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Applications of Crystal Plasticity in Forming Technologies
Applications of Crystal Plasticity in Forming Technologies
Autore Prahl Ulrich
Pubbl/distr/stampa Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica 1 electronic resource (242 p.)
Soggetto topico Technology: general issues
Chemical engineering
Soggetto non controllato crystal plasticity
twinning
detwinning
dislocation
X-ray diffraction
SEM-DIC
Magnesium
plastic crystals
Raman spectroscopy
low temperature
high-pressure
L-Leucinium hydrogen maleate
plasticity
bending crystal
damage mechanics
numerical simulation
local deformation behavior
in situ tensile test
VEDDAC
DAMASK
digital image correlation
non-metallic inclusions
discrete dislocation dynamics
finite element method
multiscale model
size effects
magnesium alloy
slip transfer
crystallographic misorientation
ductility
multilevel models
dynamic recrystallization
grain shape and grain size
defect and grain structure evolution
representative volume element
least square method
alternative error method
dual-phase steel
grain boundary
characteristics
electron microscopy
cubic quasicrystal piezoelectric materials
crack
screw dislocation
complex variable function method
aluminum wires
overhead power transmission lines
XRD
EBSD
densitometry
elastoplastic properties
density
near-surface layer
solder joints
lead-free
reliability
creep
fatigue
ISBN 3-0365-5734-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910637795303321
Prahl Ulrich  
Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Chemomechanische Modellierung der Wärmebehandlung von Stählen mit der Phasenfeldmethode
Chemomechanische Modellierung der Wärmebehandlung von Stählen mit der Phasenfeldmethode
Autore Schoof Ephraim
Pubbl/distr/stampa Karlsruhe, : KIT Scientific Publishing, 2021
Descrizione fisica 1 electronic resource (266 p.)
Collana Schriftenreihe des Instituts für Angewandte Materialien, Karlsruher Institut für Technologie
Soggetto topico Mechanical engineering & materials
Soggetto non controllato Phasenfeldmethode
Dualphasenstahl
Wärmebehandlung
Modellierung
phase field
dual-phase steel
modeling
heat treatment
ISBN 1000123341
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ger
Record Nr. UNINA-9910493737903321
Schoof Ephraim  
Karlsruhe, : KIT Scientific Publishing, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Entropy Based Fatigue, Fracture, Failure Prediction and Structural Health Monitoring
Entropy Based Fatigue, Fracture, Failure Prediction and Structural Health Monitoring
Autore Basaran Cemal
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 electronic resource (238 p.)
Soggetto topico History of engineering & technology
Soggetto non controllato fatigue
system failure
degradation analysis
entropy generation
stress strain
plastic strain
thermodynamics
health monitoring
copula entropy
measure
dependence
multiple degradation processes
physics of failure
prognosis and health management
entropy as damage
acoustic emission
information entropy
thermodynamic entropy
Jeffreys divergence
MaxEnt distributions
fatigue damage
low-cycle fatigue
satellite
dynamic health evaluation
fuzzy reasoning
entropy increase rate
creep strain
damage mechanics
metallic material
mechanothermodynamics
tribo-fatigue entropy
wear-fatigue damage
stress-strain state
limiting state
damage state
dangerous volume
interaction
irreversible damage
degradation-entropy generation theorem
dual-phase steel
fatigue crack growth rate
spectrum loading
entropy
unified mechanics
Ti-6Al-4V
medium entropy alloy
deformation twinning
dislocation slip
surface nano-crystallization
shot peening
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557124703321
Basaran Cemal  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Science, Characterization and Technology of Joining and Welding
Science, Characterization and Technology of Joining and Welding
Autore Haghshenas Meysam
Pubbl/distr/stampa MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica 1 electronic resource (251 p.)
Soggetto non controllato microstructure
phased array ultrasonic
thermophysical property
FRP
simulation
eutectoid
tint etching
TAN alloy
dissimilar material joining
thermal compression bonding
HAZ cracking
welding thermal cycles
IN738 superalloy
carbide dissolution
solder
friction bit joining
weld bonding
interfacial microstructure
adhesive thermos-mechanical property
API 5L X80 steel
scarf joint
thermal spraying
pores
Cr-Mo steel
welding
hot pressing
local brittle zone
electrical properties
Ti2AlNb alloy
tool pin profiles
adhesive bonding
mechanical properties
carbon fiber-reinforced polymer
surface structuring
m23c6
Zn-coated low carbon microalloyed steels
flux-less soldering
dissimilar joints
energy-input
medium thick plate model
design of experiments
oxide layer
mechanical interlocking
rotary friction-welding
22MnB5
ultrasonic bonding
titanium
anisotropy
coupled arc
heat-affected zone
aluminum
plasma-TIG
joint mechanical properties
hybrid joining
microconstituent
dual-phase steel
high-crystalline content zirconia
flex-on-board assembly
active monomers
butt joint
copper
clad filler foil
SA213-T23
arc profile
numerical simulation
tailor welded blanks
ceramics
vacuum brazing
coating
longitudinal wave
direct diffusion bonding
metallurgy
pressure distribution
flow stress
SnBi58 solder joint morphology
adhesion
dissimilar weldments
laser welding
distributed point heat sources model
mechanical strength
taguchi design
bonding strength
friction stir welding
ISBN 3-03928-998-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910404080103321
Haghshenas Meysam  
MDPI - Multidisciplinary Digital Publishing Institute, 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui