TY - GEN
T1 - Blow molding artifacts with PneuFab method
AU - Wang, Guanyun
AU - Zhu, Kuangqi
AU - Zhou, Lingchuan
AU - Guo, Mengyan
AU - Chen, Haotian
AU - Yan, Zihan
AU - Pan, Deying
AU - Yang, Yue
AU - Li, Jiaji
AU - Wu, Jiang
AU - Tao, Ye
AU - Sun, Lingyun
N1 - Funding Information:
This project is supported by the National Natural Science Foundation of China (No. 62202423 and No. 62002321), Zhejiang Provincial Natural Science Foundation of China under Grant No. LY23F020020, and the Fundamental Research Funds for the Central Universities (No. 2022FZZX01-22).
Publisher Copyright:
© 2023 Owner/Author.
PY - 2023/4/19
Y1 - 2023/4/19
N2 - We demonstrate a novel and democratized blow molding technique, PneuFab, enabled by FDM 3D-printed custom structures and temporal triggering methods. Access to computer-aided fabrication tools, such as 3D printing, empowers various craft techniques to democratize the creation of artifacts. To afford new blow molding techniques in the field of Human-Computer Interaction, we make efforts to simplify this challenging handy fabrication and enrich the design space of blow molding by taking advantage of the thermoformability and heat deformability of 3D printed thermoplastics. Showcasing design spaces, including artifacts with complex geometries and tunable stiffness, we hope to expand access and dive into what more the digital blow molding fabrication can be.
AB - We demonstrate a novel and democratized blow molding technique, PneuFab, enabled by FDM 3D-printed custom structures and temporal triggering methods. Access to computer-aided fabrication tools, such as 3D printing, empowers various craft techniques to democratize the creation of artifacts. To afford new blow molding techniques in the field of Human-Computer Interaction, we make efforts to simplify this challenging handy fabrication and enrich the design space of blow molding by taking advantage of the thermoformability and heat deformability of 3D printed thermoplastics. Showcasing design spaces, including artifacts with complex geometries and tunable stiffness, we hope to expand access and dive into what more the digital blow molding fabrication can be.
KW - 3D Printing
KW - Blow Molding
KW - Hybrid Fabrication
KW - Shape Changing
UR - http://www.scopus.com/inward/record.url?scp=85158077489&partnerID=8YFLogxK
U2 - 10.1145/3544549.3583938
DO - 10.1145/3544549.3583938
M3 - Conference contribution
AN - SCOPUS:85158077489
T3 - Conference on Human Factors in Computing Systems - Proceedings
BT - CHI 2023 - Extended Abstracts of the 2023 CHI Conference on Human Factors in Computing Systems
PB - Association for Computing Machinery
T2 - 2023 CHI Conference on Human Factors in Computing Systems, CHI 2023
Y2 - 23 April 2023 through 28 April 2023
ER -