材料科学
复合材料
胶粘剂
制作
紧迫的
复合数
杨氏模量
热压
弹性模量
弹性(物理)
模数
位阻效应
机械强度
抗弯强度
工程木材
比模量
热压
粘结强度
动态力学分析
弯曲模量
先进复合材料
粘接
作者
Xilin Zhang,Zheng Liu,Zhezhe Zhou,Mark Lynch,Jianzhang Li,Jianzhang Li,Paulomi Burey,Jingchao Li,Jingchao Li,Cheng Zhang,Qiang Gao,Pingan Song
摘要
ABSTRACT Developing fully reprocessable engineered wood composites (EWCs) with high mechanical strength under mild fabrication conditions remains a significant challenge. Here, a hyperbranched adhesive with complementary imine‐bond and hydrogen‐bond networks was designed and combined with wood particles to fabricate a wood composite (WP/HTP) by hot pressing at 120°C. The hyperbranched structure and multiple hydrogen bonds of the adhesive minimize steric hindrance while facilitating molecular‐chain mobility, thereby synergistically accelerating imine‐bond exchange. The WP/HTP exhibits outstanding reprocessability, retaining 100% of its mechanical properties after three cycles of reprocessing. Meanwhile, the reprocessed WP/HTP exhibits a modulus of rupture (MOR) of 89 MPa and a modulus of elasticity (MOE) of 5.2 GPa, far surpassing those of current commercial EWCs, which typically exhibit recovery rates of 3%–18%, MOR of 1–5 MPa, and MOE of 0.1–0.8 GPa. This study provides a practical strategy for fabricating strong, reprocessable EWCs for advanced manufacturing and represents a fundamental approach to addressing the wood‐waste problem.
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