Research of heat-exchange processes in a casting form with reinforcing phase
https://doi.org/10.21122/1683-6065-2019-3-54-59
Abstract
The method of lost foam casting with the reinforcing phase installed inside the polystyrene foam model is considered as a basic technological process. In The new multicomponent systems for the theory of foundry processes will be created in this case: «metal–model–implant–mold» and «metal–reinforcing phase–mold». The influence of the installed macroreinforcing elements in the form of steel rods on the heat and mass transfer was researched, solidification and hydrodynamics is investigated. The process was modeled using the ProCast program by evaluating the solidification conditions in the sand casting mold of cast samples from copper alloys and the reinforcing phase from carbon steel. To compare the results, the process of solidification of cast specimens with a size of 10×200 mm without a reinforcing phase and with a reinforcing phase in the form of rods occupying 20 and 50% of its cross section area was modeled. The research results are presented in the form of graphical curves of the cooling temperature and time. It has been established that the use of a reinforcing phase in a casting mold has a significant impact on the removal of metal overheating due to the consumption of a certain amount of heat for heating the reinforcing phase, increases the rate of alloy hardening and casting cooling.
About the Author
I. A. ShalevskayaUkraine
Kiev, 34/1, Acad. Vernadskogo ave.
References
1. Shinskiy O. I., Marukovich E. I., Shalevskaya I. A. i dr. Ekonomika, ekologiya, organizatsiya proizvodstv litya po gazifitsiruemyim modelyam [Economy, ecology, organization of foundry production by lost foam casting]. Lit’e i metallurgiya = Foundry production and metallurgy, 2017, no. 4. pp. 53–59. (in Russian) https://doi.org/10.21122/1683-6065-2017-4-53-59.
2. Shinskiy O. I. Gazogidrodinamika i tehnologii litya zhelezouglerodistyih i tsvetnyih splavov po gazifitsiruemyim modelyam. Diss. dokt. tekhn. nauk [Gas-Hydrodynamics and Technology of Casting Iron-Carbon and Non-Ferrous Alloys by Gasified Models. Dr. tech. sci. diss.]. Kyiv, 1997. 473 p. (in Russian).
3. Romanenko Yu. N., Aftandilyants E. G., Shinskiy I. O., Pelikan O. A. Otsenka izmeneniya koeffitsienta teploprovodnosti armirovannyih otlivok [Evaluation of the change in thermal conductivity of reinforced castings]. Protsessyi litya = Foundry Processes, 2009, no. 2, pp. 62–66. (in Russian).
4. Shinsky O., Shalevska I. i dr. Principles of construction and identification of a multilevel system for monitoring parameters of technological cycle of casting – Shidno-Evropeyskiy zhurnal peredovih tehnologIy, 2018. Vol. 5, no. 1 (95). pp. 43–56. DOI: (in English). https://doi.org/10.15587/1729-4061.2018.141303.
5. Shinsky I., Shalevska I., Musbah Ja. Efficiency of influence of a metal macroreinforcing phase on process of solidification of large-sized castings. TEKA. Edition of Lublin University of technology, Vol. XD, Lublin, 2015 (in English).
Review
For citations:
Shalevskaya I.A. Research of heat-exchange processes in a casting form with reinforcing phase. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2019;(3):54-59. (In Russ.) https://doi.org/10.21122/1683-6065-2019-3-54-59