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An integrated model for predicting the porosity effect on the mechanical behavior of additively manufactured Al-10Si-Mg alloy Mississippi State University

SAE Technical Papers (1906-current) Available online

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Format:
Book
Conference/Event
Author/Creator:
Yang, Wenhua, author.
Contributor:
Liu, Yucheng
Wang PhD, Zhuo
Yenusah, Caleb
Conference Name:
WCX SAE World Congress Experience (2020-04-21 : Detroit, Michigan, United States)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2020
Summary:
In this work, the porosity effect on for additively manufactured AlSiMg alloy was investigated, with the aid of an integrated multi-physics model. Specifically, first, a series of thermal simulations were performed to understand temperature field development under different AM operating conditions, including electron beam power, scanning speed, and preheating temperature. The porosity formation was then predicted based on thermal simulation results, which yield molten pool dimension information for predicting the lack-of-fusion porosity. Following that, with as-received microporosity data as input, a widely employed internal state variable (ISV) damage model was utilized to investigate the porosity effect on the mechanical behavior of additively manufactured Al-10Si-Mg alloy , e.g. in the form of stress-strain curves. Finally, the effective improvement of mechanical performance of AM product was analyzed through optimizing AM manufacturing conditions
Notes:
Vendor supplied data
Publisher Number:
2020-01-1075
Access Restriction:
Restricted for use by site license

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