[1] WQ DU, TL YANG, LL LU*, et al. A thermal load identification method based on physics-guided neural network for honeycomb sandwich structures. Smart Materials and Structures 2023. (IF: 3.59 Q1)
[2] LL LU, J Lai*, Yang SH, et al. Dynamic characteristics of tube bundles with crack subjected to cross-flow and loose support. Annals of Nuclear Energy 2022. 166: 108802. (IF: 1.77 Q2)
[3] LL LU, L JIANG, SH YANG, HW SONG, L SUN. Damage identification of tube bundles with crack subjected to cross-flow and loose support. Mechanical Systems and Signal Processing, 2022, 164, 108293. (IF: 6.823 Q1).
[4] LL LU, YB WANG, JQ BI, CHENG LIU, HW SONG, CG HUANG. Internal damage identification of sandwich panels with truss core through dynamic properties and deep learning. Frontiers in Materials, 2020. Accepted. (IF: 3.515 Q2).
[5] LL LU, J LE, HW SONG*, YB WANG, CG HUANG. Damage detection of sandwich panels with truss core based on time domain dynamic responses. Composite structures, 2019. 211: 443-454. (IF: 5.407 Q1)
[6] J LE, LL LU*, YB WANG, HW SONG, XD XING, CG HUANG. Damage identification of low-density material filled sandwich panels with truss core based on dynamic properties. Structural Health Monitoring: an international journal, 2019, 18 (5-6): 171-1721. (IF: 5.929 Q1)
[7] LL LU, HW SONG, YW WANG*, CG HUANG. Deformation behavior of non-rigid airships in wind tunnel tests. Chinese Journal of Aeronautics 2019. 32(3): 611-618. (IF: 2.769 Q1)
[8] LL LU, HW SONG*, CG HUANG. Experimental investigation of unbound nodes identification for metallic sandwich panels with truss core, Composite structures, 2017, 163:248-256. (IF: 5.407 Q1)
[9] LL LU, HW SONG*, CG HUANG. Effects of random damages on dynamic behavior of metallic sandwich panel with truss core, Composites Part B, 2017, 116:278-290. (IF: 9.078 Q1)
[10] LL LU, HW SONG*, W YUAN, CG HUANG. Baseline-free damage identification of metallic sandwich panels with truss core based on vibration characteristics, Structural Health Monitoring: an international journal, 2017, 16(1):24-38. (IF: 5.929 Q1)
[11] LL LU, X WANG, LJ LIAO, YP WEI, CG HUANG, YC LIU. Application of model reduction technique and structural subsection technique on optimal sensor placement of truss structures, Smart Structures and Systems, 2015, 15(2): 355-373. (IF: 3.557 Q2)
[12] C LIU, YT ZHUANG, A NASROLLAHI, LL LU, MF HAIDER, FK CHANG. Static Tactile sensing for a robotic electronic skin via an electromechanical impedance-based approach. Sensors, 2020. 20: 2830. (IF: 3.275 Q1).
[13] W YUAN, HW SONG, LL LU, CG HUANG, Effect of local damages on the buckling behavior of pyramidal truss core sandwich panels. Composite Structures 2016. 149: 271-278. (IF: 5.407 Q1)
[14] XC WU, YW WANG, CG HUANG, YB LIU, LL LU. Experiment and numerical simulation on the characteristics offluid-structure interactions of non-rigid airships. Theoretical and applied mechanics letters 2015. 5(6): 258-261.
[15] Z YANG, H YAN, CG HUANG, XZ DIAO, XQ WU, SH WANG, LL LU. Experimental and numerical study of circular, stainless thin tube energy absorber under axial impact by a control rod. Thin-walled structures 2014. 82: 24-32.