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聚合物动力学的热力学标度与 T-T(g) 标度的关系。

Thermodynamic scaling of polymer dynamics versus T-T(g) scaling.

机构信息

Department of Chemical Engineering, Texas Tech University, Lubbock, Texas 79409, USA.

出版信息

J Chem Phys. 2011 Aug 21;135(7):074901. doi: 10.1063/1.3624903.

Abstract

A thermodynamic scaling law for the relaxation times of complex liquids as a function of temperature and volume has been proposed in the literature: τ(T,V) = f(TV(γ)), where γ is a material-dependent constant. We test this scaling for six materials, linear polystyrene, star polystyrene, two polycyanurate networks, poly(vinyl acetate), and poly(vinyl chloride), and compare the thermodynamic scaling to T-T(g) scaling, where τ = f(T-T(g)). The thermodynamic scaling law successfully reduces the data for all of the samples; however, polymers with similar structures but different glass transition (T(g)) and pressure-volume-temperature (PVT) behavior, i.e., the two polycyanurates, cannot be superposed unless the scaling law is normalized by T(g)V(g) (γ). On the other hand, the T-T(g) scaling successfully reduced data for all polymers, including those having similar microstructures. In addition, the T-T(g) scaling is easier to implement since it does not require knowledge of the PVT behavior of the material. The relationship between T(g)V(g) (γ)∕TV(γ) and T-T(g) scaling is clarified and is found to be weakly dependent on pressure.

摘要

文献中提出了一个复杂液体松弛时间随温度和体积变化的热力学标度定律

τ(T,V)= f(TV(γ)),其中γ是一个与材料有关的常数。我们对六种材料进行了这项标度检验,包括线性聚苯乙烯、星形聚苯乙烯、两种聚异氰脲酸酯网络、聚醋酸乙烯酯和聚氯乙烯,并将热力学标度与 T-T(g)标度进行了比较,其中τ= f(T-T(g))。热力学标度成功地减少了所有样本的数据;然而,具有相似结构但玻璃化转变(T(g))和压力-体积-温度(PVT)行为不同的聚合物,即两种聚异氰脲酸酯,除非通过 T(g)V(g)(γ)对比例律进行归一化,否则无法叠加。另一方面,T-T(g)标度成功地减少了所有聚合物的数据,包括那些具有相似微观结构的聚合物。此外,由于不需要了解材料的 PVT 行为,T-T(g)标度更容易实施。还澄清了 T(g)V(g)(γ)∕TV(γ)与 T-T(g)标度之间的关系,发现其与压力的依赖性较弱。

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