Italiano

Laser engraving: Researchers have created a revolutionary technology

422
2023-11-24 14:16:34
Vedi traduzione

Recently, a group of researchers from the University of Cambridge developed an innovative method of using high-energy lasers to improve 3D printing of metals. This discovery has the potential to change the way we design and manufacture complex metal objects.

3D printing has completely changed the landscape of the manufacturing industry. However, it faces obstacles, especially in terms of the characteristics of metals. Laser engraving has emerged as an innovative solution. This method can deposit a layer of metal powder and then fuse it together through laser. This process will generate complex metal objects. However, without precise management, these objects may reduce quality. Therefore, laser engraving has become the key to ensuring the integrity and performance of the finished product.

Enhancing Metal in 3D Printing through Laser Engraving

In 3D printing, traditional metal processing methods are not always applicable. This is where laser engraving comes in handy. The Cambridge team did not use traditional heating and beating techniques, but instead chose a laser that directly changes the metal crystal structure on the object. This process enhances the strength of the metal and reduces its brittleness, like a microscopic and precise hammer.

Thoroughly changing metal processing

The inspiration for laser carving comes from the metal manufacturing methods of our ancestors. By alternately using laser processing and untreated areas, researchers can finely control the characteristics of objects. According to Dr. Matteo Seita, this technology can reduce the cost of metal 3D printing. It promises more sustainable and simpler production, possibly eliminating low-temperature treatment.

In short, laser engraving represents an important progress in metal 3D printing. It can create complex metal objects with enhanced properties. This innovation has led to more efficient and sustainable manufacturing, redefining the use of metals in many engineering applications.

The potential of laser engraving goes far beyond simple manufacturing. In the fields of aerospace, automotive, and medicine, it is used to produce lighter and more durable parts. The accuracy of the laser reduces material waste and helps to utilize resources more wisely. By optimizing material properties, the service life of products can be extended, thereby promoting a circular economy.
In addition, this technology opens up new possibilities in design. Designers and engineers can explore forms that were previously inaccessible. This creative freedom may bring unexpected innovation in multiple fields.

In addition, laser engraving has stimulated research and development. Scientists can try new alloys and composite materials to break through the boundaries of material performance. These explorations may lead to the discovery of revolutionary materials with different applications.

Source: Laser Network

Raccomandazioni correlate
  • German laser company Marvel Fusion recently raised 62.8 million euros in funding

    Recently, Marvel Fusion, a private German company dedicated to commercializing fusion energy through its own laser technology, announced that it has recently raised 62.8 million euros in Series B funding. This round of investors includes HV Capital, b2venture, Earlybird Venture Capital, Athos Venture, Primepulse, Plural Platform, and Deutsche Telekom. Meanwhile, Marvel Fusion has also received add...

    2024-10-12
    Vedi traduzione
  • Kearns Launches 3-Axis Controlled UV Laser Marking Machine to the UK Market

    Recently, Keyence announced that it has delivered the MD-U series of 3-axis controlled UV laser marking machines to its UK customers. This product technology utilizes ultraviolet lasers with high absorption rates to perform cold labeling on various materials - a process that can be carried out under minimum thermal stress.UV laser is generated by passing a standard wavelength laser (1064nm) throug...

    2023-10-09
    Vedi traduzione
  • 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
    Vedi traduzione
  • The Boston University research team developed a high-throughput single-cell sorting technique based on stimulated Raman spectroscopy

    A Boston University research project has successfully developed an innovative single-cell sorting technique that uses stimulated Raman spectroscopy to replace traditional fluorescent labeling and achieve labeling free and non-destructive single-cell measurements. This technology is expected to have a profound impact in the fields of cytology, microbiology and biomedical research, allowing scienti...

    2023-09-07
    Vedi traduzione
  • LightSolver announces the launch of the LPU100 laser computing system

    LightSolver, a laser based computing company, announced that it is a breakthrough in quantum inspired high-performance computing.Its LPU100 system utilizes the power of 100 lasers to solve optimization problems, challenging the processing time of quantum and supercomputers. The laser array of LPU100 represents 100 continuous variables and can solve up to 120100 combinations of problems, enabling ...

    2024-03-22
    Vedi traduzione