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AbstractAbstract
[en] The Materials Fabrication Division of Lawrence Livermore National Laboratory (LLNL) has three pulsed Nd-YAG lasers dedicated to metalworking. The units are used in a job shop primarily for welding. They also have a number of applications requiring cutting and drilling capability. Each of these metalworking operations requires somewhat different laser beam characteristics. As most investigators have found, the mode of the laser beam and the mode stability are the key variables which must be controlled if optimum results are to be achieved. The authors use several techniques to observe and measure these variables, i.e. Charge Couple Device (CCD) Camera, Thermal Image Plate and thermal-sensitive paper
Primary Subject
Source
Anon; vp; 1984; vp; Laser Institute of America; Toledo, OH (USA); International conference on applied lasers and electro optics; Boston, MA (USA); 12-15 Nov 1984
Record Type
Book
Literature Type
Conference
Country of publication
ALUMINIUM OXIDES, CAPACITORS, CHARGE-COUPLED DEVICES, DIAGNOSTIC TECHNIQUES, DIGITIZERS, FERRITE GARNETS, IMAGE PROCESSING, LASER BEAM MACHINING, LASER DRILLING, LASER RADIATION, LASER WELDING, METALLURGY, METALS, MICROPROCESSORS, MODE CONTROL, NEODYMIUM LASERS, OPTIMIZATION, PERFORMANCE TESTING, PULSES, STABILITY, YTTRIUM COMPOUNDS
ALUMINIUM COMPOUNDS, AMPLIFIERS, CHALCOGENIDES, CONTROL, ELECTRICAL EQUIPMENT, ELECTROMAGNETIC RADIATION, ELECTRONIC CIRCUITS, ELEMENTS, ENERGY STORAGE SYSTEMS, EQUIPMENT, FABRICATION, JOINING, LASERS, MACHINING, MATERIALS DRILLING, MICROELECTRONIC CIRCUITS, MINERALS, OXIDE MINERALS, OXIDES, OXYGEN COMPOUNDS, RADIATIONS, SEMICONDUCTOR DEVICES, SOLID STATE LASERS, TESTING, TRANSITION ELEMENT COMPOUNDS, WELDING
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