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环氧结构对水性涂料和电工钢叠片性能的影响。

Effect of Epoxy Structure on Properties of Waterborne Coatings and Electrical Steel Laminates.

作者信息

Marchfelder Cornelia, Pugstaller Robert, M Wallner Gernot, Brüggemann Oliver, Aufray Maëlenn

机构信息

Institute of Polymeric Materials and Testing & Christian Doppler Laboratory for Superimposed Mechanical-Environmental Ageing of Polymeric Hybrid Laminates (CDL-AgePol), Johannes Kepler University Linz, Altenbergerstraße 69, 4040 Linz, Austria.

Institute of Polymer Chemistry, Johannes Kepler University Linz, Altenbergerstraße 69, 4040 Linz, Austria.

出版信息

Polymers (Basel). 2022 Apr 11;14(8):1556. doi: 10.3390/polym14081556.

Abstract

Epoxy varnishes are of high relevance to advanced steel laminates for the transformation of electric energy. Structure-property correlations of epoxy varnishes, coil coatings and electrical steel laminates are poorly described. Hence, the main objective of this paper was to develop, implement and evaluate well-defined waterborne model epoxy varnishes for electrical steel laminates, and to elucidate structure-property correlations. Adhesives with systematically varied equivalent epoxy weight (EEW) based on bisphenol-A-diglycidyl ether (DGEBA) were investigated and used to formulate waterborne varnishes. Crosslinking agent dicyandiamide (DICY) was added in an over-stoichiometric ratio. The waterborne model varnishes were prepared by shear emulsification at elevated temperatures. The model varnishes in the A-stage were applied to electrical steel using a doctoral blade. At a peak metal temperature of 210 °C, the coatings were cured to the partly crosslinked B-stage. Coated steel sheets were stacked, laminated and fully cured to C-stage at 180 °C for 2 h. For laminates with an epoxy adhesive layer in the C-stage, glass transition temperatures (T) in the range of 81 to 102 °C were obtained by dynamic mechanical analysis in torsional mode. Within the investigated EEW range, a negative linear correlation of EEW and T was ascertained. Presumably, higher EEW of the varnish is associated with a less densely crosslinked network in the fully cured state. Roll peel testing of laminates at ambient and elevated temperatures up to 140 °C confirmed the effect of EEW. However, no clear correlation of roll peel strength and glass transition temperature was discernible. In contrast, fatigue fracture mechanics investigations revealed that hydroxyl functionality and crosslinking density were affecting the crack growth resistance of laminates in a contrary manner. The energy-based fracture mechanics approach was much more sensitive than monotonic peel testing.

摘要

环氧清漆对于用于电能转换的高级钢层压板具有高度相关性。环氧清漆、线圈涂料和电工钢层压板的结构-性能关系描述得很差。因此,本文的主要目标是开发、应用和评估用于电工钢层压板的定义明确的水性模型环氧清漆,并阐明结构-性能关系。研究了基于双酚A-二缩水甘油醚(DGEBA)的等效环氧重量(EEW)系统变化的粘合剂,并用于配制水性清漆。以化学计量过量的比例添加交联剂双氰胺(DICY)。水性模型清漆通过在高温下剪切乳化制备。将A阶段的模型清漆用刮涂棒涂覆在电工钢上。在金属峰值温度为210°C时,涂层固化至部分交联的B阶段。将涂覆的钢板堆叠、层压并在180°C下完全固化2小时至C阶段。对于C阶段具有环氧粘合剂层的层压板,通过扭转模式的动态力学分析获得了81至102°C范围内的玻璃化转变温度(T)。在研究的EEW范围内,确定了EEW与T之间的负线性相关性。据推测,清漆中较高的EEW与完全固化状态下交联网络密度较低有关。在环境温度和高达140°C的高温下层压板的滚轴剥离试验证实了EEW的影响。然而,未发现滚轴剥离强度与玻璃化转变温度之间有明显的相关性。相比之下,疲劳断裂力学研究表明,羟基官能度和交联密度以相反的方式影响层压板的抗裂纹扩展性能。基于能量的断裂力学方法比单调剥离试验更敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6213/9028634/918eee1657a3/polymers-14-01556-g001.jpg

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