ASTM D2837-2008 Standard Test Method for Obtaining Hydrostatic Design Basis for Thermoplastic Pipe Materials or Pressure Design Basis for Thermoplastic Pipe Products《获得热塑性管道材料静水压设计.pdf
《ASTM D2837-2008 Standard Test Method for Obtaining Hydrostatic Design Basis for Thermoplastic Pipe Materials or Pressure Design Basis for Thermoplastic Pipe Products《获得热塑性管道材料静水压设计.pdf》由会员分享,可在线阅读,更多相关《ASTM D2837-2008 Standard Test Method for Obtaining Hydrostatic Design Basis for Thermoplastic Pipe Materials or Pressure Design Basis for Thermoplastic Pipe Products《获得热塑性管道材料静水压设计.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 2837 08An American National StandardStandard Test Method forObtaining Hydrostatic Design Basis for Thermoplastic PipeMaterials or Pressure Design Basis for Thermoplastic PipeProducts1This standard is issued under the fixed designation D 2837; the number immediately following the desig
2、nation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.This standard has been approved for use by
3、agencies of the Department of Defense.1. Scope1.1 This test method describes two essentially equivalentprocedures: one for obtaining a long-term hydrostatic strengthcategory based on stress, referred to herein as the hydrostaticdesign basis (HDB); and the other for obtaining a long-termhydrostatic s
4、trength category based on pressure, referred toherein as the pressure design basis (PDB). The HDB is basedon the materials long-term hydrostatic strength (LTHS),andthe PDB is based on the products long-term hydrostaticpressure-strength (LTHSP). The HDB is a material propertyand is obtained by evalua
5、ting stress rupture data derived fromtesting pipe made from the subject material. The PDB is aproduct specific property that reflects not only the properties ofthe material(s) from which the product is made, but also theinfluence on product strength by product design, geometry, anddimensions and by
6、the specific method of manufacture. ThePDB is obtained by evaluating pressure rupture data. TheLTHS is determined by analyzing stress versus time-to-rupture(that is, stress-rupture) test data that cover a testing period ofnot less than 10 000 h and that are derived from sustainedpressure testing of
7、pipe made from the subject material. Thedata are analyzed by linear regression to yield a best-fitlog-stress versus log time-to-fail straight-line equation. Usingthis equation, the materials mean strength at the 100 000-hintercept (LTHS) is determined by extrapolation. The resultantvalue of the LTHS
8、 determines the HDB strength category towhich the material is assigned. The LTHSPis similarlydetermined except that the determination is based on pressureversus time data that are derived from a particular product. Thecategorized value of the LTHSPis the PDB. An HDB/PDB isone of a series of preferre
9、d long-term strength values. This testmethod is applicable to all known types of thermoplastic pipematerials and thermoplastic piping products. It is also appli-cable for any practical temperature and medium that yieldsstress-rupture data that exhibit an essentially straight-linerelationship when pl
10、otted on log stress (pound-force per squareinch) or log pressure (pound-force per square in. gage) versuslog time-to-fail (hours) coordinates, and for which this straight-line relationship is expected to continue uninterrupted throughat least 100 000 h.1.2 Unless the experimentally obtained data app
11、roximate astraight line, when calculated using log-log coordinates, it isnot possible to assign an HDB/PDB to the material. Data thatexhibit high scatter or a “knee” (a downward shift, resulting ina subsequently steeper stress-rupture slope than indicated bythe earlier data) but which meet the requi
12、rements of this testmethod tend to give a lower forecast of LTHS/LTHSP.Inthecase of data that exhibit excessive scatter or a pronounced“knee,” the lower confidence limit requirements of this testmethod are not met and the data are classified as unsuitable foranalysis.1.3 A fundamental premise of thi
13、s test method is that whenthe experimental data define a straight-line relationship inaccordance with this test methods requirements, this straightline may be assumed to continue beyond the experimentalperiod, through at least 100 000 h (the time intercept at whichthe materials LTHS/LTHSPis determin
14、ed). In the case ofpolyethylene piping materials, this test method includes asupplemental requirement for the “validating” of this assump-tion. No such validation requirements are included for othermaterials (see Note 1). Therefore, in all these other cases, it isup to the user of this test method t
15、o determine based on outsideinformation whether this test method is satisfactory for theforecasting of a materials LTHS/LTHSPfor each particularcombination of internal/external environments and tempera-ture.NOTE 1Extensive long-term data that have been obtained on com-mercial pressure pipe grades of
16、 polyvinyl chloride (PVC), polybutlene(PB), and cross linked polyethlene (PEX) materials have shown that thisassumption is appropriate for the establishing of HDBs for these1This test method is under the jurisdiction of ASTM Committee F17 on PlasticPiping Systems and is the direct responsibility of
17、Subcommittee F17.40 on TestMethods.Current edition approved May 1, 2008. Published June 2008. Originallyapproved in 1969. Last previous edition approved in 2004 as D 2837 041.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.materials
18、for water and for ambient temperatures. Refer to Note 2 andAppendix X1 for additional information.1.4 The experimental procedure to obtain individual datapoints shall be as described in Test Method D 1598, whichforms a part of this test method. When any part of this testmethod is not in agreement wi
19、th Test Method D 1598, theprovisions of this test method shall prevail.1.5 General references are included at the end of this testmethod.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to e
20、stablish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.1.7 The values stated in inch-pound units are to be regardedas the standard. The values given in parentheses are forinformation only and are not considered the standard.NOTE 2Ove
21、r 3000 sets of data, obtained with thermoplastic pipe andpiping assemblies tested with water, natural gas, and compressed air, havebeen analyzed by the Plastic Pipe Institutes (PPI) Hydrostatic StressBoard2. None of the currently commercially offered compounds includedin PPI TR-4, “PPI Listing of Hy
22、drostatic Design Bases (HDB), PressureDesign Bases (PDB), Strength Design Bases (SDB), and MinimumRequired Strength (MRS) Ratings for Thermoplastic Piping Materials orPipe” exhibit knee-type plots at the listed temperature, that is, deviatefrom a straight line in such a manner that a marked drop occ
23、urs in stressat some time when plotted on equiscalar log-log coordinates. Ambienttemperature stress-rupture data that have been obtained on a number of thelisted materials and that extend for test periods over 120 000 h give noindication of “knees.” However, stress-rupture data which have beenobtain
24、ed on some thermoplastic compounds that are not suitable orrecommended for piping compounds have been found to exhibit adownward trend at 23C (73F) in which the departure from linearityappears prior to this test methods minimum testing period of 10 000 h. Inthese cases, very low results are obtained
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