API TR 6J1-2000 Elastomer Life Estimation Testing Procedures (First Edition)《弹性寿命估计测定过程.第1版》.pdf
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1、Elastomer Life Estimation Test i ng Procedu res API TR 6J1 FIRST EDITION, AUGUST 2000 American Petroleum Institute Helping You Get The Job Done Right.“ Elastomer Life Estimation Testing Procedures Upstream Segment API TR 6J1 FIRST EDITION, AUGUST 2000 American Petroleum Institute Helping You Get The
2、 Job Done Right2 SPECIAL NOTES API publications necessarily address problems of a general nature. With respect to partic- ular circumstances, local, state, and federal laws and regulations should be reviewed. API is not undertaking to meet the duties of employers, manufacturers, or suppliers to warn
3、 and properly train and equip their employees, and others exposed, concerning health and safety risks and precautions, nor undertaking their obligations under local, state, or fed- eral laws. Information concerning safety and health risks and proper precautions with respect to par- ticular materials
4、 and conditions should be obtained from the employer, the manufacturer or supplier of that material, or the material safety data sheet. Nothing contained in any API publication is to be construed as granting any right, by implication or otherwise, for the manufacture, sale, or use of any method, app
5、aratus, or prod- uct covered by letters patent. Neither should anything contained in the publication be con- strued as insuring anyone against liability for infringement of letters patent. Generally, API standards are reviewed and revised, reaffirmed, or withdrawn at least every five years. Sometime
6、s a one-time extension of up to two years will be added to this review cycle. This publication will no longer be in effect five years after its publication date as an operative API standard or, where an extension has been granted, upon republication. Status of the publication can be ascertained from
7、 the API Upstream Segment telephone (202) 682- 80001. A catalog of API publications and materials is published annually and updated quar- terly by API, 1220 L Street, N.W., Washington, D.C. 20005. This document was produced under API standardization procedures that ensure appropri- ate notification
8、and participation in the developmental process and is designated as an API standard. Questions concerning the interpretation of the content of this standard or com- ments and questions Concerning the procedures under which this standard was developed should be directed in writing to the general mana
9、ger of the Upstream Segment, American Petroleum Institute, 1220 L Street, N.W., Washington, D.C. 20005. Requests for permission to reproduce or translate all or any part of the material published herein should also be addressed to the general manager. API standards are published to facilitate the br
10、oad availability of proven, sound engineer- ing and operating practices. These standards are not intended to obviate the need for apply- ing sound engineering judgment regarding when and where these standards should be utilized. The formulation and publication of API standards is not intended in any
11、 way to inhibit anyone from using any other practices. Any manufacturer marking equipment or materials in conformance with the marking requirements of an API standard is solely responsible for complying with all the applicable requirements of that standard. API does not represent, warrant, or guaran
12、tee that such prod- ucts do in fact conform to the applicable API standard. All rights reserved. No part of this work my be reproduced, stored in a retrieval system, or transmitted by any meuns, electronic, mechanical, photocopying, recording, or otherwise, without prior written permission from the
13、publisher. Contact the Publisher, API Publishing Services, 1220 L Street, N.W., Washington, D.C. 20005. Copyright O 2000 American Petroleum institute FOREWORD API publications may be used by anyone desiring to do so. Every effort has been made by the Institute to assure the accuracy and reliability
14、of the data contained in them; however, the Institute makes no representation, warranty, or guarantee in connection with this publication and hereby expressly disclaims any liability or responsibility for loss or damage resulting from its use or for the violation of any federal, state, or municipal
15、regulation with which this publication may conflict. Suggested revisions are invited and should be submitied to the general manager of the Upstream Segment, American Petroleum Institute, 1220 L Street, N.W., Washington, D.C. 20005. iii CONTENTS Page 1 SCOPE . 1 2 REFERENCES 1 3 PROBLEMSTATEMENT . 1
16、4 LIFE ESTIMATION TECHNIQUE-OVERVIEW . 1 5 PROCEDURE FOR LIFE ESTIMATION TESTING OF ELASTOMERS . 2 6 SUMMARY . 4 Figures 1-Typical Life Estimation Plot 3 3-TypicaiTestCycle 5 2-0-RingTestFixture . 4 V Elastomer Life Estimation Testing Procedures 1 Scope Estimating the service life of elastomeric sea
17、ling elements used in severe environments, such as encountered in energy exploration and oil/gas production industries, has been extremely difficult. Elastomeric sealing elements are fre- quently exposed to methane, hydrogen sulfide, and carbon dioxide gases, along with crude oil, water and corrosio
18、n inhibiting chemicals. The proposed procedure outlines a tech- nique based on the Arrhenius principle of chemical reaction rates, which permits the life of an elastomeric material to be estimated when exposed to a severe service environment. The actual test procedure must be coordinated and agreed
19、upon between the supplier of the equipment that incorporates the elastomer sealing elements and the end user. The procedure should be based upon a definition of the service conditions and requirements such as: a. Temperature-steady state or a high and low range of service. b. Fluids and gases-stagna
20、nt or flowing. c. Pressure-continuous or a low and high range. d. Chemicals and additives-inhibitors, descalers, acidiz- ing, etc. e. Mechanical requirements-dynamic or static, torque, set- ting force. f. Failure criteria-pressure leakage, loss of mechanical function, inability to set or retrieve. 2
21、 References The following references are recommended as sources of additional information on the life prediction technique dis- cussed above: 1. Vicic, J.C., Testing of Polymers for Oil and Gas Appli- cations, American Chemical Society, Energy Rubber Group, 1984. 2. Abrams, P.I., Kennelley, K.J., Jo
22、hnson, D.V., A User?s Approach to Qualification of Dynamic Seals for Sour Gas Environments, American Chemical Society, Rubber Divi- sion, 1988. 3. Brady, J.E., Humiston, G.E., General Chemistry Prin- ciples and Structure, Third Edition, John Wiley the mini- mum internal volume should be equal to or
23、exceed 100 cc. The main body and end closures contain O-ring glands that are fabricated from an appropriate alloy. Typically, a corro- sion resistant alloy is used to fabricate the test fixture. Since thermo-chemical degradation of the elastomeric sealing ele- ment is of interest, thermo-mechanical
24、effects should be min- imized. Therefore, clearances between the end closure and the test vessel bore are minimized to eliminate extrusion (thermo-mechanicai type failure) of the candidate elastomer. If additional mechanical protection is required for the 0- ring seal, an anti-extrusion ring (back-u
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