RT Journal Article SR Electronic A1 Bolibruchová, Dana A1 Kuriš, Michal A1 Matejka, Marek T1 Effect of Zr on Selected Properties and Porosity of AlSi9Cu1Mg Alloy for the Purpose of Production of High-precision Castings JF Manufacturing Technology Journal YR 2019 VO 19 IS 4 SP 552 OP 558 DO 10.21062/ujep/333.2019/a/1213-2489/MT/19/4/552 UL https://journalmt.com/artkey/mft-201904-0002.php AB The effect of Zr was assessed on changes in the mechanical properties of the alloy under investigation by the addition of Zr with a graduated increase by 0.05 wt. % Zr. Experimental samples were cast into ceramic molds, half of which were hardened by precipitation after casting. The measured values indicate an improvement in the mechanical properties, especially in experimental alloys containing Zr ≥ 0.20 wt. %. In the evaluation of Rm, the most significant improvement occurred in the experimental alloy with the addition of Zr 0.25 wt. % after heat treatment and E in the experimental alloy with the addition of Zr 0.20 wt. % after heat treatment, as well. The effect of Zr in the AlSi9Cu1Mg alloy investigated was also analyzed for porosity. It can be concluded that the addition of Zr into alloys is manifested by an increase in gassing of experimental alloys, especially in variants containing Zr ≥ 0.15 wt. %. At a higher Zr content there was a significant increase in the DI density index and pore size. For higher amounts of Zr ≥ 0.20 wt. %, long acicular phases with slightly cleaved morphology are visible in the metal matrix. Exclusion of the Zr phase nuclei with regard (also) to the change of exclusion temperature can cause capture of hydrogen bubbles (pockets) and thus increase the gassing rate.