scholarly journals Camber Regulation in Rough Rolling Process Using Wedge Estimation of Incoming Bar

2015 ◽  
Vol 55 (4) ◽  
pp. 851-857 ◽  
Author(s):  
Youngil Kang ◽  
Yujin Jang ◽  
Yongjun Choi ◽  
Dukman Lee ◽  
Sangchul Won
2013 ◽  
Vol 652-654 ◽  
pp. 2024-2028
Author(s):  
Wen Ping Liu ◽  
B. Zhang ◽  
Pei Qi Wang ◽  
Qin He Zhang

To improve the product properties of H-beams, it is essential to understand the effects of hot rolling parameters on the microstructure evolution of the beams. For this purpose, a thermo mechanical model was built with the finite element Package ABAQUS. By re-meshing the model, multipass large-deformation hot rolling process was simulated under the boundary conditions predefined in accordance with the practical production. Based on the hot rolling simulation, an impact analysis of strain rate, initial rough rolling temperature, and time interval between passes on the microstructure evolution of H-beam austenite was conducted. The analytical results are meaningful for optimizing hot rolling parameters and improving H-beam properties.


2013 ◽  
Vol 46 (16) ◽  
pp. 436-439 ◽  
Author(s):  
Youngil Kang ◽  
Yong-Joon Choi ◽  
Gijang Oh ◽  
Sangchul Won

2015 ◽  
Vol 55 (9) ◽  
pp. 1980-1986 ◽  
Author(s):  
Youngil Kang ◽  
Yujin Jang ◽  
Yongjun Choi ◽  
Dukman Lee ◽  
Sangchul Won

2013 ◽  
Vol 53 (3) ◽  
pp. 511-519 ◽  
Author(s):  
Daun Jeong ◽  
Youngil Kang ◽  
Yu Jin Jang ◽  
Dukman Lee ◽  
Sangchul Won

Author(s):  
Jing-Guo Ding ◽  
Qi-Yao Li ◽  
Geng-Sheng Ma ◽  
Wen Peng

In this paper, in order to obtain the solution for using a handful of casting billets to produce a variety of specifications of products, a compulsory broadsiding method of continuous rough rolling process is used with four horizontal mills and two vertical mills. Due to nonplane deformation in grooves, partition method is used for the rolled piece, which is divided into five zones along the width direction. Mathematical model with five zones are proposed and the final width of plate are obtained by superposition method. In order to obtain the width spread coefficients of each zone as well as parameters optimizing, a numerical simulation method is used to calculate the rolling parameters of compulsory broadsiding of continuous rough rolling process. Computation result from mathematical model indicates that the exit width reaches its maximum value when the angle of chamfer reaches nearly 50°, and the trend of width increasing becomes slow when friction coefficient is larger than 0.4. Practical application shows that the present analytical model can be used to calculate the parameters in compulsory broadsiding rough rolling process easily and quickly, the maximum of width spread can reach 87 mm, and the deviation of the measured width could be controlled to be less than ±3 mm.


2011 ◽  
Vol 697-698 ◽  
pp. 627-630
Author(s):  
B.T. Dong ◽  
Qin He Zhang ◽  
Chuan Yu Li ◽  
Ru Po Ma

The Standard and Explicit solver of ABAQUS were synthetically used to establish finite element model for reciprocating multi-pass rough rolling of large H-beam, in which the re-meshing technique was utilized to solve the problem of excessive deformation and rollers’ deformation were taken into simulation to increase the accuracy. Based on the simulation results, stress field, thermal field and deformation behavior of the workpiece were discussed. It clearly showed that the main deformation of profiled blank in rough rolling was web broadening. Compare the analytical rolling force results to the practical rolling process, and this method could provide some valuable references to the rolling practice.


Author(s):  
Harukichi SUGIYAMA ◽  
Hiroshi SAITO ◽  
Fumio OKADA ◽  
Gengoro IWAHORI

2011 ◽  
Vol 201-203 ◽  
pp. 143-146
Author(s):  
Chuan Yu Li ◽  
Qin He Zhang ◽  
Ru Po Ma ◽  
Bao Tian Dong

In view of present problems that interior information of H-beam in multi-pass hot rolling process is not clear enough, an integrated simulation system with automatic design and analysis is developed based on ABAQUS Scripting Interface. Architecture of simulation system is designed according to the process of rough rolling, and several key problems are illustrated in the paper. The reliability of the system is verified through the forming simulation of H-beam H250x125. The system is very helpful for experienced mill designers who are unfamiliar with finite element analysis to test new section designs through virtual hot rolling trials.


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