| 注册
首页|期刊导航|北京林业大学学报|铺装结构及密度对玉米秸秆轻质复合板性能的影响

铺装结构及密度对玉米秸秆轻质复合板性能的影响

张丽 张峰 张扬 漆楚生 母军

北京林业大学学报2016,Vol.38Issue(12):121-127,7.
北京林业大学学报2016,Vol.38Issue(12):121-127,7.DOI:10.13332/j.1000-1522.20160175

铺装结构及密度对玉米秸秆轻质复合板性能的影响

Effects of formation structure and density on properties of lightweight cornstalk composites

张丽 1张峰 1张扬 1漆楚生 1母军1

作者信息

  • 1. 木质材料科学与应用教育部重点实验室,木材科学与工程北京市重点实验室,北京林业大学材料科学与技术学院
  • 折叠

摘要

Abstract

In order to make full use of the cornstalk and prepare the lightweight composites with superior properties, the cornstalk was splited into filamentous structure units according to the analysis of both internal and external surface of it. Then these filamentous structure units were used to fabricate the composite by different formation modes of orientation and non-orientation, and urea formaldehyde resin was used as adhesive. The density of the fabricated composites was 0. 3, 0. 4, 0. 5, 0. 6 g/cm3 , respectively. The influence of formation structure and density on the physical and mechanical properties of the lightweight composites with cornstalk was explored, including the modulus of rupture ( MOR ) , modulus of elasticity ( MOE ) , internal bond strength ( IB ) , thickness swelling ( TS ) and water absorption ( WA ) . The results showed that MOR, MOE and IB of the lightweight composites were enhanced by the formation mode of orientation. The MOR// and MOE// values of OCSB were about 3 times, and the IB value was about 4--5 times as much as HCSB with the same density. The MOR//, MOE// were significantly greater than transverse static bending strength ( MOR^) and transverse elastic modulus ( MOE^) . When the density was 0. 3 g/cm3 , MOR// was about 3. 5 times as much as MOR^, MOE// was about 5 times as much as MOE ^;The MOR ^of OCSB was larger than MOR of HCSB ( except 0. 3 g/cm3 ) , the MOE ^of OCSB was smaller than MOE of HCSB. The MOR and MOE increased with the increasing of density. When the density was 0. 6 g/cm3 , the MOR//of OCSB was 25. 24 MPa, the MOE// of OCSB reached 4 216 MPa, the physical and mechanical properties can satisfy the civil buildings. In addition, the WA and TS of OCSB were smaller than HCSB.

关键词

玉米秸秆/脲醛树脂/铺装结构/轻质复合板/物理力学性能

Key words

cornstalk/urea formaldehyde resin/formation structure/lightweight composites/physical and mechanical properties

分类

农业科技

引用本文复制引用

张丽,张峰,张扬,漆楚生,母军..铺装结构及密度对玉米秸秆轻质复合板性能的影响[J].北京林业大学学报,2016,38(12):121-127,7.

基金项目

北京市教育委员会共建项目“非木质材料科学利用技术及应用”、“948”国家林业局引进项目(2015-4-50)。 (2015-4-50)

北京林业大学学报

OA北大核心CSCDCSTPCD

1000-1522

访问量0
|
下载量0
段落导航相关论文