ZHAN Yu, LIN Zhong-ya, LIU Chang-sheng. Experiment and Finite Element Simulation for Laser Ultrasonic Measurement of the Elastic Constants of Metal Materials[J]. Journal of Northeastern University Natural Science, 2018, 39(9): 1363-1368.
[1]Radovic M,Lara-Curzo L,Riester L.Comparison of different experimental techniques for determination of elastic properties of solids [J].Materials Science and Engineering:A,2004,368(1/2):56-70. [2]Bamber M J,Cooke K E,Mann A B,et al.Accurate determination of Young’s modulus and Poisson’s ratio of thin films by a combination of acoustic microscopy and nano-indentation [J].Thin Solid Films,2000,398/399:299-305. [3]Comte C,Von S J.Microprobe-type measurement of Young’s modulus and Poisson coefficient by means of depth sensing indentation and acoustic microscopy[J].Surface and Coatings Technology,2002,154(1):42-48. [4]Kim K Y,Scribar R,Saches W.Analytical and optimization for determination of all elastic constants of anisotropic solids from group velocity data measured in symmetry plans [J].Journal of Applied Physics,1995,77(11):5589-5600. [5]Schneider W C,Burton C J.Determination of the elastic constants of solids by ultrasonic methods [J].Journal of Applied Physics,1949,20(1):48-58. [6]何存富,周辛庚,戴福隆.一种非接触式测定材料弹性常数的新方法[J].力学学报,1997,29(6):720-725.(He Cun-fu,Zhou Xin-geng,Dai Fu-long.A new non-contact method for measuring the elastic constants of materials [J].Chinese Journal of Theoretical and Applied Mechanics,1997,29(6):720-725.) [7]施德恒,陈玉科,孙金峰,等.激光超声技术及其在无损检测中的应用概况[J].激光杂志,2004,25(5):1-4.(Shi De-heng,Chen Yu-ke,Sun Jin-feng,et al.A review on laser ultrasonic technique and its applications in non-destructive testing [J]. Laser Journal,2004,25(5):1-4.) [8]董利明,倪辰荫,沈中华,等.基于激光激发多模态超声波速测量的材料弹性常数测定[J].中国激光,2011,38(4):209-214.(Dong Li-ming,Ni Chen-yin,Shen Zhong-hua,et al.Determination of elastic constants of materials based on the velocity measurement of laser-generated multi-mode ultrasound [J].Chinese Journal of Lasers,2011,38(4):209-214.) [9]Lowe M J S,Alleyne D N,Cawley P.Defect detection in pipes using guided waves [J].Ultrasonics, 1998,36(1):147-154. [10]Sun G K,Zheng Z G.Non-contact detection of delamination in layered anisotropic composite materials with ultrasonic waves generated and detected by lasers [J].International Journal for Light and Electron Optics,2016,127 (16):6424-6433. [11]潘永东,钱梦騄,徐卫疆,等.激光超声检测铝合金材料的残余应力分布[J].声学学报,2004,29(3):254-257.(Pan Yong-dong,Qian Meng-lu,Xu Wei-jiang,et al.Residual stress profiling of an aluminum alloy by laser ultrasonic [J].Acta Acustica,2004,29(3):254-257.) [12]Sanderson R M,Shen Y C.Measurement of residual stress using laser-generated ultrasound [J].International Journal of Pressure Vessels and Piping,2010,87(12):762-765. [13]Bresse L F,Hutchins D A,Lundgren K.Elastic constant determination using generation by pulsed lasers [J].The Journal of the Acoustical Society of America,1988,84(5):1751-1757. [14]Scruby C B,Moss B C.Non-contact ultrasonic measurements on steel at elevated temperature [J].NDT& E International,1993,26(4):177-188. [15]Markham M F.Measurement of elastic constants by the ultrasonic pulse method [J].British Journal of Applied Physics,1957,8(sup 6):35-40. [16]Arias I,Achenbach J D.Thermoelastic generation of ultrasound by line focused laser irradiation[J].International Journal of Solids and Structures,2003,40(25):6917-6935. [17]Mi B,Ume I C.Parametric studies of laser generated ultrasonic signal in ablative regime:time and frequency domains [J].Journal of Nondestructive Evaluation,2002,21(1):23-33. [18]Achenbach J D.The thermos elasticity of laser-based ultrasonics [J].Journal of Thermal Stresses,2005,28(6):713-727.(上接第1362页)源损耗的敏感性.研究表明,心理资本能够调节组织公平感在强制性公民行为与员工工作倦怠之间的中介作用,即心理资本水平高的个体能够更好地应对工作倦怠等消极状态,使组织的调整措施事半功倍.心理资本往往不是天生的,而是通过后天的培养得以提升的,因此组织应有针对性地对员工的心理资本进行培养,如根据员工的特点有针对性地制定心理资本培训和干预计划,在公司内部设立积极的反馈制度等.