ACI 211.6T-2014 Aggregate Suspension Mixture Proportioning Method.pdf
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1、1AggregAte SuSpenSion Mixture proportioning MethodIntroductionThis document describes the aggregate suspension mixture proportioning method. The method is suitable for normalweight concrete with workability ranging from zero-slump to self-consolidating. This method may not be suitable for mass concr
2、ete mixture proportioning. It is adapted from a method originally published by Koehler and Fowler (2007).The aggregate suspension mixture proportioning method is based on the representation of concrete as a suspension of aggregates in paste and air, as depicted schematically in Fig. 1. All solid mat
3、erial finer than the No. 200 (75 m) sieve is consid-ered to be part of the powder and, subsequently, the paste.To proportion a concrete mixture, the optimal combi-nation of aggregates for the application is selected based on grading, size, shape, angu-larity, and texture. Next, the total volume of p
4、aste and air required for the selected aggregates is determined. Then, the composition of paste and airnamely the relative amounts of water, each powder material, and airis optimized to achieve the desired concrete rheology and hardened properties. Lastly, trial batches are used to make adjustments.
5、 Although this document discusses concrete rheology, measurements of rheology are not required to perform this method. Guidance on measuring rheology is available in ACI 238.1R.Key features of the method include:a) The aggregates are selected on a combined basis, rather than individually.b) The volu
6、mes of aggregates and of paste and air are selected based on the properties of the combined aggre-gates. Aggregates with desired grading, shape, angularity, and texture for the application will typically result in less volume of paste needed.c) All material finer than the No. 200 (75 m) sieve is con
7、sidered part of the powder content and, thus, part of the paste. This material includes fines from the aggregate and separately added fines, such as ground limestone filler.d) The water-powder ratio (w/p) is considered when adjusting workability and the water-cementitious mate-rials ratio (w/cm) is
8、considered when aiming to achieve desired hardened properties. The difference between w/p and w/cm is attributable to noncementitious fines such as ground limestone filler and other mineral fillers.Calculations should be performed in a computer application. Use of this method results in proportions
9、based on aggregates in saturated surface-dry (SSD) condition. The user should make corrections for aggregate mois-ture content when making trial or production batches.Use of this proportioning method may result in otherwise acceptable but different proportions than those determined in ACI 211.1.Keyw
10、ords: durability; optimal grading; packing density; proportioning; shape-angularity factor; water-powder ratio; workability.Fig. 1Concrete as a suspension of aggregate in paste and air.ACI 211.6T-14TechNote2 AGGREGATE SUSPENSION MIXTURE PROPORTIONING METHOD (ACI 211.6T-14)Definitionsangularitysharpn
11、ess of corners and edges of a particle.packing densityvolume of solid particles divided by total bulk volume.paste volumevolume of water and powder, excluding air.passing abilityease with which concrete can pass among various obstacles and narrow spacing in the form-work without blockage.plastic vis
12、cosityfor Bingham materials, such as most concretes, the difference between shear stress and yield stress divided by shear rate.powdersolid materials finer than approximately the No. 200 (75 mm) sieve, including cement, supplemen-tary cementitious materials (SCMs), mineral fillers, and aggregate fin
13、es.segregation resistance (stability)ability of a material to maintain homogeneous distribution of its various constituents during its flow and setting.shaperelative dimensions of a particle; common descriptors include flatness, elongation, and sphericity.slump flowa measure of workability of self-c
14、onsolidating concrete determined by filling a slump cone with concrete, removing the slump cone, and measuring the horizontal diameter that concrete flows.textureroughness of a particle on a scale smaller than that used for shape and angularity.yield stressa critical shear stress value below which a
15、n ideal plastic or viscoplastic material behaves like a solid (that is, will not flow); once the yield stress is exceeded, a plastic material yields, whereas a viscoplastic material flows like a liquid.NotationDRBD = dry-rodded bulk density, lb/ft3(kg/m3)mcement= mass of cement, lb (kg)mcm= mass of
16、cementitious materials, lb (kg)mfiller= mass of filler, lb (kg)mpowder= mass of powder, lb (kg)mSCM= mass of SCM, lb (kg)pi= volume of aggregate fraction i divided by the total aggregate volumeSG = specific gravitySGcement= specific gravity of cementSGfiller= specific gravity of fillerSGOD= oven-dry
17、 specific gravitySGSCM= specific gravity of supplementary cementitious materialSGSSD= saturated surface-dry specific gravitySGSSD-coarse= saturated surface-dry specific gravity of coarse aggregateSGSSD-fine= saturated surface-dry specific gravity of fine aggregateSGSSD-intermediate= saturated surfac
18、e-dry specific gravity of intermediate aggregateVair= volume percentage of air, %Vcoarse= volume percentage of coarse aggregate, %Vfine= volume percentage of fine aggregate, %Vintermediate= volume percentage of intermediate aggregate, %Vminimum paste+air= minimum volume percentage of paste and air,
19、%Vminimum spacing paste+air= minimum volume percentage of spacing paste and air, %Vpaste= volume percentage of paste, %Vwater= volume percentage of water, %w/c = water-cement ratiow/cm = water-cementitious materials ratiow/p = water-powder ratiorwater= density of water, lb/ft3, kg/m3%coarse-to-total
20、 aggregate= coarse aggregate as a percent of total aggregate volume, %fine-to-total aggregate= fine aggregate as a percent of total aggregate volume, %intermediate-to-total aggregate= intermediate aggregate as a percent of total aggregate volume, %voidscompacted aggregate= percentage voids in compac
21、ted aggregate, %AGGREGATE SUSPENSION MIXTURE PROPORTIONING METHOD (ACI 211.6T-14) 3Design criteriaDetermine all relative design criteria before selecting proportions. Design criteria include performance require-ments for workability, strength, dimensional stability, and durability; and prescriptive
22、requirements such as limits on w/cm and cementitious materials content.MethodologyStep 1: Select the maximum size of aggregateSelect the largest maximum size of aggregate that is practical for the application. As required by ACI 318, the nominal maximum size of aggregate should not exceed:a) One-fif
23、th of the narrowest dimension between sides of forms;b) One-third the depth of slabs; orc) Three-fourths of the minimum clear spacing between individual reinforcing bars, bundles of bars, or preten-sioning strands.Increased maximum size of aggregate typically results in increased packing density of
24、the combined aggre-gate, reduced concrete plastic viscosity, increased concrete slump and slump flow, increased segregation poten-tial, and reduced passing ability.Step 2: Select combined aggregatesSelect the relative amounts of fine, intermediate, and coarse aggregates based on grading, shape, angu
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