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"This book describes the growing field of multi-criteria decision making (MCDM) as applied to materials selection in product design. Useful in academic and research contexts, as well as to practitioners in materials engineering and design, it aids readers in producing successful designs by improving the decision-making process in materials selection.
It is a constant challenge for designers, even when educated in the fundamentals of materials and mechanical engineering, to select the best materials to satisfy complex design problems. Current approaches to materials selection range from the use of intuition and experience to computer-based methods including electronic databases and search engines. Increasingly, MCDM methods are proving effective in materials selection for complex design problems. These methods supplement existing quantitative methods, such as selection charts, by allowing simultaneous consideration of design attributes, component configurations and types of material.
"
Oxford, UK: Butterworth-Heinemann, 2013
e20427373
eBooks  Universitas Indonesia Library
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Ashby, Mike
"Materials are the stuff of design. From the very beginning of human history, materials have been taken from the natural world and shaped, modified, and adapted for everything from primitive tools to modern electronics. This renowned book by noted materials engineering author Mike Ashby and industrial designer Kara Johnson explores the role of materials and materials processing in product design, with a particular emphasis on creating both desired aesthetics and functionality. The new edition features even more of the highly useful "materials profiles" that give critical design, processing, performance and applications criteria for each material in question. The reader will find information ranging from the generic and commercial names of each material, its physical and mechanical properties, its chemical properties, its common uses, how it is typically made and processed, and even its average price. And with improved photographs and drawings, the reader is taken even more closely to the way real design is done by real designers, selecting the optimum materials for a successful product."
Oxford, UK: Butterworth-Heinemann, 2014
e20427202
eBooks  Universitas Indonesia Library
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Callister, William D., Jr., 1940-
New Jersey: John Wiley & Sons, 2011
620.1 CAL m
Buku Teks  Universitas Indonesia Library
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Callister, William D., Jr., 1940-
""Callister and Rethwisch?s Fundamentals of Materials Science and Engineering, 4th Edition continues to take the integrated approach to the organization of topics. That is, one specific structure, characteristic, or property type at a time is discussed for all three basic material types -- metals, ceramics, and polymeric materials. This order of presentation allows for the early introduction of non-metals and supports the engineer?s role in choosing materials based upon their characteristics. Also discussed are new, cutting-edge materials. Using clear, concise terminology that is familiar to students, Fundamentals presents material at an appropriate level for both student comprehension and instructors who may not have a materials background"-- Provided by publisher."
Hoboken, NJ: Wiley, 2013
620.11 CAL f
Buku Teks  Universitas Indonesia Library
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Callister, William D., Jr., 1940-
New Jersey: John Wiley & Sons, 2015
620.1 CAL m
Buku Teks  Universitas Indonesia Library
cover
Tatu Mas`udah
"Komposit Al/SiCp coating telah dihasilkan dari gravity casting. Dengan partikel SiC dilapisi oleh lapisan metal oksida yang diperoleh dari proses electroless plating dalam larutan elektrolit HNO3, dengan konsentrasi magnesium (Mg) dalam larutan elektrolit tersebut bervariasi dari 0,002 sampai 0,012 mol dan konsentrasi aluminum (Al) dibuat tetap 0,018 mol. Partikel SiC coating tersebut, digunakan untuk membuat komposit (MMCs) dengan persen volume SiC bervariasi dari 2 sampai 20,5 vol%. Komposit aluminum yang dihasilkan, dianalisis dalam metalografi dan sifat mekanik. Dari komposit tersebut, diperoleh bahwa sifat mekanik komposit dapat meningkat dibandingkan dengan matriks aluminum, seperti kekerasan meningkat dari 76,23 BHN menjadi 96,82 BHN, porositas turun dari 8,97% menjadi 3,81% dan laju keausan turun dari 10,6 x 10-6/mm/mm3 menjadi 2,63 x 10-6/mm/mm3 karena penambahan persen volume SiC 15%. Sedangkan kuat tarik komposit Al/SiCp turun dibandingkan dengan matriks aluminumnya dari 203,31 Mpa menjadi 191,49 Mpa. Pembentukan fasa spinel MgAl2O4 di interface Al/SiC rendah, karena magnesium berinteraksi dengan silikon, membentuk fasa baru Mg2Si yang teridentifikasi oleh XRD pada semua komposisi persen volume SiC coating. Pembentukan fasa Mg2Si pada matriks aluminum, dapat meningkatkan sifat mekanis komposit Al/SiCp.

Al/SiCp coating MMCs has been produced by gravity casting. The SiC particles were coated with metal oxide film obtained by electroless plating in liquid electrolyte HNO3, and liquid electrolyte made various magnesium (Mg) concentrations from 0.002 to 0.012 mole and a concentration aluminum (Al) have made constant is 0,018 mole. The SiCp coated, used for making MMCs was various volume percent SiCp from 2 to 20.5 vol%. The aluminum composites produced was analysed both metalography and mechanical properties. It is obtained that mechanical properties of these composites are increased compared to unreinforced, i.e hardness increased from 76.23 BHN to 96.82 BHN, porosity decreased from 8.97% to 3.81% and wear rates decreased from 10.6 x 10-6/mm/mm3 to 2.63 x 10-6/mm/mm3 due to the additions volume percent SiC up to 15%. In contrast, the tensile strength of Al/SiCp composites decreased from 203.31 MPa to 191.49 MPa. Spinel phase of MgAl2O4 at the interface Al/SiC is low, due to magnesium interact with silicon, formed a new phase of Mg2Si indentified by XRD in all composition of volume percent SiC coating. A new phase of Mg2Si formed in the matrix aluminum, increased mechanical properties of Al/SiCp composites."
Depok: Fakultas Teknik Universitas Indonesia, 2009
T27092
UI - Tesis Open  Universitas Indonesia Library
cover
Tatu Mas`udah
"Komposit Al/SiCp coating telah dihasilkan dari gravity casting. Dengan partikel SiC dilapisi oleh lapisan metal oksida yang diperoleh dari proses electroless plating dalam larutan elektrolit HNO3, dengan konsentrasi magnesium (Mg) dalam larutan elektrolit tersebut bervariasi dari 0,002 sampai 0,012 mol dan konsentrasi aluminum (Al) dibuat tetap 0,018 mol. Partikel SiC coating tersebut, digunakan untuk membuat komposit (MMCs) dengan persen volume SiC bervariasi dari 2 sampai 20,5 vol%. Komposit aluminum yang dihasilkan, dianalisis dalam metalografi dan sifat mekanik. Dari komposit tersebut, diperoleh bahwa sifat mekanik komposit dapat meningkat dibandingkan dengan matriks aluminum, seperti kekerasan meningkat dari 76,23 BHN menjadi 96,82 BHN, porositas turun dari 8,97% menjadi 3,81% dan laju keausan turun dari 10,6 x 10-6/mm/mm3 menjadi 2,63 x 10-6/mm/mm3 karena penambahan persen volume SiC 15%. Sedangkan kuat tarik komposit Al/SiCp turun dibandingkan dengan matriks aluminumnya dari 203,31 Mpa menjadi 191,49 Mpa. Pembentukan fasa spinel MgAl2O4 di interface Al/SiC rendah, karena magnesium berinteraksi dengan silikon, membentuk fasa baru Mg2Si yang teridentifikasi oleh XRD pada semua komposisi persen volume SiC coating. Pembentukan fasa Mg2Si pada matriks aluminum, dapat meningkatkan sifat mekanis komposit Al/SiCp.

Al/SiCp coating MMCs has been produced by gravity casting. The SiC particles were coated with metal oxide film obtained by electroless plating in liquid electrolyte HNO3, and liquid electrolyte made various magnesium (Mg) concentrations from 0.002 to 0.012 mole and a concentration aluminum (Al) have made constant is 0,018 mole. The SiCp coated, used for making MMCs was various volume percent SiCp from 2 to 20.5 vol%. The aluminum composites produced was analysed both metalography and mechanical properties. It is obtained that mechanical properties of these composites are increased compared to unreinforced, i.e hardness increased from 76.23 BHN to 96.82 BHN, porosity decreased from 8.97% to 3.81% and wear rates decreased from 10.6 x 10-6/mm/mm3 to 2.63 x 10-6/mm/mm3 due to the additions volume percent SiC up to 15%. In contrast, the tensile strength of Al/SiCp composites decreased from 203.31 MPa to 191.49 MPa. Spinel phase of MgAl2O4 at the interface Al/SiC is low, due to magnesium interact with silicon, formed a new phase of Mg2Si indentified by XRD in all composition of volume percent SiC coating. A new phase of Mg2Si formed in the matrix aluminum, increased mechanical properties of Al/SiCp composites."
Depok: Fakultas Teknik Universitas Indonesia, 2009
T41215
UI - Tesis Open  Universitas Indonesia Library
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Asai, Shigeo
"This book is both a course book and a monograph. The first chapter briefly introduces the history, background and technology of EPM. In the second chapter, the concept of transport phenomena is concisely introduced and in the third chapter the essential part of magnetohydrodynamics is transcribed and readers are shown that the concept of transport phenomena does not only apply to heat, mass and momentum, but also magnetic field. The fourth chapter describes electromagnetic processing of electrically conductive materials such as electromagnetic levitation, mixing, brake, and etc., which are caused by the Lorentz force. The fifth chapter treats magnetic processing of organic and non-organic materials such as magnetic levitation, crystal orientation, structural alignment and etc., which are induced by the magnetization force. This part is a new academic field named magneto-science, which focuses on the development of super-conducting magnets."
Dordrecht: [Springer, ], 2012
e20425150
eBooks  Universitas Indonesia Library
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Karana, Elvin
"There currently exists an abundance of materials selection advice for designers suited to solving technical product requirements. In contrast, a stark gap can be found in current literature that articulates the very real personal, social, cultural and economic connections between materials and the design of the material world. In Materials Experience: fundamentals of materials and design, thirty-four of the leading academicians and experts, alongside 8 professional designers, have come together for the first time to offer their expertise and insights on a number of topics common to materials and product design. The result is a very readable and varied panorama on the world of materials and product design as it currently stands."
Oxford, UK: Butterworth-Heinemann, 2014
e20427206
eBooks  Universitas Indonesia Library
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Ashby, Michael F.
"Materials are the stuff of design. From the very beginning of human history, materials have been taken from the natural world and shaped, modified, and adapted for everything from primitive tools to modern electronics. This renowned book by noted materials engineering author Mike Ashby and industrial designer Kara Johnson explores the role of materials and materials processing in product design, with a particular emphasis on creating both desired aesthetics and functionality. The new edition will feature even more of the highly useful "materials profiles" that give critical design, processing, performance and applications criteria for each material in question. The reader will find information ranging from the generic and commercial names of each material, its physical and mechanical properties, its chemical properties, its common uses, how it is typically made and processed, and even its average price."
Amsterdam: Elsevier, 2014
620.11 ASH m
Buku Teks  Universitas Indonesia Library
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