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Stainless steel also offers improved fire resistance, although this is rarely a reason for choosing the material in structural applications.
Concrete however is commonly treated as a homogeneous material in structural designs for the calculation of stress and strain.
Steel fibered high-strength concrete (SFHSC) became in the recent decades a very popular material in structural engineering.
Timber is a widely used composite material in structural load-bearing applications because of its good mechanical properties.
Therefore, the inclusion of wood-based material in structural elements may significantly contribute to reduce the environmental impacts and the LCC of the construction sector.
Steel fibre reinforced concrete (SFRC) became in the recent decades a very popular and attractive material in structural engineering because of its good mechanical performance.
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Here we review recent progress in thickness and stacking engineering for TMD materials in structural, optical and electronic properties.
We propose two fractional-order models for uniaxial large strains and visco-elasto-plastic behavior of materials in structural analysis.
Using very heterogeneous materials in structural parts submitted to cyclic loadings, this paper presents an elasto-plastic micromechanical model.
Thus, knowledge of stress distributions in anisotropic materials is very important for proper use of these new high-performance materials in structural applications.
Therefore, knowledge of stress distributions in anisotropic materials is very important for proper use of these new high-performance materials in structural applications.
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