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  The journal resolutely  resists all academic misconduct, once found, the paper will be withdrawn immediately.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:Structure analysis and design on the jaw for forging manipulator
Authors: Liu Yanyan  Sang Yuxin  He Qigong 
Unit: Lanzhou Jiaotong University Lanzhou LS Energy Equipment Engineering Research Co.  Ltd. 
KeyWords: forging manipulator  clamping mechanism  jaw  clamping force  friction coefficient 
ClassificationCode:TG315
year,vol(issue):pagenumber:2017,42(1):86-91
Abstract:

The jaw is the component contacting with workpiece directly in the forging manipulator clamping mechanism, and its structure determines the clamping force of manipulator. Based on the clamping force analysis model of the forging manipulator jaw, the key factors such as the friction factor between jaw and workpiece, the length of jaw and the center distance of jaw clamping gripper were proposed. According to the jaw clamping character, the varying rule of friction factor between the ‘cold’jaw and the ‘hot’ workpiece was studied by experiment, and the value range was analyzed. Then, the type and structure characteristics of clamped workpiece were studied, and the design principles of  jaw length were determined. Furthermore, the influences of the minimum diameters of clamped workpiece on design and application of manipulator were analyzed, and the determination method of the minimum diameter of clamped workpiece was studied. Finally, the optimization design with the minimum weight was carried out by meeting the strength conditions of jaw, and the research clue of determining the center distance of jaw clamping gripper was confirmed. Therefore, it provides effective support for structural design of the forging manipulator jaw. 

 

Funds:
国家自然科学基金资助项目(51265022);甘肃省科技计划资助项目(145RJZA187)
AuthorIntro:
刘艳妍(1964-),女,本科,教授 E-mail:liuyy@mail.lzjtu.cn
Reference:
[1]国家自然科学基金委员会工程与材料科学部.机械与制造科学——学科发展战略研究报告[M].北京:科学出版社,2006.

Engineering and Materials Science Division of NSFC. Mechanical and Manufacturing Science - Discipline Development Strategy Research Report[M]. BeijingScience Press2006.

[2]赵勇,林忠钦,王皓.重型锻造操作机的操作性能分析[J].机械工程学报,2010,46(11):69-75.

Zhao Y, Lin Z Q, Wang H. Manipulation performance analysis of heavy manipulators[J]. Journal of Mechanical Engineering, 2010,46(11):69-75.

[3]毛金城,杨文玉.重载工业夹持器约束建模与承载能力分析[J]. 华中科技大学学报: 自然科学版,2011,39(12):1-5.

Mao J C, Yang W Y. Constraint modeling and loading capacity analysis of heavy-duty industrial grippers[J]. Journal of Huazhong University of Science and Technology: Natural Science Edition, 2011, 39(12): 1-5.

[4]李群明,高丹,邓华.重载夹持装置接触力的封闭性[J]. 机械工程学报, 2010, 46(11):36-42.

Li Q M, Gao D, Deng H. The contact force-closure of heavy duty gripping mechanisms[J].Journal of Mechanical Engineering, 2010, 46(11): 36-42.

[5]吴永宏,李群明.机械手夹持接触力及力封闭分析[J]. 中南大学学报: 自然科学版, 2009, 40(6):1580-1586.

Wu Y H, Li Q M. Analysis of gripping contact force and force-closure of manipulator[J]. Journal of Central South University: Science and Technology, 2009, 40(6): 1580-1586.

[6]万胜狄,王运赣,沈元彬. 锻造机械化与自动化[M]. 北京:机械工业出版社,1983.

Wan S DWang Y GShen Y B. Forging Mechanization and Automation[M]. Beijing China Machine Press1983.

[7]杨晋,张文波,姜峰.锻造操作机夹持状态分析与夹持力研究[J]. 四川大学学报: 工程科学版,2014,46(3):187-192.

Yang J, Zhang W B, Jiang F. Analysis of clamping condition and research of clamping force about the forging manipulator[J]. Journal of Sichuan University: Engineering Science Edition, 2014,46(3):187-192.

[8]杨文玉.力抓取的接触力建模与可行抓取力分析 [J].机械工程学报, 2010,46(11):43-48.

Yang W Y. Contact force modeling and feasible grasp force analysis of power grasp[J]. Journal of Mechanical Engineering, 2010, 46(11): 43-48.

[9]孟宪国,冯长儒.锻造操作机钳口夹紧力和夹紧缸能力的计算[J] .一重技术, 2006, (2):1-3.

Meng X G, Feng C R. Jig jaw clamping force and cylinder clamping capacity calculation for forging manipulator [J].CFHI Technology, 2006, (2):1-3.

[10]Wang W R, Zhao K, Lin Z Q, et al. Evaluating interactions between the heavy forging process and the assisting manipulator combining FEM simulation and kinematics analysis[J]. The International Journal Advanced Manufacturing Technology, 2010, 48(5): 481-491.

[11] He X M. Effects of manipulator compliant movements on the quality of free forgings based on FEM simulation[J]. The International Journal Advanced Manufacturing Technology, 2011, 56(9): 905-913.

[12]闻邦椿, 张义民, 鄂中凯, . 机械设计手册[M]. 5. 北京:机械工业出版社, 2010.

Wen B C, Zhang Y M, E Z K, et al. Machine Design Handbook[M]. 5th Edition. BeijingChina Machine Press, 2010.
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