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Titlebook: Laser Micro-Nano-Manufacturing and 3D Microprinting; Anming Hu Book 2020 Springer Nature Switzerland AG 2020 Laser processing.Nanomanufact

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Wilhelm Pfleging,Petronela Gotcu,Peter Smyrek,Yijing Zheng,Joong Kee Lee,Hans Jürgen Seifertopean member countries. These activities aligns well with the activities of HLRS in the European HPC infrastructure project DEISA (Distributed European Infrastructure for Supercomputing Appli- tions) and in the European HPC support project HPC-Europa. Beyond that, HLRS and its partners in the GCS ha
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0933-033X willbe critically attractive to undergraduate and graduate students, researchers, and engineers in the relevant fields. Readers will grasp the full picture of the application of laser for micro-nanomanufacturi978-3-030-59315-5978-3-030-59313-1Series ISSN 0933-033X Series E-ISSN 2196-2812
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0933-033X ry of 3D printing and nanojoining.Provides information on fuThis book provides a comprehensive overview of the latest advances in laser techniques for micro-nano-manufacturing and an in-depth analysis of applications, such as 3D printing and nanojoining. Lasers have gained increasing significance as
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Book 2020ations, such as 3D printing and nanojoining. Lasers have gained increasing significance as a precise tool for advanced manufacturing. Written by world leading scientists, the first part of the book presents the fundamentals of laser interaction with materials at the micro- and nanoscale, including m
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Introduction to Laser Micro-to-Nano Manufacturing, laser carbonization. Subsequently we reviewed two kinds of key techniques for micro-to-nanomanufacturing: various micro-to-nano manipulations and nanojoining. On the basis of these reviews, we introduce latest progresses on innovative molecular devices, near-field manufacturing and super-resolution manufacturing.
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Laser-Induced Forward Transfer Towards Additive Manufacturing,echnique that could be described as an additive process, in contrary to the subtractive processes such as laser sintering, part of this chapter is focused on the evolution of the technique towards additive manufacturing as well as industrialization activities that have risen in the last 5 years.
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Direct Femtosecond Laser Writing of Optical Waveguides in Dielectrics,brings out intriguing applications in many areas. In this chapter, we overview the fundamentals of the femtosecond laser writing of optical waveguides in optical dielectrics and introduce the recent applications in selected topics.
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