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首页> 外文期刊>Journal of Applied Polymer Science >Influence of type of compatibilizer on the rheological and mechanical behavior of LCP/TP blends under different stationary and nonstationary shear conditions
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Influence of type of compatibilizer on the rheological and mechanical behavior of LCP/TP blends under different stationary and nonstationary shear conditions

机译:增容剂类型对不同静态和非静态剪切条件下LCP / TP共混物流变和力学行为的影响

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摘要

The addition of small amounts of liquid-crystalline polymers to thermoplastics leads to the formation of in situ-reinforced materials, with improved processability and mechanical properties. Nevertheless, the lack of adhesion between the thermoplastic and the liquid-crystalline polymer often occurs, thus requiring the use of compatibilizers. In this case, the results of several previous works show that there is an improvement of strength, usually accompanied by a decrease of toughness and, thus, the interest of LCP/TP blends for industrial applications will certainly increase if both strength and toughness are obtained. Additionally, the emphasis of previous studies has been on the evaluation of the properties of the blend under stationary conditions and not under non-stationary ones, which are, in fact, those most relevant to processing sequences. Thus, the present work focuses on the influence of type of compatibilizer on the mechanical and rheological properties of polypropylene/LCP blends under nonstationary conditions. In terms of mechanical properties, the traditional increase of tensile strength was obtained for all compatibilizers, which was essentially due to the formation, during processing, of thinner and longer fibrils of LCP dispersed in the matrix than those observed for the noncompatibilized blends. Additionally, an improvement of the impact strength and flexural modulus was also observed for the blend in which a compatibilizer with an elastomeric nature was used. Rheologically, the experiments most sensitive to the structure were those performed in transient shear, with an increase of the transient stress (in the form of an overshoot) of different magnitudes being observed for the different compatibilizers. (c) 2005 Wiley Periodicals, fnc.
机译:向热塑性塑料中添加少量液晶聚合物可导致原位增强材料的形成,并具有改善的可加工性和机械性能。然而,热塑性塑料和液晶聚合物之间经常发生缺乏粘合的情况,因此需要使用相容剂。在这种情况下,以前的几项研究结果表明,强度得到了改善,通常伴随着韧性的降低,因此,如果同时获得强度和韧性,则LCP / TP共混物对工业应用的兴趣肯定会增加。另外,先前研究的重点是在固定条件下而不是在非固定条件下评估掺混物的性能,非固定条件实际上是与加工顺序最相关的那些。因此,目前的工作集中在非稳定条件下,相容剂类型对聚丙烯/ LCP共混物的机械和流变性能的影响。在机械性能方面,所有增容剂均获得了传统的拉伸强度提高,这主要是由于在加工过程中形成的LCP原纤维比未增容共混物更细和更长的LCP原纤维形成。另外,对于其中使用具有弹性体性质的增容剂的共混物,还观察到冲击强度和挠曲模量的改善。流变学上,对结构最敏感的实验是在瞬时剪切下进行的实验,对于不同的增容剂,观察到不同大小的瞬时应力(以过冲的形式)的增加。 (c)2005年Wiley期刊,fnc。

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