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The results of the study also showed that fibre length had a notable influence on the post-fracture response of the material at large deformation regimes.
For both static and impact loading, the post-crack response of the material at large deformations is clearly improved by increasing the fibre content and, at the same fibre content, by increasing the fibre length.
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This can be seen as a parameter that affects the material at larger thicknesses.
This article considers a static problem of torsion of a cylinder composed of incompressible, nonlinear-elastic materials at large deformations.
This article presents a homogenization procedure to predict the effective shear response of heterogeneous materials at large deformation.
A new model is presented to describe the hardening behaviour of cell-forming crystalline materials at large strains.
Graphene, an atomically thin material with the theoretical surface area of 2600 m2 g−1, has great potential in the fields of catalysis, separation, and gas storage if properly assembled into functional 3D materials at large scale.
The material properties at large deformation as mechanical strength was found to be more sensitive to the temperature change than the mechanical modulus at small deformation.
This paper presents a constitutive wood model that accounts for both hardening associated with material densification at large compressive deformations and brittle failure modes.
Nanomaterials often have physical and chemical properties that are very different from the same materials at larger scales.
Oblique angle deposition (OAD) technique is an electron beam evaporation method, which has been used in the industry for fabricating one- or two-dimensional materials at large-scale production with relatively low cost.
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