Pavement Mix Design Calculator | Optimized Mix 2026 — IRC:58 PQC, DLC & MR Design for Rigid Pavement Concrete

Pavement Mix Design Calculator

Optimized Mix 2026 — Rigid Pavement PQC, DLC Sub-base & Concrete Shoulder: Modulus of Rupture Design, IRC:58:2015 Compliance, IS 10262:2019 Absolute Volume, Low Slump for Slip-Form Paving & AEA for Freeze-Thaw

PQC — Pavement Quality Concrete DLC Sub-base MR ≥ 4.5 MPa IRC:58:2015 IS 10262:2019 Slip-Form Paving AEA Freeze-Thaw

🛣️ Pavement Concrete — Design Basis & Key Differences from Structural Concrete

IRC:58:2015 IRC:SP:62 (DLC) IS 10262:2019 IS 516:1959 (Beam Test) MORTH Spec. 2013

Rigid pavement concrete (PQC — Pavement Quality Concrete) is governed by an entirely different design criterion from structural building concrete. While structural concrete is designed to a compressive strength target (fck), PQC is designed to a Modulus of Rupture (MR) target — typically MR ≥ 4.5 MPa at 28 days per IRC:58:2015. Compressive strength is measured as a quality check but is not the governing design parameter.

This difference has profound implications for mix design — a mix achieving 40 MPa cube strength but only 3.8 MPa MR fails the pavement design criterion. PQC also uses very low slump (15–50mm for slip-form paving), larger aggregate size (31.5mm per IRC:58), and must consider air entrainment for Himalayan freeze-thaw exposure. The DLC sub-base beneath PQC uses an entirely separate, much leaner mix.

🛣️ PQC vs Structural Concrete — 5 Key Differences

1. Design Criterion: MR ≥ 4.5 MPa governs — not fck. Test by IS 516 beam (150×150×700mm).
2. Slump: 15–50mm for slip-form; 50–75mm for manual/highway paving. Much stiffer than structural.
3. Aggregate Size: IRC:58 specifies 31.5mm nominal max size for PQC — larger than most structural work.
4. Air Entrainment: Required in freeze-thaw zones (Himalayan highways) — 4.5–6.5% air target.
5. Joint Design: Transverse joints at 4.5–5m spacing; longitudinal joints at lane edges; dowel bars at transverse joints (IS 14595).

Step 1 — Select Pavement Layer Type

🛣️
PQC — Pavement Quality Concrete
MR ≥ 4.5 MPa | Slump 15–50mm | IRC:58
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DLC — Dry Lean Concrete Sub-base
≥ 10 MPa cube | Slump 0–25mm | IRC:SP:62
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Concrete Shoulder / Median
MR ≥ 3.5 MPa | Slump 25–75mm

PQC — Pavement Quality Concrete

Top wearing course of a rigid pavement. Must achieve MR ≥ 4.5 MPa at 28 days (IRC:58:2015 Cl.7.1). Typical slab thickness 250–350mm for national highways. Placed by slip-form paver (preferred) at 15–50mm slump or by manual/fixed-form at up to 75mm. Aggregate: 31.5mm nominal max size per IRC:58.

Step 2 — Mix Design Parameters

Project Parameters

Used for batch quantity calculation
IRC:58 recommended 250–350mm for NH

Design & Environment

Cement & Aggregates

PQC slip-form: WRA or none only. PCE can cause stickiness in slip-form.

Ready to Calculate

Select pavement type, enter project and material parameters above, then click Calculate Pavement Mix. Results include MR prediction, IS 10262:2019 proportions, IRC:58 compliance, DLC sub-base design, batch quantities for your road project, and air entrainment for freeze-thaw zones.

📋 IRC:58:2015 PQC Concrete Requirements — Reference Table 2026

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ParameterIRC:58:2015 SpecificationMORTH 5th RevisionRemarks
Minimum Flexural Strength (MR)≥ 4.5 MPa at 28 days≥ 4.5 MPa at 28 daysGoverns slab design — 3-point beam test IS 516
Equivalent Compressive Strength≈ M40 cube (30–45 MPa range)M40 minimumMR ≈ fck^0.5 × 0.7 (empirical correlation)
Maximum w/c Ratio0.450.45Lower w/c improves MR significantly
Minimum Cement Content360 kg/m³360 kg/m³Higher cement improves flexural strength
MSA (Nominal Max. Aggregate Size)31.5mm31.5mm (some 25mm)Larger MSA reduces cement demand; interlock in slab
Slump at Point of Placement15–50mm (slip-form)Up to 75mm (manual)Very low slump essential for edge stability in slip-form
Minimum Cover (to reinforcement)40mm (welded mesh in JRCP)40–50mmPlain jointed pavements (JPCP) have no reinforcement except dowels
Air Entrainment4.5–6.5% (freeze-thaw zones)As required by climateMandatory above 1500m altitude in Himalayas
Joint Spacing (transverse)4.5–5.0m (max)5.0m (max)Shorter spacing reduces thermal cracking but increases joints
Curing Method & DurationCuring compound THEN water curing 14 daysWhite pigmented compound immediately after finishingPQC surface evaporation in open conditions — compound curing first 2 hours critical
Minimum DLC Sub-base Strength≥ 10 MPa cube at 28 days≥ 10 MPaDLC provides rigid uniform support for PQC slab