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Colorimetric properties and stability of 3D prints

机译:3D打印的比色特性和稳定性

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Purpose - The purpose of this paper is to evaluate and discuss colour properties, stability and lightfastness after accelerated exposure in xenon-arc light apparatus, of 3D ink jet prints produced by using 3D colour printing process. Design/methodology/approach - 3D colour prints were produced using Corporation 3D printing method. The samples were divided into groups according to the finishing process applied (untreated, finished with different infiltrants). Colorimetric properties were measured using spectrophotometer. Samples were placed into xenon-arc based weathering apparatus (Xenotest), using the preset glass filtered sunlight, standard indoor conditions. Colour stability was evaluated as change in colour after repeating the spectrophotometer measurements and comparing spectral and specific colorimetric values of initial and exposed samples. Findings - Based on methodology used, the analysis has shown the changes in colour appearance of differently finished 3D prints, which were mostly attributed to chroma and lightness variations. The colour stability of samples studied noticeably varied and is dependent on colour, percentage of ink coverage and finishing method. Issues of colour and stability of 3D ink jet prints could become important as 3D printing emerges into new application areas, in which the object properties will need to be maintained for a certain amount of time. Research limitations/implications - The research is comparative and is limited to the specific materials and procedures used. Originality/value - The paper describes aspects of colour 3D printing for which the published research and literature data are still, for the most part, lacking. Colour measurements methodology and evaluation of stability described could be of value for further research and for users of the technology.
机译:目的-本文的目的是评估和讨论使用3D彩色打印工艺生产的3D喷墨打印品在氙弧光灯设备中加速曝光后的色彩特性,稳定性和耐光性。设计/方法/方法-使用Corporation 3D打印方法制作3D彩色照片。根据所应用的整理过程将样品分为几类(未经处理,用不同的浸润剂整理)。使用分光光度计测量比色性质。使用预设的玻璃滤光阳光,在标准室内条件下,将样品放入基于氙弧的风化设备(Xenotest)中。重复分光光度计测量并比较初始样品和暴露样品的光谱和比色值后,将颜色稳定性评估为颜色变化。调查结果-根据所使用的方法,分析表明,不同制版的3D打印件的颜色外观发生了变化,这主要归因于色度和亮度变化。所研究样品的颜色稳定性显着变化,并且取决于颜色,油墨覆盖率百分比和修整方法。随着3D打印进入新的应用领域,其中的对象属性需要保持一定的时间,3D喷墨打印的颜色和稳定性问题可能变得很重要。研究的局限性/含义-研究是比较性的,限于所使用的特定材料和程序。原创性/价值-本文描述了彩色3D打印的各个方面,但在很大程度上仍缺乏所发表的研究和文献数据。所描述的颜色测量方法和稳定性评估可能对进一步研究和该技术的使用者有价值。

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