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Secondary Polyvinyl Butyral Modified with Potassium Polytitanate for Coatings with Improved Mechanical Properties

机译:用改善机械性能的涂层用钾多硝酸钾改性二乙烯基丁醛

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The technology of laminated glass is accompanied with a large amount of polyvinyl butyral wastes, which are used for recycling due to mechanical properties of recycled PVB as these properties are lower than those of the original polymer. The properties of composite coatings based on secondary polyvinyl butyral modified with potassium polytitanate were investigated. The composite coating was obtained by polyvinyl butyral dissolved in ethyl alcohol and then dispersed potassium polytitanate into a solution. The resulting suspension was poured onto the surface of a solid substrate and then dried. The research shows that the surface modification of potassium polytitanate with different coupling agents significantly improves the polymer composite mechanical properties. The investigation of various homogenization techniques established a possibility for a significant improvement in the properties of a polyvinyl butyral composite by treatment in a ball mill. The mechanism interactions among the coupling agents, binders, and surface fillers were determined. The research also highlights the possibility of secondary polyvinyl butyral recycling and the production of films with high mechanical properties.
机译:叠层玻璃技术伴随着大量的聚乙烯醇缩醛废物,其用于回收由于再循环PVB的机械性能,因为这些性质低于原始聚合物。研究了基于二乙酸钾改性的二乙烯基丁醛的复合涂层的性质。通过溶解在乙醇中的聚乙烯醇缩丁醛得到复合涂层,然后将多硝酸钾分散到溶液中。将所得悬浮液倒入固体基质的表面上,然后干燥。该研究表明,具有不同偶联剂的多硝酸钾的表面改性显着改善了聚合物复合机械性能。各种均质化技术的研究建立了通过在球磨机中处理聚乙烯醇缩丁醛复合材料的性质的显着改善。确定偶联剂,粘合剂和表面填料之间的机制相互作用。该研究还突出了二级聚乙烯醇缩丁醛再循环的可能性和具有高机械性能的薄膜的可能性。

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