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Regeneration of thermally recycled glass fibre for cost-effective composite recycling : Fundamental study of strength loss of thermally conditioned glass fibre

机译:热回收玻璃纤维的再生,以实现经济高效的复合材料回收:热调节玻璃纤维强度损失的基础研究

摘要

Data produced using both unsized and aminopropyltriethoxysilane (APS) coated fibre will be shown and discussed. By applying a novel method of single fibre thermal conditioning (sf-TC) it was found that retained fibre strength is, in some cases, underestimated and that the temperature range 400-500 °C is the most critical for thermally induced strength loss. This is not related to degradation of the APS surface coating, but rather is likely linked to fundamental changes occurring in the glass network or at the fibre surface. X-ray Photoelectron Spectroscopy (XPS) analysis of treated fibres was performed, but it was not possible to measure any significant changes in surface chemical state. Analysis of water volatilized from unsized fibre was performed using a furnace connected to quadropole mass spectrometer. An asymptotic minimum in volatilized water is reached between 400-500 °C.
机译:将显示和讨论使用未上浆的纤维和氨基丙基三乙氧基硅烷(APS)涂覆的纤维产生的数据。通过应用单纤维热调节(sf-TC)的新颖方法,发现在某些情况下保留的纤维强度被低估了,并且400-500°C的温度范围对于热致强度损失最为关键。这与APS表面涂层的降解无关,而可能与玻璃网络或纤维表面发生的根本变化有关。对处理过的纤维进行了X射线光电子能谱(XPS)分析,但无法测量表面化学状态的任何重大变化。使用连接到四极杆质谱仪的炉子分析未上浆纤维挥发的水。挥发水的渐近最小值在400-500°C之间。

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