Encapsulating and inkjet-printing flexible conductive patterns on a fluoroelastomer for harsh hydrocarbon fluid environments

Author:

Wankhede Sahil P.12ORCID,Alshehri Ali H.3ORCID,Du Xian12ORCID

Affiliation:

1. Department of Mechanical Engineering, University of Massachusetts Amherst, MA 01003, USA

2. Center for Personalized Health Monitoring, (CPHM), Institute for Applied Life Sciences (IALS), MA 01003, USA

3. Saudi Arabian Oil Company (Saudi Aramco), Dhahran 31311, Saudi Arabia

Abstract

Encapsulated and inkjet-printed flexible conductive patterns on a fluoroelastomer in hydrocarbon fluid environments.

Funder

Saudi Aramco

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

Reference109 articles.

1. Experimental Evaluation and Comparison of Thermal Conductivity of High-Voltage Insulation Materials for Vacuum Electronic Devices, https://www.springerprofessional.de/en/experimental-evaluation-and-comparison-of-thermal-conductivity-o/12144570 , (accessed 15 March 2022)

2. Flexible and Stretchable Electronics for Harsh‐Environmental Applications

3. MEMS: Design and Fabrication , ed. M. Gad-el-Hak , CRC Press , Boca Raton , 2005

4. Packaging technologies for high temperature control electronics

5. Inkjet-Printing Technology for Supercapacitor Application: Current State and Perspectives

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3. Encapsulating commercial accelerometers with epoxy and fluoroelastomer for harsh hydrocarbon fluid environment;Scientific Reports;2023-11-13

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