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Mat Cooling Window — 30 mm Overlay, Mild Day

Compaction time window for 30 mm overlay, mild day from lift thickness, mix and air temperature (diffusion model).

0
Compaction window (min)
0
Initial cooling rate (°C/min)

The everyday overlay case — 15-odd minutes of working time. The breakdown roller's position, not its weight, is the variable that matters: every 30 m of lag behind the paver burns a minute of the window.

Formula

τ ∝ h²/k_wind · t = τ·ln[(T_mix−T_env)/(T_stop−T_env)] — lumped diffusion model
References: MultiCool / Minnesota DOT mat-cooling research (Chadbourn et al.); NAPA — HMA paving handbook & best practices

Note: Paving estimates only — the project mix design, agency specification and the plant's QC data govern. Temperature models are simplified; verify with an infrared gun and density gauge on the mat.

Compaction time window for 30 mm overlay, mild day from lift thickness, mix and air temperature (diffusion model). A free asphalt paving temperature & logistics tool — no sign-up, no upload, instant results in your browser.

About Mat Cooling Window — 30 mm Overlay, Mild Day

Mat Cooling Window — 30 mm Overlay, Mild Day computes the governing relationship τ ∝ h²/k_wind · t = τ·ln[(T_mix−T_env)/(T_stop−T_env)] — lumped diffusion model live as you type. The everyday overlay case — 15-odd minutes of working time. The breakdown roller's position, not its weight, is the variable that matters: every 30 m of lag behind the paver burns a minute of the window. Defaults are pre-filled with realistic values for this exact scenario, and the worked example substitutes your numbers step by step so the math is never a black box.

How to use Mat Cooling Window — 30 mm Overlay, Mild Day

  1. 1Enter your values — Lift thickness, Mix temp behind paver, Air temperature, Base temperature and more (sensible defaults are pre-filled).
  2. 2Read the live results: Compaction window, Initial cooling rate.
  3. 3Check the "with your numbers" line to see τ ∝ h²/k_wind · t = τ·ln[(T_mix−T_env)/(T_stop−T_env)] — lumped diffusion model substituted step by step.
  4. 4Adjust inputs until the scenario matches yours, then copy or share the result.

Why use Mat Cooling Window — 30 mm Overlay, Mild Day?

  • Instant, free and private — every calculation runs client-side in your browser; nothing is uploaded
  • Built on the stated formula τ ∝ h²/k_wind · t = τ·ln[(T_mix−T_env)/(T_stop−T_env)] — lumped diffusion model with authoritative sources cited on the page (MultiCool / Minnesota DOT mat-cooling research (Chadbourn et al.); NAPA — HMA paving handbook & best practices)
  • The everyday overlay case — 15-odd minutes of working time.
  • SI ⇄ Imperial toggle converts your inputs in place, so you can work in the units your drawings use

Frequently asked questions

What formula does the mat cooling window — 30 mm overlay, mild day use?+

It evaluates τ ∝ h²/k_wind · t = τ·ln[(T_mix−T_env)/(T_stop−T_env)] — lumped diffusion model, exactly as published. Sources: MultiCool / Minnesota DOT mat-cooling research (Chadbourn et al.); NAPA — HMA paving handbook & best practices. The substituted worked example on the page lets you verify every step against the textbook.

How should I read the result — and how far can I trust it?+

The everyday overlay case — 15-odd minutes of working time. Paving estimates only — the project mix design, agency specification and the plant's QC data govern. Temperature models are simplified; verify with an infrared gun and density gauge on the mat.

When is this calculator the right tool for the job?+

Compaction time window for 30 mm overlay, mild day from lift thickness, mix and air temperature (diffusion model). A free asphalt paving temperature & logistics tool. The breakdown roller's position, not its weight, is the variable that matters: every 30 m of lag behind the paver burns a minute of the window. For neighbouring scenarios, the related tools below cover the same engine with different presets.

Does it support both metric and imperial units?+

Yes — the SI ⇄ Imperial toggle converts the values already in the fields, preserving the physical quantity, so you can flip mid-calculation without re-entering anything.

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