Welcome to Francis Academic Press

International Journal of Frontiers in Sociology, 2021, 3(11); doi: 10.25236/IJFS.2021.031111.

Research Status and Development Trend of Polylactic Acid Matrix Composites Applied to 3D Printed Furniture

Author(s)

Qiang Shi

Corresponding Author:
Qiang Shi
Affiliation(s)

Department of Art, Shanwei Polytechnic College, Shanwei, China

Abstract

3D printing technology has become more closely connected with furniture manufacturing industry, with the continuous expansion of industrial 3D printer functions. This paper analyzes and discusses the innovation and development advantages of 3D printed furniture, in view of the principle and materials of 3D printing technology. The application of PLA in the field of 3D printed furniture was explored, which proposed a new direction for the subsequent modification research and market application, according to the properties and modification methods of the biodegradable material polylactic acid (PLA). In the discussion of its advantages, the influence of 3D printing on furniture production process, market potential and other aspects were discussed, and the subversive change and future trend brought by this technology to the traditional furniture industry were comprehensively explained. Finally, it shows the view that the application of 3D printing in the field of furniture has a great prospect. The future trend of the development of 3D printing furniture is predicted, which provides constructive suggestions for exploring the development of 3D printing technology in the furniture industry.

Keywords

3D printing technology, Furniture manufacturing, New manufacturing, Technical principle, Polylactic acid, modified

Cite This Paper

Qiang Shi. Research Status and Development Trend of Polylactic Acid Matrix Composites Applied to 3D Printed Furniture. International Journal of Frontiers in Sociology (2021), Vol. 3, Issue 11: 67-71. https://doi.org/10.25236/IJFS.2021.031111.

References

[1] Li Xiaoli, Ma Jianxiong, Li Ping, Zhou Weiming. 3D printing technology and application trend [J]. Automatic instrument, 2014, (01)

[2] Fan Wei, Peng Quyun. Digital protection and innovation of traditional furniture form [J].Furniture and interior decoration, 2014, (11)

[3] Guo Zhenhua, Wang Qingjun, Guo Yinghuan. 3D printing technology and social manufacture [J]. Journal of Baoji University of Arts and Sciences(NATURAL SCIENCE EDITION), 2013,(04)

[4] Wang Yueyuan, Yang Ping. 3D printing technology and its development trend [J]. Journal ofprinting, 2013, (04)

[5] Yuan Weimin, Fan Wei. Research on the establishment of database in digital protection technology of traditional folk furniture [J]. Art education, 2015, (10)

[6] Fan Wei, Mao Cui. The application of AR technology in the digital protection of traditional folk furniture----Taking the furniture protection of Zeng Guofan's former residence as an example [J]. Yihai, 2015, (09)

[7] Chia H. Improvement of 3d printing resolution by the development of shrinkable materials [D]. Los Angeles: University of California, 2014.

[8] Xiong Z, Ma S Q, Fan L B, et al. Surface hydrophobic modification of starch with bio-based epoxy resins to fabricate high-performance polylactide composite materials [J]. Composites Science and Technology,2014, 94: 16-22.

[9] Basyamfar R A. Frito lay sunchips-packaging analysis [J]. Jurnal Sagu, 2015, 13: 19-26.

[10] Said P P, Pradhan R C, Sharma N, et al. Protective coatings for shelf life extension of fruits and vegetables [J]. Journal of Bioresource Engineering and Technology| Year, 2014, 1: 1-6.

[11] Shirai M A, Müller C M O, Grossmann M V E, et al. Adipate and citrate esters as plasticizers for poly (lactic acid)/thermoplastic starch sheets [J]. Journal of Polymers and the Environment, 2015, 23: 54-61.

[12] Burgos N, Tolaguera D, Fiori S, et al. Synthesis and characterization of lactic acid oligomers: Evaluation of performance as poly (lactic acid) plasticizers[J]. Journal of Polymers and the Environment, 2014, 22:227-235.

[13] Appuhamillage G, Reagan J, Khorsandi S, et al. 3D printed remendable polylactic acid blends with uniform mechanical strength enabled by adynamic Diels-Alder reaction[J]. Polymer Chemistry, 2017, 8(13):2 087-2 092.

[14] Chen Q, Mangadlao J D, Wallat J, et al. 3D Printing biocompatible polyurethane/poly(lactic acid)/graphene oxide nanocomposites:Anisotropic properties[J]. Acs Applied Materials&Interfaces, 2017, 9(4):4 015-4 023.

[15] Xu W, Pranovich A, Uppstu P, et al. Novel biorenewable composite ofwood polysaccharide and polylactic acid for three dimensional printing[J]. Carbohydrate Polymers, 2018, 187: 51-58.

[16] Ambone T S, Torris A, Shanmuganathan K. Enhancing the mechanical properties of 3D printed polylactic acid using nanocellulose[J]. PolymerEngineering and Science, 2020, DOI: 10.1002/pen.25421.

[17] Gao Y, Li Y, Hu X R, et al. Preparation and properties of novel thermoplastic vulcanizate based on bio-based polyester/polylactic acid,and its application in 3D printing[J]. Polymers, 2017, DOI: 10.3390/ polym9120694.

[18] Castillejos S, Cerna J, Francisco M, et al. Bulk modification of poly(lactide)(PLA) via copolymerization with poly(propylene glycol) diglycidy lether(PPGDGE)[J]. Polymers, 2018, DOI:10.3390/polym10111184.

[19] Quynh T M, Mitomo H, Nagasawa N, et al. Properties of crosslinkedpolylactides (PLLA & PDLA) by radiation and its biodegradability[J]. European Polymer Journal, 2007, 43(5): 1 779-1 785.

[20] Berman B. 3-D printing: The new industrial revolution[J]. BusinessHorizons, 2012, 55(2): 155-162.

[21] Blasko D J, Klapakis P T, Corbett J F. Training tomorrow's PLA: Amixed bag of tricks[J]. China Quarterly, 1996,146: 488-524.

[22] Kwiatkowski P, Giedrys-kalemba S, Mizieli̍i̍'ska M, et al. Modification of PLA foil surface by ethylcellulose and essential oils[J]. Journal ofMicrobiology Biotechnology&Food Sciences,2016, DOI: 10.15414/jmbfs.2016.5.5.440-444.

[23] Muro-Fraguas I, Sainz-García A, Gómez P F, et al. Atmospheric pressure cold plasma anti-biofilm coatings for 3D printed food tools[J]. Innovative Food Science & Emerging Technologies, 2020, DOI:10.1016/j.ifset.2020.102404.

[24] Castro-Aguirre E, Iniguez-Franco F, Samsudin H, et al. Poly(lactic acid)-mass production, processing, industrial applications, and end of life[J].Advanced Drug Delivery Reviews, 2016, 107: 333-366.