Low Velocity Impact Behaviour of Composite Laminates Containing TiC and ZrC Nanoparticles in Resin System

Author:

Alabay Pelin1,Elaldi Faruk1

Affiliation:

1. University of Baskent

Abstract

Composite structures utilized in defence and aerospace applications might be subjected to impacts due to bird strike, tool dropping and bullet penetration. One of the approaches to this problem is to add nano tubes and nano particles to resin systems in order to improve bonding between fibres and matrix materials. Different nano-particles or nano-tubes of clays, alumina, silica, carbon and graphene have been analysed in composite systems in the literature so far because of the improved mechanical properties. In this study, the low velocity impact behaviour of the aramid fibre reinforced epoxy composite plates, containing two new nano-particles of TiC and ZrC which are not studied formerly, are searched experimentally. After the low velocity impact tests, it is concluded that plates containing titanium carbide nano-particles and zirconium nano-particles yielded 19 % and 4 % respectively less penetration in comparison with particle free plates. In other words, titanium carbide nano-particles contained plates showed more resistance against the impact by 19 % against to particle free plates. These results showed that TiC and ZrC nano particles might be also good contributors for the impact resistance of composite structure.

Publisher

Trans Tech Publications, Ltd.

Subject

General Chemical Engineering

Reference22 articles.

1. S. Nayak, R.K. Nayak and et al., Effect of nanofillers on low-velocity impact properties of synthetic and natural fibre reinforced polymer composites- a review, Advances in Materials and Processing Technologies, (2021).

2. Y. Huang, B. Karami, D. Shahsavari and A. Tounsi, Static stability analysis of carbon nanotube reinforced polymeric composite doubly curved micro‑shell panels, Archives of Civil and Mechanical Engineering, 21 (2021) 139.

3. R. Zerrouki, A. Karas, M. Zidour, A. A. Bousahla, A. Tounsi and et al, Effect of nonlinear FG-CNT distribution on mechanical properties of functionally graded nano composite beam, Structural Engineering and Mechanics, 78 ( 2) (2021) 117-124. DOI: org/10.12989/sem.2021.78.2.117.

4. F. Heidari, K. Taheri, M. Sheybani, M.J. Janghorban and A. Tounsi, On the mechanics of nano composites reinforced by wavy/defected/aggregated nanotubes, Steel and Composite Structures, 38, (2021) 533-545. DOI:org/10.12989/scs.2021.38.5.533.

5. E. Arshid, M. Khorasani, Z. Soleimani‑Javid, S. Amir, and A. Tounsi, Porosity-dependent vibration analysis of FG microplates embedded by polymeric nano composite patches considering hygrothermal effect via an innovative plate theory, Engineering with Computers, (2021). DOI:org/10.1007/s00366-021-01382-y.

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