Gligić, Boris

Link to this page

Authority KeyName Variants
90109cb9-bc25-44a0-8128-523d6898e5a5
  • Gligić, Boris (3)
Projects
No records found.

Author's Bibliography

Aluminium alloy girders strengthened by steel elements

Gligić, Boris; Buđevac, Dragan; Marković, Zlatko; Mišković, Zoran

(Union of Croatian Civil Engineers and Technicians, 2016)

TY  - JOUR
AU  - Gligić, Boris
AU  - Buđevac, Dragan
AU  - Marković, Zlatko
AU  - Mišković, Zoran
PY  - 2016
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/812
AB  - When used as construction materials, the aluminium and its alloys are dominant in the field of facade structures. In these applications, a need has been felt in practice to strengthen facade structures made of aluminium alloys, and the steel is also used for such strengthening. A review of current possibilities is presented in the paper from theoretical and practical standpoints. An original solution involving gluing of steel elements is presented as an optimum technical solution. The solution has been proven by testing a sample in laboratory conditions, and it constitutes a basis for detailed research, which is currently under way.
PB  - Union of Croatian Civil Engineers and Technicians
T2  - Građevinar
T1  - Aluminium alloy girders strengthened by steel elements
EP  - 799
IS  - 10
SP  - 787
VL  - 68
DO  - 10.14256/JCE.1588.2016
ER  - 
@article{
author = "Gligić, Boris and Buđevac, Dragan and Marković, Zlatko and Mišković, Zoran",
year = "2016",
abstract = "When used as construction materials, the aluminium and its alloys are dominant in the field of facade structures. In these applications, a need has been felt in practice to strengthen facade structures made of aluminium alloys, and the steel is also used for such strengthening. A review of current possibilities is presented in the paper from theoretical and practical standpoints. An original solution involving gluing of steel elements is presented as an optimum technical solution. The solution has been proven by testing a sample in laboratory conditions, and it constitutes a basis for detailed research, which is currently under way.",
publisher = "Union of Croatian Civil Engineers and Technicians",
journal = "Građevinar",
title = "Aluminium alloy girders strengthened by steel elements",
pages = "799-787",
number = "10",
volume = "68",
doi = "10.14256/JCE.1588.2016"
}
Gligić, B., Buđevac, D., Marković, Z.,& Mišković, Z.. (2016). Aluminium alloy girders strengthened by steel elements. in Građevinar
Union of Croatian Civil Engineers and Technicians., 68(10), 787-799.
https://doi.org/10.14256/JCE.1588.2016
Gligić B, Buđevac D, Marković Z, Mišković Z. Aluminium alloy girders strengthened by steel elements. in Građevinar. 2016;68(10):787-799.
doi:10.14256/JCE.1588.2016 .
Gligić, Boris, Buđevac, Dragan, Marković, Zlatko, Mišković, Zoran, "Aluminium alloy girders strengthened by steel elements" in Građevinar, 68, no. 10 (2016):787-799,
https://doi.org/10.14256/JCE.1588.2016 . .
1
2
2

Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel

Gligić, Boris; Buđevac, Dragan; Marković, Zlatko

(Trans Tech Publications Ltd, 2016)

TY  - CONF
AU  - Gligić, Boris
AU  - Buđevac, Dragan
AU  - Marković, Zlatko
PY  - 2016
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/754
AB  - This paper deal, on example of aluminium alloy beam strengthened by using elements of steel, with theoretical analysis of the possibilities for composite action of beam formed from two materials with considerably different coefficients of thermal expansion. According to authors opinion conclusions lead to clear statement that such structures are possible as well that such solutions could have economical and serviceability sense, especially in field of structural engineering where exposing to temperature changes is limited to relatively small range. In case of aluminium and steel combination, for extreme temperature change used in structural engineering, advantages that are achieved are considerably higher than disadvantages, especially in cases where deformation is dominant condition.
PB  - Trans Tech Publications Ltd
C3  - Key Engineering Materials
T1  - Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel
EP  - 338
SP  - 333
VL  - 710
DO  - 10.4028/www.scientific.net/KEM.710.333
ER  - 
@conference{
author = "Gligić, Boris and Buđevac, Dragan and Marković, Zlatko",
year = "2016",
abstract = "This paper deal, on example of aluminium alloy beam strengthened by using elements of steel, with theoretical analysis of the possibilities for composite action of beam formed from two materials with considerably different coefficients of thermal expansion. According to authors opinion conclusions lead to clear statement that such structures are possible as well that such solutions could have economical and serviceability sense, especially in field of structural engineering where exposing to temperature changes is limited to relatively small range. In case of aluminium and steel combination, for extreme temperature change used in structural engineering, advantages that are achieved are considerably higher than disadvantages, especially in cases where deformation is dominant condition.",
publisher = "Trans Tech Publications Ltd",
journal = "Key Engineering Materials",
title = "Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel",
pages = "338-333",
volume = "710",
doi = "10.4028/www.scientific.net/KEM.710.333"
}
Gligić, B., Buđevac, D.,& Marković, Z.. (2016). Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel. in Key Engineering Materials
Trans Tech Publications Ltd., 710, 333-338.
https://doi.org/10.4028/www.scientific.net/KEM.710.333
Gligić B, Buđevac D, Marković Z. Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel. in Key Engineering Materials. 2016;710:333-338.
doi:10.4028/www.scientific.net/KEM.710.333 .
Gligić, Boris, Buđevac, Dragan, Marković, Zlatko, "Theoretical analysis of the possibilities for aluminium alloy beam to be strengthened using elements of steel" in Key Engineering Materials, 710 (2016):333-338,
https://doi.org/10.4028/www.scientific.net/KEM.710.333 . .
1
1

Wind towers: Design of friction connections for assembling sections of tubular steel towers

Fric, Nenad; Gligić, Boris; Dobrić, Jelena; Marković, Zlatko

(Institut za istraživanja i projektovanja u privredi, Beograd, 2012)

TY  - JOUR
AU  - Fric, Nenad
AU  - Gligić, Boris
AU  - Dobrić, Jelena
AU  - Marković, Zlatko
PY  - 2012
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/437
AB  - The towers represent about 15 to 20% of the total installation costs and optimized design may therefore lead to substantial savings with regard to costs and use of materials. Some of the most interesting design and manufacturing details are connections used to assemble sections of tubular steel towers supporting wind turbines. There is traditional flange ring connection and on the other side, as a new proposal, friction connection. In this paper theoretic basis of design of friction connection of wind towers is given.
AB  - Tornjevi predstavljaju 15 do 20% ukupne cene vetrogeneratora pa se optimizacijom u projektovanju može doći do značajne uštede u materijalu. Među najinteresantnijim projektantskim i izvođačkim detaljima je montažni nastavak tornja vetrogeneratora. Postoje tradicionalni nastavci sa čeonim pločama i sa druge strane, kao novi predlog, tarni spoj. U ovom radu date su teorijske osnove projektovanja tarnih spojeva kao montažnih nastavaka tornjeva vetrogeneratora.
PB  - Institut za istraživanja i projektovanja u privredi, Beograd
T2  - Journal of Applied Engineering Science
T1  - Wind towers: Design of friction connections for assembling sections of tubular steel towers
T1  - Vetrogeneratori - proračun tarnog spoja kao montažnog nastavka cilindričnog čeličnog tornja
EP  - 52
IS  - 1
SP  - 49
VL  - 10
DO  - 10.5937/jaes10-1670
ER  - 
@article{
author = "Fric, Nenad and Gligić, Boris and Dobrić, Jelena and Marković, Zlatko",
year = "2012",
abstract = "The towers represent about 15 to 20% of the total installation costs and optimized design may therefore lead to substantial savings with regard to costs and use of materials. Some of the most interesting design and manufacturing details are connections used to assemble sections of tubular steel towers supporting wind turbines. There is traditional flange ring connection and on the other side, as a new proposal, friction connection. In this paper theoretic basis of design of friction connection of wind towers is given., Tornjevi predstavljaju 15 do 20% ukupne cene vetrogeneratora pa se optimizacijom u projektovanju može doći do značajne uštede u materijalu. Među najinteresantnijim projektantskim i izvođačkim detaljima je montažni nastavak tornja vetrogeneratora. Postoje tradicionalni nastavci sa čeonim pločama i sa druge strane, kao novi predlog, tarni spoj. U ovom radu date su teorijske osnove projektovanja tarnih spojeva kao montažnih nastavaka tornjeva vetrogeneratora.",
publisher = "Institut za istraživanja i projektovanja u privredi, Beograd",
journal = "Journal of Applied Engineering Science",
title = "Wind towers: Design of friction connections for assembling sections of tubular steel towers, Vetrogeneratori - proračun tarnog spoja kao montažnog nastavka cilindričnog čeličnog tornja",
pages = "52-49",
number = "1",
volume = "10",
doi = "10.5937/jaes10-1670"
}
Fric, N., Gligić, B., Dobrić, J.,& Marković, Z.. (2012). Wind towers: Design of friction connections for assembling sections of tubular steel towers. in Journal of Applied Engineering Science
Institut za istraživanja i projektovanja u privredi, Beograd., 10(1), 49-52.
https://doi.org/10.5937/jaes10-1670
Fric N, Gligić B, Dobrić J, Marković Z. Wind towers: Design of friction connections for assembling sections of tubular steel towers. in Journal of Applied Engineering Science. 2012;10(1):49-52.
doi:10.5937/jaes10-1670 .
Fric, Nenad, Gligić, Boris, Dobrić, Jelena, Marković, Zlatko, "Wind towers: Design of friction connections for assembling sections of tubular steel towers" in Journal of Applied Engineering Science, 10, no. 1 (2012):49-52,
https://doi.org/10.5937/jaes10-1670 . .
3