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Interaction and Enthalpy Recovery Behavior in Polymer Blends of Polysulfone and Carboxylated Polysulfone

机译:聚砜和羧化聚砜聚合物共混物中的相互作用和焓恢复行为

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Polymer blends of a binary system with limited miscibility are a kind of different surface structure polymer blends which main chains are same as one. The blend of polysulfone (PSf) and carboxylated polysulfone (CPSf) had been made in the solvent of dimethylacelamide (DMAc) or N-methylpyrrolidinone (NMP). The chemical polysulfones containing 0.5,1.0,1.5 and 2.0 carboxylated groups per repeat unit were mixed with Udel 300 polysulfone. The equilibrium time of two-phase polymer in solution presents their degrees of limited miscibility. The two- phase polymers could transfer as miscible blends when they had been annealed at 170°C for above 6 days. Annealing of blends below the grass transition temperature (T_g) results in a decrease in enthalpy that is recovered during heating. The enthalpy recovery is visible as an endothermic peak in a differential scanning calorimeter (DSC) scan. The position of this peak depends on the composition of two-phase and on the structure of material itself. Two-sample cells were co-tested in same time for getting several T_g of limited miscible polymer blend and its component respectively. PSf/CPSf polymer blends in liquid-liquid phase separation and molecular weight distribution to be tested by High Performance Gel Permeation Chromatography (GPC). The polymer blends were showing SO-C strength absorbance between 1000-769/cm and 3300-2500/cm to be detected by Infrared Absorption Spectrum (IR) analysis. Therefore, the reaction and enthalpy of limited miscibility between two-phase of polymer blend PSf/CPSf can be described in the paper.
机译:具有有限的混溶性的二元体系的聚合物共混物是一种不同的表面结构聚合物混合物,主要链与一个相同。已经在二甲基酰胺(DMAC)或N-甲基吡咯烷酮(NMP)的溶剂中制备聚砜(PSF)和羧化聚砜(CPSF)的混合物。将每重复单元的0.5,1.0,1.5和2.0羧化基团的化学聚氯砜与udel 300多砜混合。溶液中两相聚合物的平衡时间呈现出有限的混溶性的程度。当它们在6天以上的170℃下退火时,两相聚合物可以作为混溶性共混物转移。在草转变温度(T_G)以下的混合物导致在加热期间回收的焓降低。在差扫描量热计(DSC)扫描中,焓恢复可见作为吸热峰值。该峰的位置取决于两相的组成和材料本身的结构。两种样品细胞同时进行相同的时间,用于分别获得几个有限的混溶性聚合物共混物及其组分。 PSF / CPSF聚合物在液 - 液相分离和分子量分布中共混,得到高性能凝胶渗透色谱(GPC)测试。通过红外吸收光谱(IR)分析,聚合物共混物在1000-769 / cm至3300-2500 / cm之间显示出致SO-C强度吸光度。因此,可以在纸上描述两相之间的两相之间有限的混溶性的反应和焓。

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