An atomistic molecular dynamic model to study the properties of LLDPE and wax

被引:0
|
作者
M. F. T. Mosoabisane
C. G. C. E. van Sittert
A. S. Luyt
机构
[1] University of the Free State (Qwaqwa Campus),Department of Chemistry
[2] North-West University,Laboratory for Applied Molecular Modelling, Research Focus Area: Chemical Resource Beneficiation
[3] Qatar University,Center for Advanced Materials
来源
关键词
LLDPE; Wax; Molecular dynamics simulation;
D O I
暂无
中图分类号
学科分类号
摘要
Wax is often physically mixed with linear low-density polyethylene (LLDPE) to form a new polymer material. However, the morphology of these materials has not been described sufficiently, because molecular interaction at an atomic level was inadequately studied. Molecular dynamics (MD) simulation, using the Material Studio software as a computational tool, was available to develop models for wax and LLDPE to study their properties at an atomistic level. The models were validated by comparing the properties, such as solubility, density, and transition temperature, obtained with the models, with those obtained from experiments. After validation, the application of the model showed that the branch content of modelled LLDPE affected the glass transition temperature when the branch content was 70 per 1000 carbons for models with different branch lengths. The longer the branch length, the higher the glass transition temperature of LLDPE. However, the solubility parameter was unsuccessful in finding the length of LLDPE required to represent a single chain, because the properties of a copolymer are affected by the length of the chain, the number of branches, and their distribution on the backbone. The chain length of the wax showed no relationship to the solubility parameter in the solid state or in the melt. There was a decrease in the solubility parameter of the modelled LLDPE with an increase in temperature. The LLDPE and wax properties, examined through MD simulations, were within 10% of the experimental values.
引用
收藏
相关论文
共 50 条
  • [1] An atomistic molecular dynamic model to study the properties of LLDPE and wax
    Mosoabisane, M. F. T.
    van Sittert, C. G. C. E.
    Luyt, A. S.
    JOURNAL OF POLYMER RESEARCH, 2023, 30 (11)
  • [2] Molecular dynamics on blend miscibility of LLDPE and soft wax: An atomistic simulation and thermodynamic approach
    Mosoabisane, Mafereka Francis Tyson
    Van Sittert, Cornelia Gertina Catharina Elizabeth
    Luyt, Adriaan Stephanus
    EXPRESS POLYMER LETTERS, 2023, 17 (05): : 546 - 562
  • [3] Physical properties of blends of LLDPE and an oxidized paraffin wax
    Krupa, I
    Luyt, AS
    POLYMER, 2001, 42 (17) : 7285 - 7289
  • [4] Thermal and mechanical properties of extruded LLDPE/wax blends
    Krupa, I
    Luyt, AS
    POLYMER DEGRADATION AND STABILITY, 2001, 73 (01) : 157 - 161
  • [5] The effect of boron nitride, carbon nanotubes, and their synergy on the properties of LLDPE and LLDPE/wax blend
    Mokoena, Tiisetso Ephraim
    Mochane, Mokgaotsa Jonas
    Mokhena, Teboho Clement
    Motloung, Mary Tholwana
    Sefadi, Jeremiah Shale
    POLYMER ENGINEERING AND SCIENCE, 2022, 62 (10): : 3180 - 3193
  • [6] Comparative experimental and modelling study of the thermal and thermo-mechanical properties of LLDPE/wax blends
    Mafereka F. T. Mosoabisane
    Adriaan S. Luyt
    Cornelia G. C. E. van Sittert
    Journal of Polymer Research, 2022, 29
  • [7] Comparative experimental and modelling study of the thermal and thermo-mechanical properties of LLDPE/wax blends
    Mosoabisane, Mafereka F. T.
    Luyt, Adriaan S.
    van Sittert, Cornelia G. C. E.
    JOURNAL OF POLYMER RESEARCH, 2022, 29 (07)
  • [8] A study on thermodynamic and dynamic model for wax deposit in pipeline
    Jiang, GY
    Wu, M
    Gu, JB
    Zhou, SD
    ENERGY AND ENVIRONMENT, VOLS 1 AND 2, 2003, : 812 - 816
  • [9] Atomistic Molecular Dynamic Simulations of Multiferroics
    Wang, Dawei
    Weerasinghe, Jeevaka
    Bellaiche, L.
    PHYSICAL REVIEW LETTERS, 2012, 109 (06)
  • [10] Properties of oxidized phospholipid monolayers: An atomistic molecular dynamics study
    Khabiri, Morteza
    Roeselova, Martina
    Cwiklik, Lukasz
    CHEMICAL PHYSICS LETTERS, 2012, 519-20 : 93 - 99