Datum
2019-10-02Schlagwort
660 Chemische Verfahrenstechnik, Technische Chemie SchaumSiliconkautschukFlüssigkautschukThermoplastMikrosphärePhysikalisch-chemische EigenschaftMetadata
Zur Langanzeige
Konferenzveröffentlichung
Flexible Foams made of Liquid Silicone Rubber and expandable Microspheres
Zusammenfassung
In this study, the possibility of foaming liquid silicone rubber (LSR) was investigated. The foam was produced by injection molding with two different thermoplastic, expandable microspheres. Different properties were tested using the S2-tensile bar, e.g. density, tensile strength, specific tensile strength, elongation at break, stress at 100 % strain and the hardness. It was found that the two types of microspheres used have similar effects on density, specific tensile strength and elongation at break, but differ in hardness and stress at 100 % strain.
Zitieren
@inproceedings{doi:10.17170/kobra-202204266098,
author={Marl, Svenja and Hartung, Michael and Giesen, Ralf-Urs and Heim, Hans-Peter},
title={Flexible Foams made of Liquid Silicone Rubber and expandable Microspheres},
month={10},
year={2019}
}
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2022-04-27T14:25:19Z 2022-04-27T14:25:19Z 2019-10-02 doi:10.17170/kobra-202204266098 http://hdl.handle.net/123456789/13793 eng Namensnennung - Weitergabe unter gleichen Bedingungen 4.0 International http://creativecommons.org/licenses/by-sa/4.0/ foam LSR expandable thermoplastic microspheres 660 Flexible Foams made of Liquid Silicone Rubber and expandable Microspheres Konferenzveröffentlichung In this study, the possibility of foaming liquid silicone rubber (LSR) was investigated. The foam was produced by injection molding with two different thermoplastic, expandable microspheres. Different properties were tested using the S2-tensile bar, e.g. density, tensile strength, specific tensile strength, elongation at break, stress at 100 % strain and the hardness. It was found that the two types of microspheres used have similar effects on density, specific tensile strength and elongation at break, but differ in hardness and stress at 100 % strain. open access Marl, Svenja Hartung, Michael Giesen, Ralf-Urs Heim, Hans-Peter Schaum Siliconkautschuk Flüssigkautschuk Thermoplast Mikrosphäre Physikalisch-chemische Eigenschaft acceptedVersion 2019-10-02 Valladolid, Spain false SPE FOAMS® 2019 Conference
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