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Chapter

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Title

Prediction of HPDC Casting Properties Made of AlSi9Cu3 Alloy

Authors

[ 1 ] Instytut Technologii Materiałów, Wydział Budowy Maszyn i Zarządzania, Politechnika Poznańska | [ P ] employee

Scientific discipline (Law 2.0)

[2.9] Mechanical engineering

Year of publication

2018

Chapter type

chapter in monograph / paper

Publication language

english

Keywords
EN
  • high-pressure die-casting
  • aluminium alloys
  • mechanical properties
  • dendrite arm spacing
  • micromodel
Abstract

EN The paper describes the influence of type of structure and its parameters on mechanical properties of high-pressure die-casting (HPDC) products out of AlSi9Cu3 alloy. The dendritic structure was described using the DAS parameter—a distance between branches of dendrites of a solid α solution (silicon in aluminium), which is a measure of microstructure refinement. According to the Hall–Petch law, the smaller grain causes the better strength. The finest grained structure can be obtained by increasing the rate of heat extraction from a casting to a mould. The best results, considering the classical methods, can be achieved using the high-pressure die-casting method. Therefore, results of studies of mechanical properties of sample castings, made using the above-mentioned casting method, are presented. The sample castings (cast-on samples) were subjected to tensile tests to determine mechanical properties (tensile strength, yield strength and elongation), as well as microstructure studies, considering the DAS. Experimental-simulation validation was performed using the Procast code with the application of a micromodel in the scope of compatibility of the DAS value and yield strength.

Date of online publication

20.10.2017

Pages (from - to)

621 - 631

DOI

10.1007/978-3-319-68619-6_59

URL

https://link.springer.com/chapter/10.1007/978-3-319-68619-6_59

Book

Advances in Manufacturing

Presented on

5th International Scientific-Technical Conference Manufacturing 2017, 24-26.10.2017, Poznań, Polska

Ministry points / chapter

20

Publication indexed in

WoS (15)

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