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The electrical insulation behavior and sealing effects of plasma-sprayed alumina-titania coatings

机译:等离子喷涂氧化铝-二氧化钛涂层的电绝缘性能和密封效果

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摘要

Two commercial sealants based on polymers were studied and the electrical insulation properties of ceramic coatings were tested, before and after the impregnation treatment, using a plasma-sprayed Al2O3-13% TiO2 coating as the reference coating. The second part of this paper reports on the effects of curing temperature and exposure time of the sealants on the penetration depth of the ceramic coating. The preliminary test results with a DC puncture tester imply that the dielectric breakdown voltage mechanism of plasma-sprayed ceramic coatings has been determined to be a corona mechanism. Dielectric breakdown voltage of the as-sprayed and as-ground samples have shown a linear trend with regard to the thickness, showing an average dielectric strength of 20 kV/mm for the thickness scale studied. The penetration depth of sealants to the ceramic coating can be clearly recognized with addition of fluorescent dye (EpoDye). It is also shown that grinding the coating before sealing and adding fluorescent dye (EpoDye) does not affect the penetration depth of sealants. For epoxy-based sealant, the effects of temperature on the penetration depth of the sealant show that an optimum temperature can be determined. The balance between the beneficial and the detrimental effects is obtained at approximately 100 degreesC. Moreover, the effect of curing time on the penetration depth is beneficial. However, for urethane-based sealant, it seems that the impregnation process may be complex because of the high pressures of entrapped gases occurring during the process. Although the penetration of sealant to the ceramic coating has reached over 300 mum, the effects of curing time and temperature have not been clearly established. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 13]
机译:研究了两种基于聚合物的商业密封胶,并在浸渍处理之前和之后,使用等离子喷涂的Al2O3-13%TiO2涂层作为参考涂层,测试了陶瓷涂层的电绝缘性能。本文的第二部分报告了固化温度和密封剂的暴露时间对陶瓷涂层渗透深度的影响。直流穿刺测试仪的初步测试结果表明,等离子体喷涂陶瓷涂层的介电击穿电压机理已被确定为电晕机理。喷涂样品和接地样品的介电击穿电压在厚度方面呈线性趋势,对于所研究的厚度标尺,平均介电强度为20 kV / mm。添加荧光染料(EpoDye)可以清楚地识别出密封剂对陶瓷涂层的渗透深度。还显示出在密封之前研磨涂层并添加荧光染料(EpoDye)不会影响密封剂的渗透深度。对于基于环氧的密封剂,温度对密封剂渗透深度的影响表明可以确定最佳温度。有益效果和有害效果之间的平衡是在大约100摄氏度下获得的。此外,固化时间对渗透深度的影响是有益的。然而,对于基于氨基甲酸酯的密封剂,似乎浸渍过程可能很复杂,因为在该过程中会产生残留气体的高压。尽管密封剂对陶瓷涂层的渗透已超过300微米,但固化时间和温度的影响尚未明确。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:13]

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