Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 資訊工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/89560
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor鄭龍磻zh_TW
dc.contributor.advisorLung-Pan Chengen
dc.contributor.author王品懿zh_TW
dc.contributor.authorPing-Yi Wangen
dc.date.accessioned2023-09-11T16:15:18Z-
dc.date.available2024-07-01-
dc.date.copyright2023-09-11-
dc.date.issued2023-
dc.date.submitted2023-06-28-
dc.identifier.citationL. Albaugh, S. Hudson, and L. Yao. Digital fabrication of soft actuated objects by machine knitting. In Proceedings of the 2019 CHI Conference on Human Factors in Computing Systems, pages 1–13, New York, NY, USA, 2019. Association for Computing Machinery.
L. Albaugh, J. McCann, S. E. Hudson, and L. Yao. Engineering multifunctional spacer fabrics through machine knitting. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems, pages 1–12, New York, NY, USA, 2021. Association for Computing Machinery.
B. Bhushan and M. Caspers. An overview of additive manufacturing (3d printing) for microfabrication. Microsystem Technologies, 23(4):1117–1124, 2017.
X. Chen, L. Chen, C. Zhang, L. Song, and D. Zhang. Three-dimensional needlepunching for composites–a review. Composites Part A: Applied science and manufacturing, 85:12–30, 2016.
K. Cherenack, C. Zysset, T. Kinkeldei, N. Münzenrieder, and G. Tröster. Woven electronic fibers with sensing and display functions for smart textiles. Advanced materials, 22(45):5178–5182, 2010.
B. Dasgupta and T. Mruthyunjaya. The Stewart platform manipulator: a review. Mechanism and machine theory, 35(1):15–40, 2000.
A. Del Valle, M. Toka, A. Aponte, and J. Jacobs. Punchprint: Creating composite fiber-filament craft artifacts by integrating punch needle embroidery and 3d printing. In Proceedings of the 2023 CHI Conference on Human Factors in Computing Systems, pages 1–15, New York, NY, USA, 2023. Association for Computing Machinery.
S. Duenser, R. Poranne, B. Thomaszewski, and S. Coros. Robocut: Hot-wire cutting with robot-controlled flexible rods. ACM Transactions on Graphics (TOG), 39(4):98–1, 2020.
J. Forman, M. D. Dogan, H. Forsythe, and H. Ishii. Defextiles: 3d printing quasi-woven fabric via under-extrusion. In Proceedings of the 33rd Annual ACM Symposium on User Interface Software and Technology, pages 1222–1233, New York, NY, USA, 2020. Association for Computing Machinery.
M. Goudswaard, A. Abraham, B. Goveia da Rocha, K. Andersen, and R.-H. Liang. Fabriclick: interweaving pushbuttons into fabrics using 3d printing and digital embroidery. In Proceedings of the 2020 ACM designing interactive systems conference, pages 379–393, New York, NY, USA, 2020. Association for Computing Machinery.
L. Griepentrog and P. Richards. Needle felting by hand or machine: 20 projects using easy-to-learn techniques. Penguin, None, 2007.
R. Guo, J. Lin, V. Narayanan, and J. McCann. Representing crochet with stitch meshes. In Symposium on Computational Fabrication, pages 1–8, New York, NY, United States, 2020. Association for Computing Machinery.
N. A.-h. Hamdan, S. Voelker, and J. Borchers. Sketch&stitch: Interactive embroidery for e-textiles. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems, pages 1–13, New York, NY, USA, 2018. Association for Computing Machinery.
C. Harvey, E. Holtzman, J. Ko, B. Hagan, R. Wu, S. Marschner, and D. Kessler. Weaving objects: spatial design and functionality of 3d-woven textiles. In ACM SIGGRAPH 2019 Art Gallery, pages 1–8. Association for Computing Machinery, New York, NY, USA, 2019.
S. He and E. Adar. Plotting with thread: Fabricating delicate punch needle embroidery with x-y plotters. In Proceedings of the 2020 ACM Designing Interactive Systems Conference, DIS ’20, page 1047–1057, New York, NY, USA, 2020. Association for Computing Machinery.
J. Hearle and A. Purdy. 25—a technique for the measurement of the punching force during needle-felting. Journal of the Textile Institute, 63(7):363–374, 1972.
M. Hofmann, J. Mankoff, and S. E. Hudson. Knitgist: A programming synthesis toolkit for generating functional machine-knitting textures. In Proceedings of the 33rd Annual ACM Symposium on User Interface Software and Technology, UIST’20, page 1234–1247, New York, NY, USA, 2020. Association for Computing Machinery.
S. E. Hudson. Printing teddy bears: a technique for 3d printing of soft interactive objects. In Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, pages 459–468, New York, NY, USA, 2014. Association for Computing Machinery.
L. Jones, M. Sturdee, S. Nabil, and A. Girouard. Punch-sketching e-textiles: Exploring punch needle as a technique for sustainable, accessible, and iterative physical prototyping with e-textiles. In Proceedings of the Fifteenth International Conference on Tangible, Embedded, and Embodied Interaction, pages 1–12, New York, NY, USA, 2021. Association for Computing Machinery.
J. H. Kim, S. D. Patil, S. Matson, M. Conroy, and C. H.-L. Kao. Knitskin: Machineknitted scaled skin for locomotion. In CHI Conference on Human Factors in Computing Systems, pages 1–15, New York, NY, USA, 2022. Association for Computing Machinery.
D. Loterie, P. Delrot, and C. Moser. Volumetric 3d printing of elastomers by tomographic back-projection. Preprint at https://doi. org/10.13140/RG, 2(20027.46889):1–11, 2018.
Y. Luo, K. Wu, T. Palacios, and W. Matusik. Knitui: Fabricating interactive and sensing textiles with machine knitting. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems, pages 1–12, New York, NY, USA, 2021. Association for Computing Machinery.
M. E. Mackay, Z. R. Swain, C. R. Banbury, D. D. Phan, and D. A. Edwards. The performance of the hot end in a plasticating 3d printer. Journal of Rheology, 61(2):229–236, 2017.
W. McGee, T. Y. Ng, and A. Peller. Hard+ soft: Robotic needle felting for nonwoven textiles. In Robotic Fabrication in Architecture, Art and Design 2018: Foreword by Sigrid Brell-Çokcan and Johannes Braumann, Association for Robots in Architecture, pages 192–204, International, 2019. Springer, Springer International Publishing.
P. Mertiny and F. Ellyin. Influence of the filament winding tension on physical and mechanical properties of reinforced composites. Composites Part A: Applied Science and Manufacturing, 33(12):1615–1622, 2002.
I. Mitropoulou, M. Bernhard, and B. Dillenburger. Print paths key-framing: Design for non-planar layered robotic fdm printing. In Symposium on Computational Fabrication, pages 1–10, New York, NY, USA, 2020. ACM.
M. Miyatake, K. Narumi, Y. Sekiya, and Y. Kawahara. Flower jelly printer: Slit injection printing for parametrically designed flower jelly. In Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems, pages 1–10, New York, NY, USA, 2021. ACM.
A. Mouritz, M. Bannister, P. Falzon, and K. Leong. Review of applications for advanced three-dimensional fibre textile composites. Composites Part A: applied science and manufacturing, 30(12):1445–1461, 1999.
T. D. Ngo, A. Kashani, G. Imbalzano, K. T. Nguyen, and D. Hui. Additive manufacturing (3d printing): A review of materials, methods, applications and challenges. Composites Part B: Engineering, 143:172–196, 2018.
J. Park, M. J. Tari, and H. T. Hahn. Characterization of the laminated object manufacturing (lom) process. Rapid Prototyping Journal, 6(1):36–50, 2000.
H. Peng, J. Briggs, C.-Y. Wang, K. Guo, J. Kider, S. Mueller, P. Baudisch, and F. Guimbretière. Roma: Interactive fabrication with augmented reality and a robotic 3d printer. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems, CHI ’18, page 1–12, New York, NY, USA, 2018. Association for Computing Machinery.
H. Peng, F. Guimbretière, J. McCann, and S. Hudson. A 3d printer for interactive electromagnetic devices. In Proceedings of the 29th Annual Symposium on User Interface Software and Technology, UIST ’16, page 553–562, New York, NY, USA, 2016. Association for Computing Machinery.
H. Peng, J. Mankoff, S. E. Hudson, and J. McCann. A layered fabric 3d printer for soft interactive objects. In Proceedings of the 33rd Annual ACM Conference on Human Factors in Computing Systems, pages 1789–1798, New York, NY, USA, 2015. Association for Computing Machinery.
J. Schofield. 21—researches on wool felting. Journal of the Textile Institute Transactions, 29(10):T239–T252, 1938.
D. J. Shiwarski, A. R. Hudson, J. W. Tashman, and A. W. Feinberg. Emergence of fresh 3d printing as a platform for advanced tissue biofabrication. APL bioengineering, 5(1):010904, 2021.
H. Takahashi and J. Kim. 3d printed fabric: Techniques for design and 3d weaving programmable textiles. In Proceedings of the 32nd Annual ACM Symposium on User Interface Software and Technology, UIST ’19, page 43–51, New York, NY, USA, 2019. Association for Computing Machinery.
H. A. Toliyat, T. A. Lipo, and J. C. White. Analysis of a concentrated winding induction machine for adjustable speed drive applications. i. motor analysis. IEEE Transactions on Energy conversion, 6(4):679–683, 1991.
A. Van der Vegt and G. Schuringa. The relation between wool felting and single-fiber properties. Textile Research Journal, 26(1):9–16, 1956.
A. K. van der Vegt. A study on the mechanism of wool felting. Excelsior, None, 1955.
G. Wang, Y. Tao, O. B. Capunaman, H. Yang, and L. Yao. A-line: 4d printing morphing linear composite structures. In Proceedings of the 2019 CHI Conference on Human Factors in Computing Systems, pages 1–12, New York, NY, USA, 2019. Association for Computing Machinery.
R. Wu, C. Harvey, J. X. Zhang, S. Kroszner, B. Hagan, and S. Marschner. Automatic structure synthesis for 3d woven relief. ACM Transactions on Graphics (TOG), 39(4):102–1, 2020.
R. Wu, H. Peng, F. Guimbretière, and S. Marschner. Printing arbitrary meshes with a 5dof wireframe printer. ACM Transactions on Graphics (TOG), 35(4):1–9, 2016.
Z. Yan and H. Peng. Fabhydro: Printing interactive hydraulic devices with an affordable sla 3d printer. In The 34th Annual ACM Symposium on User Interface Software and Technology, pages 298–311, New York, NY, USA, 2021. Association for Computing Machinery.
A. Zoran and J. A. Paradiso. Freed: a freehand digital sculpting tool. In Proceedings of the SIGCHI conference on human factors in computing systems, pages 2613–2616, New York, NY, USA, 2013. ACM.
-
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/89560-
dc.description.abstractFeltingReel是一種軟製造系統,讓使用者能創造具有不同結構強度、一體成形的3D非織造紡織品。我們的系統首先將羊毛線捲繞到一個中心線軸上,形成基本形狀,並使用帶倒鉤的針進一步塑形,增加可製造出的3D物件形狀與細緻度。藉由控制捲繞張力和戳刺時間等方式,我們的系統得以改變物件特定目標區域內的密度,製造不同的結構強度。具體而言,我們的系統使用環繞在中心旋轉軸周圍的Stewart平台來控制捲繞和針氈的傾斜度。此外,我們的系統還可以通過更換可拆卸的旋轉軸來形成具有中空內部結構的不同基本形狀。論文中我們研究了不同形狀的戳針、戳刺頻率、捲繞方向與張力對物件密度、結構強度和製造時間的影響。其中我們提出了三種結合氈化和捲繞的方式來製造相同形狀的物件,並製作兩種示例形狀來評估不同方式的製造表現和最終產品。最後我們展示了使用我們的系統製作的幾個物件,藉此討論了此製造系統的能力以及限制。zh_TW
dc.description.abstractFeltingReel is a soft fabrication system that allows users to create a 3D non-woven textile with various structural strengths. Our system coils wool yarn onto a central reel to form a basic shape and uses actuated barbed needles to refine it. By controlling the coiling tension and the felting times, our system varies the density of the workpiece in a target area to achieve various structural strengths. Specifically, our system controls the tilt of coiling and felting using a Stewart platform around a motorized rotating reel. Our system also allows different basic shapes with hollow internal structures to be formed by changing the detachable reel core. We investigate the effects of different felting needles, frequencies, and coiling directions that influence the density, structural strength, and fabrication time of a workpiece. We propose three methods to combine felting and reeling. We evaluate their performances and final products by producing two example workpieces using our system. We demonstrate several objects made by our working system and discuss its capabilities and limitations.en
dc.description.provenanceSubmitted by admin ntu (admin@lib.ntu.edu.tw) on 2023-09-11T16:15:18Z
No. of bitstreams: 0
en
dc.description.provenanceMade available in DSpace on 2023-09-11T16:15:18Z (GMT). No. of bitstreams: 0en
dc.description.tableofcontentsAcknowledgements iii
摘要 v
Abstract vii
Contents ix
List of Figures xi
Chapter 1 Introduction 1
Chapter 2 Related Work 5
2.1 Soft Fabrication in 3D 5
2.2 3D Manufacturing 7
2.3 Felting 8
2.4 Coiling 9
2.5 Summary 9
Chapter 3 Design Rationales 11
Chapter 4 System Implementation 15
4.1 Motion Platform 16
4.2 Reel Core and Feeding Mechanism 17
4.3 Felting Machine 18
4.4 Controlling System 18
Chapter 5 From 3D Model to FeltingReel 21
5.1 Regular Coiling Method 21
5.2 Fit Coiling Method 22
5.3 Embroidered Method 23
5.4 Examples 23
Chapter 6 Evaluation 27
6.1 Material Selection 27
6.2 Coiling Tensile Test 28
6.3 Coiling Way Test 29
6.4 Felting Needle Tips Test 32
Chapter 7 Results 37
Chapter 8 Discussion, Limitation, and Future Work 41
Chapter 9 Conclusion 43
References 45
-
dc.language.isoen-
dc.subject3D軟製造zh_TW
dc.subject非織造zh_TW
dc.subject密度變化zh_TW
dc.subject捲繞zh_TW
dc.subject針氈zh_TW
dc.subjectFeltingen
dc.subjectDensity Varyingen
dc.subjectComputational Craftsen
dc.subjectPrototypingen
dc.subjectReelingen
dc.subjectSoft Fabricationen
dc.subjectNon-wovenen
dc.title基於捲繞與氈化之密度變化性質的紡織成品製作系統zh_TW
dc.titleFeltingReel: Density Varying Soft Fabrication with Reeling and Feltingen
dc.typeThesis-
dc.date.schoolyear111-2-
dc.description.degree碩士-
dc.contributor.oralexamcommittee陳炳宇;詹力韋;蔡欣叡zh_TW
dc.contributor.oralexamcommitteeBing-Yu Chen;Li-wei Chan;Ray Tsaien
dc.subject.keyword3D軟製造,針氈,捲繞,非織造,密度變化,zh_TW
dc.subject.keywordSoft Fabrication,Felting,Reeling,Non-woven,Density Varying,Computational Crafts,Prototyping,en
dc.relation.page51-
dc.identifier.doi10.6342/NTU202301185-
dc.rights.note同意授權(全球公開)-
dc.date.accepted2023-06-29-
dc.contributor.author-college電機資訊學院-
dc.contributor.author-dept資訊工程學系-
dc.date.embargo-lift2024-07-01-
顯示於系所單位:資訊工程學系

文件中的檔案:
檔案 大小格式 
ntu-111-2.pdf7.52 MBAdobe PDF檢視/開啟
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved