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第 5 期                         郝晓晴, 等: 冰雪运动雪上摩擦学与雪蜡研究现状                                       607

                 8705-1_18.                                        Technology, 2005, 43(3): 140–149. doi: 10.1016/j.coldregions.2005.
            [33]  Hoell  F.  Measuring  ski  gliding  properties-Development  of  a  03.002.
                 measurement  system  for  ski  gliding  friction[D].  Östersund:  Mid  [47]  Libbrecht K G. The physics of snow crystals[J]. Reports on Progress
                 Sweden University, 2019.                          in Physics, 2005, 68(4): 855–895. doi: 10.1088/0034-4885/68/4/R03.
            [34]  Maeno  N,  Arakawa  M,  Yasutome  A,  et  al.  Ice-ice  friction  [48]  Nilsson  H,  Kärrman  A,  Rotander  A,  et  al.  Inhalation  exposure  to
                 measurements,   and   water   lubrication   and   adhesion-shear  fluorotelomer  alcohols  yield  perfluorocarboxylates  in  human
                 mechanisms[J].  Canadian  Journal  of  Physics,  2003,  81(1-2):  blood?[J].  Environmental  Science  &  Technology,  2010,  44(19):
                 241–249. doi: 10.1139/p03-023.                    7717–7722. doi: 10.1021/es101951t.
            [35]  Hasler  M,  Schindelwig  K,  Mayr  B,  et  al.  A  novel  ski-snow  [49]  Grønnestad R, Vázquez B P, Arukwe A, et al. Levels, patterns, and
                 tribometer and its precision[J]. Tribology Letters, 2016, 63(3): 1–9.  biomagnification  potential  of  perfluoroalkyl  substances  in  a
                 doi: 10.1007/s11249-016-0719-2.                   terrestrial  food  chain  in  a  Nordic  skiing  area[J].  Environmental
            [36]  Bäurle L, Szabó D, Fauve M, et al. Sliding friction of polyethylene  Science & Technology, 2019, 53(22): 13390–13397. doi: 10.1021/
                 on ice: tribometer measurements[J]. Tribology Letters, 2006, 24(1):  acs.est.9b02533.
                 77–84. doi: 10.1007/s11249-006-9147-z.        [50]  Gomis M I, Vestergren R, Nilsson H, et al. Contribution of direct
            [37]  Fischer J, Wallner G M, Pieber A. Morphology of polyethylene ski  and  indirect  exposure  to  human  serum  concentrations  of
                 base materials[J]. Journal of Sports Sciences, 2010, 28(5): 555–562.  perfluorooctanoic  acid  in  an  occupationally  exposed  group  of  ski
                 doi: 10.1080/02640411003628055.                   waxers[J].  Environmental  Science  &  Technology,  2016,  50(13):
            [38]  Jordan  S  E,  Brown  C  A.  Comparing  texture  characterization  7037–7046. doi: 10.1021/acs.est.6b01477.
                 parameters on their ability to differentiate ground polyethylene ski  [51]  Hämeri  K,  Aalto  P,  Kulmala  M,  et  al.  Formation  of  respirable
                 bases[J].  Wear,  2006,  261(3-4):  398–409.  doi:  10.1016/j.wear.  particles  during  ski  waxing[J].  Journal  of  Aerosol  Science,  1996,
                 2005.12.011.                                      27(2): 339–344. doi: 10.1016/0021-8502(95)00552-8.
            [39]  Kuzmin L, Tinnsten M. Dirt absorption on the ski running surface-  [52]  Liesivuori  J,  Kiviranta  H,  Laitinen  J,  et  al.  Airborne  aerosols  in
                 quantification  and  influence  on  the  gliding  ability[J].  Sports  application of polyfluoro polymer-based ski waxes[J]. The Annals of
                 Engineering, 2006, 9(3): 137–146. doi: 10.1007/BF02844115.  Occupational Hygiene, 1994, 38(6): 931–937. doi: 10.1093/annhyg/
            [40]  Colbeck  S  C.  Capillary  bonding  of  wet  surfaces  -  the  effects  of  38.6.931.
                 contact angle and surface roughness[J]. Journal of Adhesion Science  [53]  Lemonick  D  M,  Lisa  M.  Is  teflon  risky?[J].  Time,  2006,  167(24):
                 and  Technology,  1997,  11(3):  359–371.  doi:  10.1163/156856197X  60–61.
                 00750.                                        [54]  Patel M M, Miller M A, Chomchai S. Polymer fume fever after use
            [41]  Rohm  S,  Unterberger  S  H,  Hasler  M,  et  al.  Wear  of  ski  waxes:  of  a  household  product[J].  The  American  Journal  of  Emergency
                 Effect of temperature, molecule chain length and position on the ski  Medicine, 2006, 24(7): 880–881. doi: 10.1016/j.ajem.2006.03.003.
                 base[J]. Wear, 2017, 384-385: 43–49. doi: 10.1016/j.wear.2017.05.  [55]  Dahlqvist M, Alexandersson R, Andersson B, et al. Exposure to ski-
                 004.                                              wax  smoke  and  health  effects  in  ski  waxers[J].  Applied
            [42]  Kuzmin L, Ebrahimzadeh R, Wiklund H. Comparison of ski running  Occupational  and  Environmental  Hygiene,  1992,  7(10):  689–693.
                 surfaces  machined  by  various  stone  grinding  equipments,  in  the  doi: 10.1080/1047322X.1992.10388070.
                 impact  of  technology  on  sport[M].  Melbourne,  Australia:  RMIT  [56]  Bracco  D,  Favre  J  B.  Pulmonary  injury  after  ski  wax  inhalation
                 University, 2009: 27-31.                          exposure[J]. Annals of Emergency Medicine, 1998, 32(5): 616–619.
            [43]  Kuzmin  L,  Tinnsten  M.  Contact  angels  on  the  running  surface  of  doi: 10.1016/S0196-0644(98)70043-5.
                 cross-country  skis,  in  the  impact  of  technology  on  sport[M].  [57]  Thibodeaux  J  R,  Hanson  R  G,  Rogers  J  M,  et  al.  Exposure  to
                 Melbourne, Australasian Sports Technology Alliance Pty Ltd, 2005:  perfluorooctane  sulfonate  during  pregnancy  in  rat  and  mouse.  I:
                 318-323.                                          maternal and prenatal evaluations[J]. Toxicological Sciences, 2003,
            [44]  Bowden F P. Friction on snow and ice[J]. Proceedings of the Royal  74(2): 369–381. doi: 10.1093/toxsci/kfg121.
                 Society  of  London  Series  A,  Mathematical  and  Physical  Sciences,  [58]  Plassmann M M, Berger U. Perfluoroalkyl carboxylic acids with up
                 1953, 217(1131): 462–478. doi: 10.1098/rspa.1953.0074.  to  22  carbon  atoms  in  snow  and  soil  samples  from  a  ski  area[J].
            [45]  Haaland  N  H.  Nano  ski  wax,  effects  and  benefits[D].  Trondheim:  Chemosphere,  2013,  91(6):  832–837.  doi:  10.1016/j.chemosphere.
                 Norwegian University of Science and Technology, 2013.  2013.01.066.
            [46]  Rogowski I, Gauvrit J Y, Léonard D, et al. Typology of the gliding  [59]  Kotthoff  M,  Müller  J,  Jürling  H,  et  al.  Perfluoroalkyl  and
                 waxes in cross-country skiing: Comparison between classifications  polyfluoroalkyl substances in consumer products[J]. Environmental
                 based on the chemical composition and those based on the physical  Science  and  Pollution  Research,  2015,  22(19):  14546–14559.  doi:
                 and  physicochemical  properties[J].  Cold  Regions  Science  and  10.1007/s11356-015-4202-7.
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