The Development of a Monolithic Shape Memory Alloy Actuator

Shape memory alloys (SMAs) provide exciting opportunities for miniature actuation systems. As SMA actuators are scaled down in size, cooling increases and bandwidth, improves. However, the inclusion of a bias element with which to cycle the SMA actuator becomes difficult at very small scales....

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Main Author: Toews, Leslie Marilyn
Format: Others
Language:en
Published: University of Waterloo 2006
Subjects:
Online Access:http://hdl.handle.net/10012/871
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-8712013-10-04T04:07:18ZToews, Leslie Marilyn2006-08-22T13:53:50Z2006-08-22T13:53:50Z20042004http://hdl.handle.net/10012/871Shape memory alloys (SMAs) provide exciting opportunities for miniature actuation systems. As SMA actuators are scaled down in size, cooling increases and bandwidth, improves. However, the inclusion of a bias element with which to cycle the SMA actuator becomes difficult at very small scales. One technique used to avoid the necessity of having to include a separate bias element is the use of local annealing to fabricate a monolithic device out of nickel titanium (NiTi). The actuator geometry is machined out of a single piece of non-annealed NiTi. After locally annealing a portion of the complete device, that section exhibits the shape memory effect while the remainder acts as structural support and provides the bias force required for cycling. This work proposes one such locally-annealed monolithic SMA actuator for future incorporation in a device that navigates the digestive tract. After detailing the derivation of lumped electro-mechanical models for the actuator, a description of the prototyping procedure, including fabrication and local annealing of the actuator, is provided. This thesis presents the experimental prototype actuator behaviour and compares it with simulations generated using the developed models.application/pdf8443198 bytesapplication/pdfenUniversity of WaterlooCopyright: 2004, Toews, Leslie Marilyn. All rights reserved.Mechanical EngineeringElectrical & Computer Engineeringshape memory alloy (SMA)micro- and meso-scale actuationscalableelectro-mechanical modelmonolithic prototype fabricationdigestive tractThe Development of a Monolithic Shape Memory Alloy ActuatorThesis or DissertationElectrical and Computer EngineeringMaster of Applied Science
collection NDLTD
language en
format Others
sources NDLTD
topic Mechanical Engineering
Electrical & Computer Engineering
shape memory alloy (SMA)
micro- and meso-scale actuation
scalable
electro-mechanical model
monolithic prototype fabrication
digestive tract
spellingShingle Mechanical Engineering
Electrical & Computer Engineering
shape memory alloy (SMA)
micro- and meso-scale actuation
scalable
electro-mechanical model
monolithic prototype fabrication
digestive tract
Toews, Leslie Marilyn
The Development of a Monolithic Shape Memory Alloy Actuator
description Shape memory alloys (SMAs) provide exciting opportunities for miniature actuation systems. As SMA actuators are scaled down in size, cooling increases and bandwidth, improves. However, the inclusion of a bias element with which to cycle the SMA actuator becomes difficult at very small scales. One technique used to avoid the necessity of having to include a separate bias element is the use of local annealing to fabricate a monolithic device out of nickel titanium (NiTi). The actuator geometry is machined out of a single piece of non-annealed NiTi. After locally annealing a portion of the complete device, that section exhibits the shape memory effect while the remainder acts as structural support and provides the bias force required for cycling. This work proposes one such locally-annealed monolithic SMA actuator for future incorporation in a device that navigates the digestive tract. After detailing the derivation of lumped electro-mechanical models for the actuator, a description of the prototyping procedure, including fabrication and local annealing of the actuator, is provided. This thesis presents the experimental prototype actuator behaviour and compares it with simulations generated using the developed models.
author Toews, Leslie Marilyn
author_facet Toews, Leslie Marilyn
author_sort Toews, Leslie Marilyn
title The Development of a Monolithic Shape Memory Alloy Actuator
title_short The Development of a Monolithic Shape Memory Alloy Actuator
title_full The Development of a Monolithic Shape Memory Alloy Actuator
title_fullStr The Development of a Monolithic Shape Memory Alloy Actuator
title_full_unstemmed The Development of a Monolithic Shape Memory Alloy Actuator
title_sort development of a monolithic shape memory alloy actuator
publisher University of Waterloo
publishDate 2006
url http://hdl.handle.net/10012/871
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