共查询到19条相似文献,搜索用时 78 毫秒
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采用二甲基硅氧烷-b-乙二醇嵌段共聚物(DMS-b-OE)对聚二甲基硅氧烷/聚氨酯(PDMS/PU)共混体系的增容,重点研究了增容共混体系的微观形态结构和力学性能之间的关系。扫描电子显微镜、动态力学分析和力学性能测试结果表明:DMS-b-OE对PDMS/PU具有优良的增容作用,改善了PDMS/PU共混体系的相容性,提高了该共混物的力学性能。其抗张强度由3.4MPa提高到7.6MPa。 相似文献
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采用流延成膜法制备了4种增容改性的聚偏氟乙烯(PVDF)与聚醚型热塑性聚氨酯弹性体(TPU)固体共混物(PVDF/TPU).结合分子动力学模拟研究了PVDF/TPU的相互作用,并探讨了其增容机理.研究结果表明,与PVDF/TPU-1,PVDF/TPU-2及PVDF/TPU-3相比,加入γ-缩水甘油醚氧丙基三甲氧基硅烷-端氨基丁腈橡胶(GPTMS-ATBN)后,PVDF/TPU-4的2个玻璃化转变温度(Tg)相互靠近,两相界面存在分布梯度,构成了双相连续的微观结构,表明GPTMS-ATBN增容PVDF/TPU共混物具有显著效果.同时,PVDF/TPU-4的共混结合能大幅减小,二面角扭转能、键角弯转能等明显增大,表明PVDF及TPU与GPTMS-ATBN之间发生相互作用.傅里叶红外光谱(FTIR)及X射线光电子能谱(XPS)证实了GPTMS-ATBN增容PVDF/TPU的机理为GPTMS-ATBN中ATBN链段与PVDF彼此缠绕,相互混溶,而水解后两端GPTMS中大量羟基与TPU分子链中氨基甲酸酯键及醚键相互吸附,从而生成了氢键. 相似文献
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环氧乙烷-四氢呋喃共聚醚基热塑性聚氨酯弹性体氢键体系的定量研究 总被引:1,自引:0,他引:1
氢键为热塑性聚氨酯弹性体内的重要键合力特征。该文基于氢键所引起基团的频移,以FTIR为主要的研究手段,并结合通过动态力学性能(DMA)研究所建立的评估硬段与软段之间混溶的定量方程,对所合成的以环氧乙烷-四氢呋喃无规共聚醚、2,4-甲苯二异氰酸酯以及1,4-丁二醇为原料的热塑性聚醚聚氨酯弹性体的氢键体系进行了定量化研究。结果表明,大约有30%的硬段混溶进入炊段相对软段的醚氧产生氢键作用,主要的氢键包括硬段羰基与硬段氨基之间的氢键以及硬段烷氧与硬段氨基之间的氢键,仍发生在硬段岛区内。 相似文献
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聚氧乙烯功能基复合修饰聚氨酯合成及其血液相容性研究 (Ⅱ)──聚氨酯-接枝-聚氧乙烯氨基酸衍生物 总被引:4,自引:0,他引:4
采用以磺酸基为末端基的聚氧乙烯(PEO)接枝聚醚氨酯和氨基酸反应,将赖氨酸(Lys)和酪氨酸(Tyr)通过PEO为"间隔臂"固定在聚醚氨酯上,制备了氨基酸和PEO复合修饰的聚醚氨酯PEU-g-PEO-SO2Lys和PEU-g-PEO-SO2Tyr.通过血小板粘附试验对材料的体外抗凝血性进行了初步评价.研究结果表明,采用具有选择性吸附纤溶酶原功能的赖氨酸和PEO复合修饰聚氨酯,不仅减少了材料表面血小板粘附量,而且减少了材料表面血栓的形成量. 相似文献
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选取了2种分子组成相同硬度不同的热塑性聚氨酯(TPU),将二者共混后得到了不同硬度的TPU共混物,探究了TPU共混物的硬度与冲击性能的关系。通过落球冲击试验、感压纸测试和冲击前后样品表面温度测试对TPU共混物的冲击性能进行表征。当样品的硬度越低时,峰值冲击力越小,冲击持续时间越长,冲击时的最大应变越大,冲击时样品的受力面积增大,对应的冲击时的峰值应力值减小。不同硬度样品的能量耗散比差别不大,但随硬度降低呈现小幅度上升趋势。冲击后的样品表面温度较冲击前有所上升,说明样品通过热的形式耗散了部分能量,各硬度样品的温度差值较为接近,这与不同硬度样品的能量耗散比的变化规律是相似的。所有样品均具有较高的能量耗散比,TPU能耗散大部分冲击能量,具有良好的抗冲击性能。 相似文献
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通过一步反应,直接合成了α,ω-3-二(3-氨基丙基)-聚三氟丙基甲基硅氧烷,并进行了表征,然后将其与聚四氢呋喃二醇(PTMG)作为混合软段,合成了不同FPS含量改性的聚醚型聚氨酯脲(FSPUU).研究了FSPUU膜的表面性能和形态结构,实验结果显示FSPUU膜的表面呈现憎水性,与F元素富集于表面有关.将FSPUU膜浸没于CoCl2-20%H2O2溶液中进行了为期21天的加速氧化处理,并估算了PTMG软段的降解程度.与PDMS改性PUU(MSPUU)相比,FSPUU的氧化稳定性增强,与FSPUU在水和H2O2溶液中较低的溶胀率以及透水率有关.此外,FSPUU膜显示出较好的力学性能,其拉伸强度和断裂伸长率均高于MSPUU. 相似文献
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聚β—羟基丁酸酯/聚醋酸乙烯酯共混体系的相容性与结晶行为 总被引:4,自引:0,他引:4
研究了制样过程聚β-羟基丁酸酯/聚醋酸乙烯酯共混体系的相容性和结晶行为的影响。DSC、SAXS、POM等实验结果表明,PHB/PVAc共混物经溶液成膜后处于分相的状态,PVAc对PHB的结晶能力影响不大;而经融处理后,PHB/PVAc共混物则处于相容的均相状态,随PVAc的含量含量的增加。 相似文献
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Yumiko Nakano Yuezhen Bin Mami Bando Teruo Nakashima Tsumuko Okuno Hiromichi Kurosu Masaru Matsuo 《Macromolecular Symposia》2007,258(1):63-81
Summary: The origins of the thermal and mechanical properties of chitosan and poly(vinyl alcohol) (PVA) with inter- and intra-hydrogen bonds were investigated systematically by using X-ray, DSC, positron annihilation and viscoelastic measurements. Based on their individual properties, the characteristics of the blend films were estimated in relation to their morphology and mechanical properties as a function of chitosan content. The characteristics of the blend films were also analyzed in terms of the deviation from a simple additive rule of chitosan and PVA content. These results suggested that the miscibility of chitosan and PVA could be ensured by entanglement of the amorphous chain segments of chitosan and PVA. Further detailed analysis revealed that the chitosan content on the film surface is higher than that of the admixture content of chitosan after elongation, although the chitosan and PVA chains were crystallized independently. The elongation could be achieved for the blend films whose PVA content was higher than 50% and the drawn blend films were transparent. Thus, it may be expected that sufficiently entangled meshes formed between chitosan and PVA amorphous chains within the film, the PVA content being higher than 50%, were maintained under the elongation process. 相似文献
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Blend films of poly(vinyl alcohol) (PVA) and sodium alginate (NaAlg) were prepared by casting from aqueous solutions. This blend films were characterized by tensile strength test, Fourier transform infrared spectroscopy (FT‐IR), thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The miscibility in the blends of PVA and NaAlg was established on the basis of the thermal analysis results. DSC showed that the blends possessed single, composition‐dependent glass transition temperatures (Tgs), indicating that the blends are miscible. FT‐IR studies indicate that there is the intermolecular hydrogen bonding interactions, i.e. –OH…?OOC– in PVA/NaAlg blends. The blend films also exhibited the higher thermal stability and their mechanical properties improved compared to those of homopolymers. 相似文献
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A. Al-Kahtani Ahmed J. Jayaraju B. S. Sherigara H. S. Naik Bhojya J. Keshavayya 《高分子科学杂志,A辑:纯化学与应用化学》2013,50(12):1055-1063
The miscibility of dextran (Dex)/poly(vinyl pyrrolidone) (PVP) in solution has been investigated in different percentages of the blend components by employing viscosity, density, refractive index and ultrasonic velocity methods at 30 and 50°C, respectively. Ultrasonic velocity and adiabatic compressibility against blend compositions were plotted and found to be linear. The interaction parameters μ and α have been obtained by using the viscosity data. The results indicated that the Dex/PVP blends are miscible in the entire composition range and it was further confirmed by ultrasonic velocity, density, refractive index studies. In addition, the results revealed that the change in temperature has no significant effect on the miscibility of Dex/PVP polymer blend. 相似文献
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P. Poomalai 《高分子科学杂志,A辑:纯化学与应用化学》2013,50(10):1399-1407
Blends of poly(methyl methacrylate) (PMMA) and thermoplastic polyurethane (TPU) in different compositions viz., 95/5, 90/10, 85/15 and 80/20 (by wt/wt, % of PMMA/TPU) were blended by melt mixing using a twin‐screw extruder. All the PMMA/TPU blends have been characterized for physico‐mechanical properties such as density, melt flow index, tensile behavior and izod impact strength. The impact strength of the PMMA/TPU blends were found to increase significantly with an increase in the percentage of TPU up to 20%, by retaining the tensile strength of PMMA. The effect of chemical aging on the performance of blends has been studied. 相似文献
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Xiaoxiang Zhu Bo‐Geng Li Linbo Wu Yougui Zheng Shiping Zhu Klaus‐Dieter Hungenberg Stefan Müssig Birgit Reinhard 《大分子反应工程》2008,2(4):321-333
A kinetic model for the graft polymerization of VAc from PEG was developed using the method of moments. Experiments were carried out to verify the model. The effect of various parameters, such as initiator concentration, temperature, and PEG molecular weight on the polymerization kinetics was examined. Polymerization rate, grafting efficiency, graft copolymer molecular weight, and PEG grafted ratio were measured. The model was in good agreement with the experimental data. No gel effect was observed at the studied PEG/VAc weight ratio of 1:1. The chain transfer constant to PEG was correlated to be . The model was also applied in a semi‐batch reaction and compared with the experimental results.
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细菌视紫红质/聚乙烯醇复合膜的制备及相关功能研究 总被引:2,自引:0,他引:2
细菌视紫红质(bR)是一种独特的光敏蛋白,具有光致变色和光驱质子泵功能 。将bR蛋白包埋于聚乙烯醇(PVA)基质中,制备了bR/PVA复合膜。利用紫外-可 见分光光度计和自制的毫秒级动力学光谱仪,检测了样品的吸收光谱和光循环M中 间体在脉冲光激发下随时间的变化;同时,利用凝胶扫描成像仪及相关分析软件考 察了样品成膜后的均匀程度。实验表明:bR/PVA复合膜具有良好的均匀性、透明性 和力学性能,而且bR蛋白保持了原有的生物活性和光学性质,bR与M中间体之间能 达到一种光可控制的双稳态,M中间体的寿命也得到了显著的延长,证实了bR可以 提供一个用于信息存储的模型材料。 相似文献
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Luciana S. Peixoto Fabricio M. Silva Mariana A. L. Niemeyer Gaudencio Espinosa Príamo A. Melo Márcio Nele José Carlos Pinto 《Macromolecular Symposia》2006,243(1):190-199
Poly(vinyl alcohol), PVA, is the most frequently used material in embolization of tumors, aneurisms and arteriovenous malformations due to its low toxicity, good biocompatibility and desirable physical properties. It is well known that PVA particles cannot be prepared by direct polymerization of vinyl alcohol. Its synthesis is typically performed by the suspension polymerization of vinyl acetate to produce poly(vinyl acetate), PVAc, followed by the saponification of the PVAc particles. This work shows that, using the suspension polymerization technique, it is possible to obtain spherical particles with a core-shell structure of PVA/PVAc with regular morphology, instead of particles with irregular shapes and sizes, as usually found in many commercial embolization products. Therefore, this work presents the production of PVA/PVAc spherical particles that can be used to occlude blood vessels, eliminating the disadvantages of commercial PVA. In vivo clinical tests with white “New Zealand” rabbits undergoing kidney inflammation reaction have shown that these spherical particles are much more efficient for vascular embolization. 相似文献
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用扭摆分析研究了EVA树脂和PVC共混体系中,VA含量和共混物组成对其相容性的影响.共混的两组分的分子间相互作用对其相容性有关键的影响.用FTIR测定羰基伸缩振动谱带的位移,可表征EVA-PVC分子链间的相互作用. 相似文献