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  • Laser Welding Plastics Using a Fiber Laser
    , or a. How laser welding of plastic works (IR. Fiber Laser. wavelength): In this process, the two layers, to be joined,. Quasi Simultaneous Welding. must differ in such a way that the top one allows. Two scanner mirrors deflect the laser spot and. the infrared light to pass through while the. guide
  • Fiber Laser Welding of Clear Plastics
    to the medical industry is the need to weld clear or light - coloured plastics. Information is presented here for the first time using fiber lasers to weld clear-to-clear plastics. A novel laser source is therefore used in combination with a novel laser welding technique to produce results of real
  • The Progress of Industrial Laser Marking (.pdf)
    falls. between 1.030 and 2.100 um depending on the medium used for laser generation. In. addition to being an extremely efficient source of laser light, the power output of the marker. can also be tuned according to the length of the fiber cord. Figure 8: Fiber Laser Generation. Fiber technology
  • Phase Conjugate Laser Optics - Preface
    Since the discovery of the laser in the 1960s, a great amount. of research activity has led to an impressive increase of the overall. performances of the sources emitting in the visible or in the infrared. spectral regions. The most significant achievements for solid-state. lasers in the last 10
  • Fiber Laser Marking of Plastic: ABS
    that are capable of line marking speeds up to 6m/s, which equates to nearly 1,000 characters per second. 1997 Profile. Fiber Laser Marking of Plastic: ABS. Introduction: ABS, Acrylonitrile Butadiene Styrene, is a. common thermoplastic used to make light, rigid,. moulded products such as wall sockets
  • Laser Welding Creates Potential for Small Parts Applications
    as the energy source is a process used to achieve a balance between the process of thermal fusion and metallurgical effects. Functionally, the laser generates infrared or visible light (usually with the use of Nd-YAG lasers or frequency-doubled "green" lasers for reflective metals) which
  • Fiber Laser Marking - Night and Day Mark
    Lasers 2008. Version 1.0. Benefits of SPI’s Fiber Lasers: •Significant improvement in the quality of the mark. due to the stability and controllability of the laser. source. •Beam intensity and spot size enable the use of small. mark widths. • Output power stability over time enables complex. mark
  • Optical Properties of Single-Crystal Sapphire Fibers
    Single-crystal sapphire fibers have been grown with the laser-heated pedestal-growth method with losses as low as 0.3 dB/m at 2.94 um. With the incorporation of a computer-controlled feedback system, fibers have been grown with less than 60.5% diameter variation, or 1.5 um for a 300-um fiber

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