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基于开源型3D打印机(RepRap)打印部件的机械性能研究 被引量:13
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作者 赖月梅 《科技通报》 北大核心 2015年第8期235-239,共5页
目前针对该开源型3D打印机打印产品的力学性能研究还相当的缺乏,无法满足工业或者受力部件的打印指导。本文为验证Rep Rap原型打印机或者其衍生版本打印机的真实受力环境可用性,对其打印的部件进行了基本的力学性能测试,从而得到能够反... 目前针对该开源型3D打印机打印产品的力学性能研究还相当的缺乏,无法满足工业或者受力部件的打印指导。本文为验证Rep Rap原型打印机或者其衍生版本打印机的真实受力环境可用性,对其打印的部件进行了基本的力学性能测试,从而得到能够反映其打印质量的拉伸强度、延伸率以及弹性模量,进而对该类型3D打印机用户提供打印标准及指导。根据实验结果,ABS和PLA材料打印试样的平均拉伸强度分别为28.2 MPa和58.1 MPa,所对应的平均弹性模量为1533 MPa和3500 MPa。通过与商用打印机打印试样的力学性能结果对比,可以明显看出开源型打印机不仅在结构建造上面具有可调谐,组装成本低的优点,并且其在力学功能性方面也有其可比较性。 展开更多
关键词 reprap 抗拉强度 弹性模量 ABS树脂材料 聚乳酸(PLA)
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Particle Swarm Optimization of Printing Parameters for Open-source TIG-based Metal 3D Printing
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作者 Shane Oberloier Wilson J Holmes +1 位作者 Luke A Reich Joshua M Pearce 《Chinese Journal of Mechanical Engineering(Additive Manufacturing Frontiers)》 2022年第4期27-35,共9页
Proprietary metal 3D printing is still relegated to relatively expensive systems that have been constructed over years of expensive trial-and-error to obtain optimum 3D printing settings.Low-cost open-source metal 3D ... Proprietary metal 3D printing is still relegated to relatively expensive systems that have been constructed over years of expensive trial-and-error to obtain optimum 3D printing settings.Low-cost open-source metal 3D printers can potentially democratize metal additive manufacturing;however,significant resources are required to redevelop optimal printing parameters for each metal on new machines.In this study,the particle swam optimization(PSO)experimenter,a free and open-source software package,is utilized to obtain the optimal printing parameters for a tungsten inert gas-based metal open source 3D printer.The software is a graphical user interface implementation of the PSO method and is designed specifically for hardware-in-loop testing.It uses the input of experimental variables and their respective ranges,and then proposes iterations for experiments.A custom fitness function is defined to characterize the experimental results and provide feedback to the algorithm for low-cost metal additive manufacturing.Four separate trials are performed to determine the optimal parameters for 3D printing.First,an experiment is designed to deposit and optimize the parameters for a single line.Second,the parameters for a single-layer plane is optimized experimentally.Third,the optimal printing parameters for a cube is determined experimentally.Fourth,the line optimization experiment is revised and reconducted using different shield gas parameters.The results and limitations are presented and discussed in the context of expanding wire arc additive manufacturing to more systems and material classes for distributed digital manufacturing. 展开更多
关键词 Metal 3D printing Additive manufacturing Tungsten inert gas welding TIG welding Particle swarm optimization reprap
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