繁体中文

From Fiction to Reality: Laser Cutting Technology Has Entered the Shipbuilding Industry

564
2023-12-28 14:12:37
查看翻譯

Laser cutting is a type of metal processing. In industry, there are three main cutting methods: mechanical cutting, thermal cutting, and a set of high-precision cutting methods. Laser technology belongs to the third category. The cutting in this method occurs due to the influence of the laser beam on the product. In fact, it is the molten metal produced by rapid pulse point melting and then blowing. Due to the instantaneous generation of these pulses, the output is continuous and uniform cutting.

In the novel "Engineer Galin's Bisurface", there is a scene where the protagonist uses a laser to cut a huge tank. In the book, this is fictional. Now, this fantasy has become a reality: lasers can cut very thick metals.

There is a viewpoint that laser cutting is only faster and more economical for thin metals. For larger thicknesses, it is best to still use plasma. This is an outdated bias. Modern lasers can cut steel from 25 millimeters, thanks to equipment manufacturers significantly increasing the power of machine tools in recent years. If the earlier standard value was considered 3-6 kW, then 50 kW is now a fairly average power. In Russia, approximately 20 kW is still considered standard, but this is quite significant. And this leap occurred within just 3-4 years.

Laser can cut any alloy of metal and work at a relatively high speed. When using plasma or gas plasma cutting, a large amount of electricity is consumed, more different consumables are required, the edges are often uneven, and the process itself requires many times more time. Laser technology has higher efficiency. They accelerated this process and reduced the cutting cost of one meter by 10-20 times.

The second area of using laser technology is product production. For example, to assemble a ship, complex contours must be handled. Plasma cutting or drilling machines can also be used for drilling, milling, and further processing.

To speed up and improve such processes, you can use a laser pipe cutting machine. The raw material is handed over to the machine, and the output is finished parts. In addition, a workpiece can manufacture 10 different parts simultaneously. This is a fully automated process.

Source: Laser Net


相關推薦
  • The Indian medical laser market has entered a rapid growth mode

    According to industry forecasts, the medical laser market in India, especially in the field of medical aesthetics, is expected to be worth up to 71572 million rupees in fiscal year 2023. It is expected that this number will increase to 1.8358 billion rupees by fiscal year 2031, with a compound annual growth rate of 12.49%.Alma Medical, a global innovator in the field of medical lasers in Israel, h...

    2024-07-05
    查看翻譯
  • Probe organization of photoacoustic devices using low-cost laser diodes

    Photoacoustic technology provides a non-invasive method for detecting biological tissues, but its clinical application is limited, partly due to the large volume and high cost of laser sources. A compact PA sensing instrument powered by laser diodes for biomedical tissue diagnosis can provide clinical doctors with a practical and effective tool for evaluating breast diseases.By providing a cost-ef...

    2024-03-06
    查看翻譯
  • China University of Science and Technology realizes millisecond level integrated quantum memory

    Recently, the team led by Academician Guo Guangcan from the University of Science and Technology of China has made significant progress in the field of integrated quantum storage. The research team led by Li Chuanfeng and Zhou Zongquan has improved the storage time of integrated quantum memory from 10 microseconds to milliseconds based on their original noiseless photon echo (NLPE) scheme, while s...

    03-31
    查看翻譯
  • The world's first tunable wavelength blue semiconductor laser

    Recently, researchers from Osaka University in Japan have developed the world's first compact, wavelength tunable blue semiconductor laser in a new study. This breakthrough paves the way for far ultraviolet light technology and brings enormous potential for applications such as virus inactivation and bacterial disinfection. The research results have been published in the journal Applied Physics Le...

    2024-11-23
    查看翻譯
  • Zhejiang University has prepared ultra strong and tough 3D printing elastic materials

    Professor Xie Tao and researcher Wu Jingjun from the School of Chemical Engineering and Biotechnology at Zhejiang University have designed a new type of photosensitive resin and used it to create a "super rubber band" that can stretch to over 9 times its own length and lift 10 kilograms of objects with a "body" with a diameter of 1 millimeter through 3D printing. The relevant results were recently...

    2024-07-06
    查看翻譯