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  The journal resolutely  resists all academic misconduct, once found, the paper will be withdrawn immediately.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:Allowance design method of hot rolled ring forgings based on data statistics
Authors: Yang Lianghui1  Tan Zhonggang2  Ren Qianguang1  Gong Bitao1  Yang Jiadian1  Zhang Hua1 
Unit: (1.Guizhou Aviation Technical Development Co. Ltd. Guiyang 550081 China   2.Guizhou Liyang Aero-engine Co. Ltd. Guiyang 550014 China) 
KeyWords: hot rolling  ring forgings  machining allowance  trial production of new product  allowance 
ClassificationCode:TG316
year,vol(issue):pagenumber:2024,49(9):134-137
Abstract:

 Reasonable allowance design of forgings can reduce the loss of scrap during the trial production of new products as well as reduce the consumption of metal materials and machining cost. Therefore, according to spatial vector summation algorithm, a new allowance design method of hot rolled ring forgings based on data statistics was proposed, which regarded the size deviation in geometry direction of hot rolled ring forgings and the surface defect of product as the spatial geometry vector, and the summation of these vectors produced the minimum machining allowance of hot rolled ring forgings. Then, these vector values were obtained by the measurement and statistics of the products produced by the production line, representing the actual production capacity of the production line, and according to the probability density of normal distribution, the final size qualification rate of product could be predicted. Furthermore, compared with the existing allowance design method, this allowance design method was based on the product data produced by the production line, and the designed rolled ring forgings allowance was more suitable for the accuracy requirements of the production line. The results show that the application of this method can avoid the excessive or insufficient allowance during the trial production of new product and effectively reduce the material waste or scrap waste, which can also be used in other products such as die forging and free forging.

 
Funds:
AuthorIntro:
作者简介:杨良会(1975-),女,学士,高级工程师 E-mail:yanglianghui@gzhykj.net 通信作者:谭仲刚(1975-),男,学士,高级工程师 E-mail:24381761@qq.com
Reference:

 \[1]  华林,黄兴高,朱春东,等.环件轧制理论和技术\[M].北京:机械工业出版社,2001.


 

Hua L,Huang X G,Zhu C D,et al.Theory and Technology of Ring Rolling\[M].Beijing:Machinery Industry Press,2001.

 

\[2]  柴聪,韩星会,庄武豪.薄壁高筋框体多自由度摆动辗压塑性成形规律\[J].锻压技术, 2023,48(2):118-125.

 

Chai C, Han X H, Zhuang W H. Plastic forming law on multi-degree-of-freedom oscillating rolling for thin-walled and high-rib frame \[J]. Forging & Stamping Technology, 2023,48(2):118-125.

 

\[3]  曾凡飞,庄武豪,王梓熙. 薄壁叉形环轴向辗压成形塑性变形规律研究\[J].锻压技术,2024,49(1):147-153.

 

Zeng F F,Zhuang W H,Wang Z X. Plastic deformation law for axial rolling-forging of thin-walled forked ring \[J].Forging & Stamping Technology, 2024,49(1):147-153.

 

\[4]  黄天佑.材料加工工艺\[M].北京:清华大学出版社,2004.

 

Huang T Y. Material Processing Technology\[M].Beijing:Tsinghua University Press,2004.

 

\[5]  吕明青,邵珠峰,徐道春,等. 基于遗传算法的六连杆机构尺寸优化设计\[J]. 锻压技术,2022,47(7):184-193.

 

Lyu M Q,Shao Z F,Xu D C,et al. Optimization design on dimension of six-link mechanism based on genetic algorithm\[J]. Forging & Stamping Technology,2022,47(7):184-193.

 

\[6]  郭良刚, 杨合,金坚诚.环件径轴向轧制毛坯尺寸设计方法\[J].机械工程学报,2010, 46(24): 1-9.

 

Guo L G, Yang H, Jin J C. Design method of blank sizes for radial-axial ring rolling\[J]. Journal of Mechanical Engineering, 2010, 46(24): 1-9.

 

\[7]  兰箭,左治江,韩星会, 等. 内台阶锥形环件辗扩锻件设计方法研究\[J].塑性工程学报,2006,13(2):51-55.

 

Lan J, Zuo Z J, Han X H, et al. Research on design method of conical ring with inner steps for rolling process \[J]. Journal of Plasticity Engineering,2006,13(2):51-55.

 

\[8]  刘光辉, 刘百宣, 刘华, 等. 双法兰式三阀组阀体多向精密成形工艺\[J]. 精密成形工程, 2017, 9 (2): 58-62.

 

Liu G H, Liu B X, Liu H, et al. Multi-direction precision forming technology of double flanges tri-valve set body
[J]. Journal of Netshape Forming Engineering, 2017, 9 (2): 58-62.

 

\[9]  刘君, 杨家典,胡元伟,等.航空矩形环径向轧制芯辊进给曲线工程化设计
[J]. 锻压技术,2022, 47(3): 121-124.

 

Liu J, Yang J D, Hu Y W, et al. Engineering design on mandrel feeding curve for aviation rectangular ring radial rolling\[J]. Forging & Stamping Technology, 2022, 47(3): 121-124.

 

\[10]T/CCMI 11—2021,大型热轧环形锻件机械加工余量与公差\[S].

 

T/CCMI 11—2021,Design specification for machining allowance and tolerance of large hot rolled ring forgings\[S].

 

\[11]章建跃,李增沪,李勇,等.普通高中教科书数学必修第二册\[M].北京:人民教育出版社,2019.

 

Zhang J Y,Li Z H,Li Y,et al.Ordinary High School Textbook Mathematics Compulsory Volume Two\[M].Beijing: People′s Education Press, 2019.

 

\[12]盛骤,谢式千,潘承毅,等.概率论与数理统计\[M].北京:高等教育出版社,2008.

 

Sheng Z,Xie S Q,Pan C Y,et al.Probability Theory and Mathematical Statistics\[M].Beijing:Higher Education Press,2008.

 

\[13]兰箭,张思阳,郑继荣,等. 外壁带凸台环件轧制成形规律\[J]. 锻压技术,2023,48(1):144-148.

 

Lan J,Zhang S Y,Zheng J R,et al. Rolling law of ring with bosses on outer wall\[J]. Forging & Stamping Technology,2023,48(1):144-148.

 
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