Yes, ICC-ES AC358 specifies rigorous and standardized load testing procedures to verify that helical pier systems perform as designed under field conditions. These protocols ensure that results are reliable and comparable across different projects and testing agencies.
The standardized load testing process follows a specific sequence:
Additionally, AC358 defines a torque-to-capacity relationship (Section 5.3) that allows for real-time field verification of design capacity during the installation of every pier.
Underpinning historical buildings in Colorado, particularly in areas like Littleton and the Denver metro region, involves navigating complex geological and structural hurdles. Because historical structures often feature delicate masonry, original stonework, and fragile interior finishes, the method of stabilization must…
Yes, helical piers are an excellent solution for supporting historical masonry foundations. Because historical masonry structures are often heavy and sensitive to movement, they require a support system that provides unwavering stability without causing further damage during installation. We specialize…
To repair a settling foundation in an old house without damaging the structure, we use a meticulous, engineered process called professional steel piering. This method is particularly effective for historical renovations because it provides a permanent solution with minimal vibration…
Choosing between polyurethane foam and steel piers depends on whether you are addressing a cosmetic surface issue or a structural foundation problem. We offer both solutions and can help you determine the best fit for your specific site conditions in…
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…