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Thermomechanical Modeling and Analysis of Flexible Structures with Shape Memory Alloy Actuators

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Release : 1996
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Book Synopsis Thermomechanical Modeling and Analysis of Flexible Structures with Shape Memory Alloy Actuators by : Steven Gongming Shu

Download or read book Thermomechanical Modeling and Analysis of Flexible Structures with Shape Memory Alloy Actuators written by Steven Gongming Shu. This book was released on 1996. Available in PDF, EPUB and Kindle. Book excerpt:

Shape Memory Alloy Actuators

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Release : 2016-01-19
Genre : Technology & Engineering
Kind : eBook
Book Rating : 445/5 ( reviews)

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Book Synopsis Shape Memory Alloy Actuators by : Mohammad H. Elahinia

Download or read book Shape Memory Alloy Actuators written by Mohammad H. Elahinia. This book was released on 2016-01-19. Available in PDF, EPUB and Kindle. Book excerpt: This book provides a systematic approach to realizing NiTi shape memory alloy actuation, and is aimed at science and engineering students who would like to develop a better understanding of the behaviors of SMAs, and learn to design, simulate, control, and fabricate these actuators in a systematic approach. Several innovative biomedical applications of SMAs are discussed. These include orthopedic, rehabilitation, assistive, cardiovascular, and surgery devices and tools. To this end unique actuation mechanisms are discussed. These include antagonistic bi-stable shape memory-superelastic actuation, shape memory spring actuation, and multi axial tension-torsion actuation. These actuation mechanisms open new possibilities for creating adaptive structures and biomedical devices by using SMAs.

Thermomechanical Modeling and Experimentation for SMA Actuators Under Cyclic Loading

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Release : 2002
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Book Synopsis Thermomechanical Modeling and Experimentation for SMA Actuators Under Cyclic Loading by :

Download or read book Thermomechanical Modeling and Experimentation for SMA Actuators Under Cyclic Loading written by . This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt: An experimentally validated thermomechanical actuation model for shape memory alloy (SMA) actuators undergoing non proportional cyclic loading, fully coupled with the evolution of plastic strains is developed. The model is numerically implemented in a form suitable for finite element analysis. Material characterization of SMA actuators is also performed in this research effort. Emphasis is given on the effect of plastic strains on the properties of SMA actuators. The data collected during the characterization is utilized to calibrate the thermomechanical SMA model. After the model is calibrated, different loading cases are investigated, including non-proportional loading paths. Finally, the fatigue life of SMA actuators is also investigated. A test frame for fatigue experiments is developed and numerous fatigue tests are performed.

Nonlinear Dynamic Phenomena in Mechanics

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Release : 2011-10-23
Genre : Technology & Engineering
Kind : eBook
Book Rating : 73X/5 ( reviews)

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Book Synopsis Nonlinear Dynamic Phenomena in Mechanics by : Jerzy Warminski

Download or read book Nonlinear Dynamic Phenomena in Mechanics written by Jerzy Warminski. This book was released on 2011-10-23. Available in PDF, EPUB and Kindle. Book excerpt: Nonlinear phenomena should play a crucial role in the design and control of engineering systems and structures as they can drastically change the prevailing dynamical responses. This book covers theoretical and applications-based problems of nonlinear dynamics concerned with both discrete and continuous systems of interest in civil and mechanical engineering. They include pendulum-like systems, slender footbridges, shape memory alloys, sagged elastic cables and non-smooth problems. Pendulums can be used as a dynamic absorber mounted in high buildings, bridges or chimneys. Geometrical nonlinearities introduced by pendulum motion may change the system dynamics, and entail a rapid increase of the oscillations of both the structure and the pendulum, leading to full pendulum rotation or chaotic dynamics. To magnetorheological damping is proposed. Nonlinear mechanics has to be used to explain undesired response in slender footbridges, such as that occurred in the famous event of the London Millenium Bridge. The observed phenomena can be explained by an analytical nonlinear discrete-time model. Shape memory alloys (SMAs) exhibit very interesting nonlinear thermo-mechanical properties such as shape memory effect and superelasticity. SMA elements integrated within composite beams or plates can be used for active modification of structure properties e.g. by affecting their natural frequencies. Finite amplitude, resonant, forced dynamics of sagged, horizontal or inclined, elastic cables have recently undergone meaningful research advances concerned with modelling, analysis, response, and nonlinear/nonregular phenomena. A variety of features of nonlinear multimodal interaction in different resonance conditions are comparatively addressed. Non-smooth systems are very common in engineering practice. Three mechanical engineering problems are presented: (i) a vibro-impact system in the form of a moling device, (ii) the influence of the opening and closing of a fatigue crack on the host system dynamics, and (iii) nonlinear interactions between a rotor and snubber ring system. This book is aimed at a wide audience of engineers and researchers working in the field of nonlinear structural vibrations and dynamics, and undergraduate and postgraduate students reading mechanical, aerospace and civil engineering.

Linear Shape Memory Alloy Thermomechanical Actuators

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Release : 2018
Genre : Technology
Kind : eBook
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Book Synopsis Linear Shape Memory Alloy Thermomechanical Actuators by : Velaphi Msomi

Download or read book Linear Shape Memory Alloy Thermomechanical Actuators written by Velaphi Msomi. This book was released on 2018. Available in PDF, EPUB and Kindle. Book excerpt: The thermally activated changes in crystal structure in nickel-titanium shape memory alloy (SMA) material, which produces transformation strains of an order of magnitude higher than and opposite to the thermal strains, have been described using different models. Some of these models are defined by cyclic functions (trigonometric functions) which they become complex to control when they are subjected to a wide range of transformation temperatures. This chapter presents an alternative model to better describe the behavior of SMA for a more general temperature range, which an SMA-powered actuator might be subjected to. The proposed model is then implemented to the analysis of one-dimensional (1D) problem oriented to the two-dimensional (2D) space. The simulation results were then graphically compared to the experiment.

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