homepage  Research  Publications  2009
 
Wang HL, Xu SP, Shi WF (2009) Progress in Organic Coatings 65(4), 417-424.
Date: 2011-08-16   Author: SKLFS  ,   Source: WOS  ,
 

Wang HL, Xu SP, Shi WF (2009) Photopolymerization behaviors of hyperbranched polyphosphonate acrylate and properties of the UV cured film. Progress in Organic Coatings 65(4), 417-424. [In English]

Web link: http://dx.doi.org/10.1016/j.porgcoat.2009.03.005

Keywords:

UV curing, Hyperbranched, Flame retardant, Phosphorus, Thermal, degradation, flame-retardant coatings, michael addition polymerizations, trifunctional amines, thermal-degradation, divinyl sulfone, mechanism, kinetics, polymer, resins

Abstract: A novel hyperbranched polyphosphonate acrylate (HBPPA), used as a reactive-type flame retardant in UV curable systems, was successfully synthesized by the reaction of di(acryloyloxyethyl) benzenephosphonate (DABP) with N-(2-aminoethyl)-piperazine, and characterized by FTIR, (1)H NMR and GPC measurements. HBPPA was blended with DABP as a monomer in different ratios to obtain a series of flame retardant resins. Their maximum photopolymerization rates (R(p)(max)) and final unsaturation conversion (P(f)) in the cured films in the presence of a photofragmenting initiator were investigated. The results showed that the P(f) increased along with HBPPA content and the pure HBPPA has the maximum value of 81.0% in the photo-DSC analysis. Their flame retardancy was monitored by the limiting oxygen index (LOI), and showed that the UV cured films greatly expanded when burning, and the degree of expansion increased along with HBPPA content. However, the LOI values varied from 36.0 to 39.0, which can be ascribed to the condensed phase mechanism. Their thermal degradation behaviors were investigated by thermogravimetric analysis and in situ FTIR spectroscopy, and showed that the phosphonate group of HBPPA first degraded to form poly(phosphoric acid)s at around 300 degrees C, which had a major contribution to form the compact chat to protect the sample from further degradation. The dynamic mechanical thermal properties were Studied by dynamic mechanical thermal analysis and showed a good miscibility between HBPPA and DABR The crosslinking density and T(g) of the cured films decreased along with the content of HBPPA in the blend. (C) 2009 Elsevier B.V. All rights reserved.

 
Print    Close
 
 
   
  
 
Relevant link
Contact us
State Key Laboratory of Fire Science, University of Science and Technology of China
Jinzhai Road 96, Hefei, Anhui, P. R. China
P. O.: 230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.edu.cn
 
 
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
Tel:(+86)551 3601651 | Fax:(+86)551 3601669 | E-mail:sklfs@ustc.edu.cn | ICP: D20380176