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Optimisation of corrosion protection and prevention at Thermo King.

机译:优化Thermo King的腐蚀防护和预防。

摘要

Corrosion of metals affects their function in many engineering applications, limits the useful life, and thereby causes increased costs for industry estimated at up to €300 billion per annum in the United States'. The prevention of corrosion is of major economic significance, and is a subject of intrinsic scientific interest due to the complex chemistry involved. The chemical protection of metals has to be moderated to conform to increasingly demanding environmental standards. There are relatively few effective alternatives to traditi* onal phosphate coatings dati*ng from2 1 869. In the case of refrigeration technology, the refrigeration cycle is largely conducted on metallic equipment exposed to repeated episodes of the thermal cycle. The metals used in portable or truck mounted refrigeration equipment must resist corrosion for periods of ten years in aggressive environments. In this project a scientific examination of the process steps used by Thermo King, a leading refrigeration manufacturer, was conducted. In this project, with the full support of the Thermo King Corporation, the process steps in the phosphate protection process were simulated in the laboratory to characterise various chemical changes and monitor changes over time. A study on the literature and technology of alternative corrosion protection relevant to the current processes was conducted. Accelerated corrosion tests were carried out on metallic samples used in the Thermo King production of refrigeration units. These samples were also characterised by scanning electron microscopy. Implementation of the findings in Thermo King had four major effects;ud1. Decrease in phosphate levels to meet IPC licence requirements, for the first time in Thermo Kingud2. Substantial cost reduction through water conservationud3. The improved performance of Thermo King’s spray treatment line resulted in obtaining 700 hours, in a salt spray chamber in accordance with ASTM B177.udThis improved accelerated corrosion test result is 75% higher than was achievable prior to this project. ud4. Preliminary investigations on the alternatives to phosphate coating were conducted, on silane and autophoretic technologies. These technologies showed promising results however further research is required. Suggestions are made for future research to obtain a better understanding of underlying principles, and to achieve improved performance from corrosion inhibition techniques.
机译:金属的腐蚀会影响其在许多工程应用中的功能,限制其使用寿命,从而导致该行业的成本增加,据估计,美国每年的成本高达3,000亿欧元。防止腐蚀具有重要的经济意义,并且由于涉及复杂的化学过程,因此具有内在的科学意义。必须缓和金属的化学保护以符合日益苛刻的环境标准。从2 869年开始,传统的磷酸盐涂层的替代品几乎没有。便携式或卡车安装的制冷设备中使用的金属必须在侵蚀性环境中腐蚀十年。在该项目中,对领先的制冷制造商Thermo King使用的工艺步骤进行了科学检查。在这个项目中,在Thermo King Corporation的全力支持下,在实验室中模拟了磷酸盐保护过程中的过程步骤,以表征各种化学变化并监测随时间的变化。对与当前工艺相关的替代腐蚀防护的文献和技术进行了研究。对Thermo King制冷机组生产中使用的金属样品进行了加速腐蚀试验。这些样品还通过扫描电子显微镜表征。 《 Thermo King》中发现的实施具有四个主要影响; ud1。在Thermo King ud2中首次降低磷酸盐含量以满足IPC许可要求。通过节水来大幅降低成本 ud3。 Thermo King喷涂处理生产线的性能得到改进,从而在按照ASTM B177的盐雾室中获得了700小时的使用寿命。 ud这种改进的加速腐蚀测试结果比该项目之前的结果高出75%。 ud4。在硅烷和电泳技术上对磷酸盐涂层的替代品进行了初步研究。这些技术显示出令人鼓舞的结果,但是需要进一步的研究。提出了一些建议,以供将来的研究以更好地理解基本原理,并通过缓蚀技术实现更高的性能。

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    Phelan Lynda;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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