Literature DB >> 35632151

Encoding Stability into Laser Powder Bed Fusion Monitoring Using Temporal Features and Pore Density Modelling.

Brian G Booth1, Rob Heylen2, Mohsen Nourazar1, Dries Verhees2, Wilfried Philips1, Abdellatif Bey-Temsamani2.   

Abstract

In laser powder bed fusion (LPBF), melt pool instability can lead to the development of pores in printed parts, reducing the part's structural strength. While camera-based monitoring systems have been introduced to improve melt pool stability, these systems only measure melt pool stability in limited, indirect ways. We propose that melt pool stability can be improved by explicitly encoding stability into LPBF monitoring systems through the use of temporal features and pore density modelling. We introduce the temporal features, in the form of temporal variances of common LPBF monitoring features (e.g., melt pool area, intensity), to explicitly quantify printing stability. Furthermore, we introduce a neural network model trained to link these video features directly to pore densities estimated from the CT scans of previously printed parts. This model aims to reduce the number of online printer interventions to only those that are required to avoid porosity. These contributions are then implemented in a full LPBF monitoring system and tested on prints using 316L stainless steel. Results showed that our explicit stability quantification improved the correlation between our predicted pore densities and true pore densities by up to 42%.

Entities:  

Keywords:  keyhole pores; lack-of-fusion pores; laser powder bed fusion; melt pool monitoring; temporal features

Mesh:

Substances:

Year:  2022        PMID: 35632151      PMCID: PMC9145693          DOI: 10.3390/s22103740

Source DB:  PubMed          Journal:  Sensors (Basel)        ISSN: 1424-8220            Impact factor:   3.847


  6 in total

1.  On the Determination of Functions from Their Integral Values along Certain Manifolds.

Authors:  J Radon
Journal:  IEEE Trans Med Imaging       Date:  1986       Impact factor: 10.048

2.  Toward determining melt pool quality metrics via coaxial monitoring in laser powder bed fusion.

Authors:  Brian A Fisher; Brandon Lane; Ho Yeung; Jack Beuth
Journal:  Manuf Lett       Date:  2018-02-12

3.  Transient Laser Energy Absorption, Co-axial Melt Pool Monitoring, and Relationship to Melt Pool Morphology.

Authors:  Brandon Lane; Ivan Zhirnov; Sergey Mekhontsev; Steven Grantham; Richard Ricker; Santosh Rauniyar; Kevin Chou
Journal:  Addit Manuf       Date:  2020-12

4.  Keyhole fluctuation and pore formation mechanisms during laser powder bed fusion additive manufacturing.

Authors:  Yuze Huang; Tristan G Fleming; Samuel J Clark; Sebastian Marussi; Kamel Fezzaa; Jeyan Thiyagalingam; Chu Lun Alex Leung; Peter D Lee
Journal:  Nat Commun       Date:  2022-03-04       Impact factor: 17.694

5.  Analysis of Melt Pool Characteristics and Process Parameters Using a Coaxial Monitoring System during Directed Energy Deposition in Additive Manufacturing.

Authors:  Christian Kledwig; Holger Perfahl; Martin Reisacher; Frank Brückner; Jens Bliedtner; Christoph Leyens
Journal:  Materials (Basel)       Date:  2019-01-19       Impact factor: 3.623

6.  A Machine Learning Approach to Growth Direction Finding for Automated Planting of Bulbous Plants.

Authors:  Brian G Booth; Jan Sijbers; Jan De Beenhouwer
Journal:  Sci Rep       Date:  2020-01-20       Impact factor: 4.379

  6 in total

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