Implementation of the process by slurry and concentrate of pigments in latex-type paint formulas. Challenges and opportunities for planning

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY UIS Ingenierias Pub Date : 2022-03-15 DOI:10.18273/revuin.v21n2-2022001
Belén Paricaguan, J. Muñoz, Laura Sáenz-Palencia
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Abstract

Changes in product production are limited by high costs in infrastructure, procedures, reformulations and / or substitution of raw materials. Therefore, it is necessary to develop and innovate technologies that minimize impacts, without damaging product quality standards. In paint formulations, the dispersion process is of vital importance, which is why this research evaluated the possibility of implementing the technique slurry and pigment concentrate in the traditional way of manufacturing latex-type paints of the premium line (satin and exterior), and partially eliminate the dispersion stage, maintaining the physicochemical characteristics according to Venezuelan COVENIN standards. For this, three types of slurries were used; I: Aqueous dispersion of calcium carbonate (CaCO3), magnesium silicate (MgSiO3) and Kaolin (Al2Si2O5 (OH)4), II: Aqueous dispersion of CaCO3, III: Aqueous dispersion of CaCO3 and Kaolin. Likewise, in the pigment concentrates, two types of aqueous dispersion of titanium dioxide (TiO2) of medium and high dispersibility were used. As a result, there were no significant variations in terms of the quality characteristics of the paints obtained through the process by slurry and pigment concentrate with respect to the traditional manufacturing process. In addition, a reduction of 102 minutes was achieved on the global manufacturing time, since the previous dispersion of the pigments and extenders present in the pigment concentrates and slurries was used, thus eliminating one of the four stages of the manufacturing process of the lines (scattering stage). With the use of slurries and pigment concentrates, it was possible to increase productivity by 31.20 %, becoming an alternative for paint manufacturers, without investing in new equipment.
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采用浆料和浓缩料的方法实现胶乳型涂料配方。规划的挑战和机遇
产品生产的变化受到基础设施、程序、重新配方和/或原材料替代的高成本的限制。因此,有必要开发和创新技术,在不损害产品质量标准的情况下,将影响降到最低。在涂料配方中,分散过程是至关重要的,这就是为什么本研究评估了在生产高档线(缎面和外部)乳胶型涂料的传统方法中实施浆料和颜料浓缩技术的可能性,并部分消除分散阶段,保持符合委内瑞拉COVENIN标准的物理化学特性。为此,使用了三种类型的浆料;I:碳酸钙(CaCO3)、硅酸镁(MgSiO3)和高岭土(Al2Si2O5 (OH)4)的水分散体,II: CaCO3的水分散体,III: CaCO3和高岭土的水分散体。同样,在颜料精矿中,使用了两种中等分散性和高分散性的二氧化钛(TiO2)水分散体。因此,与传统的制造工艺相比,通过浆料和颜料浓缩工艺获得的涂料的质量特征没有明显的变化。此外,由于使用了先前存在于颜料浓缩物和浆料中的颜料和扩展剂的分散,因此减少了线条制造过程的四个阶段之一(散射阶段),因此减少了102分钟的全球制造时间。通过使用浆料和颜料浓缩物,可以将生产率提高31.20%,成为涂料制造商的替代选择,而无需投资新设备。
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来源期刊
UIS Ingenierias
UIS Ingenierias ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
27
审稿时长
12 weeks
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