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The Use Of Contact Angle Measurements To Estimate The Adhesion Propensity Of Calcium Carbonate To Solid Substrates In Water

机译:接触角测量法用于评估碳酸钙对水中固体基质的附着倾向

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We have studied a series of solids using contact angle measurements; stainless steel, gold, aluminium, titanium nitride and PTFE that are frequently used in domestic water environments. It was found the influence of electron-donor (γ~-) and electron-acceptor (γ~+) free energies on material scaling rate was dominated by water wetting angles, providing materials exhibit an average roughness below 100 nm. The γ~- component had the greatest influence on theoretical adhesion, while γ~(LW), (Lifshitz-van der Waals) γ~+ and γ~(AB) (acid-base) had little effect. From the materials analysed, amorphous carbon coatings were least adhesive, while 'kettle coating' and highly roughened steel the most adhesive. The size and distribution of asperities also influenced the polar free energies and subsequent adhesion due to fluctuations in the wetting angle. The results obtained indicate works of adhesion can be used as a complementary technique with Lewis acid-base theory to deliver useful information about the propensity of scale to deposit on solids.
机译:我们已经使用接触角测量研究了一系列固体。不锈钢,金,铝,氮化钛和聚四氟乙烯,常用于家庭水环境。发现电子给体(γ〜-)和电子受体(γ〜+)自由能对材料结垢速率的影响主要由水润湿角决定,只要材料的平均粗糙度低于100 nm。 γ〜-成分对理论附着力的影响最大,而γ〜(LW),(Lifshitz-van der Waals)γ〜+和γ〜(AB)(酸碱)的影响很小。从所分析的材料来看,无定形碳涂层的粘合性最低,而“水壶涂层”和高度粗糙的钢的粘合性最高。由于润湿角的波动,粗糙的大小和分布也会影响极性自由能和随后的附着力。获得的结果表明,附着力的工作可以用作路易斯酸碱理论的补充技术,以提供有关水垢在固体上沉积倾向的有用信息。

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