SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD
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2021
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University of Belgrade, Faculty of Mechanical Engineering
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This paper presents a procedure for simulating the accelerated aging process of a material during the operation of an atmospheric burner used in a gas heater for domestic use. The test was performed under the conditions of the prescribed controlled high temperature, for defined intervals of the expected heat load, when using the prescribed gaseous fuel, with continuous monitoring of the surface temperature of the flame ports surface.
Keywords:
aging process / material / gas burner / heat load / gaseous fuel / flame ports surfaceSource:
10th International Conference on Tribology, BALKANTRIB '20, Proceedings, 2021, 205/91-Publisher:
- University of Belgrade, Faculty of Mechanical Engineering
Funding / projects:
- Vaskularni zid, faktori rizika i oksidativni stres: od molekula do fiziološke osnove prevencije i terapije (RS-MESTD-MPN2006-2010-145014)
- Researching the possibilities of energy efficiency improvement by using energy resources potentials examplified by Oil Industry of Serbia-Naftagas (RS-MESTD-Technological Development (TD or TR)-33001)
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Mašinski fakultetTY - CONF AU - Milivojević, Aleksandar AU - Adžić, Miroljub AU - Adžić, Vuk AU - Ivljanin, Bojan PY - 2021 UR - https://machinery.mas.bg.ac.rs/handle/123456789/5963 AB - This paper presents a procedure for simulating the accelerated aging process of a material during the operation of an atmospheric burner used in a gas heater for domestic use. The test was performed under the conditions of the prescribed controlled high temperature, for defined intervals of the expected heat load, when using the prescribed gaseous fuel, with continuous monitoring of the surface temperature of the flame ports surface. PB - University of Belgrade, Faculty of Mechanical Engineering C3 - 10th International Conference on Tribology, BALKANTRIB '20, Proceedings T1 - SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD SP - 205/91 UR - https://hdl.handle.net/21.15107/rcub_machinery_5963 ER -
@conference{ author = "Milivojević, Aleksandar and Adžić, Miroljub and Adžić, Vuk and Ivljanin, Bojan", year = "2021", abstract = "This paper presents a procedure for simulating the accelerated aging process of a material during the operation of an atmospheric burner used in a gas heater for domestic use. The test was performed under the conditions of the prescribed controlled high temperature, for defined intervals of the expected heat load, when using the prescribed gaseous fuel, with continuous monitoring of the surface temperature of the flame ports surface.", publisher = "University of Belgrade, Faculty of Mechanical Engineering", journal = "10th International Conference on Tribology, BALKANTRIB '20, Proceedings", title = "SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD", pages = "205/91", url = "https://hdl.handle.net/21.15107/rcub_machinery_5963" }
Milivojević, A., Adžić, M., Adžić, V.,& Ivljanin, B.. (2021). SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD. in 10th International Conference on Tribology, BALKANTRIB '20, Proceedings University of Belgrade, Faculty of Mechanical Engineering., 205/91. https://hdl.handle.net/21.15107/rcub_machinery_5963
Milivojević A, Adžić M, Adžić V, Ivljanin B. SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD. in 10th International Conference on Tribology, BALKANTRIB '20, Proceedings. 2021;:205/91. https://hdl.handle.net/21.15107/rcub_machinery_5963 .
Milivojević, Aleksandar, Adžić, Miroljub, Adžić, Vuk, Ivljanin, Bojan, "SIMULATION OF THE AGING PROCESS OF THE MATERIAL FROM WHICH THE FLAME PORTS OF THE BURNER ARE MADE BY INTENSIVE HEAT LOAD" in 10th International Conference on Tribology, BALKANTRIB '20, Proceedings (2021):205/91, https://hdl.handle.net/21.15107/rcub_machinery_5963 .