[1] |
刘小根, 包亦望, 王秀芳, 等. 安全型真空玻璃构件功能一体化优化设计[J]. 硅酸盐学报,2010,38(7):1310−1317(in chinese)
Liu X G, Bao Y W, Wang X F, et al. Optimization design of structural and function integration for safe vacuum glazing[J]. Journal of the Chinese Ceramic Society,2010,38(7):1310−1317
|
[2] |
李彦兵, 岳高伟. 钢化真空玻璃支撑点的排布方式[J]. 材料科学与工程学报,2016,34(6):955−959(in chinese)
Li Y B, Yue G W. Support point arrangement of tempered vacuum glass[J]. Journal of Materials Science and Engineering,2016,34(6):955−959
|
[3] |
邹贇涵, 奚小波, 张翼夫, 等. 真空玻璃技术现状与发展趋势[J]. 真空科学与技术学报,2022,42(08):563−572(in chinese)
Zou Y H, Xi X B, Zhang Y F, et al. Status and development trend of vacuum glazing technology[J]. Hinese Journal of Vacuum Science and Technology,2022,42(08):563−572
|
[4] |
惠存, 王元清, 郑胜林, 等. 单层玻璃和中空玻璃传热过程及U值影响因素分析[J]. 科学技术与工程,2015,15(28):54−59(in chinese)
Hui C, Wang Y Q, Zheng S L, et al. Heat transfer processes in single glazing and insulating glass and analysis of factors influencing u-value[J]. Science Technology and Engineering,2015,15(28):54−59
|
[5] |
Hu L H, Kao S H. Multifunctional electro-chemically exfoliated graphene with γ-alumina composite by spray-coating for energy efficient glass[J]. Solar Energy Materials & Solar Cells,2019,203:110199
|
[6] |
Kirankumar G, Saboor S, Vali S S, et al. Thermal and cost analysis of various air filled double glazed reflective windows for energy efficient buildings[J]. Journal of Building Engineering,2020,28:101055 doi: 10.1016/j.jobe.2019.101055
|
[7] |
赵洪凯, 张超, 窦睿智. 真空玻璃的支撑与封接技术研究进展[J]. 真空科学与技术学报,2021,41(5):403−408(in chinese)
Zhao H K, Zhang C, Dou R Z. Recent progress of support and sealing technology of vacuum glass[J]. Hinese Journal of Vacuum Science and Technology,2021,41(5):403−408
|
[8] |
唐健正. 真空玻璃技术及其发展概况[J]. 电子玻璃技术, 2010, 1~2: 29-35(in chinese)
Tang J Z. Overview of vacuum glass technology and its development[J]. Electronic-glass technology, 2010, 1~2: 29-35
|
[9] |
Hu D F, Li Y C, Liu C, et al. Analysis for the heat transfer of fully tempered vacuum glazing based on the thermal resistance and finite element models[J]. Advances in Mechanical Engineering,2018,10(9):1−11
|
[10] |
Ghosh A, Norton B, Duffy A. Measured thermal & daylight performance of an evacuated glazing using an outdoor test cell[J]. Applied Energy,2016,177:195−203
|
[11] |
管长征, 胡东方. 钢化真空玻璃支撑物不同布放间距的传热分析[J]. 建筑节能(中英文),2022,50(08):38−41+63(in chinese)
Guan C Z, Hu D F. Heat transfer of tempered vacuum glass supports with different arrangement spacing[J]. Journal of BEE,2022,50(08):38−41+63
|
[12] |
高帅, 岳高伟, 蔺海晓, 等. 钢化真空玻璃在温差作用下的变形特征[J]. 硅酸盐通报,2022,41(11):3918−3924(in chinese)
Gao S, Yue G W, Lin H X, et al. Deformation characteristics of tempered vacuum glass under temperature difference[J]. Bulletin of the Chinese Ceramic Society,2022,41(11):3918−3924
|
[13] |
李永明, 孙景春, 许威, 等. 内外片温差作用下真空玻璃应力与变形分析[J]. 硅酸盐通报,2017,36(09):3128−3132+3138(in chinese)
Li Y M, Sun J C, Xu W, et al. Stress and deformation analysis of vacuum glazing with the action of temperature difference between inner and outer glass[J]. Bulletin of the Chinese Ceramic Society,2017,36(09):3128−3132+3138
|
[14] |
Wullschleger L, Manz H, Wakili K G. Finite element analysis of temperature-induced deflection of vacuum glazing[J]. Construction & Building Materials,2009,23(3):1378−1388
|
[15] |
Xi X B, Xu J W, Yuan J Y, et al. Damage evaluation in tempered vacuum glazing via multivariate statistical methods[J]. Applied Sciences,2021,11(11):4799 doi: 10.3390/app11114799
|
[16] |
Xi X B, Shi Y J, Shan X, et al. Mechanical properties of tempered vacuum glazing with continuous vacant support pillars[J]. Vacuum,2021,188(1):110165
|
[17] |
Hu D F, Liu C, Li Y B. Reliability analysis of toughened vacuum glass based on gray relation decision[J]. Mathematical Problems in Engineering,2018,2018(05):1−10
|