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首页> 外文期刊>Journal of applied statistics >A new painting process for vessel radiators of transformer: wet-on-wet
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A new painting process for vessel radiators of transformer: wet-on-wet

机译:变压器船用散热器的新涂漆工艺:湿碰湿

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摘要

The painting process of corrugated wall radiators of a distribution transformer is performed by a flow-down painting technique in the industrial field. This study has been prepared in accordance with ISO 12944-5. Correspondingly, this work is motivated by Epoxy 2-pack paints (4.3.4.2) to obtain minimum requirements for C3 atmospheric corrosivity categories (5.1.1). This standard requires from the vertical surface of the vessel of the transformer to be painted with epoxy paints that contain anti-corrosive pigments with a minimum of 100 mu m dry film thickness. In the present study, a new production methodology called wet-on-wet (WOW) painting is developed which has never been used in industry. In addition, a modified response surface methodology (RSM) is proposed for designing, modeling, and optimizing the proposed process under unsteady environmental effects. The results indicate that the WOW painting can be applied to real industrial systems successfully by the aid of the proposed new RSM algorithm and provide remarkable time and cost savings.
机译:配电变压器的波纹壁散热器的喷涂过程是在工业领域中通过向下喷涂技术进行的。这项研究是根据ISO 12944-5进行的。相应地,这项工作是由环氧树脂2装涂料(4.3.4.2)推动的,以获得对C3大气腐蚀性类别(5.1.1)的最低要求。该标准要求在变压器容器的垂直表面上涂环氧漆,其中应包含至少100μm干膜厚度的耐腐蚀颜料。在本研究中,开发了一种新的生产方法,称为湿碰湿(WOW)绘画,这种方法从未在工业中使用过。此外,提出了一种改进的响应面方法(RSM),用于在不稳定环境影响下设计,建模和优化所提出的过程。结果表明,借助所提出的新RSM算法,WOW绘画可以成功地应用于实际工业系统,并且可以节省大量时间和成本。

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