Study on the relationship between thermal conductivity of plain weave fabrics and thermal conductivity of single fibers based on differential equations and goal planning models
DOI:
https://doi.org/10.54097/v7abnf32Keywords:
One-dimensional heat conduction modeling, thermal conductivity calculations, heat convection.Abstract
Fabrics with high thermal insulation capacity have very common applications in aerospace direction. In order to obtain the relationship between the overall thermal conductivity of the fabric and the thermal conductivity of a single fiber, and then through the optimization of various parameters of the fabric, to obtain the fabric with stronger heat insulation ability, this paper considers the fiber heat transfer and the gas heat transfer, the fiber heat transfer and the gas heat transfer as a parallel model, and considers the influence of the difference between the volume of the fibers and the volume of the air on the overall heat transfer effect in the entire heat transfer process, and takes the ratio of the volume of the fibers and the ratio of the air The proportion of fiber volume and the proportion of air volume are taken as the weight influence factors in the parallel model, and the mathematical model of the relationship between the overall thermal conductivity of plain fabric and the thermal conductivity of single fiber is established. Then the objective planning model is established, and the optimization algorithm is used to solve the problem, so as to obtain the minimum thermal conductivity of a single fiber and the corresponding structural parameters.
Downloads
References
MA Shiheng,GE Jingran,LIU Kai et al. Study of specific heat capacity and thermal conductivity of glass fiber/epoxy prepregs during the whole curing process[J/OL]. Composites Science and Engineering:1-6[2023-08-28].
Xie Shihong,Gao Jie,Ning Laiyuan et al. Progress of carbon fiber/polymer composites thermal conductivity research in the last decade[J/OL]. Journal of Composite Materials:1-12[2023-08-28].
Guo JY,Chen ZW,Su LJ et al. Effect of radiative heat transfer on the thermal insulation performance of silica aerogel composites[J]. Journal of Silicates,2023,51(07):1811-1818.
Gan Peiyuan,Wei Deshi,Wei Shijiang et al. Effects of rare earth elements La and Ce on the organization and properties of Al-7Si-0.4Cu-1.0Fe die-cast aluminum alloy[J]. Shanghai Metal,2023,45(03):13-19.
H.B. Zhu,Q.P. Du,X.L. Xu et al. Preparation of multistage micro- and nanofiber insulation materials and their thermal protection properties[J/OL]. Journal of Basic Science in Textile Colleges and Universities:1-7[2023-08-28].
Zhang ZY, Peng XG, Huang WG, et al. Advances in the preparation and application of heat-insulating (lightweight) refractories[C]//Chinese Society for Metals Refractories Branch,Sinosteel Group Luoyang Refractories Research Institute Co.,Ltd,State Key Laboratory of Advanced Refractories,Refractories Magazine.Proceedings of the National Refractory Raw Materials Academic Exchange Conference in 2023.Proceedings of the National Refractory Raw Materials Academic Exchange Conference in 2023,2023:6-14.
HE Duanpeng, ZHANG Lei, GAO Hong et al. Relationship between thermal conductivity of carbon fiber and its microstructural parameters[J]. Aerospace Materials Technology,2023,53(02):105-110.
XU Kang,SHI Shanshan,JIANG Tao et al. Research progress of carbon fiber 3D network structure thermally conductive composites[J]. Engineering Plastics Application,2022,50(09):155-159.
Dong Jianhong. Preparation and performance study of lightweight zirconia-based fiber thermal insulation materials[D]. Shandong University,2022.
Zhang Xiaoshan,Wang Bing,Wu Nan et al. Research progress of micro-nano ceramic fibers for high temperature insulation[J]. Journal of Inorganic Materials,2021,36(03):245-256.
Downloads
Published
Issue
Section
License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







