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Advances in High-Performance Non-ferrous Materials.

Authors :
Yu, Hailiang
Liu, Zhilin
Cui, Xiaohui
Yu, Hailiang

Abstract

Summary: Nowadays, there is great pressure on energy conservation and emission reduction. In order to achieve these goals, weight reduction in manufacturing fields, such as the vehicle, marine, and aerospace industries, and microelectromechanical systems is the major trend. Although some structures and parts that require special properties and service conditions must use ferrous materials such as steels due to their superior thermal and wear resistance, there is a desperate need to replace these alloys with non-ferrous materials such as Al alloys, Mg alloys, Ti-based alloys, Cu alloys, and others in order to decrease the operational and maintenance costs. Recently, many new material processing techniques, i.e., irradiation, cryogenic rolling, wet chemical method, induction sintering, liquid/solid casting, heat treatment, electromagnetic hot forming, and five-axis flank milling, have been developed to enhance the performance of non-ferrous materials. Excellent work hardening, fracture toughness, mechanical properties, magnetic properties, and wear resistance could be realized depending on the appropriate application of these new technologies. This Special Issue covers these topics and focuses on the process-structure-properties relationships of high-performance non-ferrous materials.

Subjects

Subjects :
Technology: general issues
History of engineering & technology
high-purity nickel
cryorolling
annealing
grain growth
lamellar-structure grains
metals and alloys
3D printing
oxidation
in situ vanadium carbide
wear-resistant composite
heat treatment
phase transformation
mechanical properties
tribological behavior
creep
intermetallic
cast Cu-Sn
spinodal bronze
cast Cu-Sn-Ti
two-phase zone continuous casting
five-axis flank milling
spiral bevel gears
non-ferrous
CNC machining
tool path planning
7075-T6 aluminum alloy
electromagnetic forming
hot forming
numerical simulation
mechanical property
Ni-Co-Mn-In ribbons
Heusler alloys
EMR
transformation
Ti-5Al-5Mo-5V-1Cr-1Fe alloy
in situ observation
slip band
microcrack
fracture mechanism
Al-5Ti-0.2B
Al-3Ti-0.15C
7050 ingot
7050-T7651 plate
fracture toughness
grain size
CeO2 size
quenching experiment method
DSC
refining performance
strip asymmetrical rolling
mathematic models
percentage of cross-shear region
friction work
energy consumption
slab method
Cu/Al clad sheet
interlayer
annealing temperature
interfacial reaction
bonding strength
Al/steel bimetal
bonding
Eu
compound casting
EBSD
EPMA
Al-Cu-Li alloy
homogenization
microstructural evolution
quasi in situ
mixed rare earth
Al-Si-Cu alloy
microstructure
thermodynamic calculation
ODS-W
wet chemical method
Al2O3-reinforced
tungsten alloy plates
15%SiCp/2009 aluminum matrix composite
cryogenic treatment
thermoelectric power
aging behavior
tensile property
Cu-Ti-Cr-Mg alloy
cryogenic rolling
hardness
texture
twins
aluminum alloy
neutron irradiation
irradiation embrittlement
transmutation Si
n/a

Details

Language :
English
ISBN :
books978-3-0365-6653-5
9783036566528
9783036566535
ISBNs :
9783036566535, 9783036566528, and 9783036566535
Database :
Jio Institute Digital Library Catalog
Journal :
Advances in High-Performance Non-ferrous Materials
Notes :
004611, New Energy, Open Access star Unrestricted online access, Creative Commons https://creativecommons.org/licenses/by/4.0/ cc https://creativecommons.org/licenses/by/4.0/, English
Publication Type :
Book
Accession number :
jlc.oai.folio.org.fs00001072.22901653.b3fc.4856.a127.a146e07a9c97
Document Type :
Book; Electronic document