标题: 液晶共聚酯高分子与聚芳香酯高分子之相容性
Miscibility of Liquid Crystalline Copolyester and Polyarylate
作者: 田宏隆
Tyan, Horng-Long
韦光华
Kung-Hwa Wei
材料科学与工程学系
关键字: 液晶共聚酯高分子;聚芳香酯高分子;容液掺合;poly(p-oxybenzoate-co-p-phenyleneisophthalate) (HIQ);polyarylate (PAr);solution blending
公开日期: 1995
摘要: 本实验是利用扫描式热分析仪(DSC)及偏光显微镜(POM)来研究液晶
共聚酯高分子(Poly(p-oxybenzoate-co-p-phenyleneisophthalate),
HIQ)与聚芳香酯高分子(poly-arylate, PAr)间的相容性. 其掺合物采用
solution blending 方式, 以50/50 phenol/tetrachloroethane 之混合
溶剂来制备. 从热分析结果得知,当 HIQ 的含量低于40% 时,其热分析曲
线仅出现单一Tg点;而当HIQ的含量大于等于40%时,于热分析曲线中则出现
两个Tg点,其中较低温之Tg点则维持于138℃,不受成分之影响而改变,而较
高温之Tg点则从HIQ含量为40%时,为183℃降低至HIQ含量为80%时,为173℃
且其间之相容性随HIQ含量之提高而逐渐之增加. 而HIQ/PAr(60/40)之掺
合物在高于HIQ之Tm点以上315℃持温时,在数分钟内此掺合物由部份相容
变为完全相容之掺合物,可由单一Tg点来证实之;而此掺合物相容性之增加
乃是因HIQ与PAr间具有反应发生,可由核磁共振仪(NMR)得知,且反应初期
是由HIQ内之HQ单位先参与反应而接于PAr上,随后HBA及IA单位才加入反应
而接于PAr上,此外HIQ/PAr(60/40)掺合物之相容性亦可从偏光显微镜(
POM)照片中,anisotropic的液晶相,明显的随持温时间增加而逐渐转变为
isotropic相. 而掺合物的极限黏度有随持温时间而增加,然尚待证实及解
释.
The miscibility of blends of liquid crystalline copolymer of
poly(p-oxybenzoate-co-p-phenyleneisophthalate) (HIQ) with
polyarylate (PAr) has been investigated with differential
scanning calorimetry (DSC). HIQ/PAr blends were prepared by
solution blending of both polymers in a mixed solvent of 50/50
phenol/tetrachloroethane. The phases in blends have been studied
with polarizing microscopy (POM). A single glass transition
temperature was obtained for the HIQ/PAr blends when the weight
ratio of HIQ/PAr in these blends was less than 40%. Two glass
transition temperatures were obtained when the weight ratio of
HIQ in these blends was larger than or equal to 40%. The lower
glass transition temperature around 138℃ remains almost
changed, but the higher glass transition temperature decreased
from 183℃ to 173℃ as the weight ratio of HIQ increasing from
40% to 80%. Annealing blends of HIQ/PAr at 315℃ for a few
minutes, reaction occurred as confirmed by Nuclear Magnetic
Resonance (NMR) spectroscopy. It was found that the HQ in HIQ
reacted with PAr in 3 min, and then HBA and IA reacted with PAr
after 6 min's annealing from both proton and carbon NMR. The
fact that the intrinsic viscosity of HIQ/PAr blends increased
with annealing time needs to be reconfirmed and explained.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT840159005
http://hdl.handle.net/11536/60179
显示于类别:Thesis