Advances in Laser Materials Processing

Laser processing has become more relevant today due to its fast adaptation to the most critical technological tasks, its ability to provide processing in the most rarefied and aggressive mediums (vacuum conditions), its wide field of potential applications, and the green aspects related to the absen...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (238 p.)
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(oapen)https://directory.doabooks.org/handle/20.500.12854/93180
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spelling Grigoriev, Sergey N. edt
Advances in Laser Materials Processing
MDPI - Multidisciplinary Digital Publishing Institute 2022
1 electronic resource (238 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
open access Unrestricted online access star
Laser processing has become more relevant today due to its fast adaptation to the most critical technological tasks, its ability to provide processing in the most rarefied and aggressive mediums (vacuum conditions), its wide field of potential applications, and the green aspects related to the absence of industrial cutting chips and dust. With the development of 3D production, laser processing has received renewed interest associated with its ability to achieve pointed to high-precision powder melting or sintering. New technologies and equipment, which improve and modify optical laser parameters, contribute to better absorption of laser energy by metals or powder surfaces and allow for multiplying laser power that can positively influence the industrial spread of the laser in mass production and advance the existing manufacturing methods. The latest achievements in laser processing have become a relevant topic in the most authoritative scientific journals and conferences in the last half-century. Advances in laser processing have received multiple awards in the most prestigious competitions and exhibitions worldwide and at international scientific events. The Special Issue is devoted to the most recent achievements in the laser processing of various materials, such as cast irons, tool steels, high entropy alloys, hard-to-remelt materials, cement mortars, and post-processing and innovative manufacturing based on a laser.
English
Technology: general issues bicssc
History of engineering & technology bicssc
composition
laser bionic unit
tensile properties
wear resistance
laser remelting
ductile iron
bionic crack blocked unit
repair discontinuously
thermal fatigue crack
laser melting
biomimetic model
brake pads
surface wear
laser cladding
high entropy alloy
specific energy
phase transformation
anticorrosion steel
hardness
laser powder bed fusion
microroughness
tensile test
corrosion susceptibility
defocusing
microstructure
offset
stress relief heat treatment
ultrasonic peening
surface roughness
laser polishing
quadratic laser spot
tool steel 1.2379
area rate
cement-based material
laser scabbling
microstructural analysis
chemical analysis
thermal properties
laser treatment
cast irons
mechanical properties
wear
energy excess
heat diffusion
laser beam mode
numerical simulation
profiling
power density distribution
thermal conductivity
surface cleaning
selective laser melting
atmospheric plasma sources
dielectric barrier discharge
nickel alloy
titanium alloy
3-0365-4887-4
Volosova, Marina A. edt
Okunkova, Anna A. edt
Grigoriev, Sergey N. oth
Volosova, Marina A. oth
Okunkova, Anna A. oth
language English
format eBook
author2 Volosova, Marina A.
Okunkova, Anna A.
Grigoriev, Sergey N.
Volosova, Marina A.
Okunkova, Anna A.
author_facet Volosova, Marina A.
Okunkova, Anna A.
Grigoriev, Sergey N.
Volosova, Marina A.
Okunkova, Anna A.
author2_variant s n g sn sng
m a v ma mav
a a o aa aao
author2_role HerausgeberIn
HerausgeberIn
Sonstige
Sonstige
Sonstige
title Advances in Laser Materials Processing
spellingShingle Advances in Laser Materials Processing
title_full Advances in Laser Materials Processing
title_fullStr Advances in Laser Materials Processing
title_full_unstemmed Advances in Laser Materials Processing
title_auth Advances in Laser Materials Processing
title_new Advances in Laser Materials Processing
title_sort advances in laser materials processing
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2022
physical 1 electronic resource (238 p.)
isbn 3-0365-4888-2
3-0365-4887-4
illustrated Not Illustrated
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