Modal Analysis of a New Thermosensitive Actuator Design for Circuit Breakers Based on Mesoscale U-Shaped Compliant Mechanisms

Author:

Ahuett-Garza Horacio1ORCID,Melecio Juan I.2,Orta Pedro1

Affiliation:

1. Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Monterrey, Mexico

2. Power Conversion Group, School of Electrical and Electronic Engineering, The University of Manchester, UK

Abstract

A new mesoscale thermosensitive actuator design for circuit breakers based on a U-shaped compliant mechanism was introduced as a potential replacement for bimetal strips in miniature circuit breakers. In a previous study, the response of this design to the thermal fields produced by a steady current flow was analyzed. This article presents a modal analysis of the compliant mechanism. The goal of the analysis is to compare the natural frequencies of the mechanism with the frequency of the magnetic loads caused by the flow of the alternating currents. Simulations with simple beam elements and 3D elements are presented and results are compared with experimental measurements. The study finds that the natural frequency of the mechanism differs by a factor of about 8 with the AC frequency. The conclusion is that the proposed compliant mechanism design’s performance as a thermal actuator will not be affected by the cyclic loads generated by the forces induced by the AC magnetic fields.

Funder

Automotive Consortium for Cyber Physical Systems at Tecnológico de Monterrey and Schneider Electric

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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