🏗️ Concrete Compressive Strength

Construction PN-EN 12390-3

Determination of compressive strength of hardened concrete on cubic or cylindrical specimens. Fundamental quality test for concrete in construction.

Overview

Compressive strength is the most important mechanical parameter of concrete, determining its class (e.g., C20/25, C30/37). The test involves loading a specimen (150 mm cube or ø150×300 mm cylinder) with a compressive force at constant rate until failure.

Concrete class (e.g., C30/37) means: 30 MPa — cylindrical strength (fck,cyl), 37 MPa — cubic strength (fck,cube). Standard PN-EN 12390-3 is essential for quality control of concrete production (plants) and site control (acceptance). Results form the basis for confirming concrete compliance with design specifications.

Testing is performed after 28 days of curing (standard) or at any concrete age (early strength — 7 days, later — 56/90 days). Specimens cure under standard conditions: water 20±2°C or climate chamber 20±2°C, RH ≥95%.

Method principle

A concrete specimen (cubic or cylindrical) is placed centrally on the lower platen of a hydraulic press. Load is applied at constant rate 0.6 ± 0.2 MPa/s (for class ≤C50/60) until specimen failure. Maximum force (Fmax) divided by cross-sectional area gives compressive strength:

fc = Fmax / Ac [MPa]

where Ac — specimen cross-sectional area (for 150 mm cube: Ac = 22,500 mm²). Result is rounded to 0.1 MPa.

Applications

Key parameters

ParameterValue
Specimen dimensions150 mm cube or ø150×300 mm cylinder
Loading rate0.6 ± 0.2 MPa/s
Testing age (standard)28 days
CuringWater 20±2°C or RH ≥95%, T=20±2°C
Typical range15–100 MPa (classes C12/15 to C80/95)
Accuracy0.1 MPa

Standard

Standard number
PN-EN 12390-3:2019
Title (PL)
Badania betonu — Część 3: Wytrzymałość na ściskanie próbek do badań
Title (EN)
Testing hardened concrete — Part 3: Compressive strength of test specimens

Step-by-step procedure

1. Specimen sampling

Collect concrete from mixer/pump per PN-EN 12350-1. Fill molds in 2 layers, compacting each (vibrating table or rod). Level surface.

⏱ Time: 15 min

2. Initial curing

Cover molds with plastic sheet. Store 16–72 h at temp. 20±5°C. Then demold.

⏱ Time: 24 h • 🌡 Temperature: 20±5°C

3. Standard curing

Place specimens in water 20±2°C or climate chamber (RH ≥95%, T=20±2°C) until 28 days.

⏱ Time: 28 days • 🌡 Temperature: 20±2°C

4. Test preparation

Remove specimen from water. Surface dry. Measure dimensions (±0.1 mm). Weigh. Calculate density. Check perpendicularity and flatness of faces.

⏱ Time: 10 min

5. Surface capping

If surface uneven — apply capping layer (sulfur or neoprene). Ensure parallel contact with press platens.

⏱ Time: 15 min

6. Compression

Place specimen centrally on lower press platen. Load at constant rate 0.6±0.2 MPa/s without shocks until failure. Record maximum force Fmax.

⏱ Time: 2–5 min

7. Failure assessment

Check failure pattern — should be satisfactory (double cone). Reject results with unsatisfactory failure (lateral splitting, twisting).

⏱ Time: 2 min

8. Calculations and report

fc = Fmax / Ac. Calculate for each specimen. Compare with required concrete class. Prepare test report.

⏱ Time: 10 min

Required equipment and apparatus

EquipmentExampleIndicative price
Hydraulic concrete pressControls Automax Pro 3000, Form+Test MEGA 3, Matest C08980,000–200,000 PLN
Cubic molds 150 mmSteel, three-part, PN-EN 12390-1300–600 PLN/pc
Curing chamber20±2°C, RH ≥95%, Controls C313, Matest C40115,000–40,000 PLN
Caliper / measuring tapeMitutoyo 500-196, accuracy 0.01 mm200–800 PLN
Scale ±0.1% specimen massRadwag WLC 30, up to 30 kg3,000–6,000 PLN

Reagents, media and consumables

ReagentCASDetails
Mold release oilAnti-adhesive agent for steel molds
Capping compoundSulfur with filler or neoprene unbonded capping pads

Health and safety (OHS)

Training and video materials

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