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功能梯度壓電懸臂梁的彎曲問(wèn)題畢業(yè)論文(文件)

 

【正文】 s, 20xx, 44 (5): 967985 [28]Najafizadeh M. M., Heydari H. R. Thermal buckling of functionally graded circular plates based on higher order shear deformation plate theory. European Journal of Mechanics ASolids, 20xx, 23 (6): 10851100 [29]Najafizadeh M. M., Heydari H. R. An exact solution for buckling of functionally graded circular plates based on higher order shear deformation plate theory under uniform radial pression. International Journal of Mechanical Sciences, 20xx, 50(3): 603612 [30]Shen HuiShen. Postbuckling of FGM plates with piezoelectric actuators under thermoelectromechanical loadings. International Journal of Solids and Structures, 20xx, 42(23): 61016121 [31]Shen HuiShen. Thermal postbuckling behavior of shear deformable FGM plate with temperaturedependent properties. International Journal of Mechanical Sciences, 20xx, 49(4): 466478 [32]Shen HuiShen. Nonlinear thermal bending response of FGM plates due to heat conduction. Composites Part B: Engineering, 20xx, 38(2): 201215 [33]Shen HuiShen, Li ShiRong. Postbuckling of sandwish plates with FGM face sheets and temperaturedependent properties. Composites Part B: Engineering, 20xx, 39(2): 332344 [34]Woo J., Meguid S. A. Nonlinear analysis of functionally graded plates and shallow shells. International Journal of Solids and Structures, 20xx, 38 (4243): 74097421 [35]Woo J., Meguid S. A. Thermomechanical postbuckling analysis of moderately thick functionally graded plates and shallow shells. International Journal of Mechanical Sciences, 20xx, 47(8): 11471171 [36]Yang J., Kitipornchai S., Liew K. M. Large amplitude vibration of 畢業(yè)論文 第 28 頁(yè) 共 35 頁(yè) thermoelectromechanically stressed FGM laminated plates. Computer Methods in Applied Mechanics and Engineering, 20xx, 192(3536): 38613885 [37]Qian L. F., Batra R. C., Chen L. M. Static and dynamic deformations of thick functionally graded elastic plates by using higherorder shear and normal deformable plate theory and meshless local PetrovGalerkin method. Composites Part B: Engineering, 20xx, 35(68): 685697 [38]Loy C. T., Lam K. Y, Reddy J. N. Vibration of functionally graded cylindrical shells. International Journal of Mechanical Sciences , 1999, 41 (3): 309324 [39]Ng T. Y., Lam K. Y., Liew K. M., et al. Dynamic stability analysis of functionally graded cylindrical shells under periodic axial loading. International Journal of Solids and Structures , 20xx, 38 (8): 12951309 [40]Wu X. H., Chen C. Q., Shen Y. P., et al. A high order theory for functionally graded piezoelectric shells. International Journal of Solids and Structures, 20xx, 39 (20): 53255344 [41]Shen H. S. Thermal postbuckling behavior of functionally graded cylindrical shells with temperaturedependent properties. International Journal of Solids and Structures, 20xx, 41 (7): 19611974 [42]Sofiyev A. H. Dynamic buckling of functionally graded cylindrical thin shells under nonperiodic impulsive loading. ACTA Mechanica, 20xx, 165 (34): 151163 [43]Shen H. S. Postbuckling analysis of axially, loaded functionally graded cylindrical panels in thermal environments. International Journal of Solids and Structures, 20xx, 39 (24): 59916010 [44]Yang J., Kitipornchai S., Liew K. M. Nonlinear analysis of the thermoelectro mechanical behaviour of shear deformable FGM plates with piezoelectric actuators. International Journal for Numerical Methods in Engineering, 20xx, 59 (12): 16051632 [45]Chen W. Q., Bian Z. G., Lv C. F., Ding H. J. 3D free vibration analysis of a functionally graded piezoelectric hollow cylinder filled with pressible fluid. International Journal of Solids and Structures, 20xx, 41(34): 947–964 [46]Sankar . An elasticity solution for functionally graded beams. Composites Science 畢業(yè)論文 第 29 頁(yè) 共 35 頁(yè) and Technology, 20xx, 61(5): 689696 [47]Sankar, ., Taeng J. T. Thermal stresses in functionally graded beams. AIAA Journal, 20xx, 40(6): 12281232 [48]Venkataraman S., Sankar B. V. Analysis of Sandwich Beams with Functionally Graded Core, AIAA, 20xx, 1: 752759 [49]Venkataraman S., Sankar B. V. Elasticity solution for stresses in a sandwich beam with functionally graded core . AIAA Journal , 20xx, 41(12): 25012505 [50]Zhu H., Sankar B. V. A bined Fourier seriesGalerkin method for the analysis of functionally graded beams. Journal of Applied Mechanics, ASME, 20xx, 71(3): 421424 [51]Shi Z. F. General solution of a density functionally gradient piezoelectric cantilever and its applications. Smart Material and Structures, 20xx, 11(1): 122129 [52]Shi Z. F., Chen Y. Functionally graded piezoelectric cantilever beam under load. Archive of Applied Mechanics, 20xx, 74(34): 237–247 畢業(yè)論文 第 30 頁(yè) 共 35 頁(yè) 附 錄 由邊界條件 (
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