Mathematical modeling of the rheological behavior of thermoplastic slurry in the molding process of beryllium ceramics

被引:6
|
作者
Sattinova, Z. K. [1 ]
Bekenov, T. N. [1 ]
Assilbekov, B. K. [2 ]
Ramazanova, G. I. [2 ]
Zhapbasbayev, U. K. [2 ]
Nussupbek, Zh. T. [3 ]
机构
[1] LN Gumilyev Eurasian Natl Univ, Nur Sultan, Kazakhstan
[2] Satbayev Univ, Alma Ata, Kazakhstan
[3] S Seifullin Kazakh Agrotech Univ, Nur Sultan, Kazakhstan
关键词
Ultrasonic effects (A); Thermoplastic slurry (B); Thixotropic-dilatant (C); Rheological properties (C); Beryllium ceramics (D); THERMAL-CONDUCTIVITY; OXIDE; FLOW; TEMPERATURE; FLUID;
D O I
10.1016/j.ceramint.2022.07.178
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The article presents the results of calculations of a mathematical model of the flow and heat exchange of a thermoplastic beryllium oxide slurry in a circular channel of a foundry installation. Taking into account the peculiarities of coagulation structure formation and the flow mechanism with boundary conditions, the article presents calculations of the speed of the viscoelastic flow of the slurry on the basis of two rheological models of Shvedov-Bingham and Herschel-Bulkley. The three-parameter equation is used to check the consistency of the experimental data of the non-isothermal slurry flow in comparison with the Shvedov-Bingham model. According to the results of calculations of various hydrodynamic conditions and thermal parameters, the fields of velocities and temperatures were obtained to determine the optimal modes of casting beryllium oxide slurry. The heat transfer parameters were determined in accordance with the physical properties of the cavity wall. The positions of the crystallization front along the circular channel are also shown depending on the thermal parameters. The results of the calculated data on the Shvedov-Bingham and Bulkley-Herschel rheological models showed suffi-cient adequacy with the experimental data.
引用
收藏
页码:31102 / 31110
页数:9
相关论文
共 50 条
  • [1] Calculation of the thermoplastic beryllium oxide slurry molding with ultrasonic activation
    Zhapbasbayev, U. K.
    Ramazanova, G. I.
    Terekhov, V. I.
    Sattinova, Z. K.
    KOMPLEKSNOE ISPOLZOVANIE MINERALNOGO SYRA, 2024, (04): : 79 - 89
  • [2] Study on rheological behavior of slurry for aluminum nitride ceramics
    Yao, Yi-Jun
    Qiu, Tai
    Cailiao Gongcheng/Journal of Materials Engineering, 2006, (09): : 10 - 13
  • [3] Digitalization of the thermoplastic beryllium oxide slurry forming process using ultrasonic activation
    Zhapbasbayev, U. K.
    Ramazanova, G. I.
    Retnawati, H.
    Sattinova, Z. K.
    KOMPLEKSNOE ISPOLZOVANIE MINERALNOGO SYRA, 2024, (03): : 5 - 12
  • [4] Rheological behavior modeling of recycled ABS/PC blends applied to injection molding process
    Reig, MJ
    Segui, VJ
    Zamanillo, JD
    JOURNAL OF POLYMER ENGINEERING, 2005, 25 (05) : 435 - 457
  • [5] Rheological characterization and macroscopic modeling and simulation of the molding process of a PA6 Glass Mat Thermoplastic (GMT)
    Doerr, Dominik
    Singh-Heer, Navraj
    Gergely, Ryan C. R.
    Schreyer, Louis
    Henning, Frank
    Straatman, Anthony G.
    Hrymak, Andrew
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2024, 176
  • [6] Rheological behavior and slip casting process of hydroxyapatite slurry
    Eng. Research Center of Biomaterials, Sichuan Univ., Chengdu 610064, China
    不详
    Sichuan Daxue Xuebao (Gongcheng Kexue Ban), 2006, 4 (96-100):
  • [7] Modeling of morphology evolution in the injection molding process of thermoplastic polymers
    Pantani, R
    Coccorullo, I
    Speranza, V
    Titomanlio, G
    PROGRESS IN POLYMER SCIENCE, 2005, 30 (12) : 1185 - 1222
  • [8] A Review of Thermoplastic Resin Transfer Molding: Process Modeling and Simulation
    Ageyeva, Tatyana
    Sibikin, Ilya
    Kovacs, Jozsef Gabor
    POLYMERS, 2019, 11 (10)
  • [9] MATHEMATICAL-MODELING OF THE BLOW-MOLDING PROCESS
    RYAN, ME
    DUTTA, A
    POLYMER ENGINEERING AND SCIENCE, 1982, 22 (17): : 1075 - 1083
  • [10] Pultrusion of thermoplastic composites - process optimization and mathematical modeling
    Inst. Verbundwerkstoffe GmbH , University of Kaiserslautern, Erwin-Schrodinger-Strasse, 67663 Kaiserslautern, Germany
    J Thermoplast Compos Mater, 2 (96-120):