Preview

Izvestiya. Ferrous Metallurgy

Advanced search

DISTRIBUTION OF SPECIFIC METAL FORCES ON THE ROLL AT PIPE ROLLING IN THREE-ROLL SCREW-ROLLING MILL

https://doi.org/10.17073/0368-0797-2016-9-628-633

Abstract

The peculiarity of power parameters of screw rolling process of pipes on a three-roll rolling mill is the presence of two areas: reduction and compression with diff erent specifi c forces of metal acting on the roll. The reduction zone is formed by a tangential expiration, as well as plastic bending sleeve wall in the gaps between the rolls and depends on the mill chamber tuning parameters, geometric parameters of the derived pipe, namely, the ratio of the diameter to the wall thickness D / S. Computer modeling of rolling process has shown that a distributed force or stress of the metal on the roll in the reduction zone is 75% of the eff ort in the compression zone with either major deformation of the liner wall. Stress reduction in the deformation depends primarily on the wall thickness of the liner. With the change of the liner wall thickness along the length of the deformation zone specifi c force in the reduction zone is reduced by an average of 20 MPa. In the compression zone, the value of the metal eff orts on the roll depends on the width of the contact surface and the impact of additional compressive and tensile stresses from the reeling mandrel mill. Determination of compression forces in the drafting area makes it possible to calculate the estimated force acting on the mandrel, which is especially important in the calculation of rolling modes on the controlled movable mandrel. 

About the Authors

E. A. Kharitonov
National University of Science and Technology “MISIS”, Moscow
Russian Federation
Cand. Sci. (Eng.), Assist. Professor, Senior Researcher of the Chair “Metal Forming”


A. S. Budnikov
National University of Science and Technology “MISIS”, Moscow
Russian Federation
MA Student, Engineer of the Chair “Metal Forming”


References

1. Kharitonov E.A., Romanenko V.P., Budnikov A.S. Development of calculating method of the deformation parameters during rolling out in a three-roll mill liners of screw rolling. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 2016, no. 3, pp. 167–172. (In Russ.).

2. Kolikov A.P., Romantsev B.A. Teoriya obrabotki metallov davleniem: uchebnik [Theory of metal forming: Textbook]. Moscow: Izd. Dom MISiS, 2015, 451 p. (In Russ.)

3. Parshin V.S., Karamyshev A.P., Nekrasov I.I., Pugin A.I., Fedulov A.A. Prakticheskoe rukovodstvo k programmnomu kompleksu DEFORM 3D: uchebnoe posobie [How to use the program complex DEFORM 3D: Manual]. Ekaterinburg: UrFU, 2010, 266 p. (In Russ.).

4. Mintakhanov M.A. Issledovanie i sovershenstvovanie protsessa raskatki trub i oborudovaniya na ustanovkakh s trekhvalkovym raskatnym stanom: Dis…kand. tekhn. nauk [Research and improvement of the process of pipes rolling and equipment in facilities with a tree-roll rolling mill: Cand. Tech. Sci. Diss.]. Moscow, 1979, 164 p. (In Russ.).

5. Kharitonov E.A., Romanenko V.P., Budnikov A.S. Pipe behavior in a three-roller screw-rolling mill. Steel in Translation. 2014, vol. 44, no. 10, pp. 769–772.

6. Belevich A.V. Modelirovanie pokazatelei plastichnosti i soprotivleniya deformatsii stalei i splavov: praktikum [Simulation of parameters of plasticity and strain resistance of steels and alloys: case study]. Vladimir: VlGU, 2005, 84 p. (In Russ.).

7. Gromov N.P. Teoriya obrabotki metallov davleniem: ucheb. Dlya vuzov [Theory of metal forming: Textbook for universities]. Moscow: Metallurgiya 1978, 360 p. (In Russ.).

8. Tyurin V.A., Mokhov A.I. Teoriya obrabotki metallov davleniem: ucheb. dlya vuzov [Theory of metal forming: Textbook for universities]. Volgograd: RPK “Politekhnik”, 2000. 416 p. (In Russ.).

9. Nikulin A.N. Vintovaya prokatka. Napryazheniya i deformatsii. Monografi ya [Screw rolling. Stress and strain. Monograph]. Moscow: Metallurgizdat, 2015, 380 p. (In Russ.).

10. Teterin P.K. Teoriya poperechno-vintovoi prokatki [Theory of screw rolling process]. Moscow: Metallurgiya, 1971, 368 p. (In Russ.).

11. Storozhev M.V., Popov E.A. Teoriya obrabotki metallov davleniem: ucheb. dlya vuzov [Theory of metal forming: Textbook for universities]. Moscow: Mashinostroenie, 1971, 424 p. (In Russ.).

12. Zaikov M.A., Polukhin V.P., Zaikov A.M. Protsess prokatki [Rolling process]. Moscow: MISiS, 2004, 640 p. (In Russ.).

13. Kharitonov E.A., Burov I.A., Romanenko V.P., Vol’shonok I.Z. Improving the method for calculating the gap geometry and calibrations of rolls of radial-shear rolling mills at high angles of supply. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 2010, no. 3 pp. 29–31. (In Russ.).

14. Ivanov I.I., Sokolov A.V. etc. Osnovy teorii obrabotki metallov davleniem: ucheb. dlya vuzov [Elements theory of metal forming: Textbook for universities]. Moscow: INFA, 2007, 144 p. (In Russ.).

15. Lakashin N.D., Kokhan L.S. Obrabotka metallov davleniem: ucheb posobie dlya vuzov [Metal forming: Manual for universities]. Moscow: MGVMI, 2006, 424 p. (In Russ.).


Review

For citations:


Kharitonov E.A., Budnikov A.S. DISTRIBUTION OF SPECIFIC METAL FORCES ON THE ROLL AT PIPE ROLLING IN THREE-ROLL SCREW-ROLLING MILL. Izvestiya. Ferrous Metallurgy. 2016;59(9):628-633. (In Russ.) https://doi.org/10.17073/0368-0797-2016-9-628-633

Views: 635


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0368-0797 (Print)
ISSN 2410-2091 (Online)