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Atmospheric Corrosion Sensor Based on Strain Measurement with an Active Dummy Circuit Method in Experiment with Corrosion Products
by
Kasai, Naoya
, Okazaki, Shinji
, Kuriyama, Yukihisa
, Kihira, Hiroshi
, Purwasih, Nining
in
Atmospheric corrosion
/ Carbon steel
/ Circuits
/ Corrosion effects
/ Corrosion potential
/ corrosion product
/ Corrosion products
/ Corrosion tests
/ Experiments
/ Low carbon steels
/ Microscopy
/ mild steel
/ Radio frequency identification
/ Saline water
/ Sensors
/ Strain gauges
/ Strain measurement
/ Thermal strain
/ Thickness
/ Water sprays
2019
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Atmospheric Corrosion Sensor Based on Strain Measurement with an Active Dummy Circuit Method in Experiment with Corrosion Products
by
Kasai, Naoya
, Okazaki, Shinji
, Kuriyama, Yukihisa
, Kihira, Hiroshi
, Purwasih, Nining
in
Atmospheric corrosion
/ Carbon steel
/ Circuits
/ Corrosion effects
/ Corrosion potential
/ corrosion product
/ Corrosion products
/ Corrosion tests
/ Experiments
/ Low carbon steels
/ Microscopy
/ mild steel
/ Radio frequency identification
/ Saline water
/ Sensors
/ Strain gauges
/ Strain measurement
/ Thermal strain
/ Thickness
/ Water sprays
2019
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Atmospheric Corrosion Sensor Based on Strain Measurement with an Active Dummy Circuit Method in Experiment with Corrosion Products
by
Kasai, Naoya
, Okazaki, Shinji
, Kuriyama, Yukihisa
, Kihira, Hiroshi
, Purwasih, Nining
in
Atmospheric corrosion
/ Carbon steel
/ Circuits
/ Corrosion effects
/ Corrosion potential
/ corrosion product
/ Corrosion products
/ Corrosion tests
/ Experiments
/ Low carbon steels
/ Microscopy
/ mild steel
/ Radio frequency identification
/ Saline water
/ Sensors
/ Strain gauges
/ Strain measurement
/ Thermal strain
/ Thickness
/ Water sprays
2019
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Atmospheric Corrosion Sensor Based on Strain Measurement with an Active Dummy Circuit Method in Experiment with Corrosion Products
Journal Article
Atmospheric Corrosion Sensor Based on Strain Measurement with an Active Dummy Circuit Method in Experiment with Corrosion Products
2019
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Overview
This study analyzed an atmospheric corrosion sensor using strain measurements (ACSSM) with an active dummy method for corrosion product experiments. An initial compensation thermal strain experiment was performed with elapsed time. Further analyses used dry-wet environments with salt water spray to investigate the thickness reduction performance of the corrosion product on low-carbon steel samples. The ACSSM with an active dummy method accurately measured signals induced by the specimen thickness reduction, despite the noise in the signal. Moreover, the effects of corrosion products on the signal were discussed.
Publisher
MDPI AG
Subject
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