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Analysis and simulation of kinetics of elasto-plastic weld failure in structures at cryogenic temperatures
by
Makarenko, L V
, Makarenko, I V
, Makhutov, N A
in
Cryogenic temperature
/ Deformation effects
/ Failure analysis
/ Failure mechanisms
/ Kinetics
/ Plastic deformation
/ Residual stress
/ Service life
/ Simulation
/ Steel structures
/ Survivability
/ Welded joints
2019
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Analysis and simulation of kinetics of elasto-plastic weld failure in structures at cryogenic temperatures
by
Makarenko, L V
, Makarenko, I V
, Makhutov, N A
in
Cryogenic temperature
/ Deformation effects
/ Failure analysis
/ Failure mechanisms
/ Kinetics
/ Plastic deformation
/ Residual stress
/ Service life
/ Simulation
/ Steel structures
/ Survivability
/ Welded joints
2019
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Do you wish to request the book?
Analysis and simulation of kinetics of elasto-plastic weld failure in structures at cryogenic temperatures
by
Makarenko, L V
, Makarenko, I V
, Makhutov, N A
in
Cryogenic temperature
/ Deformation effects
/ Failure analysis
/ Failure mechanisms
/ Kinetics
/ Plastic deformation
/ Residual stress
/ Service life
/ Simulation
/ Steel structures
/ Survivability
/ Welded joints
2019
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Analysis and simulation of kinetics of elasto-plastic weld failure in structures at cryogenic temperatures
Journal Article
Analysis and simulation of kinetics of elasto-plastic weld failure in structures at cryogenic temperatures
2019
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Overview
The article presents the results of solving one of the fundamental problems in the field of increasing strength, service life, survivability, reliability and safety of welded joints in critical structures. A model for simulation of elasto-plastic welds failure in steel structures at cryogenic temperatures was developed. It proposed clarifying calculation and experimental methods for analysis and simulation of failure mechanisms taking into account types of forming defects. In addition, effect of heating and cooling cycles, kinetics of elasto-plastic deformation as well as fields of residual stresses and strains were used to predict the results.
Publisher
IOP Publishing
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