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A Multifunctional Characterization Test Bench for Shape Memory Alloy Micro-Wires-Design, Implementation and Validation

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Publisher MDPI
Date 2023 Jul 14
PMID 37445135
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Abstract

Most relevant to predicting the behavior of shape-memory-alloy (SMA)-based actuator-sensor applications activated by Joule heating are the electro-mechanical characteristics of the material under consideration. For a comprehensive characterization, a single setup that is able to provide all relevant data and information is desirable. This work covers the design, implementation and validation of such a high-end test bench for the holistic characterization of SMA micro-wires. In addition, the setup provides the possibility of application simulation experiments. Key elements of the design are the clamping mechanism guided on air bearings, a linear direct drive, a high-resolution load cell, a high-precision constant current source and a stress-controlled in-line wire sample installation. All measurements take place inside an isolated, temperature-controlled chamber. With the presented setup, the electro-mechanical and thermal characteristics of SMA wire samples with diameters from 20 µm to 100 µm can be determined. Via hardware-in-the-loop (HiL) implementation, the outputs with different biasing mechanisms and additional end-stops can be simulated even at high ambient temperatures. The generated results facilitate the prediction of the exact characteristics of SMA-driven actuator-sensor systems in a variety of applications and lead to a better general understanding of the alloy's properties. All functionalities and features of the setup are presented by discussing the results of exemplary experiments.

Citing Articles

Design, Modeling, and Experimental Validation of an Active Microcatheter Driven by Shape Memory Effects.

Li C, Zhang X, Ren Z, Wang J, Sun S, Fu J Micromachines (Basel). 2024; 15(5).

PMID: 38793176 PMC: 11123389. DOI: 10.3390/mi15050603.

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