Open Source, Modular, Customizable, 3-D Printed Kinesthetic Haptic Devices

被引:0
|
作者
Martinez, Melisa Orta [1 ]
Campion, Joseph [1 ]
Gholami, Tara [1 ]
Rittikaidachar, Michal K. [1 ]
Barron, Aaron C. [1 ]
Okamura, Allison M. [1 ]
机构
[1] Stanford Univ, Dept Mech Engn, Stanford, CA 94305 USA
基金
美国国家科学基金会;
关键词
PADDLE; DESIGN;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Open Source Hardware allows users to share, customize, and improve designs, thus enabling technological advancement through communities of practice. We propose open source hardware for educational haptics that permits researchers, educators, and students to share designs arising from their different perspectives, with the potential to expand educational applications. In this paper we present a family of open source kinesthetic haptic devices that build upon the design of a previous educational haptic device, Hapkit 3.0. First, we discuss methods for Hapkit personalization and customization that can be achieved by K-12 students and educators. Next, we describe two kinesthetic haptic device designs that evolved from the original Hapkit 3.0. One uses two standard Hapkits with additional components to form a Pantograph mechanism, and the other uses customized Hapkit elements along with a novel kinematic design to form a serial mechanism. These designs are modular; after building two Hapkits, a user acquires a small number of additional parts to transform them into a two-degree-of-freedom device. The Pantograph mechanism was used in an undergraduate class to teach robotics and haptics to both engineering and non-engineering students. Open source designs for all devices as well as tutorials for customization are available at http://hapkit.stanford.edu.
引用
收藏
页码:142 / 147
页数:6
相关论文
共 50 条
  • [31] An open source 3D printed autosampler for capillary electrophoresis
    Itterheimova, Petra
    Kuban, Petr
    ANALYTICA CHIMICA ACTA, 2023, 1279
  • [32] Analysis of Innovative 3D-Printed Direct Coolers for Modular Power Devices
    Delmonte, Nicola
    Cova, Paolo
    Spaggiari, Davide
    Santoro, Danilo
    Sciancalepore, Corrado
    Menozzi, Roberto
    2023 29TH INTERNATIONAL WORKSHOP ON THERMAL INVESTIGATIONS OF ICS AND SYSTEMS, THERMINIC, 2023,
  • [33] RepRapable Recyclebot: Open source 3-D printable extruder for converting plastic to 3-D printing filament
    Woern, Aubrey L.
    McCaslin, Joseph R.
    Pringle, Adam M.
    Pearce, Joshua M.
    HARDWAREX, 2018, 4
  • [34] A Low-Cost 3-D Printed THz Open Resonator Antenna
    Li, Yuan-Long
    Luk, Kwai-Man
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2023, 22 (01): : 84 - 88
  • [35] A 3-D Printed Circularly Polarized Open-ended Waveguide Antenna
    Zhang, Chu Wei
    Ma, Zi Long
    PROCEEDINGS OF THE 2021 CROSS STRAIT RADIO SCIENCE AND WIRELESS TECHNOLOGY CONFERENCE (CSRSWTC), 2021, : 246 - 247
  • [36] OpenRST: An Open Platform for Customizable 3D Printed Cable-Driven Robotic Surgical Tools
    Colan, Jacinto
    Davila, Ana
    Zhu, Yaonan
    Aoyama, Tadayoshi
    Hasegawa, Yasuhisa
    IEEE ACCESS, 2023, 11 : 6092 - 6105
  • [37] Towards an open-source landscape for 3-D CSEM modelling
    Werthmuller, Dieter
    Rochlitz, Raphael
    Castillo-Reyes, Octavio
    Heagy, Lindsey
    GEOPHYSICAL JOURNAL INTERNATIONAL, 2021, 227 (01) : 644 - 659
  • [38] Open-source 3-D printing materials database generator
    Choppara, Dheeraj
    Garmulewicz, Alysia
    Pearce, Joshua M.
    JOURNAL OF MANUFACTURING TECHNOLOGY MANAGEMENT, 2023, 34 (06) : 1051 - 1069
  • [39] MICROANALYZING 3-D PRINTED METALS
    Jacoby, Mitch
    CHEMICAL & ENGINEERING NEWS, 2015, 93 (38) : 43 - 44
  • [40] Design of a 3-D Printed, Modular Lateral Line Sensory System for Hydrodynamic Force Estimation
    Nelson, Kevin
    Mohseni, Kamran
    MARINE TECHNOLOGY SOCIETY JOURNAL, 2017, 51 (05) : 103 - 115