The performances of practical multiphase materials made from immiscible polymer blends are usually determined by the microscopic phase structures of blends.
不相容聚合物共混物形成的相结构决定着共混材料的各项性能。
PPG as a new type of immiscible polymer flooding system was studied for the purpose of enhancing the oil recovery of after polymer flooding reservoirs.
针对聚合物驱后油藏缺乏有效提高采收率接替技术的问题,研发了新型非均相聚合物驱油剂PPG产品。
The on-line analysis on morphology has been completed for immiscible polymer blends during mixing and melting process.
用光散射在线采集与分析方法完成了熔融混炼过程中非相容高分子共混物的形态结构分析。
The calculation results show that the vibration force field play an effective role in controlling phase morphology of immiscible polymer blends during polymer processing.
计算结果表明,聚合物加工过程中引入振动力场为共混体系相形态控制提供了更为有效手段。
Therefore, the apparent shear viscosity of immiscible polymer blends may be lower than the apparent shear viscosity of any phase under otherwise identical conditions.
这样,在相同条件下,混合物的表观剪切粘度可能低于任何单一相的表观剪切粘度。