ASTM F3181-2016 Standard Test Method for The Un-notched Constant Ligament Stress Crack Test (UCLS) for HDPE Materials Containing Post- Consumer Recycled HDPE《含有消费后回收HDPE的HDPE材料的无缺口.pdf
《ASTM F3181-2016 Standard Test Method for The Un-notched Constant Ligament Stress Crack Test (UCLS) for HDPE Materials Containing Post- Consumer Recycled HDPE《含有消费后回收HDPE的HDPE材料的无缺口.pdf》由会员分享,可在线阅读,更多相关《ASTM F3181-2016 Standard Test Method for The Un-notched Constant Ligament Stress Crack Test (UCLS) for HDPE Materials Containing Post- Consumer Recycled HDPE《含有消费后回收HDPE的HDPE材料的无缺口.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F3181 16Standard Test Method forThe Un-notched, Constant Ligament Stress Crack Test(UCLS) for HDPE Materials Containing Post- ConsumerRecycled HDPE1This standard is issued under the fixed designation F3181; the number immediately following the designation indicates the year oforiginal a
2、doption 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.1. Scope1.1 This test method covers an un-notched constant liga-ment stress (UCLS
3、) test for use with HDPE materials thatcontain post-consumer recycled HDPE (PCR-HDPE). Con-taminants in the PCR-HDPE can initiate stress cracks atelevated temperatures, and this test method evaluates theresponse of these materials to a constant applied stress.1.2 The test method is focused on HDPE c
4、orrugated pipecontaining PCR-HDPE, but can be used in other applicationswhere PCR-HDPE is used.1.3 The test utilizes the same devices used to perform theNCTL test (Test Method D5397) and the NCLS test (TestMethod F2136), but the test is conducted with differentspecimens and with the use of water ins
5、tead of a surfactantsolution. The test specimen is larger than standard NCLS andNCTL specimens to increase the number of contaminantparticles in the specimen that might grow cracks.1.4 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematic
6、alconversions to SI units that are provided for information onlyand are not considered standard.1.5 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 establish appro-priate safety and health p
7、ractices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D1600 Terminology forAbbreviated Terms Relating to Plas-ticsD2837 Test Method for Obtaining Hydrostatic Design Basisfor Thermoplastic Pipe Materials or Pressure Design Basisfor
8、 Thermoplastic Pipe ProductsD4703 Practice for Compression Molding ThermoplasticMaterials into Test Specimens, Plaques, or SheetsD5397 Test Method for Evaluation of Stress Crack Resis-tance of Polyolefin Geomembranes Using Notched Con-stant Tensile Load TestD638 Test Method for Tensile Properties of
9、 PlasticsF412 Terminology Relating to Plastic Piping SystemsF2136 Test Method for Notched, Constant Ligament-Stress(NCLS) Test to Determine Slow-Crack-Growth Resis-tance of HDPE Resins or HDPE Corrugated Pipe2.2 AASHTO Documents:3Report 696 National Cooperative Highway Research Pro-gram (NCHRP)3. Te
10、rminology3.1 Definitions: Definitions are in accordance with Termi-nology F412, and abbreviations are in accordance with Termi-nology D1600, unless otherwise specified.3.2 Definitions of Terms Specific to This Standard:3.2.1 bi-directional shift constants, nConstants used toshift elevated temperatur
11、e and stress data to service conditions;e.g. Popelar shift constants for HDPE.3.2.2 contaminant, ninorganic particulate matter or othernon-HDPE material that creates inclusions or stress risers inthe crystalline structure of HDPE.3.2.3 post-consumer recycled HDPE (PCR-HDPE),nHDPE materials from prod
12、ucts that have served a previousconsumer purpose (for example, laundry detergent bottles,milk bottles and other consumer goods).4. Significance and Use4.1 This test method is a way to evaluate the effects ofcontaminant particles found in HDPE products containing1This test method is under the jurisdi
13、ction of ASTM Committee F17 on PlasticPiping Systems and is the direct responsibility of Subcommittee F17.40 on TestMethods.Current edition approved Feb. 1, 2016. Published March 2016. DOI: 10.1520/F3181162For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer S
14、ervice at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American Association of State Highway and TransportationOfficials (AASHTO), 444 N. Capitol St., NW, Suite 249, Washington, DC 20001,http:/ww
15、w.transportation.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1PCR-HDPE, primarily corrugated pipe. Particles of significantnumber, size and shape can reduce the slow crack growthresistance of the products. This test is performe
16、d in waterwithout a controlled defect such as a notch. Since there is nonotch, it is not necessary to use a surfactant in the water bath.It is a constant load test.4.2 This test may be used to evaluate various blends ofrecycled and virgin materials. For example, a material withhigh stress crack resi
17、stance and few contaminants can beblended with materials that are less resistant to cracking toenhance the overall stress crack resistance of the blend.4.3 The test can be conducted at various temperature andstress conditions. If at least three (3) different temperature/stress conditions are evaluat
18、ed, an estimate of the servicelifetime of the material can be predicted with the use ofbi-directional shifting or the rate process method.4.4 The test can also be performed under a single appliedload and a single temperature to create a single point test usefulfor comparative purposes as well as for
19、 quality control.5. Apparatus5.1 Blanking DieA die suitable of cutting Test MethodD638, Type I tensile specimens. Alternatively, specimens maybe prepared by machining.5.2 Stress-Crack Testing DeviceA lever-loading machinewith a mechanical advantage of up to 10:1. The most commondevices used for corr
20、ugated pipe resins have a maximummechanical advantage of 5:1, but higher ratios would allow fortesting of thicker specimens. The device is similar or identicalto those used for Test Methods D5397 and F2136. The deviceshall have a timer capable of recording failures within thenearest 0.1 hr. for each
21、 individual lever arm. The timer muststop when a test specimen fails. An example of an acceptabledevice is shown in Fig. 1 and Fig. 2. Fig. 1 shows some testspecimens mounted in the testing frame. Fig. 2 shows theframe mounted in a water bath with the weights hung on thelever arms.5.3 Water BathA he
22、ated and stirred water bath deepenough to cover the test specimens mounted in the frame to apoint above the reduced section and into the top tab. The bathmust be capable of heating to a constant temperature of 80 61 C.NOTE 1Baths that once contained surfactant solutions for other stresscrack tests a
23、re extremely difficult to clean. Residual surfactant will reducethe failure times of this test and may stay present for many months andafter many cleanings.5.4 Compression Molding Press and MoldA set-up forcompression molding a plaque at least 7 in. (178 mm) by 7 in.(178 mm) and cooling it at 15C pe
24、r minute in accordance withPractice D4703. The mold shall be designed in a way to allowthe removal of at least five Test method D638, Type I tensilespecimens with the geometry described in Section 6.6. Test Specimen6.1 PlaqueAcompression molded plaque manufactured inaccordance with Practice D4703 wi
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