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Growing Science » Authors » S. Nemati

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Sort articles by: Volume | Date | Most Rates | Most Views | Reviews | Alphabet
1.

Fracture resistance of railway ballast rock under tensile and tear loads Pages 271-280 Right click to download the paper Download PDF

Authors: A. Bahmani, S. Nemati

DOI: 10.5267/j.esm.2021.3.003

Keywords: Edge-notched diametrically compressed disc (ENDC), Edge-notched disc bend (ENDB), Mode III fracture toughness, Ballast rock

Abstract:
The influence of loading type on tensile and tearing fracture resistance of ballast rock was assessed using edge-notched diametrically compressed disc (ENDC) and edge-notched disc bend (ENDB) test geometries. The geometry of these two specimens was similar; however, their loading type (i.e., three-point bend and diametral compressive) was different affecting the geometry factors. The obtained pure tensile fracture toughness (KIc) using the ENDB test was higher than the ENDC test. In contrast to tensile fracture toughness, the pure tearing fracture toughness (KIIIc) in the ENDC test was higher than the ENDB fracture test. The obtained experimental data were explained in terms of crack propagation path, since two distinct trajectories were observed for both configurations under tearing deformation.
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Journal: ESM | Year: 2021 | Volume: 9 | Issue: 3 | Views: 1717 | Reviews: 0

 
2.

Behavior of integrated connections between adjacent foam-filled modular sandwich panels Pages 361-370 Right click to download the paper Download PDF

Authors: P. Sharafi, S. Nemati, B. Samali, A. Bahmani, S. Khakpour

DOI: 10.5267/j.esm.2018.6.001

Keywords: Integrated connections, Sandwich panels, Foam filled panels, Rotational stiffness

Abstract:
Connections represent major challenges in the design of composite structures, mainly because they entail discontinuities in the geometry of the structure and material properties, and introduce high local stress concentrations. Despite some constructability complications, integrated connection could be a reliable solution. In this paper, the structural behaviour of an integrated connection for implementation between adjacent composite sandwich panels in rapid assembly buildings is studied. The integrated connection system consists of 3-D high density polyethylene (HDPE) skin faces, and cores of high-density polyurethane (PUR) foam integrated into the sandwich panels at the moment of their production. The study included experimental investigations regarding the mechanical and structural response of the connection under actual applied loads, and its torsional rigidity, rotational stiffness and behaviour under lateral loading is investigated. Using Finite Element modelling, the stress distribution and the mechanisms of failure are studied. The results show a good agreement between the numerical and experimental results.
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Journal: ESM | Year: 2018 | Volume: 6 | Issue: 4 | Views: 1806 | Reviews: 0

 
3.

Edgewise and flatwise compressive behaviour of foam-filled sandwich panels with 3-D high density polyethylene skins Pages 285-298 Right click to download the paper Download PDF

Authors: P. Sharafi, S. Nemati, B. Samali, A. Mousavi, S. Khakpour, Y. Aliabadizadeh

DOI: 10.5267/j.esm.2018.3.005

Keywords: Sandwich panel, Rapid assembly structures, Polyurethane foam-core, 3-D high density polyethylene skin, Flatwise compression test, Edgewise compression test

Abstract:
In this paper, the edgewise and flatwise compressive behaviour of an innovative sandwich panel, mainly developed for quick assembly of post-disaster housing as well as load bearing panels for pre-fabricated modular construction and semi-permanent buildings, is investigated experimentally and by finite element modelling. The panel is composed of two 3-D high-density polyethylene (HDPE) sheets as the skins, filled with high-density Polyurethane (PU) foam as the core. HDPE sheets manufactured with a studded surface considerably enhance the stress distribution and buckling performance of the sandwich panel. Material characterisation tests and flatwise compression and edgewise compression experiments were performed in accordance with ASTM standards to evaluate the compressive strength and the load-carrying behaviour of the sandwich panels. A finite element analysis and validation were also conducted to model the compressive behaviour of sandwich structures. Results demonstrate that the developed sandwich panel exhibits very good compressive performance.
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Journal: ESM | Year: 2018 | Volume: 6 | Issue: 3 | Views: 2324 | Reviews: 0

 
4.

Flexural and shear performance of an innovative foam-filled sandwich panel with 3-D high density polyethylene skins Pages 113-128 Right click to download the paper Download PDF

Authors: P. Sharafi, S. Nemati, B. Samali, A. Bahmani, S. Khakpour, Y. Aliabadizadeh

DOI: 10.5267/j.esm.2018.3.002

Keywords: Sandwich panel, Polyurethane foam core, 3-D high density polyethylene skin, First-order Shear Deformation Theory (FSDT)

Abstract:
In this paper, an innovative and efficient sandwich panel is proposed for the structural walls for quickly assembled post-disaster housing, as well as load bearing panels for pre-fabricated modular construction and semi-permanent buildings. This study focuses on the flexural and shear behavior of the innovative sandwich panels, which is composed of two 3-D high density polyethylene (HDPE) skins, and high-density Polyurethane (PU) foam core. An experimental study was carried out to validate the effectiveness of this panel for increasing the ultimate bending strength. A series of experimental tests were performed on medium-scale specimens to characterize their core shear behavior. Then, some supplementary tests were run to determine the panels’ flexural and shear stiffness. The numerical and experimental investigations show that the 3-D-HDPE sheets, manufactured with a studded surface; considerably enhance the pull-out and delamination strength. Good agreement has been observed between the numerical and experimental tests.
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Journal: ESM | Year: 2018 | Volume: 6 | Issue: 2 | Views: 2153 | Reviews: 0

 

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