Three crew members stand on a paver placing a fresh asphalt mat at the NCAT Test Track.

NCAT W10: BioMAG™ Carries 20% RAP Through 20 Million ESALs

On October 23, 2018, BioMAG™ entered full-scale accelerated pavement testing on Section W10 at the National Center for Asphalt Technology Test Track in Alabama. The 12.5-mm surface mixture contained 20% reclaimed asphalt pavement and a soybean-based biopolymer-modified binder.

BioMAG™ combines 50% SIP-1111™ rejuvenator with 50% biopolymer. W10 put that dual-function formulation into an instrumented track section exposed to accelerated heavy-truck traffic, creating a direct field record of cracking, rutting, texture, and long-term pavement condition.

Field performance at 5 million ESALs

At 5 million equivalent single axle loads, the W10 section recorded no cracking, 2.5 mm of rutting, and 0.8 mm mean texture depth. The two 20% RAP control sections also recorded no cracking, with approximately 0.2 mm and 0.5 mm of rutting and mean texture depths of 0.6 mm and 0.7 mm.

A 20-million-ESAL pavement record

NCAT continued trafficking W10 after the first-year evaluation. A later NCAT field paper describes the seven-year-old section as having accumulated approximately 20 million ESALs with minimal surface distress before a separate spray-on pavement-preservation study began in 2024.

That pre-treatment condition extends the original construction story from an early demonstration to a long-running accelerated pavement section. The 2024 surface treatments created a new research phase; the approximately 20-million-ESAL condition documents W10 before those treatments were applied.

What W10 demonstrates for asphalt teams

W10 connects three priorities in one field section: recycled asphalt use, polymer-modified binder performance, and long-duration trafficking. BioMAG™ brought SIP-1111™ rejuvenation chemistry and soybean-based polymer into the same formulation, while NCAT measured pavement response over millions of heavy-truck load repetitions.

For producers and agencies evaluating recycled-content or polymer-modified mixtures, W10 provides a full-scale reference point: 20% RAP, no cracking at 5 million ESALs, and minimal surface distress after approximately 20 million ESALs.

Two-panel field-condition chart at 5 million ESALs. W10 BioMAG records 2.5 millimeters rut depth and 0.8 millimeters mean texture depth. E5A and E5B controls record approximately 0.2 and 0.5 millimeters rut depth and 0.6 and 0.7 millimeters texture depth. All sections report no cracking.
NCAT W10 field condition at 5 million ESALs W10 and both controls remained crack-free at 5 million ESALs; W10 showed more rut depth and slightly greater mean texture depth.

Lower rut depth is favorable; texture depth is descriptive. Control values are approximate as reported.

NCAT section condition at 5 million ESALs.
Section RAP (%) Cracking Rut depth (mm) Rut value status Mean texture depth (mm)
E5A control 20 None 0.2 Approximate 0.6
E5B control 20 None 0.5 Approximate 0.7
W10 BioMAG™ 20 None 2.5 Reported 0.8

Source: Thermoplastic Elastomers Derived From Vegetable Oils. NCAT Test Track BioMAG section, Table 2, PDF pages 4-5

Review SIP-1111™ · See related demonstration projects · Discuss a recycled asphalt or polymer-modified binder program with SoyLei

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