Graduate School of Creative Science and Engineering, Waseda University, Department of Modern Mechanical Engineering, Shinjuku, Okubo 169-8555, Japan.
Undergraduate School of Creative Science and Engineering, Waseda University, Department of Modern Mechanical Engineering, Shinjuku, Okubo 169-8555, Japan.
Sci Rep. 2017 Jan 5;7:39852. doi: 10.1038/srep39852.
The authors focus on the Fused Deposition Modeling (FDM) 3D printer because the FDM 3D printer can print the utility resin material. It can print with low cost and therefore it is the most suitable for home 3D printer. The FDM 3D printer has the problem that it produces layer grooves on the surface of the 3D printed structure. Therefore the authors developed the 3D-Chemical Melting Finishing (3D-CMF) for removing layer grooves. In this method, a pen-style device is filled with a chemical able to dissolve the materials used for building 3D printed structures. By controlling the behavior of this pen-style device, the convex parts of layer grooves on the surface of the 3D printed structure are dissolved, which, in turn, fills the concave parts. In this study it proves the superiority of the 3D-CMF than conventional processing for the 3D printed structure. It proves utilizing the evaluation of the safety, selectively and stability. It confirms the improving of the 3D-CMF and it is confirmed utilizing the data of the surface roughness precision and the observation of the internal state and the evaluation of the mechanical characteristics.
作者专注于熔融沉积建模(FDM)3D 打印机,因为 FDM 3D 打印机可以打印实用树脂材料。它可以低成本打印,因此最适合家用 3D 打印机。FDM 3D 打印机存在表面产生层纹的问题,因此作者开发了 3D 化学熔融修整(3D-CMF)来去除层纹。在这种方法中,笔式设备中填充有能够溶解用于构建 3D 打印结构的材料的化学物质。通过控制这种笔式设备的行为,可以溶解 3D 打印结构表面的凸层纹部分,从而填充凹层纹部分。本研究证明了 3D-CMF 比传统加工方法在 3D 打印结构方面的优越性。它证明了利用安全性、选择性和稳定性的评估。它证实了 3D-CMF 的改进,并通过表面粗糙度精度数据的观察、内部状态的评估和机械特性的评估得到了证实。