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De-painting with high-speed water jets: Paint removal process and substrate surface roughness

机译:高速喷水脱漆:脱漆过程和基材表面粗糙度

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摘要

Although the use of water jets for paint removal processes is an accepted procedure, there are just a few studies known which discuss parameter optimization and surface topography in some detail. The paper investigates the effects of water jet kinetic energy and stand-off distance on the mass loss of an organic paint system applied to a steel substrate. It was shown that the material removal process was characterized by a combination of loading intensity and loading frequency. Water drops, formed in the water jet at long stand-off distances, played a notable role. For rather high water jet energies, mass loss exhibited high values at high stand-off distances. For lower water jet energies, however, maximum material loss values appeared at a critical stand-off distance. The transition water jet energy was 600 kJ. It could be shown that the steel substrate topography was not compromised due to secondary surface preparation by water jets. Secondary blast cleaning, however, reduced the profile of the substrate.
机译:尽管使用喷水器进行除漆工艺是公认的程序,但只有少数几项研究详细讨论了参数优化和表面形貌。本文研究了喷水动能和支座距离对施加到钢基材上的有机涂料系统质量损失的影响。结果表明,材料去除过程的特征在于加载强度和加载频率的组合。在远距离处在水刀中形成的水​​滴起了显著作用。对于相当高的水射流能量,质量损失在高隔离距离下表现出较高的值。然而,对于较低的水射流能量,最大材料损失值出现在临界的对峙距离处。过渡水射流能量为600 kJ。可以证明,由于水射流的二次表面处理,钢基材的形貌没有受到损害。但是,二次喷砂清理减少了基材的轮廓。

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