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ASME PTB 5 2013

$98.04

ASME PTB 5 Section VIII – Division 3 Example Problem Manual

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ASME 2013 101
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PDF Pages PDF Title
11 1 GENERAL REQUIREMENTS
1.1 Introduction
1.2 Scope
1.3 Organization and Use
13 2 EXAMPLE PROBLEM DESCRIPTIONS PART CONTENTS
General
2.2 Calculation Precision
2.3 Tables
16 3 EXAMPLE PROBLEMS MATERIALS
3.1 Example Problem E-KM-2.1.1 ā€“ Evaluation of Test Locations for Cylindrical Forgings in Accordance with KM-2
17 3.2 Example Problem E-KM-2.1.2 ā€“ Calculation of Fracture Toughness based on Charpy Impact Tests (KM-251)
19 4 EXAMPLE PROBLEMS GENERAL DESIGN ISSUES
4.1 Example Problem E-KD-2.1.1 ā€“ Determination of Design Pressure in Cylindrical Vessel ā€“ Monobloc Vessel
22 4.2 Example Problem E-KD-2.1.2 ā€“ Determination of Design Pressure in Cylindrical Vessel ā€“ Dual Layered Vessel
23 4.3 Example Problem E-KD-2.2.1 ā€“ Elastic Plastic Analysis
31 4.4 Example Problem E-KD-2.2.2 ā€“ Protection Against Local Failure (Elastic-Plastic Analysis)
35 4.5 Example Problem E-KD-2.2.3 ā€“ Ratcheting Assessment Elastic-Plastic Stress Analysis
43 4.6 Example Problem E-KD-2.2.4 ā€“ Generate a Stress-Strain Curve for Use in Elastic-Plastic Finite Element Analysis
45 4.7 Example Problem E-KD-2.3.1 ā€“ Linear Elastic Stress Analysis
54 4.8 Example Problem E-KD-2.3.2 ā€“ Elastic Stress Analysis Protection Against Local Failure KD-247
57 5 EXAMPLE PROBLEMS FATIGUE ASSESSMENT
5.1 Example Problem E-KD-3.1.1 ā€“ Evaluation of Leak-Before-Burst in Cylindrical Vessel ā€“ Monobloc Vessel
60 5.2 Example Problem E-KD-3.1.2 ā€“ Evaluation of Leak-Before-Burst in Cylindrical Vessel ā€“ Dual Layered Vessel
61 5.3 Example Problem E-KD-3.1.3 ā€“ Fatigue Assessment of Welds ā€“ Elastic Analysis and Structural Stress
65 5.4 Example Problem E-KD-3.1.4 ā€“ Non-Welded Vessel using Design Fatigue Curves
70 6 EXAMPLE PROBLEMS LIFE ASSESSMENT USING FRACTURE MECHANICS
6.1 Example Problem E-KD-4.1.1 ā€“ Determine the Design Life of a Vessel from E-KD-2.1.1
79 7 EXAMPLE PROBLEMS ON RESIDUAL STRESSES USING AUTOFRETTAGE
7.1 Example Problem E-KD-5.1.1 ā€“ Determine Residual Stresses in Autofrettaged Cylinder Wall with known Autofrettage Pressure
82 7.2 Example Problem E-KD-5.1.2 ā€“ Determine the Autofrettage Pressure in a Cylinder Wall with known Residual ID Tangential Strain
85 8 EXAMPLE PROBLEMS IN CLOSURES AND CONNECTIONS
8.1 Example Problem E-KD-6.1.1 ā€“ Evaluation of a Connection in a 60 ksi Pressure Vessel at 100Ā°F
87 8.2 Example Problem E-KD-6.1.2 ā€“ Alternative Evaluation of Stresses in Threaded End Closures
90 9 EXAMPLE PROBLEMS ON RESIDUAL STRESSES IN MULTIWALL VESSELS
9.1 Example Problem E-KD-8.1.1 ā€“ Dual Wall Cylindrical Vessel Stress Distribution
93 10 EXAMPLE PROBLEMS IN DETERMINATION OF HYDROSTATIC TEST PRESSURE
10.1 Example Problem E-KT-3.1.1 ā€“ Determination of Hydrostatic Test Pressure in Cylindrical Vessel
96 11 EXAMPLE PROBLEMS USING THE METHODS OF APPENDIX E
11.1 Example Problem E-AE-2.1.1 ā€“ Blind End Dimensions and Corner Stresses in a Vessel without Detailed Stress Analysis ā€“ Thick Wall Pressure Vessel
97 11.2 Example Problem E-AE-2.1.2 ā€“ Blind End Dimensions and Corner Stresses in a Vessel without Detailed Stress Analysis ā€“ Thin Wall Pressure Vessel
98 11.3 Example Problem E-AE-2.2.1 ā€“ Thread Load Distribution
ASME PTB 5 2013
$98.04