Wireless Measurement of Elastic and Plastic Deformation by a Metamaterial-Based Sensor

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Date

2014

Journal Title

Journal ISSN

Volume Title

Publisher

MDPI

Open Access Color

GOLD

Green Open Access

Yes

OpenAIRE Downloads

65

OpenAIRE Views

181

Publicly Funded

No
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Top 10%
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Top 10%
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Top 10%

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Abstract

We report remote strain and displacement measurement during elastic and plastic deformation using a metamaterial-based wireless and passive sensor. The sensor is made of a comb-like nested split ring resonator (NSRR) probe operating in the near-field of an antenna, which functions as both the transmitter and the receiver. The NSRR probe is fixed on a standard steel reinforcing bar (rebar), and its frequency response is monitored telemetrically by a network analyzer connected to the antenna across the whole stress-strain curve. This wireless measurement includes both the elastic and plastic region deformation together for the first time, where wired technologies, like strain gauges, typically fail to capture. The experiments are further repeated in the presence of a concrete block between the antenna and the probe, and it is shown that the sensing system is capable of functioning through the concrete. The comparison of the wireless sensor measurement with those undertaken using strain gauges and extensometers reveals that the sensor is able to measure both the average strain and the relative displacement on the rebar as a result of the applied force in a considerably accurate way. The performance of the sensor is tested for different types of misalignments that can possibly occur due to the acting force. These results indicate that the metamaterial-based sensor holds great promise for its accurate, robust and wireless measurement of the elastic and plastic deformation of a rebar, providing beneficial information for remote structural health monitoring and post-earthquake damage assessment.

Description

Altintas, Ayhan/0000-0002-3501-4010; Demir, Hilmi Volkan/0000-0003-1793-112X; Kurc, Ozgur/0000-0002-4761-6211; Ozbey, Burak/0000-0001-7485-2132; Erturk, Vakur/0000-0003-0780-5015;

Keywords

Displacement Sensor, Strain Sensor, Elastic-Plastic Region, Metamaterial, Structural Health Monitoring, Strain sensor, strain sensor, :Science::Physics::Weights and measures [DRNTU], Elastic and plastic deformation, Elastic-plastic region, TP1-1185, metamaterial, Article, Elastic-Plastic, Wireless measurements, Metamaterial, Computer Communication Networks, Displacement Sensor, Structural Health Monitoring, Humans, Telemetry, Displacement sensor, Monitoring, Physiologic, elastic-plastic region, Structural health monitoring, structural health monitoring, Strain sensors, Chemical technology, 621, 600, Equipment Design, displacement sensor, Metamaterials, Elastic-plastic Region, Wireless Technology, Strain Sensor

Fields of Science

02 engineering and technology, 01 natural sciences, 0202 electrical engineering, electronic engineering, information engineering, 0104 chemical sciences

Citation

WoS Q

Q2

Scopus Q

Q1
OpenCitations Logo
OpenCitations Citation Count
25

Source

Sensors

Volume

14

Issue

10

Start Page

19609

End Page

19621
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Citations

CrossRef : 27

Scopus : 26

PubMed : 3

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Mendeley Readers : 28

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