LIU Wen-guang1,DAI Wen-ke1. Crack Growth Rate Model Based on Modal Frequencyfor a V-Notched Beam[J]. Journal of Propulsion Technology, 2019, 40(11): 2571-2578.
[1] 钱管良, 顾松年, 姜节胜. 含裂纹梁的动力响应[J]. 振动工程学报, 1989, (3): 78-85.
[2] 马一江, 陈国平. 含多条裂纹梁的模态与振动疲劳寿命分析[J]. 振动.测试与诊断, 2017, 37(2): 307-313.
[3] 杨鄂川, 李映辉, 赵 翔, 等. 含旋转运动效应裂纹梁横向振动特性的研究[J]. 应用力学学报, 2017, 34(6): 1160-1165.
[4] 陈建恩, 施月奇, 刘 军, 等. 蒙皮裂纹点阵夹芯梁振动特性分析及裂纹识别[J]. 振动与冲击, 2018, 37(5):220-225.
[5] 梁 岗, 曹 沛, 唐 炯, 等. 基于移动有限元法的裂纹梁振动分析[J]. 动力学与控制学报, 2017, 15(2): 136-141.
[6] 陈 岩, 王 平, 余 飞, 等. 含裂纹梁非线性静动力特性及简化动力学建模[J]. 计算力学学报, 2016, 33(2): 209-215.
[7] 徐可君, 江龙平. 裂纹对叶片固有频率影响的分析[J]. 推进技术, 1997, 18(6): 68-71. (XU Ke-jun, JIANG Long-ping. Analysis of Effect of Crack on the Natural Frequency of Blade[J]. Journal of Propulsion Technology, 1997, 18(6): 68-71.)
[8] Liu W, Barkey M E. Nonlinear Vibrational Response of a Single Edge Cracked Beam[J]. Journal of Mechanical Science and Technology, 2017, 31(11): 5231-5243.
[9] Zeng J, Ma H, Zhang W, et al. Dynamic Characteristic Analysis of Cracked Cantilever Beams under Different Crack Types[J]. Engineering Failure Analysis, 2017, 74: 80- 94.
[10] Jena S P, Parhi D R. Dynamic Response and Analysis of Cracked Beam Subjected to Transit Mass[J]. International Journal of Dynamics and Control, 2017, (1): 1-12.
[11] 李 清, 薛耀东, 于 强, 等. 含预制裂纹L形梁柱试件动态断裂过程[J]. 爆炸与冲击, 2018, 38(3): 491-500.
[12] 岳中文, 胡庆文, 王 煦, 等. 冲击载荷下含空孔三点弯曲梁的动态断裂行为[J]. 实验力学, 2017, 32(4): 463-471.
[13] 刘文光, 陈国平. 呼吸式裂纹梁的振动疲劳裂纹扩展耦合分析[J]. 中国机械工程, 2010, 21(23): 2798-2802.
[14] Liu W, Barkey M E. The Effects of Breathing Behaviour on Crack Growth of a Vibrating Beam[J]. Shock and Vibration, 2018, (3): 1-12.
[15] Rozumek D, Faszynka S. Influence of the Notch Radius on Fatigue Crack Propagation in Beam Specimens of 2017A-T4 Alloy[J]. Materials Science, 2017, 53(3):417-423.
[16] 崔 韦, 王建军. 共振条件下的裂纹梁振动与裂纹扩展耦合分析[J]. 推进技术, 2014, 35(10): 1404-1411. (CUI Wei, WANG Jian-jun. Coupling Analysis of Vibration and Crack Propagation for a Cracked Beam at Resonant State[J]. Journal of Propulsion Technology, 2014, 35(10): 1404-1411.)
[17] Lee J W. Crack Identification Method for Tapered Cantilever Pipe-Type Beam Using Natural Frequencies[J]. International Journal of Steel Structures, 2016, 16(2): 467-476.
[18] Mungla M J, Sharma D S, Trivedir R. Identification of a Crack in Clamped-Clamped Beam Using Frequency-Based Method and Genetic Algorithm[J]. Procedia Engineering, 2016, 144: 1426-1434.
[19] Khiem N T, Toan L K. A Novel Method for Crack Detection in Beam-Like Structures by Measurements of Natural Frequencies[J]. Journal of Sound and Vibration, 2014, 333(18): 4084-4103.
[20] 刘文光, 郭隆清, 贺红林, 等. 基于固有频率的呼吸式裂纹梁损伤识别方法[J]. 中国机械工程, 2017, 28(6): 702-707.
[21] 刘文光, 李 俊, 严 铖, 等. 弹性梁损伤识别模态应变能法[J]. 中国机械工程, 2014, 25(12): 1651-1654.
[22] Curadelli R O, Riera J D, Ambrosini D, et al. Damage Detection by Means of Structural Damping Identification[J]. Engineering Structures, 2008, 30(12): 3497-3504.
[23] Douka E, Bamnios G, Trochidis A. A Method for Determining the Location and Depth of Cracks in Double-Cracked Beams[J]. Applied Acoustics, 2004, 65(10) :997-1008.
[24] 李 兵, 陈雪峰, 向家伟, 等. 基于小波有限元法的悬臂梁裂纹识别的试验研究[J]. 机械工程学报, 2005, 41(5): 114-118.
[25] 徐可君, 陈 华, 江龙平. 应用振型识别叶片裂纹故障初探[J]. 推进技术, 1998, 19(5): 66-69. (XU Ke-jun, CHEN Hua, JIANG Long-ping. Discussion of Distinguish Blade Cracks on Vibration Models[J]. Journal of Propulsion Technology, 1998, 19(5): 66-69.)
[26] Liu W, Barkey M E. Frequency Error-Based Identification of Cracks in Beam-Like Structures[J]. Journal of Mechanical Science and Technology, 2017, 31(10): 4657-4667.
[27] Paris P C, Erdogan F. A Critical Analysis of Crack Propagation Laws [J]. Journal of Basic Engineering, 1963, 85: 528-534.
[28] Tada H, Paris P C, Irwin G R. The Stress Analysis of Cracks Handbook [M]. USA: Research Corporation Hellertown, 1973.
[29] 刘文光, 陈国平. 含裂纹悬臂梁的振动与疲劳耦合分析[J]. 振动与冲击, 2011, 30(5): 140-144.