Wood cellulose biocomposites with fibrous structures at micro- and nanoscale

被引:143
|
作者
Sehaqui, Houssine [1 ]
Allais, Mael [2 ]
Zhou, Qi [1 ,3 ]
Berglund, Lars A. [1 ,4 ]
机构
[1] Royal Inst Technol, Dept Fibre & Polymer Technol, SE-10044 Stockholm, Sweden
[2] Ecole Natl Super Arts & Metiers, F-33405 Talence, France
[3] Royal Inst Technol, Albanova Univ Ctr, Sch Biotechnol, SE-10691 Stockholm, Sweden
[4] Royal Inst Technol, Wallenberg Wood Sci Ctr, SE-10044 Stockholm, Sweden
关键词
Nanofibrillated cellulose (NFC); Fibers; Nano composites; Mechanical properties; Scanning electron microscopy (SEM); COMPOSITES; PULP; NANOCOMPOSITES; TRANSPARENT; AEROGELS; FIBERS; PAPER;
D O I
10.1016/j.compscitech.2010.12.007
中图分类号
TB33 [复合材料];
学科分类号
摘要
High-strength composites from wood fiber and nanofibrillated cellulose (NFC) were prepared in a semiautomatic sheet former. The composites were characterized by tensile tests, dynamic mechanical thermal analysis, field-emission scanning electron microscopy, and porosity measurements. The tensile strength increased from 98 MPa to 160 MPa and the work to fracture was more than doubled with the addition of 10% NFC to wood fibers. A hierarchical structure was obtained in the composites in the form of a micro-scale wood fiber network and an additional NFC nanofiber network linking wood fibers and also occupying some of the micro-scale porosity. Deformation mechanisms are discussed as well as possible applications of this biocomposites concept. (C) 2010 Published by Elsevier Ltd.
引用
收藏
页码:382 / 387
页数:6
相关论文
共 50 条
  • [21] Micro- and nanoscale tensile testing of materials
    Gianola, D. S.
    Eberl, C.
    JOM, 2009, 61 (03) : 24 - 35
  • [22] Magnetocaloric materials: From micro- to nanoscale
    João H. Belo
    Ana L. Pires
    João P. Araújo
    André M. Pereira
    Journal of Materials Research, 2019, 34 : 134 - 157
  • [23] Micro- and nanoscale tensile testing of materials
    D. S. Gianola
    C. Eberl
    JOM, 2009, 61
  • [24] Micro- and Nanoscale Engineering of Cell Signaling
    Kam, L. C.
    Shen, K.
    Dustin, M. L.
    ANNUAL REVIEW OF BIOMEDICAL ENGINEERING, VOL 15, 2013, 15 : 305 - 326
  • [25] Micro- and nanoscale instabilities of deformation in polymers
    Shpeizman, V. V.
    Yakushev, P. N.
    Peschanskaya, N. N.
    Mukhina, Zh V.
    Shvedov, A. S.
    Cheremisov, V. G.
    Smolyanskii, A. S.
    PHYSICS OF THE SOLID STATE, 2012, 54 (06) : 1229 - 1234
  • [26] Soft lithography for micro- and nanoscale patterning
    Qin, Dong
    Xia, Younan
    Whitesides, George M.
    NATURE PROTOCOLS, 2010, 5 (03) : 491 - 502
  • [27] Deformation Mapping in Micro- and Nanoscale Fibers
    Garman, Christina
    Bindert, Natalie
    Sunkara, Adhira
    Paliulis, Leocadia
    Ebenstein, Donna M.
    PROBING MECHANICS AT NANOSCALE DIMENSIONS, 2009, 1185 : 15 - +
  • [28] Micro fluidic platform for manipulation of micro- and nanoscale particles
    Kadaksham, J
    Batton, J
    Singh, P
    Aubry, N
    ELECTRONIC AND PHOTONIC PACKAGING, ELECTRICAL SYSTEMS AND PHOTONIC DESIGN AND NANOTECHNOLOGY - 2003, 2003, : 835 - 840
  • [29] Wet/Dry Cycling Durability of Cement Mortar Composites Reinforced with Micro- and Nanoscale Cellulose Pulps
    Claramunt, Josep
    Ardanuy, Monica
    Fernandez-Carrasco, Lucia J.
    BIORESOURCES, 2015, 10 (02): : 3045 - 3055
  • [30] ORDERING ALLOYS WITH MICRO- AND NANOSCALE STRUCTURES BASED ON CUBIC LATTICES: MECHANICAL AND THERMODYNAMIC PROPERTIES
    Latypova, M. A.
    Gelmanova, Z. S.
    USPEKHI FIZIKI METALLOV-PROGRESS IN PHYSICS OF METALS, 2025, 26 (01): : 26 - 63