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含对苯二甲酸丁二醇酯环状低聚物橡胶的相形态和力学性能:混炼温度的影响

Phase Morphology and Mechanical Properties of Cyclic Butylene Terephthalate Oligomer-Containing Rubbers: Effect of Mixing Temperature.

作者信息

Halász István Zoltán, Bárány Tamás

机构信息

Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, H-1111 Budapest, Hungary.

MTA-BME Research Group for Composite Science and Technology, Műegyetem rkp. 3, H-1111 Budapest, Hungary.

出版信息

Materials (Basel). 2016 Aug 24;9(9):722. doi: 10.3390/ma9090722.

Abstract

In this work, the effect of mixing temperature (T) on the mechanical, rheological, and morphological properties of rubber/cyclic butylene terephthalate (CBT) oligomer compounds was studied. Apolar (styrene butadiene rubber, SBR) and polar (acrylonitrile butadiene rubber, NBR) rubbers were modified by CBT (20 phr) for reinforcement and viscosity reduction. The mechanical properties were determined in tensile, tear, and dynamical mechanical analysis (DMTA) tests. The CBT-caused viscosity changes were assessed by parallel-plate rheometry. The morphology was studied by scanning electron microscopy (SEM). CBT became better dispersed in the rubber matrices with elevated mixing temperatures (at which CBT was in partially molten state), which resulted in improved tensile properties. With increasing mixing temperature the size of the CBT particles in the compounds decreased significantly, from few hundred microns to 5-10 microns. Compounding at temperatures above 120 °C and 140 °C for NBR and SBR, respectively, yielded reduced tensile mechanical properties most likely due to the degradation of the base rubber. The viscosity reduction by CBT was more pronounced in mixes with coarser CBT dispersions prepared at lower mixing temperatures.

摘要

在本研究中,研究了混合温度(T)对橡胶/环状对苯二甲酸丁二醇酯(CBT)低聚物复合材料的力学、流变学和形态学性能的影响。通过CBT(20 phr)对非极性(丁苯橡胶,SBR)和极性(丁腈橡胶,NBR)橡胶进行改性,以增强性能并降低粘度。通过拉伸、撕裂和动态力学分析(DMTA)测试来测定力学性能。通过平行板流变仪评估CBT引起的粘度变化。通过扫描电子显微镜(SEM)研究形态。随着混合温度升高(此时CBT处于部分熔融状态),CBT在橡胶基体中分散得更好,这导致拉伸性能得到改善。随着混合温度的升高,复合材料中CBT颗粒的尺寸显著减小,从几百微米减小到5 - 10微米。分别在120℃以上和140℃以上对NBR和SBR进行混炼,拉伸力学性能降低,这很可能是由于基础橡胶降解所致。在较低混合温度下制备的具有较粗CBT分散体的混合物中,CBT引起的粘度降低更为明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e81b/5457038/e4ca2260a043/materials-09-00722-g001.jpg

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