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传感器、促动器、薄膜材料和智能结构

作者: 访问量:87时间:2021-04-04

  1. Lu, T.J., Hutchinson, J.W. & Evans, A.G., “Optimal design of a flexural actuator”, J. Mech. Phys. Solids(The Hutchinson-Rice 60th Birthday Memorial Issue) 49, 2071-2093, 2001.

  2. Lu, T.J. & Evans, A.G., “Design of a high authority flexural actuator using an electrostrictive polymer”, Sensors and Actuators A 99, 290-296, 2002.

  3. Lu, T.J., Moore, D.F. & Chia, M.H., “Mechanics of micromechanical clips for optical fibers”, J. Micromech. Microeng 12,168-176, 2002.

  4.  Han, L.H. & Lu, T.J., “Modeling and optimal design of multilayer cantilever microactuators”, MRS Proceedings 795, 473-478, 2004.

  5.  Han, L.H., Lu, T.J. & Evans, A.G., "Minimum weight design of a high authority flexural actuator based on electro-elastomers", Smart Mater. Struc.13, 1211-1221, 2004.

  6.  Han, L.H., Lu, T.J. & Evans, A.G., "Optimal design of a novel high authority SMA actuator”, Mech. Adv. Mater. Struc.12, 217-227, 2005.

  7.  Bell, D.J., Lu, T.J., Fleck, N.A. & Spearing, S.M., “MEMS actuators and sensors: observations on their performance and selection for purpose”, J. Micromech. Microeng.15, 153-164, 2005.

  8.  Fu, L., Lu, T.J. & Huber, J., "Database and selection method for power sources", Advanced Engineering Materials7, 101-117, 2005.

  9.  Fu, L., J.K. Luo& T.J. Lu,, “Design and fabrication of a micro zinc/air battery”, J. Physics 34, 2006, 800-805.

  10.  McShane, G.J., Boutchich, M., Phani, S., Moore, D.F. & Lu, T.J., “Young’s modulus measurement of thin film materials using micro-cantilevers”, J. Micromech. Microeng. 16, 2006, 1926-1934.

  11.  McShane, G.J., Boutchich, M., Phani, S., Moore, D.F. & Lu, T.J., “Micro-cantilevers for thin films: Young’s modulus”, Solid Mech and its Applications 144, 2006, 71-86.

  12.  Han, L.H. & Lu, T.J., “3D finite element simulation for shape memory alloys”, Solid Mechanics and its Applications, 127, 227-236, 2006

  13.  Tian, X.G., Jin, Z., Shen, Y.P. & Lu, T.J., “Finite element method for generalized piezothermoelastic problems”, Int. J. Solids Struc.44, 2007, 6330-6339.

  14. 解社娟,张东利,陈振茂,徐明龙,卢天健,“泡沫金属直流电位检测数值模拟方法研究”,《南昌航空大学学报》,Vol.21,188-193, 2007.

  15. 张东利,陈振茂,徐明龙,卢天健,“超轻夹层栅格材料涡流检测中多频演算法的有效性研究”,《南昌航空大学学报》,Vol.21,267-271, 2007.

  16.  Fu, L.,卢天健, Luo, J.K., “一种微型锌/空气电池的开发”,《西安交通大学学报》,42(7), 791-794, 2008

  17. 许巍,卢天健,“柔性电子系统及其力学性能”,《力学进展》38(2), 137-150, 2008

  18. 张东利,陈振茂,徐明龙,卢天健, “涡流检测超轻夹层栅格材料的有效性,《无损检测》, 30(7),407-411, 2008

  19.  Qian, Z.H., Jin, F., Kishimoto, K. & Lu, T.J., “Scattering of elastic P-waves by a transversely isotropic piezoelectric cylinder embedded in a polymer matrix”, Smart Mater. Struc.17(4): 045019, 2008.

  20.  Wang, L., Chen, Z.M., Lu, T.J., Xu, M.L., Yusa N. & Miya M., “Sizing of long stress corrosion crack from 2d ect signals by using a multisegment inverse analysis strategy”, Int. J. Appl. Electromagn. Mech.28(1-2), 155-161, 2008.

  21.  Qian, Z.H., Jin, F., Lu, T.J. & Kishmoto, K., “Transverse surface waves in functionally graded piezoelectric materials with exponential variation”, Smart Mater. Struc.17, 065005, 2008.

  22.  Wang, J.H., Chen, C. & Lu, T.J., “Indentation responses of piezoelectric films”, J. Mech. Phys. Solids 56(12), 2008, 3331-3351.

  23.  Qian, Z.H., Jin, F., Lu, T.J. & Kishmoto, K., “Transverse surface waves in a functionally graded piezoelectric substrate coated with a finite-thickness metal waveguide layer”, Appl. Phys. Lett.94(3), 2009, 019903.

  24.  Qian, Z.H., Jin, F., Lu, T.J. & Kishmoto, K., “Transverse surface waves in a 6mm piezoelectric material carrying a prestressed metal layer of finite-thickness”, Appl. Phys. Lett.94(9), 2009, 093513.

  25.  Qian, Z.H., Jin, F., Hirose, S. & Lu, T.J., “Effects of material gradient on transverse surface waves in piezoelectric coupled solid media”, Appl. Phys. Lett.95(7), 2009, 073501.

  26.  Qian, Z.H., Jin, F., Lu, T.J. & Kishmoto, K., “Transverse surface waves in a layered structure with a functionally graded piezoelectric substrate and a hard dielectric layer”, Ultrasonics 49(3), 293-297, 2009.

  27.  Qian, Z.H., Jin, F., Kishmoto, K. & Lu, T.J. , “Propagation behavior of Love waves in a functionally graded half-space with initial stress”, Int. J. Solids Struc. 46 (6), 1354-1361, 2009.

  28.  Zhang, D., Chen, Z.M., Xu, M. & Lu, T.J., “Quantitative NDE of cellular metallic material and structures by using eddy current testing technique”, Int. J. Appl. Electromagn. Mech.30(1-2), 29-38, 2009.  

  29.  Cao, X.S., Jin, F., Wang, Z.K. &Lu, T.J., “Bleustein-Gulyaev waves in a functionally graded piezoelectric material (FGPM) layered structure”, Sci. in China G52(4), 613-625, 2009.

  30.  Qian, Z.H., Jin, F., Lu, T.J. & Kishimoto, K., “Transverse surface waves in an FGM layered structure”, Acta Mechanica207(3-4), 183-193, 2009.

  31.  Qian, Z.H., Jin, F., Lu, T.J. & S. Hirose, “Transverse surface waves in a piezoelectric material carrying a gradient metal layer of finite thickness”,”, Int. J. Eng. Sci., 47(10), 1049-1054, 2009.

  32.  Cao, X. S, Jin, F., Jeon, I. & Lu, T.J., “Propagation of Love waves in a functionally graded piezoelectric material (FGPM) layered composite system”, Int. J. Solids Struc.46(22-23), 4123-4132, 2009.

  33. 卢天健,符良, “轻便电源的选择方法”,《力学与实践》,31(1): 8-15, 2009.

  34. 曹小杉,金峰,王子昆,卢天健,“功能梯度压电层状结构中的B-G波”,《中国科学G39(1), 17-27, 2009

  35.  Qian, Z.H., Jin, F., Lu, T.J., Kishmoto, K. & Hirose, S., “Effect of initial stress on Love waves in a piezoelectric structure carrying a functionally graded material layer”, Ultrasonics50(1), 84-90, 2010.

  36.  Xu, W., Lu, T.J. & Wang, F., “Effects of interfacial properties on the ductility of polymer-supported metal films for flexible electronics”, Int. J. Solids Struc. 47, 1830-1837, 2010.

  37.  Yang, J.S., Xu, W., Wang, F. & Lu, T.J., “Ductility of copper films on sandblasting polyimide substrates”,Sci. in China E, 53(8), 2215-2221, 2010.

  38.  Zhang, D., Chen, Z.M., Xu, M. & Lu, T.J., “Quantitative NDE of welding defects in lattice sandwich metallic plate by using DC potential drop method”, Int. J. Appl. Electromagn. Mech.33(3-4), 1109-1117, 2010.  

  39.  Feng, B., Xu, M., Zhang, Z.J., Lu, T.J. & Chen, Z.M., “Design and calibration of a new biaxial extensometer for radial deformation measurement under hydro-compression loading”, Int. J. Appl. Electromagn. Mech.33(3-4), 1441-1448, 2010.  

  40.  Feng, B., Xu, M., Zhao, T.F., Zhang, Z.J. & Lu, T.J., “Triaxial extensometer for volumetric strain measurement in a hydrocompression loading test for foam materials”, Measurement Science and Technology21(11), 115705, 2010.  

  41.  Xu, W., Yang, J.S. & Lu, T.J., “Ductility of thin copper films on rough polymer substrates”, Mater. Design32(1), 154-161, 2011.

  42. 许巍,杨金水,王飞,卢天健,“含曲线型膜基界面的高分子基金属薄膜延展性能”,《固体力学学报》,32 (1): 1-9, 2011.

  43.  Duan, Y.F., Tang, G., Chen, C.Q., Lu, T.J. & Wu, Z.G., “First-principles investigations of ferroelectricity and piezoelectricity in BaTiO3/PbTiO3 superlattice”,Phys. Rev. B85(5), 054108, 2012.

  44.  Li, P., Jin, F. & Lu, T.J., “A three-layer structure model for the effect of a soft middle layer on Love waves propagating in layered piezoelectric systems”, Acta Mech. Sinica(Invited Contribution, Special Issue for 55th Anniversary) 28(4), 1087-1097, 2012.  

  45.  Liu, M., Li, S.D., Zhou, Z.Y., Lou, J., Xu, F., Lu, T.J. & Sun, N.X., “Electrically induced enormous magnetic anisotropy in Terfenol-D/PZNPT multiferroic heterostructures”,J. Appl. Phys. 112, 063917, 2012.

  46.  Liu, H., Li, M., Liu, S., Jia, P., Guo, X., Feng, S.,Lu, T.J., Yang, H., Li, F. & Xu, F., “Spatially modulated stiffness on hydrogels for soft and stretchable integrated electronics”, Mater. Horiz. 7, 203-213, 2019.




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