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    H2O在PBT聚醚聚氨酯弹性体渗透行为的分子模拟

    Molecular Simulation of Permeation Behavior of H2O in PBT Polyether Polyurethane Elastomer

    • 摘要: 采用蒙特卡洛模拟和分子动力学模拟的方法,对H2O在3,3-双(叠氮甲基)环氧乙烷-四氢呋喃共聚醚(PBT)聚醚聚氨酯(PUPBT)中的吸附和扩散行为进行模拟。吸附模拟结果表明,在0~1000 kPa逸度范围内,298、318、338、358 K条件下的PUPBT对H2O的吸附热分别为41.15、40.23、36.84、34.16 kJ/mol,298 K下达到吸附平衡,随着温度的升高,PUPBT对H2O的吸附能力减弱;H2O在PUPBT中的吸附不是均匀吸附,而是聚集性地吸附于聚合物中靠近空穴中心的低势能区。扩散模拟结果表明,在压强为101 kPa,温度为298、318、338、358 K条件下,H2O/PUPBT混合体系的自由体积分数分别为14.37%、15.55%、17.00%、17.85%,H2O在PUPBT中的扩散系数分别为1.488×10−6、1.999×10−6、4.086×10−6、4.462×10−6 cm2/s,且H2O在PUPBT中进行的扩散不是均匀扩散,而是在聚合物空穴之间的跃迁扩散。H2O在PUPBT中的溶解系数是影响渗透系数的主要因素,随着温度的升高,渗透系数逐渐下降。

       

      Abstract: Based on the method of Grand Canonical Monte Carlo and molecular dynamic simulation, the adsorption, diffusion and permeation behavior of H2O in PBT polyether polyurethane (PUPBT) elastomer were simulated. The results show that the heat of adsorption of H2O on PUPBT at 298, 318, 338, 358 K is 41.15, 40.23, 36.84, 34.16 kJ/mol, respectively, in the fugacity range of 0~1000 kPa. The adsorption equilibrium has been reached when the temperature is 298 K. With the increase of temperature, the adsorption capacity of PUPBT toward H2O is declined. The adsorption of H2O on PUPBT is not a uniform adsorption, H2O molecules are adsorbed to the lower potential energy region near the center of the holes in the polymer. When the pressure is 101 kPa, the free volume fractions of H2O/PUPBT are 14.37%, 15.55%, 17.00% and 17.85%, and the diffusion coefficients of H2O into PUPBT are 1.488×10−6, 1.999×10−6, 4.086×10−6 and 4.462×10−6 cm2/s, respectively, at the temperature of 298, 318, 338, 358 K. And the diffusion of H2O into PUPBT is not a uniform diffusion, but a jump-motion diffusion in free volumes. The solubility coefficient of H2O molecules in PUPBT is the major factor that affects the permeability coefficient of the system. With the increase of temperature, the permeability coefficient of H2O into PUPBT decreases gradually.

       

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