creatively combined relatively low-cost lasers that emit visible light with femtosecond lasers that emit infrared pulses, reducing femtosecond laser power by 50%. This innovative method effectively reduces the printing cost of individual parts.

The new method combines the single photon absorption of 532 nanometer nanosecond laser with the two-photon absorption method of 800 nanometer femtosecond laser. To achieve the optimal balance between two types of laser printing, the team also constructed a new mathematical model to gain a deeper understanding of the photochemical processes involved and accurately calculate the synergistic effects of two-photon and single photon excitation processes, ensuring that ideal printing results can still be achieved at lower femtosecond laser power.
The experimental results show that for 2D structures, the new method reduces the required power of femtosecond lasers by 80%; For 3D structures, it is reduced by about 50%.

The team stated that high-resolution 3D printing technology has broad application prospects, including but not limited to the manufacturing of 3D electronic devices, the development of micro robots in the biomedical field, and the construction of tissue engineering 3D structures or scaffolds.

Femtosecond laser 3D printing, in short, involves the occurrence of photochemical reactions in a very small volume to construct fine three-dimensional structures. This is a very cutting-edge technology in the field of modern additive manufacturing, but it has limitations in terms of printing speed and power budget. Now, the team has printed high-resolution structures while reducing power by half, overcoming cost barriers. The most valuable thing is that this new technology can easily integrate into existing femtosecond laser 3D printing systems, enabling faster application in various fields such as biomedical, micro robots, and micro optical devices.

Source: Yangtze River Delta Laser Alliance

İlgili öneriler
  • Exail acquires optical company Leukos

    Recently, exail (formerly iXblue) announced the acquisition of Leukos, an optical company specializing in providing advanced laser sources for metrology, spectroscopy, and imaging applications.Leukos was founded by the French XLIM Institute (a joint research department of the French National Academy of Sciences and the University of Limoges), with over 20 years of professional experience in the re...

    01-13
    Çeviriyi gör
  • High Resolution Visible Light Imaging of Large Aperture Telescopes

    The deformable mirror used in adaptive optics can instantly correct the static wavefront aberrations and atmospheric turbulence wavefront disturbances of the optical system by changing its surface. This enables the optical system to automatically adapt to changes in the environment and maintain optimal performance. It is widely used in high-resolution astronomical observations, laser atmospheric t...

    2023-10-31
    Çeviriyi gör
  • NASA's laser reflector instrument helps to accurately locate Earth measurements

    The most famous use of GPS satellites is to help people understand their location, whether it is driving cars, ships or planes, or hiking in remote areas. Another important but little-known use is to distribute information to other Earth observation satellites to help them accurately locate measurements of our planet.NASA and several other federal agencies, including the US Space Force, the US Spa...

    2023-12-12
    Çeviriyi gör
  • The Influence of Laser Beam Intensity Distribution on Lock Hole Geometry and Process Stability under Green Laser Radiation

    Researchers from the University of Aveiro in Portugal and the School of Engineering at Porto Institute of Technology (ISEP) in Portugal reported a study on the influence of laser beam intensity distribution on the geometric shape and process stability of lock holes under green laser radiation. The relevant paper titled "Influence of Laser Beam Intensity Distribution on Keyhole Geometry and Process...

    03-26
    Çeviriyi gör
  • A major investment! Lumentum completes acquisition of research and development site in Carswell, UK

    Lumentum, a leading designer and manufacturer of innovative optical and photonic products, has announced that it has completed the acquisition of a site in Caswell, UK.Lumentum revealed that it has made significant investments in the site over the past two years and is currently undergoing development upgrades for its state-of-the-art cleanrooms and laboratories to continue to support the developm...

    2023-09-13
    Çeviriyi gör