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Linear Viscoelastic Behaviors of Polybutene-1 Melts with Various Structure Parameters
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作者 Hua-feng Shao shu-lei wang +1 位作者 Xia Dong 贺爱华 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2016年第2期174-184,共11页
The effects of weight-average molecular (Mw), molecular weight distribution (MWD), and isotacticity on the linear viscoelastic behavior of polybutene-1 melts are studied. It is observed that the linear viscoelasti... The effects of weight-average molecular (Mw), molecular weight distribution (MWD), and isotacticity on the linear viscoelastic behavior of polybutene-1 melts are studied. It is observed that the linear viscoelastic region becomes slightly narrower with increasing frequency. In frequency sweeps, the transition of the polymer melts flow from Newtonian flow to power-law flow can be observed. The melts with higher Mw and:or broader MWD, as well as higher isotacficity exhibit higher complex viscosity, zero shear viscosity, viscoelasticity moduli, relaxation modulus, broader transition zone, while lower critical shear rate, non-Newtonian index, and the frequency at which elasticity begins to play an important role. The relationship of zero shear viscosity on Mw has been established, which agrees with the classical power law. Furthermore, it is found that the cross-over frequency decreases with increasing Mw and the cross-over modulus increases with narrowing MWD. 展开更多
关键词 POLYBUTENE-1 Molecular weight Molecular weight distribution ISOTACTICITY Linear viscoelastic behaviors.
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