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Miscellany

Comparative Study of Strain Sensing Behaviors of Carbon Black/Polypropylene and Carbon Nanotubes/Polypropylene with Different Tensile Speeds

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Pages 1303-1307 | Published online: 30 Sep 2013

REFERENCES

  • Dai , K. ; Li , Z.M. ; Xu , X.B. Electrically conductive in-situ microfibrillar composite with a selective carbon black distribution: An unusual resistivity-temperature behavior upon cooling. Polymer 2008, 49, 1037–1048.
  • Pang , H. ; Bao , Y. ; Lei , J. ; Tang , J.H. ; Ji , X. ; et al. . Segregated conductive ultrahigh-molecular-weight polyethylene composites containing high-density polyethylene as carrier polymer of graphene nanosheets . Polym.-Plast. Technol. 2012 , 51 , 1483 – 1486 .
  • Dai , K. ; Ji , X. ; Xiang , Z.D. ; Zhang , W.Q. ; Tang , J.H. ; Li , Z.M. Electrical properties of an ultralight conductive carbon nanotube/polymer composite foam upon compression . Polym.-Plast. Technol. 2012 , 51 , 304 – 306 .
  • Shukla , P. ; Bhatia , V. ; Gaur , V. ; Jain , V.K. Electrostatically functionalized multiwalled carbon nanotube/PMMA composite thin films for organic vapor detection . Polym.-Plast. Technol. 2011 , 50 , 1179 – 1184 .
  • Ku-Herrera , J.J. ; Avilés , F. Cyclic tension and compression piezoresistivity of carbon nanotube/vinyl ester composites in the elastic and plastic regimes . Carbon 2012 , 50 , 2592 – 2598 .
  • Sau , K.P. ; Chaki , T.K. ; Khastgir , D. The change in conductivity of a rubber-carbon black composite subjected to different modes of pre-strain . Compos. Pt. A-Appl. S 1998 , 29 , 363 – 370 .
  • Pham , G.T. ; Park , Y.B. ; Liang , Z.Y. ; Zhang , C. ; Wang , B. Processing and modeling of conductive thermoplastic/carbon nanotube films for strain sensing . Compos. Pt. B-Eng. 2008 , 39 , 209 – 216 .
  • Das , N.C. ; Chaki , T.K. ; Khastgir , D. Effect of axial stretching on electrical resistivity of short carbon fiber and carbon black filled conductive rubber composites . Polym. Int. 2002 , 51 , 156 – 163 .
  • Kuronuma , Y. ; Takeda , T. ; Shindo , Y. ; Narita , F. ; Wei , Z.J. Electrical resistance-based strain sensing in carbon nanotube/polymer composites under tension: Analytical modeling and experiments . Compos. Sci. Technol. 2012 , 72 , 1678 – 1682 .
  • Eswaraiah , V. ; Balasubramaniam , K. ; Ramaprabhu , S. Functionalized graphene reinforced thermoplastic nanocomposites as strain sensors in structural health monitoring . J. Mater. Chem. 2011 , 21 , 12626 – 12628 .
  • Zhang , R. ; Deng , H. ; Valenca , R. ; Jin , J. ; Fu , Q. ; et al. . Strain sensing behaviour of elastomeric composite films containing carbon nanotubes under cyclic loading . Compos. Sci. Technol. 2013 , 74 , 1 – 5 .
  • Pang , H. ; Bao , Y. ; Chen , C. ; Lei , J. ; Ji , X. ; et al. . Influence of the compaction temperature on the electrical and mechanical properties of the segregated conductive ultrahigh molecular weight polyethylene/carbon nanotube composite . Polym.-Plast. Technol. 2012 , 51 , 1530 – 1536 .
  • Gao , J.F. ; Li , Z.M. ; Peng , S. ; Yan , D.X. Temperature-resistivity behaviour of CNTs/UHMWPE composites with a two-dimensional conductive network . Polym.-Plast. Technol. 2009 , 48 , 478 – 481 .

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