An experimental investigation of the mechanical properties of balsa wood under quasi-static and dynamic conditions is presented. Cylindrical balsa wood specimens were compressed quasi-statically and dynamically along their three principal axes. Split Hopkinson Pressure Bar (SHPB) tests were carried out to determine the importance of the material strain-rate. Balsa wood is a relatively low strength material of about 1.5 MPa in the weakest direction, depending on density. Consequently, the SHPB tests were carried out using low mechanical impedance Polymethylmethacrylate pressure bars. Tests at high strain-rates resulted in an increase in both initial crushing and plateau stresses. Direct impact (DI) tests were performed to measure both the pr...
Understanding the high-strain rate compressive behavior and related energy absorption performances o...
International audienceThis paper describes an experimental device designed to determine the mechanic...
A dynamic elastoplastic compression model of Norway spruce for virtual computer optimization of mech...
Strain rate significantly affects the strength of a material. The Split-Hopkinson Pressure Bar (SHPB...
Mechanical response of a cellular sandwich core material, balsa wood, is investigated over its entir...
The present study deals with the compressive strengths of low density woods (balsa, redwood) and rub...
The following state-of-the-art report summarizes important work done in wood science concerning inte...
Balsa wood is a natural cellular material with excellent stiffness-to-weight and strength-to-weight ...
Spruce and teak wood as anisotropic materials have complex behavior, particularly in the relationshi...
The report presents the dynamic test results for wood. Compression tests were done according to Kols...
AbstractBalsa wood is a natural cellular material with excellent stiffness-to-weight and strength-to...
This article studied the effects of low-velocity impact on the failure stresses and stiffness using ...
Balsa wood has attained commercial importance because of its exceptional lightweight and its insulat...
Containers for the transportation of hazardous and radioactive materials incorporate redwood in impa...
Balsa wood is one of the preferred core materials in structural sandwich panels, in applications ran...
Understanding the high-strain rate compressive behavior and related energy absorption performances o...
International audienceThis paper describes an experimental device designed to determine the mechanic...
A dynamic elastoplastic compression model of Norway spruce for virtual computer optimization of mech...
Strain rate significantly affects the strength of a material. The Split-Hopkinson Pressure Bar (SHPB...
Mechanical response of a cellular sandwich core material, balsa wood, is investigated over its entir...
The present study deals with the compressive strengths of low density woods (balsa, redwood) and rub...
The following state-of-the-art report summarizes important work done in wood science concerning inte...
Balsa wood is a natural cellular material with excellent stiffness-to-weight and strength-to-weight ...
Spruce and teak wood as anisotropic materials have complex behavior, particularly in the relationshi...
The report presents the dynamic test results for wood. Compression tests were done according to Kols...
AbstractBalsa wood is a natural cellular material with excellent stiffness-to-weight and strength-to...
This article studied the effects of low-velocity impact on the failure stresses and stiffness using ...
Balsa wood has attained commercial importance because of its exceptional lightweight and its insulat...
Containers for the transportation of hazardous and radioactive materials incorporate redwood in impa...
Balsa wood is one of the preferred core materials in structural sandwich panels, in applications ran...
Understanding the high-strain rate compressive behavior and related energy absorption performances o...
International audienceThis paper describes an experimental device designed to determine the mechanic...
A dynamic elastoplastic compression model of Norway spruce for virtual computer optimization of mech...