980 resultados para ALMASat-EO, Modello termico, ESATAN


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The cloud-point temperatures (T-cl's) of poly(ethylene oxide) (PEO) and poly(ethylene oxide)-block-polydimethylsiloxane (P(EO-b-DMS)) homopolymer and block-oligomer mixtures were determined by turbidity measurements over a range of temperatures (105 to 130degrees), pressures (1 to 800 bar), and compositions (10-40 wt.-% PEO). The system phase separates upon cooling and T-cl was found to decrease with an increase in pressure for a constant composition. In the absence of special effects, this finding indicates negative excess volumes. Special attention was paid to the demixing temperatures as a function of the pressure for the different polymer mixtures and the plots in the T-phi plane (where phi signifies volume fractions). The cloud-point curves of the polymer mixture under pressures were observed for different compositions. The Sanchez-Lacombe (SL) lattice fluid theory was used to calculate the spinodals, the binodals, the Flory-Huggins (FH) interaction parameter, the enthalphy of mixing, and the volume changes of mixing. The calculated results show that modified P(EO-b-DMS) scaling parameters with the new combining rules can describe the thermodynamics of the PEO/P(EO-b-DMS) system well with the SL theory.

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采用FT-IR及NMR技术研究固化催化剂、增塑剂、抗氧剂及聚醚二元醇结构对聚醚聚氨酯热氧降解过程的影响. 增塑剂邻苯二甲酸二丁酯(DBP)在聚醚聚氨酯热氧降解过程中起阻降作用. 而固化催化剂二月桂酸二丁基锡(DBTDL)和三苯基铋(TPB)对聚醚聚氨酯的热氧降解有着截然不同的影响. 以聚乙二醇(PEG)为聚醚二元醇的聚醚聚氨酯与环氧乙烷/四氢呋喃(EO/THF)共聚醚聚氨酯具有相似的降解机理;DBP增塑时PEG聚醚聚氨酯比共聚醚聚氨酯具有较低的热氧稳定性,而硝酸酯增塑时PEG体系比共聚醚体系表现出较高的热氧稳定性.

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To elucidate the mechanism of the catalyzed reaction of co-polyether (EO/THF) with N-100, the interaction and complex formation between reactants and catalysts were investigated by means of NMR spectroscopy. It is shown that the resonance peak of isocyanate carbon splits into two parts when the solutions of N-100 and co-polyether were mixed. The disappearing of proton resonance peak of hydroxyl group in NMR spectra when dibutyltin dilaurate(DBTDL) were added to the copolyether(THF/EO) solution indicates the complex formation, This interaction appears to be a bonding of tin to the oxygen of hydroxyl and make the hydrogen of the hydroxyl group very mobile and active, then exchange with other protons, In the case of triphenyl bismuth(TPB), the high field shift and intensity enhancement of proton peak were observed, which suggest a nucleophilic attack of the bismuth to the hydroxyl hydrogen.

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The special action of TEO solution was investigated by 1D, 2D-NMR in CDCl3. For the present measurements, when the concentration of TEO was higher in CDCl3, the chemical shift difference (Delta delta) and the peak number of C-13 NMR spectrum were changed with increasing the solution concentration, At lower concentration(< 3% V/V ), the peaks will be closed together for -CH2O- resonance carbon and it is not the appearance of the narrowed, When temperature was changed, the Delta delta value was contrary to the solvent effect, So, the shifts of the resonance carbon in the NMR spectra indicated clearly that the complex formation for the system of CDCl3, and TEO molecular interaction were affected by the experiment temperature and the solution concentration.

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用1D-NMR和2D-NMR方法研究了EO/THF共聚醚(TEO)的溶液行为。TEO在浓溶液状态,其溶液浓度不仅使谱峰化学位移值增减,而且使峰型发生较大的变化。当改变温度时,~(13)CNMR谱在高场区有如同溶剂化效应的过程,实验结果表明:浓度与温度使TEO溶液分子内部结构发生变化。2D-NOESY实验表明:在低浓度情况下,TEO分子易与活泼氢溶剂生成配合物,分子间偶极-偶极相互作用受温度和浓度的影响。

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用核磁共振技术研究了环氧乙烷(EO)与四氢呋喃(THF)端羟基液体共聚醚(TEO)的链结构,定量测定了TEO的结构组成参数以及二元组与三元组序列分布。实验结果表明,端羟基液体TEO易形成以E-OH为端基的线型无规交替结构,且序列分布随EO/THF组成比而变化。

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本文合成了聚(环氧乙烷-环氧丙烷-烯丙基缩水甘油醚,三元共聚物,P(EO-PO-AGE)。扭辨分析、DSC、X-射线衍射结果表明,三元共聚物的玻璃化转变温度较低(T_g=-74℃),无定形结构含量~98%,并确定了与LiClO_4组成为Li/O(mole)=0.25的结晶络合物存在。络合物电导行为的研究发现,络合物电导与盐浓度有关,在Li/O(mole)=0.05时具有较大值,室温下电导可达5×10~-5)scm~(-1)。

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本文研究了二甲氧基聚乙二醇(PEGDME)对聚合物电解质膜的影响。结果表明,PEGDME增塑的(环氧乙烷-环氧丙烷-烯丙基缩水甘油醚)三元共聚物-LiClO_4络合物具有较低的玻璃化转变温度,室温导电率≥10~(-4)Scm~(-1),热稳定性及力学性能良好,在100℃下无相分离,室温下在干燥器中放置一年无蠕变。