Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface

The temperature field of laser cladding affects the stress field and microstructure of the formed part greatly, which directly determines the microstructure and mechanical properties of the formed part. However, it is very difficult to accurately measure and control the temperature of the laser melt...

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Main Author: Kong, Meng
Other Authors: Zhou Wei
Format: Thesis-Master by Coursework
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/162556
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1625562023-03-11T18:11:20Z Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface Kong, Meng Zhou Wei School of Mechanical and Aerospace Engineering MWZHOU@ntu.edu.sg Engineering::Mathematics and analysis::Simulations The temperature field of laser cladding affects the stress field and microstructure of the formed part greatly, which directly determines the microstructure and mechanical properties of the formed part. However, it is very difficult to accurately measure and control the temperature of the laser melt pool and its surroundings in real time using the existing equipment. The development of numerical simulation provides a convenient and reliable method for the measurement of melt pool temperature. The numerical model established in this project will help the designers and process planners to have a better understanding of the complex cladding process and the influence of the several parameters involved. In actual industrial application, this will assist in developing optimal process planning solutions which was hard to get in usual methods. The laser cladding process of Al-50Si alloy on Al7075 surface was numerically simulated by ANSYS, considering the heat source model, latent heat of phase transition, surface effect element and so on. APDL command flow was selected to make the movement of heat source. Birth and death element method was used to simulate the formation of the cladding layer. The changing process of the temperature field during the entire laser processing process and the influence of the laser power on the maximum temperature were analyzed. Finally, the comparison between the simulation result and experimental result was carried out to verify the simulation. Master of Science (Smart Manufacturing) 2022-10-31T07:26:39Z 2022-10-31T07:26:39Z 2022 Thesis-Master by Coursework Kong, M. (2022). Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/162556 https://hdl.handle.net/10356/162556 en 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::Mathematics and analysis::Simulations
spellingShingle Engineering::Mathematics and analysis::Simulations
Kong, Meng
Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
description The temperature field of laser cladding affects the stress field and microstructure of the formed part greatly, which directly determines the microstructure and mechanical properties of the formed part. However, it is very difficult to accurately measure and control the temperature of the laser melt pool and its surroundings in real time using the existing equipment. The development of numerical simulation provides a convenient and reliable method for the measurement of melt pool temperature. The numerical model established in this project will help the designers and process planners to have a better understanding of the complex cladding process and the influence of the several parameters involved. In actual industrial application, this will assist in developing optimal process planning solutions which was hard to get in usual methods. The laser cladding process of Al-50Si alloy on Al7075 surface was numerically simulated by ANSYS, considering the heat source model, latent heat of phase transition, surface effect element and so on. APDL command flow was selected to make the movement of heat source. Birth and death element method was used to simulate the formation of the cladding layer. The changing process of the temperature field during the entire laser processing process and the influence of the laser power on the maximum temperature were analyzed. Finally, the comparison between the simulation result and experimental result was carried out to verify the simulation.
author2 Zhou Wei
author_facet Zhou Wei
Kong, Meng
format Thesis-Master by Coursework
author Kong, Meng
author_sort Kong, Meng
title Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
title_short Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
title_full Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
title_fullStr Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
title_full_unstemmed Numerical simulation of thermal processes in laser cladding of Al-50Si alloy on Al7075 surface
title_sort numerical simulation of thermal processes in laser cladding of al-50si alloy on al7075 surface
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/162556
_version_ 1761782089127034880