Modeling of the thermophysical properties of molding materials by solving the inverse heat conductivity problem
Author:
Affiliation:
1. Ural Federal University
Publisher
TEST-ZL Publishing
Reference18 articles.
1. Martynenko S. V., Ogorodnikova O. M. Simulation of the manufacturing technology for the Frame casting using the LVMFlow program / Lit. Proizv. 2022. N 7. P. 23 – 28 [in Russian].
2. Mordasov S. A., Negulyaeva A. P., Chernyshov V. N. Control of the thermophysical characteristics of building materials by the adaptive method using microwave heating / Industr. Lab. Mater. Diagn. 2020. Vol. 86. N 2. P. 30 – 36 [in Russian]. DOI: 10.26896/1028-6861-2020-86-2-30-36
3. Knyazeva A. G. Thermophysical foundations of modern high-temperature technologies. — Tomsk: Tomsky Politekhnichesky Universitet, 2009. — 357 p. [in Russian].
4. Shorstov S. Yu., Marakhovsky P. S., Pakhomkin S. I., Razmakhov M. G. Investigation of heat capacity of high-temperature nickel alloy VZhM4 by differential scanning calorimetry, adiabatic and mixing calorimetry / Industr. Lab. Mater. Diagn. 2021. Vol. 87. N 12. P. 30 – 35 [in Russian]. DOI: 10.26896/1028-6861-2021-87-12-35-40
5. Dai S., Wang Y., Chen F., et al. Design of new biomedical titanium alloy based on d-electron alloy design theory and JMatPro software / Transactions of nonferrous metals society of China. 2023. Vol. 23(10). P. 3027 – 3032. DOI: 10.1016/S1003-6326(13)62829-0
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