Page 147 - 《爆炸与冲击》2026年第3期
P. 147
第 46 卷 李昊洋,等: 风致飞射物冲击下钢化玻璃破坏的边界条件效应及碎片分布量化模型 第 7 期
[10] ZHANG W N, ZHAO W C, QIAN J. Safety assessment of airtight protective doors of nuclear power plants subjected to wind-
borne missile impact [J]. Buildings, 2024, 14(2): 437. DOI: 10.3390/buildings14020437.
[11] YANG C X, NAN Z, HUO Y J, et al. Research on the mechanical performance of windshield glass for rail vehicles under
gravel impact loadings [J]. Results in Engineering, 2024, 23: 102587. DOI: 10.1016/j.rineng.2024.102587.
[12] 张英杰, 韩阳, 刘姗姗, 等. 中空钢化夹层玻璃抗冲击性能的影响因素 [J]. 应用力学学报, 2021, 38(5): 1861–1868. DOI:
10.11776/cjam.38.05.B110.
ZHANG Y J, HAN Y, LIU S S, et al. Influence factors of impact resistance of hollow tempered laminated glass [J]. Chinese
Journal of Applied Mechanics, 2021, 38(5): 1861–1868. DOI: 10.11776/cjam.38.05.B110.
[13] 郭鑫. 冲击荷载作用下钢化玻璃损伤及断裂的力学机理研究 [D]. 呼和浩特: 内蒙古工业大学, 2020: 39–51. DOI:
10.27225/d.cnki.gnmgu.2020.000193.
GUO X. Mechanical mechanism of damage and fracture of tempered glass under impact load [D]. Hohhot: Inner Mongolia
University of Technology, 2020: 39–51. DOI: 10.27225/d.cnki.gnmgu.2020.000193.
[14] 韩阳. 冲击载荷下中空钢化玻璃和中空钢化夹层玻璃动态响应研究 [D]. 太原: 太原理工大学, 2019: 57–70.
HAN Y. Dynamic response of hollow tempered glass and hollow tempered laminated glass under impact loading [D].
Taiyuan: Taiyuan University of Technology, 2019: 57–70.
[15] 刘炘炜, 杨健, 王星尔, 等. 冲击致损的夹层玻璃板开裂后的静载强度 [J]. 上海交通大学学报, 2020, 54(3): 227–238. DOI:
10.16183/j.cnki.jsjtu.2020.03.002.
LIU X W, YANG J, WANG X E, et al. Post-breakage strength of laminated glass panel cracked by impact [J]. Journal of
Shanghai Jiao Tong University, 2020, 54(3): 227–238. DOI: 10.16183/j.cnki.jsjtu.2020.03.002.
[16] VEER F, ROMEIN T, BUSKERMOLEN P. Small hard body impact on annealed, heat strengthened and fully tempered
laminated glass [J]. International Journal of Structural Glass and Advanced Materials Research, 2022, 6(1): 15–22. DOI:
10.3844/sgamrsp.2022.15.22.
[17] KANAN A, STORM J, KALISKE M. A nonlocally-informed locally-scaled method for fracture: numerical implementation to
model fragmentation of tempered glass [J]. Computational Mechanics, 2025, 76(3): 745–767. DOI: 10.1007/s00466-025-
02623-3.
[18] PAN Z F, YANG J, WANG X E, et al. Scratch-induced micro-fracture behaviour and translational failure of glass: an
experimental and numerical study [J]. Thin-Walled Structures, 2024, 205: 112341. DOI: 10.1016/j.tws.2024.112341.
[19] 王义戈, 王星尔, 杨健, 等. 考虑碎片膨胀效应的物理钢化夹层玻璃开裂后变形分析模型 [J]. 应用力学学报, 2025, 42(1):
141–148. DOI: 10.11776/j.issn.1000-4939.2025.01.015.
WANG Y G, WANG X E, YANG J, et al. Deformation analysis model of fractured laminated tempered glass considering
fragment expansion [J]. Chinese Journal of Applied Mechanics, 2025, 42(1): 141–148. DOI: 10.11776/j.issn.1000-4939.2025.
01.015.
[20] 师燕超, 于海涛, 李忠献. 爆炸荷载作用下建筑玻璃的破碎分析 [J]. 天津大学学报 (自然科学与工程技术版), 2015,
48(10): 888–893. DOI: 10.11784/tdxbz201411025.
SHI Y C, YU H T, LI Z X. Analysis of architecture glass breaking under explosion load [J]. Journal of Tianjin University
(Science and Technology), 2015, 48(10): 888–893. DOI: 10.11784/tdxbz201411025.
[21] 李洪祥, 陶俊林, 卢永刚, 等. 爆炸作用下玻璃碎片云轮廓扩展数据拟合研究 [J]. 兵器装备工程学报, 2016, 37(5):
129–134. DOI: 10.11809/scbgxb2016.05.031.
LI H X, TAO J L, LU Y G, et al. Glass debris cloud contour extend calculation method research under the explosion [J].
Journal of Ordnance Equipment Engineering, 2016, 37(5): 129–134. DOI: 10.11809/scbgxb2016.05.031.
[22] 葛杰, 李国强, 陈素文. 高应变率加载下玻璃板碎片尺寸的理论模型 [J]. 振动与冲击, 2013, 32(1): 69–72,98. DOI:
10.3969/j.issn.1000-3835.2013.01.015.
GE J, LI G Q, CHEN S W. Theoretical model of glass fragment size under high strain rate [J]. Journal of Vibration and Shock,
2013, 32(1): 69–72,98. DOI: 10.3969/j.issn.1000-3835.2013.01.015.
[23] 濮勇, 张红, 谢于真, 等. 中高速冲击下 PVB 夹层玻璃开裂及碎片特性研究 [J]. 硅酸盐通报, 2019, 38(11): 3565–3572.
DOI: 10.16552/j.cnki.issn1001-1625.2019.11.030.
PU Y, ZHANG H, XIE Y Z, et al. Study on crack and fragment characteristics of PVB laminated glass under medium and
high speed impact [J]. Bulletin of the Chinese Ceramic Society, 2019, 38(11): 3565–3572. DOI: 10.16552/j.cnki.issn1001-
073302-17

