J 2019

Analysis of Interaction between Position of Gate and Selected Properties of Low-Weight Casts on the Silumin Basis

MAJERNÍK, Ján and Štefan GAŠPÁR

Basic information

Original name

Analysis of Interaction between Position of Gate and Selected Properties of Low-Weight Casts on the Silumin Basis

Name in Czech

Analýza interakce polohy vtokového zářezu a vybraných vlastností nízkohmotnostních odlitků na bázi Siluminu

Authors

MAJERNÍK, Ján (703 Slovakia, guarantor, belonging to the institution) and Štefan GAŠPÁR (703 Slovakia)

Edition

Archives of Foundry Engineering, Warszawa, POLSKA AKAD NAUK, POLISH ACAD SCIENCES, PL DEFILAD 1, 2019, 1897-3310

Other information

Language

English

Type of outcome

Article in a journal

Field of Study

20300 2.3 Mechanical engineering

Country of publisher

Poland

Confidentiality degree

is not subject to a state or trade secret

References:

RIV identification code

RIV/75081431:_____/19:00001671

Organization unit

Institute of Technology and Business in České Budějovice

UT WoS

000485764100018

Keywords (in Czech)

Lití kovů pod tlakem; Vývoj produktů; Mechanické vlastnosti

Keywords in English

High pressure die casting; Product development; Mechanical properties

Tags

Changed: 22/4/2020 14:11, Ing. Anna Palokha

Abstract

V originále

Final quality of casts produced in a die casting process represents a correlation of setting of technological parameters of die casting cycle, properties of alloy, construction of a die and structure of gating and of bleeding systems. Suitable structure of a gating system with an appertaining bleeding system of the die can significantly influence mechanical and structural properties of a cast. The submitted paper focuses on influence of position of outfall of an gate into the cast on its selected quality properties. Layout of the test casts in the die was designed to provide filling of a shaping cavity by the melt with diverse character of flowing. Setting of input technological parameters during experiment remained on a constant level. The only variable was the position of the gate. Homogeneity represented by porosity f and ultimate strength Rm were selected to be the assessed representative quality properties of the cast. The tests of the influence upon monitored parameters were realized in two stages. The test gating system was primarily subjected to numerical tests with the utilization of a simulation program NovaFlow&Solid. Consequently, the results were verified by the experimental tests carried out with the physical casts produced during operation. It was proved that diverse placement of the gate in relation to the cast influences the mode of the melt flowing through the shaping cavity which is reflected in the porosity of the casts. The experimental test proved correlation of porosity f of the cast with its ultimate strength Rm. At the end of the paper, the interaction dependencies between the gate position, the mode of filling the die cavity, porosity f and ultimate strength Rm.