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Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) 1/2022

10.01.2022 | Original Paper

The ultra-high temperature forging process based on DEFORM-3D simulation

verfasst von: Yong-qiang Wu, Kai-kun Wang

Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) | Ausgabe 1/2022

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Abstract

A green manufacturing and forming technology called the ultra-high temperature forging is introduced. The highest temperature of the ingot in the new forging technology was about 200 °C higher than the initial forging temperature in the traditional forging process. The DEFORM-3D software was used to simulate both the ultra-high temperature forging process and the traditional forging process. The ingot was cut longitudinally along the centreline. Nine points on the axis of the cutting plane and nine points on the radial direction were selected. The equivalent stress and the equivalent strain of these points were compared respectively under the two forging processes by using the particle tracking method. The typical points which were easy to crack under two different forging processes were found. Comparing with the tensile strength calculated by the software JMatPro® and the maximum principal stress calculated by the software DEFORM-3D, we found the new forging technology could avoid hot cracking.

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Literatur
5.
Zurück zum Zitat Matt, J.K., Dewey, M.H., Bruce, A.K.: Dynamic soft reduction of continuously cast slabs. Iron Steel Technol. 5(7), 29–36 (2008) Matt, J.K., Dewey, M.H., Bruce, A.K.: Dynamic soft reduction of continuously cast slabs. Iron Steel Technol. 5(7), 29–36 (2008)
7.
Zurück zum Zitat Koc, M., Vazquez, V., Witulski, T., Altan, T.: Application of the finite element method to predict material flow and defects in the semi-solid forging of A356 aluminum alloys. J. Mater. Process. Tech. 59(1), 106–112 (1996)CrossRef Koc, M., Vazquez, V., Witulski, T., Altan, T.: Application of the finite element method to predict material flow and defects in the semi-solid forging of A356 aluminum alloys. J. Mater. Process. Tech. 59(1), 106–112 (1996)CrossRef
8.
Zurück zum Zitat Becker, E., Langlois, L., Favier, V., Bigot, R.: Thermomechanical modelling and simulation of C38 thixoextrusion steel. Solid State Phenom. 217, 130–137 (2015) Becker, E., Langlois, L., Favier, V., Bigot, R.: Thermomechanical modelling and simulation of C38 thixoextrusion steel. Solid State Phenom. 217, 130–137 (2015)
9.
Zurück zum Zitat Wang, K.K.: The current situation and thinking of material processing industry in Gansu Province. In: Love Longyuan—The 15th Batch of Achievements of Doctor Service Group on Probation. Organization Department of Gansu Provincial Committee of the Communist Party of China, pp. 221–223 (2015) Wang, K.K.: The current situation and thinking of material processing industry in Gansu Province. In: Love Longyuan—The 15th Batch of Achievements of Doctor Service Group on Probation. Organization Department of Gansu Provincial Committee of the Communist Party of China, pp. 221–223 (2015)
10.
Zurück zum Zitat Wang, K.K., Fu, W., Hu, Z.Q.: A high uniformity short process forming method for large metal components. China: ZL201711262274.8 (2017) Wang, K.K., Fu, W., Hu, Z.Q.: A high uniformity short process forming method for large metal components. China: ZL201711262274.8 (2017)
11.
Zurück zum Zitat Zheng, Z.H., Wang, B.Y., Hu, Z.H.: Metal flow law of steel ball forming by skew rolling. J. Univ. Sci. Technol. Beijing 6, 782–788 (2015) Zheng, Z.H., Wang, B.Y., Hu, Z.H.: Metal flow law of steel ball forming by skew rolling. J. Univ. Sci. Technol. Beijing 6, 782–788 (2015)
12.
Zurück zum Zitat Guo, W., Wang, D., Lu, D.P.: Numerical simulation on cyclic closed-die forging technology. Forg. Stamp. Technol. 42(01), 149–154 (2017) Guo, W., Wang, D., Lu, D.P.: Numerical simulation on cyclic closed-die forging technology. Forg. Stamp. Technol. 42(01), 149–154 (2017)
13.
Zurück zum Zitat Wang, Q.X., Guo, F.W., Li, S.J.: Research on the cavity defect closure of hollow ingot. Forg. Stamp. Technol. 39(10), 9–14 (2014) Wang, Q.X., Guo, F.W., Li, S.J.: Research on the cavity defect closure of hollow ingot. Forg. Stamp. Technol. 39(10), 9–14 (2014)
15.
Zurück zum Zitat Wang, S.Z., Sun, B.: Development of heavy plate of pre-hardened plastic die steel 718. Spec. Steel 31(5), 49–50 (2010) Wang, S.Z., Sun, B.: Development of heavy plate of pre-hardened plastic die steel 718. Spec. Steel 31(5), 49–50 (2010)
16.
Zurück zum Zitat Zang, X.M., Deng, X., Li, W.M.: A withdrawing new technology of electro slag remelting for die steel 718 slab ingot. J. Mater. Metall. 15, 39–42 (2016) Zang, X.M., Deng, X., Li, W.M.: A withdrawing new technology of electro slag remelting for die steel 718 slab ingot. J. Mater. Metall. 15, 39–42 (2016)
17.
Zurück zum Zitat He, Y.L., Gao, W., Li, L.: Effect of heat treatment on machinability of 718 plastic die steel. Heat Treat. Met. 29, 20–23 (2004) He, Y.L., Gao, W., Li, L.: Effect of heat treatment on machinability of 718 plastic die steel. Heat Treat. Met. 29, 20–23 (2004)
18.
Zurück zum Zitat Liu, H.H.: Research on Microstructural Modification and Mechanical Properties of Pre-hardened 718H Plastic Mold Steel with Large Cross-Section. University of Science and Technology of China (2019) Liu, H.H.: Research on Microstructural Modification and Mechanical Properties of Pre-hardened 718H Plastic Mold Steel with Large Cross-Section. University of Science and Technology of China (2019)
24.
Zurück zum Zitat Wang, B., Zhang, J.M., Xiao, C.: Formation mechanism of internal cracks in continuous casting slabs with soft reduction. J. Univ. Sci. Technol. Beijing 38(3), 351–356 (2016) Wang, B., Zhang, J.M., Xiao, C.: Formation mechanism of internal cracks in continuous casting slabs with soft reduction. J. Univ. Sci. Technol. Beijing 38(3), 351–356 (2016)
Metadaten
Titel
The ultra-high temperature forging process based on DEFORM-3D simulation
verfasst von
Yong-qiang Wu
Kai-kun Wang
Publikationsdatum
10.01.2022
Verlag
Springer Paris
Erschienen in
International Journal on Interactive Design and Manufacturing (IJIDeM) / Ausgabe 1/2022
Print ISSN: 1955-2513
Elektronische ISSN: 1955-2505
DOI
https://doi.org/10.1007/s12008-021-00811-y

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