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Published in: Journal of Iron and Steel Research International 9/2020

25-07-2020 | Original Paper

Forming and uniformity of shaft parts without a stub bar by axial closed–open-type cross-wedge rolling

Authors: Xue-dao Shu, Song Zhang, Kornel F. Ehmann, Zi-xuan Li, Yi-lun Wei

Published in: Journal of Iron and Steel Research International | Issue 9/2020

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Abstract

To realize cross-wedge rolling of shaft parts without a stub bar in a short process, an axial closed–open-type cross-wedge rolling technique was proposed. Based on the strain characteristics in the rolling, evaluation indices of deformation uniformity were provided, and the DEFORM-3D software was adopted to conduct numerical simulations of the rolling process. The metal flow and strain distribution in all stages of the rolling process were analyzed. It is shown that the strain value of the rolled piece close to the end is relatively high while the overall strain distribution is uniform in the rolling process. When the percentage reduction in area is smaller, the fluctuation range of the equivalent strain will be lower and the overall uniformity of the rolled piece will be better. A variable angle wedge was implemented to make metal flow inward and eliminate concavity. Finally, rolling experiment was performed, which indicate that the shape of the rolled piece obtained is consistent with the simulation results. Concavity value in the rolling is decreased by 92% as compared to conventional open rolling. The research results lay a theoretical basis for realizing closed–open-type cross-wedge rolling without a stub bar.
Literature
[1]
go back to reference X.D. Shu, V.Y. Shchukin, G. Kozhevnikova, B.S. Sun, W.F. Peng, Cross wedge rolling theory and technology, Science Press, Beijing, China, 2014. X.D. Shu, V.Y. Shchukin, G. Kozhevnikova, B.S. Sun, W.F. Peng, Cross wedge rolling theory and technology, Science Press, Beijing, China, 2014.
[2]
go back to reference Z.H. Ma, C.P. Yang, Z.H. Hu, Forging & Stamping Technolgy 27 (2002) No. 1, 29–31. Z.H. Ma, C.P. Yang, Z.H. Hu, Forging & Stamping Technolgy 27 (2002) No. 1, 29–31.
[3]
go back to reference Y. Zhang, Y.J. Chen, C.G. Xu, W.W. Ren, Y.Q. Guo, Journal of Netshape Forming Engineering 7 (2015) No. 5, 99–104. Y. Zhang, Y.J. Chen, C.G. Xu, W.W. Ren, Y.Q. Guo, Journal of Netshape Forming Engineering 7 (2015) No. 5, 99–104.
[4]
go back to reference X.H. Wei, X.D. Shu, Hot Working Technology 40 (2011) No. 21, 61–63. X.H. Wei, X.D. Shu, Hot Working Technology 40 (2011) No. 21, 61–63.
[5]
go back to reference J. Zeng, C.G. Xu, W.W. Ren, X.S. Guo, J. Plasticity Eng. 24 (2017) No. 2, 111–117. J. Zeng, C.G. Xu, W.W. Ren, X.S. Guo, J. Plasticity Eng. 24 (2017) No. 2, 111–117.
[6]
go back to reference X.D. Shu, C. Cheng, W.W. Gong, W.F. Peng, B.S. Sun, China Mechanical Engineering 24 (2013) 2109–2113. X.D. Shu, C. Cheng, W.W. Gong, W.F. Peng, B.S. Sun, China Mechanical Engineering 24 (2013) 2109–2113.
[7]
go back to reference Z. Pater, J. Tomczak, T. Bulzak, Arch. Civil Mech. Eng. 18 (2018) 149–161.CrossRef Z. Pater, J. Tomczak, T. Bulzak, Arch. Civil Mech. Eng. 18 (2018) 149–161.CrossRef
[9]
[10]
go back to reference J. Wei, X.D. Shu, D.Y. Tian, W. Xiang, Y.L. Wei, S.T. Han, W.F. Peng, C. Liu, Y. Wang, B.K. Niu, Int. J. Adv. Manuf. Technol. 93 (2017) 1095–1105.CrossRef J. Wei, X.D. Shu, D.Y. Tian, W. Xiang, Y.L. Wei, S.T. Han, W.F. Peng, C. Liu, Y. Wang, B.K. Niu, Int. J. Adv. Manuf. Technol. 93 (2017) 1095–1105.CrossRef
[11]
go back to reference K.Y. Ji, X.D. Shu, B.S. Sun, W.F. Peng, Y. Wang, J. Ningbo Univ. (Nat. Sci. Eng. Ed.) 29 (2016) No. 2, 73–76. K.Y. Ji, X.D. Shu, B.S. Sun, W.F. Peng, Y. Wang, J. Ningbo Univ. (Nat. Sci. Eng. Ed.) 29 (2016) No. 2, 73–76.
[12]
go back to reference J. Wei, X.D. Shu, C. Liu, Y. Wang, Z.X. Li, Z.R. Zhou, Hot Working Technology 45 (2016) No. 15, 140–144. J. Wei, X.D. Shu, C. Liu, Y. Wang, Z.X. Li, Z.R. Zhou, Hot Working Technology 45 (2016) No. 15, 140–144.
[13]
go back to reference Y.L. Wei, X.D. Shu, Y. Wang, D.Y. Tian, A.M. Yin, K.Y. Ji, China Mechanical Engineering 28 (2017) 1238–1244. Y.L. Wei, X.D. Shu, Y. Wang, D.Y. Tian, A.M. Yin, K.Y. Ji, China Mechanical Engineering 28 (2017) 1238–1244.
[14]
go back to reference X.D. Shu, J. Wei, C. Liu, Metalurgija 56 (2017) 123–126. X.D. Shu, J. Wei, C. Liu, Metalurgija 56 (2017) 123–126.
[15]
go back to reference X.D. Shu, S.T. Han, J. Wei, J. Central South Univ. 49 (2018) 1667–1676. X.D. Shu, S.T. Han, J. Wei, J. Central South Univ. 49 (2018) 1667–1676.
[16]
go back to reference J. Chen, X.D. Shu, Z.R. Zhou, J. Ningbo Univ. (Nat. Sci. Eng. Ed.) 32 (2019) No. 3, 55–60. J. Chen, X.D. Shu, Z.R. Zhou, J. Ningbo Univ. (Nat. Sci. Eng. Ed.) 32 (2019) No. 3, 55–60.
[17]
go back to reference X.D. Shu, T.Z. Chen, Y. Chang, Y.L. Wei, W.F. Peng, B.S. Sun, J. Harbin Eng. Univ. 41 (2019) No. 11, 1925–1930. X.D. Shu, T.Z. Chen, Y. Chang, Y.L. Wei, W.F. Peng, B.S. Sun, J. Harbin Eng. Univ. 41 (2019) No. 11, 1925–1930.
[18]
go back to reference Y.L. Wei, X.D. Shu, S.T. Han, D.Y. Tian, J. Wei, Int. J. Adv. Manuf. Technol. 95 (2018) 1975–1988.CrossRef Y.L. Wei, X.D. Shu, S.T. Han, D.Y. Tian, J. Wei, Int. J. Adv. Manuf. Technol. 95 (2018) 1975–1988.CrossRef
[19]
go back to reference J. Wu, G.Q. Xiang, X.H. Cheng, J. Shanghai Jiaotong Univ. 39 (2005) 1063–1065. J. Wu, G.Q. Xiang, X.H. Cheng, J. Shanghai Jiaotong Univ. 39 (2005) 1063–1065.
[20]
go back to reference Y.T. Ding, X.Q. Tang, X.F. Yuan, Y. Hu, T.B. Guo, J. Lanzhou Univ. Technol. 35 (2009) No. 2, 1–4. Y.T. Ding, X.Q. Tang, X.F. Yuan, Y. Hu, T.B. Guo, J. Lanzhou Univ. Technol. 35 (2009) No. 2, 1–4.
[21]
go back to reference Y.C. Lin, M.S. Chen, J. Zhong, J. Cent. South Univ. 39 (2008) 549–553. Y.C. Lin, M.S. Chen, J. Zhong, J. Cent. South Univ. 39 (2008) 549–553.
Metadata
Title
Forming and uniformity of shaft parts without a stub bar by axial closed–open-type cross-wedge rolling
Authors
Xue-dao Shu
Song Zhang
Kornel F. Ehmann
Zi-xuan Li
Yi-lun Wei
Publication date
25-07-2020
Publisher
Springer Singapore
Published in
Journal of Iron and Steel Research International / Issue 9/2020
Print ISSN: 1006-706X
Electronic ISSN: 2210-3988
DOI
https://doi.org/10.1007/s42243-020-00459-0

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