Study on Support-Free Printing of Large-Flow Material Extrusion Process

被引:0
|
作者
Huaying Wu
Xiao Wang
Yuqiang Li
机构
[1] Xi’an Jiaotong University,School of Mechanical Engineering
[2] National Innovation Institute of Additive Manufacturing,undefined
关键词
Support-free; Large flow; Material extrusion; Quantitative fusing segment; Air cooling;
D O I
暂无
中图分类号
学科分类号
摘要
Support-free printing is one of the research hotspots of material extrusion process-based 3D printing. When printing bridge or suspended structures, the sagging of large-flow extruded material probably causes printing failure due to its big mass and fusion state. If the support is added, it is hard to remove because of its large adhesion with the matrix. Therefore, large extrusion flow printing process is more willing to print structures without support; the large and complex structures are often difficult to print. In order to realize support-free printing of bridge structure, this paper defines a concept of quantitative fusing segment and analyzes its dynamic balance characteristics during the pellet extrusion printing process. Then the printing speed reduction and air cooling scheme according to the analysis conclusion are put forward, and the experimental verification is carried out. The results show that the sag deformation of bridge structure can be reduced effectively, and it proves that support-free printing is feasible by the rapid cooling method.
引用
收藏
页码:603 / 613
页数:10
相关论文
共 50 条
  • [1] Study on Support-Free Printing of Large-Flow Material Extrusion Process
    Wu, Huaying
    Wang, Xiao
    Li, Yuqiang
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2023, 126 (1-2): : 603 - 613
  • [2] Exploring the impact of printing speed and ambient temperature on support-free rod extrusion
    Gong, Chenglong
    Chen, Shiye
    Han, Yafeng
    Lu, Jiping
    Tang, Shuiyuan
    Fan, Hongli
    Wang, Run
    Xiang, Zezhi
    Wang, Haoren
    Xia, Yuhan
    Tang, Le
    MATERIALS TODAY COMMUNICATIONS, 2025, 43
  • [3] Object Partitioning for Support-Free 3D-Printing
    Karasik, E.
    Fattal, R.
    Werman, M.
    COMPUTER GRAPHICS FORUM, 2019, 38 (02) : 305 - 316
  • [4] Support-Free Volume Printing by Multi-Axis Motion
    Dai, Chengkai
    Wang, Charlie C. L.
    Wu, Chenmeng
    Lefebvre, Sylvain
    Fang, Guoxin
    Liu, Yong-Jin
    ACM TRANSACTIONS ON GRAPHICS, 2018, 37 (04):
  • [5] A study on material flow in combined extrusion process
    Ok, JH
    Hwang, BB
    Choi, HJ
    Ham, BS
    Hwang, SK
    PRICM 5: THE FIFTH PACIFIC RIM INTERNATIONAL CONFERENCE ON ADVANCED MATERIALS AND PROCESSING, PTS 1-5, 2005, 475-479 : 3061 - 3064
  • [6] Nozzle flow behavior of aluminum/polycarbonate composites in the material extrusion printing process
    Zhang, Xinzhou
    Chen, Lan
    Kowalski, Caleb
    Mulholland, Tom
    Osswald, Tim A.
    JOURNAL OF APPLIED POLYMER SCIENCE, 2019, 136 (12)
  • [7] Development of support-free bioceramic 3D printing technique
    Choi, Yeong-Jin
    Naren, Raja
    Yun, Hui-suk
    TISSUE ENGINEERING PART A, 2022, 28 : 166 - 166
  • [8] Toward Support-Free 3D Printing: A Skeletal Approach for Partitioning Models
    Wei, Xiangzhi
    Qiu, Siqi
    Zhu, Lin
    Feng, Ruiliang
    Tian, Yaobin
    Xi, Juntong
    Zheng, Youyi
    IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS, 2018, 24 (10) : 2799 - 2812
  • [9] A Support-Free Infill Structure Based on Layer Construction for 3D Printing
    Xu, Wenpeng
    Liu, Yi
    Yu, Menglin
    Wang, Dongxiao
    Hou, Shouming
    Li, Bo
    Wang, Weiming
    Liu, Ligang
    IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS, 2022, 28 (12) : 4462 - 4476
  • [10] Support-free hollowing for 3D printing via Voronoi diagram of ellipses
    Lee, Mokwon
    Fang, Qing
    Cho, Youngsong
    Ryu, Joonghyun
    Liu, Ligang
    Kim, Deok-Soo
    COMPUTER-AIDED DESIGN, 2018, 101 : 23 - 36