Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior

In this work, the influence of molecular parameters of styrene-b-(ethylene-<i>co</i>-butylene)-b-styrene (SEBS) triblock copolymer as matrix material in form-stable phase change material (FSPCM) on the thermo-mechanical properties and leakage behavior are studied. Various SEBS grades dif...

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Main Authors: Ralf Rickert, Roland Klein, Frank Schönberger
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/15/3285
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spelling doaj-2dca665e11b846a1a86d54fa9f9313312020-11-25T03:06:14ZengMDPI AGMaterials1996-19442020-07-01133285328510.3390/ma13153285Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention BehaviorRalf Rickert0Roland Klein1Frank Schönberger2Fraunhofer Institute for Structural Durability and System Reliability LBF, Schlossgartenstr. 6, 64289 Darmstadt, GermanyFraunhofer Institute for Structural Durability and System Reliability LBF, Schlossgartenstr. 6, 64289 Darmstadt, GermanyFraunhofer Institute for Structural Durability and System Reliability LBF, Schlossgartenstr. 6, 64289 Darmstadt, GermanyIn this work, the influence of molecular parameters of styrene-b-(ethylene-<i>co</i>-butylene)-b-styrene (SEBS) triblock copolymer as matrix material in form-stable phase change material (FSPCM) on the thermo-mechanical properties and leakage behavior are studied. Various SEBS grades differing in their molecular weight, styrene content, and ethylene/butylene ratio are used as supporting matrix in composites with 90 wt.% paraffin. Thermo-mechanical properties are determined by rheological measurements. The results show phase transitions temperatures from solid to hard gel, hard gel to soft gel, and soft gel to gel fluid. Paraffin leakage in FSPCM is analyzed by mass loss over time in an oven at 60 °C. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) are applied to determine the thermal energy storage capacity. Finally, the molecular weight and the styrene content are combined to the molecular weight of styrene block which is identified as the authoritative parameter for the thermo-mechanical properties of the SEBS/PCM composite.https://www.mdpi.com/1996-1944/13/15/3285phase change materialSEBSparaffinform-stable phase change materialphase transitionshape stability mechanism
collection DOAJ
language English
format Article
sources DOAJ
author Ralf Rickert
Roland Klein
Frank Schönberger
spellingShingle Ralf Rickert
Roland Klein
Frank Schönberger
Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
Materials
phase change material
SEBS
paraffin
form-stable phase change material
phase transition
shape stability mechanism
author_facet Ralf Rickert
Roland Klein
Frank Schönberger
author_sort Ralf Rickert
title Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
title_short Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
title_full Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
title_fullStr Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
title_full_unstemmed Form-Stable Phase Change Materials Based on SEBS and Paraffin: Influence of Molecular Parameters of Styrene-b-(Ethylene-<i>co</i>-Butylene)-b-Styrene on Shape Stability and Retention Behavior
title_sort form-stable phase change materials based on sebs and paraffin: influence of molecular parameters of styrene-b-(ethylene-<i>co</i>-butylene)-b-styrene on shape stability and retention behavior
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-07-01
description In this work, the influence of molecular parameters of styrene-b-(ethylene-<i>co</i>-butylene)-b-styrene (SEBS) triblock copolymer as matrix material in form-stable phase change material (FSPCM) on the thermo-mechanical properties and leakage behavior are studied. Various SEBS grades differing in their molecular weight, styrene content, and ethylene/butylene ratio are used as supporting matrix in composites with 90 wt.% paraffin. Thermo-mechanical properties are determined by rheological measurements. The results show phase transitions temperatures from solid to hard gel, hard gel to soft gel, and soft gel to gel fluid. Paraffin leakage in FSPCM is analyzed by mass loss over time in an oven at 60 °C. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) are applied to determine the thermal energy storage capacity. Finally, the molecular weight and the styrene content are combined to the molecular weight of styrene block which is identified as the authoritative parameter for the thermo-mechanical properties of the SEBS/PCM composite.
topic phase change material
SEBS
paraffin
form-stable phase change material
phase transition
shape stability mechanism
url https://www.mdpi.com/1996-1944/13/15/3285
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