Gurešić, Dejan

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orcid::0000-0001-6497-2480
  • Gurešić, Dejan (3)
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Author's Bibliography

Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C

Gurešić, Dejan; Talijan, Nadežda M.; Ćosović, Vladan; Milisavljević, Dušan; Đorđević, Aleksandar; Tomović, Milica

(Serbia : Association of Metallurgical Engineers of Serbia, 2016)

TY  - JOUR
AU  - Gurešić, Dejan
AU  - Talijan, Nadežda M.
AU  - Ćosović, Vladan
AU  - Milisavljević, Dušan
AU  - Đorđević, Aleksandar
AU  - Tomović, Milica
PY  - 2016
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/3928
AB  - Theoretical calculation and experimental investigation of the isothermal section of a ternary Bi-Cu-Ga system at 100 oC are presented in this paper. Thermodynamic binary-based calculation of the isothermal section was performed using Pandat software. Experimental investigation included microstructural analysis carried out using light optical microscopy (LOM) and scanning electron microscopy with energy dispersive spectroscopy (SEM-EDS), phase composition analysis using X-ray diffraction (XRD), Brinell and Vickers hardness testing and electrical conductivity measurements. In total, thirty alloy samples with compositions along three vertical sections Bi-CuGa, Cu-BiGa and Ga-BiCu were studied. The obtained experimental results support the calculated phase regions of the isothermal section at 100 oC. Hardness of individual phases as well as hardness and electrical conductivity of the studied alloys were measured. Based on the experimentally obtained results iso-lines of Brinell hardness and electrical conductivity along the whole compositional range were calculated by using appropriate mathematical models.
PB  - Serbia : Association of Metallurgical Engineers of Serbia
T2  - Metallurgical & Materials Engineering
T1  - Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C
VL  - 22
IS  - 3
SP  - 179
EP  - 192
DO  - 10.30544/211
ER  - 
@article{
author = "Gurešić, Dejan and Talijan, Nadežda M. and Ćosović, Vladan and Milisavljević, Dušan and Đorđević, Aleksandar and Tomović, Milica",
year = "2016",
abstract = "Theoretical calculation and experimental investigation of the isothermal section of a ternary Bi-Cu-Ga system at 100 oC are presented in this paper. Thermodynamic binary-based calculation of the isothermal section was performed using Pandat software. Experimental investigation included microstructural analysis carried out using light optical microscopy (LOM) and scanning electron microscopy with energy dispersive spectroscopy (SEM-EDS), phase composition analysis using X-ray diffraction (XRD), Brinell and Vickers hardness testing and electrical conductivity measurements. In total, thirty alloy samples with compositions along three vertical sections Bi-CuGa, Cu-BiGa and Ga-BiCu were studied. The obtained experimental results support the calculated phase regions of the isothermal section at 100 oC. Hardness of individual phases as well as hardness and electrical conductivity of the studied alloys were measured. Based on the experimentally obtained results iso-lines of Brinell hardness and electrical conductivity along the whole compositional range were calculated by using appropriate mathematical models.",
publisher = "Serbia : Association of Metallurgical Engineers of Serbia",
journal = "Metallurgical & Materials Engineering",
title = "Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C",
volume = "22",
number = "3",
pages = "179-192",
doi = "10.30544/211"
}
Gurešić, D., Talijan, N. M., Ćosović, V., Milisavljević, D., Đorđević, A.,& Tomović, M.. (2016). Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C. in Metallurgical & Materials Engineering
Serbia : Association of Metallurgical Engineers of Serbia., 22(3), 179-192.
https://doi.org/10.30544/211
Gurešić D, Talijan NM, Ćosović V, Milisavljević D, Đorđević A, Tomović M. Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C. in Metallurgical & Materials Engineering. 2016;22(3):179-192.
doi:10.30544/211 .
Gurešić, Dejan, Talijan, Nadežda M., Ćosović, Vladan, Milisavljević, Dušan, Đorđević, Aleksandar, Tomović, Milica, "Effect of chemical composition on microstructure, hardness and electrical conductivity profiles of the Bi-Cu-Ga alloys at 100 °C" in Metallurgical & Materials Engineering, 22, no. 3 (2016):179-192,
https://doi.org/10.30544/211 . .
1

Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys

Gurešić, Dejan; Đorđević, Aleksandar; Marković, Aleksandar; Tomović, Milica; Talijan, Nadežda M.; Manasijević, Ivana

(Sarajevo : University of East Sarajevo, Faculty of Technology, 2016)

TY  - JOUR
AU  - Gurešić, Dejan
AU  - Đorđević, Aleksandar
AU  - Marković, Aleksandar
AU  - Tomović, Milica
AU  - Talijan, Nadežda M.
AU  - Manasijević, Ivana
PY  - 2016
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/4749
AB  - In the current study a ternary Cu-Ge-Sb system has been experimentally assessed. Chemical and phase compositions of the alloy samples from three vertical sections Cu-GeSb, Ge-CuSb and SbCuGe were studied using scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) and confirmed by X-ray diffraction analysis (XRD). Hardness of the alloys was measured by Brinell method while hardness of phases was measured using micro Vickers method. Electrical conductivity of the studied alloys was measured using eddy current instrument. Based on experimentally determined values iso-lines of hardness and electrical conductivity for the whole ternary system were calculated using assumed mathematical models.
PB  - Sarajevo : University of East Sarajevo, Faculty of Technology
T2  - Journal of Engineering & Processing Management
T1  - Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys
VL  - 8
IS  - 1
SP  - 45
EP  - 64
DO  - 10.7251/JEPMEN1608045G
ER  - 
@article{
author = "Gurešić, Dejan and Đorđević, Aleksandar and Marković, Aleksandar and Tomović, Milica and Talijan, Nadežda M. and Manasijević, Ivana",
year = "2016",
abstract = "In the current study a ternary Cu-Ge-Sb system has been experimentally assessed. Chemical and phase compositions of the alloy samples from three vertical sections Cu-GeSb, Ge-CuSb and SbCuGe were studied using scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) and confirmed by X-ray diffraction analysis (XRD). Hardness of the alloys was measured by Brinell method while hardness of phases was measured using micro Vickers method. Electrical conductivity of the studied alloys was measured using eddy current instrument. Based on experimentally determined values iso-lines of hardness and electrical conductivity for the whole ternary system were calculated using assumed mathematical models.",
publisher = "Sarajevo : University of East Sarajevo, Faculty of Technology",
journal = "Journal of Engineering & Processing Management",
title = "Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys",
volume = "8",
number = "1",
pages = "45-64",
doi = "10.7251/JEPMEN1608045G"
}
Gurešić, D., Đorđević, A., Marković, A., Tomović, M., Talijan, N. M.,& Manasijević, I.. (2016). Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys. in Journal of Engineering & Processing Management
Sarajevo : University of East Sarajevo, Faculty of Technology., 8(1), 45-64.
https://doi.org/10.7251/JEPMEN1608045G
Gurešić D, Đorđević A, Marković A, Tomović M, Talijan NM, Manasijević I. Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys. in Journal of Engineering & Processing Management. 2016;8(1):45-64.
doi:10.7251/JEPMEN1608045G .
Gurešić, Dejan, Đorđević, Aleksandar, Marković, Aleksandar, Tomović, Milica, Talijan, Nadežda M., Manasijević, Ivana, "Effects of chemical composition on the microstructure and properties of the CU-Ge-Sb alloys" in Journal of Engineering & Processing Management, 8, no. 1 (2016):45-64,
https://doi.org/10.7251/JEPMEN1608045G . .

Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions

Rychlewska, Urszula; Warzajtis, Beata; Cvetić, Danica; Radanović, Dušanka; Gurešić, Dejan; Đuran, Miloš

(Elsevier, 2007)

TY  - JOUR
AU  - Rychlewska, Urszula
AU  - Warzajtis, Beata
AU  - Cvetić, Danica
AU  - Radanović, Dušanka
AU  - Gurešić, Dejan
AU  - Đuran, Miloš
PY  - 2007
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/4254
AB  - The ability of Mn(II) ion to form two distinctly different complexes with 1,3-propanediaminetetraacetate (1,3-pdta) ligand has been demonstrated by performing X-ray analyses of their crystalline Mg(II) salts. The two types of Mn(II) complexes have been obtained by different synthetic routes and their crystals constitute, respectively, the solid solution of the composition [Mg(H2O)6][Mg0.5Mn0.5(1,3-pd ta)] • 2H2O (1) and the ordered crystals of the composition [Mg(H2O)6][Mn(1,3-pdta)(H2O)] • 2H2O (2). In both, six- 1 and seven-coordinated 2 Mn(II) complexes the 1,3-pdta ligand acts as a hexadentate. As 2 makes the second example of the seven-coordinated 1,3-pdta complex with divalent transition metal ion, the other being the [Mg(H2O)6][Cd(1,3-pdta)(H2O)] • 2H2O (3) complex, the paper reports the results of X-ray investigations of both of these complexes at 130 K.
PB  - Elsevier
T2  - Polyhedron
T1  - Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions
VL  - 26
IS  - 8
SP  - 1717
EP  - 1724
DO  - 10.1016/j.poly.2006.12.011
ER  - 
@article{
author = "Rychlewska, Urszula and Warzajtis, Beata and Cvetić, Danica and Radanović, Dušanka and Gurešić, Dejan and Đuran, Miloš",
year = "2007",
abstract = "The ability of Mn(II) ion to form two distinctly different complexes with 1,3-propanediaminetetraacetate (1,3-pdta) ligand has been demonstrated by performing X-ray analyses of their crystalline Mg(II) salts. The two types of Mn(II) complexes have been obtained by different synthetic routes and their crystals constitute, respectively, the solid solution of the composition [Mg(H2O)6][Mg0.5Mn0.5(1,3-pd ta)] • 2H2O (1) and the ordered crystals of the composition [Mg(H2O)6][Mn(1,3-pdta)(H2O)] • 2H2O (2). In both, six- 1 and seven-coordinated 2 Mn(II) complexes the 1,3-pdta ligand acts as a hexadentate. As 2 makes the second example of the seven-coordinated 1,3-pdta complex with divalent transition metal ion, the other being the [Mg(H2O)6][Cd(1,3-pdta)(H2O)] • 2H2O (3) complex, the paper reports the results of X-ray investigations of both of these complexes at 130 K.",
publisher = "Elsevier",
journal = "Polyhedron",
title = "Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions",
volume = "26",
number = "8",
pages = "1717-1724",
doi = "10.1016/j.poly.2006.12.011"
}
Rychlewska, U., Warzajtis, B., Cvetić, D., Radanović, D., Gurešić, D.,& Đuran, M.. (2007). Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions. in Polyhedron
Elsevier., 26(8), 1717-1724.
https://doi.org/10.1016/j.poly.2006.12.011
Rychlewska U, Warzajtis B, Cvetić D, Radanović D, Gurešić D, Đuran M. Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions. in Polyhedron. 2007;26(8):1717-1724.
doi:10.1016/j.poly.2006.12.011 .
Rychlewska, Urszula, Warzajtis, Beata, Cvetić, Danica, Radanović, Dušanka, Gurešić, Dejan, Đuran, Miloš, "Two distinct manganese(II) complexes with hexadentate 1,3-propanediaminetetraacetate ligand: The ability of metal(II) complexes with 1,3-pdta ligand to form solid solutions" in Polyhedron, 26, no. 8 (2007):1717-1724,
https://doi.org/10.1016/j.poly.2006.12.011 . .
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