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REFERENSI [1] Badan Pusat Statistik. (2010). Data Statistik Indonesia 2010. Jakarta: BPS [2] http://tni-au.mil.id/ [3] http://indoforce.tripod.com/ [4] Aksari, L. (2013). Pengaruh Penambahan Mg Terhadap Respons Pengerasan Penuaan Komposit Al-8Zn Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok: DTMM. [5] Hermawan, F. A. (2013). Studi Pengaruh Penambahan Cu terhadap Karakteristik Komposit Al-8Zn-4Mg Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok: DTMM. [6] Syarida, M. F. (2013). Pengaruh Penambahan Cu terhadap Respons Pengerasan Penuaan Komposit Al-8Zn-4Mg Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok: DTMM. [7] Rahmalina, D.(2012).Pengembangan Komposit Aluminium sebagai Material Armor dengan Keunggulan Kinerja Balistik. Disertasi. Depok: Fakultas Teknik Universitas Indonesia. [8] ASM international Comitte.(1990). ASM Metals Handbook : Properties and Selection: Nonferrous Alloys and Special-Purpose Materials (Vol 2). [9] Joseph (editor).(1993).ASM Specialty Handbook: Aluminium and Aluminium Alloys- Physical Metallurgy. [10] http://aluminium.matter.org.uk/ [11] Aalco. (2010). Alumunium Alloy Temper Designations [12] Adeosun, S. O., S. A. Balogun, L. O. Osoba, W. A. Ayoola, A. M. Oladoye.(2011). Effect of Cu and Zn Addition on the Mechanical Properties of Structural Aluminum Alloy. Journal of Modern Manufacturing Technology, 3, 103-110. [13] E., George Totten, D. Scott MacKenzie.(2003).Handbook of Aluminium: Effect of Alloying Addition. New York: Marcel Dekker,Inc [14] Sigit, S.R. Skripsi: Pengaruh Pengerasan Penuaan dan Pencanaian Terhadap Karakteristik Komposit Al7SiMgZn berpenguat partikulat SiC 5 wt.% dengan variasi kandungan Mg hasil proses squeeze casting. 2012. Depok: Universitas Indonesia. [15] Li, X.M., M.J. Starink.(2001). The Effect of Compositional Variations on the Characteristics of Coarse Intermetallic Particles in Overaged 7xxx Al Alloys. Material Science Technology, 17, 1324-1328.

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Transcript of Referensi

Page 1: Referensi

REFERENSI

[1] Badan Pusat Statistik. (2010). Data Statistik Indonesia 2010. Jakarta: BPS

[2] http://tni-au.mil.id/

[3] http://indoforce.tripod.com/

[4] Aksari, L. (2013). Pengaruh Penambahan Mg Terhadap Respons Pengerasan PenuaanKomposit Al-8Zn Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok: DTMM.

[5] Hermawan, F. A. (2013). Studi Pengaruh Penambahan Cu terhadap Karakteristik KompositAl-8Zn-4Mg Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok: DTMM.

[6] Syarida, M. F. (2013). Pengaruh Penambahan Cu terhadap Respons Pengerasan PenuaanKomposit Al-8Zn-4Mg Berpenguat SiC Hasil Squeeze Casting untuk Aplikasi Balistik. Depok:DTMM.

[7] Rahmalina, D.(2012).Pengembangan Komposit Aluminium sebagai Material Armor denganKeunggulan Kinerja Balistik. Disertasi. Depok: Fakultas Teknik Universitas Indonesia.

[8] ASM international Comitte.(1990). ASM Metals Handbook : Properties and Selection:Nonferrous Alloys and Special-Purpose Materials (Vol 2).

[9] Joseph (editor).(1993).ASM Specialty Handbook: Aluminium and Aluminium Alloys-Physical Metallurgy.[10] http://aluminium.matter.org.uk/

[11] Aalco. (2010). Alumunium Alloy Temper Designations

[12] Adeosun, S. O., S. A. Balogun, L. O. Osoba, W. A. Ayoola, A. M. Oladoye.(2011). Effect ofCu and Zn Addition on the Mechanical Properties of Structural Aluminum Alloy. Journal ofModern Manufacturing Technology, 3, 103-110.

[13] E., George Totten, D. Scott MacKenzie.(2003).Handbook of Aluminium: Effect of AlloyingAddition. New York: Marcel Dekker,Inc

[14] Sigit, S.R. Skripsi: Pengaruh Pengerasan Penuaan dan Pencanaian Terhadap KarakteristikKomposit Al–7Si–Mg–Zn berpenguat partikulat SiC 5 wt.% dengan variasi kandungan Mg hasilproses squeeze casting. 2012. Depok: Universitas Indonesia.

[15] Li, X.M., M.J. Starink.(2001). The Effect of Compositional Variations on the Characteristicsof Coarse Intermetallic Particles in Overaged 7xxx Al Alloys. Material Science Technology, 17,1324-1328.

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[16] Abdezadeh, Hossein., Mohammad Amin Baghchesar.(2013). Investigation on MechanicalProperties and Fracture Behavior of A356 Aluminum Alloy Based ZrO2 Particle ReinforcedMetal-Matrix Composites. Ceramic International, 39, 2045-2050.

[17] Hemanth, Joel.(2009). Development and Property Evaluation of Aluminum alloy Reinforcedwith nano-ZrO2 Metal Matrix Composites (NMMCs). Materials Science and Engineering A, 507,110–113.

[18] Khorramie, S. A., M. A. Baghchesara, D. P. Gohari. (2013). Fabrication of aluminummatrix composites reinforced with Al2ZrO5 nano particulates synthesized by sol−gel auto-combustion method. Trans. Nonferrous Met. Soc. China 23, 1556-1562

[19] ASM International Comitte.(1988). ASM Metals Handbook: Casting (Vol.15). Ohio, USA:Author.

[20] http://www.keytometals.com/

[21] Yang, J. L.(2007).The Effect of Solidification Time in Squeeze Casting of

[22] Fan, C.H.(2010). Effects of the casting temperature on microstructure and mechanicalproperties of the squeeze-cast Al–Zn–Mg–Cu alloy. Journal of Alloy and Compounds, 504,L42-L45.

[23] Geng, L., S. Ochiai, Lian Gao, Jin Sung, Z.Q. Sun.(1997). Fabrication of NanocrystallineZrO2 Particle Reinforced Aluminium Alloy Composite by Squeeze Casting Route. ScriptaMaterialia, 38, 551-557.

[24]NIJ. NIJ Standard -Ballistic Resistant Protective Materials. 1985. Washington: NationalInstitute of Justice. Aluminium and Zinc Alloys. Journal of Materials Processing Technology,192–193, 114–120

[25] Rahmalina, D., Sofyan, B.T., Suharno, B., & Siradj, E.S. Pengaruh Penambahan Unsur Znterhadap Karakteristik Balistik Komposit Matriks Al7Si6Mg Berpenguat Silikon Karbida.Prosiding Annual Engineering Seminar 2012. Yogyakarta: Fakultas Teknik UGM. pp. A88-A92.

[26] Demir, Teyfik., Ubeyli, Mustafa., Yildirim, R. Orhan.(2008) Investigation on the BallisticImpact Behavior of Various Alloys against 7.62 mm Armor Piercing Projectile. Material andDesign, 29, 2009-2016.