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Impact Force Sensing with Magnetostrictive Fe-Ga Alloys
Liang Shu
, Jiabin Yang
,
Zhangxian Deng
, Marcelo J. Dapino
Mechanical and Biomedical Engineering Department
Ohio State University
Wenzhou University
Wuhan University of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
17
Scopus citations
Overview
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Keyphrases
Impact Force
100%
Magnetostrictive
100%
Force Sensing
100%
Tapered I-beam
100%
Fe-Ga Alloy
100%
Ni-Mn-Ga
66%
Sensor-based
66%
Flux Density
66%
Pickup Coil
66%
Analytical Modeling
66%
Stress-induced
33%
Mechanical Stress
33%
Shear Stress
33%
Magnetization Change
33%
Cantilever Beam
33%
Magnetostrictive Material
33%
Galfenol
33%
Beam Geometry
33%
Electromagnet
33%
Rod Configuration
33%
Axial Impact
33%
External Effects
33%
Measurement Error
33%
Impact Force Sensor
33%
Normal Stress
33%
Machinable
33%
Levenberg-Marquardt Fitting
33%
Density Variation
33%
Magnetic Circuit
33%
Maximum Sensitivity
33%
Impact Sensor
33%
Fitting Method
33%
Rectangular Beam
33%
I-beam
33%
Engineering
Impact Force
100%
Alloy
100%
Rod
75%
Flux Density
50%
Induced Stress
25%
Mechanical Stress
25%
Experimental Result
25%
Magnetic Circuit
25%
Levenberg-Marquardt Algorithm
25%
Measurement Error
25%
Material Science
Alloy
100%
Density
66%
Analytical Modeling
66%
Electronic Circuit
33%
Mechanical Stress
33%
Earth and Planetary Sciences
Alloy
100%
I Beams
100%
Flux Density
50%
Magnetic Circuit
25%
Rectangular Beams
25%
Physics
Alloy
100%
Flux Density
66%
Mechanical Stress
33%