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Unique Compatibilized Thermoplastic Elastomer with High Strength and Remarkable Ductility: Effect of Multiple Point Interactions within a Rubber-Plastic Blend

机译:独特的相容性热塑性弹性体,具有高强度和显着的延展性:橡胶塑料混合物内多点相互作用的影响

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In the case of thermoplastic elastomers (TPEs) based on nonpolar polypropylene (PP) and polar rubbers, a small quantity of a third component known as the compatibilizer is added to maximize the compatibility between the incompatible blend components. Generally, one part of the compatibilizer reacts with the nonpolar PP phase and the other part of the compatibilizer reacts with the polar rubber phase, which in turn produces TPEs with useful properties. Till today, there have been no reports in the literature that examine the effect of a compatibilizer that can have multifaceted interactions with the incompatible blend components for the development of TPEs with unique properties. Accordingly, here, an ethylene-acrylic ester-maleic anhydride terpolymer (E-AE-MA-TP) has been used as the compatibilizer for the preparation of TPEs based on nonpolar isotactic polypropylene (i-PP) and polar epichlorohydrin rubber (ECR). The E-AE-MA-TP compatibilizer contains ethylene groups, acrylic groups, and anhydride/acid groups along its backbone, which act as the sites for establishing multifaceted interactions with both i-PP and ECR. The compatibilization efficiency of the E-AE-MA-TP compatibilizer has been analyzed by contact angle measurements, Fourier transform infrared (FTIR) spectroscopy, tensile stress–strain studies, mixing torque profiles, rheological studies, differential scanning calorimetry (DSC), field emission scanning electron microscopy (FESEM), and atomic force microscopy (AFM) images. The particle size of the dispersed ECR domains in the i-PP matrix of the i-PP/ECR blend prominently decreases (~90% reduction) by incorporation of a very low dosage (5 wt %) of the E-AE-MA-TP compatibilizer. The i-PP/ECR (40 wt %/60 wt %) blend containing 5 wt % compatibilizer displays outstanding mechanical properties (especially strain at break value (~370%)), which are superior to the mechanical properties of several compatibilized TPEs (based on PP and polar rubbers) reported in the literature. The unique properties of TPEs based on i-PP and ECR in the presence of the E-AE-MA-TP compatibilizer is attributed to the efficacy of the E-AE-MA-TP compatibilizer to establish multifaceted interactions with both i-PP and ECR.
机译:在基于非极性聚丙烯(PP)和极性橡胶的热塑性弹性体(TPE)的情况下,添加了少量称为增容剂的第三组分,以最大化不相容的共混组分之间的相容性。通常,相容剂的一部分与非极性PP相反应,相容剂的另一部分与极性橡胶阶段反应,这反过来产生具有有用性质的TPE。直到今天,文献中没有报道,检查增容剂的效果,其可与不相容的混合物组分具有多方型相互作用,以便具有独特性质的TPE。因此,此处,已使用乙烯 - 丙烯酸酯 - 马来酸酐三元共聚物(E-AE-MA-TP)作为基于非极性全同立构聚丙烯(I-PP)和极性表氯醇橡胶(ECR)制备TPE的增容剂。 E-AE-MA-TP Compatibiliger沿其骨架含有乙烯基,丙烯酸基团和酸酐/酸基团,其充当用于建立与I-PP和ECR的多方面相互作用的位点。通过接触角测量,傅里叶变换红外(FTIR)光谱,拉伸应力 - 应变研究,混合扭矩谱,流变研究,流变研究,差示扫描量热法(DSC),差分扫描量热法(DSC),场发射扫描电子显微镜(FeSEM)和原子力显微镜(AFM)图像。 I-PP / ECR的I-PP矩阵中的分散的ECR结构域的粒径通过掺入E-低剂量(5wt%)的E-NE-MA-突出地降低(减少〜90%) TP Compatibilizer。含有5wt%增容剂的I-PP / ECR(40wt%/ 60wt%)共混物显示出优异的机械性能(特别是断裂值(〜370%)的菌株,其优于几种相容性TPE的机械性能(基于PP和Polar橡胶)在文献中报告。基于I-PP和ECR的TPE在E-AE-MA-TP Compatibilizer存在下的独特性质归因于E-AE-MA-TP Compatibilizer与I-PP和I-PP建立多方面相互作用的疗效ECR。

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