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Laser Material Processing- Third Edition - William Steen

DATE DE SORTIE: 01/01/2003
ISBN: 1-85233-698-6
AUTEUR: William Steen

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Lasers now play a major part in the processing of the disparate materials used in engineering and manufacturing. The range of procedures in which they are involved is ever increasing. With this growing prominence comes a need for clear and instructive textbooks to teach the next generation of laser practitioners. The informai style of Laser Material Processing (3rd Edition) will guide you smoothly from the basics of laser physics to the detailed treatment of ail the major materials processing techniques for which lasers are now essential. Helps you to understand how the laser works and to decide which laser is best for yourpurposes. New chapters on bending and cleaning reflect the changes in the field since the last edition completing the range of practical knowledge about the processes possible with lasers already familiar to users of this well-known text. Provides a firm grounding in the safety aspects of laser use. Professor Steen's lively presentation is supported by a number of original cartoons by Patrick Wright and Noel Ford which will bring a smile to your face and ease the learning process. Laser Material Processing (3rd Edition) will be of use as university or industrial course material for senior undergraduate, graduate and non-degree technical training in optoelectronics, laser processing and advanced manufacturing. Practising engineers and technicians in these areas will also find the book an authoritative source of information on the rapidly expanding use of industrial lasers in material processing.

...easant to read with many useful figures ... Bringing a Third Dimension to Laser Materials Processing ... ... ... Advances in Laser Materials Processing: Technology, Research and Application, Second Edition, provides a revised, updated and expanded overview of the area, covering fundamental theory, technology and methods, traditional and emerging applications and potential future directions. The book begins with an overview of the technology and challenges to applying the technology in manufacturing. Laser materials processing; laser weld ... Laser Material Processing | William Steen | Springer ... . Laser materials processing; laser welding; heat transfer mechanism; laser cutting; laser drilling; laser glazing; laser cladding; laser alloying. 1. Introduction Since its inception in the early sixties the laser has progressed from being a laboratory curiosity to a sophisticated industrial tool. Lasers are being used as a controlled intense source of heat for many metallurgical applications ... "Laser Material Processing (3rd Edition) will be of use as university or industrial course material for senior, undergraduate, graduate and non-degree technical training in optoelectronics, laser processing, and advanced manufacturing. Laser processing of different types of ceramics such as alumina, silicon carbide, zirconia, etc. is an area of considerable technological importance for several structural, tribological, optical, and electronics applications. These materials readily absorb infrared radiation, therefore CO 2 and Nd:YAG lasers have been mostly used for their drilling applications. Laser Processing of Materials in Japan 1st Edition Research, Development and Applications. 0.0 star rating Write a review. Author: Japan Technical Information Se. eBook ISBN: 9781483293981 Imprint: Elsevier Science Published Date: 21st September 1990 Page Count: 108 Select country/region: Sales tax will be calculated at check-out Price includes VAT/GST. eBook. 15% off. 19.99. 31.95. 27.15 24 ... Processing of materials by ultrashort laser pulses has evolved significantly over the last decade and is starting to reveal its scientific, technological and industrial potential. In ultrafast ... A laser beam is projected through a transparent material and absorbed in an adjacent material on the backside, such as GaN on Sapphire. The laser lift-off separation process allows processing large area devices with the required finesse and reproducibility. For this reason, it is very common in the LED industry for separating light-emitting films and also in displays for television and mobile ... In recent years, laser processing applications have sought to overcome this limitation and access the third dimension (Z-axis), typically by using mechanically moving Z-stages. In a complementary approach, Optotune has recently developed a tunable lens dedicated to laser processing, shown on the left of Figure 2. The lens has a 10 mm clear aperture and the optical coatings are optimized for ... High power lasers can produce intense heating and perform various manufacturing operations or material processing. The present contribution provides an overview of the application of high power laser only for material processing in engineering applications, and intentionally excludes the scope of application of laser in metrology, biomedical technology, spectroscopy, etc. The manufacturing ... Lasers widely used in material processing are CO 2 laser and Nd:YAG laser. CO 2 lasers operate at 10.6 m and metals have high reflectivity at this wavelength. Instead of cw CO 2 laser, a pulsed mode CO 2 laser produces high peak powers and makes possible to work on metals. CO 2 lasers are cheaper compared to Nd:YAG lasers CO ME 677 Laser Material Processing Course Instructor : ... Laser Material Processing, 3rd Edition, Springer-Verlag, 2008 Elijah Kannatey-Asibu, Jr., Principles of Laser Materials Processing, Wiley, 2009 References: George Chryssolouris, P. Sheng, Frederick F. Ling (Editors), Laser Machining: Theory and Practice, Springer-Verlag, New York, 1991 Cemil Hakan Gür, Jiansheng Pan, Handbook of Thermal ... Free PDF Books : Download Engineering Books Free online Pdf Study Material for All MECHANICAL, ELECTRONICS, ELECTRICAL, CIVIL, AUTOMOBILE, CHEMICAL, COMPUTERS, MECHATRONIC, TELECOMMUNICATION with Most Polular Books Free. Laser material processing The total world market for Laser Material Processing systems is now a multi billion euro industry. However, existing laser surface micro-structuring technology is limited by the need to attenuate the laser output (to the uJ level) and this resulting slow speed leads to a significant loss of both throughputs and efficiencies. Laser material processing can be divided in several laser applications such as laser marking, laser cleaning and rust removal, laser cutting and laser welding. We have focused on a handful of applications of lasers in material processing to provide the best solution for the automotive and primary metal industry. The informal style of Laser Material Processing (3rd Editi...