Transparent Bamboo with Multiple Light Transmittance levels, Fiber Textures, and Colors Based on the Gradient Structure of Bamboo

Author:

Zhang Weizhong1,Li Xuelian1,Zhang Minghao1,Duan Zhengjie1,Zu Qing1,Rao Fei1,Yu Haixia2

Affiliation:

1. School of Art and Design Zhejiang Sci‐Tech University Hangzhou 310018 China

2. Zhejiang Academy of Forestry Zhejiang Provincial Key Laboratory of Biological and Chemical Utilization of Forest Resources 399# Liuhe Road Xihu District Hangzhou Zhejiang 310023 China

Abstract

Transparent bamboo (TB) is a new type of biomass and light transmitting material with potential to serve as a substitute for transparent wood. However, the potential of the bamboo structure in preparing transparent composites is underexplored. Inspired by the functional gradient structure of bamboo, we used a simple and efficient two‐step strategy to prepare TB with different transmittance levels, fiber textures, and colors. We evaluated the performance of single‐ and multilayer TB with various fiber volume contents prepared using different lamination methods. We found that the optical and mechanical properties of TB differed with the fiber volume content and the lamination method used. TB composed of veneers with low fiber volume showed the highest light transmittance (44.6%), whereas TB composed of veneers with high fiber volume had the highest tensile strength (45.7 MPa). In terms of water resistance, cross lamination inhibited expansion in width (water absorption rate, 16.37–21.26%) and thickness (thickness swelling rate, 10.22–21.74%). The lamination structure and fiber volume content in the preparation of TB should be selected according to the specific application scenarios. The graded utilization of bamboo veneer with a fiber gradient can effectively realize the rational allocation of bamboo resources and promote sustainable development.This article is protected by copyright. All rights reserved.

Funder

Natural Science Foundation of Zhejiang Province

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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