简体中文

MIT researchers have demonstrated a novel chip based resin 3D printer

519
2024-06-17 15:22:09
查看翻译

Researchers from the Massachusetts Institute of Technology and the University of Texas at Austin showcased the first chip based resin 3D printer. Their concept verification tool consists of a millimeter sized photon chip that emits a programmable beam of light into resin holes, which solidify into a solid structure when exposed to light.

The prototype processor does not have mobile components, but uses a series of small optical antennas to guide the beam of light. The beam is projected upwards into the liquid resin, which is carefully designed to quickly cure when exposed to the visible wavelength of the beam.
By integrating silicon photonics and photochemistry, interdisciplinary research teams can demonstrate a chip that can guide a beam of light to 3D print any two-dimensional design, including the letters M-I-T. The shape can be fully constructed within seconds.

Silicon Photonics and Special Resins
The Notaros group, which specializes in silicon photonics, has created an integrated optical phased array device that uses a microscale antenna on a chip to guide a beam of light. They can change the optical signals on both sides of the antenna array to control the beam of light. These systems are crucial for LiDAR sensors, which use infrared light to measure the surrounding environment. Recently, the group has shifted its focus to devices that generate and guide visible light for augmented reality applications.

Around the same time as they began brainstorming, the Page team at the University of Texas at Austin developed for the first time a specialized resin that could rapidly cure using visible light wavelengths. This is the missing part that makes chip based 3D printers a reality.
Corsetti added, "Here, we manufacture this chip based 3D printer by using visible light curing resin and visible light emitting chips, meeting between standard photochemistry and silicon photonics. You integrate the two technologies into a completely new idea.".

Chip based resin 3D printer
Their prototype consists of a photonic chip with a 160 nanometer optical antenna array. The thickness of a piece of paper is about 100000 nanometers. The entire chip is suitable for a quarter of the United States.

When driven by an off chip laser, the antenna guides the controllable visible beam into the holes of the photocured resin. The chip is located below a transparent glass slide, similar to the glass slide used in a microscope, which has a small depression that can capture resin. Researchers use electrical pulses to guide laser beams in a non mechanical manner, making the resin harden at any point of impact.

The Page team at the University of Texas at Austin works closely with the Notaros team at the Massachusetts Institute of Technology to fine tune chemical combinations and concentrations to achieve a formula with a long shelf life and solidification.
Finally, scientists have demonstrated that their prototype can 3D print any two-dimensional shape in just a few seconds.

expectation
In the long run, researchers envision a system where a photon chip is located at the bottom of a resin well and creates a 3D hologram of visible light, thereby solidifying a complete object in one step.
This type of portable 3D printer can have a wide range of applications, including allowing doctors to build customized medical device components and engineers to create rapid prototypes in the workplace.

This study received partial support from the National Science Foundation, the Defense Advanced Research Projects Agency, the Robert Welch Foundation, the MIT Rolf G. Rocher Endowment Scholarship, and the MIT Frederick and Barbara Croning Scholarship.

Source: Laser Net

相关推荐
  • Breakthrough! Extending the lifespan of solar panels to 50 years using lasers

    Recently, the National Renewable Energy Laboratory (NREL) under the US Department of Energy has made a revolutionary breakthrough by developing a concept validation method aimed at completely removing polymers from solar panel manufacturing, thereby achieving more efficient and environmentally friendly recycling.Solar panels have always been praised for their recyclability. However, the thin plast...

    2024-04-30
    查看翻译
  • Ortel launches advanced 1550nm laser to enhance LiDAR and optical sensing functions

    Ortel belongs to the Photonics Foundries group and has launched its latest innovative product - the 1786 1550 nm laser module, aimed at significantly improving optical sensing in various applications. This laser module is designed specifically for continuous wavelength operation and is a key component of systems that require coherent light sources for precise sensing in environments with fluctuati...

    2024-03-16
    查看翻译
  • Coherent Unifies Ultrafast Laser Business at the Glasgow Center of Excellence

    Recently, Coherent, an American laser system solution provider, announced that all of the company's ultra fast laser business, including the manufacturing of all picosecond and femtosecond lasers, will be unified in one place: the Ultra Fast Center of Excellence in Glasgow, Scotland.Previously, Coherent's Ultra Fast Center of Excellence located in Glasgow was already a state-of-the-art mass produc...

    2023-09-22
    查看翻译
  • The method of reducing the linewidth of laser beam by more than 10000 times

    A project at Macquarie University has demonstrated a way to narrow the linewidth of a laser beam by a factor of over ten thousand.Published in APL Photonics, the technique offers a promising route toward ultra-narrow linewidth lasers for potential use in a wide range of pump-pulse systems.Laser linewidth measures how precisely a beam of light maintains its frequency and color purity, and narrow-li...

    07-28
    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