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Study of the effects of melt blending speed on the structure and properties of phosphate glass/polyamide 12 hybrid materials

机译:熔融共混速度对磷酸盐玻璃/聚酰胺12杂化材料结构和性能影响的研究

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The effects of melt blending conditions on the rheology, crystallization kinetics, and tensile properties of phosphate glass/polyamide 12 hybrid systems were investigated for the first time, to understand their complex processing/structure/property relationships. Increasing amounts of phosphate glass (Pglass) caused an increase in hybrid viscosity. Hybrid viscosity was also affected by processing (melt-mixing) speed and small-amplitude oscillatory shear tests and scanning electron microscopy (SEM) were used for a qualitative examination of the hybrid morphology. The addition of Pglass caused a decrease in hybrid crystallinity that was unaffected by processing (melt-mixing) speed. The two-parameter Avrami equation was applied successfully to the hybrid systems, and Pglass was found to nucleate the growth of polyamide 12 crystals. The nucleation effect was found to be dependent on concentration and processing history. The tensile properties of the hybrids were also studied, and the Halpin-Tsai equation was applied to the results to determine the maximum packing fraction of the Pglass. These results provide a basis for the prediction of hybrid mechanical properties for different Pglass concentrations and processing histories. Further, because of their facile processibility and desirable characteristics, such as the strong physicochemical interaction between the hybrid components and favorable viscoelasticity, these Pglass/polyamide 12 hybrids can be used as model systems for exploring feasibility of new routes for driving organic polymers and inorganic Pglass to self-assemble into useful organic/inorganic hybrid materials. (c) 2007 Wiley Periodicals, lnc.
机译:首次研究了熔融共混条件对磷酸盐玻璃/聚酰胺12杂化体系的流变性,结晶动力学和拉伸性能的影响,以了解其复杂的加工/结构/特性关系。磷酸盐玻璃(Pglass)的增加导致混合粘度的增加。杂化粘度也受加工(熔融混合)速度的影响,小振幅振荡剪切试验和扫描电子显微镜(SEM)用于杂化形态的定性检查。 Pglass的添加导致混合结晶度的降低,而不受加工(熔融混合)速度的影响。两参数Avrami方程已成功应用于混合系统,并且发现Pglass使聚酰胺12晶体的生长成核。发现成核作用取决于浓度和加工历史。还研究了杂种的拉伸性能,并将Halpin-Tsai方程应用于结果以确定Pglass的最大堆积率。这些结果为预测不同Pglass浓度和加工历史的混合机械性能提供了基础。此外,由于它们的易加工性和理想的特性(例如杂化组分之间的强烈物理化学相互作用和良好的粘弹性),这些Pglass /聚酰胺12杂化物可以用作模型系统,以探索驱动有机聚合物和无机Pglass的新路线的可行性自组装成有用的有机/无机杂化材料。 (c)2007年Wiley期刊公司

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