Additive manufacturing allows a direct fabrication of any sophisticated mechanism when the clearance of each joint is sufficiently large to compensate the fabrication error, which frees the designers of cumbersome assembly jobs. Clearance design for assembly mechanism whose parts are fabricated by subtractive manufacturing has been well defined. However, the related standard for parts fabricated by additive manufacturing is still under exploration due to the fabrication error and the diversity of printing materials. For saving time and materials in a design process, a designer may fabricate a series of small mechanisms to examine their functionality before the final fabrication of a large mechanism. As a mechanism is scaled, its joint clearances may be reduced, which affects the kinematics of the mechanisms. Maintaining certain clearance for the joints during the scaling process, especially for gear mechanisms, is an intricate problem involving the analysis of nonlinear systems. In this paper, we focus on the parametric design problem for the major types of joints, which allows the mechanisms to be scaled to an arbitrary level while maintaining their kinematics. Simulation and experimental results are present to validate our designs.
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February 2018
Research-Article
Parametric Design of Scalable Mechanisms for Additive Manufacturing
Xianda Li,
Xianda Li
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: sbnine@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: sbnine@sjtu.edu.cn
Search for other works by this author on:
Jie Zhao,
Jie Zhao
Department of Physics and Astronomy,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: carrotzhao@sjtu.edu.cn
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: carrotzhao@sjtu.edu.cn
Search for other works by this author on:
Ren He,
Ren He
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: hrmuye@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: hrmuye@sjtu.edu.cn
Search for other works by this author on:
Yaobin Tian,
Yaobin Tian
Department of Industrial Engineering
and Logistics Management,
Hong Kong University of Science
and Technology,
Clear Water Bay,
Kowloon, Hong Kong
e-mail: ybtian@ust.hk
and Logistics Management,
Hong Kong University of Science
and Technology,
Clear Water Bay,
Kowloon, Hong Kong
e-mail: ybtian@ust.hk
Search for other works by this author on:
Xiangzhi Wei
Xiangzhi Wei
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China e-mail: antonwei@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China e-mail: antonwei@sjtu.edu.cn
Search for other works by this author on:
Xianda Li
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: sbnine@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: sbnine@sjtu.edu.cn
Jie Zhao
Department of Physics and Astronomy,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: carrotzhao@sjtu.edu.cn
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: carrotzhao@sjtu.edu.cn
Ren He
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: hrmuye@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China
e-mail: hrmuye@sjtu.edu.cn
Yaobin Tian
Department of Industrial Engineering
and Logistics Management,
Hong Kong University of Science
and Technology,
Clear Water Bay,
Kowloon, Hong Kong
e-mail: ybtian@ust.hk
and Logistics Management,
Hong Kong University of Science
and Technology,
Clear Water Bay,
Kowloon, Hong Kong
e-mail: ybtian@ust.hk
Xiangzhi Wei
Institute of Intelligent Manufacturing and
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China e-mail: antonwei@sjtu.edu.cn
Information Engineering,
School of Mechanical Engineering,
Shanghai Jiao Tong University,
Shanghai 200240, China e-mail: antonwei@sjtu.edu.cn
1Corresponding author.
Contributed by the Mechanisms and Robotics Committee of ASME for publication in the JOURNAL OF MECHANICAL DESIGN. Manuscript received May 17, 2017; final manuscript received October 7, 2017; published online December 11, 2017. Assoc. Editor: Ettore Pennestri.
J. Mech. Des. Feb 2018, 140(2): 022302 (19 pages)
Published Online: December 11, 2017
Article history
Received:
May 17, 2017
Revised:
October 7, 2017
Citation
Li, X., Zhao, J., He, R., Tian, Y., and Wei, X. (December 11, 2017). "Parametric Design of Scalable Mechanisms for Additive Manufacturing." ASME. J. Mech. Des. February 2018; 140(2): 022302. https://doi.org/10.1115/1.4038300
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