首页> 外文期刊>Boletin de la Sociedad Espanola de Ceramica y Vidrio >Influence of alumina and silica addition on the physico-mechanical and dielectric behavior of ceramic porcelain insulator at high sintering temperature
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Influence of alumina and silica addition on the physico-mechanical and dielectric behavior of ceramic porcelain insulator at high sintering temperature

机译:氧化铝和二氧化硅对高烧结温度陶瓷瓷绝缘子物理 - 机械和介质行为的影响

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The high-strength electrical porcelain insulator plays a vital role in the power industry. The present study investigates the effect of alumina and silica addition on the physico-mechanical and electrical properties of porcelain bodies over high sintering temperatures. The pallets were prepared in different shapes and dimensions with the help of hydraulic press machine by pressing at 160 MPa for a period of 10-min. Different characterizations techniques such as; dilatometer, X-ray diffraction (XRD), and scanning electron microscopy (SEM) used to evaluate the thermal, structural, and microstructural changes, respectively by increasing the concentration of silica (0-20 wt.%) and decreasing alumina (45-25 wt.%) concentration for the base composition of porcelain insulator. The measurement of mechanical strength and physical behavior were analyzed for all the samples prepared with different compositions of alumina and silica with varying sintering temperature (1250 and 1350 degrees C). The sample with a composition having silica 10 wt.% of alumina 35 wt.% and sintered at 1350 degrees C, shows the maximum density of 2.55 g/cc with water absorption of 0.94%. This sample also shows the highest value of bending and compressive strength of 129 +/- 5 and 202 +/- 5 MPa respectively. The highest dielectric value of 5.75 and minimum dielectric loss of 0.05 at a frequency (2-20 GHz) is achieved for the same composition with silica 10 wt.% of alumina 35 wt.% sintered at 1350 degrees C. The composition having silica 10 wt.% with alumina 35 wt.% sintered at 1350 degrees C, has enormous potential to serve as a high strength refractory and a dielectric ceramic material for microwave applications. (C) 2017 SECV. Published by Elsevier Espana, S.L.U.
机译:高强度电瓷绝缘体在电力行业中起着至关重要的作用。本研究研究了氧化铝和二氧化硅对高烧结温度的瓷体的物理 - 机械和电性能的影响。通过在液压机通过160MPa的时间内以10mPa压制液压机的帮助以不同的形状和尺寸制备托盘。不同的特征技术,如;膨胀表,X射线衍射(XRD)和扫描电子显微镜(SEM)分别通过增加二氧化硅浓度(0-20重量%)和氧化铝(45-瓷绝缘体基部组成的25重量%)浓度。分析了用不同组成的氧化铝和二氧化硅制备的所有样品的机械强度和物理行为的测量,其具有不同的烧结温度(1250和1350℃)。具有二氧化硅10重量%的组合物的样品。氧化铝35重量%的%和在1350℃下烧结,显示出2.55g / cc的最大密度,吸水率为0.94%。该样品还分别显示了129 +/- 5和202 +/- 5MPa的弯曲和抗压强度的最高值。对于频率(2-20GHz)实现的最高介电值为5.75和最小介电损耗为0.05的频率(2-20GHz),对于二氧化硅10重量%的组合物,氧化铝35重量%。%在1350℃下烧结。具有二氧化硅10的组合物wt。用氧化铝35重量%。%烧结在1350℃,具有巨大的电位,用作微波应用的高强度耐火材料和介电陶瓷材料。 (c)2017 SECV。 elsevier espana发布,s.l.u。

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