Cite this article as: |
Yi Li, Ming-zhe Li, and Kai Liu, Influence of a multi-step process on the thickness reduction error of sheet metal in a flexible rolling process, Int. J. Miner. Metall. Mater., 26(2019), No. 1, pp. 76-85. https://doi.org/10.1007/s12613-019-1711-2 |
Ming-zhe Li E-mail: limz@jlu.edu.cn
[1] |
S. Tanhaei, K. Gheisari, and S.R.A. Zaree, Effect of cold rolling on the microstructural, magnetic, mechanical, and corrosion properties of AISI 316L austenitic stainless steel, Int. J. Miner. Metall. Mater., 25(2018), No. 6, p. 630.
|
[2] |
C.Z. Lu, J.Y. Li, and Z. Fang, Effects of asymmetric rolling process on ridging resistance of ultra-purified 17%Cr ferritic stainless steel, Int. J. Miner. Metall. Mater., 25(2018), No. 2, p. 216.
|
[3] |
S. Sattari and A. Atrian, Effects of the deep rolling process on the surface roughness and properties of an Al-3vol%SiC nanoparticle nanocomposite fabricated by mechanical milling and hot extrusion, Int. J. Miner. Metall. Mater. 24(2017), No. 7, p. 814.
|
[4] |
I. Yamashita and T. Yamakawa, Apparatus for Forming Plate with a Double-Curved Surface, US Patent, 4770017, 1988.
|
[5] |
S.J. Yoon and D.Y. Yang, Development of a highly flexible incremental roll forming process for the manufacture of a doubly curved sheet metal, CIRP Ann. Manuf. Technnol., 52(2003), No. 1, p. 201.
|
[6] |
D.S. Shim, D.Y. Yang, M.S. Han, S.W. Chung, K.H. Kim, and H.J. Roh, Experimental study on manufacturing doubly curved plates using incremental rolling process,[in] Proceedings of the 9th International Conference on Technology of Plasticity, Gyeongju, 2008, p. 887.
|
[7] |
D.S. Shim, D.Y. Yang, K.H. Kim, M.S. Han, and S.W. Chung, Numerical and experimental investigation into cold incremental rolling of doubly curved plates for process design of a new LARS (line array roll set) rolling process, CIRP. Ann. Manuf. Technnol., 58(2009), No. 1, p. 239.
|
[8] |
M.Z. Li, Z.Q. Hu, and Z.Y. Cai, Method of multipoint continuous forming for the freeform surface parts, Chin. J. Mech. Eng., 43(2007), No. 12, p. 155.
|
[9] |
Z.Y. Cai, M.Z. Li, and Y.W. Lan, Three-dimensional sheet metal continuous forming process based on flexible roll bending:principle and experiments, J. Mater. Process. Technol., 212(2012), No. 1, p. 120.
|
[10] |
Z.Y. Cai, Z. Sui, F.X. Cai, and L. Liu, Continuous flexible roll forming for three-dimensional surface part and the forming process control, Int. J. Adv. Manuf. Technol., 66(2013), No. 1-4, p. 393.
|
[11] |
Y.H. Lin and M. Hua, Influence of strain hardening on continuous plate roll-bending process, Int. J. Non Linear Mech., 35(2000), No. 5, p. 883.
|
[12] |
J. Zeng, Z.H. Liu, and H. Champliaud, FEM dynamic simulation and analysis of the roll-bending process for forming a conical tube, J. Mater. Process. Technol., 198(2008), No. 1-3, p. 330.
|
[13] |
Z.Y. Cai and M.Z. Li, Principle and theoretical analysis of continuous roll forming for three-dimensional surface parts, Sci. China Technol. Sci., 56(2013), No. 2, p. 351.
|
[14] |
R.J. Li, M.Z. Li, N.J. Qiu, and Z.Y. Cai, Surface flexible rolling for three-dimensional sheet metal parts, J. Mater. Process. Technol., 214(2014), No. 2, p. 380.
|
[15] |
Z.Y. Cai, W. Mi, and M.Z. Li, Study on the continuous roll forming process of swept surface sheet metal part, J. Mater. Process. Technol., 204(2014), No. 9, p. 1820.
|
[16] |
M.Z. Li, Z.Y. Cai, R.J. Li, Y.W. Lan, and N.J. Qiu, Continuous forming method for three-dimensional surface parts based on the rolling process using bended roll, J. Mech. Eng., 48(2012), No. 14, p. 44.
|
[17] |
D.M. Wang, M.Z. Li, and Z.Y. Cai, Research on forming precision of flexible rolling method for three-dimensional surface parts through simulation, Int. J. Adv. Manuf. Technol., 71(2014), No. 9-12, p. 1717.
|