[1]
L. X Huang. Research Progress of Modified Calcium Carbonate of High Density Polyethylene: China's Powder Industry, 2010, 03: 4-7.
Google Scholar
[2]
Z.F. Luo, R Huang, A Lu, B. H Cai, W. Y Fan. Nano CaCO3 to Enhance Toughening HDPE Composite Materials. China Plastics, 2000, 8 (8): 14-16.
Google Scholar
[3]
L. J Liu, Y. Jun Zhang, F Tian, C. J Liu, Y Jian. Rotate the Mold Reinforced Polyethylene Special Resin. China Plastics, 2010, (3): 39-42.
Google Scholar
[4]
X. F Peng, J. W Lai, Y. Q Lin. Flow of Polymer Melt in the Capillary Dynamic Rheometer of Visualization Experimental Study. Engineering Plastics Application, 2008 , (9) : 38-40.
Google Scholar
[5]
R. B Guo. Calcium Carbonate to Enhance Toughening Research of Polyethylene. Journal of Shandong Institute of Light Industry, 2011, 5, 8-10.
Google Scholar
[6]
Y. Z Liu, H. Y Li. Development of Calcium Carbonate and Polyethylene Composite Materials. Journal of Xi 'an Petroleum University, 2006 , 7 (4) : 21-24.
Google Scholar
[7]
L. F Zhao, J Li. Improve the high fill polyethylene/calcium carbonate processing performance research. Journal of Shandong University of Science and Technology, 2010, (2): 25-29.
Google Scholar
[8]
G. S Zeng, J. P Zhai. Apparent Viscosity of Polymer Melt Under Vibration Force Field the Molecular Dynamics. Journal of Chemical Engineering, 2007, (12): 3165-3169.
Google Scholar
[9]
Z. J Qin, S. C Li, H. L Hu. Study on Preparation and Properties of LLDPE/nanometer ZnO Composites.Plastics Industry, 2010, 38(2): 12-14.
Google Scholar
[10]
Z.F. Luo, R Huang, A Lu, B. H Cai, W. Y Fan. Nano CaCO3 to Enhance Toughening HDPE Composite Materials. China Plastics, 2000, 8 (8): 14-17.
Google Scholar
[11]
H. W Wu, R. C Zheng, Z. W Xie. Enhancing Mechanical Properties and Magnetic Performance of Plastics Magnet via Mixing under Vibration Force Field. Journal of Materials Processing Technology, 2009 (5): 79-82.
DOI: 10.1016/j.jmatprotec.2008.03.039
Google Scholar
[12]
J. Z Zhang , P. Jin, H. L Ren. The Constitutive Relation of Polymer Melt Under Vibration Force Field. The Research Progress of China Plastics, 2001 (6) : 53-59.
Google Scholar
[13]
R. B Guo. Calcium Carbonate to Enhance Toughening Research of Polyethylene. Journal of Shandong Institute of Light Industry, 2011, 5, 8-10.
Google Scholar
[14]
Z. B Gao, Z Gu, G. J Song. Structure and Performance of HDPE/LLDPE/OMMT Nano composites . Plastics, 2011, 40(1): 11-13.
Google Scholar
[15]
Y. Y Deng , S Zhang, S. G Zhao . Modification of Nano-CaCO3 and Its Application on Polymer Composites. Plastics Science and Technology. 2007, 35(4): 46-49.
Google Scholar
[16]
J. X Li, J Wu. Impact Additives on the properties of aluminum hydroxide and magnesium carbonate compound with flame retardant LLDPE . Plastics Science and Technology, 2011, 39(4): 107-109.
Google Scholar
[17]
H. Y Wang, H. Y Liu, X. H Xu, J. H Hu . Exploitation and Application of CaCO3Reinforced and Toughened PE Master batch, China Plastics Industry, 2005, 33, 234-236.
Google Scholar
[18]
X. H Lan. Research Progress of Calcium carbonate modification of high density polyethylene . China's Powder Industry. 2010. 03: 4-7.
Google Scholar
[19]
J. H Liu, M. X Qiao. Research Progress on Toughening Modification of High Density Polyethylene. Plastics Science and Technology, 2013, 42(3): 99-102.
Google Scholar
[20]
S Li ,P. Z Wang, X. C Wang Study on Properties of LDPE Composite Filled by Nano- CaCO3 . Modern Plastics Processing and Applications. 2003, 12(15): 11-13.
Google Scholar