Thermal stability and mechanical behavior of technical bamboo fibers/bio-based polyamide composites

被引:0
|
作者
Louise Lods
Tutea Richmond
Jany Dandurand
Eric Dantras
Colette Lacabanne
Jean-Michel Durand
Edouard Sherwood
Gilles Hochstetter
Philippe Ponteins
机构
[1] CIRIMAT,
[2] Université de Toulouse,undefined
[3] Physique des Polymères,undefined
[4] Cobratex,undefined
[5] Arkema,undefined
[6] Expleo Toulouse,undefined
关键词
Thermogravimetric analysis; Dynamic mechanical analysis; Bamboo fibers/polyamide composites; Technical bamboo fibers; Glassy modulus; Rubbery modulus;
D O I
暂无
中图分类号
学科分类号
摘要
The objective of this research is to tailor composites with continuous bamboo fibers as reinforcement of a bio-based polyamide (RilsanXD). Using mild chemical and mechanical treatment, technical bamboo fibers were extracted from Phyllostachys viridiglaucescens. They have an average diameter of 397 µm. Their average tensile strength is 323 MPa, and their average Young modulus is 26 GPa. Single ply bamboo fibers/polyamide composites were processed. Gravimetric analyses show that polyamide allows mild processing conditions at 200 °C, therefore permitting to make composites without degrading the fibrous reinforcement. Composites composition was determined from peak analyses of the mass derivative curve associated with bamboo situated at 330 °C. Composites with 60 m % of bamboo fibers were prepared and analyzed. SEM images observation of cryo-cuts shows the absence of voids between technical fibers and polyamide matrix. The cohesion in shear was tested by dynamic mechanical analyses. Comparative data recorded on the bio-based polyamide and the 60/40 bamboo fibers/polyamide composite show a significant improvement of the shear glassy modulus which is multiplied by 1.6 at 20 °C. This result is consistent with the continuity of matter between bamboo fibers and polyamide observed by SEM. This effect may be due to a dense network of static hydrogen bonds.
引用
收藏
页码:1097 / 1106
页数:9
相关论文
共 50 条
  • [41] Adsorption and dyeing properties of acid dye on bio-based polyamide 11 fibers
    He, Kaijun
    Chang, Shuo
    Cai, Yutao
    Wang, Tao
    Shen, Jiajia
    TEXTILE RESEARCH JOURNAL, 2023, 93 (19-20) : 4579 - 4588
  • [42] Influence of drawing and annealing on the structure and properties of bio-based polyamide 56 fibers
    Kang, Hongliang
    Wang, Zhe
    Lin, Na
    Hao, Xinmin
    Liu, Ruigang
    JOURNAL OF APPLIED POLYMER SCIENCE, 2022, 139 (48)
  • [43] Synthesis and comprehensive characterization of bio-based polyamide 56/6 Copolymer: Mechanical, Thermal, and processing properties
    Haoyu, Yang
    Xiaoqi, Zhang
    Yiming, Liu
    Lu, Mao
    Suqin, He
    Miaoming, Huang
    Hao, Liu
    Wanlin, Xu
    Wentao, Liu
    European Polymer Journal, 2024, 202
  • [44] Synthesis and comprehensive characterization of bio-based polyamide 56/6 Copolymer: Mechanical, Thermal, and processing properties
    Yang, Haoyu
    Zhang, Xiaoqi
    Liu, Yiming
    Mao, Lu
    He, Suqin
    Huang, Miaoming
    Hao, Liu
    Xu, Wanlin
    Liu, Wentao
    EUROPEAN POLYMER JOURNAL, 2024, 202
  • [45] Bio-based poly(hydroxyurethane)s of good thermal/mechanical properties upon insertion of polyamide segments
    Qin, Yao
    Wang, Yanyan
    Wang, Yuanmeng
    Zhao, Jingbo
    Cheng, Jue
    Zhang, Junying
    MATERIALS CHEMISTRY AND PHYSICS, 2025, 335
  • [46] MODELING OF THERMAL CONDUCTIVITY OF BIO-BASED BUILDING COMPOSITES
    Dietrich, Fabian
    Lapka, Piotr
    Furmanski, Piotr
    Sinka, Maris
    Bajare, Diana
    PROCEEDINGS OF CONV-22: INT SYMP ON CONVECTIVE HEAT AND MASS TRANSFER, 2022, 2022,
  • [47] Study on the unsaturated hydrogen bond behavior of bio-based polyamide 56
    Zhang, Shouyun
    Ma, Jinghong
    E-POLYMERS, 2019, 19 (01): : 23 - 31
  • [48] Investigation of the Characteristics of Bio-based Raw Materials: Technical Hemp Fibers
    Vershinina, A. V.
    Veselova, O. V.
    Ivanova, S. N.
    NANOBIOTECHNOLOGY REPORTS, 2023, 18 (01) : 64 - 72
  • [49] Investigation of the Characteristics of Bio-based Raw Materials: Technical Hemp Fibers
    A. V. Vershinina
    O. V. Veselova
    S. N. Ivanova
    Nanobiotechnology Reports, 2023, 18 : 64 - 72
  • [50] Mechanical properties for bio-based thermoset composites made from lactic acid, glycerol and viscose fibers
    Nima Esmaeili
    Fatimat Oluwatoyin Bakare
    Mikael Skrifvars
    Shahrzad Javanshir Afshar
    Dan Åkesson
    Cellulose, 2015, 22 : 603 - 613