Spruce and teak wood as anisotropic materials have complex behavior, particularly in the relationship between strain-rate and strength. High strain-rate compression tests between 590 s-1 and 3300 s-1 were carried out using two types of split Hopkinson pressure bar (SPHB) in order to measure the behavior of the wood along three principal axes with respect to fiber direction and growth rings. Numerical simulation using finite element software of the wood materials under high strain rates was performed and showed results with only a difference of 10% to the experimental results. The strain rate affects the strength of materials. In this case, it follows the power function, which means the higher the strain rate, the stronger the material
The present work aims to improve the definition of the constitutive laws for the wood structure at d...
Le bois est un matériau cellulaire naturel et excellent absorbeur d’énergie. Employé au sein de stru...
The mechanical properties define the behaviour of the timber under external loads, resulting directl...
Spruce and teak wood as anisotropic materials have complex behavior, particularly in the relationshi...
Strain rate significantly affects the strength of a material. The Split-Hopkinson Pressure Bar (SHPB...
This paper focuses on obtaining a high-strain compressive response of various wood-based biocomposit...
Understanding the high-strain rate compressive behavior and related energy absorption performances o...
A dynamic elastoplastic compression model of Norway spruce for virtual computer optimization of mech...
An experimental investigation of the mechanical properties of balsa wood under quasi-static and dyna...
The report presents the dynamic test results for wood. Compression tests were done according to Kols...
The following state-of-the-art report summarizes important work done in wood science concerning inte...
This paper reports on the fracture behavior of a hard wood known as Selanga Batu (Shorea spp) with d...
This paper reports on the fracture behavior of a hard wood known as Selanga Batu (Shorea spp) with d...
Specimens of four species with different cellular structures (white spruce, jack pine, white ash, an...
The present work aims to improve the definition of the constitutive laws for the wood structure at d...
Le bois est un matériau cellulaire naturel et excellent absorbeur d’énergie. Employé au sein de stru...
The mechanical properties define the behaviour of the timber under external loads, resulting directl...
Spruce and teak wood as anisotropic materials have complex behavior, particularly in the relationshi...
Strain rate significantly affects the strength of a material. The Split-Hopkinson Pressure Bar (SHPB...
This paper focuses on obtaining a high-strain compressive response of various wood-based biocomposit...
Understanding the high-strain rate compressive behavior and related energy absorption performances o...
A dynamic elastoplastic compression model of Norway spruce for virtual computer optimization of mech...
An experimental investigation of the mechanical properties of balsa wood under quasi-static and dyna...
The report presents the dynamic test results for wood. Compression tests were done according to Kols...
The following state-of-the-art report summarizes important work done in wood science concerning inte...
This paper reports on the fracture behavior of a hard wood known as Selanga Batu (Shorea spp) with d...
This paper reports on the fracture behavior of a hard wood known as Selanga Batu (Shorea spp) with d...
Specimens of four species with different cellular structures (white spruce, jack pine, white ash, an...
The present work aims to improve the definition of the constitutive laws for the wood structure at d...
Le bois est un matériau cellulaire naturel et excellent absorbeur d’énergie. Employé au sein de stru...
The mechanical properties define the behaviour of the timber under external loads, resulting directl...