Tanović, Dragoljub

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  • Tanović, Dragoljub (2)
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Author's Bibliography

ANALYSIS OF METHODS FOR MATHEMATICAL DESCRIPTION OF FORM SURFACES AS WELL AS GENERATION OF 3D MODELS

Stojanović, Jagoš; Telebak, Katarina; Tanović, Dragoljub; Jokić, Nikola

(Innovation Center of Faculty of Mechanical Engineering, 2022)

TY  - CONF
AU  - Stojanović, Jagoš
AU  - Telebak, Katarina
AU  - Tanović, Dragoljub
AU  - Jokić, Nikola
PY  - 2022
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/7748
AB  - The usage of parts with free form surfaces is growing day by day, not only in the field of mechanical engineering, but also in the production of parts for everyday household needs. This implies the need for developing of new methods for the production of such parts. When it comes to machining, the most common cases of production are milling with ball end mill on numerically controlled machine tools. In this paper are presented different methods for mathematical description of free-form surfaces such as Bézier curves, B-spline curves and non-uniform rational B-spline.
PB  - Innovation Center of Faculty of Mechanical Engineering
C3  - International Conference of Experimental and Numerical Investigations and New Technologies
T1  - ANALYSIS OF METHODS FOR MATHEMATICAL  DESCRIPTION OF FORM SURFACES AS WELL AS  GENERATION OF 3D MODELS
IS  - 96
DO  - 978-86-6060-120-1
ER  - 
@conference{
author = "Stojanović, Jagoš and Telebak, Katarina and Tanović, Dragoljub and Jokić, Nikola",
year = "2022",
abstract = "The usage of parts with free form surfaces is growing day by day, not only in the field of mechanical engineering, but also in the production of parts for everyday household needs. This implies the need for developing of new methods for the production of such parts. When it comes to machining, the most common cases of production are milling with ball end mill on numerically controlled machine tools. In this paper are presented different methods for mathematical description of free-form surfaces such as Bézier curves, B-spline curves and non-uniform rational B-spline.",
publisher = "Innovation Center of Faculty of Mechanical Engineering",
journal = "International Conference of Experimental and Numerical Investigations and New Technologies",
title = "ANALYSIS OF METHODS FOR MATHEMATICAL  DESCRIPTION OF FORM SURFACES AS WELL AS  GENERATION OF 3D MODELS",
number = "96",
doi = "978-86-6060-120-1"
}
Stojanović, J., Telebak, K., Tanović, D.,& Jokić, N.. (2022). ANALYSIS OF METHODS FOR MATHEMATICAL  DESCRIPTION OF FORM SURFACES AS WELL AS  GENERATION OF 3D MODELS. in International Conference of Experimental and Numerical Investigations and New Technologies
Innovation Center of Faculty of Mechanical Engineering.(96).
https://doi.org/978-86-6060-120-1
Stojanović J, Telebak K, Tanović D, Jokić N. ANALYSIS OF METHODS FOR MATHEMATICAL  DESCRIPTION OF FORM SURFACES AS WELL AS  GENERATION OF 3D MODELS. in International Conference of Experimental and Numerical Investigations and New Technologies. 2022;(96).
doi:978-86-6060-120-1 .
Stojanović, Jagoš, Telebak, Katarina, Tanović, Dragoljub, Jokić, Nikola, "ANALYSIS OF METHODS FOR MATHEMATICAL  DESCRIPTION OF FORM SURFACES AS WELL AS  GENERATION OF 3D MODELS" in International Conference of Experimental and Numerical Investigations and New Technologies, no. 96 (2022),
https://doi.org/978-86-6060-120-1 . .

A green building technique: thermal transmittance value of the different materials used in 3D printed houses

Ivanović, Milica; Simonović, Aleksandar; Ivanov, Toni; Kovačević, Aleksandar; Tanović, Dragoljub

(2021)

TY  - CONF
AU  - Ivanović, Milica
AU  - Simonović, Aleksandar
AU  - Ivanov, Toni
AU  - Kovačević, Aleksandar
AU  - Tanović, Dragoljub
PY  - 2021
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/6438
AB  - In the terms of cost reduction, design flexibility, time and environmentally friendly process, additive manufacturing is gaining acceptance as an innovative technology in the construction industry. The energy demand estimation, as one of the primary parts of building industry nowadays, imposed a need for constant development of the existing materials. Taking into consideration stresses in the material and thermal transmittance value, several mixes that have adequate consistency and workability are described. The common is concrete base consisting of cement, sand and additives. Other elements include geopolymers, fibers, soil, clay, gravel, sulfur. Considering standards and regulations for the maximum thermal transmittance value (U-value), in the countries of Eastern Europe specifically, all considered mixes had greater U-value. The various wall configuration with different cavities inside (empty or filled with sand) enables better thermal properties of the wall that can obtain U-value less than legislation prescribes.
C3  - International conference – East Europe conference on AM materials- EECAM21
T1  - A green building technique: thermal transmittance value of the different materials used in 3D printed houses
UR  - https://hdl.handle.net/21.15107/rcub_machinery_6438
ER  - 
@conference{
author = "Ivanović, Milica and Simonović, Aleksandar and Ivanov, Toni and Kovačević, Aleksandar and Tanović, Dragoljub",
year = "2021",
abstract = "In the terms of cost reduction, design flexibility, time and environmentally friendly process, additive manufacturing is gaining acceptance as an innovative technology in the construction industry. The energy demand estimation, as one of the primary parts of building industry nowadays, imposed a need for constant development of the existing materials. Taking into consideration stresses in the material and thermal transmittance value, several mixes that have adequate consistency and workability are described. The common is concrete base consisting of cement, sand and additives. Other elements include geopolymers, fibers, soil, clay, gravel, sulfur. Considering standards and regulations for the maximum thermal transmittance value (U-value), in the countries of Eastern Europe specifically, all considered mixes had greater U-value. The various wall configuration with different cavities inside (empty or filled with sand) enables better thermal properties of the wall that can obtain U-value less than legislation prescribes.",
journal = "International conference – East Europe conference on AM materials- EECAM21",
title = "A green building technique: thermal transmittance value of the different materials used in 3D printed houses",
url = "https://hdl.handle.net/21.15107/rcub_machinery_6438"
}
Ivanović, M., Simonović, A., Ivanov, T., Kovačević, A.,& Tanović, D.. (2021). A green building technique: thermal transmittance value of the different materials used in 3D printed houses. in International conference – East Europe conference on AM materials- EECAM21.
https://hdl.handle.net/21.15107/rcub_machinery_6438
Ivanović M, Simonović A, Ivanov T, Kovačević A, Tanović D. A green building technique: thermal transmittance value of the different materials used in 3D printed houses. in International conference – East Europe conference on AM materials- EECAM21. 2021;.
https://hdl.handle.net/21.15107/rcub_machinery_6438 .
Ivanović, Milica, Simonović, Aleksandar, Ivanov, Toni, Kovačević, Aleksandar, Tanović, Dragoljub, "A green building technique: thermal transmittance value of the different materials used in 3D printed houses" in International conference – East Europe conference on AM materials- EECAM21 (2021),
https://hdl.handle.net/21.15107/rcub_machinery_6438 .