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增强粉末涂料中的腐蚀抑制.pdf

上传人: c** 编号:465053 2025-01-12 26页 2.02MB

1、Enhanced CorrosionInhibition in PowderCoatingsM i c h e l l e B au e r,S c i e n t i s tSept 6,2024AGENDAEnhanced Corrosion Inhibition in Powder CoatingsCorrosion&Sustainability1Powder Coating Background23Test Design4Results5Summary6Corrosion BackgroundThe Drive to SustainabilityThe Impact of Corros

2、ionCost of corrosion$2.5 Trillion USD globally andincreasingEnvironmental ImpactMetal production accounts for10%of global GHG emissions*Source:1.NACE International IMPACT Report,2013 2.IRP,Global Resources Outlook 2019:Natural Resources for the Future We Want,A Report of the International Resources

3、Panel,2019Impact on Human Health andCommunityUse of hazardous corrosioninhibitors:lead,chromium,zincSafety concerns caused byfailing infrastructureThe Drive to SustainabilityICLs Mission to Reduce the Affects of CorrosionOur vision to create positive impact on ourworld,in collaboration with others,d

4、rives usforward as we aim to offer additionalinnovative solutions to vital challenges in ourfocus area of protective metal coatings.Analyze and understand carbon footprint of ourproducts.Implement circular economy in production ofICL products.Address GHG(greenhouse gas)emission levelsthrough respons

5、ible consumption of rawmaterials and finished goods.Offer heavy-metal free corrosion inhibitors toreplace traditional chemistries and maintaincoating performance while creating a moresustainable product.Powder Coating HistoryA period of rapid advancement and adoption1950sGerman scientistgranted pate

6、nt for firstpowder process.1970sRegulations pushedadoption in manysegments.2000-2020Increased competition,consolidation&costcompetitive products.1960sExtrusion andelectrostatic sprayapplication.End of 20thcenturyPeriod of high growthand displacement ofliquid coatings.Present&FutureOptimization andex

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本文主要探讨了粉末涂料中增强腐蚀抑制的研究。文章指出,腐蚀是全球性问题,造成了巨大的经济和环境损失。为应对这一挑战,ICL集团致力于开发创新的保护金属涂层解决方案,其中包括分析产品的碳足迹,实施循环经济,减少温室气体排放,以及提供无重金属的腐蚀抑制剂。研究显示,粉末涂料具有可持续优势,可实现低VOC排放和 minimal waste。通过实验,文章发现有机和无机腐蚀抑制剂的组合可显著提高涂层的附着力和抗腐蚀性能。此外,文章还提到了未来研究方向,包括开发无标签腐蚀抑制剂,优化抑制剂比例,以及关注特定 substrates 的 CI 选择。总之,ICL 集团通过创新的腐蚀管理策略,致力于提供高性能、可持续的粉末涂料解决方案。
"粉末涂层如何提高抗腐蚀性?" "无金属腐蚀抑制剂有哪些优势?" "粉末涂层解决方案的未来趋势是什么?"
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