Solid-State Lasers for Materials Processing. Fundamental Relations and Technical Realizations.pdf

Solid-State Lasers for Materials Processing. Fundamental Relations and Technical Realizations PDF

Reinhard Ifflander

This book explains in detail the technical and physical basics of solid-state lasers for material processing. The characteristic parameters of laser beams, such as beam quality, power and efficiency, are related to parameters of practical use. Conventional applications of high power lasers, such as laser welding, cutting and scribing, as well as the basics of laser-matter interactions, are also discussed in the book. The types of lasers considered include: high power Nd, Yb:YAG, Nd-glass lamp- or laserdiode-pumped. Data on potential materials for solid-state lasers such as Alexandrite, GGG, YVO, YLF and others are presented. Aspects of laser device design, for example, beam optics and beam guiding by fiber, are discussed. Many tables and graphics make this a useful handbook for scientists, process engineers, laser physicists and advanced students.

Laserowe nanoszenie znaków barwnych na podłoża …

2.39 MB Taille du fichier
9783540669807 ISBN
Libre PRIX
Solid-State Lasers for Materials Processing. Fundamental Relations and Technical Realizations.pdf

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Solid-State Lasers for Materials Processing | … Solid-State Lasers for Materials Processing Fundamental Relations and Technical Realizations. Authors (view affiliations) Reinhard Iffländer; Book. 27 Citations; 4.8k Downloads; Part of the Springer Series in Optical Sciences book series (SSOS, volume 77) Log in to check access. Buy eBook. USD 209.00 Instant download; Readable on all devices; Own it forever; Local sales tax included if

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Solid-State Lasers for Materials Processing: Fundamental Relations and Technical Realizations. Reinhard Iffländer. Springer Science & Business Media, 18 jan. 2001 - 350 pagina's. 0 Recensies. This book explains in detail the basics of laser-matter interactions. The complete spectrum of applications of high-intensity laser processing of materials is presented. Conventional applications such as