Towards defect monitoring for metallic additive manufacturing components using phased array ultrasonic testing

[1]  A. Donmez,et al.  Evaluation of Nondestructive Volumetric Testing Methods for Additively Manufactured Parts , 2020 .

[2]  Hamid Garmestani,et al.  Analytical Modeling of In-Process Temperature in Powder Bed Additive Manufacturing Considering Laser Power Absorption, Latent Heat, Scanning Strategy, and Powder Packing , 2019, Materials.

[3]  Matthieu Rauch,et al.  Towards a multi-sensor monitoring methodology for AM metallic processes , 2019, Welding in the World.

[4]  Akhil Garg,et al.  Evaluation of genetic programming-based models for simulating bead dimensions in wire and arc additive manufacturing , 2019, J. Intell. Manuf..

[5]  Ohyung Kwon,et al.  A deep neural network for classification of melt-pool images in metal additive manufacturing , 2018, J. Intell. Manuf..

[6]  Zheng Fan,et al.  Sizing of flaws using ultrasonic bulk wave testing: A review. , 2018, Ultrasonics.

[7]  N. Knezovic,et al.  In-process non-destructive ultrasonic testing application during wire plus arc additive manufacturing , 2018, Advances in Production Engineering & Management.

[8]  Satoru Asai,et al.  Numerical simulation of WAAM process by a GMAW weld pool model , 2018, Welding in the World.

[9]  Pei Wei,et al.  Thermal behavior in single track during selective laser melting of AlSi10Mg powder , 2017 .

[10]  Guanqun Yu,et al.  Porosity evolution and its thermodynamic mechanism of randomly packed powder-bed during selective laser melting of Inconel 718 alloy , 2017 .

[11]  A. Addison,et al.  Wire + Arc Additive Manufacturing , 2016 .

[12]  Volker Carl,et al.  Monitoring system for the quality assessment in additive manufacturing , 2015 .

[13]  Alexander Dillhöfer,et al.  Ultrasonic online monitoring of additive manufacturing processes based on selective laser melting , 2015 .

[14]  P. Dumas,et al.  Adaptive ultrasonic imaging with the total focusing method for inspection of complex components immersed in water , 2015 .

[15]  F. Chinesta,et al.  Online Prediction of Machining Distortion of Aeronautical Parts Caused by Re-Equilibration of Residual Stresses , 2014 .

[16]  J. Hascoët,et al.  Modeling and control of a direct laser powder deposition process for Functionally Graded Materials (FGM) parts manufacturing , 2013 .

[17]  M. Fink,et al.  Coherent plane-wave compounding for very high frame rate ultrasonography and transient elastography , 2009, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.

[18]  P. Wilcox,et al.  Post-processing of the full matrix of ultrasonic transmit-receive array data for non-destructive evaluation , 2005 .

[19]  Carl E. Rasmussen,et al.  Gaussian processes for machine learning , 2005, Adaptive computation and machine learning.

[20]  F. A. Silber,et al.  ULTRASONIC TESTING OF MATERIALS , 1978 .

[21]  F. He,et al.  Ultrasonic Array Inspection for Additive Manufacturing Components using Full Matrix Capture , 2018 .

[22]  L. Quintino,et al.  MAPPING OF NON-DESTRUCTIVE TECHNIQUES FOR INSPECTION OF WIRE AND ARC ADDITIVE MANUFACTURING , 2017 .

[23]  J. Gua,et al.  WIRE + ARC ADDITIVE MANUFACTURING OF ALUMINIUM , 2014 .

[24]  P. Mognol,et al.  MANUFACTURING OF COMPLEX PARTS WITH CONTINUOUS FUNCTIONALLY GRADED MATERIALS ( FGM ) , 2011 .