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新型多功能添加剂对粉末涂料熔体流变学和表面控制的影响.pdf

上传人: c** 编号:465091 2025-01-12 21页 2.24MB

1、Influence of Novel Multi-Functional Additive on MeltRheology and Surface Control in Powder CoatingsBernhard Resch Evonik Corporation,BL Coating Additives9/5/20242Industry Trend:Reduction of Curing Temperature and/or TimeA Need for New Additives?Lets have a look130C/266 FUltra-low curefor heat-sensit

2、ive&alternativesubstrates160C/320FNew generationof low cure/fastcure systems200C/392FStandard curesystems3Powder Coating Systems in ComparisonSystem NameCrosslinker/ResinEpoxyPolyamide or anhydride/bisphenol-A-resinHybridBlend of bisphenol-A-resin and COOH-polyesterTGICTriglycidyl isocyanurate/COOH-

3、polyesterTGIC derivativesGlycidylester/COOH-polyesterHAA-Hydroxyalkylamide/COOH-polyesterPURPolyisocyanate/OH-polyester PolyurethaneAcrylicsDi-acid/glycidyl methacrylateGMAFluoropolymersPolyisocyanate/OH-FEVEFunctionalDecorative UsesExterior UsesCorrosion andInsulation ProtectionInterior&StandardWea

4、therabilityLong-term Weather-and Light StableEpoxyPE/Epoxy HybridStandard DurablePolyester(PE)/TGIC&DerivatesHAAPURSuper Durable PE/TGIC&DerivatesHAAPURAcrylicsFluoropolymers4Powder Coating Additives Key Functional PropertiesAirCoatingSubstrateSurface Control:Flow&LevelingCompatibilityRheology Contr

5、olSubstrate WettingOutgassingDegassingAdhesion PromotionSurface Energy:RecoatabilityDispersion&Pigment WettingSurface Modification:MattingTexturingSlip/Mar/Scratch5Powder Coating Additive GroupsAdditive GroupEffectExamplesFlow&LevelingCompatibilitySurface EnergyGloss/Orange PeelDefects controlRecoat

6、abilityDegassing&OutgassingPTFE/Polyethylene/Fischer-TropschPolypropylene,Castor waxPTFE&PTFE-free,CAB,reactive additivesPolyacrylates(on silica carrier)Amide/polyether blendsPinholesPoppingMar&ScratchMatting WaxTexturingBenzoinModified Polyethylenes,Amide waxesSurface slipGloss reductionFine/Coarse

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本文研究了新型多功能添加剂对粉末涂料的熔体流变学和表面控制的影响。研究比较了不同粉末涂料系统,包括标准固化系统、低固化/快速固化系统,以及含有不同添加剂的系统。实验采用不同测试协议,如熔体粘度测试、滴落形状分析、温度扫描等,来评估添加剂对涂料流动性和表面自由能的影响。结果表明,添加剂可以改善涂料的流平性和降低熔体粘度,优化脱气性和提高光泽度,同时保持良好的再涂性和附着力。例如,在低固化测试中,添加特定添加剂后,涂料的熔体粘度降低,光泽度提高,且脱气性得到改善。这些发现对于开发新型粉末涂料添加剂,优化涂料性能,具有重要意义。
"粉末涂料中的新型多功能添加剂如何影响熔融流变学和表面控制?" "新型低固化温度和/或时间的需求是否促使粉末涂料添加剂的创新?" "选择不同的粉末涂料添加剂组合如何提升涂层的流动性和 leveling 性能?"
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