Influence of molecular structure on the foamability of polypropylene: Linear and extensional rheological fingerprint

被引:31
作者
Bahreini, Ebrahim [1 ]
Aghamiri, Seyed Foad [1 ]
Wilhelm, Manfred [2 ]
Abbasi, Mahdi [1 ,2 ]
机构
[1] Univ Isfahan, Chem Engn Dept, Fac Engn, Esfahan, Iran
[2] Karlsruhe Inst Technol, Inst Chem Technol & Polymer Chem ITCP, Karlsruhe, Germany
关键词
Batch foam; shear and extensional rheology; long chain branching; molecular weight; polypropylene; van Gurp-Palmen plot; molecular stress function model; SUPERCRITICAL CARBON-DIOXIDE; CHAIN BRANCHED POLYPROPYLENE; MECHANICAL-PROPERTIES; MICROCELLULAR FOAMS; POLYMER MELTS; SEMICRYSTALLINE POLYMERS; CONSTITUTIVE-EQUATIONS; PROCESSING PARAMETERS; DENSITY POLYETHYLENE; CELL MORPHOLOGY;
D O I
10.1177/0021955X17700097
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The foaming structure and rheological properties of four different isotactic homo-polypropylenes with various molecular weights and an isotactic long chain branched polypropylene were investigated to find a suitable rheological fingerprint for PP foams. The molecular weight distribution and thermal properties were measured using GPC-MALLS and differential scanning calorimetry, respectively. Small amplitude oscillatory shear data and uniaxial extensional experiments were analyzed using the frameworks of van Gurp-Palmen plot ( vs. |G*|) and the molecular stress function model, respectively. These analyses were used to find a correlation between the molecular structure, rheological properties and foaming structures of linear and long chain branching polypropylenes. Two linear viscoelastic characteristics, |G*| at =60 degrees and |*| at =5rad/s were used as criteria for foamability of these polymers, where decreasing of both parameters by increasing the long chain branching content results in smaller cell size and higher cell density. The molecular stress function model was able to quantify the strain hardening properties of long chain branching blends using small amplitude oscillatory shear data and two nonlinear material parameters, 12.2 and 1 <= f(max)(2) <= 600, where the minimum and maximum values of these parameters belong to the linear and long chain branched polypropylene, respectively. Increasing the long chain branched polypropylene content of the PP blends increased strain hardening, and therefore improved the foaming characteristics significantly by suppressing the coalescence of cells. Dilution of linear PP with only 10wt% of long chain branched polypropylene enhanced the cell density from 5.7x10(6) to 2.7x10(7) cell/cm(3) and reduced the average cell diameter from 58 to 26 mu m, respectively, while their volume expansion ratio remained in the same range of 2-3. Increasing of long chain branching to 50 and 100wt% enhanced the V.E.R. to 6.2 and 7.8, respectively.
引用
收藏
页码:515 / 543
页数:29
相关论文
共 54 条
  • [1] Investigation of the rheological behavior of industrial tubular and autoclave LDPEs under SAOS, LAOS, transient shear, and elongational flows compared with predictions from the MSF theory
    Abbasi, Mahdi
    Ebrahimi, Nadereh Golshan
    Wilhelm, Manfred
    [J]. JOURNAL OF RHEOLOGY, 2013, 57 (06) : 1693 - 1714
  • [2] Elongational viscosity of LDPE with various structures: employing a new evolution equation in MSF theory
    Abbasi, Mahdi
    Ebrahimi, Nadereh Golshan
    Nadali, Mahdi
    Esfahani, Masood Khabazian
    [J]. RHEOLOGICA ACTA, 2012, 51 (02) : 163 - 177
  • [3] Study of the Influence of the Pressure Drop Rate on the Foaming Behavior and Dynamic-Mechanical Properties of CO2 Dissolution Microcellular Polypropylene Foams
    Antunes, Marcelo
    Realinho, Vera
    Ignacio Velasco, Jose
    [J]. JOURNAL OF CELLULAR PLASTICS, 2010, 46 (06) : 551 - 571
  • [4] Long-chain branched polypropylenes by electron beam irradiation and their rheological properties
    Auhl, D
    Stange, J
    Münstedt, H
    Krause, B
    Voigt, D
    Lederer, A
    Lappan, U
    Lunkwitz, K
    [J]. MACROMOLECULES, 2004, 37 (25) : 9465 - 9472
  • [5] Tensile and impact properties of microcellular isotactic polypropylene (PP) foams obtained by supercritical carbon dioxide
    Bao, Jin-Biao
    Nyantakyi, Alex, Jr.
    Weng, Geng-Sheng
    Wang, Jia
    Fang, Yu-Wei
    Hu, Guo-Hua
    [J]. JOURNAL OF SUPERCRITICAL FLUIDS, 2016, 111 : 63 - 73
  • [7] Effect of Molecular Weight, Polydispersity, and Monomer of Linear Homopolymer Melts on the Intrinsic Mechanical Nonlinearity 3Q0(ω) in MAOS
    Cziep, Miriam A.
    Abbasi, Mandi
    Heck, Matthias
    Arens, Lukas
    Wilhelm, Manfred
    [J]. MACROMOLECULES, 2016, 49 (09) : 3566 - 3579
  • [8] Dealy JM, 2006, LINEAR VISCOELASTICI, P91
  • [9] Doi M., 1986, The Theory of Polymer Dynamics
  • [10] Effect of the crystallinity and morphology on the microcellular foam structure of semicrystalline polymers
    Doroudiani, S
    Park, CB
    Kortschot, MT
    [J]. POLYMER ENGINEERING AND SCIENCE, 1996, 36 (21) : 2645 - 2662