Effect of Chain Extender on Phase Mixing and Coating Properties of Polyurethane Ureas
Влияние удлинителя цепи на фазовое смешение и свойства полиуретанмочевинных покрытий
2005-02-08
SCID: 54.1/jzz99hjw
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angle-resolved X-ray photoelectron spectroscopychain extendermoisture-cured polyurethanephase mixingpolyurethane ureas
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Abstract (AI)
Structural effects of chain extender on phase mixing and coating properties of polyether-based moisture-cured polyurethane ureas (MCPUs) were determined with a polytetramethylene glycol (PTMG-1000), trimethylol propane (TMP), and isophorone diisocyanate (IPDI)-based system. The reaction of PTMG/TMP/IPDI was carried out using a NCO/OH ratio of 1.6:1. The excess isocyanate of the prepolymer was chain extended in the ratio of 2:1 (NCO/OH) with different aliphatic diols and 4:1 with different aromatic diamines just before the coating application. The viscoelastic properties of the cross-linked films were evaluated with a dynamic mechanical and thermal analyzer (DMTA). The mechanical film properties such as tensile strength, adhesion strength, and hardness were measured and related to chemical composition and cohesion of the hard segment. Surface properties were evaluated through angle resolved X-ray photoelectron spectroscopy (AR-XPS). The degree of phase mixing was found to be dependent on the chain extender structure. The results indicate that the combined analysis of the hard segment cohesion helps in correlating the structure-to-property relationship.
Key Findings
1
Combining hard-segment cohesion analysis with coating-property measurements helps establish structure–property relationships.
2
Cross-linked film viscoelasticity, tensile strength, adhesion strength, and hardness were related to chemical composition and hard-segment cohesion.
3
Prepolymer excess isocyanate was chain-extended using aliphatic diols at an NCO/OH ratio of 2:1 and aromatic diamines at 4:1.
4
The degree of phase mixing depends on the molecular structure of the chain extender.
5
The study determines how chain-extender structure affects phase mixing in polyether-based moisture-cured polyurethane ureas.
Research Object
polyether-based moisture-cured polyurethane ureas (MCPUs) based on PTMG-1000, TMP, and IPDI
Research Subject
the effect of chain-extender structure on phase mixing, hard-segment cohesion, viscoelastic, mechanical, surface, and coating properties
Publication Details
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2005-02-08
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