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How Concrete Is Made | Concrete Manufacturing Guide
Concrete Materials Guide

How Concrete Is Made

Concrete Starts With A Carefully Controlled Combination Of Cement, Water, Fine Aggregate, Coarse Aggregate And, Where Required, Admixtures Or Supplementary Cementitious Materials. The Final Performance Depends Not Only On The Ingredients, But Also On Batching, Mixing, Transport, Placement, Compaction, Finishing And Curing.

Cement + Water Sand + Aggregate Batching & Mixing Placement & Finishing Curing & Strength
Concrete Production Overview

From Raw Materials To Hardened Concrete

Concrete Is Produced Through A Sequence Of Controlled Steps. Each Stage Can Affect Workability, Finish, Durability And Final Strength.

1

Select Materials

Cement, Water, Fine Aggregate, Coarse Aggregate And Any Required Additions Are Chosen For The Mix.

2

Batch

Materials Are Measured In Controlled Proportions Before Mixing.

3

Mix

The Ingredients Are Combined Until The Concrete Is Uniform And Workable.

4

Transport

Fresh Concrete Is Moved To The Placement Location While Maintaining Suitable Consistency.

5

Place

Concrete Is Deposited Into Forms Or The Prepared Work Area Without Unnecessary Segregation.

6

Compact

Entrapped Air Is Reduced So The Concrete Can Fully Surround Reinforcement And Fill The Form.

7

Finish

The Surface Is Screeded, Floated, Trowelled Or Textured To Suit The Required Finish.

8

Cure

Moisture And Temperature Are Controlled So Cement Hydration Can Continue Properly.

Figure B

How Concrete Comes Together

Concrete Is Not Just Cement. Cement Acts As The Binder, Water Starts Hydration, Sand Fills Smaller Voids And Coarse Aggregate Forms Much Of The Concrete's Solid Skeleton.

Cement Binder Water Starts Hydration Sand Fine Aggregate Coarse Aggregate Stone Or Gravel Batch + Mix Create Fresh Concrete Place • Compact • Finish • Cure Hardened Concrete
Materials → Batching → Mixing → Transport → Placement → Compaction → Finishing → Curing
Concrete Manufacturing Guide

What Concrete Is Made From

Concrete Is A Composite Construction Material. The Basic Ingredients Are Cement, Water, Fine Aggregate And Coarse Aggregate. Depending On The Required Performance, The Mix May Also Include Chemical Admixtures, Supplementary Cementitious Materials, Fibres, Pigments Or Other Approved Components.

Cement And Water Form The Paste That Coats And Binds The Aggregate Particles. Sand Helps Fill The Spaces Between Larger Aggregate Particles, While Coarse Aggregate Contributes Much Of The Volume And Internal Skeleton Of The Concrete. When The Materials Are Proportioned And Mixed Correctly, The Fresh Concrete Can Be Placed And Compacted Before It Gradually Hardens.

Cement

Cement Is The Hydraulic Binder In Conventional Concrete. When Cement Is Mixed With Water, Chemical Reactions Begin That Form New Hydrated compounds. These reactions gradually transform the paste from a workable material into a hardened binder that locks the aggregate particles together.

Cement Is Not The Same Thing As Concrete. Cement Is One Ingredient In Concrete. A Bag Of Cement By Itself Does Not Contain The Sand And Coarse Aggregate Normally Used To Make Concrete.

Water

Water Is Essential Because It Activates The Hydration Process. It Also Influences Fresh Concrete Workability. However, Water Content Has To Be Controlled. Adding Excess Water Simply To Make Concrete Easier To Place Can Change The Hardened Concrete's performance and durability.

Important: Water Should Be Controlled According To The Mix Design, Product Instructions Or Project Specification. The Required Amount Is Not Chosen Simply By Appearance.

Fine Aggregate

Fine Aggregate Is Commonly Sand Or Another Fine Mineral Aggregate. It Occupies The Smaller Spaces Between Coarse Aggregate Particles And Forms Part Of The Dense granular structure of concrete. Grading, cleanliness and moisture condition can influence batching and fresh concrete behaviour.

Coarse Aggregate

Coarse Aggregate Is Generally Crushed Stone, Gravel Or Another Approved Mineral Aggregate. It Provides A Large Share Of The Concrete Volume. Aggregate Size, Shape, Strength, Grading And Cleanliness Can All Matter To Concrete Production And performance.

Admixtures

Chemical Admixtures Can Be Added In Small Quantities To Modify Fresh Or Hardened Concrete behaviour. Depending On The Product And Mix Design, admixtures may be used to influence workability, setting, water demand, air content or other performance characteristics.

Supplementary Cementitious Materials

Some Concrete Mixes Include Supplementary Cementitious Materials As Part Of The Binder System. Their Use Depends On The Required Concrete specification, supply chain and performance objectives. The proportions and suitability should come from the approved mix design rather than a generic rule.

How Concrete Is Made Step By Step

1. Materials Are Selected

Concrete Production Begins With Selecting Materials That Match The Required Performance. The cement type, aggregates, water, admixtures and supplementary materials are considered together because the final concrete is a system rather than a collection of independent ingredients.

2. The Ingredients Are Proportioned

Batching Is The Process Of Measuring The Correct Quantity Of Each Ingredient. Commercial Concrete Production Typically Uses Controlled Batching Equipment. Accurate batching matters because changes in cement, water, aggregate or admixture quantities can change workability and hardened properties.

3. Moisture In Aggregates Is Considered

Aggregates Can Contain Surface Moisture. That Moisture Contributes Water To The Mix, So Production Controls May Need To Adjust Added Water Or Aggregate batch quantities. Ignoring moisture can shift the effective proportions.

4. The Materials Are Mixed

Once Batched, The Materials Are Mixed Until The Concrete Is Uniform. The Objective Is To Distribute Cement Paste, Water, Fine Aggregate, Coarse Aggregate And Any Additions Consistently Through The Batch.

5. Fresh Concrete Is Transported

Concrete Has To Reach The Point Of Placement While It Is Still Suitable For The Work. Ready-Mixed Concrete Is Commonly Transported In Agitating Trucks. The transport stage has to maintain the intended mix and avoid unnecessary delay, segregation or uncontrolled water addition.

6. Concrete Is Placed

Fresh Concrete Is Deposited Into Formwork, Slabs, Footings, Walls Or Other Prepared Locations. Placement Should Follow The Project's Construction method so the concrete fills the intended space without excessive segregation.

7. Concrete Is Compacted

Compaction Helps Remove Entrapped Air And Allows Fresh Concrete To Flow Around Reinforcement, Into Corners And Against Form Surfaces. Depending On The Work, Compaction May Be Achieved By Vibration Or Other suitable methods.

8. The Surface Is Finished

Slabs And Other Exposed Surfaces May Be Screeded, Floated, Trowelled, Broom Finished, Textured Or Otherwise finished. The correct finish depends on the required use, appearance and specification.

9. Concrete Is Cured

Curing Helps Maintain Conditions That Allow Cement Hydration To Continue. Good curing can involve maintaining moisture, controlling evaporation and protecting the concrete from unsuitable temperature conditions. Curing is a critical stage because concrete continues developing properties after placement.

10. Concrete Continues To Gain Strength

Concrete Does Not Become Fully Mature The Moment It Feels Hard. Hydration Continues Over Time As Long As Conditions Permit. Strength development depends on the mix, curing, temperature, materials and other factors.

Concrete Production

Four Big Stages Of Making Concrete

The Entire Process Can Be Grouped Into Materials, Fresh Concrete Production, Placement And Hardened Concrete Development.

1

Materials

Select Cement, Water, Aggregates And Required Additions.

2

Production

Batch And Mix The Materials Into Uniform Fresh Concrete.

3

Construction

Transport, Place, Compact And Finish The Concrete.

4

Curing

Protect The Concrete While Hydration And Strength Development Continue.

Concrete Ingredients

What Each Concrete Ingredient Does

Each Ingredient Has A Different Role In Fresh And Hardened Concrete.

IngredientMain RoleWhy Control MattersTypical Concern
CementHydraulic BinderInfluences Paste Content And HydrationType, Content And Compatibility
WaterStarts Hydration And Supports WorkabilityExcess Or Uncontrolled Water Can Change PerformanceQuantity And Quality
Fine AggregateFills Smaller VoidsChanges Workability And Granular PackingGrading, Moisture And Cleanliness
Coarse AggregateForms Much Of The Solid SkeletonAffects Volume, Handling And Hardened PropertiesSize, Shape, Strength And Grading
AdmixturesModify Concrete BehaviourDosage And Compatibility MatterProduct-Specific Use
Supplementary MaterialsPart Of The Binder System In Some MixesCan Change Fresh And Hardened PerformanceProportion And Specification
Fresh Concrete

What Happens During Mixing

Mixing Has To Distribute The Ingredients Uniformly. Cement And Water Begin Forming Paste, Fine Aggregate Becomes Coated, And The Paste Starts Filling Spaces Between Aggregate Particles. Coarse Aggregate Is Distributed Through The mix so the batch can behave as one consistent material.

Fresh concrete has to be workable enough for the chosen placing method, but workability is only one requirement. The concrete also has to remain consistent with the specified mix. Uncontrolled water addition on site can change the balance established during batching.

Why Concrete Can Separate

Segregation Happens When The Ingredients Stop Remaining Uniformly Distributed. Coarse Aggregate Can Separate From The Mortar Or Paste If Concrete Is Handled Poorly, Dropped Excessive Distances Or Moved In A Way That Encourages Separation.

Why Air Voids Matter

Fresh Concrete Naturally Contains Entrapped Air. Compaction Reduces Unwanted Air Voids So The Concrete Can become denser and fully surround embedded reinforcement where applicable. Over-vibration or unsuitable techniques can also create problems, so the method should suit the concrete and formwork.

Concrete Development

Fresh Concrete Vs Hardened Concrete

Concrete Changes From A Workable Material Into A Hardened Composite Through Hydration And Time.

Fresh ConcreteWorkability, consistency, transport, placing, compaction and finishing dominate this stage.
Early HardeningThe material begins losing plasticity as hydration progresses and the internal structure develops.
Curing StageMoisture and temperature control support continued hydration and development.
Hardened ConcreteStrength, durability, stiffness, surface quality and long-term performance become the main concerns.
Concrete Quality

What Can Change The Final Quality Of Concrete?

Concrete Quality Is Influenced By The Entire Production And Construction Process. A Good Mix Can Still Perform Poorly If It Is Batched Inaccurately, Transported Improperly, Placed Badly, Under-Compacted Or Poorly Cured.

StageWhat Needs ControlPossible Effect If Poorly Controlled
MaterialsQuality, grading, moisture and suitabilityInconsistent mix behaviour or performance
BatchingCorrect quantitiesWrong proportions
Water ControlSpecified water contentChanged workability and hardened properties
MixingUniform distributionNon-uniform concrete
TransportTime and handlingLoss of consistency or segregation
PlacementControlled depositingVoids, segregation or poor filling
CompactionRemoval of entrapped airHoneycombing or incomplete consolidation
CuringMoisture and temperature protectionReduced development or surface problems
Key Point: Concrete Performance Is The Result Of Materials + Proportioning + Production + Construction + Curing. No Single Step Works In Isolation.
Ready-Mix And Site Mixing

Ready-Mixed Concrete Vs Site-Mixed Concrete

Ready-Mixed Concrete Is Produced In A Batching Plant And Transported To The Site In A Concrete Truck. Plant Production Allows Materials To Be Measured And Controlled Using Purpose-Built Equipment.

Smaller Projects May Use Site-Mixed Concrete Or Prepacked Bagged Products. The correct approach depends on the project size, required concrete performance, specification, access and available equipment. Bagged products should be mixed according to the manufacturer's instructions rather than treated as a generic recipe.

Ready-Mixed Concrete

  • Produced In A Controlled Batching Facility.
  • Delivered As Fresh Concrete To The Site.
  • Common For Slabs, Footings, Driveways And Larger Concrete Work.
  • Mix Specification And Delivery Information Should Be Confirmed Before Placement.

Site-Mixed Concrete

  • Materials Are Batched And Mixed At Or Near The Work Area.
  • Accuracy Depends On Consistent Measurement And Mixing.
  • Common On Small Jobs Where The Required Quantity Is Limited.
  • Structural Or Specified Concrete Should Follow The Relevant Project requirements.
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Frequently Asked Questions

How Concrete Is Made FAQs

Simple Answers About Cement, Water, Aggregates, Mixing, Placement, Curing And Concrete Production.

What Is Concrete Made From?

Basic Concrete Is Made From Cement, Water, Fine Aggregate And Coarse Aggregate. Some Mixes Also Include Admixtures, Supplementary Cementitious Materials Or Other Approved components.

Is Cement The Same As Concrete?

No. Cement Is A Binder Used As One Ingredient In Concrete. Concrete Also Contains Water And Aggregates.

What Does Water Do In Concrete?

Water Starts Cement Hydration And Helps Provide Fresh Concrete Workability. Its Quantity Has To Be Controlled According To The Mix design or specification.

Why Is Sand Added To Concrete?

Sand Acts As Fine Aggregate And Helps Fill The Smaller Spaces Between Coarse Aggregate Particles.

Why Is Stone Or Gravel Added?

Coarse Aggregate Makes Up A Large Share Of Concrete Volume And Forms Much Of The Internal Solid Skeleton.

What Happens When Cement And Water Are Mixed?

Chemical Hydration Reactions Begin. These Reactions Create Hydrated compounds that gradually bind the concrete together.

Why Is Concrete Vibrated?

Vibration Is One Method Used To Reduce Entrapped Air And Help Fresh Concrete Fill The Form And Surround Reinforcement.

Why Does Concrete Need Curing?

Curing Helps Maintain Conditions That Support Continued Cement Hydration And Concrete property development.

Does Concrete Reach Full Strength Immediately?

No. Concrete Continues To Develop Properties Over Time As Hydration Proceeds, Subject To The Mix And Curing Conditions.

Can Extra Water Be Added To Make Concrete Easier To Place?

Uncontrolled Water Addition Can Change The Intended Mix. Water adjustments should follow the approved procedure, mix design or supplier instructions.

What Is Ready-Mixed Concrete?

Ready-Mixed Concrete Is Batched At A Plant And Transported To The Construction Site As Fresh Concrete.

Does This Page Provide A Concrete Mix Design?

No. This Is An Educational Guide To The Concrete Production Process. It Does Not Specify A Structural Mix, Water-Cement Ratio, Strength Or material proportions.

Australian References

Useful Concrete Information Sources

Use Current Industry Guidance, Product Information And Project Specifications When You Need Technical Concrete Requirements.

Cement Concrete & Aggregates Australia

Australian Industry Information And Technical Resources For Cement, Concrete And Aggregates.

Visit CCAA
Safe Work Australia

National Safety Information Relevant To Construction Materials, Concrete Work And Silica Exposure.

Read Silica Guidance
Your Concrete Supplier

Confirm Current Product, Mix, Delivery, Placement And Handling Information For The Concrete Being Supplied.

Your Project Specification

Use The Required Strength, Exposure, Materials, Curing And Construction Details For The Actual Work.