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首页> 外文期刊>Journal of Applied Polymer Science >Rheological and Curing Behavior of Reactive Blending.I.Maleated Natural Rubber-Cassava Starch
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Rheological and Curing Behavior of Reactive Blending.I.Maleated Natural Rubber-Cassava Starch

机译:反应性共混物的流变和固化行为I.马来化天然橡胶-木薯淀粉

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摘要

Maleated natural rubber (MNR) was prepared and used as a blending composition and a compatibilizer for blending of natural rubber (STR 5L) and cassava starch. The melt rheological behavior in terms of Mooney viscosity, apparent shear stress, and shear viscosity at 100degC were quantified. We found that the pure MNR gave the lower apparent shear stress, shear viscosity than did those of the blends with cassava starch. The rheological data of the MNR blends increased with increasing quantity of cassava starch. The highest value was observed for the blend of MNR. The rheological value was as follows: MNR > STR 5L with MNR (as the compatibilizer) > STR 5L compounds. Furthermore, rheological properties increased with increasing the levels of compatibilizer (MNR). The rheological results were described in terms of intermolecular interaction between the polar groups in the natural rubber and cassava starch molecules. Each rubber blend was compounded, and their curing characteristics were studied. The pure MNR compounds exhibited a long delayed onset of vulcanization for approximately 10 min. The retardation was found, because the accelerator (MET) reacted with the anhydrides in the compound instead of acting as an accelerator. The retardation was not observed for the compound with the cassava starch. The curing curves for all MNRs were not in equilibrium at a maximum torque, while the pure STR 5L compound gave a curing curve with a maximum torque and a slight reversion. The curing curve for the compound with MNR as the compatibilizer was a combination of the curing curves of MNR and STR 5L. That is, the curve was in equilibrium at the maximum torque and the short delayed action.
机译:制备了马来化的天然橡胶(MNR),并用作掺混组合物和相容剂,用于掺混天然橡胶(STR 5L)和木薯淀粉。根据门尼粘度,表观剪切应力和在100℃下的剪切粘度对熔体流变行为进行了定量。我们发现,纯MNR的表观剪切应力,剪切粘度低于木薯淀粉共混物。木薯淀粉的流变学数据随木薯淀粉含量的增加而增加。对于MNR的共混物观察到最高值。流变值如下:MNR> STR 5L与MNR(作为增容剂)> STR 5L化合物。此外,流变性质随相容剂(MNR)含量的增加而增加。用天然橡胶中的极性基团与木薯淀粉分子之间的分子间相互作用描述了流变学结果。混合每种橡胶共混物,并研究其固化特性。纯的MNR化合物在大约10分钟内表现出长时间的延迟硫化开始。发现了延迟,因为促进剂(MET)与化合物中的酸酐反应而不是充当促进剂。没有观察到具有木薯淀粉的化合物的阻滞作用。在最大扭矩下,所有MNR的固化曲线都不平衡,而纯STR 5L化合物给出的固化曲线具有最大扭矩和轻微的回复。具有MNR作为增容剂的化合物的固化曲线是MNR和STR 5L的固化曲线的组合。即,该曲线在最大扭矩和短暂的延迟作用下处于平衡状态。

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