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Surface dispersive energy determined with IGC-ID in anti-graffiti-coated building materials

机译:用IGC-ID测定的抗涂鸦涂层建筑材料中的表面分散能

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摘要

Coating building materials with anti-graffiti treatments hinders or prevents spray paint adherence by generating low energy surfaces. This paper describes the effect of coating cement paste, lime mortar, granite, limestone and brick with two anti-graffiti agents (a water-base fluoroalkylsiloxane, “Protectosil Antigraffiti®”, and a Zr ormosil) on the dispersive component of the surface energy of these five construction materials. The agents were rediluted in their respective solvents at concentrations of 5 and 75% and the values were determined with inverse gas chromatography at infinite dilution (IGC-ID).\ud\udThe dispersive energy of the five materials prior to coating, ranked from highest to lowest, was as follows: limestone > granite > cement paste > brick > lime mortar. After application of the two anti-graffiti compounds, CF3 terminals (Protectosil) were found to reduce the surface energy of both basic (limestone and lime mortar) and acidic (granite) substrates more effectively than CH3 (ormosil) terminals.
机译:带有抗涂鸦处理功能的建筑材料涂料会产生低能表面,从而阻碍或阻止喷涂涂料的附着。本文介绍了用两种抗涂鸦剂(水基氟代烷基硅氧烷,“ ProtectosilAntigraffiti®”和Zr ormosil)涂覆水泥浆,石灰砂浆,花岗岩,石灰石和砖块对表面能分散成分的影响。这五种建筑材料中。将这些试剂分别以5和75%的浓度稀释在各自的溶剂中,并使用无限稀释的反向气相色谱法(IGC-ID)测定值。\ ud \ ud涂覆前这五种材料的分散能(从最高最低,依次为:石灰石>花岗岩>水泥浆>砖>石灰砂浆。施用两种抗涂鸦化合物后,发现CF3端子(Protectosil)比CH3(ormosil)端子更有效地降低了碱性(石灰石和石灰砂浆)和酸性(花岗岩)基材的表面能。

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