Page 16 - 机械工程材料2024年第十一期
P. 16

姜丽云,等:工程领域负刚度超材料的研究进展


                [38] 宋波,张磊,王晓波,等. 面向航空航天的增材制造超                       105253.

                   材料的研究现状及发展趋势[J]. 航空制造技术,2022,                  [46] 赵春风,王胤植,楚凡,等. 十字形梯度地震超材料带

                   65(14):22-33.                                     隙特性与隔震性能研究[J/OL]. 工程力学. [2023-
                   SONG  B,ZHANG  L,WANG  X  B,et  al.  Research     12-20].  http://kns.cnki.net/kcms/detail/11.2595.
                   status and development trend of additive manufacturing   O3.20230831.1556.002.html.
                   metamaterials  toward  aerospace[J]. Aeronautical       ZHAO C F,WANG Y Z,CHU F,et al. Research on
                   Manufacturing Technology,2022,65(14):22-33.       the  isolation  performance  of  cruciform  gradient  seismic
                [39] 廖文和,戴宁. 航空航天结构轻量化设计制造技术发展                       metamaterial[J/OL]. Engineering  Mechanics. [2023-

                   现状与挑战[J]. 南京航空航天大学学报,2023,55(3):                  12-20]. http://kns.cnki.net/kcms/detail/11.2595.
                   347-360.                                          O3.20230831.1556.002.html.

                   LIAO  W  H,DAI  N.  Development  and  challenge  of     [47] LI  L  X,LI  Y,LIU  H  X.  Ultra-low  frequency  ultra-
                   lightweight  design  and  manufacturing  technology  for   wideband  vibration  attenuation  characteristics  of  radial
                   aerospace structures[J]. Journal of Nanjing University of   gradient supercell seismic metamaterials[J/OL]. Journal
                   Aeronautics & Astronautics,2023,55(3):347-360.    of  Measurement  Science  and  Instrumentation. [2024-
                [40] 周亦人,沈自才,齐振一,等. 中国航天科技发展对高                       01-26]. http://kns.cnki.net/kcms/detail/14.1357.

                   性能材料的需求[J]. 材料工程,2021,49(11):41-50.               TH.20240126.1127.004.html.
                   ZHOU  Y  R,SHEN  Z  C,QI  Z  Y,et  al.  Demand  for     [48] ZHU S W,WANG J Z,CHEN L M,et al. Negative

                   high  performance  materials  in  development  of  China's   stiffness metamaterial with directional stability in uniform
                   aerospace  science  and  technology[J]. Journal  of   fields[J]. Thin-Walled Structures,2024,194:111302.
                   Materials Engineering,2021,49(11):41-50.       [49] 程基彬,戴宁,郭培,等. 基于力学超材料的柔性机械

                [41] 熊继源,戴宁,叶世伟,等. 力学超材料柔性后缘设计                       臂设计技术[J]. 中国机械工程,2023,34(16):1900-

                   技术[J]. 航空科学技术,2022,33(12):81-87.                  1906.
                   XIONG J Y,DAI N,YE S W,et al. Design techniques       CHENG J B,DAI N,GUO P,et al. Design techniques
                   for  flexible  trailing  edges  of  mechanical  metamaterials   of soft robot arms based on mechanics metamaterials[J].
                  [J]. Aeronautical Science & Technology,2022,33(12):  China  Mechanical  Engineering,2023,34(16):1900-
                   81-87.                                            1906.
                [42] 胡建星,刘兴华,王永滨,等. 压扭超材料填充柱壳撞                    [50] 赵哲,杨来侠,吴玲玲,等. 一种基于机器学习的零刚


                   击固壁的动态力学行为研究[J]. 航天返回与遥感,                         度隔振超材料设计及性能验证[J]. 复合材料学报,
                   2023,44(5):20-28.                                 2024,41(5):2599-2608.
                   HU J X,LIU X H,WANG Y B,et al. Study on dynamic       ZHAO  Z,YANG  L  X,WU  L  L,et  al.  Design  and
                   characteristics of cylindrical shell filled with compression   performance  validation  of  a  zero-stiffness  vibroisolating
                   torsion  double  helix  metamaterial[J]. Spacecraft   metamaterial  based  on  machine  learning[J]. Acta
                   Recovery & Remote Sensing,2023,44(5):20-28.       Materiae Compositae Sinica,2024,41(5):2599-2608.
                [43] BODAGHI  M,YOUSEFI  A,TEYMOURI  H,           [51] HA C S,YAO D S,XU Z P,et al. Rapid inverse design


                   et  al.  Metamaterial  boat  fenders  with  supreme  shape   of metamaterials based on prescribed mechanical behavior
                   recovery and energy absorption/dissipation via FFF 4D   through  machine  learning[J]. Nature  Communications,
                   printing[J]. Smart Materials and Structures,2023,32(9):  2023,14(1):5765.

                   095028.                                        [52] 杨知虎,傅佳慧,张玉萍,等. 基于深度学习的Fano共
                [44] 张栗铭,杨德庆. 力学与声学超材料在船舶工程中的应                       振超材料设计[J]. 中国光学,2023,16(4):816-823.

                   用研究综述[J]. 中国舰船研究,2023,18(2):1-19.                 YANG  Z  H,FU  J  H,ZHANG  Y  P,et  al.  Fano
                   ZHANG  L  M,YANG  D  Q.  Review  on  the  applied   resonances design of metamaterials based on deep learning
                   research  of  mechanical  and  acoustic  metamaterials  in   [J]. Chinese Optics,2023,16(4):816-823.
                   ship engineering[J]. Chinese Journal of Ship Research,    [53] 杨庆生,粘向川,张婧,等. 智柔超材料及其力学性能

                   2023,18(2):1-19.                                  的研究进展[J]. 固体力学学报,2024,45(2):145-169.
                [45] KIRAN  K  K,AHMAD  S,AL-OSTA  M  A,et  al.       YANG  Q  S,NIAN  X  C,ZHANG  J,et  al.  Recent

                   Enhancing  the  seismic  resilience  of  structures  by  using   research  progress  on  intelligent  flexible  mechanical
                   optimum  combination  of  tuned  mass  damper  inerter   metamaterials and their properties[J]. Chinese Journal of
                   and negative stiffness damper[J]. Structures,2023,57:  Solid Mechanics,2024,45(2):145-169.


               8
   11   12   13   14   15   16   17   18   19   20   21