繁体中文

Laser cladding method improves the surface performance of parts

497
2023-12-28 13:57:11
查看翻譯

Laser cladding, also known as laser metal deposition, is a process of depositing one material onto another.
When the laser beam scans the target surface, metal powder or wire flow is fed into the molten pool formed by the laser beam, thereby producing the required material coating.

The laser cladding method improves the surface properties of the parts, such as wear resistance, and allows for the repair of damaged or worn surfaces.
One of the most precise welding procedures is used to establish this mechanical connection between the substrate and layer.

Laser cladding has improved the performance of industrial products by producing protective layers to prevent wear and corrosion.

Engineers can use universal base metal alloys to design parts, which helps protect natural resources.
Then, the components are locally laser melted with high alloy materials to provide appropriate performance characteristics.

Laser cladding is also a method used to restore and remanufacture high-value components into their original shape.

In addition to the shape of fixed parts, selecting additive manufacturing materials with better wear characteristics than the original components can also improve service life and performance.

Source: Laser Net

相關推薦
  • BYD and Huagong Technology deepen strategic cooperation and exchange

    Recently, BYD Semiconductor Division held discussions and exchanges with Huagong Technology High Tech Company and Laser Company, opening a new chapter of strategic cooperation.Chen Gang, General Manager of BYD Semiconductor Division, Nie Bo, Party Committee Member and General Manager of Huagong High Tech, Wang Jiangang, Party Committee Member, Deputy General Manager of Huagong Laser, and General M...

    2024-12-11
    查看翻譯
  • Researchers propose NeuFlow: an efficient optical flow architecture that can solve high-precision and computational cost issues

    Real time and high-precision optical flow estimation is crucial for analyzing dynamic scenes in computer vision. Although traditional methods are fundamental, they often encounter issues with computation and accuracy, especially when executed on edge devices. The emergence of deep learning has driven the development of this field, providing higher accuracy, but at the cost of sacrificing computati...

    2024-03-23
    查看翻譯
  • Shanghai Optical Machinery Institute has made progress for the first time in hard X-ray zoom beam imaging

    Recently, the High Power Laser Physics Joint Laboratory of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, completed the research of hard X-ray zoom beam splitting imaging on the micro focus X-ray source for the first time, and solved the problem of beam splitter limitation in the hard X-ray band. The related achievements are titled "Bifocal photo scene imaging in the...

    2024-04-08
    查看翻譯
  • Photon chips help drones fly unobstructed in weak signal areas

    With funding from the National Science Foundation of the United States, researchers at the University of Rochester are developing photonic chips that use quantum technology called "weak value amplification" to replace mechanical gyroscopes used in drones, enabling them to fly in areas where GPS signals are obstructed or unavailable.Using this quantum technology, scientists aim to provide the same ...

    2023-10-28
    查看翻譯
  • Swedish KTH develops 3D printed quartz glass micro optical devices on optical fibers

    In what has been described as the "first communication", Swedish researchers conducted 3D printed quartz glass micro optical devices on the tip of optical fibers. They said that this progress could lead to faster Internet and better connectivity, as well as innovations such as smaller sensors and imaging systems.Scientists from the KTH Royal Institute of Technology in Stockholm have stated that co...

    2024-05-23
    查看翻譯