TIA TSB62-13-2000 ITM-13 Measuring Dynamic Strength and Fatigue Parameters of Optical Fibers by Two-Point Bending《ITM-13 用两点弯曲法测量光纤的动态强度和疲劳参数》.pdf
《TIA TSB62-13-2000 ITM-13 Measuring Dynamic Strength and Fatigue Parameters of Optical Fibers by Two-Point Bending《ITM-13 用两点弯曲法测量光纤的动态强度和疲劳参数》.pdf》由会员分享,可在线阅读,更多相关《TIA TSB62-13-2000 ITM-13 Measuring Dynamic Strength and Fatigue Parameters of Optical Fibers by Two-Point Bending《ITM-13 用两点弯曲法测量光纤的动态强度和疲劳参数》.pdf(18页珍藏版)》请在麦多课文档分享上搜索。
1、TIA/EIA TELECOMMUNICATIONS SYSTEMS BULLETIN ITM-13 Measuring Dynamic Strength and Fatigue Parameters of Optical Fibers By Two-Point Bending TSB62-13 MAY 2000 TELECOMMUNICATIONS INDUSTRY ASSOCIATION “ Representing the telecommunications industn in asoctition with the Electronic industrier Alliance El
2、ectronic Industries Alliance STD-EIA TSB62-L3-ENGL 2000 H 3234600 0656568 162 .I NOTICE TWEIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement o
3、f products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for his particular need. Existence of such Standards and Publications shall not in any respect preclude any member or nonmember of TWEIA from manufacturing or selling products not conforming to s
4、uch Standards and Publications, nor shall the existence of such Standards and Publications preclude their voluntary use by those other than TIA/EIA members, whether the standard is to be used either domestically or internationally. Standards, Publications and Bulletins are adopted by EL4 in accordan
5、ce with the American National Standards Institute (ANSI) patent policy. By such action, TIA/EIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard, Publication, or Bulletin. Technical Bulletins are distinguished from TWEN St
6、andards or Interim Standards, in that they contain a compilation of engineering data or information useful to the technical community, and represent approaches to good engineering practices that are suggested by the formulating comi ttee. This Bulletin is not intended to preclude or discourage other
7、 approaches that similarly represent good engineering practice, or that may be acceptable to, or have been accepted by, appropriate bodies. Parties who wish to bring other approaches to the attention of the formulating committee to be considered for inclusion in future revisions of this Bulletin are
8、 encouraged to do so. It is the intention of the formulating committee to revise and update this Bulletin from time to time as may be occasioned by changes in technology, industry practice, or government regulations, or for other appropriate reasons. (From Project No. 4757, formulated under the cogn
9、izance of the TIA FO-6.6 Subcommittee on Fibers and Materials.) Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION 2000 Standards and Technology Department 2500 Wilson Boulevard Arlington, VA 22201 PRICE: Please refer to the current Catalog of ELECTRONIC INDUSTRIES ALLIANCE STANDARDS and ENGINEERI
10、NG PUBLICATIONS or call Global Engineering Documents, USA and Canada (1-800-854-7179) International (303-397-7956) All rights reserved Printed in U.S.A. STD-EIA TSBbZ-Lg-ENGL 2000 I 3234600 0656569 UT9 I TINEIA-TSB-62-13 ITM-13 Measuring dynamic strength and fatigue parameters of optical fibers by t
11、wo-point bending CONTENTS Number Section 1 Section 2 Section 3 Section 4 Section 5 Section 6 Section 7 Figure 1 Figure 2 Figure 3 Annex A Title Page I iii I 3 3 6 7 10 13 Schematic of two-point bending unit 4 Schematic of surface plate; (a) plan, (b) section - 4 Weibull plot of two-point bending dat
12、a - 9 I STD.EIA TSBb2-13-ENGL 2000 m 3234600 065b570 810 TINEIA-TSB-62-13 ITM-I 3 Measuring dynamic strength and fatigue parameters of optical fibers by two-point bending Foreword (This foreword is informative and is not part of this standard.) This document comes from TIA Standards Proposal 4757, a
13、nd was formulated under the cognizance of TIA FO-6.6 Subcommittee on Optical Fibers and Cables, and TIA FO-6.6.8, Working Group on Optical Fiber Reliability. This ITM is part of the series of test procedures included within Recommended Standard E IARI A-TS B-62, There is one informative annex. Key w
14、ords: distribution. bending, strength, fatigue, failure stress, stress corrosion parameter, Weibull iii Previous page is blank STD-EIA TSBb2-33-ENGL 2000 3234b00 0656573 757 W TINEIA-TSB-62-13 ITM-I 3 Measuring dynamic strength and fatigue parameters of optical fibers by two-point bending I Introduc
15、tion 1.1 Intent This procedure provides a method for measuring the strength and dynamic fatigue of optical fiber in two-point bending in a specified environment. The stress is increased at a nominally constant rate until breakage occurs. This test can be applied to fibers in ambient conditions or to
16、 fibers that are in various aging conditions exposed to alternative environments. Two-point bending avoids difficulties that may be associated with gripping some fibers in tensile testing. It utilizes many samples of short lengths of fiber simultaneously, facilitating comparison of different fiber s
17、amples and reducing scatter in the data. It can measure strength and fatigue in different environments since the fiber and surface plates can be immersed in the environment of interest. However, compared with tensile testing, the effective fiber lengths under stress are very short. Changes in the fa
18、ilure stress distribution that occur by changing stress rate can be used to measure the stress corrosion parameter n . For Weibull distributions, procedures are given to determine the Weibull dynamic shape parameter md and scaling parameter So. Some distributions are not Weibull, such as bimodal Wei
19、bull distributions, but can be related to Weibull. This method is not intended for the evaluation of the second (low-strength) Weibull mode. See FOTP-28 for this. 1.2 Scope This procedure is appropriate for coated and uncoated fibers, but is not appropriate for jacketed or “tight buffered“ fibers. I
20、t measures the strength and the stress corrosion parameters of optical fiber at specified constant strain rates. The ITM is useful in comparing the effects of different environmental treatments. It is a destructive test, and is not a substitute for prooftesting. This method tests the fatigue behavio
21、r of fibers by varying the strain rate. The test is applicable to fibers and strain rates for which the relationship of log of failure stress vs. log of stress rate is essentially linear. Other approaches are feasible for non-linear results. The test environment and any preconditioning or aging is c
22、ritical to the outcome of this test. There is no agreed upon model for extrapolating the results for one environment to another 1 STD-EIA TSBb2-L3-ENGL 2000 3234b00 0656572 b93 = TINEIA-TSB-62-13 environment. For failure stress at a given stress rate, however, as the relative humidity increases, fai
23、lure stress decreases. Both increases and decreases in the measured stress corrosion parameter and strength distribution parameters have been observed as the result of preconditioning at elevated temperature and humidity for even a day or two. Agreement between the results of ITM-13 and the results
24、of FOTP-28 is a matter for study, and the results of this ITM are not to be used directly to predict fiber reliability. I .3 Background This test is based on the theory of fracture mechanics of brittle materials and on the power-law description of flaw growth (see TSB-61). Although other theories ha
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