Studi Pengaruh Proses Kompaksi Terhadap Munculnya Retakan Pada Green Body Dan Hasil Sinter Magnet Barium-Strontium Hexaferrite

DAFTAR PUSTAKA

Agus Sukarto Wismogroho. 2013. Pengembangan Dilatometer Untuk Analisa
Karakteristik Sintering Magnet Berbasis Ferrite. Pusat Penelitian Fisika
(P2F) LIPI.
Amin, James, J. R. 1981. Techniques for The Utilization of Hexagonal Ferrites In
Radar Absorber. Part I. Broadband Planar Coating. Radio Electron
Engineers, 51, 209–218.
Broek, David. 1986. Elementary Engineering Fracture Mechanics. M. Nijhoff
(Dordrecht And Boston Ang Hingham). Mass, U.S.A
Chandra, H. 1993. Analisis Kegagalan Feed Tube Centrifuge. Thesis. ITB.
Bandung.
Cullity, B.D. 1972. Introduction to Magnetic Material.Canada: Addison-Wesley
Publishing Company Inc.
C.Y. Wu. 2005. Modelling The Mechanical Behaviour Of Pharmaceutical
Powders During Compaction. Powder Technology 152 (2005) 107117, Science Direct.
David, Myrna . 1999. Metalurgi Serbuk , Teori Dan Aplikasi. Jilid 1. Depok.
Dieter. 1987. Pengujian Kekerasan.
E. Paul DeGarmo. Materials and Processes inManufacturing. Ninth Edition, John
Wiley &Sons, Inc 2003.
G. Alderborn, C. Nystrom. Pharmaceutical Powder Compaction Technology.

Marcel Dekker Inc., New York, 1996.
German, R. M. 1991. Fundamental of Sintering, Engineered Materials Handbook,
vol 4, Ceramic-Glasses, L. F Heather, W.D Nikki,ed. The Materials
Information Society.
German R.M. 1994.Powder Metallurgy Science, The Penylvania State University,
USA.
Harry. 2007. Karakteristik Laju Perambatan Retak Fatik dan Retak Korosi
TeganganSambungan Las Baja Tahan Karat Aisi 304 dan Baja Karbon
Rendah 400 yang Di-Flame Heatingdengan Pendinginan Air. Skripsi.
Jurusan Teknik Mesin FT UNS.
Idayanti, N dan Dedi. 2002. Pembuatan Magnet Permanen Ferit untuk Flow

106
Universitas Sumatera Utara

meter.
Jurnal Fisika HFI Vol.A5 No.0528. Tangerang: Himpunan Fisika
Indonesia.
Jasim, K Mohammed. Simulation Of Cold Die Compaction Alumina Powder.
Trends In Mechanical Engineering& Technology, Vol 1, Issue 1,

February, 2011, Pages 1-21.
J.T. Carstensen, J.M. Geoffroy, C. Dellamonica. Compression Characteristics Of
Binary Mixtures, Powder Technology 62 (1990) 119 – 124.
K. Kawakita, K.H. Ludde. Some Considerations On Powder Compres-Sion
Equations, Powder Technology 4. (1970/71) 61 – 68.
Klar, Enhard. 1983. Powder Metallurgy Application, Advantages And Limitation.
Ohio : american society for metals.
Masanori, K. 2000. Fracture Mechanics. Science University of Technology.
Tokyo, Japan.
McEntire B. J. dan Norton, 1991. Powder Compaction Processes Dry
Pressing,Engineered Materials Handbook Ceramics and Glassses. ASM
International, USA.
Moulson A.J. and J.M. Herbert. 1985. Electroceramics: Materials, Properties
andApplications,Chapman and Hall, London-New York.
R.W. Heckel. Density Pressure Relationship in Powder Compaction. Transactions
of the Metallurgical Society of AIME 221 (1961) 671 – 675.
Trisna. 2012. Perambatan Retak(Crack Propagation) Tap Bolt Unc-Oil Coated
Astm 325. Jurnal Teknik Mesin Vol. 2, No.1, oktober 2012 : 20-25.
Van Vlack, L. H. 1989. Ilmu dan Teknologi Bahan-bahan Logam dan
BukanLogam, Edisi kelima, Erlangga, Jakarta.

Widayat, W. 2008. Kajian Sifat Mekanis Briket Tongkol Jagung yang dikompaksi
dengan Tekanan Rendah. Jurnal Ilmiah Popular dan Teknologi Terapan.
Vol. 6. No. 2. Hal.
905-914. Semarang: FT UNNES.
http://blog.uin-malang.ac.id/nurun/files/2013/03/METALURGI-SERBUK.pdf
Diakses tanggal 23 April 2014, Pukul : 10.00
http://electrochem.cwru.edu/edencycl/art-p04-metalpowder.htm
Diakses tanggal 23 April 2014, Pukul : 11.00
http://eprints.undip.ac.id/33854/6/1806_CHAPTER_II.pdf
Diakses tanggal 29 April 2014, Pukul : 15.00

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