ASTM D4546-2014e1 Standard Test Methods for One-Dimensional Swell or Collapse of Soils《土壤一维膨胀或塌陷的标准试验方法》.pdf
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1、Designation: D4546 141Standard Test Methods forOne-Dimensional Swell or Collapse of Soils1This standard is issued under the fixed designation D4546; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A numbe
2、r in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEEditorially updated units of measurement statement in April 2018.1. Scope*1.1 This standard covers two laboratory test methods formeasuring the mag
3、nitude of one-dimensional wetting-inducedswell or collapse of unsaturated soils and one method formeasuring load-induced compression subsequent to wetting-induced deformation.1.1.1 Test Method A is a procedure for measuring one-dimensional wetting-induced swell or hydrocompression (col-lapse) of rec
4、onstituted specimens simulating field condition ofcompacted fills. The magnitude of swell pressure (the mini-mum vertical stress required to prevent swelling), and freeswell (percent swell under a pressure of 1 kPa or 20 lbf/ft2) canalso be determined from the results of Test Method A.1.1.2 Test Met
5、hod B is a procedure for measuring one-dimensional wetting-induced swell or collapse deformation ofintact specimens obtained from a natural deposit or from anexisting compacted fill. The magnitude of swell pressure andfree swell can also be determined from the results of TestMethod B.1.1.3 Test Meth
6、od C is a procedure for measuring load-induced strains on a reconstituted or intact specimen after thespecimen has undergone wetting-induced swell or collapsedeformation.1.2 In Test Method A, a series of reconstituted specimensduplicating compaction condition of the fine fraction of the soilin the f
7、ield (excluding the oversize particles) are assembled inconsolidometer units. Different loads corresponding to differ-ent fill depths are applied to different specimens and eachspecimen is given access to free water until the process ofprimary swell or collapse is completed (Fig. 1) under aconstant
8、vertical total stress (Fig. 2). The resulting swell orcollapse deformations are measured. This test method can bereferred to as wetting-after-loading tests on multiple reconsti-tuted specimens. The data from these tests can be used toestimate one-dimensional ground surface heave or settlementthat ca
9、n occur due to full wetting after fill construction. Inaddition, the magnitude of swell pressure and the magnitude offree swell can be interpreted from the test results.1.3 Test Method B is commonly used for measuring one-dimensional wetting-induced swell or hydrocompression ofindividual intact samp
10、les. This method can be referred to assingle-point wetting-after-loading test. The vertical pressure atwetting for the specimen is chosen equal to the vertical in-situstress (overburden stress plus structural stress, if any) corre-sponding to the sampling depth. The test result indicates theamount o
11、f heave or hydrocompression that can result when thesoil at a given fill depth is wetted from the current moisturecondition to full inundation condition. If intact specimens fromvarious depths are tested, the swell or collapse strain data canbe used to estimate heave or settlement of the ground surf
12、ace.If the objective of the test is to measure swell pressure for anexpansive soil, a series of intact specimens from a given depthzone can be wetted under a range of pressures (similar to TestMethod A) and the results interpreted to determine the magni-tude of the swell pressure.1.4 Test Method C i
13、s for measuring load-induced strainsafter wetting-induced swell or collapse deformation has oc-curred. This method can be referred to as loading-after-wettingtest. The test can be performed on either intact or reconstitutedspecimens, and can be on one specimen or a series ofspecimens. The results wo
14、uld apply to situations where newfill, additional structural loads, or both, are applied to theground that has previously gone through wetting-inducedheave or settlement. The first part of the test is the same as inTest Method A or B. After completion of the swell or collapseunder a given vertical l
15、oad, additional vertical load incrementsare applied to the specimen in the same manner as in aconsolidation test (Test Methods D2435) and the load-inducedstrains are measured.1.5 It shall be the responsibility of the agency requestingthis test to specify the magnitude of each load for Test MethodA a
16、nd Test Method B. For Test Method C, the agencyrequesting the test should specify the magnitude of the stressunder which the specimen is wetted, and the magnitudes of theadditional stress increments subsequent to wetting.1These test methods are under the jurisdiction of ASTM Committee D18 on Soiland
17、 Rock and are the direct responsibility of Subcommittee D18.05 on Strength andCompressibility of Soils.Current edition approved March 1, 2014. Published April 2014. Originallyapproved in 1985. Last previous edition approved in 2008 as D4546 08. DOI:10.1520/D4546-14E01.*A Summary of Changes section a
18、ppears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Prin
19、ciples for theDevelopment of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.11.6 These test methods do not address the measurement ofsoil suction and suction-controlled swell-collapse tests. Theaddition of suctio
20、n-controlled wetting does not constitutenonconformance to these test methods.1.7 These test methods have a number of limitations andtheir results can be affected by one or a combination of factorsincluding the effect of significant amounts of oversize particles(in Test Method A), sampling disturbanc
21、e (in Test Method B)and differences between the degree of wetting in the laboratorytest specimens and in the field. For details of these and otherlimitations, see Section 6.1.8 The values stated in SI units are to be regarded asstandard. The values given in parentheses after SI units areprovided for
22、 information only and are not considered standard.Test results recorded in units other than SI shall not be regardedas nonconformance with this standard. Figures depicting thetest results can be either in SI units or in inch-pound units.1.8.1 The converted inch-pound units use the gravitationalsyste
23、m of units. In this system, the pound (lbf) represents a unitof force (weight), while the unit for mass is slugs. The slug unitis not given, unless dynamic (F = ma) calculations areinvolved.1.8.2 It is common practice in the engineering/constructionprofession to concurrently use pounds to represent
24、both a unitof mass (lbm) and of force (lbf). This implicitly combines twoseparate systems of units; that is, the absolute system and thegravitational system. It is scientifically undesirable to combinethe use of two separate sets of inch-pound units within a singlestandard. As stated, this standard
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