A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness (ePub)
A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness
(Sprache: Englisch)
Zinc Acrylate Epoxy nanocomposites were prepared using a Zinc Acrylate and a bifunctional deglycidyl ether of bisphenolA, and cured with a curing agent for AL2O3 and Clay nanofillers. The nanocomposites were processed by shear mixing at different nanofiller...
sofort als Download lieferbar
eBook (ePub)
Fr. 91.55
inkl. MwSt.
- Kreditkarte, Paypal, Rechnung
- Kostenloser tolino webreader
Produktdetails
Produktinformationen zu „A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness (ePub)“
Zinc Acrylate Epoxy nanocomposites were prepared using a Zinc Acrylate and a bifunctional deglycidyl ether of bisphenolA, and cured with a curing agent for AL2O3 and Clay nanofillers. The nanocomposites were processed by shear mixing at different nanofiller concentrations. The shear force was controlled by changing the revolutions per minute on a mechanical mixer.
The mechanical properties of composites such as tensile strength and deflection at break are also investigated. Tensile strength and Young's modulus also increased with increasing AL2O3 and Clay loading. The fracture toughness of the nanocomposites significantly increased with increasing nanofillers, suggesting a toughening effect for the nanoparticles.
Scanning electron microscopy and wide angle X-ray diffraction were employed to reveal the morphology of Zinc Acrylate epoxy nanocomposites. Scanning electron microscopy observations of the Zinc Acrylate epoxy nanocomposites suggested that shear yielding of the matrix, void and debonding of clay particles and Zinc Acrylate epoxy matrix are among the operative toughening mechanisms observed.
The mechanical properties of composites such as tensile strength and deflection at break are also investigated. Tensile strength and Young's modulus also increased with increasing AL2O3 and Clay loading. The fracture toughness of the nanocomposites significantly increased with increasing nanofillers, suggesting a toughening effect for the nanoparticles.
Scanning electron microscopy and wide angle X-ray diffraction were employed to reveal the morphology of Zinc Acrylate epoxy nanocomposites. Scanning electron microscopy observations of the Zinc Acrylate epoxy nanocomposites suggested that shear yielding of the matrix, void and debonding of clay particles and Zinc Acrylate epoxy matrix are among the operative toughening mechanisms observed.
Bibliographische Angaben
- Autoren: Salma Zamirian , Mohammad Reza Shirfath
- 2020, Englisch
- Verlag: Lulu.com
- ISBN-10: 1716722381
- ISBN-13: 9781716722387
- Erscheinungsdatum: 21.07.2020
Abhängig von Bildschirmgrösse und eingestellter Schriftgrösse kann die Seitenzahl auf Ihrem Lesegerät variieren.
eBook Informationen
- Dateiformat: ePub
- Grösse: 0.31 MB
- Ohne Kopierschutz
Sprache:
Englisch
Kommentar zu "A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness"
0 Gebrauchte Artikel zu „A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness“
Zustand | Preis | Porto | Zahlung | Verkäufer | Rating |
---|
Schreiben Sie einen Kommentar zu "A Comparative Study of Mechanical Properties of Zinc Acrylate Epoxy nanocomposites Reinforced by AL2O3 and Cloisite®30B and Their Mixture: Tensile Strength and Fracture Toughness".
Kommentar verfassen