Nanoporous structure of the cell walls of polycarbonate foams

被引:1
|
作者
Pengjian Gong
Takashi Taniguchi
Masahiro Ohshima
机构
[1] Kyoto University,Department of Chemical Engineering
来源
关键词
Foam; Expansion Ratio; Spinodal Decomposition; Plasticization Effect; Bubble Nucleation;
D O I
暂无
中图分类号
学科分类号
摘要
Using CO2 to prepare microcellular polycarbonate foams resulted in a pore diameter of 45 nm and a pore density of 108 cm−2 on the walls of microscale cells, which created nano/micro foams with an open cell structure. In this study, the craze nucleation theory and the bubble nucleation theory of foaming were combined to explain the mechanism of the foaming-induced nanopores (microvoids) on the cell walls. In the foaming process, the strain energy was developed in the cell walls by bubble nucleation and growth. With large strain energy, a nanoporous structure of the cell walls was formed by initiation of crazing. Because the foaming temperature affected the strain energy in the cell wall, the temperature became a key factor of forming microcellular structure as well as the nanopores on the cell walls. Our experimental results showed that the diameter and density of the nanopores were determined by the competitive movements between chain stretching and relaxation. Furthermore, certain solvents, such as acetone, were found to increase the nanopore density of the walls by exploiting the plasticization effect of the solvent on the reduction of surface tension and viscosity.
引用
收藏
页码:2605 / 2617
页数:12
相关论文
共 50 条
  • [1] Nanoporous structure of the cell walls of polycarbonate foams
    Gong, Pengjian
    Taniguchi, Takashi
    Ohshima, Masahiro
    JOURNAL OF MATERIALS SCIENCE, 2014, 49 (06) : 2605 - 2617
  • [2] A novel nanoporous structure on the surface of bubbles in polycarbonate foams
    Fukasawa, Yoshihito
    Chen, Jienbin
    Saito, Hiromu
    JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 2008, 46 (08) : 843 - 846
  • [3] Strengthening mechanisms in nanoporous alloy foams with a hierarchical structure
    Loaiza, Alexandra
    Tsai, Jung-Ting
    Bahr, David F.
    JOURNAL OF MATERIALS SCIENCE, 2022, 57 (28) : 13660 - 13670
  • [4] Nanoporous structure development in PEI thin film foams
    Patel, Zainab S.
    Sridhar, Santhosh
    Nadella, Krishna
    Kumar, Vipin
    Nuhnen, Alexander
    Janiak, Christoph
    JOURNAL OF MATERIALS SCIENCE, 2023, 58 (44) : 17113 - 17125
  • [5] Nanoporous structure development in PEI thin film foams
    Zainab S. Patel
    Santhosh Sridhar
    Krishna Nadella
    Vipin Kumar
    Alexander Nuhnen
    Christoph Janiak
    Journal of Materials Science, 2023, 58 : 17113 - 17125
  • [6] Strengthening mechanisms in nanoporous alloy foams with a hierarchical structure
    Alexandra Loaiza
    Jung-Ting Tsai
    David F. Bahr
    Journal of Materials Science, 2022, 57 : 13660 - 13670
  • [7] Nanoporous Metal Foams
    Tappan, Bryce C.
    Steiner, Stephen A., III
    Luther, Erik P.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2010, 49 (27) : 4544 - 4565
  • [8] Open-Cell Foams of Polyethylene Terephthalate/Bisphenol A Polycarbonate Blend
    Gong, Pengjian
    Ohshima, Masahiro
    POLYMER ENGINEERING AND SCIENCE, 2015, 55 (02): : 375 - 385
  • [9] Vanadium oxide foams: An insight into the structure of the vanadium oxide walls
    Durupthy, O
    Jaber, M
    Steunou, N
    Maquet, J
    Chandrappa, GT
    Livage, J
    CHEMISTRY OF MATERIALS, 2005, 17 (25) : 6395 - 6402
  • [10] Scaling equation for yield strength of nanoporous open-cell foams
    Hodge, A. M.
    Biener, J.
    Hayes, J. R.
    Bythrow, P. M.
    Volkert, C. A.
    Hamza, A. V.
    ACTA MATERIALIA, 2007, 55 (04) : 1343 - 1349