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首页> 外文期刊>Journal of Thermal Spray Technology >Comparison of the Microstructural Characteristics and Electrical Properties of Thermally Sprayed Al2O3 Coatings from Aqueous Suspensions and Feedstock Powders
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Comparison of the Microstructural Characteristics and Electrical Properties of Thermally Sprayed Al2O3 Coatings from Aqueous Suspensions and Feedstock Powders

机译:悬浮液和原料粉中热喷涂Al2 O3 涂层的微观结构和电性能的比较

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In this work the microstructural characteristics and electrical insulating properties of thermally sprayed alumina coatings produced by suspension-HVOF (S-HVOF) and conventional HVOF spray processes are presented. The electrical resistance at different relative air humidity (RH) levels (from 6 to 97% RH) and values of dielectric strength were investigated by direct current electrical resistance measurements, electrochemical impedance spectroscopy, and dielectric breakdown tests. Relationships between electrical properties and coating characteristics are discussed. At low humidity levels (up to 40% RH) the electrical resistivities of S-HVOF and HVOF coatings were on the same order of magnitude (1011 Ω·m). At a very high humidity level (97% RH) the electrical resistivity values for the S-HVOF coatings were in the range 107-1011 Ω·m, up to five orders of magnitude higher than those recorded for the HVOF coating (orders of magnitude of 106 Ω·m). The better electrical resistance stability of the suspension-sprayed Al2O3 coatings can be explained by their specific microstructure and retention of a higher content of α-Al2O3. The dielectric strength E d of suspension-sprayed coatings was found to be 19.5-26.8 kV·mm−1 for coating thicknesses ranging from 60 to 200 μm. These values were slightly lower than those obtained for conventional HVOF coatings (up to 32 kV·mm−1). However, it seemed that the dielectric strength of conventionally sprayed coatings was more sensitive to the coating thickness (when compared with the values of E d determined for S-HVOF coatings) and varied to a greater extent (up to 10 kV·mm−1) when the coating thickness varied in the range 100-200 μm.
机译:在这项工作中,介绍了通过悬浮HVOF(S-HVOF)和常规HVOF喷涂工艺生产的热喷涂氧化铝涂层的微观结构特征和电绝缘性能。通过直流电阻测量,电化学阻抗谱和介电击穿测试,研究了不同相对空气湿度(RH)水平(从6%到97%RH)下的电阻和介电强度值。讨论了电性能和涂层特性之间的关系。在低湿度(相对湿度最高40%)下,S-HVOF和HVOF涂层的电阻率处于相同的数量级(1011 Ω·m)。在非常高的湿度水平(相对湿度97%)下,S-HVOF涂层的电阻率值在107 -1011 Ω·m范围内,比记录的值高五个数量级。用于HVOF涂层(数量级为106 Ω·m)。悬浮喷涂的Al2 O3 涂层具有更好的电阻稳定性,这可以通过其特定的微观结构和保留较高含量的α-Al2 O3 来解释。发现对于厚度为60至200μm的悬浮液喷涂的涂层,其介电强度E dsub为19.5-26.8 kV·mm-1。这些值略低于常规HVOF涂层获得的值(最高32 kV·mm-1 )。但是,似乎常规喷涂涂层的介电强度对涂层厚度更敏感(与S-HVOF涂层的E d值相比),变化幅度更大(最高10 kV) ·mm-1 ),当涂层厚度在100-200μm范围内变化时。

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