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首页> 外文期刊>Polymers & Polymer Composites >Long-term aging characteristics of co-filled nano-silica and micro-ATH in HTV silicone rubber composite insulators
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Long-term aging characteristics of co-filled nano-silica and micro-ATH in HTV silicone rubber composite insulators

机译:HTV硅橡胶复合绝缘子HTV硅胶和微硅酸钠和微观高分子的长期老化特征

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Multiple environmental stresses produce complex phenomena of aging in polymeric insulators. The main aim of this research is to investigate the improved aging characteristics of silica (SiO2)/alumina trihydrate (ATH) hybrid samples (HSs) in high-temperature vulcanized rubber. For this purpose, three HSs comprising 20% micro-ATH with 2% nano-SiO2 (S2), 4% nano-SiO2 (S4), 6% nano-SiO2 (S6) along with sample-virgin (SV) are subjected to long-term accelerated aging of 9000 h. A special aging chamber is fabricated for the aging process of samples. The aging characteristics of these samples are investigated by measuring leakage current (LC) and hydrophobicity classification (HC) after every weathering cycle. Similarly, Fourier transform infrared (FTIR) spectroscopy is performed to observe the important structural changes over the entire aging time. The dielectric strength of AC is also performed after every 1000 h of aging. Tracking and erosion resistance and mechanical properties are also investigated before and after aging. From the critical investigation, it is observed that HSs possess improved results in all the conducted tests. S2 has the lowest LC and HC values throughout the aging time. Similarly, S6 described the highest breakdown strength at the end of the accelerated aging. In the case of FTIR, it is analyzed that the important wave numbers remain intact for all the HSs in the accelerated aging environment. The loss percentage in the wave number for SV is higher, compared to the HSs. After performing the tracking and erosion resistance test, HSs have superior performance. For some of the mechanical properties, HSs showed improved values. Thus, from the experimental analysis, it is deducted that the sample S2 offers the highest resistance to the aging conditions, compared to the SV and other HSs.
机译:多种环境应力在聚合物绝缘子中产生复杂的老化现象。本研究的主要目的是研究二氧化硅(SiO2)/三水氧化铝(ATH)杂化样品(HSs)在高温硫化橡胶中的老化特性。为此,对三种高速钢(包括20%的微ATH和2%的纳米SiO2(S2)、4%的纳米SiO2(S4)、6%的纳米SiO2(S6)以及原始样品(SV)进行9000小时的长期加速老化。为样品的老化过程制造了一个特殊的老化室。通过测量每个风化周期后的泄漏电流(LC)和疏水性分类(HC),研究了这些样品的老化特性。同样,傅里叶变换红外光谱(FTIR)用于观察整个老化过程中的重要结构变化。AC的介电强度也在每1000小时老化后进行。老化前后还研究了跟踪和耐腐蚀性以及机械性能。从批判性调查中可以看出,HSs在所有进行的测试中都有改进的结果。S2在整个老化过程中具有最低的LC和HC值。同样,S6描述了加速老化结束时的最高击穿强度。在FTIR的情况下,分析表明,所有高速钢在加速老化环境中的重要波数保持不变。与HSs相比,SV的波数损失百分比更高。经过跟踪和抗侵蚀试验后,高速钢具有优异的性能。对于某些机械性能,HSs显示出改善值。因此,从实验分析中可以推断,与SV和其他高速钢相比,样品S2对老化条件的耐受性最高。

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