Crystallization behavior of blends of high-density polyethylene with novel linear low-density polyethylene

被引:35
作者
Zhao, Y [1 ]
Liu, SS [1 ]
Yang, DC [1 ]
机构
[1] CHINESE ACAD SCI, CHANGCHUN INST APPL CHEM, POLYMER PHYS LAB, CHANGCHUN 130022, PEOPLES R CHINA
关键词
D O I
10.1002/macp.1997.021980511
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Blends of high-density polyethylene (HDPE) with novel linear low-density polyethylene (LLDPE) samples in the whole range of compositions were investigated by means of differential scanning calorimetry (DSC), small-angle X-ray scattering (SAXS) and wide-angle X-ray diffraction (WAXD). The LLDPEs are ethylene/octene-1 copolymers prepared with a single-site catalyst, with a narrower distribution of branches compared to Ziegler-Natta type polymers. It was found that cocrystallization or separate crystallization in the blends profoundly depends on the content of branches in the LLDPE, while the critical branch content of the novel LLDPE for separate crystallization is much lower than that of commercial LLDPE (prepared with Ziegler-Natta catalysts). This implies that the miscibility of linear and branched polyethylene is also affected by the distribution of branches. The marked expansion of the unit cell in cocrystals, which are formed by HDPE with the novel LLDPE, indicates that the branches are included in the crystal lattice during the cocrystallization process. The result is very helpful to understand the phenomenon that the unit cell dimensions of commercial branched polyethylene are larger than those of linear polyethylene.
引用
收藏
页码:1427 / 1436
页数:10
相关论文
共 26 条
[1]   DISTRIBUTION OF CHAIN DEFECTS AND MICROSTRUCTURE OF MELT CRYSTALLIZED POLYETHYLENE [J].
BALTACALLEJA, FJ ;
GONZALEZORTEGA, JC ;
MARTINEZDESALAZAR, J .
POLYMER, 1978, 19 (09) :1094-1099
[2]   PHASE-SEPARATION IN POLYETHYLENE MELTS [J].
BARHAM, PJ ;
HILL, MJ ;
KELLER, A ;
ROSNEY, CCA .
JOURNAL OF MATERIALS SCIENCE LETTERS, 1988, 7 (12) :1271-1275
[3]  
BRANA MTC, 1989, POLYMER, V30, P410
[4]   DIFFERENTIAL THERMAL ANALYSIS OF LINEAR POLYETHYLENE-HIGH PRESSURE POLYETHYLENE BLENDS [J].
CLAMPITT, BH .
ANALYTICAL CHEMISTRY, 1963, 35 (04) :577-&
[5]   MOLECULAR STRUCTURE OF POLYETHYLENE .12. INTRINSIC VISCOSITIES OF POLYETHYLENE SOLUTIONS [J].
DELACUESTA, MO ;
BILLMEYER, FW .
JOURNAL OF POLYMER SCIENCE PART A-GENERAL PAPERS, 1963, 1 (05) :1721-&
[6]   CHARACTERIZATION OF MULTICOMPONENT POLYETHYLENE BLENDS BY DIFFERENTIAL SCANNING CALORIMETRY [J].
DONATELLI, AA .
JOURNAL OF APPLIED POLYMER SCIENCE, 1979, 23 (10) :3071-3076
[7]   PHASE SEGREGATION IN MELTS OF BLENDS OF LINEAR AND BRANCHED POLYETHYLENE [J].
HILL, MJ ;
BARHAM, PJ ;
KELLER, A ;
ROSNEY, CCA .
POLYMER, 1991, 32 (08) :1384-1393
[8]   LIQUID LIQUID-PHASE SEPARATION IN MELTS OF BLENDS OF LINEAR WITH BRANCHED POLYETHYLENES - MORPHOLOGICAL EXPLORATION OF THE PHASE-DIAGRAM [J].
HILL, MJ ;
BARHAM, PJ .
POLYMER, 1992, 33 (19) :4099-4107
[9]   CHARACTERIZATION AND PROPERTIES OF POLYETHYLENE BLENDS .1. LINEAR LOW-DENSITY POLYETHYLENE WITH HIGH-DENSITY POLYETHYLENE [J].
HU, SR ;
KYU, T ;
STEIN, RS .
JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 1987, 25 (01) :71-87
[10]   CHARACTERIZATION OF POLYOLEFINS BY DIFFERENTIAL THERMAL ANALYSIS [J].
KE, B .
JOURNAL OF POLYMER SCIENCE, 1960, 42 (139) :15-23