A Review of Modeling, Simulation, and Process Qualification of Additively Manufactured Metal Components via the Laser Powder Bed Fusion Method

Loading...
Thumbnail Image

Authors

De Leon, Emmanuel
Riensche, Alex
Bevans, Benjamin D.
Billings, Christopher
Zahed Siddique
Yingtao, Liu

Journal Title

Journal ISSN

Volume Title

Publisher

Abstract

Metal additive manufacturing (AM) has grown in recent years to supplement or even replace traditional fabrication methods. Specifically, the laser powder bed fusion (LPBF) process has been used to manufacture components in support of sustainment issues, where obsolete components are hard to procure. While LPBF can be used to solve these issues, much work is still required to fully understand the metal AM technology to determine its usefulness as a reliable manufacturing process. Due to the complex physical mechanisms involved in the multiscale problem of LPBF, repeatability is often difficult to achieve and consequently makes meeting qualification requirements challenging. The purpose of this work is to provide a review of the physics of metal AM at the melt pool and part scales, thermomechanical simulation methods, as well as the available commercial software used for finite element analysis and computational fluid dynamics modeling. In addition, metal AM process qualification frameworks are briefly discussed in the context of the computational basis established in this work.

Description

Citation

Related file

Notes

Endorsement

Review

Supplemented By

Referenced By

Collection Detail

# of Isolates from RBM

# of Isolates from TV8