ASME PTB-6-2013 Guidelines for Strain Gaging of Pressure Vessels Subjected to External Pressure Loading in the PVHO-1 Standard《载人压力容器-1标准中承受外部压力负载的压力容器应力规测指南》.pdf
《ASME PTB-6-2013 Guidelines for Strain Gaging of Pressure Vessels Subjected to External Pressure Loading in the PVHO-1 Standard《载人压力容器-1标准中承受外部压力负载的压力容器应力规测指南》.pdf》由会员分享,可在线阅读,更多相关《ASME PTB-6-2013 Guidelines for Strain Gaging of Pressure Vessels Subjected to External Pressure Loading in the PVHO-1 Standard《载人压力容器-1标准中承受外部压力负载的压力容器应力规测指南》.pdf(37页珍藏版)》请在麦多课文档分享上搜索。
1、ASME PTB-6-2013Guidelines for Strain Gaging of Pressure Vessels Subjected to External Pressure Loading in the PVHO-1 StandardPTB-6-2013 GUIDELINES FOR STRAIN GAGING OF PRESSURE VESSELS SUBJECTED TO EXTERNAL PRESSURE LOADING IN THE PVHO-1 STANDARD Lawrence J. Goland Southwest Research Institute PTB-6
2、-2013 Date of Issuance: June 21, 2013 This document was supported by ASME Pressure Technology Codes and Standards (PTCS) through the ASME Standards Technology, LLC (ASME ST-LLC). Neither ASME, the author, nor others involved in the preparation or review of this document, nor any of their respective
3、employees, members or persons acting on their behalf, makes any warranty, express or implied, or assumes any legal liability or responsibility for the accuracy, completeness or usefulness of any information, apparatus, product or process disclosed, or represents that its use would not infringe upon
4、privately owned rights. Reference herein to any specific commercial product, process or service by trade name, trademark, manufacturer or otherwise does not necessarily constitute or imply its endorsement, recommendation or favoring by ASME or others involved in the preparation or review of this doc
5、ument, or any agency thereof. The views and opinions of the authors, contributors and reviewers of the document expressed herein do not necessarily reflect those of ASME or others involved in the preparation or review of this document, or any agency thereof. ASME does not “approve,” “rate”, or “endo
6、rse” any item, construction, proprietary device or activity. ASME does not take any position with respect to the validity of any patent rights asserted in connection with any items mentioned in this document, and does not undertake to insure anyone utilizing a standard against liability for infringe
7、ment of any applicable letters patent, nor assume any such liability. Users of a code or standard are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such rights, is entirely their own responsibility. Participation by federal agency rep
8、resentative(s) or person(s) affiliated with industry is not to be interpreted as government or industry endorsement of this publication. ASME is the registered trademark of The American Society of Mechanical Engineers. No part of this document may be reproduced in any form, in an electronic retrieva
9、l system or otherwise, without the prior written permission of the publisher. The American Society of Mechanical Engineers Two Park Avenue, New York, NY 10016-5990 Copyright 2013 by THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS All rights reserved Printed in the U.S.A. PTB-6-2013 iii TABLE OF CONTENT
10、S Foreword . v Abstract vi Acknowledgements . vii 1 PURPOSES OF STRAIN GAGING PRESSURE HULL 1 1.1 General . 1 1.2 Monitoring For Behavior . 1 1.3 Monitoring For Stability. 2 2 STRAIN GAGE ROSETTE TYPES AND RECOMMENDED USES . 3 2.1 General . 3 2.2 Use of Uniaxial Strain Gages . 4 2.3 Use of Biaxial (
11、Tee) Strain Gage Rosettes. 4 2.4 Use of Triaxial Strain Gage Rosettes . 5 3 NOMENCLATURE FOR PRESSURE HULLS 6 4 GENERAL GUIDELINES FOR LOCATIONS OF STRAIN GAGES AND ROSETTES . 9 5 EXAMPLE OF BASIC STRAIN GAGE LOCATIONS 10 6 EXAMPLE OF COMPLEX STRAIN GAGE LOCATIONS 12 6.1 General . 12 6.2 Locations o
12、n Ring-Stiffened Cylindrical Hull . 17 6.3 Locations on Hemispherical Heads 17 LIST OF FIGURES Figure 2.1 Examples of Uniaxial and Typical Strain Gage Rosettes . 3 Figure 3.1 Illustrative Hull Components . 6 Figure 3.2 End Bay Region in Typical Ring Stiffened Hull (and Exaggerated Displaced Shape un
13、der External Pressure Load) 7 Figure 3.3 Out-of-Circularity (OOC) of Cylindrical Pressure Hull . 7 Figure 3.4 Out-of-Fairness (OOF) of Cylindrical Pressure Hull . 8 Figure 3.5 Out-of-Sphericity (OOS) of Spherical/Hemispherical Pressure Hull 8 Figure 5.1 Basic Strain Gage Location on Pressure Hull 10
14、 Figure 6.1 Complex Strain Gage Locations on Pressure Hull . 13 PTB-6-2013 iv Figure 6.2 Complex Strain Gage Locations on Pressure Hull . 14 Figure 6.3 Complex Strain Gage Locations on Pressure Hull . 15 Figure 6.4 Complex Strain Gage Locations on Pressure Hull . 18 Figure 6.5 Complex Strain Gage Lo
15、cations on Pressure Hull . 19 Figure 6.6 Complex Strain Gage Locations on Pressure Hull . 20 Figure 6.7 Complex Strain Gage Locations on Pressure Hull . 21 Figure 6.8 Complex Strain Gage Locations on Pressure Hull . 22 Figure 6.9 Complex Strain Gage Locations on Pressure Hull . 23 Figure 6.10 Comple
16、x Strain Gage Locations on Pressure Hull . 24 Figure 6.11 Complex Strain Gage Locations on Pressure Hull . 25 Figure 6.12 Complex Strain Gage Locations on Pressure Hull . 26 Figure 6.13 Complex Strain Gage Locations on Pressure Hull . 27 PTB-6-2013 v FOREWORD Strain gaging of pressure vessels (also
17、known as pressure hulls) subjected to the external hydrostatic test pressure loading serves to monitor the structural behavior and response of the pressure vessel under external pressure load conditions. Monitoring the gages during the hydrostatic test can allow the hydrostatic test to be halted pri
18、or to causing significant damage and/or collapse of the hull. Therefore the use of strain gaging is recommended to help observe any deviation from the predicted strains (stresses) vs. external pressure in order to avoid unexpected deformation of the hull and possible collapse during the hydrostatic
19、test. Established in 1880, the American Society of Mechanical Engineers (ASME) is a professional not for-profit organization with more than 127,000 members promoting the art, science and practice of mechanical and multidisciplinary engineering and allied sciences. ASME develops codes and standards t
20、hat enhance public safety, and provides lifelong learning and technical exchange opportunities benefiting the engineering and technology community. Visit www.asme.org for more information. The ASME Standards Technology, LLC (ASME ST-LLC) is a not-for-profit Limited Liability Company, with ASME as th
21、e sole member, formed in 2004 to carry out work related to newly commercialized technology. The ASME ST-LLC mission includes meeting the needs of industry and government by providing new standards-related products and services, which advance the application of emerging and newly commercialized scien
22、ce and technology and providing the research and technology development needed to establish and maintain the technical relevance of codes and standards. Visit www.stllc.asme.org for more information. PTB-6-2013 vi ABSTRACT This document provides information and guidance regarding the use of strain g
23、aging of pressure hulls subjected to external hydrostatic test pressure loading. The document presents two examples of strain gaging a pressure vessel subjected to external pressure loading. The first example shows a basic strain gaging plan useful for validating strain and stress analyses, which re
24、quires a minimal number of strain gages located at general positions on the hull, and the second example shows a strain gage layout plan which is useful for not only validating strain and stress analyses, but also for monitoring the behavior of the hull during the hydrostatic test, which requires th
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