The blend system composed of PET and thermotropic liquid crystal copolyester based on hydroxy benzoic acid, terephthalic acid, diacetylnaphthalene and PET was studied. The results indicated that LCP could play the rol...The blend system composed of PET and thermotropic liquid crystal copolyester based on hydroxy benzoic acid, terephthalic acid, diacetylnaphthalene and PET was studied. The results indicated that LCP could play the role of crystal nuclei. The introduction of LCP decreased the melt viscosity of the system and fibrillous structure could be formed in favor conditions.展开更多
A thermotropic liquid crystalline copolyester (LCP) based on p-acetoxy-benzoic acid (49.9mol%), 2,7-diacetoxynaphthalene (22.3 mol%), terephthalic acid (22.3%) and Q-resin (polyethylene 2,6-naphthalene, 5.5%) was prep...A thermotropic liquid crystalline copolyester (LCP) based on p-acetoxy-benzoic acid (49.9mol%), 2,7-diacetoxynaphthalene (22.3 mol%), terephthalic acid (22.3%) and Q-resin (polyethylene 2,6-naphthalene, 5.5%) was prepared via melt transesterification, and then a blend was prepared by physically mixing 40% therm0tropic liquid crystallline copolyester and 60% polyethlene terephthalate (PET). The thermal properties of both-4he LCP and the blend were studied by DSC and the result showed that the various transition temperatures for the blend were rather close to those for pure PET. The thermal stability of LCP, blend and PET was characterized by TGA. The dynamic theological properties of LCP and thc blend were studied by the oscillation test on a rheometric mechanical spectrometer( Instron RM3250) with parallel plate disk. The results showed that the theological behavious of the blend melt exhibit as conventional polymeric melt in the whole experimental frequency range (0.02—12 Hz). However, for the melt展开更多
基金Projects supported by the National Natural Science Foundation of China and Polymer Physics Laboratory (Beijing), Academia Sinica.
文摘The blend system composed of PET and thermotropic liquid crystal copolyester based on hydroxy benzoic acid, terephthalic acid, diacetylnaphthalene and PET was studied. The results indicated that LCP could play the role of crystal nuclei. The introduction of LCP decreased the melt viscosity of the system and fibrillous structure could be formed in favor conditions.
文摘A thermotropic liquid crystalline copolyester (LCP) based on p-acetoxy-benzoic acid (49.9mol%), 2,7-diacetoxynaphthalene (22.3 mol%), terephthalic acid (22.3%) and Q-resin (polyethylene 2,6-naphthalene, 5.5%) was prepared via melt transesterification, and then a blend was prepared by physically mixing 40% therm0tropic liquid crystallline copolyester and 60% polyethlene terephthalate (PET). The thermal properties of both-4he LCP and the blend were studied by DSC and the result showed that the various transition temperatures for the blend were rather close to those for pure PET. The thermal stability of LCP, blend and PET was characterized by TGA. The dynamic theological properties of LCP and thc blend were studied by the oscillation test on a rheometric mechanical spectrometer( Instron RM3250) with parallel plate disk. The results showed that the theological behavious of the blend melt exhibit as conventional polymeric melt in the whole experimental frequency range (0.02—12 Hz). However, for the melt