Nederlands

Researchers successfully 3D printed polymer based robotic arms through laser scanning

446
2023-11-16 15:29:51
Bekijk vertaling

Researchers from the Federal Institute of Technology in Zurich and an American startup used slow curing plastic to develop durable and sturdy robots using high-quality materials.

The team can now print these complex robots at once and combine soft, elastic, and rigid materials together. This allows for the creation of precision structures and parts with cavities as needed.

Inkbit, a derivative company of the Massachusetts Institute of Technology, has developed a new printing technology. Researchers at the Federal Institute of Technology in Zurich have developed several robot applications and helped optimize the technology used for slow curing polymers. The researchers jointly published their research findings in the journal Nature.

Using this new technology, researchers have successfully printed a robotic hand made of bones, ligaments, and tendons made of different polymers in one go for the first time.

So far, we are unable to manufacture this hand using the fast curing polyacrylate we use in 3D printing, "said Thomas Buchner, a doctoral student in the robotics professor Robert Katzschmann group at the Federal Institute of Technology in Zurich, who was the first author of the study. We are currently using slowly curing thiophene polymers. They have excellent elasticity and recover to their original state faster than polyacrylates after bending.

Researchers say their method makes thiophene polymers an ideal choice for producing elastic ligaments in robotic arms. They can also fine tune the stiffness of thiol groups to meet the requirements of soft robots.

Robots made of soft materials, such as the hands we have developed, have advantages over traditional metal robots. Because they are very soft, there is a lower risk of injury when working with humans, and they are more suitable for handling fragile goods, "Katzschmann said.

In order to adapt to slowly curing polymers, researchers further developed 3D printing by adding a 3D laser scanner. The scanner will immediately check each printing layer for any surface irregularities. This technology is not a smooth and uneven layer, but rather considers unevenness when printing the next layer.

The feedback mechanism compensates for these irregularities in the next layer in real-time and accurately by calculating any necessary adjustments to the amount of material to be printed, "said Professor Wojciech Matusik of the Massachusetts Institute of Technology.

Source: Laser Network

Gerelateerde aanbevelingen
  • 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
    Bekijk vertaling
  • Researchers have created the first organic semiconductor laser to operate without the need for a separate light source

    OLED is located at the top and is formed by an organic layer between the contacts. Apply voltage to it, inject charge and generate light, which in turn excites organic laser. Organic lasers contain a grating that can generate feedback and diffract some of the laser out of the structure.Organic laserResearchers have created the first organic semiconductor laser to operate without the need for a sep...

    2023-11-29
    Bekijk vertaling
  • French laser giant's profits decline, laser radar business restructuring

    Recently, Marvel Fusion, a pioneer in the field of laser fusion, successfully raised 62.8 million euros (approximately 70.3 million US dollars) in funding. This funding will provide strong impetus for its fusion technology demonstration on existing laser equipment and accelerate the comprehensive technology validation process at its facility in Colorado, with the goal of achieving this milestone b...

    2024-10-09
    Bekijk vertaling
  • Progress in the Research of Continuous Wave Laser in Chemical Industry

    Laser plays an important role in fields such as photonic chips, laser displays, and in vehicle radars. Organic materials have advantages such as molecular diversity, energy level richness, heterogeneous compatibility, and ease of processing. They have significant advantages in the construction of high-performance and multifunctional lasers and are expected to further innovate laser technology and ...

    2023-08-31
    Bekijk vertaling
  • Researchers Obtaining Scientific Returns from Raman Spectroscopy for External Bioexploration Using Lasers

    We investigated the potential of laser selection in a wide optical range from ultraviolet to visible light, and then to infrared (excitation wavelengths of 325, 532, 785, and 1064 nm), in order to combine and analyze extreme microorganisms related to Earth (such as Cryptomeria elegans, cold floating nematodes, and circular green algae), carbon water compound molecules, as well as simulated mineral...

    2023-10-23
    Bekijk vertaling