SEDL / STP / STP1504-EB / STP45375S



Critical Evaluation of Existing Specifications for Polyisocyanurate (ISO) Foam Insulation Boards in Roofing Applications

Mukhopadhyaya, Phalguni
Research Officer, Institute for Research in Construction, NRC Canada, Ottawa, Ontario

Baskaran, Bas
Group Leader, Senior Research Officer, Institute for Research in Construction, NRC Canada, Ottawa, Ontario

Normandin, Nicole
Research Officer, Institute for Research in Construction, NRC Canada, Ottawa, Ontario

Lackey, John
Research Officer, Institute for Research in Construction, NRC Canada, Ottawa, Ontario

Evoniak, Sebastian
Research Officer, Institute for Research in Construction, NRC Canada, Ottawa, Ontario


Pages: 10    Published: Jan 2007


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Abstract

In North America, more than 50 % of low slope roofing applications uses faced rigid cellular polyisocyanurate (hereafter abbreviated as ISO) board as thermal insulation. Long-term performance of a roof assembly is critically dependent on the ISO characteristics during the service period in various environmental conditions. For this reason, the ASTM C 1289-02, “Standard Specification for Rigid Cellular Polyisocyanurate Thermal Insulation Board,” outlines the physical and thermal property requirements for the ISO boards. However, these requirements are based on the available knowledge, information, and consensus at the time of drafting and balloting of the ASTM standard. Nevertheless, the standard gets updated and revised when more credible data are available that solicits revisions of the current standard.This paper presents experimental results from an ongoing pilot research study that critically evaluates the ASTM C 1289-02 specification requirements for the ISO on three engineering properties: (1) dimensional stability, (2) thermal resistance, and (3) compressive strength. Preliminary results from this study reveal many unknown phenomena, particularly regarding the dimensional stability and compressive strength of ISO boards.


Keywords:
polyisocyanurate (ISO) foam, dimensional stability, thermal resistance, compressive strength, roofing assembly

Paper ID: STP45375S
Committee/Subcommittee: D08.06
DOI: 10.1520/STP45375S
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