ENGLISH

2017 ASME Boiler & Pressure Vessel Code: An International Code

Book information

ISBN
9780791870853, 0791870855
Language
english
Format
PDF
Filesize
15 MB (16186212 bytes)
Pages
0\356
Time added
2022-01-08 16:24:50

Description

Table of Contents List of Sections INTERPRETATIONS CODE CASES Foreword Statement of Policy on the Use of the Certification Mark and Code Authorization in Advertising Statement of Policy on the Use of ASME Marking to Identify Manufactured Items Submittal of Technical Inquiries to the Boiler and Pressure Vessel Standards Committees 1 Introduction 2 Inquiry Format 3 Code Revisions or Additions 4 Code Cases 5 Code Interpretations 6 Submittals Personnel Organization of Section III 1 General 2 Subsections 3 Articles 4 Subarticles 5 Subsubarticles 6 Paragraphs 7 Subparagraphs 8 Subsubparagraphs 9 References Summary of Changes List of Changes in Record Number Order Cross-Referencing and Stylistic Changes in the Boiler and Pressure Vessel Code Subparagraph Breakdowns/Nested Lists Hierarchy Footnotes Submittal of Technical Inquiries to the Boiler and Pressure Vessel Standards Committees Cross-References Article NC-1000 Introduction NC-1100 Scope NC-1110 Aspects of Construction Covered by These Rules NC-1120 Temperature Limits NC-1130 Boundaries of Jurisdiction Applicable to This Subsection Article NC-2000 Material NC-2100 General Requirements for Material NC-2110 Scope of Principal Terms Employed NC-2120 Pressure-Retaining Material NC-2130 Certification of Material NC-2140 Welding Materials NC-2150 Material Identification NC-2160 Deterioration of Material in Service NC-2170 Heat Treatment to Enhance Impact Properties NC-2180 Procedures for Heat Treatment of Material NC-2190 Non-Pressure‐Retaining Material NC-2200 Material Test Coupons and Specimens for Ferritic Steel Material NC-2210 Heat Treatment Requirements NC-2220 Procedure for Obtaining Test Coupons and Specimens for Quenched and Tempered Material NC-2300 Fracture Toughness Requirements for Material NC-2310 Material to Be Impact Tested NC-2320 Impact Test Procedures NC-2330 Test Requirements and Acceptance Standards NC-2340 Number of Impact Tests Required NC-2350 Retests NC-2360 Calibration of Instruments and Equipment NC-2400 Welding Material NC-2410 General Requirements NC-2420 Required Tests NC-2430 Weld Metal Tests NC-2440 Storage and Handling of Welding Material NC-2500 Examination and Repair of Pressure-Retaining Material NC-2510 Pressure-Retaining Material NC-2530 Examination and Repair of Plate NC-2540 Examination and Repair of Forgings and Bars NC-2550 Examination and Repair of Seamless and Welded (Without Filler Metal) Tubular Products and Fittings NC-2560 Examination and Repair of Tubular Products and Fittings Welded With Filler Metal NC-2570 Examination and Repair of Statically and Centrifugally Cast Products NC-2580 Examination of Bolts, Studs, and Nuts NC-2600 Material Organizations’ Quality System Programs NC-2610 Documentation and Maintenance of Quality System Programs NC-2700 Dimensional Standards Article NC-3000 Design NC-3100 General Design NC-3110 Loading Criteria NC-3120 Special Considerations NC-3130 General Design Rules NC-3200 Alternative Design Rules for Vessels NC-3210 General Requirements NC-3220 Design Considerations NC-3230 Openings and Their Reinforcement NC-3240 Vessels Under External Pressure NC-3250 Welded Joints NC-3260 Special Vessel Requirements NC-3300 Vessel Design NC-3310 General Requirements NC-3320 Design Considerations NC-3330 Openings and Reinforcement NC-3350 Design of Welded Construction NC-3360 Special Vessel Requirements NC-3400 Pump Design NC-3410 General Requirements for Centrifugal Pumps NC-3420 Definitions NC-3430 Design Requirements for Centrifugal Pumps NC-3440 Design of Specific Pump Types NC-3450 Design of Class 2 Reciprocating Pumps NC-3500 Valve Design NC-3510 General Requirements NC-3520 Levels B, C, and D Service Limits NC-3530 General Rules NC-3590 Pressure Relief Valve Design NC-3600 Piping Design NC-3610 General Requirements NC-3620 Design Considerations NC-3640 Pressure Design of Piping Products NC-3650 Analysis of Piping Designs NC-3660 Design of Welds NC-3670 Special Piping Requirements NC-3690 Dimensional Requirements for Piping Products NC-3700 Electrical and Mechanical Penetration Assemblies NC-3720 Design Rules NC-3800 Design of Atmospheric Storage Tanks NC-3810 General Requirements NC-3820 Design Considerations NC-3830 Bottom Design NC-3840 Shell Design NC-3850 Roof Design NC-3860 Tank Connections and Appurtenances NC-3900 Zero psi to 15 psi (0 kPa to 100 kPa) Storage Tank Design NC-3910 General Requirements NC-3920 Design Considerations NC-3930 Design Procedure NC-3940 Alternate Rules for Axial Compressive Membrane Stresses in the Cylindrical Walls of 0 psi to 15 psi (0 kPa to 100 kPa) Storage Tanks Article NC-4000 Fabrication and Installation NC-4100 General Requirements NC-4110 Introduction NC-4120 Certification of Materials and Fabrication by Component Certificate Holder NC-4130 Repair of Material NC-4200 Forming, Cutting, and Aligning NC-4210 Cutting, Forming, and Bending NC-4220 Forming Tolerances NC-4230 Fitting and Aligning NC-4240 Requirements for Weld Joints in Components NC-4250 Welding End Transitions — Maximum Envelope NC-4260 Special Requirements for Weld Joints in Vessels Designed to NC-3200 NC-4300 Welding Qualifications NC-4310 General Requirements NC-4320 Welding Qualifications, Records, and Identifying Stamps NC-4330 General Requirements for Welding Procedure Qualification Tests NC-4350 Special Qualification Requirements for Tube‐to‐Tubesheet Welds NC-4360 Qualification Requirements for Welding Specially Designed Welded Seals NC-4400 Rules Governing Making, Examining, and Repairing Welds NC-4410 Precautions to Be Taken Before Welding NC-4420 Rules for Making Welded Joints NC-4430 Welding of Attachments NC-4450 Repair of Weld Metal Defects NC-4500 Brazing NC-4510 Rules for Brazing NC-4520 Brazing Qualification Requirements NC-4530 Fitting and Aligning of Parts to Be Brazed NC-4540 Examination of Brazed Joints NC-4600 Heat Treatment NC-4610 Welding Preheat Requirements NC-4620 Postweld Heat Treatment NC-4630 Heat Treatment of Welds Other Than the Final Postweld Heat Treatment NC-4650 Heat Treatment After Bending or Forming for Pipe, Pumps, and Valves NC-4660 Heat Treatment of Electroslag Welds NC-4700 Mechanical Joints NC-4710 Bolting and Threading NC-4720 Bolting Flanged Joints NC-4730 Electrical and Mechanical Penetration Assemblies NC-4800 Expansion Joints NC-4810 Fabrication and Installation Rules for Bellows Expansion Joints Article NC-5000 Examination NC-5100 General Requirements for Examination NC-5110 Procedure, Qualification, and Evaluation NC-5120 Time of Examination of Welds and Weld Metal Cladding NC-5130 Examination of Weld Edge Preparation Surfaces NC-5140 Examination of Openings Cut in Vessels Designed to NC-3200 NC-5200 Examination of Welds NC-5210 Category A Vessel Welded Joints and Longitudinal Welded Joints in Piping, Pumps, and Valves NC-5220 Category B Vessel Welded Joints and Circumferential Welded Joints in Piping, Pumps, and Valves NC-5230 Category C Vessel Welded Joints and Similar Welded Joints in Other Components NC-5240 Category D Vessel Welded Joints and Similar Welded Joints in Other Components NC-5250 Examination of Welds for Vessels Designed to NC-3200 NC-5260 Fillet, Partial Penetration, Socket, and Attachment Welds NC-5270 Special Welds NC-5280 Weld Joints in Storage Tanks NC-5300 Acceptance Standards NC-5320 Radiographic Acceptance Standards NC-5330 Ultrasonic Acceptance Standards NC-5340 Magnetic Particle Acceptance Standards NC-5350 Liquid Penetrant Acceptance Standards NC-5360 Visual Acceptance Standards for Brazed Joints NC-5380 Gas and Bubble Formation Testing NC-5400 Final Examination of Components NC-5410 Examination After Pressure Testing NC-5500 Qualifications and Certification of Nondestructive Examination Personnel NC-5510 General Requirements NC-5520 Personnel Qualification, Certification, and Verification NC-5530 Records NC-5700 Examination Requirements for Expansion Joints NC-5720 Bellows Expansion Joints Article NC-6000 Testing NC-6100 General Requirements NC-6110 Pressure Testing of Components, Appurtenances, and Systems NC-6120 Preparation for Testing NC-6200 Hydrostatic Tests NC-6210 Hydrostatic Test Procedure NC-6220 Hydrostatic Test Pressure Requirements NC-6230 Bellows Expansion Joints NC-6240 Provision for Embedded or Inaccessible Welded Joints in Piping NC-6300 Pneumatic Tests NC-6310 Pneumatic Testing Procedures NC-6320 Pneumatic Test Pressure Requirements NC-6330 Bellows Expansion Joints NC-6400 Pressure Test Gages NC-6410 Requirements for Pressure Test Gages NC-6500 Atmospheric and 0 psi to 15 psi (0 kPa to 100 kPa) Storage Tanks NC-6510 Testing of Atmospheric Storage Tanks NC-6520 Testing of 0 psi to 15 psi (0 kPa to 100 kPa) Storage Tanks NC-6530 Test Gages NC-6600 Special Test Pressure Situations NC-6610 Components Designed for External Pressure NC-6620 Pressure Testing of Combination Units NC-6900 Proof Tests to Establish Design Pressure NC-6910 General Requirements NC-6920 Procedures NC-6930 Procedure for Components Having Chambers of Special Shape Subject to Collapse Article NC-7000 Overpressure Protection NC-7100 General Requirements NC-7110 Scope NC-7120 Integrated Overpressure Protection NC-7130 Verification of the Operation of Reclosing Pressure Relief Devices NC-7140 Installation NC-7150 Acceptable Pressure Relief Devices NC-7160 Unacceptable Pressure Relief Devices NC-7170 Permitted Use of Pressure Relief Devices NC-7200 Overpressure Protection Report NC-7210 Responsibility for Report NC-7220 Content of Report NC-7230 Certification of Report NC-7240 Review of Report After Installation NC-7250 Filing of Report NC-7300 Relieving Capacity Requirements NC-7310 Expected System Pressure Transient Conditions NC-7320 Unexpected System Excess Pressure Transient Conditions NC-7330 System Faulted Conditions NC-7400 Set Pressures of Pressure Relief Devices NC-7410 Set Pressure Limitations for Expected System Pressure Transient Conditions NC-7420 Set Pressure Limitation for Unexpected System Excess Pressure Transient Conditions NC-7500 Operating and Design Requirements for Pressure and Vacuum Relief Valves NC-7510 Safety, Safety Relief, and Relief Valves NC-7520 Pilot-Operated Pressure Relief Valves NC-7530 Power-Actuated Pressure Relief Valves NC-7540 Safety Valves With Auxiliary Actuating Devices NC-7550 Vacuum Relief Valves NC-7560 Alternative Test Media NC-7600 Nonreclosing Pressure Relief Devices NC-7610 Rupture Disk Devices NC-7620 Installation Requirements NC-7700 Certification NC-7710 Responsibility for Certification of Pressure and Vacuum Relief Valves NC-7720 Responsibility for Certification of Nonreclosing Pressure Relief Devices NC-7730 Capacity Certification of Pressure Relief Valves — Compressible Fluids NC-7740 Capacity Certification of Pressure Relief Valves — Incompressible Fluids NC-7750 Capacity Certification of Vacuum Relief Valves NC-7760 Capacity Determination of Rupture Disk Devices NC-7800 Marking, Stamping With Certification Mark, and Data Reports NC-7810 Pressure and Vacuum Relief Valves NC-7820 Rupture Disk Devices NC-7830 Pressure Relief Valve in Combination With Rupture Disk Devices NC-7840 Certificate of Authorization to Use Certification Mark Article NC-8000 Nameplates, Stamping With Certification Mark, and Reports NC-8100 General Requirements Figures NC-1132.2-1 Attachments in the Component Support Load Path That Do Not Perform a Pressure-Retaining Function NC-1132.2-2 Attachments That Do Not Perform a Pressure-Retaining Function and Are Not in the Component Support Load Path (Nonstructural Attachments) NC-1132.2-3 Attachments That Perform a Pressure-Retaining Function NC-2433.1-1 Weld Metal Delta Ferrite Content NC-2575.2-1 Typical Pressure-Retaining Parts of Pumps and Valves NC-3133.8-1 Chart for Determining Wall Thickness of Tubes Under External Pressure NC-3224.6-1 Design Curves for Torispherical Heads and 2:1 Ellipsoidal Heads for Use With NC-3224.8 and NC-3224.6 NC-3224.13(b)(6)(-a)-1 Inherent Reinforcement for Large End of Cone–Cylinder Junction NC-3224.13(b)(6)(-b)-1 Values for Q for Large End of Cone–Cylinder Junction NC-3224.13(c)(6)(-a)-1 Inherent Reinforcement for Small End of Cone–Cylinder Junction NC-3224.13(c)(6)(-b)-1 Values for Q for Small End of Cone–Cylinder Junction NC-3224.13(d)-1 Cone–Cylinder Junction at Small End Treated as Opening NC-3225-1 Typical Flat Heads and Supported and Unsupported Tubesheets With Hubs NC-3225-2 Some Acceptable Types of Unstayed Flat Heads and Covers NC-3225-3 Attachment of Pressure Parts to Plates to Form a Corner Joint NC-3234.2(a)-1 Nozzle Nomenclature and Dimensions NC-3239.1(b)-1 Examples of Acceptable Transition Details NC-3239.4-1 Limits of Reinforcing Zone NC-3324.2-1 Principal Dimensions of Typical Heads NC-3324.11(a)(6)-1 Large Head Openings, Reverse Curve, and Conical Shell Reducer Sections NC-3325-1 Some Acceptable Types of Unstayed Flat Heads and Covers NC-3326.1-1 Spherically Dished Covers With Bolting Flanges NC-3329(b)-1 Example of Tube Spacing With Pitch of Holes Equal in Every Row NC-3329(b)-2 Example of Tube Spacing With Pitch of Holes Unequal in Every Second Row NC-3329(b)-3 Example of Tube Spacing With Pitch Holes Varying in Every Second and Third Row NC-3329(d)-1 Example of Tube Spacing With Tube Holes on Diagonal Lines NC-3329(d)-2 Diagram for Determining the Efficiency of Longitudinal and Diagonal Ligaments Between Openings in Cylindrical Shells NC-3329(g)-1 Diagram for Determining Equivalent Longitudinal Efficiency of Diagonal Ligaments NC-3332.2-1 Chart for Determining the Value of F NC-3335(b)-1 Some Representative Configurations Describing the te Reinforcement Dimension NC-3335.2-1 Arrangement of Multiple Openings NC-3335.3(b)-1 Minimum Depth for Flange of Flued Openings NC-3351-1 Welded Joint Locations Typical of Categories A, B, C, and D NC-3352-1 Typical Butt Joints NC-3358.1(a)-1 Heads Attached to Shells NC-3361-1 Butt Welding of Sections of Unequal Thicknesses NC-3423-1 Typical Single Volute Casing NC-3423-2 Typical Double Volute Casing NC-3433.4-1 Minimum Tangential Inlet and Outlet Wall Thickness NC-3441.1-1 Type A Pump NC-3441.1-2 Type A Pump NC-3441.1(a)-1 Type A Pump NC-3441.2-1 Type B Pump NC-3441.3-1 Type C Pump NC-3441.3-2 Type C Pump NC-3441.4(a)-1 Type D Pump NC-3441.5-1 Type E Pump NC-3441.6(a)-1 Type F Pump NC-3441.7(a)-1 Axially Split Casing, Volute Pump, Type G NC-3441.7(a)-2 Axially Split Casing, Volute Pump, Type G NC-3441.7(c)-1 Axially Split Casing, Volute Pump, Type G NC-3441.7(c)(2)-1 Typical Section of Type G Pumps NC-3441.7(c)(2)-2 Typical Section of Type G Pumps NC-3441.7(c)(2)-3 Typical Loads on Type G Pumps NC-3441.8-1 Longitudinal Section Through Type H Pump NC-3441.8-2 Transverse Section Through Type H Pump NC-3441.9-1 Type K Pump NC-3441.9-2 Type K Pump NC-3441.10-1 Type N Pump NC-3451(a)-1 Horizontal Single‐Acting Power Pump Liquid Ends NC-3521-1 Typical Sections of Valve Bodies NC-3591.1-1 Typical Pressure Relief Devices NC-3591.1-2 Typical Pressure Relief Devices NC-3595.3-1 Valve Nozzle NC-3622-1 Examples of Reversing and Nonreversing Dynamic Loads NC-3643.2(b)-1 Typical Welded Branch Connections NC-3643.2(b)-2 Typical Right Angle Branch Connections Made Using a Fillet Weld or a Partial Penetration Weld NC-3643.3(c)(1)-1 Reinforcement of Branch Connections NC-3643.3(c)(1)-2 Some Representative Configurations Describing the te Reinforcement Dimensions NC-3643.4(a)-1 Reinforced Extruded Outlets NC-3647.2-1 Types of Permanent Blanks NC-3653.3-1 Reducing or Full Outlet Branch Connections or Tees NC-3673.2(b)-2 Branch Connection Nomenclature NC-3861-1 Roof Manholes NC-3862(a)-1 Flanged Roof Nozzles NC-3862(a)-2 Screwed or Socket Weld Roof Nozzles NC-3863-1 Typical Welded Bottom Outlet Elbow NC-3922.1-1 Biaxial Stress Chart for Combined Tension and Compression, 30,000 psi to 38,000 psi (205 MPa to 260 MPa) Yield Strength Steels NC-3922.1-2 Reduction of Design Stresses Required to Allow for Biaxial Stresses of Opposite Sign NC-3932.1-1 Some Typical Free Body Diagrams for Certain Shapes of Tanks NC-3933.4(a)-1 Compression Ring Region NC-3933.5(d)-1 Permissible Details of Compression Ring NC-3944-1 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 25 ksi at Temperatures ≤ 300°F NC-3944-1M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 175 MPa at Temperatures ≤ 150°C NC-3944-2 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 30 ksi at Temperatures ≤ 300°F NC-3944-2M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 210 MPa at Temperatures ≤ 150°C NC-3944-3 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 35 ksi at Temperatures ≤ 300°F NC-3944-3M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 245 MPa at Temperatures ≤ 150°C NC-3944-4 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 40 ksi at Temperatures ≤ 300°F NC-3944-4M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 280 MPa at Temperatures ≤ 150°C NC-3944-5 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 45 ksi at Temperatures ≤ 300°F NC-3944-5M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 315 MPa at Temperatures ≤ 150°C NC-3944-6 Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 50 ksi at Temperatures ≤ 300°F NC-3944-6M Design Factor Times Allowable Axial Membrane Compressive Stress Versus Radius Over Thickness for Ferrous Materials With Yield Strengths of 350 MPa at Temperatures ≤ 150°C NC-3947-1 Meridional Straightness Tolerance NC-4221.1-1 Maximum Difference in Cross‐Sectional Diameters NC-4221.2(a)-1 Maximum Permissible Deviation e From a True Circular Form NC-4221.2(a)-2 Maximum Arc Length for Determining Plus or Minus Deviation NC-4233-1 Butt Weld Alignment and Mismatch Tolerances for Unequal I.D. and O.D. When Components Are Welded From One Side and Fairing Is Not Performed NC-4243-1 Acceptable Full Penetration Weld Details for Category C Joints NC-4243-2 Attachment of Pressure Parts to Plates to Form a Corner Joint NC-4243.1-1 Typical Flat Heads and Supported and Unsupported Tubesheet With Hubs NC-4244(a)-1 Nozzles, Branch, and Piping Connections Joined by Full Penetration Butt Welds NC-4244(b)-1 Nozzles, Branch, and Piping Connections Joined by Full Penetration Corner Welds NC-4244(c)-1 Deposited Weld Metal Used as Reinforcement of Openings for Nozzles, Branch, and Piping Connections NC-4244(d)-1 Some Acceptable Types of Welded Nozzles, Branch, and Piping Connections NC-4244(e)-1 Some Acceptable Types of Welded Nozzles NC-4244(e)-2 Some Acceptable Types of Small Fittings NC-4246.1(a)-1 Typical Bottom and Bottom‐to‐Shell Joints NC-4246.3-1 Typical Roof and Roof‐to‐Shell Joints NC-4246.5-1 Roof Manholes NC-4246.5-2 Flanged Roof Nozzles NC-4246.5-3 Screwed or Socket Weld Roof Nozzles NC-4246.5-4 Welded Bottom Outlet Elbow NC-4250-1 Welding End Transitions Maximum Envelope NC-4265-1 Acceptable Full Penetration Details to Form a Corner Joint NC-4265-2 Acceptable Full Penetration Weld Details for Category C Joints NC-4266(a)-1 Nozzles Attached by Full Penetration Butt Welds NC-4266(b)-1 Full Penetration Corner Welded Attachments NC-4266(c)-1 Pad and Screwed Fitting Types of Welded Nozzles and Other Connections to Shells, Drums, and Headers NC-4266(d)-1 Partial Penetration Weld Connections NC-4267-1 Attachments NC-4427-1 Fillet and Socket Weld Details and Dimensions NC-4433-1 Types of Attachment Welds NC-4437.2(b)-1 Some Acceptable Methods of Attaching Stiffening Rings to Shells of Cylindrical Vessels Subjected to External Pressure NC-4511-1 Brazed Connections for Appurtenances and Piping NC-4730-1 Penetration Assembly NC-4810(c)-1 Permissible Attachment Welds for Bellows NC-7734.2(a)-1 Values of F for Nonchoking Flow NC-7754.2(a)-1 Values of F for Nonchoking Flow Tables NC-2311(a)-1 Exemptions From Impact Testing Under NC-2311(a)(8) NC-2332.1-1 Required Cv Lateral Expansion Values for Pressure-Retaining Material Other Than Bolting NC-2332.1-2 Required Cv Energy Values for Pressure-Retaining Material Other Than Bolting NC-2332.3-1 Required Cv Values for Bolting Material Tested in Accordance With NC-2332.3 NC-2432.1-1 Sampling of Welding Materials for Chemical Analysis NC-2432.2-1 Welding Material Chemical Analysis NC-2571-1 Required Examinations NC-3215.1(a)-1 Pressure and Temperature Relationships NC-3217-1 Stress Intensity k Factors for Design and Service Load Combinations NC-3239.3(a)-1 Required Minimum Reinforcing Area, Ar NC-3239.7-1 Stress Indices for Internal Pressure Loading NC-3266-1 Minimum Number of Pipe Threads for Connections NC-3321-1 Stress Limits for Design and Service Loadings NC-3321-2 Classification of Stress Intensity in Vessels for Some Typical Cases NC-3324.2-1 Values of Factor K NC-3324.8(b)-1 Values of Factor M NC-3324.11(b)(2)-1 Values of Δ for Junctions at the Large Cylinder for α ≤ 30 deg NC-3324.11(b)(3)-1 Values of Δ for Junctions at the Small Cylinder for α ≤ 30 deg NC-3332.2-1 Values of Spherical Radius Factor K1 NC-3416-1 Stress and Pressure Limits for Design and Service Loadings NC-3521-1 Levels A, B, C, and D Service Limits NC-3592.2(b)-1 Class 2 Pressure Relief Devices: Levels B, C, and D Service Loadings NC-3611.2(e)-1 Stress Range Reduction Factors NC-3641.1(a)-1 Values of A NC-3673.2(b)-1 Stress Indices, Flexibility, and Stress Intensification Factors NC-3821.5-1 Design and Service Limits NC-3861-1 Roof Manholes NC-3862(a)-1 Flanged Roof Nozzles NC-3862(a)-2 Screwed or Socket Weld Roof Nozzles NC-3863-1 Welded Bottom Outlet Elbow NC-3865-1 Platforms and Walkways NC-3865-2 Stairways NC-3865-3 Stairway Rise, Run, and Angle Relationships NC-3921.8-1 Design and Service Limits for Steel Tanks NC-3923.1-1 Maximum Allowable Stress Values for Structural Members NC-3932.2(d)-1 Factors for Determining Values of R1 and R2 for 2:1 Ellipsoidal Roofs and Bottoms NC-4232(a)-1 Maximum Allowable Offset in Final Welded Joints NC-4247.6(d)-1 Minimum Size for Fillet Welds NC-4524-1 Maximum Design Temperatures for Brazing Filler Metal, °F (°C) NC-4622.1-1 Mandatory Requirements for Postweld Heat Treatment of Welds NC-4622.4(c)-1 Alternative Holding Temperatures and Times NC-4622.7(b)-1 Exemptions to Mandatory PWHT NC-5111-1 Thickness, IQI Designations, and Essential Holes, and Wire Diameters Endnotes

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