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Kastner, Oliver
"The present book presents a collection of simulation studies of this behaviour. Employing conceptually simple but comprehensive models, the fundamental material properties of shape memory alloys are qualitatively explained from first principles. Using contemporary methods of molecular dynamics simulation experiments, it is shown how microscale dynamics may produce characteristic macroscopic material properties. The work is rooted in the materials sciences of shape memory alloys and covers thermodynamical, micro-mechanical and crystallographical aspects."
Berlin : [Springer, ], 2012
e20425245
eBooks  Universitas Indonesia Library
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Silva, Marcelo R.M. Crespo da
Boston: McGraw-Hill, 2004
531.11 DAS i
Buku Teks  Universitas Indonesia Library
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Mehta, Kush
"This book showcases different processes of fabrication and processing applied to shape memory alloys. It provides details and collective information on working principles, process mechanisms, salient features, novel aspects, process capabilities, properties of material and unique applications of shape memory alloys. The recent progress on fabrication and processing are specially addressed in this book. It covers major topics of manufacturing such as machining, joining, welding and processing of shape memory alloys."
Switzerland: Springer Cham, 2019
e20502515
eBooks  Universitas Indonesia Library
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Niełaczny, Michał
"This book presents a three-dimensional model of the complete unicycle–unicyclist system. A unicycle with a unicyclist on it represents a very complex system. It combines Mechanics, Biomechanics and Control Theory into the system, and is impressive in both its simplicity and improbability. Even more amazing is the fact that most unicyclists don’t know that what they’re doing is, according to science, impossible – just like bumblebees theoretically shouldn’t be able to fly.
This book is devoted to the problem of modeling and controlling a 3D dynamical system consisting of a single-wheeled vehicle, namely a unicycle and the cyclist (unicyclist) riding it. The equations of motion are derived with the aid of the rarely used Boltzmann–Hamel Equations in Matrix Form, which are based on quasi-velocities. The Matrix Form allows Hamel coefficients to be automatically generated, and eliminates all the difficulties associated with determining these quantities. The equations of motion are solved by means of Wolfram Mathematica. To more faithfully represent the unicyclist as part of the model, the model is extended according to the main principles of biomechanics. The impact of the pneumatic tire is investigated using the Pacejka Magic Formula model including experimental determination of the stiffness coefficient.
The aim of control is to maintain the unicycle–unicyclist system in an unstable equilibrium around a given angular position. The control system, based on LQ Regulator, is applied in Wolfram Mathematica.
Lastly, experimental validation, 3D motion capture using software OptiTrack – Motive:Body and high-speed cameras are employed to test the model’s legitimacy. The description of the unicycle–unicyclist system dynamical model, simulation results, and experimental validation are all presented in detail."
Switzerland: Springer Cham, 2019
e20501707
eBooks  Universitas Indonesia Library
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Sunyoto
"Paduan ingat bentuk ("shape memory alloy") mempunyai prospek yang baik dan telah diaplikasikan pada berbagai komponen otomotif, sistem pengontrol, sistem pengaman dan sebagainya. Salah satu jenis paduan ingat bentuk yang banyak dikembangkan adalah paduan berbasis tembaga (Cu-based alloy). Dalam aplikasinya sering ditemui permasalahan terutama mengenai proses pembuatannya dan mengenai karakteristik termo-mekanis paduan termasuk akurasi suhu transformasinya, serta "cold-workability"-nya yang kurang baik sehingga perlu ditingkatkan[1]. Dalam penelitian ini dilakukan pengecoran paduan Cu-Zn-Al, baik tanpa penghalus butiran maupun dengan menambahkan penghalus butiran, untuk memahami proses pembuatan paduan. Kemudian hasil coran yang diperoleh diberi laku panas sehingga diperoleh paduan ingat bentuk dan selanjutnya dilakukan pengamatan metalografi untuk mengetahui struktur mikro paduan dan menentukan ukuran butir, serta dilakukan uji kekerasan dan uji termo-mekanis untuk menentukan suhu transformasinya. Dari paduan ingat bentuk yang diperoleh yaitu paduan Cu-24,8%(berat}Zn-3,78%(berat)A1 dihasilkan aktuator pegas ulir tekan dengan suhu transformasi A5=57°C yang kemudian diaplikasikan secara serf dengan pegas pembalik (konstanta pegas k=0,232 N/mm2), sehingga dapat diperoleh grafik yang memberikan hubungan aniara gaya tekan dan langkah yang dihasilkan aktuator pada suhu tertentu. Selanjutnya dilakukan pengecoran berikutnya tanpa dan dengan penambahan elemen penghalus butiran. Dan pengecoran ini diperoleh 2 macam paduan dengan komposisi masing-masing adalah Cu 21,06%(berat)Zn-6,01% (berat)A1 dan Cu-20,21% (berat)Zn-5,83% (berat)A1-O,1 % (berat)Zr. Dari paduan dengan komposisi Cu 21,06%(berat)Zn-i,01%(berat)A1 dihasilkan aktuator ingat bentuk berbentuk pelat dengan suhu transformasi A5

Shape memory alloy has an excellent future. It is applied in various fields such as automotive components, control system, safety system, and so on. Among the alloy, Cu-based alloy has been a prime interest of engineer for years. In the application, it is commonly encountered problems related to its manufacturing process and thermomechanic characteristics including temperature transformation accuracy, and its cold-workability which is considered imperfect[l]. In this work, the casting process of Cu-Zn-Al was investigated for both with and without grain refining. Then heat treatment was applied to the alloy in order to gain its shape memory property. Furthermore, various investigations were carried out such as metalographic assessment for obtaining the micro-structure and the grain size, hardness test and thermo-mechanic test for determining the temperature transformation of the alloy. From the casting alloy with a composition of Cu-24.8%(weight)Zn-3.78%(weight)Al, it was produced a compression helical-spring actuator with temperature transformation As of 570C, then connected in series with a bias spring (stiffness k of 0.232 N/mm2) to provide a force versus deflection curve at a specified temperature. Moreover the next casting produced and investigated were Cu-21.06% (weight)Zn-6.01 % {weight}Al and Cu-20.21 % (weight)Zn-5.83 % (weight)Al-0.1 % (weight)Zr alloys. The first alloy is processed to be flat actuators with transformation temperature As less than RT(Room Temperature) and its grain size relatively coarse (the average diameter about 800 µm). While the latter alloy is also processed to be flat shape memory actuators with transformation temperature As of 41.5°C and its grain size relatively fine (the average diameter about 260 µm). It is found that small addition of Zr result in finer the grain size and improve the hardness of the alloy."
Depok: Universitas Indonesia, 1998
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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"The SMST Conferences are a series of shape memory industry conferences focusing on real-world issues and applications of shape memory materials. Each volume of the proceedings contains over 100 technical papers and is an excellent reference on the current state-of-the-art in the shape memory and superelastic industry.
Topics covered include Medical and Dental Applications, Biocompatibility, Corrosion, Actuators, Connectors, Alloy Processing, Manufacturing Issues, Laser Processing, Design, Finite Element Analysis, and Shape Memory Thin Films."
Menlo Park, California: SMST Society, 2004
e20451741
eBooks  Universitas Indonesia Library
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"The SMST Conferences are a series of shape memory industry conferences focusing on real-world issues and applications of shape memory materials. Each volume of the proceedings contains over 100 technical papers and is an excellent reference on the current state-of-the-art in the shape memory and superelastic industry. Topics covered include medical and dental applications, biocompatibility, corrosion, actuators, connectors, alloy processing, manufacturing issues, laser processing, design, finite element analysis, and shape memory thin films."
Materials Park, Ohio: ASM International, 2001
e20451980
eBooks  Universitas Indonesia Library
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Masrudin
"ABSTRAK
Shape Memory Polyurethane (SMPU) telah disintesis dari penambahan polyethylene glycol (PEG-6000) sebagai segmen lunak dan 4,4'-Methylenebis (Cyclohexyl isocyanate) (HMDI) sebagai segmen keras serta 1,1,1-Trimethylol propane (TMP) sebagai chain extender. SMPU lalu ditambahkan nanopartikel Fe3O4 berukuran 20-50 nm untuk meningkatkan sifat kemagnetan. Untuk mengkonfimasi bentuk ikatan antarmuka komposit SMPU digunakan FTIR (Fourier Transform Infrared Spectroscopy). FE-SEM digunakan untuk mengetahui interface dari filler dan matriks SMPU. Konfirmasi nilai kemagnetan menggunakan VSM (vibrating sampel magnetometer) dan pengujian tarik menggunakan microtensile menunjukkan bahwa penambahan Fe3O4 dengan persentase 11 wt% menghasilkan nilai kemagnetan dan sifat mekanik tertinggi.

ABSTRACT
Shape Memory Polyurethane (SMPU) has been synthesized by reacting polyethylene glycol (PEG-6000) as softsegment, 4,4'-Methylenebis (Cyclohexyl isocyanate) (HMDI) as hardsegment and 1,1,1-Trimethylol propane (TMP) as chain extender. SMPU was added by Fe3O4 as filler to provide magnetical property. Magnetite which had confirmed by Scanning Elctron Magnetic (SEM) have size 20-50 nm. Functional group was investigated by FTIR (Fourier Transform Infrared Spectroscopy). The magnetic behavior of the nanocomposites was observed by vibrating sample margnetometer (VSM). FE-SEM is used to acknowledge interface between filler and Shape Memory Polyurethane (SMPU) matrix. Mechanical properties tested by microtensile testing showed adding 11% Fe3O4 obtaining magnetic and nanocomposites SMPU resulted in improved materials with higher magnetical and mechanical properties."
2015
S59575
UI - Skripsi Membership  Universitas Indonesia Library
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Viti de Marco, Antonio de, marchese, 1858-1943
London: Jonathan Cape, 1958
336 DEV f (1)
Buku Teks  Universitas Indonesia Library
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