from    
to    
search  

 


环境学术沙龙第632期:水环境界面原位可视化感知方法
环境学术沙龙第631期:重点流域水生态环境保护规划:方法与实践
世纪物理情系列讲座 第16讲:Quantum simulators of many-body phenomena with int...
世界地球日特邀报告——气候变化与人类健康
报告题目:
Polymer rheology - black box no more: The future of mainstream
 报告人:
王十庆 教授
美国阿克隆大学高分子科学系
报告时间:
2006-05-26 10:00
报告地点:
新化学馆(何添楼)406
主办单位:
化学工程系
  简介:

Polymer rheology, as a subject aimed to describe the basic physics behind the processing behavior of several hundred million tons of plastic materials (annual global production), is a well established field after decades of investigation by generations of physicists and engineers.  Its goal is to provide guiding principles concerning the flow behavior of polymeric materials.  Traditionally, polymer rheology is regarded as a part of Chemical Engineering.  This presentation discusses recent groundbreaking results[1] from the Polymer Dynamics, Interfaces and Rheology Group (http://www3.uakron.edu/rheology/) at Akron. For the first time after many decades of activities, the subject of polymer viscoelasticity is finally being probed to its core, revealing the critical need to conduct a straightforward flow visualization experiment.  For entangled polymers, application of a simple particle tracking velocimetric technique allows one to peek into the black box of polymer rheology and to attest whether the basic premise governing polymer liquid rheology has been ill perceived and whether the entire theoretical framework would collapse in light of the new experimental evidence.  Taking entangled polymer solutions as an example, it is shown that a deep scientific revolution is about to take place in this important field of polymer physics.  A decade of efforts by the old and new people may be needed to create a new paradigm.



 

今日相关信息
Production Systems Engineering – Ana...
New photocatalysis technology
回归童心——来自拉美文学的启示
 
同类别相关信息
质子迁移和烯丙基化反应的选择性控制
高比能长寿命锂离子电池材料设计和关键基...
Defining protein networks that medi...
2018清华五道口全球金融论坛
Self-Assembling Polymer-Directed Hy...
学术活动