4.6 Article

Physiochemical characterization and thermal behaviour of transparent wood composite

期刊

MATERIALS TODAY COMMUNICATIONS
卷 31, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.mtcomm.2022.103767

关键词

Lignin; Transparent wood composite; Optical transmittance; Scanning electron microscopy; Thermal behaviour

资金

  1. Indian Council of Forestry Research and Education, Dehradun [IWST/WSP/XI/174]
  2. Biotechnology Industry Research Assistance Council, New Delhi [BT/AIR01050/PACE-20/20]
  3. Department of Science and Technology (DST) , New Delhi [DST/INSPIRE Fellowship/ [IF190269]]
  4. Surface Engineering Division, CSIR-National Aerospace Laboratories Bangalore

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This paper describes the fabrication of large size transparent wood composite (TWC) using a two-step lignin modification bleaching process and polymer infiltration. The TWC exhibits high optical transmittance, good mechanical properties, thermal stability, and low thermal conductivity.
This paper describes the fabrication of large size transparent wood composite (TWC) from longitudinal veneers of three hardwood wood species viz., Populus deltoides (Poplar), Grevillea robusta (Silver oak) and Melia dubia (Melia) based on two-step lignin modification bleaching process and polymer (epoxy resin) infiltration. High optical transmittance of-83.5%,-76.7% and-72.8% was obtained at 550 nm wavelength for TWC prepared using 2 mm thick veneers of Poplar, Melia and Silver oak, respectively. Fourier transform infrared spectroscopy and scanning electron microscopy validate preservation of substantial lignin and successful inclusion of polymer in the wood micro-structure. X-Ray diffraction technique was used for analyzing crystallinity in wood and TWC material. Thermal behavior of wood and TWC was studied using thermogravimetric analysis and differential scanning calorimetry. TWC exhibited low density, good mechanical properties, low thermal conductivity (0.36 W/mK) and good thermal stability.

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