ICC-ES AC358 establishes a rigorous, standardized framework for evaluating the structural adequacy, installation procedures, and durability of helical foundation products. It defines four primary requirement categories that must be met for a system to be considered code-compliant:
Adhering to these criteria ensures that helical piers provide predictable performance and meet independent, third-party verification for challenging geotechnical conditions, such as the expansive clay soils found in the Colorado Front Range.
Diagonal drywall cracks above door frames are a classic indicator of differential foundation settlement. These cracks typically form at the upper corners of door frames—which are natural structural weak points—when one part of the foundation sinks or shifts more than…
When restoring foundations that are a century old or more, stabilization methods must balance modern engineering with historic preservation standards. The most effective methods include: Before selecting a method, it is vital to have a structural engineer foundation inspection to…
Yes, helical piers are considered a superior and often preferred choice for historic building restoration and stabilization. They are specifically designed to address structural issues like foundation settlement while respecting the delicate nature of older structures. Helical pier stabilization is…
Repairing a foundation on a historic home while maintaining its value requires a focus on minimal intervention and preserving architectural integrity. By following the National Park Service preservation standards, property owners can ensure that structural repairs do not compromise the…
When performing historic foundation repairs, compliance involves meeting a combination of local, state, and national preservation standards. The primary requirements include: Related FAQs