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ASME BPVC CODE CASES: Boilers and Pressure Vessels- Supplement 01-2017, 2017
- Summary of Changes
- List of Changes in Record Number Order
- Numeric Index
- Subject Index
- Index of Material Specifications Referred to in Cases
- Case 2151-2 [Go to Page]
- Tables [Go to Page]
- Table 1 Material Specifications
- Table 2 Maximum Stress Values, S, for Class 2
- Table 2M Maximum Stress Values, S, for Class 2
- Case 2235-13 [Go to Page]
- Supplement I: Eddy Current Surface Examination Procedure Requirements
- Case 2494-2 [Go to Page]
- Tables [Go to Page]
- Table 1 Chemical Requirements
- Table 2 Tensile Requirements
- Table 3 Maximum Allowable Stresses
- Table 3M Maximum Allowable Stresses
- Case 2603-2 [Go to Page]
- Tables [Go to Page]
- Table 1 Maximum Allowable Stress Values for SA-240 Plate, Sheet, and Strip, Seamless SA-790 Pipe, and Seamless SA-789 Tube
- Table 1M Maximum Allowable Stress Values for SA-240 Plate, Sheet, and Strip, Seamless SA-790 Pipe, and Seamless SA-789 Tube
- Table 2 Maximum Allowable Stress Values for Welded SA-790 Pipe and Welded SA-789 Tube
- Table 2M Maximum Allowable Stress Values for Welded SA-790 Pipe and Welded SA-789 Tube
- Case 2668-1 [Go to Page]
- Tables [Go to Page]
- Table 1 Maximum Allowable Stress for Grade UNS S43932, Seamless SA-268 Tube, Plate, and Strip
- Table 1M Maximum Allowable Stress for Grade UNS S43932, Seamless SA-268 Tube, Plate, and Strip
- Table 2 Maximum Allowable Stress Values for Grade UNS S43932, SA-268 Welded Tubeand Pipe
- Table 2M Maximum Allowable Stress Values fo rGrade UNS S43932, SA-268 Welded Tube and Pipe
- Table 3 Maximum Allowable Stress Values for Grade UNS S43940, SA-268 Seamless Tube, Plate, and Strip
- Table 3M Maximum Allowable Stress Values for Grade UNS S43940, SA-268 Seamless Tube, Plate, and Strip
- Table 4 Maximum Allowable Stress Values for Grade UNS S43940, SA-268 Welded Tube and Pipe
- Table 4M Maximum Allowable Stress Values for Grade UNS S43940, SA-268 Welded Tube and Pipe
- Case 2775 [Go to Page]
- Tables [Go to Page]
- Table 1 Maximum Allowable Stress Values
- Table 1M Maximum Allowable Stress Values
- Case 2816 [Go to Page]
- Supplement I: Eddy Current Surface Examination Procedure Requirements
- Case 2819
- Case 2843-1 [Go to Page]
- 1 Scope
- 2 Strain Deformation Method
- 3 Materials and Other Properties [Go to Page]
- 3.1 Materials
- 3.2 Weld Materials
- 3.3 Design Fatigue Strain Range
- 3.4 Stress Values
- 3.5 Stress Terms
- 4 Design Criteria [Go to Page]
- 4.1 Short-Term Loads
- 5 Load-Controlled Limits [Go to Page]
- 5.1 Design Load Limits
- 5.2 Operating Load Limits
- 6 Strain Limits [Go to Page]
- 6.1 Test A-1 Alternative Rules if Creep Effects Are Negligible
- 6.2 Strain Limits — Elastic Analysis [Go to Page]
- 6.2.1 General Requirements
- 6.2.2 Test A-2
- 6.2.3 Test A-3
- 6.3 Strain Limits — Simplified Inelastic Analysis [Go to Page]
- 6.3.1 General Requirements
- 6.3.2 General Requirements for Tests B-1 and B-2
- 6.3.3 Applicability of Tests B-1 and B-2
- 6.4 Strain Limits — Inelastic Analysis
- 7 Creep Fatigue Evaluation [Go to Page]
- 7.1 General Requirements
- 7.2 Creep Fatigue Procedure [Go to Page]
- 7.2.1 Creep Procedure
- 7.2.2 Fatigue Procedure
- 7.2.3 Creep-Fatigue Interaction
- 8 Nomenclature
- Mandatory Appendices [Go to Page]
- Mandatory Appendix I Cross-Reference of Tables and Figures in Section III, Division 1, Subsection NH (2015 Edition) and Section II, Part D
- Table I-1 Cross-Reference Table of Section II, Part D and Section III, Subsection NH 2015 Edition
- Tables [Go to Page]
- Table 1 Permissible Base Materials for Structures Other Than Bolting
- Table 2 Temperature and Service Life Limitations
- Table 3 Permissible Weld Materials
- Table 4 Stress Values
- Table 5 Short-Term Reduction Factor C1
- Table 6 Values of Parameters r and s
- Table 7 Minimum Temperature for Test A-1
- Table 8T emperatures at Which S = St at 105 hr for Tests A-3, B-1, and B-2
- Table 9 Kʹ Values
- Figures [Go to Page]
- Figure 1 General Outline of Strain Deformation Procedure for Creep Fatigue Analysis
- Figure 2 Flow Diagram for Load-Controlled Stress Limits
- Figure 3 Use-Fractions for Membrane Stress
- Figure 4 Use-Fractions for Membrane Plus BendingStress
- Figure 5 Requirements for Strain Limits
- Figure 6 Stress Criteria for Test A-1
- Figure 7 General Requirements for Tests A-2 and A-3
- Figure 8 Effective Creep-Stress Parameter, Z, for Simplified Elastic Analysis Using Tests B-1 and B-2
- Figure 9 Effective Creep-Stress Parameter, Z, for Simplified Inelastic Analysis Using Test B-2
- Figure 10 Stress-Strain Relationship
- Figure 11 Inelastic Multiaxial Adjustments
- Figure 12 Adjustment for Inelastic Biaxial Poisson’s Ratio
- Figure 13 Method for Determining Stress RelaxationFrom Isochronous Curves
- Figure 14 Stress-Relaxation Limits for Creep Damage
- Figure 15 Creep-Fatigue Damage Envelope
- Case 2870-1
- Case 2871-1
- Case 2876-1
- Case 2880 [Go to Page]
- Tables [Go to Page]
- Table 1Maximum Allowable Stresses
- Table 1MMaximum Allowable Stresses
- Table 2Chemical Requirements
- Table 3Mechanical Requirements
- Case 2881 [Go to Page]
- Tables [Go to Page]
- Table 1 Maximum Allowable Stress Values for ASTM B16, UNS C36000, H02 Temper
- Table 1M Maximum Allowable Stress Values for ASTM B16, UNS C36000, H02 Temper
- Table 2 Tensile Strength Values for ASTM B16, UNS C36000, H02 Temper
- Table 2M Tensile Strength Values for ASTM B16, UNS C36000, H02 Temper
- Table 3 Yield Strength Values for ASTM B16, UNS C36000, H02 Temper
- Table 3M Yield Strength Values for ASTM B16, UNS C36000, H02 Temper
- Table 4 Maximum Allowable Stress Values for ASTM B16, UNS C36000, H02 Temper After Brazing
- Table 4M Maximum Allowable Stress Values for ASTM B16, UNS C36000, H02 Temper After Brazing
- Case 2882
- Case 2883
- Case 2884 [Go to Page]