何小橋博士BEng WHUT, MEng HUST, PhD NUS (S'pore)
Professor
Contact InformationOffice:FW-415
Phone:3442-4760
Email:bcxqhe@cityu.edu.hk
Web:N/A
Research InterestsPeridynamics, Nanomechanics of Carbon nanotubes, Smart Structures, Multistable structures.
Prof. Xiaoqiao He received his B.S. in Solid Mechanics from Wuhan University of Technology, M.S. in Computational Mechanics from Huazhong University of Science and Technology and PhD in Dynamics from National University of Singapore, respectively. His main research areas include nanomechanics of carbon nanotubes, smart structures, computational mechanics, and multiscale modeling of CNT-reinforced composite. Over the past fifteen years, Prof. He's research in these fields has resulted in over 150 SCI journal papers in various top international journals and received a total of more than 5000 citations (excluding self-cited ones) with h-index 42 from Web of Science. The paper 'Buckling analysis of multi-walled carbon nanotubes: a continuum model accounting for van der Waals interaction by He, X.Q., Kitipornchai, S., Liew, K.M., Journal of the Mechanics and Physics of Solids 53, 303-326, 2005' is the top 1% highly influential paper within its field according to Essential Science Indicators (THOMSON ISI). This paper ranks No. 3 in Top 10 Cited articles published in Journal of the Mechanics and Physics of Solids from 2006 to 2010. The explicit formula derived in this paper for describing the van der Waals interaction between layers of multi-walled carbon nanotubes has been applied by more than 50 researchers from USA, Japan, UK, Iran, India, China, etc., in building their mechanics model for the mechanical analysis of carbon nanotubes, such as mechanical properties, vibration, post-buckling, wave propagation, and so on. He has been a principal investigator for seventeen research grants (including seven GRF grants) with a total funding over HK$10 million.
Departmental Duty[available after login]
Course Leader Duty BC2123: Engineering Methods BC2123P: Engineering Methods BC2673: Engineering Mechanics BC3122: Engineering Analysis CA2673: Engineering Mechanics CA3122: Engineering Analysis CA8025: Elasticity CA8026: Plasticity CA8027: Finite Element Analysis
Research InterestsPeridynamics, Nanomechanics of Carbon nanotubes, Smart Structures, Multistable structures.
Selected PublicationsYang D, Dong W, Liu XF, Yi SH and HE XQ (2018),Investigation on mode-I crack propagation in concrete using bond-based peridynamics with a new damage model,Engineering Fracture Mechanics,199: 567-581.Yi SH, HE XQ and Lu J (2018),Bistable metallic materials by nanocrystallization process,Materials & Design,141: 374-383.Cui JL, Zhang J, HE XQ, Yang X, Jiang G, Wang K, Yang L and Xie H (2017),Atomistic simulations on the axial nanowelding configuration and contact behavior between Ag nanowire and single-walled carbon nanotubes,Journal of Nanoparticle Research,19(3): 90Gu Y, Wang L, Chen W, Zhang C and HE XQ (2017),Application of the meshless generalized finite difference method to inverse heat source problems,International Journal of Heat and Mass Transfer,108: 721-729.Huang ZQ and HE XQ (2017),Stress distributions and mechanical properties of laminates [0/90] with closed and open cracks in shear loading,International Journal of Solids and Structures,118: 97-108.Li D, Yang QS and HE XQ (2017),Experimental and cohesive finite element investigation of interfacial behavior of CNT fiber-reinforced composites,Composites: Part A,101: 318-325.Liu X, Yang Q S, LIEW KM and HE XQ (2017), Superstretchability and stability of helical structures of carbon nanotube/polymer composite fibers: Coarse-grained molecular dynamics modeling and simulation,Carbon,115: 220-228.Shi X, HE XQ and Wang LF (2017),Hierarchical-structure induced adjustable deformation of super carbon nanotubes with radial shrinkage up to 66%,Carbon,125: 289-298.Sun LG, HE XQ and Lu J (2016),Super square carbon nanotube network: a new promising water desalination membrane,npj Computational Materials,2: 16004HE XQ, Rafiee M and Mareishi S (2015),Nonlinear dynamics of piezoelectric nanocomposite energy harvesters under parametric resonance,Nonlinear Dynamics,79: 1863-1880.HE XQ, Rafiee M, Mareishi S and LIEW KM (2015),Large amplitude vibration of fractionally damped viscoelastic CNTs/fiber/polymer multiscale composite beams,Composite Structures,131: 1111-1123.Gu Y, Chen W, Zhang CZ and HE XQ (2015),A meshless singular boundary method for three-dimensional inverse heat conduction problems in general anisotropic media,International Journal of Heat and Mass Transfer,84: 91-102.Gu Y, Gao HW, Chen W, Liu CJ, Zhang CZ and HE XQ (2015),Fast-multipole accelerated singular boundary method for large-scale three-dimensional potential problems,International Journal of Heat and Mass Transfer,90: 291-301.Huang ZQ, HE XQ and LIEW KM (2015),A sensitive interval of imperfect interface parameters based on the analysis of general solution for anisotropic matrix containing an elliptic inhomogeneity,International Journal of Solids and Structures,73-74: 67-77.Liu XF, Wang JB, Sun LG, Zhang YY, Tian ML and HE XQ (2015),Investigation on crack propagation in single crystal Ag with temperature dependence,Journal of Materials Research,30(22): 3553-3563.Sun LG, HE XQ and Lu J (2015),Atomistic simulation study on twin orientation and spacing distribution effects on nanotwinned Cu films,Philosophical Magazine,95(31): 3467-3485.Yang ZJ, Yang QS, Liu X, HE XQ and LIEW KM (2015),Detailed investigation on elastoplastic deformation and failure of carbon nanotube fibers by monotonic and cyclic tensile experiments,Carbon,94: 73-78.Guo SJ, Yang QS, HE XQ and LIEW KM (2014),Modeling of interface cracking in copper-graphite composites by MD and CFE method,Composites Part B: Engineering,58: 586-592.Huang ZQ, Zhou JC, HE XQ and LIEW KM (2014),Variational analysis for angle-ply laminates with matrix cracks,International Journal of Solids and Structures,51: 3669-3678.Mareishi S, Rafiee M, HE XQ and LIEW KM (2014),Nonlinear free vibration, postbuckling and nonlinear static deflection of piezoelectric fiber-reinforced laminated composite beams,Composites Part B: Engineering,59: 123-132.Rafiee M, HE XQ and LIEW KM (2014),Nonlinear analysis of piezoelectric nanocomposite energy harvesting plates,Smart Materials & Structures,23: 065001Rafiee M, Liu XF, HE XQ and Kitipornchai S (2014),Geometrically nonlinear free vibration of shear deformable piezoelectric carbon nanotube/fiber/polymer multiscale laminated composite plates,Journal of Sound and Vibration,333: 3236-3251.Sun LG, HE XQ, Wang JB and Lu J (2014),Deformation and failure mechanisms of nanotwinned copper films with a pre-existing crack,Materials Science and Engineering: A,606: 334-345.Sun LG, HE XQ, Zhu LL and Lu J (2014),Two softening stages in nanotwinned Cu,Philosophical Magazine,94(35): 4037-4052.Zhang Z, Wu HP, Ye GF, Wu HL, HE XQ and Chai GZ (2014),Systematic experimental and numerical study of bistable snap processes for anti-symmetric cylindrical shells,Composite Structures,112: 368-377.Zhang Z, Wu HL, HE XQ, Wu HP, Bao YM and Chai GZ (2013),The bistable behaviors of carbon-fiber/epoxy anti-symmetric composite shells,Composites Part B: Engineering,47: 190-199.HE XQ, Li L, Kitipornchai S, Wang CM and Zhu HP (2012),Bi-stable analyses of laminated FGM shells,International Journal of Structural Stability and Dynamics,12(2): 311-325.HE XQ, Wang JB, Liu B and LIEW KM (2012),Analysis of nonlinear forced vibration of multi-layered graphene sheets,Computational Materials Science,61: 194-199.Gu Y, Chen W and HE XQ (2012),Singular boundary method for steady-state heat conduction in three dimensional general anisotropic media,International Journal of Heat and Mass Transfer,55(17-18): 4837-4848.Hu YG, Liew KM, HE XQ, Li ZL and Han J (2012),Free transverse vibration of single-walled carbon nanocones,Carbon,50(12): 4418-4423.Huang XH and HE XQ (2012),Fracture analysis of carbon nanotubes in the context of an atomic-based cellular automata algorithm,Computational Materials Science,65: 85-90.Yang QS, HE XQ, Liu X, Leng FF and Mai YW (2012),The effective properties and local aggregation effect of CNT/SMP composites,Composites Part B: Engineering,43: 33-38.Liu X, Yang QS, HE XQ and Mai YW (2011),Molecular mechanics modeling of deformation and failure of super carbon nanotube networks,Nanotechnology,22(47): 475701HE XQ, Kitipornchai S, Wang CM, Xiang Y and Zhou Q (2010),A nonlinear Van Der Waals force model for multi-walled carbon nanotubes modeled by a nested system of cylindrical shells,Journal of Applied Mechanics-Transactions of the ASME,77: 061006Wang LF and HE XQ (2010),Vibration of a Multi-layered Graphene Sheet with Initial Stress,Journal of Nanotechnology in Engineering and Medicine (ASME),1(4): 041004HE XQ, Kuang YD, Chen CY and Li GQ (2009),Enhanced mechanical properties of single-walled carbon nanotubes due to chemical functionalization,J. Phys.: Condens. Matter,21: 215301HE XQ and Huang XH (2009),On the use of cellular automata algorithm for the atomic-based simulation of carbon nanotubes,PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES,465(2101): 193-206.Kuang YD and HE XQ (2009),Young’s moduli of functionalized single-wall carbon nanotubes under tensile loading, Composite Science and Technology,69(2): 169-175.Kuang YD, HE XQ, Chen CY and Li GQ (2009),Buckling of functionalized single-walled nanotubes under axial compression,Carbon,47(1): 279-285.Yan Y, HE XQ, Zhang LX and Wang CM (2009),Dynamic behavior of triple-walled carbon nanotubes conveying fluid,Journal of Sound and Vibration,319(3-5): 1003-1018.HE XQ, Qu C and Qin QH (2008),A Theoretical Model for Surface Bone Remodeling under Electromagnetic Loads,Archive of Applied Mechanics,78(3): 163-175.HE XQ, Wang CM, Yan Y, Zhang LX and Nie GH (2008),Pressure dependence of instability of multi-walled carbon nanotubes conveying fluid,ARCHIVE OF APPLIED MECHANICS,78(8): 637-648.Hu YG, LIEW KM, Wang Q, HE XQ and Yakobson BI (2008),Nonlocal shell model for elastic wave propagation in single- and double-walled carbon nanotubes,Journal of the Mechanics and Physics of Solids,56: 3475-3485.HE XQ, Qu C and Qin QH (2007),Buckling and Post-buckling analysis of multi-walled carbon nanotubes based on the continuum shell model,International Journal of Structural Stability and Dynamics ,7(4): 629-645.HE XQ, Wang JS and Qin QH (2007),Saint-Venant decay analysis of FGPM laminates and dissimilar piezoelectric laminates,Mechanics of Materials,39(12): 1053-1065.Wang CM, Zhang YY and HE XQ (2007),Vibration of nonlocal of Timoshenko beams,Nanotechnology,18: 105401Yan Y, HE XQ, Zhang LX and Wang Q (2007),Flow-induced instability of double-walled carbon nanotubes based on an elastic shell model,Journal of Applied Physics,102: 044307HE XQ, Eisenberger M and Liew KM (2006),The effect of Van der Waals interaction modeling on the vibration characteristics of multi-walled carbon nanotubes,Journal of Applied Physics,DEC 15 , 100(12): 124317LIEW KM, HE XQ and Kitipornchai S (2006),Predicting nanovibration of multi-layered graphene sheets embedded in an elastic matrix,Acta materialia,54: 4229-4236.HE XQ, KITIPORNCHAI S and LIEW KM (2005),Buckling analysis of multi-walled carbon nanotubes: a continuum model accounting for van der Waals interaction,Journal of the Mechanics and Physics of Solids,53(2): 303-326.HE XQ, Kitipornchai S and LIEW KM (2005),Resonance analysis of multi-layered graphene sheets as nanoscale resonators,Nanotechnology,16: 2086-2091.HE XQ, KITIPORNCHAI S, WANG CM and LIEW KM (2005),Modeling of van der Waals force for infinitesimal deformation of multi-walled carbon nanotubes treated as cylindrical shells,International Journal of Solids and Structures,42: 6032-6047.KITIPORNCHAI S, HE XQ and LIEW KM (2005),Buckling analysis of triple-walled carbon nanotubes embedded in an elastic matrix,Journal of Applied Physics,97: 114318Kitipornchai S, HE XQ and LIEW KM (2005),Continuum model for the vibration of multi layered graphene sheets,Physical Review B,72(7): 075443LIEW KM, HE XQ and Kitipornchai S (2005),Buckling characteristics of embedded multi-walled carbon nanotubes,PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES,461(2064): 3785-3805.LIEW KM, WONG CH, HE XQ, TAN MJ and MEGUID SA (2005),Nanomechanics of single and multi-walled carbon nanotubes,Physical Review B,69: 115429LIEW KM, HE XQ and KITIPORNCHAI S (2004),Finite Element Method for the Feedback Control of FGM Shells in the Frequency Domain via Piezoelectric Sensors and Actuators,Computer Methods in Applied Mechanics and Engineering,January, 193(3-5): 257-273.LIEW KM, HE XQ and Ray T (2004),On the use of computational intelligence in the optimal shape control of functionally graded smart plates,Comput. Methods Appl. Mech. Engrg.,193: 4475-4492.LIEW KM, HE XQ, Tan MJ and Lim HK (2004),Dynamic analyses of laminated composite plates with piezoelectric sensor/actuator patches using the FSDT mesh-free method,International Journal of Mechanical Sciences,46: 411-431.LIEW KM, HE XQ and WONG CH (2004),On the study of elastic and plastic properties of multi-walled carbon nanotubes under axial tension using molecular dynamics simulation,Acta Materialia,52: 2521-2527.LIEW KM, HE XQ, NG TY and KITIPORNCHAI S (2003),Finite Element Piezothermoelasticity Analysis and the Active Control of FGM Plates with Integrated Piezoelectric Sensors and Actuators,Computational Mechanics,July, 31(3-4): 350-358.HE XQ, LIEW KM, Ng TY and Sivashanker S (2002),A FEM model for the active control of curved FGM shells using piezoelectric sensor/actuator layers,International Journal for Numerical Methods in Engineering,54: 853-870.LIEW KM, HE XQ, Ng TY and Kitipornchai S (2002),Active control of FGM shells subjected to a temperature gradient via piezoelectric sensor/actuator patches,International Journal for Numerical Methods in Engineering,55: 653-668.HE XQ, Ng TY, Sivashanker S and LIEW KM (2001),Active control of FGM plates with integrated piezoelectric sensors and actuators,International Journal of Solids and Structures,38: 1641-1655.LIEW KM, HE XQ, Ng TY and Sivashanker S (2001),Active Control of FGM plates subjected to a temperature gradient: Modelling via finite element method based on FSDT,International Journal for Numerical Methods in Engineering,Dec, 52(11): 1253-1271.
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