代表性论文 及著作 | [1]Yinggang Li*,
Wen Xiao, Zeyuan Song, et al. Analytical study on the impact
dynamic responses of foam-core sandwich plates by using membrane
factor method[J]. International
Journal of Impact Engineering,
2025: 105199. (SCI,
JCR Q1, 中科院Q1) [2]
Xunyu Li, Yinggang
Li*,Yong Hu,
et al. Analytical study on the flexural wave band gaps of
arbitrary periodic stiffened plates by using beam-plate coupling
theory[J]. Thin-Walled
Structures,
2025: 112802.(SCI, JCR Q1,中科院Q1) [3]
Tianle Xu, Yinggang
Li*,
Yufeng Gong, et al. Transient vibration reduction and energy
dissipation characteristics of flexible vibration structure
coupling with particle damping[J]. Journal
of Vibration and Control,
2025: 10775463251314237.(SCI, JCR Q2) [4]Dingkang
Chen, Yinggang
Li*,
Ziyang Pan, et al. Low-frequency vibration bandgaps and deep
learning-based intelligent design method of Y-shaped cores
sandwich metabeams[J]. Composite Structures, 2024, 341: 118214.(SCI, JCR Q1, 中科院Q1) [5]
Dingkang Chen,Yinggang
Li*,
Yufeng Gong, et al. Low frequency vibration isolation
characteristics and intelligent design method of hull grillage
metastructures[J]. Marine
Structures,
2024, 94:103572. (SCI,
JCR Q1, 中科院Q1) [6]
Wen Xiao, Yinggang
Li*,
Yong Hu, et al. Analytical study on the dynamic mechanical
behaviours of foam-core sandwich plate under repeated impacts[J].Thin-Walled
Structures,
2024, 196: 111480. (SCI,
JCR Q1, 中科院Q1) [7]Yinggang Li*,
Wen Xiao, Xiong Wu, et al. Analytical study on the dynamic
response of foam-core sandwich plate under wedge impact[J].International
Journal of Impact Engineering,
2023, 173: 104464. (SCI,
JCR Q1, 中科院Q1) [8]
Wen Xiao, Yong Hu, Yinggang
Li*.
Ice impact dynamic response and energy dissipation
characteristics of PVC foam core sandwich plates: Experimental
and numerical study[J]. Marine
Structures,
2023, 89: 103407. (SCI,
JCR Q1, 中科院Q1) [9]Yinggang Li*,
Dingkang Chen, Xiaobin Li, et al. Vibration transmission
characteristic prediction and structure inverse design of
acoustic metamaterial beams based on deep learning[J]. Journal
of Vibration and Control,
2024, 30(3-4): 807–821.(SCI, JCR Q2) [10]Yinggang Li,
Xunyu Li, Jiangming Ding*. Broadband low-frequency flexural wave
attenuation in a beam-type metastructure with double-sides
inertial amplified resonators[J]. Journal
of Vibration and Control,2023, 29(21-22): 4924–4934.(SCI,
JCR Q2) [11]Yinggang Li*,
Xiong Wu, Wen Xiao, et al. Experimental study on the dynamic
behaviour of aluminium honeycomb sandwich panel subjected to ice
wedge impact[J]. Composite
Structures,
2022, 282: 115092. (SCI,
JCR Q1, 中科院Q1) [12]
Xiong Wu, Yinggang
Li*,Wei Cai,
et al. Dynamic responses and energy absorption of sandwich panel
with aluminium honeycomb core under ice wedge impact[J].International
Journal of Impact Engineering,
2022,162: 104137. (SCI,
JCR Q1, 中科院Q1) [13]Huan
Zi, Yinggang
Li*.
Low-frequency broadband vibration attenuation of sandwich
plate-type metastructures with periodic thin-wall tube cores[J].Journal
of Low Frequency Noise, Vibration & Active Control,
2022, 41(1): 330–339. (SCI,
JCR Q2) [14]Dingkang
Chen, Huan Zi, Yinggang
Li*,
et al. Low frequency ship vibration isolation using the band gap
concept of sandwich plate-type elastic metastructures[J]. Ocean
Engineering,
2021, 235: 109460. (SCI,
JCR Q1, 中科院Q1) [15]Yinggang
Li*,
Huan Zi, Xiong Wu, et al. Flexural wave propagation and vibration
isolation characteristics of sandwich plate-type elastic
metamaterials[J]. Journal
of Vibration and Control,
2021, 27(13-14): 1443-1452. (SCI,
JCR Q2) [16]Yu
Zhang, Yinggang
Li*,
Kailing Guo,et al. Dynamic mechanical behaviour and energy
absorption of aluminium honeycomb sandwich panels under repeated
impact loads[J]. Ocean
Engineering,
2021, 219: 108344. (SCI,
JCR Q1, 中科院Q1) [17]Yinggang
Li*,
Qingwen Zhou, Lei Zhou, et al. Flexural wave band gaps and
vibration attenuation characteristics in periodic
bi-directionally orthogonal stiffened plates[J]. Ocean
Engineering,
2019, 178: 95-103. (SCI,
JCR Q1, 中科院Q1) [18]Yinggang
Li*,
Qingwen Zhou, Ling Zhu, et al. Hybrid radial plate-type elastic
metamaterials for lowering and widening acoustic bandgaps[J].International
Journal of Modern Physics B,
2018, 32(26): 1850286. (SCI,
JCR Q3) [19]Yinggang
Li*,
Zhu L, Chen TN. Elastic wave confinement and absorption in a
dissipative metamaterial [J]. Indian
Journal of Pure & Applied Physics,
2018, 56: 158-163. (SCI) [20]Kailing
Guo, Ling Zhu*, Yinggang
Li*,
et al. Experimental investigation on the dynamic behaviour of
aluminum foam sandwich plate under repeated impacts[J]. Composite
Structures,
2018, 200: 298–305. (SCI,
JCR Q1, 中科院Q1) [21]Ling
Zhu, Kailing Guo, Yinggang
Li*,
et al. Experimental study on the dynamic behaviour of aluminium
foam sandwich plates under single and repeated impacts at low
temperature[J]. International
Journal of Impact Engineering,
2018, 114: 123. (SCI,
JCR Q1, 中科院Q1) [22]Yinggang
Li*,
Ling Zhu and TN Chen. Plate-type elastic metamaterials for
low-frequency broadband elastic wave attenuation[J]. Ultrasonics,
2017, 73: 34-42. (SCI,
JCR Q1) [23]Yinggang
Li,
Tianning Chen, Xiaopeng Wang. Non-linear dynamics of gear pair
with dynamic backlash subjected to combined internal and external
periodic excitations[J]. Journal
of Vibration and Control,
2016. 22(6):1693-1703. (SCI,
JCR Q2) [24]Yinggang
Li,
Tianning Chen, Xiaopeng Wang, et al. Enlargement of locally
resonant sonic band gap by using composite plate-type acoustic
metamaterial[J]. Physics
Letters A,
2015, 379(5): 412-416. (SCI,
JCR Q2) [25]Yinggang
Li,
Tianning Chen, Xiaopeng Wang, et al. Band structures in
two-dimensional phononic crystals with periodic Jerusalem cross
slot[J]. Physica
B: Condensed Matter,
2015, 456: 261-266. (SCI,
JCR Q2) [26]Yinggang
Li,
Tianning Chen, Xiaopeng Wang, et al. Lamb wave band gaps in
one-dimensional radial phononic crystal plates with periodic
double-sided corrugations[J]. Physica
B: Condensed Matter,
2015, 476: 82-87. (SCI,
JCR Q2) [27]Yinggang
Li*,
Tianning Chen, Xiaopeng Wang, et al. Lamb wave Band gaps in
one-dimensional radial phononic crystal slabs[J]. International
Journal of Modern Physics B,
2015, 29(3), 1550002. (SCI,
JCR Q3) [28]Yinggang
Li,
Tianning Chen, Xiaopeng Wang, et al. Acoustic confinement and
waveguiding in two-dimensional phononic crystals with material
defect states[J]. Journal
of Applied Physics,
2014, 116(2): 024904. (SCI,
JCR Q2) [29]Yinggang
Li,
Tianning Chen, Xiaopeng Wang, et al. Propagation of Lamb waves in
one-dimensional radial phononic crystal plates with periodic
corrugations[J]. Journal
of Applied Physics,
2014, 115(5): 054907. (SCI,
JCR Q2) [30]Yinggang
Li*,
Tianning Chen, Xiaopeng Wang, et al. Theoretical and numerical
investigation on impact noise radiated by collision of two
cylinders[J]. Journal
of Mechanical Science and Technology,
2014, 28(6): 2017-2024. (SCI,
JCR Q3) [31]肖雯,吴雄,李应刚*,等.浮冰反复碰撞下蜂窝金属夹芯板动态响应实验研究[J].船舶力学,2024,28(07):1090-1099.
(EI) [32]丁莉浩,夏玮,叶帆,李应刚*,刘昆,李晓彬.船用复合材料T型连接结构冲击损伤特性研究[J].中国造船,2024,65(03):27-39.
(EI) [33]胡蜜,李应刚*,龚榆峰,等.弹性元件耦合隔振系统冲击响应特性研究[J].中国舰船研究,1-7. [34]郑智午,李应刚*,李晓彬.水下爆炸冲击波与复合材料层合板的相互作用[J].舰船科学技术,2024,46(17):77-83. [35]沈云龙,李应刚,黄鑫华,王全华*,朱凌,王纬波.复合材料夹芯板反复冲击损伤累积特性实验研究[J].船舶力学,
2023.27(10):1542-1549. (EI) [36]陈鼎康,李欣欣,李应刚,朱凤娜*.局域共振船体板架超结构低频隔振特性研究[J].噪声与振动控制,2023,43(05):221-226. [37]訾欢,李应刚,胡蜜,朱凤娜*,朱凌.周期性舰船夹芯板弯曲波带隙与减振降噪研究[J].中国舰船研究,2023,18(02):81-89. [38]王松,李应刚*,黄鑫华,李晓彬.碳纤维增强复合材料夹芯板的砰击损伤特性[J].高压物理学报,
2023, 37(1): 014203. [39]黄鑫华,李应刚,张永峰等.多次水下爆炸下背空加筋板损伤累积特性研究[J].舰船科学技术,2023,45(19):9-16. [40]吴雄,李应刚*,肖雯,蔡伟,朱凌.浮冰碰撞下蜂窝金属夹芯板动态响应研究[J].振动与冲击,2022,41(16):204-209.
(EI) [41]李应刚*,张雨,朱凌,郭开岭,王纬波.船用蜂窝金属夹芯板重复冲击实验研究[J].船舶力学,2021,25(05):637-644.
(EI) [42]张雨,李应刚*,沈云龙,朱凌,郭开岭.蜂窝金属夹芯板重复冲击动态响应研究[J].振动与冲击,
2021, 40(4): 255-260. (EI) [43]周雷,朱凌,李应刚*,余同希,郭开岭,蔡伟.冰碰载荷下船用泡沫铝夹层板冲击动力响应研究[J].武汉理工大学学报(交通科学与工程版),
2020(2), 44: 293-298. [44]李应刚*,周雷,朱凌,张超,郭开岭.周期性阻振质量船体板弯曲振动带隙研究[J].船舶力学,
2019 (11), 23:1369-1375. (EI) [45]Ling
Zhu, Kailing Guo, Yinggang
Li*,
et al. Experimental Investigation on Dynamic Behavior of Porous
Material Sandwich Plates for Lightweight Ship[J]. Journal
of Ship Mechanics,
2019, 23 (6), 706-718. (EI) [46]郭开岭,朱凌,李应刚*,余同希.船用泡沫铝夹层板在低温下的冲击动态响应研究[J].船舶力学,
2019 (5), 23:591-601. (EI) [47]李应刚,周雷,朱凌,郭开岭.冲击载荷下周期性层状管结构中应力波衰减特性研究[J].振动与冲击,
2019, 38(5): 124-127. (EI) [48]李应刚,陈天宁,王小鹏等.外部动态激励作用下齿轮传动系统非线性动力学特性[J].西安交通大学学报,
2014, 48(1): 101~105.
(EI)《西安交通大学学报》2016年度优秀学术论文,入选中国知网《学术精要数据库》高PCSI论文、高被引论文和高下载论文 |