减色
失真(音乐)
机械加工
锥面
材料科学
机械工程
3D打印
过程(计算)
工程制图
有限元法
序列(生物学)
计算机科学
复合材料
光学
结构工程
工程类
光电子学
冶金
放大器
物理
CMOS芯片
生物
遗传学
操作系统
作者
G. Madireddy,Thomas Feldhausen,Rangasayee Kannan,Peeyush Nandwana,Eric MacDonald,Lonnie J. Love,Yousub Lee
标识
DOI:10.1016/j.jmapro.2024.03.080
摘要
Hybrid manufacturing combines additive manufacturing (AM) and subtractive manufacturing processes to achieve simultaneous benefits. Unlike traditional AM, it allows for interleaved subtractive steps, enhancing machining tool access for parts with high aspect ratios. However, optimizing the printing sequence remains as an area of exploration. In this study with two conical shapes, one exhibited a geometrical mismatch at the interface between two printing sections, while the other did not. 3D laser scanning, finite element simulation, and methodical analysis were used to understand this issue. Printing support structure before machining improved dimensional accuracy, with 0.5 mm reduction in distortion achieved, corresponding to 50 % of the final wall thickness. However, the absence of a feedback mechanism to track wall distortion after the additive process resulted in non-uniform wall thickness with a constant depth of cut during the machining operation. This research highlights the importance of process sequencing in hybrid manufacturing for achieving desired geometry.
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