首页> 外文期刊>Journal of Applied Polymer Science >Thermal degradation and ageing behavior of microcomposites of natural rubber, carboxylated styrene butadiene rubber latices, and their blends
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Thermal degradation and ageing behavior of microcomposites of natural rubber, carboxylated styrene butadiene rubber latices, and their blends

机译:天然橡胶,羧化丁苯橡胶胶乳及其混合物的微复合材料的热降解和老化行为

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The effect of microfillers on the thermal stability of natural rubber (NR), carboxylated styrene butadiene rubber (XSBR) latices, and their 70/30 NR/XSBR blend were studied using thermogravimetric method. Microcomposites of XSBR and their blend were found to be thermally more stable than unfilled samples. The activation energy needed for the degradation of polymer chain was calculated from Coats-Redfern plot. Activation energy needed for the thermal degradation of filled samples was higher than unfilled system. It indicated the improved thermal stability of the filled samples. The ageing resistance of the micro-filled samples was evaluated from the mechanical properties of aged samples. The thermal ageing was carried out by keeping the samples in hot air oven for 7 days at 70 degrees C. The mechanical properties such as tensile strength, modulus at 300%, elongation, and strain at break were computed. As compared to unfilled samples, micron-sized fillers reinforced systems exhibited higher ageing resistance. Finally, an investigation was made on the influence of ion-beam irradiation on microcomposites of NR, XSBR latices, and their 70/30 blend systems using Si-28(8+) performed at 100 MeV. The surface changes of the samples after irradiation were analyzed using X-ray photoelectron spectroscopy. The results of XPS measurements revealed that the host elements were redistributed without any change in binding energies of C-1s, O-1s,O-, and Si-2p. (c) 2007 Wiley Periodicals, Inc.
机译:使用热重法研究了微填料对天然橡胶(NR),羧化丁苯橡胶(XSBR)胶乳及其70/30 NR / XSBR共混物热稳定性的影响。发现XSBR的微复合物及其混合物比未填充的样品具有更高的热稳定性。聚合物链降解所需的活化能由Coats-Redfern图计算得出。填充样品热降解所需的活化能高于未填充系统。这表明填充样品的热稳定性得到改善。从老化样品的机械性能评估了微填充样品的耐老化性。通过将样品在70℃的热风烘箱中保持7天来进行热老化。计算机械性能,例如抗张强度,300%的模量,伸长率和断裂应变。与未填充样品相比,微米级填充物增强系统具有更高的耐老化性。最后,使用100 MeV的Si-28(8+),研究了离子束辐照对NR,XSBR胶乳及其70/30共混体系的微复合物的影响。使用X射线光电子能谱分析了辐照后样品的表面变化。 XPS测量的结果表明,主体元素被重新分配,而C-1s,O-1s,O-和Si-2p的结合能没有任何变化。 (c)2007年Wiley Periodicals,Inc.

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