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Effect of dolomite and spodumene on the performances of andalusite composite ceramics for solar heat transmission pipeline

机译:白云石和锂辉石对红柱石复合陶瓷在太阳能传热管道中性能的影响

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Andalusite composite ceramics used for solar heat transmission pipeline were fabricated via pressureless sintering from andalusite, PSZ, Suzhou kaolin and talc. The effects of dolomite and spodumene on densification, mechanical properties, phase transformation, microstructure and thermal shock resistance of the composite ceramics were investigated. Results demonstrated that dolomite and spodumene used as flux materials promoted densification greatly, and the lowest sintering temperature of the composite ceramics was decreased significantly by 90-150 degrees C, comparing with the previous works with the usage of potassium feldspar and albite as flux materials. Introducing an appropriate amount(7 wt%) of spodumene improved thermal shock resistance of the composite ceramics since no cracks formed after 30 thermal shock cycles (air cooling from 1100 degrees C to RT) with a bending strength increasing rate of 22.41%. XRD patterns indicated that the dominant phases of samples before and after 30 thermal shock cycles were consistently mullite, ZrSiO4 and m-ZrO2, while the content of mullite increased after thermal shock, resulting in the enhancement of bending strength. It is believed that the andalusite composite ceramics can be a promising candidate material for heat transmission pipeline in the solar thermal power generation. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过红柱石,PSZ,苏州高岭土和滑石粉的无压烧结,制备了用于太阳能传热管道的红柱石复合陶瓷。研究了白云石和锂辉石对复合陶瓷的致密化,力学性能,相变,微观结构和抗热震性的影响。结果表明,与使用钾长石和钠长石作为助熔剂的工作相比,白云石和锂辉石作为助熔剂的材料极大地促进了致密化,复合陶瓷的最低烧结温度显着降低了90-150摄氏度。引入适量(7重量%)的锂辉石改善了复合陶瓷的耐热冲击性,因为在30次热冲击循环(从1100℃到RT的空气冷却)后没有形成裂纹,并且弯曲强度增加率为22.41%。 XRD图谱表明,热冲击30次前后样品的主要相始终是莫来石,ZrSiO4和m-ZrO2,而热冲击后莫来石含量增加,从而提高了弯曲强度。据信,红柱石复合陶瓷可以作为太阳能热发电中传热管道的有前途的候选材料。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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