Home
Editorial Committee
Brief Instruction
Back Issues
Instruction to Authors
Submission on line
Contact Us
Chinese

  The journal resolutely  resists all academic misconduct, once found, the paper will be withdrawn immediately.

Title:Friction and wearing behaviors for studied by graphene coating in plastic forming process of low carbon steel studied by ring compression test
Authors: Qian Yong Gong Hongying Jiang Tianliang Zhao Xiaoyun Miao Jun Liao Zehuan 
Unit: Shanghai University of Engineering Science Shanghai Dongfu Cold Forging Manufacturing Co. Ltd. 
KeyWords: ring compression test  graphene coating  adhesive wear  abrasive wearing  Coulomb friction 
ClassificationCode:TG306
year,vol(issue):pagenumber:2019,44(12):114-121
Abstract:

The friction and wearing behaviors of low carbon steel in plastic forming were studied by ring compression test. Based on the ring compression test, the change in inner diameter size was determined to check the friction coefficient. Then, the friction stress on the contact interface was calculated, and the relationship between stress and stroke was analyzed. Furthermore, the wear surface morphology was observed by a super microscope, and the wear mechanism in the friction process of plastic deformation was explored. The results indicate that the variation trend of friction coefficient is different under the plastic deformation condition, and it is accorded with Amunton-Coulomb friction law in a certain range. Therefore, the plastic deformation friction model is mainly shear friction, and the adhesive wear mechanism plays a leading role. In slip deformation, the surface contact reflects the friction characteristics of material in plastic deformation well, and the graphene coating plays a dominant role of abrasive wear to alleviate the friction and wear caused by surface to surface contact effectively.

Funds:
上海工程技术大学校企产学项目((17)CL-003)
AuthorIntro:
钱勇(1991-),男,硕士研究生 E-mail:798169364@qq.com 通讯作者:龚红英(1974-),女,博士,教授 E-mail:ghyyw@163.com
Reference:


[1]Mulc A,Kalpakjian S. Analysis of friction in ring compression: A factorial experiment
[J]. Journal of Engineering for Industry,1972,94(4): 1189-1192.



[2]Yang J,Xia Y,Song H,et al. Synthesis of the liquid-like graphene with excellent tribological properties
[J]. Tribology International,2017,105: 118-124.



[3]Rao K P,Sivaram K. A review of ring-compression testing and applicability of the calibration curves
[J]. Journal of Materials Processing Technology,1993,37(1-4): 295-318.



[4]Noh J H,Min K H,Hwang B B. Deformation characteristics at contact interface in ring compression
[J]. Tribology International,2011,44(9): 947-955.



[5]张永振,朱均,刘维民,等.不同滑动干摩擦条件下钢/铁摩擦副的摩擦磨损性能与表面形貌特征研究
[J]. 摩擦学学报,2001,21(1):37-41.


Zhang Y Z,Zhu J,Liu W M,et al. Investigation of topographical characteristics and tribological behavior of compacted graphite iron in sliding against 40Cr steel under different dry sliding conditions
[J].Tribology,2001,21(1):37-41.



[6]杨建恒,张永振,邱明,等.滑动干摩擦的热机理浅析
[J].润滑与密封,2005,(5):173-176,185.


Yang J H,Zhang Y Z,Qiu M,et al. Analysis to the thermal mechanism of wear in dry friction condition
[J]. Lubrication Engineering,2005,(5):173-176,185.



[7]邱明,张永振,朱均. 高速干滑动下材料摩擦学性能的研究进展
[J].材料科学与工艺,2006,14(6):646-650,654.


Qiu M,Zhang Y Z,Zhu J. Research progress on tribological properties of materials under high speed and dry sliding condition
[J]. Materials Science and Technology,2006,14(6):646-650,654.



[8]林治平. 上限法在塑性加工工艺中的应用
[M].北京: 中国铁道出版社,1991.


Lin Z P.Application of the Upper Bound Method in Plastic Processing Technology
[M]. Beijing: China Railway Publishing House,1991.



[9]Maegawa S,Itoigawa F,Nakamura T. Effect of normal load on friction coefficient for sliding contact between rough rubber surface and rigid smooth plane
[J]. Tribology International,2015,92: 335-343.



[10]Keshtiban P M,Zadshakouyan M,Faraji G. Friction study in equal channel multi angular pressing: load curve and ring compression tests
[J]. Transactions of the Indian Institute of Metals,2016,69(9): 1793-1800.



[11]杜三明,张永振,刘维民,等.氧气气氛中CrNiMo钢的高温高速干滑动摩擦磨损性能
[J].摩擦学学报,2008,28(4):361-365.


Du S M,Zhang Y Z,Liu W M,et al. Tribological behavior of CrNiMo steel at very high speed and elevated temperature in oxygen atmosphere
[J].Tribology,2008,28(4):361-365.



[12]钱苗根,姚寿山,张少宗. 现代表面技术
[M]. 北京:机械工业出版社,1999.


Qian M G,Yao S S,Zhang S Z. Modern Surface Technology
[M]. Beijing: China Machine Press,1999.



[13]Homand F,Belem T,Souley M. Friction and degradation of rock joint surfaces under shear loads
[J]. International Journal for Numerical and Analytical Methods in Geomechanics,2001,25(10): 973-999.

Service:
This site has not yet opened Download Service】【Add Favorite
Copyright Forging & Stamping Technology.All rights reserved
 Sponsored by: Beijing Research Institute of Mechanical and Electrical Technology; Society for Technology of Plasticity, CMES
Tel: +86-010-62920652 +86-010-82415085     Fax:+86-010-62920652
Address: No.18 Xueqing Road, Beijing 100083, P. R. China
 E-mail: fst@263.net    dyjsgg@163.com