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Integration of Screen Printed Piezoelectric Sensors for Force Impact Sensing in Smart Multifunctional Glass Applications

Andersson Ersman, Peter (author)
RISE,Smart hårdvara
Eriksson, Jerry (author)
RISE,Bygg och fastighet,Elitfönster AB, Sweden
Jakonis, Darius (author)
RISE,Smart hårdvara
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Pantzare, Sandra (author)
RISE,Smart hårdvara
Åhlin, Jessica (author)
RISE,Smart hårdvara
Strandberg, Jan (author)
RISE,Smart hårdvara
Sundin, Stefan (author)
RISE,Smart hårdvara
Toss, Henrik (author)
RISE,Mobilitet och system
Ahrentorp, Fredrik (author)
RISE,Smart hårdvara
Daoud, Kaies (author)
RISE,Smart hårdvara
Jonasson, Christian (author)
RISE,Smart hårdvara
Svensson, Henrik (author)
Elitfönster AB, Sweden
Gregard, Greger (author)
ChromoGenics AB, Sweden
Näslund, Ulf (author)
Vasakronan AB, Sweden
Johansson, Christer (author)
RISE,Smart hårdvara
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 (creator_code:org_t)
2022-09-16
2022
English.
In: Advanced Engineering Materials. - : John Wiley & Sons, Ltd. - 1438-1656 .- 1527-2648. ; 24:11
  • Journal article (peer-reviewed)
Abstract Subject headings
Close  
  • Screen printed piezoelectric polyvinylidene fluoride?trifluoro ethylene (PVDF?TrFE)-based sensors laminated between glass panes in the temperature range 80?110?°C are presented. No degradation of the piezoelectric signals is observed for the sensors laminated at 110?°C, despite approaching the Curie temperature of the piezoelectric material. The piezoelectric sensors, here monitoring force impact in smart glass applications, are characterized by using a calibrated impact hammer system and standardized impact situations. Stand-alone piezoelectric sensors and piezoelectric sensors integrated on poly(methyl methacrylate) are also evaluated. The piezoelectric constants obtained from the measurements of the nonintegrated piezoelectric sensors are in good agreement with the literature. The piezoelectric sensor response is measured by using either physical electrical contacts between the piezoelectric sensors and the readout electronics, or wirelessly via both noncontact capacitive coupling and Bluetooth low-energy radio link. The developed sensor concept is finally demonstrated in smart window prototypes, in which integrated piezoelectric sensors are used to detect break-in attempts. Additionally, each prototype includes an electrochromic film to control the light transmittance of the window, a screen printed electrochromic display for status indications and wireless communication with an external server, and a holistic approach of hybrid printed electronic systems targeting smart multifunctional glass applications.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Materialteknik -- Textil-, gummi- och polymermaterial (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering -- Textile, Rubber and Polymeric Materials (hsv//eng)

Keyword

PEDOT:PSS
piezoelectric sensors
printed electronics
screen printing
smart windows

Publication and Content Type

ref (subject category)
art (subject category)

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