Design of Aerospace Vehicles' Thermal Protection Based on Heat-Insulating Materials with Optimal Structure

被引:13
|
作者
Alifanov, Oleg M. [1 ]
Salosina, Margarita O. [1 ]
Budnik, Sergey A. [1 ]
Nenarokomov, Aleksey V. [1 ]
机构
[1] Natl Res Univ, Moscow Aviat Inst, Dept Space Syst Engn, Volokolamskoe Sh 4, Moscow 125993, Russia
基金
俄罗斯科学基金会;
关键词
optimization; highly porous open-cell carbon materials; multilayer thermal protection; OPEN CELL FOAM; RADIATIVE PROPERTIES; SYSTEM; CONDUCTIVITY; PREDICTION; SHIELD;
D O I
10.3390/aerospace10070629
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Highly porous open-cell carbon materials have great potential for use as high-temperature thermal insulation for space vehicles due to a unique combination of properties: low density, high rigidity, sufficient compressive strength, and low thermal conductivity. The physical properties of these materials essentially depend on their microstructure. This implies the possibility of constructing a new advanced technique for the optimal design of multilayer thermal protection systems for aerospace vehicles, taking into account the dependence of materials' thermal properties on microstructure. The formulation of the optimization problem traditional to thermal design implies the determination of the layer thicknesses that provide a minimum specific mass of the thermal protection, subject to the specified constraints on the maximum temperatures in the layers. The novelty of this work lies in the fact that, along with the thickness of the layers, the design parameters include the cell diameter and porosity, which characterize the structure of highly porous cellular materials. The innovative part of the presented paper lies in the determination of cell diameter and the porosity of open-cell carbon foam together with the thickness of the layers for multilayer thermal insulation, ensuring the required operational temperature on the boundaries of the layers and a minimum of the total mass of the system. This article reveals new possibilities for using the numerical optimization method to determine the geometric parameters of the thermal protection system and the morphology of the materials used. A new methodology for designing heat-loaded structures based on the simultaneous selection of macro- and micro-parameters of the system is proposed. The basic principles of constructing an algorithm for designing a multilayer thermal protection system are outlined, taking into account the possibility of choosing the parameters of the highly porous materials' structure. The reliability of the developed optimization method was verified by comparing the results of mathematical modeling with experimental data obtained for highly porous cellular materials with known microstructure parameters.
引用
收藏
页数:18
相关论文
共 50 条
  • [41] Analysis of the Heat-Insulating Materials Properties for Pipeline Fittings
    Baikov I.R.
    Kitaev S.V.
    Smorodova O.V.
    Kolotilov Y.V.
    Polymer Science, Series D, 2018, 11 (1) : 96 - 98
  • [42] Application of waste coal to the manufacture of heat-insulating materials
    E. S. Abdrakhimova
    V. Z. Abdrakhimov
    Solid Fuel Chemistry, 2012, 46 : 132 - 137
  • [43] Syntact Heat-Insulating Materials Based on Ceramic-Forming Organosilicon Binder
    V. Yu. Chukhlanov
    E. P. Sysoev
    E. N. Tereshina
    Glass and Ceramics, 2005, 62 : 145 - 147
  • [44] High Temperature Heat Transfer Property of Fibers Heat-Insulating Materials
    Wang Qin
    Han Ding
    Wang Guanghai
    Chen Yufen
    RARE METAL MATERIALS AND ENGINEERING, 2013, 42 : 939 - 942
  • [45] STUDY OF SYNTHESIS PROCESSES OF HEAT-INSULATING SILICATE MATERIALS FOR EXTERNAL PROTECTION OF STEEL OIL PIPELINES
    Yatsenko, E. A.
    Goltsman, B. M.
    CIS IRON AND STEEL REVIEW, 2020, 20 : 33 - 36
  • [46] Principles of the design of variatropic heat-insulating structural refractories
    V. N. Sokov
    V. V. Sokov
    Refractories and Industrial Ceramics, 2012, 52 : 328 - 330
  • [47] Syntact heat-insulating materials based on ceramic-forming organosilicon binder
    Chukhlanov, VY
    Sysoev, ÉP
    Tereshina, EN
    GLASS AND CERAMICS, 2005, 62 (5-6) : 145 - 147
  • [48] Influence of Mineral Additives on the Structure and Properties of Heat-Insulating Materials Based on Silica-Containing Raw Material
    Manakova, N. K.
    Suvorova, O., V
    Makarov, D., V
    GLASS AND CERAMICS, 2021, 78 (7-8) : 328 - 332
  • [49] OPTIMUM DESIGN OF HEAT-INSULATING FIBER COMPOSITES WITH RESTRICTIONS ON STRENGTH AND THERMAL-CONDUCTIVITY
    NEPERSHIN, RI
    TOROPOV, AI
    MECHANICS OF COMPOSITE MATERIALS, 1987, 23 (06) : 713 - 719
  • [50] PRINCIPLES OF THE DESIGN OF VARIATROPIC HEAT-INSULATING STRUCTURAL REFRACTORIES
    Sokov, V. N.
    Sokov, V. V.
    REFRACTORIES AND INDUSTRIAL CERAMICS, 2012, 52 (05) : 328 - 330