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Development of Improved Method for Magnetically Formed Decorative Painting

机译:磁性装饰画改进方法的发展

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Currently, there is a growing demand for application of plastic coverings for motorcycles in the market. Accordingly, decorative features for plastic coverings are increasingly important to enhance the attractiveness of exterior designs of those motorcycles. Under these circumstances, the magnetically formed decorative painting had been adopted to a mass-production model sold in Thailand in 2008. Magnetically formed decorative painting is a method in which the design patterns are formed by painting a material that contains flakes movable along with magnetic fields, while applying magnetic sheets in the ornamenting design shapes underneath the part being painted. It offers a three-dimensional appearance even though its surface has no protrusions or indentations. The degree of three-dimensionality on the paint surface appearance was defined as "plasticity" [1] (a term used in pictorial arts). In our development, a challenge was made to create higher plasticity compared to the painting developed in 2008. It was understood that the orientations of the flakes had significant influences on the plasticity and our development goal was set to create a method that makes the flakes easily movable and yet discontinues the movements after the flakes settled at the desired orientations. The controllability of the flakes was realized by using the flakes with high magnetic permeability (Appendix 5) and by applying high-molecular-weight resin to the paint resin. In addition, by making the optimized selection of the thinner, movements of flakes were controlled during the drying process. By implementing those measures, high-plasticity design patterns was successfully realized for mass production.
机译:当前,市场上对用于摩托车的塑料覆盖物的需求增长。因此,塑料覆盖物的装饰特征对于增强那些摩托车的外观设计的吸引力变得越来越重要。在这种情况下,磁性装饰画已被采用于2008年在泰国销售的量产模型中。磁性装饰画是一种方法,其中该绘画图案是通过对包含随磁场移动的薄片的材料进行绘画而形成设计图案的,同时在要喷涂的零件下面的装饰设计形状中应用磁性薄板。即使其表面没有突起或凹陷,它也可以提供三维外观。将涂料表面外观上的三维度定义为“可塑性” [1](在绘画艺术中使用的术语)。在我们的开发过程中,与2008年开发的绘画相比,要创造更高的可塑性是一项挑战。可以理解的是,薄片的方向对可塑性具有重大影响,我们的发展目标是确定一种使薄片易于制造的方法。可移动的,但在薄片沉降到所需的方向后却停止了运动。薄片的可控性是通过使用具有高磁导率的薄片(附录5)和通过将高分子量树脂施加到涂料树脂上来实现的。此外,通过优化选择较薄的薄片,可在干燥过程中控制薄片的运动。通过实施这些措施,成功实现了可大规模生产的高塑性设计模式。

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