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Textile-Based Weft Knitted Strain Sensors: Effect of Fabric Parameters on Sensor Properties
by
Kennon, William
, Husain, Muhammad
, Atalay, Ozgur
in
Carbon
/ conductive textiles
/ conductive yarn
/ contact area
/ contact pressure
/ Elastic Modulus
/ elastomeric yarn
/ Equipment Design
/ Equipment Failure Analysis
/ Manufacturing
/ Needlework
/ Sensors
/ strain sensor
/ Textiles
/ Textiles - analysis
/ Transducers
/ Yarn
/ yarn input tension
2013
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Textile-Based Weft Knitted Strain Sensors: Effect of Fabric Parameters on Sensor Properties
by
Kennon, William
, Husain, Muhammad
, Atalay, Ozgur
in
Carbon
/ conductive textiles
/ conductive yarn
/ contact area
/ contact pressure
/ Elastic Modulus
/ elastomeric yarn
/ Equipment Design
/ Equipment Failure Analysis
/ Manufacturing
/ Needlework
/ Sensors
/ strain sensor
/ Textiles
/ Textiles - analysis
/ Transducers
/ Yarn
/ yarn input tension
2013
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Textile-Based Weft Knitted Strain Sensors: Effect of Fabric Parameters on Sensor Properties
by
Kennon, William
, Husain, Muhammad
, Atalay, Ozgur
in
Carbon
/ conductive textiles
/ conductive yarn
/ contact area
/ contact pressure
/ Elastic Modulus
/ elastomeric yarn
/ Equipment Design
/ Equipment Failure Analysis
/ Manufacturing
/ Needlework
/ Sensors
/ strain sensor
/ Textiles
/ Textiles - analysis
/ Transducers
/ Yarn
/ yarn input tension
2013
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Textile-Based Weft Knitted Strain Sensors: Effect of Fabric Parameters on Sensor Properties
Journal Article
Textile-Based Weft Knitted Strain Sensors: Effect of Fabric Parameters on Sensor Properties
2013
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Overview
The design and development of textile-based strain sensors has been a focus of research and many investigators have studied this subject. This paper presents a new textile-based strain sensor design and shows the effect of base fabric parameters on its sensing properties. Sensing fabric could be used to measure articulations of the human body in the real environment. The strain sensing fabric was produced by using electronic flat-bed knitting technology; the base fabric was produced with elastomeric yarns in an interlock arrangement and a conductive yarn was embedded in this substrate to create a series of single loop structures. Experimental results show that there is a strong relationship between base fabric parameters and sensor properties.
Publisher
MDPI AG,Molecular Diversity Preservation International (MDPI)
Subject
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