Slab-on-grade foundations turn up across Fort Leonard Wood in newer subdivisions, in additions and garages built onto older homes, and in much of the area's light commercial building stock — even where full basements dominate the older residential stock. When the soil beneath a slab shifts from drought, saturation, tree roots, or poor drainage, the slab can crack, settle unevenly, or heave in sections. Homeowners across Pulaski County are connected with contractors who diagnose and repair slab foundations specifically.

Common Slab Problems in Central Missouri

The clay and reactive soils throughout Central Missouri are particularly sensitive to moisture. During dry summers, the soil shrinks and slab edges can drop. During wet seasons, the soil swells and can push the slab upward. This repeated movement causes cracking, uneven floors, and stress on the home's framing. Left unaddressed, the damage typically gets worse over time.

  • Settlement: a section of slab drops because the soil beneath it consolidated, washed out, or was never properly compacted. Cracks tend to be wider at one end and the two sides usually sit at different heights.
  • Heave: the slab is pushed up rather than dropping, typically where clay soil has taken on water. It is frequently mistaken for settlement elsewhere in the house, and the repairs are close to opposites — which is why the diagnosis matters more than the crack.
  • Shrinkage cracking from the original cure, common, usually hairline, and not structural. It matters for moisture and for finish flooring, not for the building.
  • Plumbing leaks under the slab, which both cause localized settlement and get caused by it. Where a leak is suspected, testing the lines comes before any lifting — repairing over an active leak is the most common reason a slab repair has to be redone.
  • Frost movement at shallow footings and slab edges, particularly on additions and garages where the footing depth was never matched to the main structure.

How Slab Foundations Get Repaired

Depending on the nature and extent of the problem, a contractor may use pressed concrete piers, helical piers, or steel push piers to stabilize and lift the settled areas. Each pier is driven to stable load-bearing soil or bedrock. Once in place, the foundation is raised to as close to its original position as safely possible, and the work is documented for your records.

  • An elevation survey first, which is what separates settlement from heave and tells you which parts of the slab have actually moved rather than which parts have visible cracks.
  • Pressed concrete, helical, or steel push piers driven to load-bearing soil or rock to stabilize and lift the settled sections.
  • Polyurethane foam lifting for slabs where the void is the problem and the structure above is light — a smaller, faster, less invasive scope than piering where it applies.
  • What lifting does not do: change why the elevation was lost. Drainage, an unrepaired leak, or a tree drawing moisture out of one side of the lot all continue afterwards unless they are handled separately.
  • When the cheaper answer is the right one: where the movement is small, has not changed across a season, and is not causing damage, correcting drainage and re-measuring later is a legitimate plan rather than a stalling tactic.

Have Questions?

We're happy to talk through what you're seeing before you commit to anything. Call us and we'll tell you honestly whether it warrants an inspection.

Call (314) 668-7016