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Hasil Pencarian

Ditemukan 3224 dokumen yang sesuai dengan query
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Pearson, T. F.
Cleveland: The Chemical Rubber, 1968
669.1 PEA t (1)
Buku Teks SO  Universitas Indonesia Library
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Smith, William F.
New York: McGraw-Hill, 1981
620.16 Smi s
Buku Teks  Universitas Indonesia Library
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Brooks, Charlie R.
Ohio: American Society for Metals, c1995
620.18 Bro h
Buku Teks  Universitas Indonesia Library
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Ohio: ASM International, 1988
669.1 HIG
Buku Teks SO  Universitas Indonesia Library
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Lipnitsky, A.
Moscow: Peace Publishers, [date of publication not identified]
620.17 LIP m
Buku Teks SO  Universitas Indonesia Library
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Nanang Sudrajat
"Telah dilakukan fabrikasi alloy hasil rekayasa fasa magnetik dengan cara substitusi parsial atom praseodymium (Pr) oleh atom dysprosium (Dy) pada fasa magnetik utama Pr2Fe14B sehingga membentuk fasa subsitusi (Pr,Dy)2Fe14B untuk meningkatkan nilai koersivitas intrinsiknya (JHc). Pada kegiatan penelitian ini telah dilakukan fabrikasi alloy magnet permanen komposisi (Pr15-xDyx)Fe77B8 dimana nilai x divariasi x = 0,1,2 dan 3 (wt.%) melalui proses peleburan menggunakan alat arc-melting. Ingot hasil peleburan dikapsulasi menggunakan tabung kuarsa dengan solusi argon melalui proses vacuum sealing system dengan tingkat kevacuuman 4x10-5 mBar dan tekanan argon 0,21 mBar. Ingot dalam kapsul kuarsa dianil pada temperature 9000C selama 24 jam. Ingot hasil anil dihaluskan menggunakan disk-mill dalam waktu singkat sekitar 15 detik dilanjutkan dengan penghalusan menggunakan planetary ball mill dengan variasi waktu 8,10,12 dan 15 jam dalam kondisi basah menggunakan toluene untuk meminimalkan terjadinya oksidasi. Hasil pengujian karakteristik intrinsik terhadap ingot alloy (Pr15-xDyx)Fe77B8 dengan variasi x=0,1,2,3 menggunakan alat permagraph berupa BH-Loop menunjukkan hasil terbaik adalah yang dimilling 10 jam dan menunjukkan setiap penambahan Dy dapat meningkatkan nilai koersivitas jHc. Sampel magnet dengan komposisi x=0,1,2,3 memiliki nilai JHc masing-masing 140, 210, 270 dan 370 (kA/m), nilai magnetisasi remanen Mr = 0,27, 0,33, 0,32 dan 0,33 Tesla dan nilai produk energi maksimum (BH)maks masing-masing sebesar 35,81, 54,11, 89,13, dan 119,37 kJ/m3. Disimpulkan bahwa subsitusi Dy terhadap Pr dalam alloy (Pr15-xDyx)Fe77B8 meningkatkan nilai koersivitas sampel magnet tepat digunakan untuk pembuatan magnet permanen koersivitas tinggi.

Alloys have been fabricated by partial substitution of praseodymium (Pr) atom with dysprosium (Dy) in the main magnetic phase Pr2Fe14B to form Dy substituted Pr2Fe14B phase to increase the intrinsic coercivity (JHc). In this study, alloys (Pr15-xDyx)Fe77B8 of x = 0.1,2 and 3 (wt.%) compositions were fabricated through the arc-melting process. The ingot was encapsulated using a quartz tube through a vacuum sealing off system with a vacuum level of 4x10-5 mBar and an argon gas pressure of 0.21 mBar. The encapsulated ingot was annealed at a temperature of 900 0C for 24 hours. The annealed ingot was disk-milled for a short period of time about 15 seconds, followed by mechanical milling using a planetary ball mill for 8,10,12 and 15 hours in wet conditions using toluene to minimize the oxidation. Magnetic properties of samples, which evaluated by Permagraph showed that the best results were obtained from samples made of powder materials after milling for 10 hours. It is found that the addition of Dy increased the coercivity of magnet samples. The coercivity of sample with x = 0,1,2,3 was 140, 210, 270 and 370 kA/m respectyivelly. The respective remanence Mr of samples was 0.27, 0.33, 0.32 and 0.33 Te and the maximum energy product (BH)max was 35.81, 54.11, 89.13, and 119, 37 kJ/m3. It is concluded that the substitution of Dy for Pr in (Pr15-xDyx)Fe77B8 alloys is effective to increase the coercivity lead to high coercivity permanent magnets"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2021
T-pdf
UI - Tesis Membership  Universitas Indonesia Library
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Mondolfo, L.F.
London: Butterworth, 1976
669.3 MON a
Buku Teks SO  Universitas Indonesia Library
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Kaufman, J. Gilbert
"The book is intended to be a handbook, a general reference, and a textbook. It contains the background educational materials on parametric analyses, extensive data, and previously unpublished master high-temperature curves for wrought and cast aluminum alloys.
ASM International has previously published extensive numeric factual data on the high-temperature tensile and creep properties of aluminum alloys in the book Properties of Aluminum Alloys: Tensile, Creep, and Fatigue Data at High and Low Temperatures. In addition to interest in the properties themselves, there is a great amount of interest in how these properties are analyzed to provide estimates of long-time service performance. The latter analysis makes use of parametric time-temperature relationships based upon rate-process theory, enabling the user to combine all time-temperature exposure curves into one master curve useful for extrapolation as well as interpolation. The purpose of this book to explain and illustrate such analytical tools, and to provide a broad range of illustrative examples based upon data from the previous publication, plus much previously unpublished data from Alcoa Laboratories.
The theory of and procedures for the development of master parametric relationships for high-temperature creep and stress rupture data for aluminum alloys are based upon rate-process theory. The advantages and limitations of several such analyses will be discussed. Previously unpublished master curves will be provided for a number of aluminum alloys, including wrought alloys 1100, 2024, 3003, 3004, 5050, 5052, 5154, 5454, 5456, 5083,and 6061, plus several castings alloys, including 224.0, 249.0, C355.0, and 357.0."
Materials Park, OH: ASM International, 2008
e20442172
eBooks  Universitas Indonesia Library
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Brooks, Charlie R.
Metals Park, Ohio: American Society for Metals, 1995
669 BRO h
Buku Teks SO  Universitas Indonesia Library
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Brooks, Charlie R.
New York: McGraw-Hill, 1979
672.36 BRO h
Buku Teks SO  Universitas Indonesia Library
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