首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Effect of the Liquid-Liquid Phase Separation on the Crystallization Behavior and Mechanical Properties of Poly(ethylene-ran-vinyl acetate) and Paraffin Wax Blend
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Effect of the Liquid-Liquid Phase Separation on the Crystallization Behavior and Mechanical Properties of Poly(ethylene-ran-vinyl acetate) and Paraffin Wax Blend

机译:液相分离对聚乙烯-醋酸乙烯酯和石蜡蜡共混物结晶行为和力学性能的影响

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摘要

The effect of liquid-liquid phase-separation (LLPS) on the crystallization behavior and mechanical properties of poly(ethylene-ran-vinyl acetate) (EVA) with various amounts of vinyl acetate and paraffin wax blend was investigated. The blend of EVA-H (9.5% vinyl acetate) and the wax became homogeneous at temperatures greater than its upper critical solution temperature (UCST) (98 deg C), and an LLPS was observed between UCST and the melting point of 88 deg C for EVA-H in the blend. The existence of the LLPS is attributed to the relatively large amount of the hydrophilic component of vinyl acetate in EVA, although the molecular weight of the was was just 560. However, LLPS did not occur for the EVA/wax blend when the content of vinyl acetate in EVA was less than 3%. This behavior was explained by using the Flory-Huggins lattice model with an effective interaction parameter. The degree of crystallinity of EVA-H in the EVA-H/wax blend, judged from a melting endothermic peak in differential scanning calorimeter (DSC) thermograms obtained during heating runs, decreased with increasing duration time in the LLPS region. The flexural modulus of the EVA/wax blend became maximum at certain blend composition (about 30 approx 40 wt % EVA depending upon the amount of vinyl acetate). This behavior can be explained by the fact that this blend composition has the largest relative degree of crystallinity of EVA measured by DSC and wide-angle X-ray scattering method. We found that the flexural modulus of the binder itself is directly related to that of a feedstock consisting of larger amounts of metal powder and the binder, which can help someone to develop a suitalbe binder system for a powder injection molding process.
机译:研究了液-液相分离(LLPS)对含不同量的醋酸乙烯酯和石蜡共混物的聚(乙烯-醋酸乙烯酯)(EVA)的结晶行为和力学性能的影响。 EVA-H(9.5%醋酸乙烯酯)和蜡的共混物在高于其最高临界溶解温度(UCST)(98摄氏度)的温度下变得均匀,并且在UCST与熔点88摄氏度之间观察到LLPS适用于EVA-H。 LLPS的存在归因于EVA中醋酸乙烯酯的亲水成分相对较多,尽管其分子量仅为560。但是,当乙烯基含量为EVA /蜡共混物时,LLPS不会发生EVA中的乙酸盐少于3%。通过使用具有有效交互参数的Flory-Huggins晶格模型解释了此行为。根据在加热运行期间获得的差示扫描量热仪(DSC)差示热分析图中的熔融吸热峰判断,EVA-H /蜡共混物中EVA-H的结晶度随LLPS区域中持续时间的增加而降低。在某些共混物组成下,EVA /蜡共混物的挠曲模量最大(取决于醋酸乙烯酯的量,大约为30 wt%到40 wt%EVA)。这种现象可以通过以下事实来解释:该混合物组合物具有通过DSC和广角X射线散射法测量的EVA的最大相对结晶度。我们发现,粘合剂本身的挠曲模量与由大量金属粉末和粘合剂组成的原料的挠曲模量直接相关,这可以帮助某人开发适合用于粉末注射成型工艺的粘合剂体系。

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