文章摘要
电磁动态密炼机四棱异步剪切型转子的设计及模拟分析
Design and Simulation Analysis of Four Edge Asynchronous Shear Rotor of Electromagnetic Dynamic Mixer
投稿时间:2019-08-26  修订日期:2019-08-26
DOI:10.12136/j.issn.1000-890X.2021.04.0302
中文关键词: 电磁动态密炼机  四棱异步剪切型转子  电磁振动  流场  动态模拟  混炼
英文关键词: electromagnetic dynamic mixer  four edge asynchronous shear rotor  electromagnetic vibration  flow field  dynamic simulation  mixing
基金项目:山东省重点研发计划项目(2017GSF17127);青岛市科技发展计划项目(17-6-3-16-gx)
作者单位E-mail
林广义* 青岛科技大学 机电工程学院
山东省高分子材料先进制造重点实验室 
1492127180@qq.com 
吕宁宁 青岛科技大学 机电工程学院
山东省高分子材料先进制造重点实验室 
 
艾冲冲 青岛科技大学 机电工程学院
山东省高分子材料先进制造重点实验室 
 
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中文摘要:
      设计电磁动态密炼机四棱异步剪切型转子,建立在电磁振动条件下转子的三维数学模型,并运用专业流体软件Polyflow动态模拟分析转子流场的压力场、速度场、剪切速率分布、粘度分布、混合指数分布和浓度场。结果表明:在电磁振动条件下,转子流场出现最高压力、最大速度、最大剪切速率和最大质量浓度的时间缩短,转子突棱处的粘度很小,转子平滑处的粘度较大,混合指数较小,从而使胶料快速完成混炼,提高混炼效率,降低混炼能耗。
英文摘要:
      The four edged asynchronous shear rotor of electromagnetic dynamic mixer was designed,and the three-dimensional mathematical model of the rotor under the condition of electromagnetic vibration was established.The flow field of the rotor was dynamically simulated and analyzed by using professional fluid software Polyflow,including pressure field,velocity field,shear rate distribution,viscosity distribution,mixing index distribution and concentration field.The results showed that,under the condition of electromagnetic vibration,the time of maximum pressure,maximum velocity,maximum shear rate and maximum mass concentration in the rotor flow field was shortened,the viscosity at the convex edge of the rotor was very small,the viscosity at the smooth part of the rotor was large,and the mixing index was small,so that the rubber could be mixed quickly,the mixing efficiency was improved,and the mixing energy consumption was reduced.
Author NameAffiliationE-mail
Lin Guangyi Qingdao University of Science and Technology
Shandong Key Laboratory of Advanced Polymer Materials Manufacturing 
1492127180@qq.com 
LYU Ningning Qingdao University of Science and Technology
Shandong Key Laboratory of Advanced Polymer Materials Manufacturing 
 
AI Chongchong Qingdao University of Science and Technology
Shandong Key Laboratory of Advanced Polymer Materials Manufacturing 
 
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