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Structure and property development during solidification of VOC compliant automotive refinish clearcoats

机译:符合VOC标准的汽车修补漆清漆固化过程中的结构和性能发展

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摘要

Amodel volatile organic compound (VOC) compliant two component (2K) acrylic polyol refinish clearcoat was prepared and used to study the effects of a cellulose-based additive on drying, curing, rheology and stress development at room temperature. Results were compared with commercially available VOC compliant and traditional non-compliant clearcoats. Most of the drying of the low VOC coatings occurred before appreciable (20%) crosslinking. Tensile stress developed in the same timeframe as drying and then relaxed over a longer time scale. All coatings had relatively low levels of peak stress (<0.25 MPa) compared to other polymer coatings. Model low VOC coatings prepared with the additive had higher peak stresses than those without the additive. In addition, rheological data showed that the additive resulted in greater viscosity buildup after application. Both effects are attributed to the high glass transition temperature of the additive (70 C).
机译:制备了一种符合挥发性有机化合物(VOC)标准的两组分(2K)丙烯酸多元醇修补漆清漆,并用于研究纤维素基添加剂对室温下干燥,固化,流变性和应力发展的影响。将结果与市售的VOC兼容和传统不兼容的透明涂料进行比较。低VOC涂层的大部分干燥发生在明显的(20%)交联之前。拉伸应力在与干燥相同的时间范围内发展,然后在更长的时间范围内松弛。与其他聚合物涂层相比,所有涂层的峰值应力水平均相对较低(<0.25 MPa)。用添加剂制备的低VOC模型涂料的峰值应力要比不使用添加剂的低。另外,流变学数据表明该添加剂在施用后导致更大的粘度积聚。两种效果均归因于添加剂的高玻璃化转变温度(70 C)。

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