At the microscale, shape memory alloy (SMA) microelectromechanical system (MEMS) bimorph actuators offer great potential based on their inherently high work density. An optimization problem relating to the deflection and curvature based on shape memory MEMS bimorph was identified, formulated, and solved. Thicknesses of the SU-8 photoresist and nickel-titanium alloy (NiTi) was identified that yielded maximum deflections and curvature radius based on a relationship among individual layer thicknesses, elastic modulus, and cantilever length. This model should serve as a guideline for optimal NiTi and SU-8 thicknesses to drive large deflections and curvature radius that are most suitable for microrobotic actuation, micromirrors, micropumps, and ...
This thesis explores the possibilities of design optimization techniques for designing shape memory ...
In an effort to develop a more full characterization tool of shape memory alloys, a new technique is...
This article illustrates the opportunities that combining computational modeling and systematic desi...
The miniaturization of engineering devices has created interest in new actuation methods capable of ...
Microactuators fabricated with NiTi thin films take advantage of this material’s large energy densit...
The high work density and beneficial downscaling of shape memory alloy (SMA) actuation performance p...
Shape-memory-alloy (SMA) has attracted considerable attention in recent years as a smart and efficie...
This chapter describes the optimum mechanical design of shape memory based actuators. The authors sh...
A shape memory alloy (SMA) bimorph actuator is a composite structure composed of flexible polyimide ...
Shape memory alloys (SMA), because of their unique mechanical characteristics and shape memory effec...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
The mechanical and electrical properties of beam-cantilever microdevices fabricated from cold-rolled...
This paper presents a computational model and design optimization strategy for shape memory alloy (S...
446-453Manufacturing, over the years, has evolved through three revolutions brought out by the impac...
In the modern age of miniaturisation, Smart Materials, a type of material that reacts mechanically t...
This thesis explores the possibilities of design optimization techniques for designing shape memory ...
In an effort to develop a more full characterization tool of shape memory alloys, a new technique is...
This article illustrates the opportunities that combining computational modeling and systematic desi...
The miniaturization of engineering devices has created interest in new actuation methods capable of ...
Microactuators fabricated with NiTi thin films take advantage of this material’s large energy densit...
The high work density and beneficial downscaling of shape memory alloy (SMA) actuation performance p...
Shape-memory-alloy (SMA) has attracted considerable attention in recent years as a smart and efficie...
This chapter describes the optimum mechanical design of shape memory based actuators. The authors sh...
A shape memory alloy (SMA) bimorph actuator is a composite structure composed of flexible polyimide ...
Shape memory alloys (SMA), because of their unique mechanical characteristics and shape memory effec...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
The mechanical and electrical properties of beam-cantilever microdevices fabricated from cold-rolled...
This paper presents a computational model and design optimization strategy for shape memory alloy (S...
446-453Manufacturing, over the years, has evolved through three revolutions brought out by the impac...
In the modern age of miniaturisation, Smart Materials, a type of material that reacts mechanically t...
This thesis explores the possibilities of design optimization techniques for designing shape memory ...
In an effort to develop a more full characterization tool of shape memory alloys, a new technique is...
This article illustrates the opportunities that combining computational modeling and systematic desi...