• Opto-Electronic Engineering
  • Vol. 44, Issue 8, 791 (2017)
Yanjun Zhang1、2, Yinan Zhang1, Xinghu Fu1、2、*, and Huimin Wang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3969/j.issn.1003-501x.2017.08.005 Cite this Article
    Yanjun Zhang, Yinan Zhang, Xinghu Fu, Huimin Wang. Fiber Bragg grating torque sensor with the adjustable range spoke structure[J]. Opto-Electronic Engineering, 2017, 44(8): 791 Copy Citation Text show less
    References

    [1] Song Chunhua, Xu Guangwei. Development and research overview on torque sensor[J]. Small & Special Electrical Ma-chines, 2012, 40(11): 58–60.

    [2] Hu Defu. Design of the strain torque sensor[J]. Ship Engi-neering, 2001, 33(4): 96–99.

    [3] Zhang Caini, Wang Xiangzhao. Optical methods for measuring small angles[J]. Journal of Optoelectronics Laser, 2002, 13(4): 416–419.

    [4] Vasudevan M, Arumugam R, Paramasivam S. Real time im-plementation of viable torque and flux controllers and torque ripple minimization algorithm for induction motor drive[J]. En-ergy Conversion and Management, 2006, 47(11–12): 1359–1371.

    [5] Li Yingjun, Zhang Jun, Jia Zhenyuan, et al. Research on force-sensing element’s spatial arrangement of piezoelectric six-component force/torque sensor[J]. Mechanical Systems and Signal Processing, 2009, 23(8): 2687–2698.

    [6] Zhang Yanjun, Wang Guangyu, Fu Xinghu. Multiple wavelength demodulation method of long period fiber grating and fiber Bragg grating[J]. Opto-Electronic Engineering, 2016, 43(8): 13–17.

    [7] Guo Wei, Li Xinliang, Song Hao. Analysis of strain transfer of fiber grating sensors adhered to the structure surface[J]. Me-trology & Measurement Technology, 2011, 31(4): 1–4.

    [8] Mai Mingren, Chen Weiping, Qu Shengguan, et al. Investigation on side pressure's test mode of metal powder during compaction[J]. Modern Manufacturing Engineering, 2009, 13(2): 15–18.

    [9] Zhang Yanjun, Tian Yongsheng, Fu Xinghu, et al. The adjustable range draw-wire type fiber Bragg grating displacement sensor[J]. Opto-Electronic Engineering,2017,44(6): 626-632.

    [10] Dias G L, Magalh es R R, Ferreira D D, et al. The use of a robotic arm for displacement measurements in a cantilever beam[J]. International Journal of Manufacturing, Materials, and Mechanical Engineering, 2016, 6(3): 45–57.

    [11] Fan Xing, Zhao Meirong, Huang Yinguo, et al. A double crescent-shaped spoke type torque sensor based on fiber bragg grating[J]. World Sci-Tech R & D, 2014, 36(3): 231–235.

    [12] Li Jun, Wu Jin, Gao Junqi. Study of an optical fiber grating sensor for monitoring corrosion of reinforcing steel[J]. Spec-troscopy and Spectral Analysis, 2010, 30(1): 283–286.

    [13] Wen Changjin, Li Yulong. Prestress capillary encapsulating device of fiber Bragg grating[J]. Optical Communication Technology, 2014, 38(6): 12–15.

    [14] Li Haixing, Ding Yalin, Hui Shouwen, et al. Design of compliance factor experiment setup for single-axis flexure hinge[J]. Optics and Precision Engineering, 2011, 19(7): 1552–1559.

    [15] Liu Qinpeng, Jia Zhen’an, Fu Haiwei, et al. Double cantilever beams accelerometer using short fiber Bragg grating for eliminating chirp[J]. IEEE Sensors Journal, 2016, 16(17): 6611–6616.

    Yanjun Zhang, Yinan Zhang, Xinghu Fu, Huimin Wang. Fiber Bragg grating torque sensor with the adjustable range spoke structure[J]. Opto-Electronic Engineering, 2017, 44(8): 791
    Download Citation