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Fundamentals of Laser Micromachining
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Fundamentals of Laser Micromachining

Book Details

Format Hardback or Cased Book
ISBN-10 1439860556
ISBN-13 9781439860557
Publisher Taylor & Francis Inc
Imprint CRC Press Inc
Country of Manufacture GB
Country of Publication GB
Publication Date Apr 12th, 2012
Print length 260 Pages
Weight 544 grams
Dimensions 23.70 x 16.60 x 1.90 cms
Product Classification: Laser technology & holography
Ksh 34,200.00
Werezi Extended Catalogue 0 in stock

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This work explains how laser technology is applied to precision micromachining. It provides the foundation to achieve cost-effectiveness, the best edge quality, and the highest resolution in small-scale industrial laser machining. The author compares various laser sources, addresses topics crucial to obtaining good processing results, and covers real-world applications in the medical, microelectronics, aerospace, and other fields. He also examines the processing of many common materials, such as metals, silicon, ceramics, and glasses. Problems and answers for each chapter are available at www.crcpress.com.

Due to their flexible and efficient capabilities, lasers are often used over more traditional machining technologies, such as mechanical drilling and chemical etching, in manufacturing a wide variety of products, from medical implants, gyroscopes, and drug delivery catheters to aircraft engines, printed circuit boards, and fuel cells. Fundamentals of Laser Micromachining explains how laser technology is applied to precision micromachining. The book combines background on physics, lasers, optics, and hardware with analysis of markets, materials, and applications. It gives sufficient theoretical background for readers to understand basic concepts while including a further reading appendix for those interested in more detailed theoretical discussions.

After reviewing laser history and technology, the author compares available laser sources, including CO2, excimer, Nd:YAG, fiber, and short pulse. He also addresses topics crucial to obtaining good processing results, such as IR and UV material–photon interaction, basic optical components, and system integration. The text goes on to cover real-world applications in the medical, microelectronics, aerospace, and other fields. It concludes with details on processing many common materials, such as metals, silicon, ceramics, and glasses.

For engineers and project managers, this book provides the foundation to achieve cost-effectiveness, the best edge quality, and the highest resolution in small-scale industrial laser machining. It will help you select the correct kind of laser for your application and identify real opportunities for growth in the marketplace.


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