Author:
Kobayashi Masahiko,Tukamoto Kyoko,Tomita Bunichiro
Abstract
Summary
A new resin system was developed by reacting liquefied wood with various epoxy compounds. Examination
of the optimum conditions for the synthesis of the resins, and the behavior of liquefied wood in
the cured resins were undertaken. Generally, the compatibility and film forming performance of liquefied
wood/epoxy resins became better as the wood content increased. The presence of only one broad
dispersion peak, due to the glass transition, was observed during dynamic mechanical measurement of
resin films suggesting that the different components of the resin were compatible. The glass transition
temperature of the cured resins could be modified by changing the kinds of epoxy compounds and the
wood contents of liquefied wood. The presence of rubber elasticity at higher temperatures suggests that
the resin systems consisted of cross-linking polymer networks.
Cited by
45 articles.
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