Solution Guide · Industrial Facilities
BICP-SOG Crack-Reduced Integrated Floor System: Application Guide for Industrial Facilities and Underground Garages
This guide presents BICP's integrated floor solutions for industrial facilities, focusing on the Taiping and Taidi product lines. It covers technical approaches, project value, and application boundaries to assist project teams in early-stage decision-making. The content emphasizes reducing floor joints, improving flatness and durability, and includes three technical routes: post-tensioned integrated floor, UHPC integrated floor, and UHPC long-lasting repair. Additionally, it introduces the Taidi prestressed wide-beam solution for covered underground garage roofs.
Intended Readers
Owners, investors, operators, design teams and general contractors who need preliminary engineering assessment for the applicable scenario.
Applicable Scenarios
Industrial Facilities
Key Engineering Questions
This document is compiled by the BICP Resource Center, based on original content with brand-aligned, compliant, and resource-center-specific revisions. It focuses on the Taiping, Taidi, and Shente New Materials product lines for industrial facility scenarios, detailing project pain points, solution paths, value indicators, and application boundaries. Specific projects still require professional review considering loads, column grids, geology, construction schedules, operational methods, and approval requirements. Traditional industrial floors often have numerous contraction and construction joints, leading to edge damage that affects forklifts, AGVs, and production continuity. Taiping offers three technical routes for integrated floor systems: post-tensioned integrated floor, UHPC integrated floor, and UHPC long-lasting repair. By reducing floor joints by up to 80%, it minimizes joint edge damage, dust, step offsets, and operational maintenance impacts on production. Taidi is a prestressed wide-beam solution for covered underground garage roofs, which can reduce floor height and excavation depth by approximately 500mm compared to traditional frame beam-slab systems.
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