ASME BPVC CC NC S02 2017
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ASME BPVC CODE CASES: Nuclear Components- Supplement 02-2017
Published By | Publication Date | Number of Pages |
ASME | 2017 |
None
PDF Catalog
PDF Pages | PDF Title |
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38 | Figure 1 Illustration of Nonplanar Part-Through-Wall Degradation Due to Wall Thinning |
42 | Figure 2 Allowable Wall Thickness and Length of Locally Thinned Area |
43 | Figure 3 Illustration of Nonplanar Through-Wall Degradation Due to Wall Thinning |
44 | Figure 4 Flaw Growth Rate for IGSCC in Austenitic Steels |
45 | Figure 5 Flaw Growth Rate for TGSCC in Austenitic Steels |
50 | Figure 1 Typical Inlay |
51 | Figure 2 Typical Onlay |
54 | Figure I-1 Qualification Test Plate |
56 | Figure 1(a) Nozzle in Shell or Head (Examination Zones in Barrel-Type Nozzles Joined by Full Penetration Corner Welds) |
57 | Figure 1(b) Nozzle in Shell or Head (Examination Zones in Flange-Type Nozzles Joined by Full Penetration Butt Welds) |
58 | Figure 1(c) Nozzle in Shell or Head (Examination Zones in Set-On-Type Nozzles Joined by Full Penetration Corner Welds) |
65 | Figure 1 Shell Reinforcing Pads |
66 | Figure 2 Weld Configuration |
69 | Table 1 Depth Limitations for Underwater Welding Qualification |
70 | Figure 1 Qualification Test Plate For Automatic or Machine Dry ULBW Temper Bead Cladding Repair |
73 | Figure 1 Planar Flaws Oriented in Plane Normal to Pressure-Retaining Surface |
74 | Figure 2 Planar Flaws Perpendicular to Maximum Principal Stress, on Multiple Planes Figure 3 Rectangle Giving Depth 2a, and Length, ℓ, for Combined Flaw |
75 | Figure 4 Planar Flaws in Arbitrary Planes |