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增材制造中材料选择与测试的创新方法。

Innovative Approaches to Material Selection and Testing in Additive Manufacturing.

作者信息

Fales Alexandr, Černohlávek Vít, Štěrba Jan, Dian Milan, Suszyński Marcin

机构信息

Faculty of Mechanical Engineering, Jan Evangelista Purkyne University in Ustí nad Labem, Pasteurova 1, 40096 Ustí nad Labem, Czech Republic.

Institute of Mechanical Technology, Poznan University of Technology, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2025 Jan 2;18(1):144. doi: 10.3390/ma18010144.

Abstract

This study focuses on selecting a suitable 3D printer and defining experimental methods to gather the necessary data for determining the optimal filament material for printing components of the VEX GO and VEX IQ robotic kits. The aim is to obtain the required data to identify an appropriate filament material and set 3D printing parameters to achieve the desired mechanical properties of the parts while maintaining cost-effectiveness. Another key objective is achieving optimal operational functionality, ensuring the required part performance with minimal printing costs. It is desirable for the modeled and printed parts to exhibit the required mechanical properties while maintaining economic efficiency. Another crucial aspect is achieving optimal functionality of the produced parts with minimal printing costs. This will be assessed by analyzing the impact of key 3D printing technology parameters, focusing in this research phase on material selection. The criteria for selecting filament materials include ease of printability under the conditions of primary and secondary schools, simplicity of printing, minimal need for post-processing, and adequate mechanical properties verified through experimental measurements and destructive tests on original parts from VEX GO and VEX IQ kits. The study analyzed various filaments regarding their mechanical properties, printability, and cost-effectiveness. The most significant practical contribution of this study is selecting a suitable filament material tested through a set of destructive tests, emphasizing maintaining the mechanical properties required for the real-life application of the parts. This includes repetitive assembly and disassembly of various robotic model constructions and their activation for demonstration purposes and applications of STEM/STEAM/STREAM methods in the educational process to achieve the properties of original components. Additionally, the study aims to set up 3D printing such that even a beginner-level operator, such as a primary or secondary school student under the supervision of their teacher or a teacher with minimal knowledge and experience in 3D printing, can successfully execute it. Further ongoing research focuses on evaluating the effects of characteristic 3D printing parameters, such as infill and perimeter, on the properties of 3D-printed parts through additional measurements and analyses.

摘要

本研究着重于选择合适的3D打印机并确定实验方法,以收集必要的数据,从而确定用于打印VEX GO和VEX IQ机器人套件组件的最佳丝状材料。目的是获取所需数据,以识别合适的丝状材料并设置3D打印参数,在保持成本效益的同时实现零件所需的机械性能。另一个关键目标是实现最佳操作功能,以最低的打印成本确保所需的零件性能。理想的情况是,建模和打印的零件在保持经济效率的同时展现出所需的机械性能。另一个重要方面是以最低的打印成本实现所生产零件的最佳功能。这将通过分析关键3D打印技术参数的影响来评估,在本研究阶段重点关注材料选择。选择丝状材料的标准包括在中小学条件下的易打印性、打印的简易性、对后处理的最低需求,以及通过对VEX GO和VEX IQ套件的原始零件进行实验测量和破坏性测试验证的足够机械性能。该研究分析了各种丝状材料的机械性能、可打印性和成本效益。本研究最显著的实际贡献是通过一系列破坏性测试选择了合适的丝状材料,强调保持零件实际应用所需的机械性能。这包括各种机器人模型结构的重复组装和拆卸以及为演示目的而进行的激活,以及在教育过程中应用STEM/STEAM/STREAM方法以实现原始组件的性能。此外,该研究旨在设置3D打印,以便即使是初学者级别的操作员,如在教师监督下的中小学生或对3D打印知识和经验最少的教师,也能成功执行。正在进行的进一步研究侧重于通过额外的测量和分析评估特征3D打印参数(如填充和周长)对3D打印零件性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6e2/11722173/845f6f42ba38/materials-18-00144-g001.jpg

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