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ASME BPVC III 5 2013

$377.00

ASME BPVC – III – 5 -2013 BPVC Section III, Rules for Construction of Nuclear Facility Components, Division 5, High Temperature Reactors

Published By Publication Date Number of Pages
ASME 2013 292
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PDF Catalog

PDF Pages PDF Title
46 HAA-1130-1 Values of Tmax for Various Classes of Permitted Materials
48 HAA-7100-1 Standards and Specifications Referenced in Division 5 Associated With Metallic Components
67 HAB-3255-1 Document Distribution for Design and Construction of Graphite Core Components and Assemblies
70 HAB-4134.17-1 Lifetime Quality Assurance Records
71 HAB-4134.17-2 Nonpermanent Quality Assurance Records
75 HAB-7100-1 Standards and Specifications Referenced in This Subpart and Subsection HH, Subpart A
78 HAB-8100-1 Certificates Issued by the Society for Construction of Nuclear Graphite Core Components and Assemblies
91 HBB-I-3000-1 Smt Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
92 HBB-I-3000-2 St Allowable Stress Intensity Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
93 HBB-I-3000-3 Stress-to-Rupture (Minimum) for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
94 HBB-I-3000-4 Isochronous Stress–Strain Curves for 700°F (371°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
95 HBB-I-3000-5 Isochronous Stress–Strain Curves for 750°F (399°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
96 HBB-I-3000-6 Isochronous Stress–Strain Curves for 800°F (427°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
97 HBB-I-3000-7 Isochronous Stress–Strain Curves for 850°F (454°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
98 HBB-I-3000-8 Isochronous Stress–Strain Curves for 900°F (482°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
99 HBB-I-3000-9 Isochronous Stress–Strain Curves for 950°F (510°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
100 HBB-I-3000-10 Isochronous Stress–Strain Curves for 1,000°F (538°C) For SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
101 HBB-I-3000-11 Design Fatigue Strain Range for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
102 HBB-I-3000-12 Creep-Fatigue Damage Envelope for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
103 HBB-I-3000-13 St Versus Time-Isothermal Curves for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
104 HBB-I-3000-14 Minimum Stress Rupture as a Function of Time and Temperature for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
HBB-I-3000-1 Smt — Allowable Stress Intensity Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
105 HBB-I-3000-2 St — Allowable Stress Intensity Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1, ksi (MPa)
HBB-I-3000-3 Allowable Stress Intensity Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1, Sm Yield Strength and Tensile Strength Versus Temperature
HBB-I-3000-4 Expected Minimum Stress-to-Rupture Values for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1, ksi (MPa)
HBB-I-3000-5 Modulus of Elasticity Versus Temperature for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
106 HBB-I-3000-6 Instantaneous Coefficient of Thermal Expansion Versus Temperature for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
HBB-I-3000-7 Mean Coefficient of Thermal Expansion Versus Temperature for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1
HBB-I-3000-8 Design Fatigue Strain Range for SA-533 Type B, Class 1 and SA-508 Grade 3, Class 1 up to 1,000°F (540°C)
120 HCB-4215-1 Permissible Time/Temperature Conditions for Material That Has Been Cold Worked > 5% and < 20% and Subjected to Short-Time, High-Temperature Transients
127 HCB-I-2000-1 Stress Range Reduction Factor
128 HCB-I-2000-2 Maximum Number of Cycles, N1, Permissible With f = 1
131 HCB-II-1000-1 Allowable Stress Flowchart for Class B Component
133 HCB-II-2000-1 Allowable Stress Values for Ferritic Steel Class B Components
138 HCB-II-2000-2 Allowable Stress Values for Class B Bolting Materials
140 HCB-II-2000-3 Allowable Stress Values for Austenitic Steel Class B Components
147 HCB-II-2000-4 Allowable Stress Values for High-Nickel Alloy Class B Components
148 HCB-II-2000-5 Reduction Factors for Aging
149 HCB-II-3000-1 Allowable Stress Values for Ferritic Steel Class B Components
151 HCB-II-3000-2 Allowable Stress Values for Class B Bolting
152 HCB-II-3000-3 Allowable Stress Values for Austenitic Steel Class B Components
155 HCB-II-3000-4 Allowable Stress Values for High-Nickel Alloy Class B Components
156 HCB-II-3000-5 Reduction Factors to Be Applied to Parent Metal Allowable Stresses for 304 SS Weldments
HCB-II-3000-6 Reduction Factors to Be Applied to Parent Metal Allowable Stresses for 316 SS Weldments
HCB-II-3000-7 Reduction Factors to Be Applied to Parent Metal Allowable Stresses for Alloy 800H Weldments
157 HCB-II-3000-8 Reduction Factors to Be Applied to Parent Metal Allowable Stresses for 21/4Cr–1Mo Weldments
HCB-II-3000-9 Reduction Factors to Be Applied to Parent Metal Allowable Stresses for Modified 9Cr–1Mo Weldments
159 HCB-III-1000-1 Time–Temperature Limits for Service Level A and B Events
HCB-III-1000-1 Maximum Metal Temperatures During Level C Events
175 HGB-3217-1 Classification of Stress Intensity for Some Typical Cases
178 HGB-3224-1 Use-Fractions for Membrane Stress
HGB-3224-2 Use-Fractions for Membrane Plus Bending Stress
187 HGB-5223-1 Full Penetration Corner Weld Details for Category C Joints
188 HGB-5224.2-1 Nozzles Joined by Full Penetration Corner Welds
189 HGB-5224.3-1 Deposited Weld Metal Used as Reinforcement of Openings for Nozzles
190 HGB-5224.4-1 Oblique Connections
195 HGB-II-2121-1 Design Stress Intensity Values, Sm, for Ferritic Steels at Elevated Temperatures in Core Support Structure Applications
197 HGB-II-2121-2 Design Stress Intensity Values, Sm, for Ferritic Steels at Elevated Temperatures in Threaded Structural Fastener Applications
199 HGB-II-2121-3 Design Stress Intensity Values, Sm, for Austenitic and High Nickel Alloys at Elevated Temperatures in Core Support Structure Applications
203 HGB-II-2121-4 Design Stress Intensity Values, Sm, for Austenitic and High Nickel Alloys at Elevated Temperatures in Threaded Structural Fastener Applications
210 HGB-II-3222.4-1 Design Fatigue Limits for Solution Annealed Type 304SS
HGB-II-3222.4-2 Design Fatigue Limits for Solution Annealed Type 316SS
212 HGB-II-3222.4-3 Design Fatigue Limits for Ni–Cr–Fe Alloy 800H
213 HGB-II-3222.4-4 Design Fatigue Limits for 21/4Cr–1Mo Steel
214 HGB-II-3229-1 Yield Strength Values, Sy, for Ferritic Steels at Elevated Temperatures in Core Support Structure Applications
216 HGB-II-3229-2 Yield Strength Values, Sy, for Ferritic Steels at Elevated Temperatures in Threaded Structural Fastener Applications
218 HGB-II-3229-3 Yield Strength Values, Sy, for Austenitic and High Nickel Alloys at Elevated Temperatures in Core Support Structure and Threaded Structural Fastener Applications
219 HGB-II-3229-4 Tensile Strength Values Su, for Ferritic Steels at Elevated Temperatures in Core Support Structure Applications
221 HGB-II-3229-5 Tensile Strength Values, Su, for Ferritic Steels at Elevated Temperatures in Threaded Structural Fastener Applications
222 HGB-II-3229-6 Tensile Strength Values, Su, for Austenitic and High Nickel Alloys at Elevated Temperatures in Core Support Structure and Threaded Structural Fastener Applications
226 HGB-III-2000-1 Time-Independent Buckling Limits
229 HGB-IV-1000-1 Time at Elevated Temperature, hr
232 HHA-1400-1 Jurisdictional Boundary for Graphite Core Components and Assemblies — Circumferential Section View
233 HHA-1400-2 Jurisdictional Boundary for Graphite Core Components and Assemblies — Longitudinal Section View
249 HHA-3141-1 Dependence of Strength on Weight Loss in Uniformly Oxidized Graphite of Classes IIHP or INHP
250 HHA-3141-2 Dependence of Strength on Weight Loss in Uniformly Oxidized Graphite of Classes EIHP, ENHP, MIHP, and MNHP
HHA-3221-1 Design Allowable Probability of Failure
251 HHA-3221-1 Design Allowable Stresses Flowchart for SRC-1 Graphite Core Component
255 HHA-4222-1 Prohibited and Controlled Substances
262 MDS-1 Material Data Sheet (SI Units)
263 MDS-2 Material Data Sheet (U.S. Customary)
264 HHA-II-2000-1 Notes on Material Data Sheet, Forms MDS-1 and MDS-2
267 HHA-II-3100-1 Correction Factor T of the Shape Parameter M of Two-Parameter Weibull Distribution (γ = 0.95)
268 HHA-II-3100-2 Correction Factor T’ of the Characteristic Value Sc of Two-Parameter Weibull Distribution (γ = 0.95)
275 HHA-A-1100-1
276 HHA-1160-1 Extrusion
277 HHA-1160-2 Molding
285 INTERPRETATIONS Volume 62
ASME BPVC III 5 2013
$377.00