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1.
侧基含磷阻燃共聚酯/BaSO_4纳米复合材料的合成与性能研究 总被引:2,自引:0,他引:2
采用原位聚合法(in-situpolymerization),由对苯二甲酸(TPA)、乙二醇(EG)、阻燃单体9,10-二氢-9-氧杂-10-磷酰杂菲-丁二酸(DDP)和纳米BaSO4制备了侧基含磷阻燃共聚酯/BaSO4纳米复合材料,对反应产物结构进行了表征.通过对产物燃烧和热稳定性的研究,发现产物具有良好的阻燃和耐熔滴性能. 相似文献
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Six samples of linear high randomness 60PHB/ PET thermotropic liquid crystal copolyesters are made by melt copolymerization at 290℃ , whose randomness about 0.955 is measured by the discernible 'H-NMR spectrometer. High tenacity, high module fiber is prepared by melt spinning in liquid crystal phase. The effect of molecular weight, shear rate, temperature as well as spinning drawn ratio on the mechanical behavior of 60PHB / PET copolyester fiber are shown that, lower shear rate (2~ 10 s~(-1)), higher temperature melting (300℃ ), lower temperature spinning (280℃ ) and higher molecular weight are favourable to the increase of the fiber mechanical properties. With the variance of drawn ratio, fiber mechanical property has a transition point due to traversion from shear-orientation to drawn-orientation. The copolyester fiber has high crystallinity, high orientation at the crystalline region, high chain orientation and high regular fibrillar structure. 相似文献
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PET-HBT嵌段热致性液晶共聚酯的合成 总被引:1,自引:0,他引:1
液晶高分子材料具有相当高的强度和模量,被誉为当代超级工程塑料.以对羟基苯甲酸甲酯、1,4-丁二醇为主要原料,经熔融酯交换合成双-对羟基苯甲酸丁二醇酯(BBHB);以四氯乙烷为溶剂,采用溶液缩聚法将过量的BBHB与对苯二甲酰氯(TPC)合成端基为BBHB的齐聚物(PHBT);以对苯二甲酸二甲酯与乙二醇为原料,经熔融酯交换合成对苯二甲酸双β-羟乙酯(BHET),然后采用溶液缩聚法将BHET与少量的TPC合成端基为TPC的齐聚物(PTET);最后以PHBT与PTET为原料,以四氯乙烷为溶剂,采用溶液缩聚法合成目标共聚酯(PET-HBT)。研究了共聚酯的双折射现象及热行为;用偏光显微镜观察了试共聚酯的织态结构并用FTIR表征了共聚酯的微观结构. 相似文献
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The non-isothermal crystallization kinetics of poly(ethylene terephthalate) (PET) modified by poly (ethlene glycol) (PEG) were determined by DSC. The dual linear regression method was used to evaluate the relationship between the reciprocal of t 1/2 ( the half life of crystallization) and the appropriate temperature variable. The parameters such as the activation energy (Ed) for transport, the equilibrium melting temperature (T_m~0),the nucleation parameter (ψ),themaximum crystallization temperature (T_(e, max)), and the kinetic crystallizability (G) for the copolyesters were obtained. The influence of the PEG content in PET chains on the parameters characterizing crystallization kinetics and crystallization thermodynamics was discussed. 相似文献
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Liancai Wang Xiangjun Bi Aiying Zhang Jianye Zhou 《Polymer Degradation and Stability》2006,91(9):2220-2228
A series of biodegradable aliphatic/aromatic copolyesters, poly(butylene terephthalate)-co-poly(butylene cyclohexanedicarboxylate)-b-poly(ethylene glycol) (PTCG), were prepared by a two-step melt polycondensation method and characterized by means of GPC, FTIR, NMR, DSC, TGA, etc. The effects of aliphatic ester content on the physical, mechanical and thermal properties, as well as in vitro and in vivo degradation behaviors were investigated. The decrease in mechanical strength was observed with an increase in poly(butylene cyclohexanedicarboxylate) (PBC) molar fraction. DSC results showed one melting point and two glass transition temperatures in all samples, and the melting temperature was found to go down gradually as more cyclohexanedicarboxylic acid (CHDA) was added. During the in vitro and in vivo degradation processes, erosion of the surface was dominant as evidenced by scanning electron microscopic observations. The copolyesters containing many CHDA units were featured by the higher water uptake and faster degradation due to much richer amorphous phase within them. 相似文献