节点文献
Wall slip behavior of polymer melts on capillary rheometer
【Author】 LIAO Hua-yong TAN Zhong-xin ZOU Guo-xiang DING Yong-hong TAO Guo-liang Polymer Materials Key Laboratory of Changzhou City,Jiangsu Polytechnic University,Changzhou 213164,China Guangzhou Institute of Energy Conversion,Chinese Academy of Sciences,Guangzhou 510640,China
【机构】 Polymer Materials Key Laboratory of Changzhou City,Jiangsu Polytechnic University; Guangzhou Institute of Energy Conversion,Chinese Academy of Sciences;
【摘要】 <正>Wall slip behavior of three commercial polymer melts polypropylene(iPP),low-density polyethylene(LDPE)(branched chains)and high-density polyethylene(HDPE)(linear chains)were studied by using a capillary rheometer with twin bores at different temperatures.The results show that a sudden first-stick-then-slip transition was observed for HDPE and a first-slip-then-stick transition was observed for LDPE and iPP as the shear rate sweep was done in an increased order,which shows that the chain structure has an obvious effect on the wall slip behavior of polymers.The critical shear stress for the onset of stick-slip transition increases linearly with temperature for HDPE,which accords with the disentanglement mechanism proposed by Brochard and de Gennes.While the extrapolation length used to quantify the magnitude of the transition remains about 0.05-0.09 mm for HDPE at 150-230℃.Also the relationship between the critical shear stress for the onset of wall slip and the molecular mass for polymer samples agrees with the disentanglement model of Brochard and de Gennes.The onset of slip-stick transition for LDPE and iPP at a critical shear stress may be interpreted as the shear thinning of the polymer chains at high shear rates,preventing further development of wall slip behavior.
【Abstract】 Wall slip behavior of three commercial polymer melts polypropylene(iPP),low-density polyethylene(LDPE)(branched chains)and high-density polyethylene(HDPE)(linear chains)were studied by using a capillary rheometer with twin bores at different temperatures.The results show that a sudden first-stick-then-slip transition was observed for HDPE and a first-slip-then-stick transition was observed for LDPE and iPP as the shear rate sweep was done in an increased order,which shows that the chain structure has an obvious effect on the wall slip behavior of polymers.The critical shear stress for the onset of stick-slip transition increases linearly with temperature for HDPE,which accords with the disentanglement mechanism proposed by Brochard and de Gennes.While the extrapolation length used to quantify the magnitude of the transition remains about 0.05-0.09 mm for HDPE at 150-230℃.Also the relationship between the critical shear stress for the onset of wall slip and the molecular mass for polymer samples agrees with the disentanglement model of Brochard and de Gennes.The onset of slip-stick transition for LDPE and iPP at a critical shear stress may be interpreted as the shear thinning of the polymer chains at high shear rates,preventing further development of wall slip behavior.
- 【会议录名称】 Proceedings of the 9th National Conference on Rheology
- 【会议名称】The 9th National Conference on Rheology
- 【会议时间】2008-09
- 【会议地点】中国湖南长沙
- 【分类号】O631.2
- 【主办单位】Chinese Society of Rheology(CSR)、Central South University of Forestry & Technology(CSUFT)、Xiangtan University(XTU)、Hunan University of Technology(HNUT)