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Synthesis of Hyper-branched 4A Zeolite and its Application in Natural Rubber Systems

机译:超支化4A沸石的合成及其在天然橡胶体系中的应用

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摘要

Hyper-branched 4A zeolite (HB-4A zeolite) was prepared by condensation reaction between 4A zeolite and the monomer we prepared. It was then characterized by Fourier transform infrared spectroscopy (FITR), scanning electron microscopy (SEM) and thermogravimetric analysis (TGA). This HB-4A zeolite was then used in the preparation of natural rubber (NR)/HB-4A zeolite composite. Different types of NR/HB-4A zeolite composites were prepared with different amounts of HB -4A zeolite and compared with the composites directly incorporated with 4A zeolite. The cure characteristics of different 4A zeolite filled NR composites were studied. Then, the tensile and thermal properties were compared. Results revealed that the mechanical properties of NR/HB-4A zeolite, especially elongation at break, showed a remarkable enhancement compared with that of NR/4A zeolite and NR systems. SEM studies showed that hyper-branching modification might increase the compatibility between 4A zeolite and NR matrix. A reinforcing mechanism was proposed, assuming that the 'anchor' effect caused by the hyper-branched polymer may reduce the amount and size of voids and increase the length of the crack spread path during tensile drawing.
机译:超支化4A沸石(HB-4A沸石)是通过4A沸石与制备的单体之间的缩合反应制备的。然后通过傅里叶变换红外光谱(FITR),扫描电子显微镜(SEM)和热重分析(TGA)对其进行表征。然后将这种HB-4A沸石用于制备天然橡胶(NR)/ HB-4A沸石复合材料。用不同量的HB -4A沸石制备了不同类型的NR / HB-4A沸石复合材料,并将其与直接掺入4A沸石的复合材料进行了比较。研究了不同4A沸石填充NR复合材料的固化特性。然后,比较拉伸性能和热性能。结果表明,与NR / 4A沸石和NR体系相比,NR / HB-4A沸石的机械性能,特别是断裂伸长率,显示出显着的提高。扫描电镜研究表明,超支化改性可提高4A沸石与NR基质之间的相容性。提出了一种增强机制,假设由超支化聚合物引起的“锚固”效应可能会减少拉伸过程中空隙的数量和大小,并增加裂纹扩展路径的长度。

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