BS EN 16602-70-15:2021
$210.31
Space product assurance. Non-destructive testing
Published By | Publication Date | Number of Pages |
BSI | 2021 | 0 |
PDF Catalog
PDF Pages | PDF Title |
---|---|
2 | undefined |
12 | 1 Scope |
13 | 2 Normative references |
16 | 3 Terms, definitions and abbreviated terms 3.1 Terms from other standards 3.2 Terms specific to the present standard |
18 | 3.3 Abbreviated terms and symbols |
19 | 3.4 Nomenclature 3.4.1 Formal verbs |
20 | 3.4.2 Conventions |
21 | 4 Principles |
22 | 5 Generic requirements 5.1 General |
24 | 5.2 Discontinuities and cracks 5.3 NDT drawing callouts 5.4 NDT process and configuration control |
25 | 5.5 NDT procedure capability demonstration |
26 | 5.6 Organizational guidelines and documentation requirement 5.7 NDT personnel qualification and certification |
27 | 6 NDT methods 6.1 Visual testing 6.1.1 Overview 6.1.1.1 General process for visual testing 6.1.1.2 Visual testing process variations 6.1.2 General visual testing requirements |
28 | 6.1.3 Visual testing equipment 6.1.3.1 Overview 6.1.3.2 Requirements for visual testing equipment 6.1.4 Visual testing application |
29 | 6.1.5 Visual testing documentation 6.1.6 Visual testing process control 6.1.7 Visual testing process limitations and peculiarities |
30 | 6.2 Leak testing 6.2.1 Overview 6.2.1.1 General process for leak testing 6.2.1.2 Leak testing process variations |
31 | 6.2.2 General leak test requirements 6.2.3 Process application 6.2.3.1 Leak test procedure |
32 | 6.2.3.2 Leak test documentation 6.3 Penetrant testing 6.3.1 Overview 6.3.1.1 General process for penetrant testing 6.3.1.2 Penetrant testing process variations |
33 | 6.3.2 General penetrant testing requirements |
34 | 6.3.3 Penetrant testing equipment 6.3.3.1 Overview 6.3.3.2 Requirements for penetrant testing equipment 6.3.4 Penetrant testing process application |
36 | 6.3.5 Penetrant testing documentation 6.3.6 Penetrant testing process control 6.3.7 Penetrant testing process limitations and peculiarities 6.3.7.1 Overview |
37 | 6.3.7.2 Etching requirements 6.3.8 Standard penetrant fracture control NDT 6.3.8.1 Overview |
38 | 6.3.8.2 Standard fracture control NDT requirements 6.4 Eddy-current testing 6.4.1 Overview 6.4.1.1 General process for eddy-current testing |
39 | 6.4.1.2 Eddy-current process limitations and peculiarities 6.4.2 Eddy-current testing general requirements |
40 | 6.4.3 Eddy current testing process variations 6.4.4 Eddy current equipment 6.4.4.1 General 6.4.4.2 Instruments for the eddy-current testing 6.4.4.3 Probes for the eddy-current testing 6.4.4.4 Test-setup for the eddy current testing |
41 | 6.4.5 Eddy-current testing process application 6.4.6 Eddy current testing documentation 6.4.7 Eddy current testing process control 6.4.7.1 Overview 6.4.7.2 Reference material blocks for the eddy-current testing |
42 | 6.4.8 Standard eddy-current fracture control NDT 6.4.8.1 Overview 6.4.8.2 Standard eddy current testing requirements |
43 | 6.5 Magnetic particle testing 6.5.1 Overview 6.5.1.1 General magnetic particle testing process 6.5.1.2 Magnetic particle testing process variations |
44 | 6.5.2 General magnetic particle testing requirements 6.5.3 Magnetic particle testing equipment 6.5.3.1 General 6.5.3.2 Dry particles 6.5.3.3 Wet particles |
45 | 6.5.3.4 Fluorescent particles 6.5.4 Magnetic particle testing process application |
46 | 6.5.5 MT documentation 6.5.6 MT process control 6.5.7 MT process limitations and peculiarities 6.5.8 Standard magnetic particle fracture control NDT 6.5.8.1 Overview |
47 | 6.5.8.2 Standard magnetic particle NDT requirements 6.6 X-ray radiographic testing 6.6.1 Overview 6.6.1.1 General process 6.6.1.2 X-ray radiographic testing process variations |
48 | 6.6.2 General X-ray radiographic testing requirements 6.6.3 X-ray radiographic equipment 6.6.4 X-ray radiographic testing process application |
49 | 6.6.5 X-ray radiographic testing documentation 6.6.6 X-ray radiographic testing process control 6.6.7 Standard X-ray radiographic fracture control NDT 6.6.7.1 Overview 6.6.7.2 X-ray radiographic testing requirements |
50 | 6.7 Ultrasonic testing 6.7.1 Overview 6.7.1.1 General process for ultrasonic testing 6.7.1.2 Ultrasonic testing process variations |
54 | 6.7.2 General 6.7.3 Ultrasonic testing equipment 6.7.3.1 General requirements 6.7.3.2 Couplants |
55 | 6.7.3.3 Search units 6.7.4 Ultrasonic testing process application 6.7.4.1 General 6.7.4.2 Scanning 6.7.4.3 Scanning index |
56 | 6.7.4.4 Qualification 6.7.4.5 Ultrasonic test documentation 6.7.5 Ultrasonic testing process control 6.7.5.1 Ultrasonic testing calibration sensitivity and limitations |
57 | 6.7.5.2 Ultrasonic thickness gauge 6.7.5.3 Digital ultrasonic thickness gauge 6.7.5.4 Reference blocks |
58 | 6.7.6 Ultrasonic testing process limitations and peculiarities 6.7.6.1 Overview |
59 | 6.7.7 Standard ultrasonic fracture control NDT 6.7.7.1 Overview 6.7.7.2 Standard ultrasonic testing requirements |
60 | 6.8 Proof testing 6.8.1 Overview 6.8.2 Proof testing requirements |
61 | 7 Non-destructive testing of welds |
62 | 8 Non-destructive testing of products 8.1 Overview 8.2 General |
63 | 8.3 Wrought products 8.3.1 Overview 8.3.2 Raw material testing |
64 | 8.3.3 Common wrought discontinuities 8.4 Forgings 8.4.1 Overview 8.4.2 Raw material testing |
65 | 8.4.3 Common forging discontinuities 8.5 Castings 8.5.1 Overview 8.5.2 Raw material testing 8.5.2.1 General 8.5.2.2 Penetrant testing of castings |
66 | 8.5.2.3 Ultrasonic testing of castings 8.5.2.4 X-ray radiographic testing of castings 8.5.2.5 X-Ray computed tomographic (CT) of castings 8.5.2.6 Common casting discontinuities |
67 | 8.6 Laminated composite materials 8.6.1 Overview 8.6.2 Raw material testing 8.6.2.1 Overview |
68 | 8.6.2.2 Testing of intermediate products 8.6.3 Inspection techniques for composites 8.6.3.1 General 8.6.3.2 X-Ray Radiographic testing of composites 8.6.3.3 X-ray Computed Tomographic (CT) Inspection of Composites |
69 | 8.6.3.4 Guided In-Plane Wave Inspection of Composites 8.6.3.5 Ultrasonic C-Scan and Phased Array (PAUT) of Composites 8.6.3.6 Common discontinuities of Composites |
70 | 8.6.4 NDT for joining dissimilar materials 8.6.4.1 Overview 8.6.4.2 Steps for specifying NDT for difficult features |
71 | 8.6.4.3 NDT Coupled with Destructive Testing as Quality Control |
72 | 9 Non-destructive testing of PFCI 9.1 General 9.1.1 Overview |
73 | 9.1.2 General requirements |
74 | 9.1.3 Capability demonstration 9.1.4 Testing of raw material |
75 | 9.1.5 Testing of safe life finished parts 9.2 Non-destructive testing of metallic materials 9.2.1 General requirements |
76 | 9.2.2 NDT categories versus initial crack size 9.2.2.1 Standard fracture control NDT |
81 | 9.2.2.2 Special fracture control NDT |
83 | 9.2.2.3 Crack screening proof test 9.2.3 Inspection procedure requirements for Standard fracture control NDT 9.2.3.1 Overview 9.2.3.2 Requirements |
84 | 9.3 NDT for composites, bonded and sandwich parts 9.3.1 Overview 9.3.2 Testing requirements 9.3.2.1 General requirements 9.3.2.2 Close visual testing 9.3.2.3 NDT methods other than close visual testing |