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Effects of thermal aging on the characteristic breakdown behavior of Nano-SiO2-BOPP and BOPP films

机译:热老化对纳米SiO 2 -BOPP和BOPP薄膜特征击穿行为的影响

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The effects of thermal stress on the breakdown behavior of biaxially oriented polypropylene (BOPP)-silica nanocomposite thin film and commercial BOPP film was evaluated with a step stress experiment in the temperature range of 50...110 °C. Weak spots were measured in thermally aged unfilled BOPP films but not in the PP-silica, which in turn displayed increasing scatter of the breakdown voltages and the scattering seemingly settled to a certain level. No weak spots were measured in un-filled BOPP films removed after highest temperatures. The behavior of un-filled films is speculated to result from either actual polymer aging in addition to the statistical nature of breakdown phenomena or from thermally-activated processes possibly involving antioxidants. The different behavior in the nanocomposite was speculated to result from polymer-nanoparticle interactions possibly countering the effects of antioxidants and hindering weak spot formation. The results demonstrate the different behavior of polymer-nanocomposites and traditional BOPP films under thermal stress and highlight the importance of evaluating the aging behavior of new materials.
机译:通过在50 ... 110°C的温度范围内进行分步应力实验,评估了热应力对双轴取向聚丙烯(BOPP)-二氧化硅纳米复合薄膜和商用BOPP薄膜的击穿行为的影响。在热老化的未填充BOPP薄膜中测量到了弱点,但在PP二氧化硅中却未测量到,这反过来显示出击穿电压的散射越来越大,并且散射似乎稳定在一定水平。在最高温度后去除的未填充BOPP膜中未检测到弱点。据推测,未填充膜的行为是由实际的聚合物老化,击穿现象的统计性质引起的,或者由可能涉及抗氧化剂的热活化过程引起的。据推测,纳米复合材料中的不同行为是由于聚合物与纳米粒子的相互作用所致,可能与抗氧化剂的作用相反,并阻碍了弱点的形成。结果表明聚合物-纳米复合材料和传统BOPP薄膜在热应力下的行为不同,并强调了评估新材料的老化行为的重要性。

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