Abstract:
The temperature dependence of the specific heat and change of the thermodynamic functions of AK1 alloy doped with strontium based on high-purity aluminum was studied in a cooling regime within a range of 298.15–900 K. It was established that the specific heat, enthalpy, and entropy of the alloys increase with increasing temperature and decrease with an increased concentration of the alloying component. The Gibbs energy value is an inverse function.
Citation:
I. N. Ganiev, S. E. Otajonov, N. F. Ibrokhimov, M. Makhmudov, “Temperature dependence of the heat capacity and change of the thermodynamic functions of AK1 alloy doped with strontium”, TVT, 57:1 (2019), 26–31; High Temperature, 57:1 (2019), 22–26
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\by I.~N.~Ganiev, S.~E.~Otajonov, N.~F.~Ibrokhimov, M. Makhmudov
\paper Temperature dependence of the heat capacity and change of the thermodynamic functions of AK1 alloy doped with strontium
\jour TVT
\yr 2019
\vol 57
\issue 1
\pages 26--31
\mathnet{http://mi.mathnet.ru/tvt10918}
\crossref{https://doi.org/10.1134/S0040364419010095}
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\transl
\jour High Temperature
\yr 2019
\vol 57
\issue 1
\pages 22--26
\crossref{https://doi.org/10.1134/S0018151X19010097}
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Linking options:
https://www.mathnet.ru/eng/tvt10918
https://www.mathnet.ru/eng/tvt/v57/i1/p26
This publication is cited in the following 14 articles:
I. N. Ganiev, M. R. Rakhimov, S. E. Otadzhonov, M. Kh. Ismoilova, S. Yu. Khudoyberdizoda, “Influence of lithium on the temperature dependence of heat capacity and thermodynamic functions changes in AK1 alloy based on high-purity aluminum”, Vopr. materialoved., 2024, no. 4(116), 42
I. N. Ganiev, F. Kholmurodov, A. G. Safarov, N. R. Nurov, U. Sh. Yakubov, K. Boturov, TVT, 62:1 (2024), 48–55
I. N. Ganiev, O. Kh. Niyezov, S. U. Khudojberdizoda, B. B. Eshov, N. M. Mulloeva, TVT, 62:2 (2024), 187–193
I. N. Ganiev, O. H. Niyozov, S. U. Khudoyberdizoda, B. B. Eshov, N. M. Mulloeva, “Temperature Dependence of the Heat Capacity and Changes in Thermodynamic Functions of Lead–Antimony Alloy SSu3 with Barium”, High Temp, 62:2 (2024), 154
I. N. Ganiev, R. Zh. Faizulloev, F. Sh. Zokirov, N. I. Ganieva, “Temperature dependences of the heat capacity and thermodynamic functions of aluminum conducting alloy AlTi0.1 with strontium”, High Temperature, 61:3 (2023), 344–349
I. N. Ganiev, Kh. M. Khodzhanazarov, F. K. Khodzhaev, B. B. Eshov, “Heat Capacity and Thermodynamic Functions of Sodium-Alloyed Lead Babbitt BNa (PbSb15Sn10Na)”, Russian Journal of Physical Chemistry, 97:4 (2023), 469
I. N. Ganiev, R. S. Shonazarov, A. Elmurod, U. N. Faizulloev, TVT, 61:5 (2023), 673–678
I. N. Ganiev, Kh. M. Khodzhanazarov, F. K. Khodzhaev, B. B. Eshov, “Heat Capacity and Thermodynamic Functions of Sodium-Alloyed Lead Babbitt BNa (PbSb15Sn10Na)”, Russ. J. Phys. Chem., 97:4 (2023), 550
I. N. Ganiev, R. J. Faizulloev, F. Sh. Zokirov, A. G. Safarov, “Influence of calcium on specific heat capacity and changes in thermodynamic functions of aluminum conductor alloy AlTi0.1”, Izv. vysš. učebn. zaved., Mater. èlektron. teh., 26:1 (2023), 76
I. N. Ganiev, R. S. Shonazarov, A. Elmurod, U. N. Faizulloev, “Heat Capacity and Thermodynamic Functions of the Aluminum Alloy AlCu4.5Mg1 Alloyed with Barium”, High Temp, 61:5 (2023), 611
S. U. Khudojberdizoda, I. N. Ganiev, S. E. Otajonov, B. B. Eshov, U. Sh. Yakubov, “Effect of copper on the heat capacity and change of the thermodynamic functions of lead”, High Temperature, 59:1 (2021), 49–54
S. Sukpancharoen, B. Prasartkaew, “Combined heat and power plant using a multi-objective henry gas solubility optimization algorithm: a thermodynamic investigation of energy, exergy, and economic (3E) analysis”, Heliyon, 7:9 (2021), e08003
B. N. Gulov, Z. Nizomov, F. S. Tabarov, “Thermophysical Properties of Aluminium of Grade A5N and Its Alloys Doped with Silicon, Copper and Rare-Earth Metals”, Metallofiz. Noveishie Tekhnol., 43:11 (2021), 1553
I. N. Ganiev, M. T. Nazarova, U. Sh. Yakubov, A. G. Safarov, M. Z. Kurbonova, “Influence of lithium on specific heat and changes in the thermodynamic functions of aluminum alloy AB1”, High Temperature, 58:1 (2020), 58–63