Experience of implementation in educational process modern technologies of FDM 3D printing

P. Andrienko, V. Vasilevskij, Ivan Vittsivskyi
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Abstract

Fused Deposition Modeling is an additive manufacturing technology where a temperature-controlled head extrudes a thermoplastic material onto a build platform in a predetermined path. Standard, advanced thermoplastics and composites are used for printing. Among the areas of application for FDM printing, the main ones are rapid prototyping, as well as small-scale and batch production. The purpose of the work is the implementation of FDM 3D printing technology in the educational process of students in specialty 141 "Electroenergy, electrotechnics and electromechanics". The features of the technology of additive manufacturing of electrical apparatuses parts by the method of FDM printing have been investigated. Parts of four standard sizes were printed using ABS + and PLA plastics, namely, current transformer carcasses in the amount of 110 pieces and sensor bodies in the amount of 100 pieces. For printing, an FDM 3D printer was used built on the XZ Head Y Bed kinematic scheme with an open working chamber. The analysis of defects in finished products was carried out, which showed that the main defects are deviations of the actual dimensions and geometric shape of the finished products. Ways to prevent the occurrence of these defects are considered, namely, correcting the size of the model at the stage of preparing the model for printing, minimizing the filling density of the model, using brims in models, setting the optimal temperature of the working platform and simultaneously printing several products. The results of the study o features of the technology of additive manufacturing of electrical apparatuses parts by the method of FDM printing made it possible to develop a set of laboratory works for students of the specialty 141 "Electroenergy, electrotechnics and electromechanics".
在教育过程中实施FDM 3D打印现代技术的经验
熔融沉积建模是一种增材制造技术,其中温度控制的头部在预定路径中将热塑性材料挤压到构建平台上。标准,先进的热塑性塑料和复合材料用于印刷。在FDM打印的应用领域中,主要是快速成型,以及小批量和批量生产。本工作的目的是将FDM 3D打印技术应用于141专业“电能、电工、机电”学生的教学过程中。研究了FDM打印技术在电器零件增材制造中的应用特点。采用ABS +和PLA塑料打印四种标准尺寸的零件,即电流互感器本体110件,传感器本体100件。采用开放式工作腔的XZ头Y床运动方案构建FDM 3D打印机进行打印。对成品缺陷进行了分析,发现缺陷主要是成品实际尺寸和几何形状的偏差。为了防止这些缺陷的发生,我们考虑了在打印模型准备阶段纠正模型尺寸,减小模型填充密度,在模型中使用边缘,设置工作平台的最佳温度,同时打印多个产品。通过FDM打印方法对电气设备零件增材制造技术特点的研究结果使得为专业141“电能、电工技术和机电”的学生开发一套实验作品成为可能。
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