ASTM D7406-2007(2012) 1209 Standard Test Method for Time-Dependent (Creep) Deformation Under Constant Pressure for Geosynthetic Drainage Products《土工合成排水产品用常压下随时间变化的 (蠕变) 变形用标准试验方法》.pdf
《ASTM D7406-2007(2012) 1209 Standard Test Method for Time-Dependent (Creep) Deformation Under Constant Pressure for Geosynthetic Drainage Products《土工合成排水产品用常压下随时间变化的 (蠕变) 变形用标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D7406-2007(2012) 1209 Standard Test Method for Time-Dependent (Creep) Deformation Under Constant Pressure for Geosynthetic Drainage Products《土工合成排水产品用常压下随时间变化的 (蠕变) 变形用标准试验方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7406 07 (Reapproved 2012)Standard Test Method forTime-Dependent (Creep) Deformation Under ConstantPressure for Geosynthetic Drainage Products1This standard is issued under the fixed designation D7406; the number immediately following the designation indicates the year oforiginal adopti
2、on 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 is used to determine the unconfinedcompressive creep char
3、acteristics of drainage geotextiles,geocomposites, geonets, or any other geosynthetic associatedwith drainage at a constant temperature, when subjected to aconstant compressive stress.1.2 This test method is intended for use as an unconfinedcompressive performance creep test only. For a detailedproc
4、edure on how to establish an index test see the EN standard1897. For performance tests, the specimen shall be subjected tothe site-specific liquid and/or the site-specific stress (normaland potentially shear stress).NOTE 1Results achieved from unconfined compressive performancecreep may differ from
5、testing performed under confined conditions.1.3 Because of the changing nature of the geosyntheticindustry, and the wide variety of products already available,this particular test method may have to be slightly modified forunconfined compression creep testing of some products1.4 The values given in
6、SI units are to be considered as thestandard. The values given in parentheses are for informationonly.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 he
7、alth practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D2990 Test Methods for Tensile, Compressive, and FlexuralCreep and Creep-Rupture of PlasticsD4439 Terminology for GeosyntheticsD5199 Test Method for Measuring the Nominal
8、 Thicknessof GeosyntheticsD5261 Test Method for Measuring Mass per Unit Area ofGeotextilesD5262 Test Method for Evaluating the Unconfined TensionCreep and Creep Rupture Behavior of GeosyntheticsD6364 Test Method for Determining Short-Term Compres-sion Behavior of Geosynthetics2.2 EN Standard:EN 1897
9、3. Terminology3.1 For definitions related to geosynthetics, see Terminol-ogy D4439.3.2 For definitions related to creep, see Test Methods D2990and D5262.3.3 Definitions:3.3.1 compressive creep, ntime-dependent deformation orcompressive strain of a material subjected to a constantcompressive stress.3
10、.3.2 compressive creep rupture, nfailure by collapse of amaterial subjected to a constant compressive stress.4. Summary of Test Method4.1 In this performance test method, a geosynthetic drain-age product is subjected to a sustained normal and potentiallyshear stresses. Deformations of the specimen a
11、re recorded atdesignated time intervals, and a graph is drawn.4.2 The specimen may be immersed in a site-specific wateror permeant, to simulate actual field conditions.4.3 For long-term testing it is recommended that the test berun for at least 1000 h. Dwell times up to 10000 hr have beenused, if th
12、at longer time data is required.4.4 Creep load (normal as well as potentially shear) shouldreflect the actual field conditions4.5 The test will be conducted at site specific temperatures.5. Significance and Use5.1 The performance characteristics of a drainage geosyn-thetic are directly related to th
13、e integrity under compressive1This test method is under the jurisdiction of ASTM Committee D35 onGeosynthetics and is the direct responsibility of Subcommittee D35.02 on Endur-ance Properties.Current edition approved July 1, 2012. Published July 2012. DOI: 10.1520/D7406-07R12.2For referenced ASTM st
14、andards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken,
15、 PA 19428-2959. United States1loading. If the product is sensitive to compressive creep, itsflow capacity could be greatly reduced or even shut offcompletely.5.2 The creep sensitivity of a candidate geosynthetic can betested at field-simulated normal stress and potentially shearstresses.5.3 This tes
16、t method does not evaluate the effect of creep ofa geotextile filter or adjacent membrane.5.4 Compression creep as it relates to reduction in flowcapacity of a geosynthetic drainage product is manufacturerand product specific. For example, a 10% reduction in originalthickness of a geonet made by man
17、ufacturer A does notnecessarily equal the same reduction in flow capacity as a 10%reduction in thickness of the same or another type of geonetmade by manufacturer B.5.5 This creep data has is merit directly to the end user,because it can be easily interpreted to result into a reductionfactor for cre
18、ep3. The Reduction factor can then be used toderive an allowable flow rate4.6. Apparatus6.1 Overall System Fig. 1 shows a compression creep testsetup. It consists of a loading platen, a normal stress assembly,potentially a shear load assembly (not shown in Fig. 1),potentially a specimen container, a
19、nd three digital gages (oneshown in Fig. 1).6.2 Specimen Container The specimen container shallhave a flat, rigid surface on which the base platen is placed.The container shall be deep enough to allow the test specimento be completely immersed during testing. The container shallbe large enough to ho
20、ld a minimum specimen size of 150 by150 mm (6.0 by 6.0 in.), but can have size of 300 by 300 mm(12.0 by 12.0 in.) or larger to assure the test setup remainsunconfined.6.3 Base Platen The base platen shall be rigid enough toresist bending and, in turn, support a uniform normal stress. Athick steel pl
21、ate is advisable. The base platen shall be placed inthe specimen container to support the tested specimen. Whenshear stress is applied it is necessary to avoid slippage of thetested specimen with the base platen (rough surfaces on theplaten are recommended). Ideally the base platen will be largertha
22、n the specimen size to support the specimen during drapingand flexing under the stress assembly.6.4 Loading Platen The loading platen shall be rigidenough to resist bending and, in turn, apply a uniform normalstress. When shear stress is applied it is necessary to avoidslippage of the tested specime
23、n with the loading platen (roughsurfaces on the platen are recommended). The loading platenshall be slightly larger than the specimen to provide evencompression during the entire duration of the test. In additionthe loading platen will be attached to the stress assembly insuch a way that no stress i
24、s placed on the specimen until thecommencement of the test and the weight of which is includedin the measurement of the applied stress when appropriate forthe loading system used.6.5 Digital GagesAt least 3 digital gages accurate to 0.01mm (0.0005 in.) shall be used to measure specimen deforma-tion
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