Impact of accelerated climatic aging on the behavior of gypsum plaster-straw material for building thermal insulation
•Freezing-thawing and wetting-drying accelerated aging tests are considered to simulate outdoor conditions.•Two straw-gypsum plaster composites were designed.•Long-term durability under changing climate conditions is investigated. Accelerated aging methods are needed to estimate the potential long-t...
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Veröffentlicht in: | Construction & building materials 2016-10, Vol.125, p.912-918 |
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Sprache: | eng |
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Zusammenfassung: | •Freezing-thawing and wetting-drying accelerated aging tests are considered to simulate outdoor conditions.•Two straw-gypsum plaster composites were designed.•Long-term durability under changing climate conditions is investigated.
Accelerated aging methods are needed to estimate the potential long-term serviceability of building materials under environmental conditions of use. In this paper, we examine the effects of dry-wet and freeze-thaw cycling on the thermal and mechanical properties of new straw-plaster composite materials proposed for building insulation. The material specimens used in the present study were manufactured with two straw varieties, wheat and barley. The gypsum plaster is used because of his thermal properties and ease of manufacture. Only the optimized mixture was used to perform the accelerated aging tests. In order to evaluate the long-term behavior of the straw-plaster composite, the non-aged specimens were characterized at constant conditions of temperature and humidity for three different curing times of one, three and six months. Comparisons between the properties of the aged and unaged material showed that freezing-thawing cycles had only a slight effect on the thermal and mechanical response of the composites compared with drying-wetting cycles. |
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ISSN: | 0950-0618 1879-0526 |
DOI: | 10.1016/j.conbuildmat.2016.08.120 |