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Durability of Paint and Varnish Coatings Depending on the Quality of their Appearance

机译:涂料和清漆涂料的耐久性取决于它们的外观质量

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The aim of the work is to study the regularities of the influence of the quality of the appearance of coatings on their durability during the operation.Object of research-paint and varnish coatings of building products and construction.Information on the effect on the longevity of coatings of the quality of their appearance is given.It is shown,that coatings with a high roughness index are characterized by low_ durability during exploitation.Are revealed the influence of the rheological properties of the paint,the porosity of the substrate on the surface roughness of the coatings.Determined,that regardless of the type of paint composition,the strength and relative deformations are reduced,the plastic deformation is increased and the elastic deformation are reduced with increasing roughness of surfaces.A mathematical model is obtained of the dependence of the tensile strength on the roughness of the surface of the films.It is established,that during the moistening of the coatings in the first stage(up to 30 days),the roughness of the surface is reduced,i.e.,the surface micro relief is levelled due to the plasticizing effect of moisture(swelling of the coatings).In the future,due to the destructive effect of moisture,the surface roughness increases,caused by the appearance of micro cracks,rashes,and bubbles.It is established,that in the process of cyclic freezing-thawing the cracks appear locally and are formed near defects on the surface of the coating.The researches allow to develop recommendations for increasing the resistance of coatings and to select the optimum rheological properties of paints depending on the porosity of the substrate.
机译:这项工作的目的是研究涂料外观质量影响的规律,以期间耐用性。对建筑产品和建筑的研究涂料和清漆涂料。对寿命效果的信息给出了它们外观的质量的涂层。如图所示,具有高粗糙度指数的涂层的特征在于利用期间的低耐久性。揭示了涂料流变性质的影响,基板的表面粗糙度的孔隙率在涂料中。如图所示,无论涂料组合物的类型如何,都会降低强度和相对变形,增加塑性变形,随着表面的粗糙度的粗糙度,弹性变形减少了。获得了数学模型的依赖性在薄膜表面的粗糙度上的拉伸强度建立,在涂层的润湿过程中第一阶段(最多30天),表面的粗糙度降低,即由于水分的增塑作用(涂层的溶胀)而平整的表面微浮雕。在未来,由于水分的破坏性效果,表面粗糙度增加,由微裂纹,皮疹和气泡的出现引起。建立,在循环冷冻解 - 解冻的过程中,裂缝出现在局部并且在涂层表面上形成接近缺陷。研究允许制定提高涂层电阻的建议,并根据基材的孔隙率选择涂料的最佳流变性质。

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