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    ASTM C138 C138M-2017a Standard Test Method for Density (Unit Weight) Yield and Air Content (Gravimetric) of Concrete《混凝土密度(单位重量) 屈服点和空气含量(称重法)的标准试验方法》.pdf

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    ASTM C138 C138M-2017a Standard Test Method for Density (Unit Weight) Yield and Air Content (Gravimetric) of Concrete《混凝土密度(单位重量) 屈服点和空气含量(称重法)的标准试验方法》.pdf

    1、Designation: C138/C138M 17C138/C138M 17a American Association StateHighway and Transportation Officials StandardAASHTO No.: T121Standard Test Method forDensity (Unit Weight), Yield, and Air Content (Gravimetric)of Concrete1This standard is issued under the fixed designation C138/C138M; the number im

    2、mediately following the designation indicates the yearof original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.This standard

    3、has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1 This test method covers determination of the density (see Note 1) of freshly mixed concrete and gives formulas forcalculating the yield, cement content, and air content of the concrete. Yield is defined as the volum

    4、e of concrete produced froma mixture of known quantities of the component materials.1.2 The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in eachsystem may not be exact equivalents; therefore, each system shall be used independently

    5、 of the other. Combining values from thetwo systems may result in non-conformance with the standard.NOTE 1Unit weight was the previous terminology used to describe the property determined by this test method, which is mass per unit volume.1.3 The text of this test method references notes and footnot

    6、es that provide explanatory information. These notes and footnotes(excluding those in tables) shall not be considered as requirements of this test method.1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of

    7、this standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use. (WarningFresh hydraulic cementitious mixtures are caustic and may cause chemical burns to skin andtissue upon prolonged exposure.2)1.5 This international standard

    8、 was developed in accordance with internationally recognized principles on standardizationestablished in the Decision on Principles for the Development of International Standards, Guides and Recommendations issuedby the World Trade Organization Technical Barriers to Trade (TBT) Committee.2. Referenc

    9、ed Documents2.1 ASTM Standards:3C29/C29M Test Method for Bulk Density (“Unit Weight”) and Voids in AggregateC31/C31M Practice for Making and Curing Concrete Test Specimens in the FieldC143/C143M Test Method for Slump of Hydraulic-Cement ConcreteC150/C150M Specification for Portland CementC172C172/C1

    10、72M Practice for Sampling Freshly Mixed ConcreteC173/C173M Test Method for Air Content of Freshly Mixed Concrete by the Volumetric MethodC188 Test Method for Density of Hydraulic CementC231C231/C231M Test Method for Air Content of Freshly Mixed Concrete by the Pressure MethodC1758/C1758M Practice fo

    11、r Fabricating Test Specimens with Self-Consolidating Concrete1 This test method is under the jurisdiction of ASTM Committee C09 on Concrete and Concrete Aggregates and is the direct responsibility of Subcommittee C09.60 onTesting Fresh Concrete.Current edition approved Feb. 1, 2017March 15, 2017. Pu

    12、blished March 2017May 2017. Originally approved in 1938. Last previous edition approved in 20162017 asC138/C138M 16a.C138/C138M 17. DOI: 10.1520/C0138_C0138M-17.10.1520/C0138_C0138M-17A.2 See section on Safety Precautions, Manual of Aggregate and Concrete Testing, Annual Book of ASTM Standards, Vol

    13、04.02.3 For referencedASTM standards, visit theASTM website, www.astm.org, or contactASTM Customer Service at serviceastm.org. For Annual Book of ASTM Standardsvolume information, refer to the standards Document Summary page on the ASTM website.This document is not an ASTM standard and is intended o

    14、nly to provide the user of an ASTM standard an indication of what changes have been made to the previous version. Becauseit may not be technically possible to adequately depict all changes accurately, ASTM recommends that users consult prior editions as appropriate. In all cases only the current ver

    15、sionof the standard as published by ASTM is to be considered the official document.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13. Terminology3.1 Symbols:A = air cont

    16、ent (percentage of voids) in the concreteC = actual cement content, kg/m3 lb/yd3Cb = mass of cement in the batch, kg lbD = density (unit weight) of concrete, kg/m3 lb/ft3M = total mass of all materials batched, kg lb (see Note 3)Mc = mass of the measure filled with concrete, kg lb orMm = mass of the

    17、 measure, kg lbRy = relative yieldT = theoretical density of the concrete computed on an airfree basis, kg/m3 lb/ft3 (see Note 2)Y = yield, volume of concrete produced per batch, m3 yd3Yd = volume of concrete which the batch was designed to produce, m3 yd3Yf = volume of concrete produced per batch,

    18、m3 ft3V = total absolute volume of the component ingredients in the batch, m3 ft3Vm = volume of the measure, m3 ft3NOTE 2The theoretical density is, customarily, a laboratory determination, the value for which is assumed to remain constant for all batches madeusing identical component ingredients an

    19、d proportions.NOTE 3The total mass of all materials batched is the sum of the masses of the cement, the fine aggregate in the condition used, the coarse aggregatein the condition used, the mixing water added to the batch, and any other solid or liquid materials used.4. Apparatus4.1 BalanceA balance

    20、or scale accurate to 45 g 0.1 lb or to within 0.3 % of the test load, whichever is greater, at any pointwithin the range of use. The range of use shall be considered to extend from the mass of the measure empty to the mass of themeasure plus its contents at 2600 kg/m3 160 lb/ft3.4.2 Tamping RodA rou

    21、nd, smooth, straight steel rod, with a 16 mm 58 in. 6 2 mm 116 in. diameter. The length of thetamping rod shall be at least 100 mm 4 in. greater than the depth of the measure in which rodding is being performed, but notgreater than 600 mm 24 in. in overall length (see Note 4). The rod shall have the

    22、 tamping end or both ends rounded to ahemispherical tip of the same diameter as the rod.NOTE 4Arod length of 400 mm 16 in. to 600 mm 24 in. meets the requirements of the following: Practice C31/C31M, Test Method C138/C138M,Test Method C143/C143M, Test Method C173/C173M and Test Method C231C231/C231M

    23、.4.3 Internal VibratorThe vibrator frequency shall be at least 9000 vibrations per minute 150 Hz while the vibrator isoperating in the concrete. The outside diameter or the side dimension of the vibrating element shall be at least 19 mm 0.75 in.and not greater than 38 mm 1.50 in. The combined length

    24、 of the vibrator shaft and vibrating element shall exceed the depth ofthe section being vibrated by at least 75 mm 3 in. The vibrator frequency shall be checked with a vibrating reed tachometer atan interval not to exceed two years. If the vibrator manufacturer recommends a shorter verification inte

    25、rval, a verificationprocedure, or other verification device, the manufacturers recommendation shall be followed.4.4 MeasureAcylindrical container made of steel or other suitable metal (see Note 5). The minimum capacity of the measureshall conform to the requirements of Table 1 based on the nominal s

    26、ize of aggregate in the concrete to be tested. All measures,except for measuring bowls of air meters which are also used for Test Method C138/C138M tests, shall conform to therequirements of Test Method C29/C29M. When measuring bowls of air meters are used, they shall conform to the requirementsof T

    27、est Method C231C231/C231M, and shall be calibrated for volume as described in Test Method C29/C29M. The top rim of theair meter bowls shall be smooth and plane within 0.01 in. 0.3 mm (see Note 6).NOTE 5The metal should not be readily subject to attack by cement paste. However, reactive materials suc

    28、h as aluminum alloys may be used ininstances where as a consequence of an initial reaction, a surface film is rapidly formed which protects the metal against further corrosion.TABLE 1 Capacity of MeasuresNominal Maximum Size of CoarseAggregate Capacity of MeasureAmm in. L ft325.0 1 6 0.237.5 112 11

    29、0.450 2 14 0.575 3 28 1.0112 412 70 2.5150 6 100 3.5A The indicated size of measure shall be used to test concrete containingaggregates of a nominal maximum size equal to or smaller than that listed. Theactual volume of the measure shall be at least 95 % of the nominal volume listed.C138/C138M 17a2N

    30、OTE 6The top rim is satisfactorily plane if a 0.3-mm 0.01-in. feeler gage cannot be inserted between the rim and a piece of 6-mm 14-in. or thickerplate glass laid over the top of the measure.4.5 Strike-Off PlateA flat rectangular metal plate at least 6 mm 14 in. thick or a glass or acrylic plate at

    31、least 12 mm 12 in.thick with a length and width at least 50 mm 2 in. greater than the diameter of the measure with which it is to be used. The edgesof the plate shall be straight and smooth within a tolerance of 2 mm 116 in.4.6 MalletA mallet (with a rubber or rawhide head) having a mass of 600 6 20

    32、0 g 1.25 6 0.50 lb for use with measuresof 14 L 0.5 ft3 or smaller, and a mallet having a mass of 1000 6 200 g 2.25 6 0.50 lb for use with measures larger than 14L 0.5 ft3.4.7 Scoopof a size large enough so each amount of concrete obtained from the sampling receptacle is representative and smallenou

    33、gh so it is not spilled during placement in the measure.5. Sample5.1 Obtain the sample of freshly mixed concrete in accordance with Practice C172C172/C172M.6. Procedure6.1 Base the selection of the method of consolidation on the slump, unless the method is stated in the specifications under whichthe

    34、 work is being performed. The methods of consolidation are rodding and internal vibration. Rod concretes with a slump greaterthan 75 mm 3 in. Rod or vibrate concrete with a slump of 25 to 75 mm 1 to 3 in. Consolidate concretes with a slump lessthan 25 mm 1 in. by vibration.NOTE 7Nonplastic concrete,

    35、 such as is commonly used in the manufacture of pipe and unit masonry, is not covered by this test method.6.2 Dampen the interior of the measure and remove any standing water from the bottom. Determine the mass of the emptymeasure to an accuracy consistent with the requirements of 4.1. Place the mea

    36、sure on a flat, level, firm surface. Place the concretein the measure using the scoop described in 4.7. Move the scoop around the perimeter of the measure opening to ensure an evendistribution of the concrete with minimal segregation. Fill the measure in the number of layers required by the consolid

    37、ationmethod (6.3 or 6.4).6.2.1 Follow the procedures in Practice C1758/C1758M for filling the measure, if self-consolidating concrete is being tested.Upon completion of the filling process, proceed to 6.6.6.3 RoddingPlace the concrete in the measure in three layers of approximately equal volume. Rod

    38、 each layer with 25 strokesof the tamping rod when nominal 14-L 0.5-ft3 or smaller measures are used, 50 strokes when nominal 28-L 1-ft3 measuresare used, and one stroke per 20 cm2 3 in.2 of surface for larger measures. Rod each layer uniformly over the cross section withthe rounded end of the rod u

    39、sing the required number of strokes. Rod the bottom layer throughout its depth. In rodding this layer,use care not to damage the bottom of the measure. For each upper layer, allow the rod to penetrate through the layer being roddedand into the layer below approximately 25 mm 1 in. After each layer i

    40、s rodded, tap the sides of the measure 10 to 15 times withthe appropriate mallet (see 4.6) using such force so as to close any voids left by the tamping rod and to release any large bubblesof air that may have been trapped. Add the final layer so as to avoid overfilling.6.4 Internal VibrationFill an

    41、d vibrate the measure in two approximately equal layers. Place all of the concrete for each layerin the measure before starting vibration of that layer. Insert the vibrator at three different points for each layer. In compacting thebottom layer, do not allow the vibrator to rest on or touch the bott

    42、om or sides of the measure. In compacting the final layer, thevibrator shall penetrate into the underlying layer approximately 25 mm 1 in. . Take care that the vibrator is withdrawn in sucha manner that no air pockets are left in the specimen. The duration of vibration required will depend upon the

    43、workability of theconcrete and the effectiveness of the vibrator (see Note 8). Continue vibration only long enough to achieve proper consolidationof the concrete (see Note 9). Observe a constant duration of vibration for the particular kind of concrete, vibrator, and measureinvolved.NOTE 8Usually, s

    44、ufficient vibration has been applied as soon as the surface of the concrete becomes relatively smooth.NOTE 9Overvibration may cause segregation and loss of appreciable quantities of intentionally entrained air.6.5 On completion of consolidation the measure must not contain a substantial excess or de

    45、ficiency of concrete. An excess ofconcrete protruding approximately 3 mm 18 in. above the top of the mold is optimum.Asmall quantity of concrete may be addedto correct a deficiency. If the measure contains a great excess of concrete at completion of consolidation, remove a representativeportion of t

    46、he excess concrete with a trowel or scoop immediately following completion of consolidation and before the measureis struck-off.6.6 Strike-OffAfter consolidation, strike-off the top surface of the concrete and finish it smoothly using the flat strike-off plateso that the measure is level full. Strik

    47、e-off the measure by pressing the strike-off plate on the top surface of the measure to coverabout two thirds of the surface and withdraw the plate with a sawing motion to finish only the area originally covered. Then placethe plate on the top of the measure to cover the original two thirds of the s

    48、urface and advance it with a vertical pressure and asawing motion to cover the whole surface of the measure and continue to advance it until it slides completely off the measure.Incline the plate and perform final strokes with the edge of the plate to produce a smooth surface.C138/C138M 17a36.7 Clea

    49、ning and WeighingAfter strike-off, clean all excess concrete from the exterior of the measure and determine the massof the concrete and measure to an accuracy consistent with the requirements of 4.1.7. Calculation7.1 Density (Unit Weight)Calculate the net mass of the concrete in pounds or kilograms by subtracting the mass of themeasure, Mm, from the mass of the measure filled with concrete, Mc. Calculate the density, D, kg/


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