Slab Piers: Interior Foundation Stabilization Without Major Excavation
When a slab foundation has settled and the perimeter approach is not accessible or sufficient, slab piers are driven through the floor from inside the home directly to bearing material at depth.
On cost: $800 to $1,500 per slab pier, depending on depth and configuration. Full estimate at inspection.
Overview
Slab Piers
Slab piers are a variation of the helical or push pier system designed to be installed through and beneath the concrete floor slab from inside the home. Instead of excavating pits around the exterior of the foundation, slab pier installation begins with coring or cutting small access holes through the floor slab, then driving the pier elements through those openings directly beneath the interior foundation grade beam or slab area experiencing the greatest settlement. This approach is particularly useful for interior slab areas that have settled in a bowl pattern, for homes where landscaping or site conditions prevent exterior excavation access, and for cases where the primary settlement is occurring beneath the interior slab rather than at the perimeter footing. After the piers reach confirmed bearing depth, synchronized jacks transfer the slab load to the piers and lift the interior slab section toward its original elevation, reducing floor slope and preventing further settlement.
Access holes of approximately 6 to 8 inches in diameter are core drilled through the floor slab at each pier location. Slab pier tubes or helical shafts are then driven through the access holes and advanced through the subgrade soils to bearing depth using hydraulic equipment sized for interior use. Brackets seat against the underside of the slab to transfer the load. Once all piers are installed and confirmed at bearing, hydraulic jacks applied through the access holes lift the slab section simultaneously from all pier locations, raising it toward the target elevation. Jacks are locked, the pier system is secured, and the access holes are patched with concrete.
Wondering if this is the right fix for what you are seeing? Learn more about the warning signs: Bouncing or Springy Floors and Bowing Basement Walls . Or browse the full Problem Signs library for foundation repair.
Installation Process
How we install slab piers
Interior Assessment and Pier Layout
We measure floor elevation across the affected area and identify the pattern of settlement to determine pier locations and the target elevation for the lift.
Slab Core Drilling
Access holes are core drilled through the floor slab at each pier location. Cores are saved for patch-back after the installation is complete.
Pier Installation Through Access Holes
Pier elements are advanced through the access holes to bearing depth. Installation is confirmed by torque monitoring (helical) or hydraulic resistance (push-style). Extension elements are added as depth increases.
Bracket Seating
Transfer brackets are seated against the underside of the slab at each pier location, creating the load path from the slab to the pier shaft.
Synchronized Slab Lift
Hydraulic jacks applied through each access hole are pressurized simultaneously, lifting the slab section toward the target elevation. Floor elevation is monitored throughout the lift.
Lock-Off and Patch-Back
Pier systems are locked at the achieved elevation. Access holes are patched with concrete and finished to match the surrounding slab surface.
Slab piers are one of the tools that make it possible to repair a settling interior slab without tearing up the entire floor. The access holes are small, the lift is controlled, and the patched slab is solid when we leave.
Why Ground Up
The difference is in the diagnosis
Get several quotes and you'll see a wide range of prices. The gap isn't luck. It's whether the contractor finds the actual cause and stands behind the work.
- In-house certified crews: we never subcontract your repair
- Optional independent third-party engineer review on larger jobs
- Honest three-tier triage: we tell you what can wait, in writing
- Family owned from the same Shelbyville Highway address since 2009
FAQ
Slab Piers questions
Yes. The interior work requires clear access to the floor. Hard flooring such as tile and hardwood must be removed and reset after patching. We work with you to sequence the work to minimize the area disrupted at any one time.
Yes. Slab piers are commonly installed in finished basement slabs and lower-level living areas where exterior access to the affected slab section is not practical.
Access holes are typically 6 to 8 inches in diameter, sized to accommodate the pier element and installation equipment. After the pier is installed and locked, the access hole is patched with concrete and can be covered with flooring.
More Solutions
Other solutions we offer
Carbon Fiber Strap Installation
Carbon fiber straps are high-tensile-strength composite straps bonded vertically to the face of a bowing basement wall to prevent further inward deflection. The straps are made from the same carbon fiber used in aerospace and structural engineering applications, rated at tensile strengths far exceeding steel by weight. When epoxy-bonded to a properly prepared wall surface from floor plate to sill plate, carbon fiber straps transfer the lateral soil pressure load into the top and bottom bearing points of the wall system rather than allowing the wall face to deflect. Carbon fiber reinforcement is best suited for walls that have deflected less than 2 inches and have not experienced significant cracking through the wall section. It is a hold-in-place system, not a restoration system, it prevents further movement but does not push the wall back toward its original position.
Deep Foundation Systems
Deep foundation systems transfer structural loads from the ground surface to soil or rock at a depth where bearing capacity is reliable and unaffected by surface conditions. In Middle Tennessee, the primary driver for deep foundation work is the region's expansive clay geology: the top several feet of soil shrink in dry weather and swell in wet weather, making them unreliable bearing material for foundations that must remain stable year-round. Deep foundation elements including helical piers, push piers, and micropiles penetrate through this active zone and reach bedrock, dense gravels, or competent clay at depth where moisture variation has minimal effect. These systems are used for both new construction on difficult sites and for repair of existing foundations that have settled due to inadequate bearing in the near-surface soils. Ground Up designs and installs deep foundation systems for residential and light commercial applications throughout the Middle Tennessee region.
Epoxy Crack Injection
Epoxy crack injection is a structural repair method for concrete foundation walls, slabs, and beams that have developed cracks due to settlement, curing shrinkage, hydrostatic pressure, the outward force of water pushing against a foundation wall from saturated soil, or thermal movement. Low-viscosity epoxy resin is injected under low pressure through surface ports installed across the crack at regular intervals, filling the crack from its deepest point outward. As the epoxy cures, it bonds the two concrete faces together with tensile strength greater than the surrounding concrete. The result is a monolithic repair that restores the structural continuity of the cracked section. Epoxy injection is appropriate for dry or dormant cracks, cracks that are not actively wet and not in active movement. For cracks with active water seeping through them, polyurethane foam injection (which expands and seals in the presence of moisture) is often the appropriate first step, followed by epoxy once the wall has been dried out.
Expansion Joint Installation
Concrete is a rigid material that nonetheless moves with temperature, moisture, and loading. In Middle Tennessee's climate, with summer temperatures regularly exceeding 95 degrees and occasional hard freezes in winter, the thermal expansion and contraction of concrete slabs, driveways, sidewalks, and foundation walls is significant. When concrete cannot move freely, it builds up internal stress that is released suddenly as a crack. Expansion joints and control joints are planned gaps in the concrete that give it a place to move without cracking in the field of the slab or through a structural element. Ground Up installs expansion joints during new concrete work and cuts or installs retrofit joints in existing concrete to prevent crack propagation and protect adjacent structural elements from impact loading caused by slab movement.
Foundation Underpinning
Foundation underpinning is the process of extending the effective depth of a foundation's bearing capacity by installing structural support elements that bypass inadequate near-surface soils and transfer load to competent material at depth. In Middle Tennessee, where expansive clay soils lose and regain bearing capacity with every moisture cycle, underpinning is the most durable long-term foundation repair strategy available. Ground Up installs two primary types of underpinning: helical pier underpinning, which uses rotating steel shafts with helical plates to reach bearing at a torque-confirmed depth; and push pier underpinning, which drives steel pipe sections hydraulically using the building's weight as a reaction force, meaning the home's own weight gives the hydraulic ram something to push against, until the pier reaches refusal in competent soil or rock. Both systems transfer the structural load from the clay soils that are causing settlement to deep bearing material that is unaffected by surface moisture variation, stopping settlement and in most cases allowing partial to full elevation recovery.
Concrete Piers for Foundation Support
Concrete piers are cast-in-place or pre-cast reinforced concrete elements that extend from the foundation footing down through unstable near-surface soils to a bearing stratum with adequate capacity. They are one of the most durable underpinning approaches available for residential and commercial foundations in Middle Tennessee, providing a permanent structural connection between the foundation and the stable soil or rock below the depth at which seasonal and moisture-driven soil movement occurs.
Found a problem? Get a straight answer
Free inspection, written estimate, honest triage. No pressure.