Laser Induced Periodic Surface Nano And Microstructures For Tribological Applications


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Laser-Induced Periodic Surface Nano- and Microstructures for Tribological Applications


Laser-Induced Periodic Surface Nano- and Microstructures for Tribological Applications

Author: Jörn Bonse

language: en

Publisher: MDPI

Release Date: 2020-11-25


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This book is the printed edition of the Special Issue published in Materials. The book provides an overview of current international research activities in the field of friction and wear management through the laser processing of periodic surface micro- and nanostructures for technical and medical applications. Contributions of renowned scientists from academia and industry provide a bridge between the fields of tribology and laser material processing in order to foster current knowledge and present new ideas for future applications and new technologies.

Laser-Induced Periodic Surface Nano- and Microstructures for Tribological Applications


Laser-Induced Periodic Surface Nano- and Microstructures for Tribological Applications

Author: Jörn Bonse

language: en

Publisher:

Release Date: 2020


DOWNLOAD





This book is the printed edition of the Special Issue published in Materials. The book provides an overview of current international research activities in the field of friction and wear management through the laser processing of periodic surface micro- and nanostructures for technical and medical applications. Contributions of renowned scientists from academia and industry provide a bridge between the fields of tribology and laser material processing in order to foster current knowledge and present new ideas for future applications and new technologies.

Optically Induced Nanostructures


Optically Induced Nanostructures

Author: Karsten König

language: en

Publisher: Walter de Gruyter GmbH & Co KG

Release Date: 2015-05-19


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Nanostructuring of materials is a task at the heart of many modern disciplines in mechanical engineering, as well as optics, electronics, and the life sciences. This book includes an introduction to the relevant nonlinear optical processes associated with very short laser pulses for the generation of structures far below the classical optical diffraction limit of about 200 nanometers as well as coverage of state-of-the-art technical and biomedical applications. These applications include silicon and glass wafer processing, production of nanowires, laser transfection and cell reprogramming, optical cleaning, surface treatments of implants, nanowires, 3D nanoprinting, STED lithography, friction modification, and integrated optics. The book highlights also the use of modern femtosecond laser microscopes and nanoscopes as novel nanoprocessing tools.