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Erschienen in: The International Journal of Advanced Manufacturing Technology 1-2/2022

10.02.2022 | ORIGINAL ARTICLE

Development of three-dimensional simulation model of rolling operation in railway wheel manufacturing process

verfasst von: Mainak Chakraborty, Nilotpal Banerjee, Samiron De

Erschienen in: The International Journal of Advanced Manufacturing Technology | Ausgabe 1-2/2022

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Abstract

Railway wheel manufacturing is a unique form of the hot forming process and consists of forging, rolling, and dishing operations. With the ever-improving technology, railway coaches and locomotives use wheels of various designs to cater to its growing need for speed and safety. Thus, it becomes imperative for a manufacturer of railway wheels to develop the capability of manufacturing railway wheels of a wide variety of designs to remain relevant in a competitive market. However, for developing any new wheel, the manufacturer needs to design new dies and rolls according to the new wheel design. Using a simulation model to predict possible outputs of railway wheel forming is essential for the design phase. Wheel rolling is one of the most complicated operations in railway wheel forming process. Railway wheel rolling is a particular type of shape rolling where a forged railway wheel is worked upon simultaneously by five rolls to give a specific shape. The present work attempts to develop a simulation model of the wheel rolling process. It proposes a mathematical model for determining roll movement parameters for producing wheels of any given dimension. The simulated results were compared with a rolled wheel from an industrial setup for a railway wheel manufacturing unit and found to be in good agreement based on the prediction of output geometry and load requirement. Thus, the developed simulation model based on FEM allows designers and shop managers to predict rolling outputs quickly with minimum cost implications. This model will help the designer eliminate costly trial productions required for stabilizing die and roll designs during the development of new railway wheels. Further, the simulation model can be beneficial for optimizing production parameters related to wheel rolling and understanding the effects of possible process deviations during production, thereby reducing rejections, energy consumption and improving the shop’s overall productivity. The simulation was done using commercial DEFORM 3D finite element code.

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Fußnoten
1
FEM - Finite element method
 
2
CAD - Computer-aided design
 
3
EMU - Electric Multiple Unit
 
4
HMI - Human–Machine interface
 
5
OD - outer diameter, FID - front inner diameter, BID - back inner diameter
 
Literatur
4.
Zurück zum Zitat Aretz H, Luce R, Wolske M, Kopp R, Goerdeler M, Marx V, Pomana G, Gottstein G (2000) Integration of physically based models into FEM and application in simulation of metal forming process. Modell Simul Mater Sci Eng 8:881–892CrossRef Aretz H, Luce R, Wolske M, Kopp R, Goerdeler M, Marx V, Pomana G, Gottstein G (2000) Integration of physically based models into FEM and application in simulation of metal forming process. Modell Simul Mater Sci Eng 8:881–892CrossRef
6.
Zurück zum Zitat Huang C, Gan Y, Du JT, Chen CZ, Chen QJ (2012) Shape rolling simulation of tailor rolled blanks based on DEFORM-3D. Appl Mech Mater 101–102:897–900 Huang C, Gan Y, Du JT, Chen CZ, Chen QJ (2012) Shape rolling simulation of tailor rolled blanks based on DEFORM-3D. Appl Mech Mater 101–102:897–900
9.
Zurück zum Zitat Mamalis AG, Johnson W, Hawkyard JB (1976) On the Pressure Distribution between Stock and Rolls in Ring Rolling. J Mech Eng Sci 18:184–195CrossRef Mamalis AG, Johnson W, Hawkyard JB (1976) On the Pressure Distribution between Stock and Rolls in Ring Rolling. J Mech Eng Sci 18:184–195CrossRef
28.
Zurück zum Zitat Suzuki H (1968) Studies on Flow Stress of Metals and Alloys, 18(3). University of Tokyo, Institute of Industrial sciences Suzuki H (1968) Studies on Flow Stress of Metals and Alloys, 18(3). University of Tokyo, Institute of Industrial sciences
32.
Zurück zum Zitat Murillo-Marrodán A, García E, Cortés F (2017) Friction Modelling of a Hot Rolling Process by means of the Finite Element Method, Proceedings of the World Congress on Engineering 2017 Vol II WCE 2017, July 5-7, 2017, London, U.K Murillo-Marrodán A, García E, Cortés F (2017) Friction Modelling of a Hot Rolling Process by means of the Finite Element Method, Proceedings of the World Congress on Engineering 2017 Vol II WCE 2017, July 5-7, 2017, London, U.K
Metadaten
Titel
Development of three-dimensional simulation model of rolling operation in railway wheel manufacturing process
verfasst von
Mainak Chakraborty
Nilotpal Banerjee
Samiron De
Publikationsdatum
10.02.2022
Verlag
Springer London
Erschienen in
The International Journal of Advanced Manufacturing Technology / Ausgabe 1-2/2022
Print ISSN: 0268-3768
Elektronische ISSN: 1433-3015
DOI
https://doi.org/10.1007/s00170-022-08820-1

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