High Strength of Aluminium-Based Composites by Different Methods of Severe Plastic Deformation (SPD)

Author:

Pramono Agus1,Zulfia Anne2,Dhoska Klodian3,Suryana 1,Milandia Anistasia1,Zulaida Yeni Muriani1,Juniarsih Andinnie1

Affiliation:

1. University of Sultan Ageng Tirtayasa

2. University of Indonesia

3. Polytechnic University of Tirana

Abstract

Composite materials were applied to meet the demands of production efficiency on industrial because they offered the superior properties both of aspects on mechanical and physical properties were constantly being refined and developed with several methods. Composite technology with aluminum as a matrix as well as ceramic materials as reinforcement was very dependent on a result of the perfection of the manufacturing process on the matrix material and reinforcement was used. Aluminum currently still dominates as a matrix because of its ductility, while reinforcing materials that are widely used are ceramic elements such as silicon carbide (SiC) and alumina (Al2O3). Using of SiC/Al2O3 has been widely studied because of the remarkable improvement of the mechanical properties it produces. The addition of number of SiC particles to Al2O3 was able to significantly increase the hardness properties. In this study, a number of composite manufacturing methods were compared from the results of properties by accumulative press bonding (APB), accumulative roll bonding (ARB), and repetitive press roll forming (RPRF). The mechanical properties of RPRF results are known to produce better properties, especially mechanical properties. Mechanical properties were observed from tensile and hardness tests. The finer grain size is produced by increasing the compression cycle and increasing the mechanical properties when adding double reinforcement of the SiC/Al2O3, which causes the strength and hardness of the RPRF results to increase. Whereas other methods such as APB and ARB it is not compatible with composite materials, this proves that the RPRF method was very suitable for processing composite materials compared to APB and ARB methods.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference22 articles.

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2. Pramono A, Jamil A M and Milandia A. 2018 Aluminum-based Composites by Severe Plastic Deformation Process as New Methods of Manufacturing Technology. In: MATEC Web of Conferences, paper no. 04011, pp.1-9.

3. Daniel G. 2015 Composites Materials and Design and Applications. 3rd ed. Boca Raton, Florida: CRC Press. Taylor & Francis Group, p.3.

4. Ning H. 2012 Composites and Their Applications. InTech: Horoschenkoff A and Christner C (eds) Tech Prepress design team, Janeza Trdine, Rijeka, Croatia, pp.355-397.

5. Kamal K. 2017 Composite materials Processing Applications Characterization. Advanced Nano-engineering Materials Laboratory. Indian Institute of Technology Kanpur, pp.369-411.

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