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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Exploring the simultaneous effect of organoclay and controlled peroxide curing on thermal stability of LLDPE/EMA blend
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Exploring the simultaneous effect of organoclay and controlled peroxide curing on thermal stability of LLDPE/EMA blend

机译:探索有机粘土和可控的过氧化物固化对LLDPE / EMA共混物热稳定性的同时影响

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摘要

The effects of organoclay, Cloisite ~?20A on the thermal degradation behavior of LLDPE/EMA blends were investigated using thermogravimetric analysis in nitrogen atmosphere. Organoclay, Cloisite ~?20A was melt blended with LLDPE/EMA system at different loadings by varying the sequence of addition. The kinetics of thermal degradation of the nanocomposites had also been studied. Experiments were carried out at heating rates of 5, 10, 15°C/min in nitrogen atmosphere. Kissinger-Akahira-Sunose method has been used to determine the activation energies of degradation. The loading of Cloisite ~?20A and their sequence of addition has significant effect on the thermal stability of LLDPE/EMA blends. The results showed that Cloisite ~?20A slightly decreases the initial decomposition temperature (T_(onset)) of LLDPE/EMA blend but significantly enhances the maximum decomposition temperature (T_(max)). Addition of dicumyl peroxide (DCP) to the LLDPE/EMA/Cloisite ~?20A further increases the thermal stability of the nanocomposites. Overall, the thermal stability of the LLDPE/EMA/Cloisite ~?20A nanocomposites is the function of the extent and sequence of clay addition as well as extent of DCP loading.
机译:在氮气氛中使用热重分析法研究了有机粘土Cloisite ~~ 20A对LLDPE / EMA共混物热降解行为的影响。通过改变加入顺序,将有机粘土,Cloisite〜20A与LLDPE / EMA系统在不同的负荷下熔融共混。还研究了纳米复合材料的热降解动力学。在氮气气氛中以5、10、15°C / min的加热速率进行实验。 Kissinger-Akahira-Sunose方法已用于确定降解的​​活化能。 Cloisite〜20A的负载量及其添加顺序对LLDPE / EMA共混物的热稳定性有重要影响。结果表明,Cloisite〜?20A略微降低了LLDPE / EMA共混物的初始分解温度(T_(起始)),但显着提高了最大分解温度(T_(max))。将过氧化二枯基(DCP)添加至LLDPE / EMA /氯代硅酸钾〜20A进一步提高了纳米复合材料的热稳定性。总的来说,LLDPE / EMA /氯代〜20A纳米复合材料的热稳定性取决于粘土添加的程度和顺序以及DCP负载的程度。

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