Studi Pengembangan Komposit Al/Al2O3 Berpori dengan Space Holder Latex terhadap Sifat Mekanik dan Fisik

Authors

  • Gunawan Gunawan Jurusan Teknik Mesin Fakultas Teknik, Universitas Sriwijaya
  • reni sofyana Jurusan Teknik Mesin, Fakultas Teknik, Universitas Sriwijaya
  • amir arifin Jurusan Teknik Mesin, Fakultas Teknik, Universitas Sriwijaya

Keywords:

Aluminium Porous, Space Holder, SEM, TGA, XRD, Density and Porosity, Composite Material

Abstract

Composite materials are combinations of multiple or more ingredients that have different materials used for materials and materials that have pores produced from space holder material. This study aims to identify aluminum metal as aluminum metal (aluminum metal foam) to the mechanical properties and physical properties (density and porosity) with the same temperature and holding time. Fabrication method is powder metallurgy, with compacting of 100 kg/cm2 and using a sintering temperature of 5000C with a holding time of 2 hours. Tests and observations made were Thermo Graviemetric Analysis (TGA) to determine the process of decreasing space space holder, X-Ray Diffraction (XRD) to characterize crystalline phases formed, test Density, Scanning Electron Microscopy (SEM).

Downloads

Download data is not yet available.

References

ASM. Powder Metal Technologies and Applications (Volume 7). United States: ASM International. (1998).

ASM. Mechanical Testing and Evaluation (Volume 8). United States: ASM International. (2000).

ASM. Metallography and Microstructures (Volume 9). United States: ASM International. (2004).

ASM. Properties and Selection Irons,Steels, and High Performance Alloys (Volume 1). United States: ASM International. (2005).

Blackley, D. C. Polymer Latices Sciences and Technology. London: Chapman & Hall. (2013).

Capral Ltd. Caprals Little Green Book. Volume 4. Australia Capral's Ltd. (2013).

Gibson, R. F. Principles Of Composite Material Mechanics (J. J. Corrigan & E. Castellano Eds. International Edition ed.). New York McGraw-Hill Inc. (1994).

Gumilar, G. Pengaruh Volume Fraksi 5%, 7,5% dan 10% Alumina (Al2O3) Dengan Ukuran Partikel 140, 170 dan 200 Mesh Terhadap Sifat Mekanik Material Komposit Matriks Al-4,5% Cu-4%Mg. (2002).

Nugroho, A. W. Fabrikasi Alumunium Foam Menggunakan Metode Metalurgi Serbuk Dengan memanfaatkan Pupuk Urea (NH2)2CO) Sebagai Bahan Space Holder. Laporan Penenlitian Strategis, Program Studi Teknik Mesin, Universitas Muhammadiyah Yogyakarta. 11-12. (2013).

Nugroho, A. W. Pengembangan Material Porous Aluminium Menggunakan Teknik Metalurgi Serbuk Dengan Space Holder Paduan Pb-Sn, Jurusan Teknik Mesin, Universitas Muhammadiyah Yogyakarta. (2014).

Nugroho, G. E. Karakteristik Komposit Berpenguat Serat Tandan Kosong Kelapa Sawit Menggunakan NaOH Dengan Fraksi Volume 4%, 6%, dan 8%. Jurusan Teknik Mesin, Fakultas Sains dan Teknologi. Universitas Sanata Dharma. (2017).

Ramadhonal, S. Pembuatan Komposit Matriks Logam Berpenguat Keramik (Al/SiC) Dicampur Kayu Dengan Metode Metalurgi Serbuk. 47-48. (2010).

Suarsana, K. Efek Temperature Sintering pada Penambahan Penguat SiCw dan Al2O3 Partikel terhadap Karakteristik Aluminium Matrik Komposit. SENATEK 2015. (2015).

Suprapto, I. W. L. Efek Komposisi dan Perlakuan Sintering Pada Komposit Al/(SiCw+Al2O3) Terhadap Sifat fisik dan Keausan. METTEK, 3, 36-43. (2017).

Surdia, T. & SAITO, S. Pengetahuan Bahan Teknik, Jakarta: Pradnya Paramitha. (1999).

Totten, G. E. & Mackenzie, D. S. Handbook of Aluminium Voyume 1 Physical Metallurgy and Processes. YUnited States of America Marcel Dekker, Inc. (2003).

Totten, G. E. & Mackenzie, D. S. Handbook of Aluminium Voyume 2 Alloy Prodyuction and Materials Manyufactring. New York-Basel: Marcel Dekker, Inc. (2003).

Zhou, Z., Wang, Z., Zhao, L. & Shu, X. Uniaxial and biaxial failure behaviors of aluminum alloy foams. Composites Part B: Engineering, 61, 340-349. 2014.

Published

2022-03-01

How to Cite

Gunawan, G., sofyana, reni, & arifin, amir. (2022). Studi Pengembangan Komposit Al/Al2O3 Berpori dengan Space Holder Latex terhadap Sifat Mekanik dan Fisik. Jurnal Rekayasa Mesin, 22(1), 33–37. Retrieved from https://jrm.ejournal.unsri.ac.id/index.php/jrm/article/view/329