Türkçe

XTool enables pre-sale of F1 superfiber and diode laser cutting machines

492
2024-05-09 16:12:11
Çeviriyi gör

Tool has started pre-sales for the F1 Ultra, a 20 watt fiber and diode dual laser engraving machine. OEMs have stated that it is a win-win product and its so-called "flagship" model.

Fiber lasers are mainly used for metal materials and usually work faster than diode lasers, but other materials have better performance when using diode lasers. F1 Ultra aims to bridge this gap by using a power of 20W to enable machines to not only cut or carve metal, but also to use diode lasers to cut or carve "almost all materials", including "wood, acrylic, leather, and cork", but at the "fast speed of fiber optics.".

XTool states that the machine is capable of "deep" carving, embossing, and cutting. It is still unclear how deep "deep" carving can reach (although an article on the xTool blog seems to suggest "a few millimeters"). It can also perform "depth" relief on brass, copper, wood, and stone, carving on surfaces up to 45 degrees, and color carving on metals. Compatibility with xTool's RA2 Pro means that rotary engraving can also be performed.

F1 Ultra is clearly targeted at small businesses, and given its powerful nature, it can be tracked. XTool identified in store jewelry carving and mass production as potential use cases, and referred to the device as the "largest desktop galvanometer carving machine ever" with a work area of 220 x 220 millimeters. The conveyor feeder crank sold separately can reach a maximum of 220 x 500 millimeters.

The function of the internal camera is to achieve what xTool calls "automatic simplification of production". xTool means that F1 Ultra automatically recognizes shapes and "intelligently fills" patterns through this function. Meanwhile, the complete casing can filter blue light and expel smoke, dust, and other smoke.

The booking for F1 Ultra is now open. Users who deposit $100 between now and May 28th can purchase the machine for $3799, which is a significant discount from the suggested retail price of $4799 listed for the machine. There is currently no news about the official delivery date, but the final payment must be made before June 12th.

Source: Laser Net

İlgili öneriler
  • The improvement of additive manufacturing through artificial intelligence, machine learning, and deep learning

    Additive manufacturing (AM) has made it possible to manufacture complex personalized items with minimal material waste, leading to significant changes in the manufacturing industry. However, optimizing and improving additive manufacturing processes remains challenging due to the complexity of design, material selection, and process parameters. This review explores the integration of artificial int...

    02-24
    Çeviriyi gör
  • The construction of Hefei Advanced Light Source Project held a launch ceremony, expected to be completed and released in 5 years

    Recently, in the Future Science City of Hefei City, Anhui Province, the National Major Science and Technology Infrastructure Project and Supporting Projects of Hefei Advanced Light Source announced the start of construction, with a planned land area of approximately 656 acres. The first phase of the project is expected to be completed by September 2028.After completion, it will become an internati...

    2023-09-23
    Çeviriyi gör
  • 3D printed nanocellulose for green building applications

    The hydrogel material made of nano cellulose and algae was tested as an alternative and more environmentally friendly building material for the first time. This study from Chalmers Institute of Technology and the Wallenburg Wood Science Center in Sweden demonstrates how to 3D print rich sustainable materials into various building components, using much less energy than traditional building methods...

    2024-02-19
    Çeviriyi gör
  • Innovative nanoparticle analysis: achieving breakthrough 3D imaging using X-ray lasers

    The latest progress in X-ray laser technology has opened up a new era of nanoscale exploration, bringing unprecedented opportunities for materials science and nanotechnology. Researchers have developed a novel imaging technique that can directly visualize separated nanosamples in free flight, capturing their complex structures with stunning details. This breakthrough method relies on single cohere...

    2024-03-05
    Çeviriyi gör
  • Developing a concentration independent pressure sensing method for high-temperature combustion diagnosis

    Recently, a research group led by Professor Gao Xiaoming and Professor Liu Kun of the Chinese Academy of Sciences Hefei Institute of Physical Sciences developed a concentration independent pressure sensing method based on two-color laser absorption spectrum for high-temperature combustion diagnosis.The research findings are published in Optics Letters.Aircraft engines are developing towards high-t...

    2024-03-08
    Çeviriyi gör