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Utilizing Water Contact Angle Measurements to Predict Surface Preparedness for Dye Penetrant Application

机译:利用水接触角测量来预测染料渗透施用的表面准备

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Reliably predicting dye penetrant wettability for fluorescent crack inspections hinges on understanding surface cleanliness prior to penetrant application. Validating the efficacy of a parts washer using water contact angle measurements is a non-destructive method for quantifying surface cleanliness and can ensure complete wetting of the penetrant across a substrate. For this study, surface energies of washed and un-washed aluminum parts were characterized via water contact angle measurements and subsequently correlated with dye penetrant wettability. Penetrant was applied to the surface via cotton swab and allowed to wet the surface for 15 minutes before obtaining a visual inspection of wetting pattern; a smooth, uniform distribution of penetrant indicated sufficient wettability while a blotchy, non-uniform distribution indicated insufficient wettability. Freshly washed samples displayed low contact angles and yielded acceptable penetrant wettability while unwashed parts displayed high contact angles and displayed unacceptable penetrant wettability. Water contact angle can be used to determine surface readiness prior to penetrant application.
机译:可靠地预测荧光裂纹检查铰接在渗透施用之前了解表面清洁度的染料渗透性润湿性。使用水接触角测量验证零件洗衣机的功效是用于量化表面清洁度的非破坏性方法,可以确保穿过基板的渗透剂的完全润湿。对于该研究,通过水接触角测量的洗涤和未洗涤的铝部件的表面能,随后与染料渗透润湿性相关。通过棉拭子将渗透剂施加到表面上,并在获得润湿图案的目视检查之前将表面润湿15分钟;平滑,均匀的渗透剂分布表明了足够的润湿性,而斑点,非均匀分布表明润湿性不足。新鲜洗涤的样品显示出低接触角,并产生可接受的渗透润湿性,而未知的部件显示出高接触角,并显示出不可接受的渗透润湿性。水接触角可用于在渗透施用之前确定表面准备。

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