Personalized Ring Design and Rapid Manufacturing Based on Reverse Engineering and 3D Printing

Article Preview

Abstract:

Ring as a souvenir and decorations for common people. Due to the design of the market a lot of repetition, people often wish have a unique custom ring , which often have personal logo. This paper Introduces a method of through the fingers to do a CT scan, reverse engineering software and 3 d printing to manufacture custom unique ring for people, This method has high practical value.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

599-602

Citation:

Online since:

August 2016

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2016 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Y. Q. Zhang, J. F. Si, L. L. Wang, Current status of the three-dimensional printing technology, Manuf. Tech. Mach. Tool. 12 (2015) 50-57.

Google Scholar

[2] C. L. He. Z. H. Tang, H. Y. Tian, X. S. Chen, Progress in the development of biomedical polymer materials fabricated by 3-dimensional printing technology, ActaPolym. Sin. 06 (2013) 723-732.

Google Scholar

[3] H. G. Liu, Q. Yang. G. F. Liu, Q. Liu, Patent Information Analysis of 3D-Printing Rapid Prototyping Technology at Home and Abroad, J. Intell. 06 (2013) 40-46.

Google Scholar

[4] Fu D. A. M. Xin, Reconstructing a finite element model of human skeletona using CT image, J. Clin. Rehabilit. Tissue Eng. Res. 09 (2007) 1620-1622.

Google Scholar

[5] S. S. Wang, W. J. Lei, Y. T. Li, M. Y. Wu, N. N. Yang, T. J. Zhang, Development of personalized 3D printing products online trading platform, Electr. Test, 6 (2016) 86-87.

Google Scholar

[6] Y. Q, Yang, Y. Liu. C. H. Song, The Status and Progress of Manufacturing of Metal Parts by 3D Printing Technology, Mech. Electr. Eng. Tech. 4 (2013) 1-8.

Google Scholar

[7] P. He, J. G. Zhang, S. J. Ruan, J. P. Lu, Development of a Three-dimensional Finite Element Model of the Human Brain Based on CT, J. Tianjin University of Science & Technology, 02 (2009) 7619-7622.

Google Scholar

[8] L. Wang, Individualized treatment of orthopaedics and 3D printing technology, J. Med. Biomech. 3 (2014) 193-199.

Google Scholar

[9] R. Y. Ma, Y. Tie, W. D. Xue, K. R. Dai, C. T. Wang. Construction of 3-D Finite Element Models of Human Pelvis Based on Spiral Computer Tomography Images, J. Med. Biomech. 9 (2004) 180-184.

Google Scholar

[10] X. L. Li, Reconstructing a bone finite element model of human thoracolumbar spine based on CT images by using Mimics software, J. Clin. Rehabilit. Tissue Eng. Res. 13 (2009) 131-135.

Google Scholar

[11] Y. Y. Liu, F. H. Zhang, W. H. Chen, F. F. Yan, L. L. Zheng, Q. X. Hu, CAD/CAM System and Experimental Study of Biological 3D Printing Composite Process, J. Mech. Eng. 50 (2014) 147-154.

DOI: 10.3901/jme.2014.15.147

Google Scholar

[12] Y. S. Shi, L. C. Zhang, Y. Bai, Z. Y. Zhao, The development of 3D printing technology and its software implement, Sci. Sin. Inform. 2 (2015) 196-203.

Google Scholar