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Novel repair method for technical enamels based on sol-gel and sol-dispersion coatings

机译:基于溶胶-凝胶和溶胶分散涂层的工业瓷釉修复新方法

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摘要

The aim of the work presented here is the development of a novel repair method for technical enamels by using chemical nanotechnology. Good adhesion of coatings requires good wettability of the substrate by the repair solution. This was achieved by different pre-treatments of the steel substrates. Low sintering temperatures of the coatings can be ensured by the use of nanoparticle-based systems. Based on liquid metal alkoxides, a colloidal alumina sol and metal salts homogeneous sols with up to seven enamel compounds were prepared. The sols were brush coated onto plain and partly enamelled steel substrates and sintered in a furnace, by inductive heating or an IR emitter. Thin (single layer 1μm) crack-free layers were obtained on nearly all substrates independent of the sintering conditions investigated. The local sintering methods (IR emitter, inductive heating) allow to produce multiple coating systems in short times. Electrochemical impedance spectroscopy (EIS) provides evidence of the protective effect of these layers compared to the bare substrate, but as a result of their chemical composition the layers are not stable in the electrolytic environment for longer times. The thickness of such multiple coatings (20 layers, ≈8μm) is still small compared to that of a technical enamel. Therefore, sol dispersion systems containing powder particles and sol components are applied on top of the sol-gel layers to increase the thickness of the sintered layers.
机译:本文介绍的工作目的是通过使用化学纳米技术开发一种新型的工业用搪瓷修复方法。涂层的良好附着力要求修补溶液使基材具有良好的润湿性。这是通过对钢基材进行不同的预处理来实现的。涂层的低烧结温度可以通过使用基于纳米颗粒的体系来确保。在液态金属醇盐的基础上,制备了胶体氧化铝溶胶和金属盐均相溶胶(最多含7种搪瓷化合物)。将溶胶刷涂在平坦的和部分上釉的钢基材上,并通过感应加热或红外发射器在炉中烧结。与所研究的烧结条件无关,几乎在所有基板上均获得了薄的(单层1μm)无裂纹层。局部烧结方法(红外发射器,感应加热)可在短时间内生产出多种涂层系统。电化学阻抗谱(EIS)提供了与裸露基材相比这些层具有保护作用的证据,但是由于其化学成分,这些层在电解环境中长期不稳定。与工业用搪瓷相比,这种多层涂层(20层,≈8μm)的厚度仍然很小。因此,将包含粉末颗粒和溶胶组分的溶胶分散体系施加到溶胶-凝胶层的顶部以增加烧结层的厚度。

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