Manufacturing Technology 2019, 19(2):261-266 | DOI: 10.21062/ujep/280.2019/a/1213-2489/MT/19/2/261

Study on the Layering of the Main Shaft of the Friction and Wear Testing Machine for Slipper Pair Based on CFRP

Hu Lai1, Huaichao Wu2, Yeo Kiam Beng3, Ding Ning1, Siliang Li1
1 Key Laboratory of Advanced Maufacturing Technology Ministry of Education, Guizhou University, Guizhou, Guiyang 550025
2 Mechanical Engineering College,Guizhou University, Guizhou, Guiyang 550025
3 The Advanced Composites & Materials, Faculty of Engineering, Universiti Malaysia Sabah, Malaysi

Aiming to reveal the friction and wear performance of slipper pair, a high-precision slipper pair friction and wear testing machine must be used. Aiming at the material of the main shaft of the transmission system of MCMS-10 slipper pair friction and wear tester, a research on the main shaft material of the transmission system of the tester by CFRP (Carbon Fiber Reinforced Polymer) is presented. Mainly for the theoretical analysis of the mechanical properties of CFRP, establish a mathematical model, and use the ANSYS Workbench module to the transmission system modal and static analysis. Simultaneously, CFRP is applied to the test machine spindle whether it meets the test machine transmission system requirements, and the stratification of the spindle is compared and analyzed. The results show that the application of CFRP to the main shaft of MCMS-10 tester not only meets the requirement of experimental performance, but also improves its transmission performance on the basis of the original. The maximum displacement and the maximum stress of CFRP are reduced by 0.003513 mm and 13.576 MPa respectively.

Keywords: Slipper Pair Friction and Wear Testing Machine, Spindle Stratification, CFRP; Mechanics, Static Analysis
Grants and funding:

Grant No. Q.K.H.P.T.R.C (2016)5659.
Grant No. Q.R.X.M.Z.Z.H.T (2018)0001.
Grant No. Q.K.H.P.T.R.C (2017)5788.
Grant No. Q.J.H. KY Z. (2018)011.

Published: April 1, 2019  Show citation

ACS AIP APA ASA Harvard Chicago IEEE ISO690 MLA NLM Turabian Vancouver
Lai H, Wu H, Beng YK, Ning D, Li S. Study on the Layering of the Main Shaft of the Friction and Wear Testing Machine for Slipper Pair Based on CFRP. Manufacturing Technology. 2019;19(2):261-266. doi: 10.21062/ujep/280.2019/a/1213-2489/MT/19/2/261.
Download citation

References

  1. Fibre Carbon Fibres and Their Composites [J]. Fiber Reinforced Plastics/Composites, 2018 (02): 110-114.
  2. CHEN R R, WANG X W. (2010). Properties, Applications and Related Standards of Polyacrylonitrile (PAN) carbon fibers [J]. China Fiber Inspection 2010 (6): 75-79.
  3. WU, HUAICHAO, KUNPENG WANG, GUNCHAO SUN A LIMEI ZHAO. (2018). Influence study of oil film thrust bearing on thermal characteristics of high-speed precision roll grinding head. Manufacturing Technology. 18(2), 330-336. ISSN 1213-2489. Go to original source...
  4. LIU YANG, LI LI NAN, CHEN MING, et al. (2015). Comparison of Cutting Forces and Cutting Temperatures of Two Drills in High Speed Drilling Carbon Fiber Composite [J]. Materials for Mechanical Engineering, 2015, 39 (11): 36-40. Go to original source...
  5. HA S K, KIM M H, HAN S C, et al. (2006). Design and Spin Test of A Hybrid Composite Flywheel Rotor with A Split Type Hub [J]. Journal of Composite Materials,2006,40(23):2113-2130. Go to original source...
  6. SEG¥A, ©. (2018). Kinematic analysis and optimization of a wheel loader mechanism. Manufacturing Technology. 18(2), 309-314. ISSN 1213-2489. Go to original source...
  7. HIROSHIMA, N., HATTA. H., KOYAMA, M., et al. Optimization of Flywheel Rotor Made of Three-dimensional Composites[J]. Composite Structures, 2015,131:304-311. Go to original source...
  8. HA, S. K., YOON, Y, B.,HAN, S. C. (2000). Effects of Material Properties On The Total Stored Energy of A Hybrid Flywheel Rotor[J]. Archive of Applied Mechanics,2000,70(8-9): 571-584. Go to original source...
  9. BLATNICKÁ, M., BLATNICKÝ, M., DI®O, J., SÁGA, M. (2018). Comparison of analytical stress analysis and numerical calculation of mobile work machine part. Manufacturing Technology. 18(2), 190-193. ISSN 1213-2489. Go to original source...
  10. WANG Yuechang, LIU Ying, HUANG Weifeng, et al. (2017). ANSYS Interference Fit Analysis of Mechanical Seals in Reactor Coolant Pumps [J]. Journal of Mechanical Engineering, 2017, 53 (05): 153-159. Go to original source...
  11. LI HONGWEI, YU WENTAO, LIU SHUQIN. (2014). Mode Analysis and Design of Maglev Flexible Rotor with ANSYS [J]. China Mechanical Engineering, 2014, 25 (11): 1447-1452+1459.
  12. BARBERO E J. (2013). Finite Element Analysis of Composite Materials Using ANSYS,Second Edition [M]. CRC Press, 2013. Go to original source...

This is an open access article distributed under the terms of the Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.