Experimental investigation of droplets on powder layer heated with temperature difference

Granular materials have been garnering attention over the course of the century. They come in a broad selection of shapes, sizes and are found in various natural and industrial applications. Even though studies have been conducted on different types of soils, powder, and granules. There has been gro...

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Main Author: Tan, Guan Yu
Other Authors: Tuan Tran
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/158319
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1583192023-03-04T20:16:45Z Experimental investigation of droplets on powder layer heated with temperature difference Tan, Guan Yu Tuan Tran School of Mechanical and Aerospace Engineering ttran@ntu.edu.sg Engineering::Mechanical engineering Granular materials have been garnering attention over the course of the century. They come in a broad selection of shapes, sizes and are found in various natural and industrial applications. Even though studies have been conducted on different types of soils, powder, and granules. There has been growing attention toward microstructures and simulations. There are far more avenues of exploration that can be done to understand the complexity and interactions of granular materials due to the nature and powder-based industry applications that demands the study of droplets on heated powder bed with temperature difference. This project documents the behavior interactions when a liquid droplet is deposited on a heated powder bed with a temperature difference. The behavior can differ depending on the various conditions and parameters of the liquid and the powder bed. Analytical descriptions were noted down based on the difference in interactions. Initial observations were conducted by dispensing small ethanol droplet onto different powder bed thickness with a variation of temperature set by the heater. Phase diagrams for ethanol droplets were created to determine three distinct phases observed. The experiment proceeds to investigate whether the temperature gradient is influenced by the contact area. The experiment was extended to investigate the various physical properties of fluid such as surface tension, viscosity, specific heat, and boiling point to understand the factors which affect the droplet behavior. The experiment furthers the study on how thin powder bed thickness will have a relation to the effect of temperature difference. This study has added new insights to achieve better understanding to improve in printing processes of temperature different powder bed. Bachelor of Engineering (Mechanical Engineering) 2022-06-02T08:03:26Z 2022-06-02T08:03:26Z 2022 Final Year Project (FYP) Tan, G. Y. (2022). Experimental investigation of droplets on powder layer heated with temperature difference. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/158319 https://hdl.handle.net/10356/158319 en B205 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
spellingShingle Engineering::Mechanical engineering
Tan, Guan Yu
Experimental investigation of droplets on powder layer heated with temperature difference
description Granular materials have been garnering attention over the course of the century. They come in a broad selection of shapes, sizes and are found in various natural and industrial applications. Even though studies have been conducted on different types of soils, powder, and granules. There has been growing attention toward microstructures and simulations. There are far more avenues of exploration that can be done to understand the complexity and interactions of granular materials due to the nature and powder-based industry applications that demands the study of droplets on heated powder bed with temperature difference. This project documents the behavior interactions when a liquid droplet is deposited on a heated powder bed with a temperature difference. The behavior can differ depending on the various conditions and parameters of the liquid and the powder bed. Analytical descriptions were noted down based on the difference in interactions. Initial observations were conducted by dispensing small ethanol droplet onto different powder bed thickness with a variation of temperature set by the heater. Phase diagrams for ethanol droplets were created to determine three distinct phases observed. The experiment proceeds to investigate whether the temperature gradient is influenced by the contact area. The experiment was extended to investigate the various physical properties of fluid such as surface tension, viscosity, specific heat, and boiling point to understand the factors which affect the droplet behavior. The experiment furthers the study on how thin powder bed thickness will have a relation to the effect of temperature difference. This study has added new insights to achieve better understanding to improve in printing processes of temperature different powder bed.
author2 Tuan Tran
author_facet Tuan Tran
Tan, Guan Yu
format Final Year Project
author Tan, Guan Yu
author_sort Tan, Guan Yu
title Experimental investigation of droplets on powder layer heated with temperature difference
title_short Experimental investigation of droplets on powder layer heated with temperature difference
title_full Experimental investigation of droplets on powder layer heated with temperature difference
title_fullStr Experimental investigation of droplets on powder layer heated with temperature difference
title_full_unstemmed Experimental investigation of droplets on powder layer heated with temperature difference
title_sort experimental investigation of droplets on powder layer heated with temperature difference
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/158319
_version_ 1759853361656496128