Cracked Expansion Joints Are the First Place Water Attacks Your Concrete
Ground Up seals failed concrete joints across Middle Tennessee, stopping water infiltration before it causes costly settlement.
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[ 01 ] Watch For These Signs
Signs Your Expansion Joints Are Failing
Visible Gaps or Open Joints
Joints where the original sealant has separated, cracked through, or pulled away from the concrete edges, leaving open gaps that admit water directly to the sub-base.
Weeds Growing in the Joint
Weed or grass growth in a concrete joint is a clear indicator that soil and moisture are present beneath, and that the joint is no longer sealed against water infiltration.
Chipped or Crumbled Joint Edges
Concrete joint edges that have chipped, broken, or crumbled indicate mechanical damage and loss of the clean joint profile needed for effective sealing.
Staining at Joint Locations
Dark staining at or around joint locations indicates chronic water penetration. The staining pattern often traces the path water takes as it flows beneath the slab.
Expansion joint sealant has a finite lifespan, typically 5 to 10 years for standard products. UV exposure, temperature cycling, and foot or vehicle traffic degrade the sealant, causing it to crack, peel, or pull away from the joint edges.
The edges of concrete slabs at joint locations are vulnerable to chipping and spalling, particularly when de-icing salts are applied in winter. Once the edge profile deteriorates, the joint can no longer hold sealant effectively.
When adjacent slabs settle unevenly, joints that were once the correct width may open wider or override each other. Opened joints exceed the rated movement capacity of standard sealants, causing failure.
Joints that were cut too shallow or spaced too far apart during original construction are more likely to fail as the concrete experiences greater stress than the joint system was designed to absorb.
[ 03 ] Recommended Solutions
How Ground Up fixes this
[ 04 ] Regional Context
Why Middle Tennessee foundations fail
Middle Tennessee's expansive clay soils shrink in dry summers and swell after rain, cycling significantly in volume. Davidson, Williamson, and Rutherford County homes built on this clay face ongoing movement pressure. Ground Up diagnoses and permanently stabilizes foundations across the region.
The expansion joint is where concrete breathes. When the sealant fails, that's where water gets in, and water getting in is how a cosmetic problem becomes a structural one. Seal the joint early and you often prevent everything that comes after it. Derek Veselich, Owner, Ground Up Foundation Repair
[ 05 ] 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
[ 06 ] FAQ
Cracking or Failed Expansion Joints questions
NexusPro polyurethane joint sealant is the product we use for concrete joint sealing in Middle Tennessee. Unlike standard silicone or acrylic caulk, NexusPro bonds tenaciously to concrete, remains flexible across temperature cycles, and resists UV degradation. It is rated for both foot traffic and vehicle traffic applications.
NexusPro joint sealant typically carries a 25-year manufacturer warranty. Standard joint sealants and caulk used by general contractors have much shorter lifespans, often 3 to 7 years. Inspecting joint sealant condition annually and addressing early failures prevents the water infiltration that leads to costly slab settlement.
Basic joint sealing with over-the-counter caulk is possible as a temporary measure, but consumer-grade products lack the flexibility, adhesion, and durability of professional-grade sealants like NexusPro. Improper joint preparation, particularly failure to remove all old sealant and debris, results in poor adhesion and early re-failure.
No. Expansion joints are planned, designed gaps filled with flexible material. Cracking in the joint sealant is a maintenance issue, not a structural failure. Cracks that run through the concrete body of the slab, rather than through the joint sealant, are a separate concern that may indicate structural stress.
More Problem Signs
Other signs to watch for
Cracked Concrete Driveways and Patios
Concrete cracks are one of the most common exterior problems homeowners in Middle Tennessee encounter. A freshly poured slab looks pristine, but within a few years the combination of expansive red clay soil, heavy rainfall, freeze-thaw cycles, and vehicle loads almost inevitably produces cracks of some kind. Not all cracks are equal: hairline surface cracks are often cosmetic, while wide, growing, or offset cracks signal deeper structural movement. Understanding what type of crack you have determines whether sealing alone will solve the problem or whether the slab also needs to be lifted and stabilized before sealing.
Gaps Between Concrete Slabs
Gaps that open between adjacent concrete slabs, at driveways, sidewalks, patios, and pool decks, are an early indicator of slab movement and a direct water infiltration pathway. Unlike expansion joints, which are designed gaps filled with flexible material, unplanned gaps form when one or both slabs move horizontally or settle vertically. These gaps allow water to flow directly beneath the concrete, eroding the sub-base and creating voids that eventually cause the slab to sink and crack further. In Middle Tennessee, where seasonal clay soil movement is significant, gaps that appear small in spring may widen substantially by fall as the soil contracts beneath the slabs.
Patio Settlement and Sinking
Patio settlement occurs when the concrete slab or slabs forming an outdoor living area sink unevenly into the soil below, producing a surface that is no longer level and no longer drains properly. In Middle Tennessee, patios are particularly vulnerable because they are typically installed on or near grade, often with less sub-base preparation than driveways, and may receive concentrated water runoff from roof downspouts, drainage swales, and garden beds. The region's red clay soils compound the problem: they hold water, swell during wet seasons, and then contract significantly during dry summers, destabilizing the soil support beneath the patio slab. What starts as a slight tilt or a new crack often progresses to a noticeable bowl or step pattern if left unaddressed.
Concrete Pitting, Flaking, and Staining
Pitting, flaking, spalling, and staining are concrete surface deterioration issues that range from cosmetic to moderately structural depending on severity and depth. In Middle Tennessee, these problems are most commonly caused by freeze-thaw cycling, chemical exposure from de-icing salts, oil and fluid contamination from vehicles, and the natural aging of concrete surfaces. While surface deterioration rarely affects the structural load-bearing capacity of a slab in its early stages, untreated deterioration accelerates: pitting and spalling expose the concrete aggregate and reinforcing steel to moisture, increasing the rate of damage and eventually compromising the slab's surface integrity. Addressing surface deterioration early with appropriate sealing or resurfacing is far less costly than full slab replacement.
Settling or Sinking Pool Deck
Pool deck settling is one of the more dangerous forms of concrete settlement because the surfaces are frequently used barefoot and the risk of tripping near water is significant. A pool deck that has dropped, even by a single inch, creates uneven surfaces, trip hazards at the pool edge, and gaps that accelerate drainage problems. In Middle Tennessee, pool decks are especially vulnerable to settlement because they are poured directly on disturbed fill soil around a newly excavated pool shell. That fill never reaches the compaction density of undisturbed native soil, so it continues to consolidate under load for years. The region's alternating wet winters and dry summers further accelerate this process through repeated clay soil expansion and contraction cycles.
Sinking or Sunken Driveway
A sinking driveway is one of the most visually obvious signs of concrete settlement, yet many homeowners delay repairs because the slab itself appears intact. The problem is almost always below the surface: soil that was once compact and load-bearing has washed away, compressed under weight, or contracted during a dry season, creating a void that allows the heavy concrete slab to shift downward. In Rutherford, Davidson, Williamson, and Wilson Counties, the native red clay soil is especially prone to this cycle, swelling with winter rains and shrinking back during summer droughts, never quite returning to the same position. Over time, sections of the driveway sink independently, creating lips, slopes, and drainage problems that worsen every year.
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