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On the Hydrostatic Extrusion of Non-Ferrous Metals

Published online by Cambridge University Press:  21 February 2011

G. Häuβler
Affiliation:
Mansfeld Kombinat “Wilhelm Pieck”, Forschungsinstitut für NE-Metalle, Freiberg, GDR
G. Schreiter
Affiliation:
Mansfeld Kombinat “Wilhelm Pieck”, Forschungsinstitut für NE-Metalle, Freiberg, GDR
J. Schlegel
Affiliation:
Mansfeld Kombinat “Wilhelm Pieck”, Forschungsinstitut für NE-Metalle, Freiberg, GDR
W. Hennig
Affiliation:
Bergakademie Freiberg, GDR
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Extract

The growing interest in the process of hydrostatic extrusion is reflected by numerous publications on experimental results, fundamental researches and theoretical studies (e. g., [1] to [20]). In recent years it was the increasing demand for new materials and semiproducts with special cross-section dimensions and properties that substantiated the necessity of defining the application of hydrostatic extrusion in the field of non-ferrous metallurgy. Thus, it is the aim of the researches carried out with the experimental hydrostatic extrusion press type QEH 12 recently installed by the Swedish company ASEA in the Forschungsinstitut für NE-Metalle Freiberg of the VEB Mansfeld Kombinat “Wilhelm Pieck” to solve problems of materials and deformation engineering and to develop new technologies of producing special semiproducts from non-ferrous metals.

Type
Research Article
Copyright
Copyright © Materials Research Society 1984

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References

REFERENCES

1. Breme, J., Hydrostatisches Strangpressen - Eigenarten und EinfLüsse beim Umformen von Metallen, Maschinenmarkt, Würzburg, 85 (1979) 55, pp. 11121114 Google Scholar
2. Breme, J., Hydrostatisches Strangpressen - Grenzen und Möglichkeiten, Maschinenmarkt, Würzburg, 85 (1979) 72, pp. 14061408 Google Scholar
3. Seido, M., and Mitsugi, S., Hydrostatisches Strangpressen und seine industrielle Anwendung, Draht 33 (1982) 8, pp. 471475 Google Scholar
4. Hydrostatic extrusion - forming a successful alternative? Metallurgia 46 (1979) 10, pp. 649651 Google Scholar
5. Hogland a. o., R., Stand und Anwendungsmöglichkeiten des hydrostatischen Strangpressens, Aluminium 55 (1979) 3, pp. 223225 Google Scholar
6. Hogland a. o., R., Neue Anwendung für Aluminiumlegierungen durch hydrostatisches Strangpressen, Metall 33 (1979) 8, pp. 827829 Google Scholar
7. Nylund, C. G., Exconal - ein Schichtverbundwerkstoff für Stromschienen, ASEA-Zeitschr. 23 (1978) 1, pp. 310 Google Scholar
8. Bogojawlenski, K. N. and Suchich, W. D., Untersuchung des hydrostatischen Extrusionsverfahrens, Fertigungstechn. und Betr. 29 (1979) 12, pp. 751753 Google Scholar
9. Ruppin, D. and MülLer, K., Vergleichende Untersuchung des Hydrafilmpressens und des indirekten Strangpressens mit hydrostatischen SchmierverhäLtnissen, Aluminium 55 (1979) 11, pp. 711715 Google Scholar
10. Vereshchagin a. o., M. N., Theoretische Untersuchung des Einflusses longitudinaler Ultraschallschwingungen beim hydrostatischen Strangpressen, Izv. Akad. Nauk SSSR, Mech. i. Zidkosti; Gaza 13 (1978) 5, pp. 745750 Google Scholar
11. Pugh, H. LL. D., Flieβpressen unter Flüssigkeitsdruck, Metallwissen schaft und Technik 29 (1975) 8, pp. 785798 Google Scholar
12. Tuschy, E., Strangpressen - Neue Verfahren (Literaturübersicht), Metallwissenschaft und Technik 36 (1982) 3, pp. 269278 Google Scholar
13. Pachla a. o., W., Recovery and recrystallization of polycristalline copper during hydrostatic extrusion, Metal Science 16 (1982), pp. 519524 Google Scholar
14. Styczynski a. o., L., Thermal-softening processes in polycristalline aluminium during hydrostatic extrusion, Metal Science 16 (1982), pp. 525528 Google Scholar
15. Pugh, H. LL. D., The Mechanical Behaviour of Materials under Pressure, Elsevier Publishing Co. Ltd., Amsterdam - London. New York, 1970, ref. in [20]Google Scholar
16. Bereshaev a. o., B. I., Probleme groβer plastischer Umformung von Metallen unter hohen Drücken, Akad. Nauk. UdSSR, 1960 (engl.: Pergamon Press Ltd., London 1963)Google Scholar
17. Matsushita, T., Hydrostatic extrusion of round and shaped tubes, J. Mech. Work. Technol. 2 (1978) 1, pp. 3351, ref. in [20]Google Scholar
18. Easterby, J. W. and Clutterbuck, J. C., Hydrostatic extrusion - the Vickers approach, Metal and Materials, Juli 1971, pp. 235 – 237Google Scholar
19. Fiorentino, A. O.; Lowe and Goold; Thompson, Ergebnisse hydrostat. Strangpreβversuche an Al 99.5, ref. in [20]Google Scholar
20. Pugh, H. LL. D., Handbuch für hydrostat. Strangpressen, ASEA-Quintus- Abteilung, 1980 Google Scholar
21. Hennig, W., Hinze, J. and Strobel, H., Zum Flieβkurvenverlauf bei ALGieβband der Werkstoffe Al 99.5, AlFe, AlMnl und AlMgl im Bereich der Kaltumformung, Wiss. Jahresbericht, Bergakademie Freiberg, Sektion Metallurgie und Werkstofftechnik, 1980, pp. 59 – 75Google Scholar