Poly(3-hydroxybutyrate) (PHB) is a well-known member of the polyhydroxyalkanoate family of biopolymers, and it has been extensively investigated as an environmentally benign replacement for petrochemical-based polymers. The practical application of PHB in the biomedical field and in packaging has been limited because of its relatively narrow processing window, high brittleness and low thermal stability. In this study, a melt flow extrusion plastometer was used to investigate the processability of PHB by evaluating its melt flow rate and the mechanical properties of its monofilament extrudates. The monofilament extrudates were collected after exposure to different processing temperatures (180 and 190°C) and heating times, as well as after blending the biopolymer with different fractions of ground raw wool. The melt flow rate of PHB was not significantly affected when blended with different amounts of wool fiber. However, the melt flow rate increased significantly with the increase in heat duration and temperature. The mechanical properties of the monofilament extrudates from the parental PHB and PHB/wool blends were influenced by the fraction of wool, temperature and heat duration. The results of this study will be useful in selecting appropriate conditions for producing PHB-based blends/composites with desirable properties for a wide range of applications.
Article navigation
18 December 2023
Research Article|
December 15 2022
Extrusion plastometry processing of poly(3-hydroxybutyrate)/ground wool fiber blends
Hailemichael O Yosief, PhD
;
Hailemichael O Yosief, PhD
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
Search for other works by this author on:
Cheng-Kung Liu, PhD
;
Cheng-Kung Liu, PhD
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
Search for other works by this author on:
Richard D Ashby, PhD
;
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
(corresponding author: rick.ashby@usda.gov)
Search for other works by this author on:
Gary D Strahan, PhD
;
Gary D Strahan, PhD
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
Search for other works by this author on:
Nicholas Latona, MSc
;
Nicholas Latona, MSc
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
Search for other works by this author on:
Nusheng Chen, PhD
Nusheng Chen, PhD
Sustainable Biofuels and Co-products Research Unit, Eastern Regional Research Center, Agricultural Research Service, US Department of Agriculture, Wyndmoor, PA, USA
Search for other works by this author on:
(corresponding author: rick.ashby@usda.gov)
Publisher: Emerald Publishing
Received:
April 05 2022
Accepted:
December 12 2022
Online ISSN: 2049-1239
Print ISSN: 2049-1220
Emerald Publishing Limited: All rights reserved
2023
Green Materials (2023) 11 (4): 174–183.
Article history
Received:
April 05 2022
Accepted:
December 12 2022
Citation
Yosief HO, Liu C, Ashby RD, Strahan GD, Latona N, Chen N (2023), "Extrusion plastometry processing of poly(3-hydroxybutyrate)/ground wool fiber blends". Green Materials, Vol. 11 No. 4 pp. 174–183, doi: https://doi.org/10.1680/jgrma.22.00026
Download citation file:
New and popular articles
Suggested Reading
Polyhydroxybutyrate/hemp biocomposite: tuning performances by process and compatibilisation
Green Materials (April,2019)
Chemical modifications of poly(3-hydroxyalkanoates)
Emerging Materials Research (June,2015)
A One-step Process for the Modification of Wool Fibers with Titanate Tetrabutyl by Low Temperature Hydrothermal Method
Research Journal of Textile and Apparel (May,2014)
Electrospinning of poly(β-hydroxybutyrate) scaffolds: morphology and aging
Emerging Materials Research (May,2019)
Mechanical properties and dynamic compression behaviour of basalt/polypropylene fibre-reinforced high-strength concrete
Magazine of Concrete Research (January,2025)
Related Chapters
Unbound material
Principles of Pavement Engineering
Hydraulically-bound material
Principles of Pavement Engineering
Design of elements in steel–concrete sandwich composite materials
Blast Effects on Buildings
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
