📖 Construction Field Guide · Asphalt

Asphalt paving, explained for the field.

From the plant to the finished mat — lifts, density, tonnage, compaction, tack coat, joints, cores and QC in plain language, with the free tools to go with each step.

1Layers & lifts

Asphalt is placed in layers (each layer is a lift), on top of a compacted granular base.

Asphalt pavement cross-section SURFACE COURSE — top lift BINDER COURSE — lower lift GRANULAR A — base GRANULAR B — sub-base SUBGRADE not to scale
The two asphalt lifts sit on the granular base — Granular A on top, Granular B below it.

On a two-lift job you'll hear binder and surface:

  • Binder course — the first (lower) lift. It carries the structural load and is usually the thicker lift.
  • Surface course — the top lift. It's the driving surface and takes the direct traffic wear.

Below the asphalt sits the granular base. In Ontario it's usually Granular A directly under the asphalt — a well-graded crushed granular that compacts into a firm, drainable base — over Granular B, a coarser material used for the deeper sub-base and bulk fill. The subgrade (native soil) is the bottom. All of it has to be shaped and compacted before the first lift goes down: asphalt is only as good as what it sits on. Layer requirements come from the project spec (in Ontario, typically OPSS) — the numbers here are typical, not universal.

SURFACE BINDER surface 50 mm binder 70 mm total = binder + surface (e.g. 70 + 50 = 120 mm)
Surface on top of binder — total thickness is the two lifts added together.

2Density & tonnage

Tonnage is volume × density. In Canada we work in metric.

Hot mix asphalt is typically around 2,350 kg/m³ (about 2.35 tonnes per cubic metre). The exact number comes from the mix design — but 2.35 t/m³ is the standard starting point used on site and in SummitTools' calculators.

Yield is the actual tonnage placed versus the theoretical amount for the area — watch it job to job. If you consistently place more than the calculation says, check the mix density on the plant ticket, the effective mat width, and the actual compacted thickness.

Tonnes = Length (m) × Width (m) × Thickness (mm ÷ 1000) × Density (t/m³) × (1 + Waste %)

Example: a 120 m × 3.7 m lane, 50 mm thick at 2.35 t/m³ with 2% waste:

120 × 3.7 × 0.050 × 2.35 × 1.02 ≈ 53.2 tonnes
WIDTH (m) LENGTH (m) THICKNESS (mm) Volume × density = tonnes area (m²) × thickness (m) × density (t/m³)
Length × width × thickness gives volume — multiply by density to get tonnes.
Field tipDon't assume theoretical tonnage will match what the plant actually shipped. Truck weights, irregular widths, thickness variation and waste all change the real number — the scale ticket is the truth.

3Thickness

Lift thickness is checked with cores — and how it's judged depends on the spec.

After the mat is compacted, cores are taken and measured. A two-lift core shows the total thickness, the surface lift, and by subtraction the binder lift. On many jobs each lift has its own minimum (e.g. binder 70 mm, surface 50 mm). How acceptance works varies by job: some specs judge by the average across all samples, others require every individual sample to meet the number. Check your spec — and record both the individual results and the running average either way.

SURFACE 50 BINDER 70 TOTAL 120 mm binder = total − surface 140 total / 65 surface → binder 75 mm acceptance: by average or by each sample — depends on the spec
Total minus surface equals binder — acceptance is by average or by each sample, per the job spec.

4Compaction

Compaction is how the mat gets to its required density — usually checked as a percentage.

Compaction % is field density ÷ maximum (Proctor) density × 100. It's measured with a nuclear density gauge or from cores, and the spec typically requires something like 95% minimum — always check your project's number. Rolling happens in passes: breakdown, intermediate, and finish, while the mix is still hot enough to work.

Compaction climbs with each pass ASPHALT MAT roll 1 2 3 PASS 1 — 92% PASS 2 — 95% PASS 3 — 97% required 95%
Each roller pass compresses the mat more — compaction % climbs until it meets the required number.

Rolling is breakdown first, then intermediate and finish passes. Roll while the mix is in the spec'd temperature window — rolling too late doesn't gain density, it just rides over a mat that's already set.

5Tack coat

Tack is the thin adhesive layer that bonds one lift to the one below it.

Tack coat is sprayed on the prepared surface before each new lift so the layers bond instead of slipping. It's usually an emulsion applied at a light rate (often in the range of 0.2–0.5 L/m² depending on the surface and the spec). Rates matter — too heavy and the mix can bleed, too light and the layers can delaminate.

Tack also needs to break (cure) before the next lift goes down — paving onto unbroken tack can let it pick up onto truck and paver tires. When in doubt, give it time and check the spec's guidance for the emulsion being used.

6Joints & segregation

Where mats meet and where mix separates — the two things inspectors look at hardest.

Longitudinal joints run along the direction of paving where two passes meet; transverse joints run across where one day's paving ends and the next starts. Both are weak spots if not compacted properly — cold, open joints are the first place water gets in and failures start.

Joints are called hot when the adjoining mat is still workable (paved hot-into-hot), and cold when the edge has set. Cold joints need extra care — tight, well-compacted, and usually painted or heated before the new mat touches them.

Segregation is when the mix separates: coarse rock ends up in one spot and fines in another, leaving a rough, open-looking patch. It usually comes from mix handling — too much shoveling, dumping, or trucks not remixing. A segregated mat doesn't compact evenly and fails early.

Field tipWatch the paver hopper and the head of material. A low or starved head of material is one of the quickest ways to end up with segregation at the mat.

7Core sampling

Cores are the proof — they show thickness and let the lab check density.

Core samples are cut out of the compacted pavement, usually by lot, and measured. On a two-lift job each core can show the total, the surface lift, and the binder lift. Core results feed the QC record and the acceptance decision — which is why SummitTools' Field QC page logs them by station and averages them the way the spec does.

CORE cut through the two asphalt lifts, stops at the granular then measured: total · surface · binder (and density in the lab) TOTAL surface + binder = the asphalt core — it does not extend into the granular
A core runs through the two asphalt lifts only — it gives total, surface and binder thickness, plus the lab density check.

8Paving sequence

The order that makes a day work.

PLANT / MIX TRUCKS PAVER ROLLERS QC CORES mix → haul → lay → compact → verify — and tack coat between lifts
The standard sequence — with tack applied before each new lift.

Weather governs the schedule too: most specs set limits on mix temperature at delivery and won't allow paving in rain or on a wet surface. A cold mix or a shower mid-pour can force a joint you didn't plan for.

9Field tips

The kind of stuff you learn standing on the mat.

Field tip — tonnageConfirm the mix density from the plant ticket before you estimate. 2.35 t/m³ is a good default; the actual mix can shift the total by several tonnes on a big job.
Field tip — compactionCompact while the mix is in the temperature window. Roll too late and you're just riding over a mat that's already set.
Field tip — QCNumber your cores the same way the report does — station, side, offset, lot. It's impossible to rebuild the record later if the labels are lost.

Put this guide to work.

Use the calculators for planning, log your cores and compaction in Field QC, and build the daily report from the same numbers.

Open Field QC →