Use impregnation and densification to improve mechanical properties and combustion performance of Chinese fir

Kong Yue, Jinhao Wu, Liqin Xu, Zhongqiu Tang, Zhangjing Chen, Weiqing Liu, Lu Wang

Research output: Contribution to journalArticlepeer-review

58 Scopus citations

Abstract

The abundant fast-growing Chinese fir is a low-grade building material due to its low mechanical strength and poor combustion performance. The impregnation with boric phenol formaldehyde resin (BPF) improve the mechanical properties and combustion performance in laboratory. Chinese fir wood was thermos-mechanically densified in laboratory scale with varying compression ratios after wood was impregnated with BPF resin with a concentration of 30%. The effects of the combination of BPF resin impregnation and compression ratio on mechanical properties and combustion performance were discussed. The test results have showed that the mechanical properties at high temperature and combustion performance were improved significantly. The higher the compression ratio, the better the mechanical properties and combustion performance of the BPF-densified-specimen.

Original languageEnglish
Article number118101
JournalConstruction and Building Materials
Volume241
DOIs
StatePublished - 30 Apr 2020

Keywords

  • Boric-phenol-formaldehyde resin impregnation
  • Combustion performance
  • Densification
  • Fast-growing Chinese fir
  • Mechanical properties

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