Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000

D. Reilly, P. Leggat, A. McNab

Research output: Contribution to conferencePaper

Abstract

This paper describes an implementation of 3D ultrasound data reconstruction, display and analysis within AutoCAD (R) 2000. In addition, a number of standard weld templates, scalable via dialog boxes, have been implemented. Currently, MIPS (Micropulse) formatted data can be imported, reconstructed and displayed. A series of dialog boxes allows specification of the scanning configuration. The reconstruction algorithm takes full account of reflection and mode conversion at the component surfaces. The resultant ultrasound image is presented in '3D', with tools for image manipulation and interrogation.
Original languageEnglish
Pages780-786
Number of pages6
Publication statusPublished - Jul 2000
Event27th Annual Review of Progress in Quantitative Nondestructive Evaluation - Ames, United States
Duration: 16 Jul 200020 Jul 2000

Conference

Conference27th Annual Review of Progress in Quantitative Nondestructive Evaluation
CountryUnited States
CityAmes
Period16/07/0020/07/00

Fingerprint

boxes
ultrasonics
interrogation
specifications
manipulators
templates
scanning
configurations

Keywords

  • ultrasonic ndt
  • data reconstruction
  • visualisation
  • analysis
  • autocad
  • 2000

Cite this

Reilly, D., Leggat, P., & McNab, A. (2000). Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000. 780-786. Paper presented at 27th Annual Review of Progress in Quantitative Nondestructive Evaluation , Ames, United States.
Reilly, D. ; Leggat, P. ; McNab, A. / Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000. Paper presented at 27th Annual Review of Progress in Quantitative Nondestructive Evaluation , Ames, United States.6 p.
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Reilly, D, Leggat, P & McNab, A 2000, 'Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000' Paper presented at 27th Annual Review of Progress in Quantitative Nondestructive Evaluation , Ames, United States, 16/07/00 - 20/07/00, pp. 780-786.

Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000. / Reilly, D.; Leggat, P.; McNab, A.

2000. 780-786 Paper presented at 27th Annual Review of Progress in Quantitative Nondestructive Evaluation , Ames, United States.

Research output: Contribution to conferencePaper

TY - CONF

T1 - Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000

AU - Reilly, D.

AU - Leggat, P.

AU - McNab, A.

PY - 2000/7

Y1 - 2000/7

N2 - This paper describes an implementation of 3D ultrasound data reconstruction, display and analysis within AutoCAD (R) 2000. In addition, a number of standard weld templates, scalable via dialog boxes, have been implemented. Currently, MIPS (Micropulse) formatted data can be imported, reconstructed and displayed. A series of dialog boxes allows specification of the scanning configuration. The reconstruction algorithm takes full account of reflection and mode conversion at the component surfaces. The resultant ultrasound image is presented in '3D', with tools for image manipulation and interrogation.

AB - This paper describes an implementation of 3D ultrasound data reconstruction, display and analysis within AutoCAD (R) 2000. In addition, a number of standard weld templates, scalable via dialog boxes, have been implemented. Currently, MIPS (Micropulse) formatted data can be imported, reconstructed and displayed. A series of dialog boxes allows specification of the scanning configuration. The reconstruction algorithm takes full account of reflection and mode conversion at the component surfaces. The resultant ultrasound image is presented in '3D', with tools for image manipulation and interrogation.

KW - ultrasonic ndt

KW - data reconstruction

KW - visualisation

KW - analysis

KW - autocad

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M3 - Paper

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ER -

Reilly D, Leggat P, McNab A. Ultrasonic NDT data reconstruction, visualization and analysis in AutoCAD 2000. 2000. Paper presented at 27th Annual Review of Progress in Quantitative Nondestructive Evaluation , Ames, United States.