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1254                                   摩擦学学报(中英文)                                        第 45 卷

                 structures  as  dry  adhesives[J].  Journal  of  Adhesion  Science  and  cr050018y.
                 Technology,   2003,   17(8):   1055–1073.   doi:   10.1163/  [  62  ]   Liu Bing, Zhang Hao, Guo Dongjie, et al. Design, Fabrication and
                 156856103322113788.                                Adhesion  Test  of  Lean  Bio  -  inspired  Seta[J].  Tribology,  2009,
            [  49  ]   Yoon  E  S,  Singh  R  A,  Kong  H,  et  al.  Tribological  properties  of  29(5): 393–398 (in Chinese) [刘彬, 张昊, 郭东杰, 等. 倾斜仿生刚
                 bio-mimetic nano-patterned polymeric surfaces on silicon wafer[J].  毛的设计、制备及黏附性能研究[J]. 摩擦学学报, 2009, 29(5):
                 Tribology  Letters,  2006,  21(1):  31–37.  doi:  10.1007/s11249-005-  393–398]. doi: 10.3321/j.issn:1004-0595.2009.05.001.
                 9005-4.                                       [  63  ]   Spolenak R, Gorb S, Gao Huajian, et al. Effects of contact shape on
            [  50  ]   Jeong H E, Lee S H, Kim J K, et al. Nanoengineered multiscale  the scaling of biological attachments[J]. Proceedings of the Royal
                 hierarchical  structures  with  tailored  wetting  properties[J].  Society  A:  Mathematical,  Physical  and  Engineering  Sciences,
                 Langmuir, 2006, 22(4): 1640–1645. doi: 10.1021/la0526434.  2005, 461(2054): 305–319. doi: 10.1098/rspa.2004.1326.
            [  51  ]   Jeong H E, Lee S H, Kim P, et al. Stretched polymer nanohairs by  [  64  ]   Del Campo A, Greiner C, Álvarez I, et al. Patterned surfaces with
                 nanodrawing[J].  Nano  Letters,  2006,  6(7):  1508–1513.  doi:  10.  pillars with controlled 3D tip geometry mimicking bioattachment
                 1021/nl061045m.                                    devices[J]. Advanced Materials, 2007, 19(15): 1973–1977. doi: 10.
            [  52  ]   Yurdumakan B, Raravikar N R, Ajayan P M, et al. Synthetic gecko  1002/adma.200602476.
                 foot-hairs  from  multiwalled  carbon  nanotubes[J].  Chemical  [  65  ]   Sameoto D, Menon C. A low-cost, high-yield fabrication method
                 Communications, 2005(30): 3799–3801. doi: 10.1039/b506047h.  for  producing  optimized  biomimetic  dry  adhesives[J].  Journal  of
            [  53  ]   Maeno Y, Nakayama Y. Geckolike high shear strength by carbon  Micromechanics and Microengineering, 2009, 19(11): 115002. doi:
                 nanotube  fiber  adhesives[J].  2009,  94(1):  012103.  doi:10.1063/1.  10.1088/0960-1317/19/11/115002.
                 3050450.                                      [  66  ]   Gorb S, Varenberg M, Peressadko A, et al. Biomimetic mushroom-
            [  54  ]   Yu  Min,  He  Qingsong,  Yu  Dingshan,  et  al.  Efficient  active  shaped  fibrillar  adhesive  microstructure[J].  Journal  of  the  Royal
                 actuation  to  imitate  locomotion  of  gecko’s  toes  using  an  ionic  Society,  Interface,  2007,  4(13):  271–275.  doi:  10.1098/rsif.2006.
                 polymer-metal   composite   actuator   enhanced   by   carbon  0164.
                 nanotubes[J]. 2012, 101(16): 163701. doi:10.1063/1.4756999.  [  67  ]   Carbone  G,  Pierro  E,  Gorb  S  N.  Origin  of  the  superior  adhesive
            [  55  ]   Jeong H E, Suh K Y. Nanohairs and nanotubes: Efficient structural  performance of mushroom-shaped microstructured surfaces[J]. Soft
                 elements  for  gecko-inspired  artificial  dry  adhesives[J].  Nano  Matter, 2011, 7(12): 5545–5552. doi: 10.1039/C0SM01482F.
                 Today, 2009, 4(4): 335–346. doi: 10.1016/j.nantod.2009.06.004.  [  68  ]   Liimatainen  V,  Drotlef  D  M,  Son  D,  et  al.  Liquid-superrepellent
            [  56  ]   Khaderi S N, Fleck N A, Arzt E, et al. Detachment of an adhered  bioinspired  fibrillar  adhesives[J].  Advanced  Materials,  2020,
                 micropillar from a dissimilar substrate[J]. Journal of the Mechanics  32(19): 2000497. doi: 10.1002/adma.202000497.
                 and  Physics  of  Solids,  2015,  75:  159–183.  doi:  10.1016/j.jmps.  [  69  ]   Zhao Jinsheng, Lu Taiping, Pan Taisong, et al. Mushroom-shaped
                 2014.11.004.                                       micropillar with a maximum pull-off force[J]. Journal of Applied
            [  57  ]   Xue Longjian, Pham J T, Iturri J, et al. Stick-slip friction of PDMS  Mechanics, 2022, 89(7): 071009. doi: 10.1115/1.4054628.
                 surfaces  for  bioinspired  adhesives[J].  Langmuir,  2016,  32(10):  [  70  ]   Kim  S,  Sitti  M,  Jang  J  H,  et  al.  Fabrication  of  bio-inspired
                 2428–2435. doi: 10.1021/acs.langmuir.6b00513.      elastomer  nanofiber  arrays  with  spatulate  tips  using  notching
            [  58  ]   Dong  Conghui,  Zhang  Yafeng,  Tang  Cheng,  et  al.  Dynamic  effect[C]//2008 8th IEEE Conference on Nanotechnology. August
                 frictional  behavior  of  microdroplets  on  PDMS  soft  substrate[J].  18-21,  2008.  Arlington,  Texas,  USA.  IEEE,  2008:  780-782.
                 Tribology, 2021, 41(5): 619–626 (in Chinese) [董聪慧, 张亚锋, 汤  doi:10.1109/nano.2008.233.
                 程, 等. 微液滴在PDMS软基体表面的动态摩擦行为研究[J].              [  71  ]   Arzt  E,  Quan  Haocheng,  McMeeking  R  M,  et  al.  Functional
                 摩 擦 学 学 报 ,  2021,  41(5):  619–626].  doi:  10.16078/j.tribology.  surface  microstructures  inspired  by  nature–From  adhesion  and
                 2020137.                                           wetting  principles  to  sustainable  new  devices[J].  Progress  in
            [  59  ]   Glassmaker N J, Himeno T, Hui C Y, et al. Design of biomimetic  Materials Science, 2021, 120: 100823. doi: 10.1016/j.pmatsci.2021.
                 fibrillar  interfaces:  1.  making  contact[J].  Journal  of  the  Royal  100823.
                 Society, Interface, 2004, 1(1): 23–33. doi: 10.1098/rsif.2004.0004.  [  72  ]   Eisenhaure  J,  Kim  S.  A  review  of  the  state  of  dry  adhesives:
            [  60  ]   Greiner  C,  Campo  A  D,  Arzt  E.  Adhesion  of  bioinspired  biomimetic  structures  and  the  alternative  designs  they  inspire[J].
                 micropatterned  surfaces:  effects  of  pillar  radius,  aspect  ratio,  and  Micromachines, 2017, 8(4): 125. doi: 10.3390/mi8040125.
                 preload[J].  Langmuir,  2007,  23(7):  3495–3502.  doi:  10.1021/  [  73  ]   Bhushan  B.  Adhesion  of  multi-level  hierarchical  attachment
                 la0633987.                                         systems  in  gecko  feet[J].  Journal  of  Adhesion  Science  and
            [  61  ]   Del  Campo  A,  Arzt  E.  Fabrication  approaches  for  generating  Technology,  2007,  21(12-13):  1213–1258.  doi:  10.1163/
                 complex  micro-  and  nanopatterns  on  polymeric  surfaces[J].  156856107782328353.
                 Chemical  Reviews,  2008,  108(3):  911–945.  doi:  10.1021/  [  74  ]   Kim  Y.  Equation  of  state  for  carbon  dioxide[J].  Journal  of
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