4.6 Article

Performance of Polyethylene Vapor Barrier Systems in Temperate Climates

期刊

BUILDINGS
卷 12, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/buildings12101768

关键词

laboratory tests; vapor barrier systems; polyethylene; aging; virgin PE; new PE; regenerated PE; membranes; joints

资金

  1. National Building Foundation (Landsbyggefonden)
  2. Danish Building Defects Fund
  3. Landowners' Investment Foundation (Grundejernes Investeringsfond)
  4. Landsbyggefonden, Studiestraede 50, Kobenhavn V [NR: 6247 5412, EAN 5790001269265]
  5. Byggeskadefonden, Studiestraede 50, 1554 Kobenhavn V [12 02 59 71]
  6. Grundejernes Investeringsfond, Ny Kongensgade 15, 1472 Kobenhavn K [26092515, 5798009811097]

向作者/读者索取更多资源

This study assessed nine different vapor barrier systems using polyethylene (PE) membranes of different materials and evaluated their chemical and mechanical properties, as well as their aging characteristics. The results showed no significant differences in the aging properties among the various membranes.
The performance of nine different vapor barrier systems comprising polyethylene (PE) membranes were assessed. The vapor barrier systems comprised membranes of virgin PE, 100% new PE, regenerated PE and multilayered virgin and regenerated PE. Membranes were joined either with tape suited to the individual system or an adhesive base on butyl rubber. The vapor barrier systems were evaluated and compared using standard laboratory tests. Chemical analytical techniques and physicomechanical tests were used. Mechanical properties were assessed using laboratory tests recommended by the harmonized standard EN 1385. Chemical analyses followed standard laboratory protocols performed with specialized equipment and visual examination. Chemical and mechanical properties were determined before and after exposure to an aging regime comprising 168 days at 70 degrees C in total. The chemical stability of the plastic present in each membrane was further evaluated after an additional exposure to an aging regime comprising 50 days followed by another 30 days at 70 degrees C. Additional aging indicated chemical changes in the membrane material with time. However, it was not possible to distinguish between aging properties for membranes containing virgin PE, 100% new PE, regenerated PE or multilayered virgin and regenerated PE.

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