ASTM C512-2002 Standard Test Method for Creep of Concrete in Compression《压缩过程中混凝土蠕变的标准试验方法》.pdf
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1、Designation: C 512 02Standard Test Method forCreep of Concrete in Compression1This standard is issued under the fixed designation C 512; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenth
2、eses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the determination of the creepof molded concrete cylinders subjected to sustained longitudi-nal compressive load. This test met
3、hod is limited to concrete inwhich the maximum aggregate size does not exceed 2 in. (50mm).1.2 The values stated in inch-pound units are to be regardedas the standard.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of
4、the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:C 39/C 39M Test Method for Compressive Strength of Cy-lindrical Concrete Specimens2C 192/C 192M Practice f
5、or Making and Curing ConcreteTest Specimens in the Laboratory2C 470/C 470M Specification for Molds for Forming Con-crete Test Cylinders Vertically2C 617 Practice for Capping Cylindrical Concrete Speci-mens2C 670 Practice for Preparing Precision and Bias Statementsfor Test Methods for Construction Ma
6、terials23. Significance and Use3.1 This test method measures the load-induced time-dependent compressive strain at selected ages for concreteunder an arbitrary set of controlled environmental conditions.3.2 This test method can be used to compare creep poten-tials of different concretes. A procedure
7、 is available, using thedeveloped equation (or graphical plot), for calculating stressfrom strain data within massive non-reinforced concrete struc-tures. For most specific design applications, the test conditionsset forth herein must be modified to more closely simulate theanticipated curing, therm
8、al, exposure, and loading age condi-tions for the prototype structure. Current theories and effects ofmaterial and environmental parameters are presented in ACISP-9, Symposium on Creep of Concrete.33.3 In the absence of a satisfactory hypothesis governingcreep phenomena, a number of assumptions have
9、 been devel-oped that have been generally substantiated by test andexperience.3.3.1 Creep is proportional to stress from 0 to 40 % ofconcrete compressive strength.3.3.2 Creep has been conclusively shown to be directlyproportional to paste content throughout the range of pastecontents normally used i
10、n concrete. Thus, the creep character-istics of concrete mixtures containing aggregate of maximumsize greater than 2 in. (50 mm) may be determined from thecreep characteristics of the minus 2-in. (minus 50-mm) fractionobtained by wet-sieving. Multiply the value of the character-istic by the ratio of
11、 the cement paste content (proportion byvolume) in the full concrete mixture to the paste content of thesieved sample.3.4 The use of the logarithmic expression (Section 8) doesnot imply that the creep strain-time relationship is necessarilyan exact logarithmic function; however, for the period of on
12、eyear, the expression approximates normal creep behavior withsufficient accuracy to make possible the calculation of param-eters that are useful for the purpose of comparing concretes.3.5 There are no data that would support the extrapolationof the results of this test to tension or torsion.4. Appar
13、atus4.1 MoldsMolds shall be cylindrical conforming to theprovisions of Practice C 192/C 192M, or to the provisions ofSpecification C 470/C 470M. If required, provisions shall bemade for attaching gage studs and inserts, and for affixingintegral bearing plates to the ends of the specimen as it is cas
14、t.4.1.1 Horizontal molds shall conform to the requirements ofthe section on horizontal molds for creep test cylinders ofPractice C 192/C 192M. A horizontal mold that has provensatisfactory is shown in Fig. 1.4.2 Loading Frame, capable of applying and maintainingthe required load on the specimen, des
15、pite any change in thedimension of the specimen. In its simplest form the loading1This test method is under the jurisdiction of ASTM Committee C09 onConcrete and Concrete Aggregates and is the direct responsibility of SubcommitteeC09.61 on Testing for Strength.Current edition approved Aug. 10, 2002.
16、 Published October 2002. Originallypublished as C 512 63 T. Last previous edition C 512 87 (1994).2Annual Book of ASTM Standards, Vol 04.02.3Available from the American Concrete Institute, P. O. Box 19150, Detroit, MI48219.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Consh
17、ohocken, PA 19428-2959, United States.frame consists of header plates bearing on the ends of theloaded specimens, a load-maintaining element that is either aspring or a hydraulic capsule or ram, and threaded rods to takethe reaction of the loaded system. Bearing surfaces of theheader plates shall no
18、t depart from a plane by more than 0.001in. (0.025 mm). In any loading frame, it is not prohibited tostack several specimens for simultaneous loading. The lengthbetween header plates shall not exceed 70 in. (1780 mm).When a hydraulic load-maintaining element is used, severalframes may be loaded simu
19、ltaneously through a central hy-draulic pressure-regulating unit consisting of an accumulator, aregulator, indicating gages, and a source of high pressure, suchas a cylinder of nitrogen or a high-pressure pump. Springs suchas railroad car springs may be used to maintain the load inframes similar to
20、those described above; the initial compres-sion shall be applied by means of a portable jack or testingmachine. When springs are used, care should be taken toprovide a spherical head or ball joint, and end plates rigidenough to ensure uniform loading of the cylinders. Fig. 2shows an acceptable sprin
21、g-loaded frame. Means shall beprovided for measuring the load to the nearest 2 % of totalapplied load. It is not prohibited to use a permanently installedhydraulic pressure gage or a hydraulic jack and a load cellinserted in the frame when the load is applied or adjusted.4.3 Strain-Measuring DeviceS
22、uitable apparatus shall beprovided for the measurement of longitudinal strain in thespecimen to the nearest 10 millionths. It is not prohibited forthe apparatus to be embedded, attached, or portable. If aportable apparatus is used, gage points shall be attached to thespecimen in a positive manner. A
23、ttached gages relying onfriction contact are not permissible. If an embedded device isused, it shall be situated so that its strain movement occursalong the longitudinal axis of the cylinder. If external devicesare used, strains shall be measured on not less than two gagelines spaced uniformly aroun
24、d the periphery of the specimen.The gages may be instrumented so that the average strain on allgage lines can be read directly. The effective gage length shallbe at least three times the maximum size of aggregate in theconcrete. The strain-measuring device shall be capable ofmeasuring strains for at
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