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Modelling the hygrothermal stress in curved glulam beams
Huazhang Zhou
, Enchun Zhu
,
Stefania Fortino
, Tomi Toratti
Harbin Institute of Technology
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
20
Citations (Scopus)
Overview
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Keyphrases
Glulam Beam
100%
Hygrothermal Stress
100%
Wood
66%
Glulam
66%
Temperature Distribution
33%
Humidity
33%
Heat Transfer
33%
Creep
33%
Temperature Gradient
33%
Moisture Gradient
33%
Stress Distribution
33%
Moisture Transfer
33%
Absolute Temperature
33%
Moisture Stress
33%
Induced Stress
33%
Finite Element Procedure
33%
Glulam Structures
33%
Hygro-thermal Deformation
33%
Stresses Perpendicular to the Grain
33%
Moisture Distribution
33%
Lamin
33%
Stacking Sequence
33%
Mechano-sorption
33%
Three Dimensional Finite Element
33%
INIS
moisture
100%
modeling
100%
beams
100%
wood
66%
design
66%
production
33%
deformation
33%
distribution
33%
cracking
33%
variations
33%
finite element method
33%
humidity
33%
creep
33%
investigations
33%
heat transfer
33%
temperature gradients
33%
Engineering
Glulam Beam
100%
Glulam
100%
Moisture Gradient
33%
Creep
33%
Relative Humidity
33%
Moisture Transfer
33%
Thermal Gradient
33%
Finite Element Analysis
33%
Temperature Gradients
33%
Material Science
Creep
100%
Finite Element Methods
100%