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Processing Analysis of Nanoparticle Filled PTFE: Restrictions and Limitations of High Temperature Production

机译:纳米粒子填充PTFE的处理分析:高温生产的限制与限制

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摘要

In this research work, unfilled and monofilled polytetrafluoroethylene (PTFE) were investigated. The applied fillers were graphene, alumina (Al2O3), boehmite alumina (BA80) and hydrotalcite (MG70). Graphene and Al2O3 are already known in the literature as potential fillers of PTFE, while BA80 and MG70 are novel fillers in PTFE. Materials were produced by room temperature pressing—free sintering method with a maximum sintering temperature of 370 °C. The mass loss and decomposition analyses were carried out by thermogravimetric analysis (TGA) in two different ways. The first was a sensitivity analysis to gain a better view into the sintering process at 370 °C maximal temperature. The second was a heating from 50 °C up to 1000 °C for a full-scale decomposition analysis. BA80 is a suitable filler for PTFE, as most of its functional groups still existed after the sintering process. Both PTFE and Al2O3 had high thermal stability. However, when Al2O3 was incorporated in PTFE, a remarkable mass loss was observed during the sintering process, which indicated that the decomposition of PTFE was catalysed by the Al2O3 filler. The observed mass loss of the Al2O3-filled PTFE was increased, as the Al2O3 content or the applied dwelling time at a 370 °C sintering temperature increased.
机译:在该研究中,研究了未填充和单氟化的聚四氟乙烯(PTFE)。施用的填料是石墨烯,氧化铝(Al 2 O 3),Bohmite氧化铝(Ba80)和水滑石(Mg70)。石墨烯和Al2O3在文献中已知为PTFE的潜在填料,而BA80和MG70是PTFE中的新型填料。通过室温压无压烧结方法生产的材料,其最大烧结温度为370℃。通过以两种不同的方式通过热重分析(TGA)进行质量损失和分解分析。首先是灵敏度分析,以在370°C最大温度下获得更好的烧结过程。第二个是从50°C的加热,最高可达1000°C,用于满量程分解分析。 Ba80是PTFE合适的填料,因为其大多数官能团仍然存在于烧结过程之后。 PTFE和Al2O3都具有高热稳定性。然而,当Al 2 O 3掺入PTFE中时,在烧结过程中观察到显着的质量损失,这表明通过Al 2 O 3填料催化PTFE的分解。观察到的Al 2 O 3填充PTFE的质量损失增加,作为Al 2 O 3含量或370℃的涂布温度的施加的居住时间增加。

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