Szczegóły publikacji

Opis bibliograficzny

Development of the parameters of forging PM ${Ti–6Al–4V}$ alloy for use in industrial conditions / WOJTASZEK Marek, ŚLEBODA Tomasz, ZYGUŁA Krystian, MYRCIK Adam, ŁUKASZEK-SOŁEK Aneta // W: Metal 2017 : 26th international conference on Metallurgy and materials : May 24th–26th 2017, Brno, Czech Republic, EU : abstracts. — Ostrava : TANGER Ltd., cop. 2017. — ISBN: 978-80-87294-73-4. — S. 82. — Pełny tekst na CD-ROMie. — S. 1561–1566. — Wymagania systemowe: Adobe Reader ; napęd CD-ROM. — Bibliogr. s. 1566, Abstr. — ISBN 978-80-87294-79-6


Autorzy (5)


Słowa kluczowe

titanium alloysthermomechanical parametersmicrostructurepowder metallurgyhot forging

Dane bibliometryczne

ID BaDAP105964
Data dodania do BaDAP2017-07-01
Rok publikacji2017
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
Konferencja26th International Conference on Metallurgy and Materials

Abstract

This research work was focused on the application of powder metallurgy technology to the production of high quality products from Ti6AI4V alloy (Ti64). The common way to produce structural parts from Ti64 alloy is hot forging. At present, the stock for forging is commonly manufactured from cast material. An attractive alternative for producing such billets can be powder metallurgy technology (P/M). The processing of compacts makes it possible to reduce the cost of production and leads to obtaining very good quality of the microstructure and properties. It is also very important, that this process can be realised using commercial processing lines for forming the cast stock. The proposed procedures of development and verification of the parameters of deformation of Ti6AI4V alloy compacts in open-die forging process were discussed. As the material under investigation, compacts obtained from elemental powders were applied. The compacts were nearly free from porosity, which was confirmed by computed tomography non-destructive tests. The numerical modeling of hot forming of the selected forging was performed based on the finite element method (FEM). Various combinations of forging conditions were simulated, however the range of parameters was in accordance with possibilities of the industrial line. The results of modeling were verified in the trials conducted in industrial conditions. The quality of the product was estimated by the examinations of the microstructure as well as hardness measurements. It was found, that forging of billet, manufactured with application of the proposed powder metallurgy technology, leads to obtaining a defect-free Ti6AI4V alloy part.

Publikacje, które mogą Cię zainteresować

fragment książki
Physical modeling of hot forging of cast and P/M ${Ti–6Al–4V}$ alloy / ZYGUŁA Krystian, ŚLEBODA Tomasz, WOJTASZEK Marek, Korpała Grzegorz // W: Metal 2017 : 26th international conference on Metallurgy and materials : May 24th–26th 2017, Brno, Czech Republic, EU : abstracts. — Ostrava : TANGER Ltd., cop. 2017. — ISBN: 978-80-87294-73-4. — S. 173–174. — Pełny tekst na CD-ROMie. — S. 1977–1982. — Wymagania systemowe: Adobe Reader ; napęd CD-ROM. — Bibliogr. s. 1982, Abstr. — ISBN 978-80-87294-79-6
fragment książki
Modeling of microstructure development in multi-stage hammer forging and fan cooling of microalloyed steel / LISIECKI Łukasz, SKUBISZ Piotr, MAJTA Janusz, MUSZKA Krzysztof // W: Metal 2017 : 26th international conference on Metallurgy and materials : May 24th–26th 2017, Brno, Czech Republic, EU : abstracts. — Ostrava : TANGER Ltd., cop. 2017. — ISBN: 978-80-87294-73-4. — S. 127–128. — Pełny tekst na CD-ROMie. — Tyt.: Modeling of microstructure evolution in multi-stage hammer forging and fan cooling of microalloyed steel. — S. 900–905. — Wymagania systemowe: Adobe Reader ; napęd CD-ROM. — Bibliogr. s. 905, Abstr. — ISBN 978-80-87294-79-6