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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Thermal endurance evaluation of isotactic poly(propylene) based nanocomposites by short-term analytical methods
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Thermal endurance evaluation of isotactic poly(propylene) based nanocomposites by short-term analytical methods

机译:短期分析方法评估全同立构聚丙烯基纳米复合材料的热耐久性

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摘要

The thermal endurance of nanocomposites based on isotactic poly(propylene) filled with nanosilicates, is evaluated by a short-term analytical procedure. The procedure is based on oxidative stability measurements by isothermal thermogravimetric analysis in a pure oxygen flow, over the temperature range form 120 to 150 degC, and provides the activation energy of the thermo-oxidative degradation process. The activation energy values thus obtained were compared with those derived by scanning thermogravimetric analysis at different heating rates. The thermal endurance lines for the investigated materials can be drawn with the aid of a conventional life test, based on weight loss measurement as a function of aging time, according to the IEC 60216 procedure. A noticeable increase of the thermal endurance of the isotactic poly(propylene) based nanocomposite with respect to the unmodified polymer is found out.
机译:通过短期分析程序评估了基于填充有纳米硅酸盐的全同立构聚丙烯的纳米复合材料的耐热性。该程序基于在120至150℃的温度范围内通过纯氧流中的等温热重分析进行的氧化稳定性测量,并提供了热氧化降解过程的活化能。将由此获得的活化能值与在不同加热速率下通过扫描热重分析得出的活化能值进行比较。根据IEC 60216规程,可以根据重量损失测量值作为老化时间的函数,借助传统的寿命测试来绘制被研究材料的热耐久性线。发现相对于未改性的聚合物,全同立构的基于聚丙烯的纳米复合材料的耐热性显着提高。

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