69 resultados para Multiplicação dos Pães

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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本工作旨在通过共聚、共混技术制备酚酞型聚芳醚砜共聚物(PP/BiS-T) PES和共混物(PPS/PES-C)、PPO/PES-C,以便改善酚酞型聚芳醚砜(PES-C)的加工性能(特别是注射加工性能)和耐溶剂性能。通过研究共聚物和共混物的微观结构,聚集态结构与性能的关系,探索改善酚酞型聚芳醚硕性能的有效途径第一部分:(PP/BiS-T) PES共聚物的合成、结构与性能(PP/BiS-T) PES共聚物是以4,4'二氯二苯砜(DCDPS)、酚酞(PP)和4,4'-二羟基二苯硫醚(BiS-T)为单体,采用固体无水K_2CO_3/NMP/TMSO_2 混合溶剂反应体系合成的。共聚反应规律研究表明:在NMP/TMSO_2混合溶剂中,共聚反应可以顺利进行,避免了交联反应的发生,并成功地合成了高分子量的(PP/BiS-T) PES共聚物。DSC分析结果表明(PP/BiS-T) PES系列属于无定形的均相共聚物体系,每一组成比例对应的共聚物只具有一个玻璃化转变温度。且随组成比例的改变呈线性变化,TBA分析结果与DSC基本一致,并证实了(PP/BiS-T) PES属于均相共聚物体系,而不是均聚物的共混物。TG分析表明:共聚物具有良好的耐热氧化稳定性BiS-T链节在分子链中起到了提高自身抗氧性的作用。1R光谱对共聚物的结构进行表征。~(13)C-NMR分析确认共聚物多属于无规共聚物。动态力学试验表明共聚物(PP/BiS-T) PES以及PES-C,在-100 ℃附近和0-100 ℃,存在着次级松驰与转变,并发现水分子的存在对这种转变(次级松驰)有一定的影响。共聚物的熔融流动性试验和溶解性试验表明共聚物(PP/BiS-T) PES具有稍好于PES-C的熔融流动性;溶解性与PES-C类似。力学试验说明共聚物属于强而硬类型的聚合物。第二部分:PPS/PES-C共混物的制备、聚集态结构与性能PPS/PES-C共混物是以联苯/二苯硕混合物为溶剂,采用溶液沉析方法制备的,DSC、WAXD,SEM和1R分析手段对共混物的聚集态结构和微观结构进行了表征。DSC分析认为共混物属于多相体系,PPS的结晶性随着PES-C含量增加而降低。DSC和SEM观察结果表明:相转变发生在PPS占40%左右。PPS占25%时,DSC曲线呈现出界面相玻璃化转变温度。共混物具有良好的耐热氧化稳定性和耐热分解稳定性。微晶大小计算结果:PES-C存在导致了PPS微晶大小降低。WAXD曲线表明PPS占50%,共混物中的PPS具有较好的结晶性。SEM观察发现:随着PES-C含量增加,PES-C由分散相(PES-C50%)变为连续相(PES-C70%)。PPS占50%或低于50%时,共混物体系不仅发生了微观相分离,而且发生了宏观相分离。M.I.指数表明共混物中PPS为连续相时,共混物具有良好的熔融流动性。溶解性试验结果:共混物具有较好的耐溶剂性。第三部分:PPO/PES-C共混物的合成、结构与性能 PPO/PES-C共混物系用溶液-涂膜法,以氯彷为溶剂制备的。讨论了由同一共混物溶液浓度下制备的共混物的互溶性随组成的改变而变化。DSC分析结果:PPO/PES-C属于部分相溶性体系。利用Fox方程推导式计算结果表明PPO在富PES-C相中具有良好的分散性;而PES-C在富PPO相中的分散性较差。共混物(PPO/PES-C)试样经丙酮浸泡后,PPO(>50%)发生了溶剂诱导结晶现象,同时丙酮促使共混物发生完全相分离。结晶溶化热显示共混物中少量的PES-C存在有利于PPO的溶剂诱导结晶。TG分析表明共混物具有良好的耐热分解稳定性和耐热氧化分解稳定性。偏光显微镜下观察到PPO球晶的存在。SEM和FT-1R分别对共混物的形态结构和微观结构进行了表征。WAXD试验证实了丙酮处理的(PPO/PES-C)(70/30),(90/10)共混物中PPO的结晶性。溶解性试验表明:PPO掺入有助于 PES-C的耐溶剂性提高。

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The interface of Ti/InP(110) was studied by X-ray photoelectron spectroscopy (XPS) and ultraviolet photoelectron spectroscopy (UPS). It is evident that deposition of Ti on the surface of InP(110) at room temperature introduced a break of the In-P bond and a diffusion of In atoms into the Ti film. The interaction of Ti and P occurred at a temperature of 350-degrees-C.

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Blends of poly(ether-sulfone) (PES) and poly(phenylene sulfide) (PPS) with various compositions were prepared using an internal mixer at 290degreesC and 50 rpm for 10 min. The thermal and dynamic mechanical properties of PES/PPS blends have been investigated by means of DSC and DMA. The blends showed two glass transition temperatures corresponding to PPS-rich and PES-rich phases. Both of them decreased obviously for the blends with PES matrix. On the other hand, T-g of PPS and PES phase decreased a little when PPS is the continuous phase. In the blends quenched from molten state the cold crystallization temperature of PPS was detected in the blends of PES/PPS with mass ratio 50/50 and 60/40. The melting point, crystallization temperature and the crystallinity of blended PPS were nearly unaffected when the mass ratio of PES was less than 60%, however, when the amount of PES is over 60% in the blends, the crystallization of PPS chains was hindered. The thermal and the dynamic mechanical properties of the PPS/PES blends were mainly controlled by the continued phase.

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Cloud-point curves reported for the system polyethersulfone (PES)/phenoxy were calculated by means of the Sanchez-Lacombe (SL) lattice fluid theory. The one adjustable parameter epsilon(12)*/k (quantifying the interaction energy between mers of the different components) can be evaluated by comparison of the theoretical and experimental phase diagrams. The Flory-Huggins (FH) interaction parameters are computed based on the evaluated epsilon(12)*/k and are approximately a linear function of volume fraction and of inverse temperature. The calculated enthalpies of mixing of PES/phenoxy blends for different compositions are consistent with the experimental values obtained previously by Singh and Walsh [1].

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Copolymers based on monomers phenolphthalein (PP)/4,4'-thiodiphenol (Bis-T)/4,4'-dichlorodiphenylsulfone (DCDPS) were prepared by a route involving the toluene, N-methyl-2-pyrrolidone and anhydrous potassium carbonate synthesis. The range of optimum reaction temperature was between 185 and 195 degrees C. The copolymers were characterized by C-13 NMR, differential scanning calorimetry (DSC) and torsion braid analysis. It was found that all of the copolymers were random and homogeneous and their glass transition temperatures (T-g) decreased linearly with an increase of Bis-T contents in the copolymers. The thermal stability determined by thermogravimetry analysis in air atmosphere indicated that the copolymer had better resistance to thermo-oxidative degradation. Dynamic mechanical measurement showed that (PP/Bis-T) PES copolymers containing 0-50 mol% of Bis-T components had two secondary relaxations. (C) 1998 Elsevier Science Ltd. All rights reserved.

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Five narrowly distributed fractions of phenolphthalein poly(ether sulfone) (PES-C) were studied in CHCl3 by both static and dynamic laser light scattering (LLS) at 25 degrees C. The dynamic LLS showed that the PES-C samples contain some large polymer clusters as in previously studied phenolphthalein poly(ether ketone)(PEK-C). These large clusters can be removed by a 0.1-mu m filter. Our results showed that [R(g)(2)](1/2)(z) = (3.35 +/- 0.13) x 10(-2) M(w)((0.52 +/- 0.03)) and [D] = (2.26 +/- 0.02) x 10(-4)M(w)-((0.54) +/- 0.03)) with [R(g)(2)](1/2)(z), M(w) and [D] being the z-average radius of gyration, the weight-average molecular weight, and the z-average translational diffusion coefficient, respectively. A combination of static and dynamic LLS results enabled us to determine D = (2.45 +/- 0.04) x 10(-4)M-((0.55 +/- 0.05)), where D and M correspond to monodisperse species. Using this scaling relationship, we have successfully converted the translational diffusion coefficient distribution into the molecular weight distribution for each of the five PES-C fractional The weight-average molecular weights obtained from dynamic light scattering have a good agreement with that obtained from static laser light-scattering measurements.

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用13C-NMR谱和二维异核化学位移相关谱(HETCOR)归属了酞侧基聚芳醚砜(PES-C)的1H-NMR谱峰,并经二维同核化学位移相关谱(COSY)验证.对原13C-NMR谱峰归属作了部分修正.二维同核及异核相关谱为PES-C的碳、氢核磁谱峰归属提供了重要信息.由PES-C的核磁谱图可见其链结构的规整性

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The developments of physical aging in phenolphthalein poly(aryl-ether-ketone) (PEK-C) and poly(aryl-ether-sulfone) (PES-C) with time at two aging temperatures up to 20 K below their respective glass transition temperatures (T-g = 495 and 520 K) have been studied using differential scanning calorimetry (DSC). Substantial relaxation within the aging course of several hours were observed by detecting T-g decreasing during physical aging process at the two aging temperatures. The relaxation processes of both polymers are extremely nonlinear and self-retarding. The time dependencies of their enthalpies during the initial stages of annealing were approximately modeled using the Narayanaswamy-Tool model. The structure relaxation parameters obtained from this fitting were used to predict the possibility of physical aging occurring at their respective using temperatures. (C) 1995 John Wiley and Sons, Inc.

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PES/PC共混体系的相容性与力学性能姜振华,马荣堂,寇喜春,安立佳(吉林大学化学系长春)(中国科学院长春应用化学研究所长春130022)关键词聚醚砜,聚碳酸酯,共混物,力学性能聚醚砜(PES)是一种性能优异的特种工程塑料,它具有强度高、刚性大、耐热...

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研究了聚芳醚砜(PES-C)/聚苯硫醚(PPS)共混物的聚集态结构与熔融流动性以及两者之间的内在关系。结果表明,PES-C/PPS共混体系属于多相体系,PES-C占50%时,PPS成为连续相,共混物在该组成比例下具有良好的熔融流动性。

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From the perspective of a polymer solution, the rheological properties of the popular polyethersulfone (PES)/N-methyl-2-pyrrolidone (NMP)/nonsolvent (NS) membrane-forming system were investigated thoroughly with a controlled stress rheometer (HAAKE RS75, Germany). The scope of the study included measurements of the controlled-stress flow curve, creep recovery, and dynamic oscillation. H2O, 1-butanol, ethylene glycol, and diethylene glycol were used as NS additives. The effects of the polymer concentration and the quality of the solvent mixture, as characterized by the approaching ratio, on the rheological behavior of the dopes were studied. Up to 38 wt % PES and extremely adjacent to the phase separation (i.e., the approaching ratio of the dope was 0.95), the viscous property dominated all the dopes, which behaved as Newtonian fluids. Moreover, all the membrane-forming dopes investigated were in the crossover regime in the semidilute region, in which the chains were overlapping but unentangled. (C) 2001 John Wiley & Sons, Inc.

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