Preliminary Technological and Environmental Considerations for Generating Mechanical Components using Plant-based UV Resin

IF 0.6 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Materiale Plastice Pub Date : 2022-10-03 DOI:10.37358/mp.22.3.5618
M. Vasilescu
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Abstract

The scope of this paper is to determine the evolution of the dimensional value of the part and to study if there is gas and particle emission produced by the plant-based resin in the 3D printing process with mask stereolithography. For dimensional measurement, a solution with digital calliper is used. For the measurement of emission, two devices are used for indoor air quality. In the vertical direction of part body printed, it is possible to observe a descending linear type of direction with a minimum value at the highest element 3D printed. The data taken into account in this study are mathematically studied using the EXCEL regression equation for dimension. The gases emitted are measured with the booth devices in parallel for formaldehyde and volatile organic compound gases. For CO2 and particles, one of these devices is used. The air quality index was determined in relation to CO2 and, respectively, particle emitted. In the printing process, an increase in CO2 emission of 500 ppm can be observed in the initial phase of the process and a lower value in the body area. It is possible to consider that the quality air in 3D printing with plant-based clear resin is in the good to medium level from all types of emission. These data were put in ac-cordance with the level value offered by the manufacturer of the measuring devices. In this study the dimensional aspects are evaluated in parallel for two types of part bodies and the dimensional equations are the same after three mount times.
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利用植物基UV树脂生产机械部件的初步技术和环境考虑
本文的范围是确定零件尺寸值的演变,并研究在掩模立体光刻的3D打印过程中是否存在植物基树脂产生的气体和颗粒发射。对于尺寸测量,使用带有数字卡尺的解决方案。为了测量排放,室内空气质量使用了两个设备。在打印的部分主体的垂直方向上,可以观察到在3D打印的最高元素处具有最小值的下降线性类型的方向。本研究中所考虑的数据是使用EXCEL维度回归方程进行数学研究的。排放的气体是用平行的隔间设备测量甲醛和挥发性有机化合物气体。对于CO2和颗粒,使用其中一种设备。空气质量指数分别与二氧化碳和排放的颗粒物有关。在印刷过程中,在过程的初始阶段可以观察到500ppm的CO2排放增加,而在身体区域可以观察到更低的值。可以认为,使用植物基透明树脂进行3D打印时,空气质量在所有类型的排放中都处于良好至中等水平。这些数据是根据测量设备制造商提供的水平值输入的。在本研究中,对两种类型的零件体的尺寸方面进行了并行评估,并且在三次安装后,尺寸方程是相同的。
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来源期刊
Materiale Plastice
Materiale Plastice MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
25.00%
发文量
99
审稿时长
6-12 weeks
期刊介绍: Materiale Plastice, abbreviated as Mater. Plast., publishes original scientific papers or guest reviews on topics of great interest. The Journal does not publish memos, technical reports or non-original papers (that are a compiling of literature data) or papers that have been already published in other national or foreign Journal.
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