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Advances in Laser and Surface Material Processing [Minkštas viršelis]

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  • Formatas: Paperback / softback, 192 pages, aukštis x plotis x storis: 240x170x10 mm, weight: 470 g, Illustrations, unspecified
  • Serija: Solid State Phenomena
  • Išleidimo metai: 24-Aug-2020
  • Leidėjas: Trans Tech Publications Ltd
  • ISBN-10: 3035716528
  • ISBN-13: 9783035716528
Kitos knygos pagal šią temą:
  • Formatas: Paperback / softback, 192 pages, aukštis x plotis x storis: 240x170x10 mm, weight: 470 g, Illustrations, unspecified
  • Serija: Solid State Phenomena
  • Išleidimo metai: 24-Aug-2020
  • Leidėjas: Trans Tech Publications Ltd
  • ISBN-10: 3035716528
  • ISBN-13: 9783035716528
Kitos knygos pagal šią temą:
This special issue entitled Advances in laser and surface material processing provides a broad overview of methods of laser surface treatment and modern surface modification technologies applied to engineering materials. The articles focus mainly on the effect of processing conditions on the surface properties, structure as well as the manufacturing process optimization. The major purpose of this book is to present and discuss various problems in surface treatment technology, related to the structure and properties of various materials.
Preface
Review of Additive Manufacturing Methods
The Surface Morphology and Electrochemical Properties of Pure Titanium
Obtained by Selective Laser Melting Method
Main Defects Observed in Titanium GRADE II and 316L Stainless Steel Elements
Obtained by Selective Laser Melting
Design and Selective Laser Melting Manufacturing of TPE Extrusion Die
Laser Surface Alloying of Aluminium Alloys with Cu/Fe Metallic Powders
Fabrication of TiC-Reinforced Surface Layers on Ductile Cast Iron Substrate
by Laser Surface Alloying
Laser Thermal Oxidation by Ytterbium-Doped Fibre Laser of the Hot and
Cold-Rolled Stainless Steel Surface
Tribological Characteristic of Tool Steel Surface Layer Alloyed Using Laser
Surface Properties Enhancement of Light Alloys by Appliance of Laser
Treatment
The Use of Lasers at Various Stages of the Manufacturing Process of Solar
Cells Based on Crystalline Silicon
Structure of Titanium GRADE 1 after Laser Alloying with FeCr Powder
Surface Hardening of AlMg5Si2Mn Alloy through Multi-Axis Compression Using
Max Strain