Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing

In this work, micrometer copper-zinc alloy particles-reinforced particleboard wood flour/poly (lactic acid) (mCu-Zn/PWF/PLA) wood plastic composites with high gloss and antibacterial properties for 3D printing were prepared by a melt blending process. The structure and properties of the composites w...

Full description

Bibliographic Details
Main Authors: Feiwen Yang, Jianhui Zeng, Haibo Long, Jialin Xiao, Ying Luo, Jin Gu, Wuyi Zhou, Yen Wei, Xianming Dong
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/12/3/621
id doaj-11d6151f781e49e1a8336e157c25f1d6
record_format Article
spelling doaj-11d6151f781e49e1a8336e157c25f1d62020-11-25T03:03:25ZengMDPI AGPolymers2073-43602020-03-0112362110.3390/polym12030621polym12030621Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D PrintingFeiwen Yang0Jianhui Zeng1Haibo Long2Jialin Xiao3Ying Luo4Jin Gu5Wuyi Zhou6Yen Wei7Xianming Dong8Biomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaDepartment of Chemistry and the Tsinghua Center for Frotier Polymer Research, Tsinghua University, Beijing 10084, ChinaBiomass 3D Printing Materials Research Center, College of Materials and Energy, South China Agricultural University, Guangzhou 510642, ChinaIn this work, micrometer copper-zinc alloy particles-reinforced particleboard wood flour/poly (lactic acid) (mCu-Zn/PWF/PLA) wood plastic composites with high gloss and antibacterial properties for 3D printing were prepared by a melt blending process. The structure and properties of the composites with different contents of mCu-Zn were analyzed by means of mechanical testing, dynamic mechanical analysis, thermogravimetric analysis, differential scanning calorimetry, X-ray diffraction, scanning electron microscopy, and antibacterial testing. The results showed that the mechanical properties, thermal stability, and antibacterial performance of the composites were significantly improved, as mCu-Zn was added into the wood plastic composites. When adding 2 wt.% mCu-Zn, the flexural strength of mCu-Zn/PWF/PLA composites (with 5 wt.% of particleboard wood flour) (PWF) increased by 47.1% compared with pure poly (lactic acid) (PLA), and 18.9% compared with PWF/PLA wood plastic composites. The surface gloss was increased by 1142.6% compared with PWF/PLA wood plastic composites. Furthermore, the inhibition rates of mCu-Zn/PWF/PLA composites against Escherichia coli reached 90.43%. Therefore, this novel high gloss and antibacterial wood plastic composites for fused deposition modeling (FDM) 3D printing have potential applications in personalized and classic furniture, art, toys, etc.https://www.mdpi.com/2073-4360/12/3/621copper-zinc alloywood plastic compositesmechanical propertiesantibacterial property3d printing
collection DOAJ
language English
format Article
sources DOAJ
author Feiwen Yang
Jianhui Zeng
Haibo Long
Jialin Xiao
Ying Luo
Jin Gu
Wuyi Zhou
Yen Wei
Xianming Dong
spellingShingle Feiwen Yang
Jianhui Zeng
Haibo Long
Jialin Xiao
Ying Luo
Jin Gu
Wuyi Zhou
Yen Wei
Xianming Dong
Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
Polymers
copper-zinc alloy
wood plastic composites
mechanical properties
antibacterial property
3d printing
author_facet Feiwen Yang
Jianhui Zeng
Haibo Long
Jialin Xiao
Ying Luo
Jin Gu
Wuyi Zhou
Yen Wei
Xianming Dong
author_sort Feiwen Yang
title Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
title_short Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
title_full Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
title_fullStr Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
title_full_unstemmed Micrometer Copper-Zinc Alloy Particles-Reinforced Wood Plastic Composites with High Gloss and Antibacterial Properties for 3D Printing
title_sort micrometer copper-zinc alloy particles-reinforced wood plastic composites with high gloss and antibacterial properties for 3d printing
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2020-03-01
description In this work, micrometer copper-zinc alloy particles-reinforced particleboard wood flour/poly (lactic acid) (mCu-Zn/PWF/PLA) wood plastic composites with high gloss and antibacterial properties for 3D printing were prepared by a melt blending process. The structure and properties of the composites with different contents of mCu-Zn were analyzed by means of mechanical testing, dynamic mechanical analysis, thermogravimetric analysis, differential scanning calorimetry, X-ray diffraction, scanning electron microscopy, and antibacterial testing. The results showed that the mechanical properties, thermal stability, and antibacterial performance of the composites were significantly improved, as mCu-Zn was added into the wood plastic composites. When adding 2 wt.% mCu-Zn, the flexural strength of mCu-Zn/PWF/PLA composites (with 5 wt.% of particleboard wood flour) (PWF) increased by 47.1% compared with pure poly (lactic acid) (PLA), and 18.9% compared with PWF/PLA wood plastic composites. The surface gloss was increased by 1142.6% compared with PWF/PLA wood plastic composites. Furthermore, the inhibition rates of mCu-Zn/PWF/PLA composites against Escherichia coli reached 90.43%. Therefore, this novel high gloss and antibacterial wood plastic composites for fused deposition modeling (FDM) 3D printing have potential applications in personalized and classic furniture, art, toys, etc.
topic copper-zinc alloy
wood plastic composites
mechanical properties
antibacterial property
3d printing
url https://www.mdpi.com/2073-4360/12/3/621
work_keys_str_mv AT feiwenyang micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT jianhuizeng micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT haibolong micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT jialinxiao micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT yingluo micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT jingu micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT wuyizhou micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT yenwei micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
AT xianmingdong micrometercopperzincalloyparticlesreinforcedwoodplasticcompositeswithhighglossandantibacterialpropertiesfor3dprinting
_version_ 1724685815590682624