Characterization of Welded Joints

Welding remains one of the most studied manufacturing processes worldwide. It has always assumed a vital importance in terms of research, and the market demand for increasingly complex solutions has kept the search for new solutions around welding more and more alive. This book describes, in 14 chap...

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التفاصيل البيبلوغرافية
التنسيق: Online
اللغة:الإنجليزية
منشور في: MDPI - Multidisciplinary Digital Publishing Institute 2021
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الوصول للمادة أونلاين:ONIX_20210501_9783039432486_977
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collection Directory of Open Access Books
description Welding remains one of the most studied manufacturing processes worldwide. It has always assumed a vital importance in terms of research, and the market demand for increasingly complex solutions has kept the search for new solutions around welding more and more alive. This book describes, in 14 chapters, recent investigations around various welding processes, showing new developments in important areas, such as biomedicine or the automotive industry. Following the current trend, several developments around the friction stir welding process are also described. However, other processes are also studied, and new interesting developments are presented. Problems normally felt in welding, such as the installation of internal stresses or the generation of defects are also studied, and very interesting solutions are provided. Thus, this book is of particular importance for a very wide audience, ranging from the technician who is curious to want to know more and more, to the professor who seeks the latest developments in the matter to prepare his classes.
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language eng
publishDate 2021
publishDateRange 2021
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publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-692312024-04-11T15:10:38Z Characterization of Welded Joints Silva, Francisco J. G. spot welding hot-stamped hardened steel microstructure martensite bainite friction stir welding aluminium alloys forced air cooling microstructures tensile strength hardness distribution ferritic stainless steel cerium solidification crack Trans-varestraint test beryllium-copper alloy mechanical properties post-weld heat treatment high-power ultrasonic welding interface magnesium cu interlayer intermetallic compound material flow finite element model temperature field welding defects brazing titanium alumina interfacial microstructure FSSW dissimilar metals interface behavior impact properties residual stresses neutron diffraction hardness precipitation wear-resistant martensitic steel submerged arc welding (SAW) heat treatment structures hardness changes Hardox Extreme steel bobbin friction stir welding materials flow metallography AA6082-T6 weld defect aluminum alloy heterogeneity mechanical P91 steel heat-resistant steels welding PWHT welds characterization heat-treatment processing time sustainability ultrasonic vibration dissimilar metal semi-solid status microstructure evolution thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology Welding remains one of the most studied manufacturing processes worldwide. It has always assumed a vital importance in terms of research, and the market demand for increasingly complex solutions has kept the search for new solutions around welding more and more alive. This book describes, in 14 chapters, recent investigations around various welding processes, showing new developments in important areas, such as biomedicine or the automotive industry. Following the current trend, several developments around the friction stir welding process are also described. However, other processes are also studied, and new interesting developments are presented. Problems normally felt in welding, such as the installation of internal stresses or the generation of defects are also studied, and very interesting solutions are provided. Thus, this book is of particular importance for a very wide audience, ranging from the technician who is curious to want to know more and more, to the professor who seeks the latest developments in the matter to prepare his classes. 2021-05-01T15:44:18Z 2021-05-01T15:44:18Z 2020 book ONIX_20210501_9783039432486_977 9783039432486 9783039432493 https://directory.doabooks.org/handle/20.500.12854/69231 eng application/octet-stream Attribution 4.0 International https://mdpi.com/books/pdfview/book/3004 https://mdpi.com/books/pdfview/book/3004 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03943-249-3 10.3390/books978-3-03943-249-3 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783039432486 9783039432493 238 Basel, Switzerland open access
spellingShingle spot welding
hot-stamped hardened steel
microstructure
martensite
bainite
friction stir welding
aluminium alloys
forced air cooling
microstructures
tensile strength
hardness distribution
ferritic stainless steel
cerium
solidification crack
Trans-varestraint test
beryllium-copper alloy
mechanical properties
post-weld heat treatment
high-power ultrasonic welding
interface
magnesium
cu interlayer
intermetallic compound
material flow
finite element model
temperature field
welding defects
brazing
titanium
alumina
interfacial microstructure
FSSW
dissimilar metals
interface behavior
impact properties
residual stresses
neutron diffraction
hardness
precipitation
wear-resistant martensitic steel
submerged arc welding (SAW)
heat treatment
structures
hardness changes
Hardox Extreme steel
bobbin friction stir welding
materials flow
metallography
AA6082-T6
weld defect
aluminum alloy
heterogeneity
mechanical
P91 steel
heat-resistant steels
welding
PWHT
welds characterization
heat-treatment processing time
sustainability
ultrasonic vibration
dissimilar metal
semi-solid status
microstructure evolution
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
Characterization of Welded Joints
title Characterization of Welded Joints
title_full Characterization of Welded Joints
title_fullStr Characterization of Welded Joints
title_full_unstemmed Characterization of Welded Joints
title_short Characterization of Welded Joints
title_sort characterization of welded joints
topic spot welding
hot-stamped hardened steel
microstructure
martensite
bainite
friction stir welding
aluminium alloys
forced air cooling
microstructures
tensile strength
hardness distribution
ferritic stainless steel
cerium
solidification crack
Trans-varestraint test
beryllium-copper alloy
mechanical properties
post-weld heat treatment
high-power ultrasonic welding
interface
magnesium
cu interlayer
intermetallic compound
material flow
finite element model
temperature field
welding defects
brazing
titanium
alumina
interfacial microstructure
FSSW
dissimilar metals
interface behavior
impact properties
residual stresses
neutron diffraction
hardness
precipitation
wear-resistant martensitic steel
submerged arc welding (SAW)
heat treatment
structures
hardness changes
Hardox Extreme steel
bobbin friction stir welding
materials flow
metallography
AA6082-T6
weld defect
aluminum alloy
heterogeneity
mechanical
P91 steel
heat-resistant steels
welding
PWHT
welds characterization
heat-treatment processing time
sustainability
ultrasonic vibration
dissimilar metal
semi-solid status
microstructure evolution
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
topic_facet spot welding
hot-stamped hardened steel
microstructure
martensite
bainite
friction stir welding
aluminium alloys
forced air cooling
microstructures
tensile strength
hardness distribution
ferritic stainless steel
cerium
solidification crack
Trans-varestraint test
beryllium-copper alloy
mechanical properties
post-weld heat treatment
high-power ultrasonic welding
interface
magnesium
cu interlayer
intermetallic compound
material flow
finite element model
temperature field
welding defects
brazing
titanium
alumina
interfacial microstructure
FSSW
dissimilar metals
interface behavior
impact properties
residual stresses
neutron diffraction
hardness
precipitation
wear-resistant martensitic steel
submerged arc welding (SAW)
heat treatment
structures
hardness changes
Hardox Extreme steel
bobbin friction stir welding
materials flow
metallography
AA6082-T6
weld defect
aluminum alloy
heterogeneity
mechanical
P91 steel
heat-resistant steels
welding
PWHT
welds characterization
heat-treatment processing time
sustainability
ultrasonic vibration
dissimilar metal
semi-solid status
microstructure evolution
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
url ONIX_20210501_9783039432486_977