While polyurethane foam is an effective solution for specific types of concrete issues, it cannot replace underpinning for a settling home that requires structural support. Understanding the distinction between Polyurethane Foam Lifting and structural foundation repair is critical for long-term stability.
Polyurethane foam injection is primarily used for “slab jacking,” which involves lifting and leveling settled concrete slabs, sidewalks, and driveways. It excels at filling voids and compacting surface soils but typically only reaches depths of 2–4 feet. Because it does not reach deep, load-bearing strata, it is generally limited to cosmetic or non-structural leveling applications.
In contrast, Foundation Repair via Helical Piers (underpinning) is required for structural settlement, diagonal cracks, or bowing walls. Our steel pier systems provide:
In the expansive clay soils common throughout Littleton and the Front Range, surface-level solutions like foam often face challenges due to soil movement and freeze-thaw cycles. We are The Experts in Steel Piers and recommend deep underpinning to ensure your home is anchored to stable layers.
As a family-owned and operated company since 1996, we recommend consulting a licensed structural engineer for a definitive diagnosis. We provide custom-quote solutions following a professional on-site inspection.
All information is for general purposes; estimates are preliminary until confirmed in writing following an inspection. We do not guarantee specific results for every project as outcomes depend on unique site conditions.
A professional structural forensic report, prepared by a licensed Professional Engineer (PE), is a comprehensive diagnostic document that identifies the root causes of foundation distress. Unlike a basic contractor walkthrough, this report is based on empirical data collection and structural…
The cost of helical pier installation is influenced by several site-specific and technical variables. Because no two properties have identical ground conditions or structural needs, pricing is typically determined through custom quotes rather than flat rates. Key factors influencing the…
The manufacturing, testing, and installation of commercial helical piers are governed by several specific ASTM International standards to ensure structural integrity and predictable performance. These include:ASTM F3143-18: This serves as the primary standard for commercial helical piles, establishing minimum requirements…
Based on the provided content, there are eight primary causes of foundation failure and structural distress:Poor Drainage and Water Accumulation: This occurs when water pools near the foundation due to improper grading, clogged gutters, or short downspout extensions, which can…
The load capacities for commercial helical piles are determined through a systematic combination of engineering analysis and real-time installation data. Rather than a single fixed value, capacity is verified using the following methods:Torque-to-Capacity Correlation: During installation, rotary equipment records the…