Research Article

Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior

Volume: 33 Number: 1 March 1, 2020
EN

Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior

Abstract

Multifunctional composite materials are recently drawing attention in many field including automotive, aeronautic and transport. The primary goal of this work is to propose low-cost and lightweight material for the automotive industry. In this study, recycled rubber-based composites were developed by using low cost manufacturing methods. At the beginning, recycled rubbers were devulcanized by microwaves to improve the bounding quality with the epoxy. Then, fine particles of recycled rubbers and solid epoxy were mixed together. After incorporating and rigorously distributing various contents of graphene nanoplatelets (GnPs), silica and γ-alumina particles in the matrix, hot compaction was used to manufacture the composites. As the second objective of this study, effect of reinforcement 5-10-15 wt. % of silica, and various contents of GnPs and γ-alumina particles on toughening was examined. In this regard, notched specimens were used to determine critical stress intensity factor and critical strain energy release rate. Fracture toughness showed some fluctuations by the incremental quantity of the reinforcements. Moreover, flexural strength and elasticity modulus were calculated by means of bending tests (three-point, 3PB). Positive effects of reinforcements on elasticity modulus were observed by 3PB tests. In addition, Charpy impact tests were done to assess energy absorbing capacity of the composites. To check the dispersion quality and to identify toughening mechanisms, scanning electronic microscopy was used. The main toughening mechanisms in these composites were identified as crack pinning, crack deflection shear band formation as well as. Finally, wear resistance of the specimens was assessed by macro-scratch tests. 

Keywords

Supporting Institution

Supmeca Paris

Project Number

Theses 0021

Thanks

We acknowledge the financial support of Supmeca - ISMEP Research Grant Theses 0021.

References

  1. Reference1 May, C., “Epoxy Resins: Chemistry and Technology”, 2 nd ed., CRC Press, London, 46-48, (2018).
  2. Reference2 Branch, M., “Preparation of nano-scale α-Al2O3 powder by the sol-gel method”, Ceramics–Silikáty, 55: 378–383, (2011).
  3. Reference3 Zhang, Z. and Lei, H., “Preparation of α-alumina/polymethacrylic acid composite abrasive and its CMP performance on glass substrate”, Microelectronic Engineering, 85: 714–720, (2008).
  4. Reference4 Geim, A. K. and Novoselov, K. S., “The rise of graphene”, Nature materials, 6: 183–191, (2007).
  5. Reference5 Balandin, A. A., Ghosh, S., Bao, W., Calizo, I., Teweldebrhan, D., Miao, F., and Lau, C. N., “Superior thermal conductivity of single-layer graphene”, Nano letters, 8: 902–907, (2008).
  6. Reference6 Scarpa, F., Adhikari, S. and Phani, A.S., “Effective elastic mechanical properties of single layer graphene sheets”, Nanotechnology, 20(6): 65709, (2009).
  7. Reference7 Wichmann, M.H.G., Schulte, K. and Wagner, H.D., “On nanocomposite toughness”, Composites Science and Technology, 68: 329–331, (2008).
  8. Reference8 Liang, Y.L. and Pearson, R.A., “Toughening mechanisms in epoxy–silica nanocomposites (ESNs)”, Polymer, 50: 4895–4905, (2009).

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

March 1, 2020

Submission Date

July 2, 2019

Acceptance Date

September 11, 2019

Published in Issue

Year 2020 Volume: 33 Number: 1

APA
İrez, A. B., & Bayraktar, E. (2020). Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior. Gazi University Journal of Science, 33(1), 188-199. https://doi.org/10.35378/gujs.585446
AMA
1.İrez AB, Bayraktar E. Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior. Gazi University Journal of Science. 2020;33(1):188-199. doi:10.35378/gujs.585446
Chicago
İrez, Alaeddin Burak, and Emin Bayraktar. 2020. “Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior”. Gazi University Journal of Science 33 (1): 188-99. https://doi.org/10.35378/gujs.585446.
EndNote
İrez AB, Bayraktar E (March 1, 2020) Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior. Gazi University Journal of Science 33 1 188–199.
IEEE
[1]A. B. İrez and E. Bayraktar, “Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior”, Gazi University Journal of Science, vol. 33, no. 1, pp. 188–199, Mar. 2020, doi: 10.35378/gujs.585446.
ISNAD
İrez, Alaeddin Burak - Bayraktar, Emin. “Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior”. Gazi University Journal of Science 33/1 (March 1, 2020): 188-199. https://doi.org/10.35378/gujs.585446.
JAMA
1.İrez AB, Bayraktar E. Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior. Gazi University Journal of Science. 2020;33:188–199.
MLA
İrez, Alaeddin Burak, and Emin Bayraktar. “Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior”. Gazi University Journal of Science, vol. 33, no. 1, Mar. 2020, pp. 188-99, doi:10.35378/gujs.585446.
Vancouver
1.Alaeddin Burak İrez, Emin Bayraktar. Design of Epoxy Modified Recycled Rubber-Based Composites: Effects of Different Contents of Nano-Silica, Alumina and Graphene Nanoplatelets Modification on the Toughening Behavior. Gazi University Journal of Science. 2020 Mar. 1;33(1):188-99. doi:10.35378/gujs.585446

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