Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method

Fe3O4/wood fiber composites are prepared with a green mechanical method using only distilled water as a solvent without any chemical agents, and then a binderless composite board with high mechanical properties is obtained via a hot-press for electromagnetic (EM) absorption. The fibers are connected...

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Main Authors: Baokang Dang, Yipeng Chen, Hanwei Wang, Bo Chen, Chunde Jin, Qingfeng Sun
Format: Article
Language:English
Published: MDPI AG 2018-01-01
Series:Nanomaterials
Subjects:
Online Access:http://www.mdpi.com/2079-4991/8/1/52
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spelling doaj-8c2c1171fd1a4c85be2bd9565b7bbafe2020-11-24T23:47:12ZengMDPI AGNanomaterials2079-49912018-01-01815210.3390/nano8010052nano8010052Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green MethodBaokang Dang0Yipeng Chen1Hanwei Wang2Bo Chen3Chunde Jin4Qingfeng Sun5School of Engineering, Zhejiang A&F University, Hangzhou 311300, ChinaSchool of Engineering, Zhejiang A&F University, Hangzhou 311300, ChinaSchool of Engineering, Zhejiang A&F University, Hangzhou 311300, ChinaZhejiang New Wood Material Technology Co., Ltd., Ningbo 315300, ChinaSchool of Engineering, Zhejiang A&F University, Hangzhou 311300, ChinaSchool of Engineering, Zhejiang A&F University, Hangzhou 311300, ChinaFe3O4/wood fiber composites are prepared with a green mechanical method using only distilled water as a solvent without any chemical agents, and then a binderless composite board with high mechanical properties is obtained via a hot-press for electromagnetic (EM) absorption. The fibers are connected by hydrogen bonds after being mechanically pretreated, and Fe3O4 nanoparticles (NPs) are attached to the fiber surface through physical adsorption. The composite board is bonded by an adhesive, which is provided by the reaction of fiber composition under high temperature and pressure. The Nano-Fe3O4/Fiber (NFF) binderless composite board shows remarkable microwave absorption properties and high mechanical strength. The optional reflection loss (RL) of the as-prepared binderless composite board is −31.90 dB. The bending strength of the NFF binderless composite board is 36.36 MPa with the addition of 6% nano-Fe3O4, the modulus of elasticity (MOE) is 6842.16 MPa, and the internal bond (IB) strength is 0.81 MPa. These results demonstrate that magnetic nanoparticles are deposited in binderless composite board by hot pressing, which is the easiest way to produce high mechanical strength and EM absorbers.http://www.mdpi.com/2079-4991/8/1/52wood fiber compositesFe3O4 nanoparticleselectromagnetic absorption propertiesmechanical properties
collection DOAJ
language English
format Article
sources DOAJ
author Baokang Dang
Yipeng Chen
Hanwei Wang
Bo Chen
Chunde Jin
Qingfeng Sun
spellingShingle Baokang Dang
Yipeng Chen
Hanwei Wang
Bo Chen
Chunde Jin
Qingfeng Sun
Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
Nanomaterials
wood fiber composites
Fe3O4 nanoparticles
electromagnetic absorption properties
mechanical properties
author_facet Baokang Dang
Yipeng Chen
Hanwei Wang
Bo Chen
Chunde Jin
Qingfeng Sun
author_sort Baokang Dang
title Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
title_short Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
title_full Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
title_fullStr Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
title_full_unstemmed Preparation of High Mechanical Performance Nano-Fe3O4/Wood Fiber Binderless Composite Boards for Electromagnetic Absorption via a Facile and Green Method
title_sort preparation of high mechanical performance nano-fe3o4/wood fiber binderless composite boards for electromagnetic absorption via a facile and green method
publisher MDPI AG
series Nanomaterials
issn 2079-4991
publishDate 2018-01-01
description Fe3O4/wood fiber composites are prepared with a green mechanical method using only distilled water as a solvent without any chemical agents, and then a binderless composite board with high mechanical properties is obtained via a hot-press for electromagnetic (EM) absorption. The fibers are connected by hydrogen bonds after being mechanically pretreated, and Fe3O4 nanoparticles (NPs) are attached to the fiber surface through physical adsorption. The composite board is bonded by an adhesive, which is provided by the reaction of fiber composition under high temperature and pressure. The Nano-Fe3O4/Fiber (NFF) binderless composite board shows remarkable microwave absorption properties and high mechanical strength. The optional reflection loss (RL) of the as-prepared binderless composite board is −31.90 dB. The bending strength of the NFF binderless composite board is 36.36 MPa with the addition of 6% nano-Fe3O4, the modulus of elasticity (MOE) is 6842.16 MPa, and the internal bond (IB) strength is 0.81 MPa. These results demonstrate that magnetic nanoparticles are deposited in binderless composite board by hot pressing, which is the easiest way to produce high mechanical strength and EM absorbers.
topic wood fiber composites
Fe3O4 nanoparticles
electromagnetic absorption properties
mechanical properties
url http://www.mdpi.com/2079-4991/8/1/52
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AT yipengchen preparationofhighmechanicalperformancenanofe3o4woodfiberbinderlesscompositeboardsforelectromagneticabsorptionviaafacileandgreenmethod
AT hanweiwang preparationofhighmechanicalperformancenanofe3o4woodfiberbinderlesscompositeboardsforelectromagneticabsorptionviaafacileandgreenmethod
AT bochen preparationofhighmechanicalperformancenanofe3o4woodfiberbinderlesscompositeboardsforelectromagneticabsorptionviaafacileandgreenmethod
AT chundejin preparationofhighmechanicalperformancenanofe3o4woodfiberbinderlesscompositeboardsforelectromagneticabsorptionviaafacileandgreenmethod
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