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Compatibility of transformer construction materials with natural ester-based insulating fluids

机译:变压器建筑材料与天然酯基绝缘液的相容性

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摘要

The main objective of this study was to evaluate the effect of transformer construction materials, such as kraft insulation paper, varnish, core steel and gasket materials (rubber), on the physicochemical properties of natural ester-based insulating oils (NEIs) and mineral insulating oil (MIO) under heating. We evaluated two NEIs, one formulated with soya oil (Envirotemp FR3) and other with corn oil (Biovolt A). The test specimens were placed in a 1-L jar with 800 mL of insulating oil and then the jar was placed in an oven at 100 °C for 716 h. The insulating fluids were analyzed before and after the heating tests by physicochemical analyses, such as kinematic viscosity, acid number (or neutralization number), dissipation factor and interfacial tension for MIO. Properties of the aged reference and the test specimen oils for a standard testing method for compatibility of construction materials with NEIs are proposed. The only parameter that showed variation after the NEI compatibility testing with different materials was the dissipation factor at 90 °C. The results show that besides compatibility and aging tests, mechanical tests for the gasket or seal materials should also be performed to conclude whether a material is suitable for construction of transformers insulated with NEIs.
机译:这项研究的主要目的是评估变压器建筑材料(例如牛皮纸绝缘纸,清漆,芯钢和垫片材料(橡胶))对天然酯基绝缘油(NEIs)和矿物绝缘材料的理化性能的影响。加热下的机油(MIO)。我们评估了两种NEI,一种用大豆油(Envirotemp FR3)配制,另一种用玉米油(Biovolt A)配制。将测试样品放入装有800 mL绝缘油的1-L广口瓶中,然后将广口瓶在100°C的烤箱中放置716 h。在加热测试之前和之后,通过物理化学分析对绝缘液进行分析,例如运动粘度,酸值(或中和值),MIO的耗散因数和界面张力。提出了用于建筑材料与NEI相容性的标准测试方法的老化参考油和试样油的性能。在使用不同材料进行NEI兼容性测试后,唯一显示出变化的参数是90°C时的耗散因数。结果表明,除了兼容性和老化测试外,还应对垫片或密封材料进行机械测试,以得出该材料是否适合于用NEI绝缘的变压器的构造的结论。

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