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Refresher Courses
NDT-CGI can design refresher courses specifically for your personnel to keep their skills up to date. The courses can cover the materials you feel your personnel need and for the number of hours you think it will take to bring them up to date. A typical course outline for a 40 hour refresher course is shown below.
Introduction (2 hours)
Definition of NDT
Other names
Review of Terminology associated with NDT
Defect
Discontinuity
Flaw
Indication
Evaluation
Specification
Code
Procedure
Calibration
Uses for NDT (2 hours)
Aerospace/Aircraft
Power Generation
Petrochemical plants
Others
NDT Methods
MT (4 hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
PT (4 Hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
VT (4 hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
RT (4 hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
UT (8 hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
ET (8 hours)
Basic theory
Uses
Advantages
Disadvantages
Equipment
Demonstration
Discontinuities detectable by NDT (1 hours)
Surface cracks
Scratches
Subsurface defects
Qualification and certification of NDT personnel (1 hours)
ASNT-TC-1A
CP-189
Performance Qualification
Certification
NDT Specifications/Codes and Procedures (2 hours)
Aerospace
ASME
ASTM
ANSI
SAE
API
This course can be modified to suit your needs.
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NDT Refresher Training Outline
1) Introduction (2 hours)
a) Definition of NDT
i) Other names
b) Review of Terminology associated with NDT
i) Defect
ii) Discontinuity
iii) Flaw
iv) Indication
v) Evaluation
vi) Specification
vii) Code
viii) Procedure
ix) Calibration
2) Uses for NDT (2 hours)
a) Aerospace/Aircraft
b) Power Generation
c) Petrochemical plants
d) Others
3) NDT Methods
a) MT (4 hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
b) PT (4 Hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
c) VT (4 hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
d) RT (4 hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
e) UT (8 hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
f) ET (8 hours)
i) Basic theory
ii) Uses
iii) Advantages
iv) Disadvantages
v) Equipment
vi) Demonstration
4) Discontinuities detectable by NDT (1 hours)
a) Surface cracks
b) Scratches
c) Subsurface defects
5) Qualification and certification of NDT personnel (1 hours)
a) ASNT-TC-1A
b) CP-189
c) Performance Qualification
d) Certification
6) NDT Specifications/Codes and Procedures (2 hours)
a) Aerospace
b) ASME
c) ASTM
d) ANSI
e) SAE
f) API
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