Research on the Application of 3D Printing in the Structural Manufacturing of Intelligent Robots
DOI:
https://doi.org/10.54097/wkmafm18Keywords:
3D printing; intelligent robot; lightweight design.Abstract
This article focuses on the study and discussion of the use of 3D printing technology in the manufacture of intelligent robotic structures, as well as the associated innovation points and rational directions of innovation. First, from the direction of development of 3D printing technology and intelligent robots and the degree of existing development, find the research junction point of the two, analyze and study their past cases and development trend, identify the part that needs to be improved and innovative. The hypotheses and analysis of the innovation part and the identification of research axes on the problems to be solved are followed by the analysis and discussion of the success cases linked to this innovation study. Clarify the direction of improvement and expansion area of innovation, then according to the point of innovation and direction of innovation for the future of 3D printing technology and intelligent robot structure combined with the application appearance, reasonable perspective and analysis.
Downloads
References
[1] Gong Jun, Deng Qian, Wei Xianghao, et al. Research on the Structural Design and Control of Humanoid Robots Based on 3D Printing Technology [J]. New Campus (Upper Issue), 2018, (02): 112-113.
[2] Deng Qiwen, Chen Qiang, Guo Jizhou, et al. The Impact of 3D Printing Technology on the Development of Weaponry [J]. National Defense Science and Technology, 2014(8): 63-66.
[3] Guo Jizhou, Deng Qiwen. Current Situation and Environmental Analysis of 3D Printing Technology in China [J]. Defense Science and Technology, 2015, 36(03): 35-39.
[4] Ji Haifeng. Analysis and Comparison of 3D Printing Technology and Traditional Manufacturing Technology [J]. Agricultural Machinery Use and Maintenance, 2018, (11): 3-4.
[5] Four Approaches to Achieving Lightweight Design through 3D Printing [EB/OL]. (2016-09-09) [2021-12-14]
[6] Chen Hongwei, Liu Gang, Wang Xiaowei, et al. Application and Prospect of Lightweight Composite Materials and 3D Printing Technology in Service Robots [J]. Engineering Research (Engineering in an Interdisciplinary Perspective), 2022, 14(01): 30-39.
[7] Zhong L, Sun S, Law R, et al. Impact of robot hotel service on consumers’ purchase intention: a control experiment[J]. Asia Pacific Journal of Tourism Research, 2020, 25(7): 780–798.
[8] Mao Zhixian, Zhu Xiaolong, Wei Jianjun, et al. Current Status and Prospects of Home Service Robots [J]. Mechanical and Electrical Engineering Technology, 2021, 50(2): 8-14.
[9] Zhao YanGuo, Liu Chuanxin, Xu Congbo, et al. Current Development Status of 3D Printing Technology and Equipment [J]. Mechanical Research and Application, 2021, 34(3): 224-227.
[10] He Yanan, Qi Jinping. Introduction and Practical Application of 3D Printing Technology [J]. Information and Communication, 2016, 29(11): 246-248.
[11] Wang Guobao, Chen Diansheng, Chen Kewei, et al. Current Status and Development Trends of Bionic Robots [J]. Journal of Mechanical Engineering, 2015, 51(13): 27-4.
[12] Yang Ting,Zheng Jianhe,Yao Zilong,et al. Finite element analysis of the biomechanical characteristics of the femur during walking [J]. Guangdong Medical Journal,2016,37(4): 512-515.
[13] Zhang Jun, Li Jianxi, Xia Yukun, et al. Establishment and Verification of the Human Lower Limb Force Model during Walking [J]. Journal of Xi'an Jiaotong University, 2015, 49(9):134-140.
[14] Shan Lijun, Wu Bin, Guan Tianmin. Lightweight Design of Humanoid Robot's Thigh Structure and Its Rapid Prototyping Technology [J]. Mechanical Science and Technology, 2019, 38(09): 1343-1349.
[15] Zheng Yingying. Continuous Carbon Fiber Reinforced Al-Based Composites and Their Development Trends [J]. Modern Manufacturing Technology and Equipment, 2022, 58(2): 93-95, 101.
[16] Fu Lu, Meng Ling, Liu Shunqiang. Research and Discussion on Carbon Fiber Reinforced Resin-Based Composites [J]. Chemical Industry Monthly, 2020, 34(12): 25-27, 36.
[17] Luo Huiyan. Research on Performance Enhancement Techniques and Systems for 3D Printing of Continuous Carbon Fiber Composites [D]. Wuhan: Wuhan University of Technology, 2020.
[18] Chen Jiping, Li Yan, Liu Weiping, et al. The current development status of automatic placement in-situ molding technology for continuous fiber reinforced thermoplastic resin matrix composites in aviation [J]. Journal of Composite Materials, 2019, 36(4): 784-794.
[19] Zhou Weidong. 3D Printing and Applications of Carbon Fiber Reinforced Polymer Composites [EB/OL]. (2018-11-02) [2021-12-14]
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







