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A combined Taguchi and response surface approach to improve electret charge in corona-charged fibrous electrets

A combined Taguchi and response surface approach to improve electret charge in corona-charged... Abstract In this work, an attempt was made to model, analyze, and optimize corona charging process for production of fibrous electrets using a combined Taguchi and response surface approach. The key process variables determining the magnitude and duration of electret charge were screened out using Taguchi approach and optimized using response surface approach. The simultaneous optimization of magnitude as well as duration of electret charge led to an initial surface potential of 1.6 kV and half-decay time of 11.18 min. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Fibers and Polymers Springer Journals

A combined Taguchi and response surface approach to improve electret charge in corona-charged fibrous electrets

Fibers and Polymers , Volume 17 (11): 11 – Nov 1, 2016

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References (22)

Publisher
Springer Journals
Copyright
2016 The Korean Fiber Society and Springer Science+Business Media Dordrecht
ISSN
1229-9197
eISSN
1875-0052
DOI
10.1007/s12221-016-6312-3
Publisher site
See Article on Publisher Site

Abstract

Abstract In this work, an attempt was made to model, analyze, and optimize corona charging process for production of fibrous electrets using a combined Taguchi and response surface approach. The key process variables determining the magnitude and duration of electret charge were screened out using Taguchi approach and optimized using response surface approach. The simultaneous optimization of magnitude as well as duration of electret charge led to an initial surface potential of 1.6 kV and half-decay time of 11.18 min.

Journal

Fibers and PolymersSpringer Journals

Published: Nov 1, 2016

Keywords: Polymer Sciences

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