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SCA

SLAG CEMENT ASSOCIATION ANNOUNCES RECORD-BREAKING SHIPMENTS IN 2025 SCA HOSTS 2026 SLAG CEMENT SCHOOL IN WILMINGTON, DELAWARE SCA ANNOUNCES 2025 SLAG CEMENT IN SUSTAINABLE CONCRETE AWARD WINNERS Old Dominion Freight Facility Exterior Pavement Pasco Ready Mix – Spring Hill Concrete Production Facility Principio Meta AI-Designed Mix for Rosemount Data Center US 181 Harbor Bridge Replacement Project Sanford Dam Auxiliary Spillway Rogue Wind Farm NYS Thruway Authority I-90 Rehab Project Aquilla J. Morgan High School Gensco Logistics Center Project Heat Froedtert Hospital Blue Parking Structure McLean Boulevard REGISTRATION OPENS FOR 2026 SLAG CEMENT SCHOOL IN WILMINGTON, DE THE SLAG CEMENT ASSOCIATION ANNOUNCES NEXT BOARD PRESIDENT SCA HOSTS 2025 SLAG CEMENT SCHOOL IN HOUSTON, TEXAS Crossroads North Building 11 The Seattle Storm Center for Basketball Performance
State Road 249 / Port of Indiana Bridge Replacement
nickbrimley · 2026-04-04 · via SCA

Location: Portage, Indiana

Award: Durability

Project Team

Owner: InDOT

Contractor: Superior Construction

Engineer: Parson’s Corp

Concrete: Smith Ready Mix

Slag Cement: Ozinga

Located in Portage, Indiana, the State Road 249 at the Port of Indiana is a massive infrastructure achievement. This 1,100 foot long twin bridge serves as a vital artery for the region, and its completion has successfully doubled the truck traffic capacity moving in and out of the port.

The logistics of this build were incredibly intense. Construction took place directly over four lanes of live highway traffic and multiple active railroad tracks, all while ensuring that road access to the port remained open for business. The project required over 7,400 cubic yards of concrete, including seven mass concrete pier foundations that demanded strict thermal control.

Slag cement was the key to meeting the Department of Transportation's rigorous thermal management plans. By utilizing slag, the team kept the delivered concrete temperatures below 70 degrees, effectively managing the heat of hydration in the large pier footings.

Beyond temperature control, the slag-enhanced mix provided the long-term durability required for the 8 inch bridge decks and easily exceeded the 4,000 psi strength requirements. From the first pours in 2023 to its completion in late 2025, this project stands as a premier example of how slag cement allows engineers to solve complex thermal challenges while building the heavy-duty infrastructure that keeps our economy moving.

Application Type

Application Type

Mass Concrete

% Slag Cement Replacement

60%

% Portland Cement

% Portland Limestone Cement

40%

% Other SCM (if applicable)

Aggregate

1750 (¾” limestone) and Natural Sand

Water/cement ratio

.45

7-day strengths

3800

28-day strengths

5900