Dissimilar Metal Welding

The combination of distinct materials is a key issue in modern industry, whereas the driving concept is to design parts with the right material in the right place. In this framework, a great deal of attention is directed towards dissimilar welding and joining technologies. In the automotive sector,...

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المؤلفون الرئيسيون: Astarita, Antonello, Carlone, Pierpaolo
التنسيق: Online
اللغة:الإنجليزية
منشور في: MDPI - Multidisciplinary Digital Publishing Institute 2021
الموضوعات:
الوصول للمادة أونلاين:43221
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author Astarita, Antonello
Carlone, Pierpaolo
author_browse Astarita, Antonello
Carlone, Pierpaolo
author_facet Astarita, Antonello
Carlone, Pierpaolo
author_sort Astarita, Antonello
collection Directory of Open Access Books
description The combination of distinct materials is a key issue in modern industry, whereas the driving concept is to design parts with the right material in the right place. In this framework, a great deal of attention is directed towards dissimilar welding and joining technologies. In the automotive sector, for instance, the concept of “tailored blanks”, introduced in the last decade, has further highlighted the necessity to weld dissimilar materials. As far as the aeronautic field is concerned, most structures are built combining very different materials and alloys, in order to match lightweight and structural performance requirements. In this framework, the application of fusion welding techniques, namely, tungsten inert gas or laser welding, is quite challenging due to the difference in physical properties, in particular the melting point, between adjoining materials. On the other hand, solid-state welding methods, such as the friction stir welding as well as linear friction welding processes, have already proved to be capable of manufacturing sound Al-Cu, Al-Ti, Al-SS, and Al-Mg joints, to cite but a few. Recently, promising results have also been obtained using hybrid methods. Considering the novelty of the topic, many relevant issues are still open, and many research groups are continuously publishing valuable results. The aim of this book is to finalize the latest contributions on this topic.
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spelling doab-20.500.12854ir-452832024-04-11T15:10:33Z Dissimilar Metal Welding Astarita, Antonello Carlone, Pierpaolo TA1-2040 T1-995 n/a microstructure internal supports aging treatment Rare earth cloud of particles joining area Al/steel dissimilar materials welding-brazing dual-beam laser welding jet tensile aluminum-steel butt joint crack growth path spooling process tape lobe curve dissimilar metal welded joint electrical properties filler metals EBSD phase mapping dissimilar materials welding FSW mechanical properties dissimilar tubular joints optimal design hardness AISI 316L welding window fracture resistance tensile resistance dissimilar Ti6Al4V/AA6060 lap joint arc assisted laser method dissimilar metal welding dissimilar joints pulsed Nd:YAG laser solid state welding DP1000 steel cross-section adjustment fracture load pulsed Nd:YAG laser beam welding aluminum interface phase potential dissimilar weld failure mode Ag-Cu-Zn aluminum alloy copper intermetallic compounds electromagnetic pulse welding laser beam welding ageing dissimilar metals steel/aluminum joint side-by-side configuration friction stir spot welding interfacial crack initiation laser welding spatial beam oscillation magnetic pulse welding surface activation DeltaSpot welding tensile properties friction stir spot brazing friction stir welding steel/Al joint 1050 aluminum alloy local strength mismatch Inconel 625 thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology The combination of distinct materials is a key issue in modern industry, whereas the driving concept is to design parts with the right material in the right place. In this framework, a great deal of attention is directed towards dissimilar welding and joining technologies. In the automotive sector, for instance, the concept of “tailored blanks”, introduced in the last decade, has further highlighted the necessity to weld dissimilar materials. As far as the aeronautic field is concerned, most structures are built combining very different materials and alloys, in order to match lightweight and structural performance requirements. In this framework, the application of fusion welding techniques, namely, tungsten inert gas or laser welding, is quite challenging due to the difference in physical properties, in particular the melting point, between adjoining materials. On the other hand, solid-state welding methods, such as the friction stir welding as well as linear friction welding processes, have already proved to be capable of manufacturing sound Al-Cu, Al-Ti, Al-SS, and Al-Mg joints, to cite but a few. Recently, promising results have also been obtained using hybrid methods. Considering the novelty of the topic, many relevant issues are still open, and many research groups are continuously publishing valuable results. The aim of this book is to finalize the latest contributions on this topic. 2021-02-11T11:34:50Z 2021-02-11T11:34:50Z 2020-01-07 09:08:26 2019 book 43221 9783039219551 9783039219544 https://directory.doabooks.org/handle/20.500.12854/45283 eng application/octet-stream Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/1888 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03921-955-1 10.3390/books978-3-03921-955-1 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783039219551 9783039219544 288 open access
spellingShingle TA1-2040
T1-995
n/a
microstructure
internal supports
aging treatment
Rare earth
cloud of particles
joining area
Al/steel dissimilar materials
welding-brazing
dual-beam laser welding
jet
tensile
aluminum-steel butt joint
crack growth path
spooling process tape
lobe curve
dissimilar metal welded joint
electrical properties
filler metals
EBSD phase mapping
dissimilar materials welding
FSW
mechanical properties
dissimilar
tubular joints
optimal design
hardness
AISI 316L
welding window
fracture resistance
tensile resistance
dissimilar Ti6Al4V/AA6060 lap joint
arc assisted laser method
dissimilar metal welding
dissimilar joints
pulsed Nd:YAG laser
solid state welding
DP1000 steel
cross-section adjustment
fracture load
pulsed Nd:YAG laser beam welding
aluminum
interface
phase potential
dissimilar weld
failure mode
Ag-Cu-Zn
aluminum alloy
copper
intermetallic compounds
electromagnetic pulse welding
laser beam welding
ageing
dissimilar metals
steel/aluminum joint
side-by-side configuration
friction stir spot welding
interfacial crack initiation
laser welding
spatial beam oscillation
magnetic pulse welding
surface activation
DeltaSpot welding
tensile properties
friction stir spot brazing
friction stir welding
steel/Al joint
1050 aluminum alloy
local strength mismatch
Inconel 625
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
Astarita, Antonello
Carlone, Pierpaolo
Dissimilar Metal Welding
title Dissimilar Metal Welding
title_full Dissimilar Metal Welding
title_fullStr Dissimilar Metal Welding
title_full_unstemmed Dissimilar Metal Welding
title_short Dissimilar Metal Welding
title_sort dissimilar metal welding
topic TA1-2040
T1-995
n/a
microstructure
internal supports
aging treatment
Rare earth
cloud of particles
joining area
Al/steel dissimilar materials
welding-brazing
dual-beam laser welding
jet
tensile
aluminum-steel butt joint
crack growth path
spooling process tape
lobe curve
dissimilar metal welded joint
electrical properties
filler metals
EBSD phase mapping
dissimilar materials welding
FSW
mechanical properties
dissimilar
tubular joints
optimal design
hardness
AISI 316L
welding window
fracture resistance
tensile resistance
dissimilar Ti6Al4V/AA6060 lap joint
arc assisted laser method
dissimilar metal welding
dissimilar joints
pulsed Nd:YAG laser
solid state welding
DP1000 steel
cross-section adjustment
fracture load
pulsed Nd:YAG laser beam welding
aluminum
interface
phase potential
dissimilar weld
failure mode
Ag-Cu-Zn
aluminum alloy
copper
intermetallic compounds
electromagnetic pulse welding
laser beam welding
ageing
dissimilar metals
steel/aluminum joint
side-by-side configuration
friction stir spot welding
interfacial crack initiation
laser welding
spatial beam oscillation
magnetic pulse welding
surface activation
DeltaSpot welding
tensile properties
friction stir spot brazing
friction stir welding
steel/Al joint
1050 aluminum alloy
local strength mismatch
Inconel 625
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
topic_facet TA1-2040
T1-995
n/a
microstructure
internal supports
aging treatment
Rare earth
cloud of particles
joining area
Al/steel dissimilar materials
welding-brazing
dual-beam laser welding
jet
tensile
aluminum-steel butt joint
crack growth path
spooling process tape
lobe curve
dissimilar metal welded joint
electrical properties
filler metals
EBSD phase mapping
dissimilar materials welding
FSW
mechanical properties
dissimilar
tubular joints
optimal design
hardness
AISI 316L
welding window
fracture resistance
tensile resistance
dissimilar Ti6Al4V/AA6060 lap joint
arc assisted laser method
dissimilar metal welding
dissimilar joints
pulsed Nd:YAG laser
solid state welding
DP1000 steel
cross-section adjustment
fracture load
pulsed Nd:YAG laser beam welding
aluminum
interface
phase potential
dissimilar weld
failure mode
Ag-Cu-Zn
aluminum alloy
copper
intermetallic compounds
electromagnetic pulse welding
laser beam welding
ageing
dissimilar metals
steel/aluminum joint
side-by-side configuration
friction stir spot welding
interfacial crack initiation
laser welding
spatial beam oscillation
magnetic pulse welding
surface activation
DeltaSpot welding
tensile properties
friction stir spot brazing
friction stir welding
steel/Al joint
1050 aluminum alloy
local strength mismatch
Inconel 625
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
url 43221
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