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De novo assembly and analysis of Sonneratia ovata genome and population analysis
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Metadata
Document Title
De novo assembly and analysis of Sonneratia ovata genome and population analysis
Author
Shearman J.R., Naktang C., Sonthirod C., Kongkachana W., U-Thoomporn S., Jomchai N., Maknual C., Yamprasai S., Wanthongchai P., Pootakham W., Tangphatsornruang S.
Affiliations
National Metal and Materials Technology Center (MTEC), National Sciences and Technology Development Agency (NSTDA), 111 Thailand Science Park, Pathumthani, Klong Luang, 12120, Thailand
Type
Article
Source Title
Journal of Metals, Materials and Minerals
ISSN
8576149
Year
2024
Volume
34
Issue
2
Open Access
All Open Access, Hybrid Gold
Publisher
Chulalognkorn University
DOI
10.55713/jmmm.v34i2.1804
Abstract
The 17–4PH stainless steel filament was characterised and utilised to study the effect of printing parameters, i.e. printing temperature, layer thickness, infill pattern and extrusion multiplier on the physical properties. The as-printed and as-sintered internal structures were analysed. The results showed that the as-printed density increases with increasing printing temperature and extrusion multiplier and decreasing layer thickness. The use of the line infill pattern also provided slightly higher as-printed density than the concentric infill pattern due to the low fraction of void between deposited paths. After sintering, the trace of these voids can be observed together with smaller-size residual pores from the spaces between powders, which is the nature of the pressureless sintering process. The microstructure of the as-sintered specimens was similar to the typical microstructure of the 17–4PH alloy fabricated by metal injection moulding process, which contains delta ferrite, martensite and Si-rich phases. In additions, the internal void generated during debinding and sintering results in unexpectedly low tensile properties and results in the difference in tensile properties between the concentric and line infill patterns. ? (2024), (Journal of Metals). All rights reserved.
Keyword
17 | 4PH | Additive manufacturing | Density | Printing parameter | sintering
License
CC BY-NC-ND
Rights
Journal of Metals, Materials and Minerals
Publication Source
WoS