Effect of microstructure on anomalous strain-rate-dependent behaviour of bacterial cellulose hydrogel.

نویسندگان

  • Xing Gao
  • Zhijun Shi
  • Andrew Lau
  • Changqin Liu
  • Guang Yang
  • Vadim V Silberschmidt
چکیده

This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydrogel that can be strain-rate insensitive, hardening, softening, or strain-rate insensitive in various ranges of strain rate. BC hydrogel consists of randomly distributed nanofibres and a large content of free water; thanks to its ideal biocompatibility, it is suitable for biomedical applications. Motivated by its potential applications in complex loading conditions of body environment, its time-dependent behaviour was studied by means of in-aqua uniaxial tension tests at constant temperature of 37 °C at various strain rates ranging from 0.000 1s(-1) to 0.3s(-1). Experimental results reflect anomalous strain-rate-dependent behaviour that was not documented before. Micro-morphological observations allowed identification of deformation mechanisms at low and high strain rates in relation to microstructural changes. Unlike strain-rate softening behaviours in other materials, reorientation of nanofibres and kinematics of free-water flow dominate the softening behaviour of BC hydrogel at high strain rates.

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عنوان ژورنال:
  • Materials science & engineering. C, Materials for biological applications

دوره 62  شماره 

صفحات  -

تاریخ انتشار 2016