Open Concrete Joints Are Channels for Water, Seal Them Before They Cause Settlement
Properly sealed joints block the water infiltration that causes concrete to sink and crack.
On cost: $200–$1,500 depending on linear footage of joints to be sealed
Overview
Concrete Joint Sealing
Concrete joint sealing is the process of filling and sealing the planned control joints, expansion joints, and construction joints in concrete flatwork to prevent water, debris, and vegetation from entering beneath the slab. Every concrete driveway, patio, and sidewalk has joints, either cut into the slab at installation to control cracking, or formed between pours on different days. These joints are intentional features of the slab, but they must be maintained. When joint sealant deteriorates, cracks, or was never installed in the first place, the open joint becomes a direct pathway for water to enter and erode the soil beneath the concrete. In Middle Tennessee, with roughly 47 inches of annual rainfall and expansive red clay soils that are easily destabilized by water, open concrete joints are one of the primary drivers of the slab settlement and cracking that Ground Up is called to repair. Sealing joints proactively, or resealing them when deteriorated, is the most cost-effective maintenance a homeowner can perform to extend the life of their concrete.
Joint sealing begins with cleaning the joint completely, removing all old sealant, dirt, debris, and vegetation. For joints wider than 3/8 inch, a closed-cell foam backer rod is pressed into the joint to create the correct sealant depth and prevent the sealant from bonding to the joint base (three-point bonding reduces the sealant's ability to flex). NexusPro polyurethane sealant is then applied into the joint in a continuous bead and tooled smooth with a concave finishing tool. The finished sealant surface slightly cups inward to shed water rather than collect it. NexusPro cures within hours and bonds chemically to clean concrete, creating a flexible, watertight seal that accommodates concrete's seasonal movement without cracking or separating.
Wondering if this is the right fix for what you are seeing? Learn more about the warning signs: Cracked Concrete Driveways and Patios and Cracking or Failed Expansion Joints . Or browse the full Problem Signs library for concrete repair.
Installation Process
How we install concrete joint sealing
Joint Inspection and Measurement
All joints on the concrete surface are inspected for width, depth, existing sealant condition, and signs of water infiltration or vegetation. Joint width and depth are measured to determine the appropriate backer rod size and sealant volume needed for a complete seal.
Old Sealant Removal
Existing failed, cracked, or deteriorated sealant is removed by routing, grinding, or hand tools. Thorough removal is essential, new sealant applied over old, failed sealant will not bond properly and will fail prematurely. This step takes time but directly determines the longevity of the new seal.
Joint Cleaning
Once old sealant is removed, the joint walls are cleaned with a wire brush and blown clear with compressed air to remove all dust, debris, and loose concrete particles. For joints with vegetation growth, roots are cleared and a herbicide treatment may be recommended to prevent regrowth beneath the sealant.
Backer Rod Installation
Closed-cell foam backer rod is pressed into joints wider than approximately 3/8 inch. The backer rod creates the correct sealant thickness, typically a 2:1 width-to-depth ratio, and prevents three-sided bonding, which would reduce the sealant's flexibility and cause premature failure at joint walls.
NexusPro Sealant Application and Tooling
NexusPro polyurethane sealant is applied in a continuous bead into the prepared joint, slightly overfilling. A finishing tool shapes the sealant to a smooth, slightly concave profile. This concave shape prevents water from pooling on the sealant surface and directs it off the joint rather than into it.
Joint sealing is the cheapest insurance policy you can buy for your concrete. We see driveways that could have been maintained for $300 in joint sealing every few years but instead needed $8,000 in lifting and crack repair because water got in and washed out the sub-base. Derek Veselich, Owner, Ground Up Foundation Repair
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
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FAQ
Concrete Joint Sealing questions
With a professional-grade flexible sealant like NexusPro, properly applied joints typically remain effective for many years in Middle Tennessee's climate. We recommend inspecting sealed joints every 2–3 years and resealing any sections that show cracking, separation, or significant compression. Annual visual inspection costs nothing and catches deterioration early.
DIY joint sealants are available, but they are almost universally lower quality than professional products. Most consumer sealers are rigid, crack with the first freeze-thaw cycle, and pull away from joint walls within a season or two. Professional application of NexusPro, which bonds chemically to clean concrete and remains flexible, provides significantly longer protection. The cost difference between DIY and professional is often recovered in just the first year of avoided re-sealing.
Joint sealing prevents water from entering beneath the slab through joints, which is one of the primary causes of sub-base erosion and the settlement that follows. It does not address settlement that has already occurred, and it cannot prevent settlement caused by soil shrinkage or poor compaction. But as a preventive maintenance measure, keeping joints sealed is one of the most effective investments in long-term concrete health.
Control joints are saw-cut or formed grooves in the concrete surface, placed to direct shrinkage cracking to predictable locations. They typically go about one-third of the way through the slab depth. Expansion joints are full-depth separations between concrete sections, typically filled with a compressible material, designed to allow independent thermal movement between slabs or between a slab and an adjacent structure. Both types need to be sealed to prevent water infiltration.
Joint sealing is priced by the linear foot. For a typical residential driveway with multiple panels, the cost for professional cleaning, preparation, and NexusPro application generally runs $200–$800. For a patio or extensive joint network, cost can reach $1,000–$1,500. It is among the most affordable concrete maintenance services and provides outsized protection relative to its cost.
More Solutions
Other solutions we offer
Polyurethane Foam Concrete Lifting (Polyjacking)
Polyurethane foam concrete lifting (also called polyjacking or foam jacking) is the modern replacement for traditional mudjacking. Where mudjacking injects a heavy cement-sand slurry that adds weight and can wash out over time, this method uses a two-component polyurethane foam that is injected as a liquid, expands to fill the void completely, and cures into a rigid, waterproof cellular structure that permanently supports the slab from beneath. At Ground Up Foundation Repair, we use polyurethane foam lifting for driveways, sidewalks, pool decks, patios, garage floors, and interior concrete slabs that have settled due to soil voids, erosion, or inadequate compaction. The foam is injected through 5/8-inch holes drilled through the slab at strategic locations. Once injected, the foam reaches working expansion within seconds and lifts the slab to the target level within minutes. Injection ports are patched with concrete caulk and the surface is ready for use immediately, no cure time required. Polyurethane foam is waterproof, does not wash out, does not add meaningful structural load, and does not compress further under normal loading conditions.
Foam Injection for Concrete Voids
Foam injection for concrete void filling is a targeted, preventive application of polyurethane foam used to fill sub-slab voids before they cause visible settlement or slab failure. While polyjacking uses foam to actively lift an already-settled slab, void-filling foam injection is used where ground-penetrating radar or hollow-tap surveys have located a void beneath a slab that is still at grade. By filling the void while the slab is still level, we prevent the sudden drop that occurs when remaining support fails. This application is common beneath garage floors, interior concrete slabs, warehouse floors, and any flatwork area where a hollow sound is detected during inspection. The injection process is nearly identical to polyjacking: small holes are drilled through the slab, foam is injected to fill the void, and holes are patched. Because the slab is not being raised, the process requires precise foam volume control to fill the void without over-lifting.
Mudjacking (Cement Slurry Lifting)
Mudjacking, also called slabjacking or pressure grouting, is the traditional method of lifting settled concrete slabs. It works by pumping a slurry mixture of water, soil, and cement beneath the slab through holes drilled in the concrete. As the slurry fills voids and builds pressure, it lifts the slab. Mudjacking has been used for concrete lifting since the 1930s and is widely available across the country. However, it has significant limitations compared to modern polyurethane foam lifting methods. Ground Up Foundation Repair primarily uses polyurethane foam lifting for concrete lifting in Middle Tennessee because of its superior weight-to-strength ratio, faster cure time, and longer-term stability. We explain mudjacking honestly so homeowners can make informed decisions about their concrete repair options.
NexusPro Concrete Crack Sealing
NexusPro is a professional-grade, flexible polyurethane joint and crack sealant engineered for concrete flatwork. Unlike rigid fillers and hardware-store caulks that crack and debond with the first seasonal freeze-thaw or thermal expansion cycle, NexusPro remains elastic after curing, it flexes with the concrete rather than fighting it. This flexibility is especially valuable in Middle Tennessee's climate, where concrete surfaces experience wide temperature swings between winter freezes and summer heat, and where red clay soil movement causes slabs to shift slightly across every wet and dry season. NexusPro is also UV-resistant, meaning it does not degrade, yellow, or become brittle from sun exposure, a critical property for outdoor applications in Tennessee's sunny summers. Ground Up uses NexusPro to seal control joints, expansion joints, random cracks, and the joints between adjacent slabs on driveways, patios, pool decks, sidewalks, and garage floors.
Polyurethane Foam Concrete Lifting
This polyurethane foam is a two-component, high-density system used to lift and stabilize sunken concrete slabs. Developed specifically for slab lifting applications, it expands when its two components mix beneath the concrete, filling voids and gently raising the slab back to its original position. Because the cured foam weighs only about 2 lbs per cubic foot, compared to the 100+ lbs per cubic foot of traditional mudjacking slurry, it adds virtually no load to the soil beneath the slab. This lightweight property is one of the key reasons foam-lifted slabs are far less likely to re-settle than slabs lifted by mudjacking. Ground Up Foundation Repair uses polyurethane foam lifting across Middle Tennessee for driveways, patios, garage floors, sidewalks, pool decks, and other residential concrete flatwork.
Slab Jacking (Mudjacking)
Sunken concrete slabs, driveways, sidewalks, patios, garage floors, and steps, are one of the most common concrete problems in Middle Tennessee. When the soil beneath a slab erodes, settles, or washes away, the unsupported concrete sinks. Slab jacking, also called mudjacking or concrete lifting, addresses this by pumping a fill material, either a cement-soil slurry (traditional mudjacking) or expanding polyurethane foam, through holes drilled in the slab. The material fills the void beneath the slab and generates enough pressure to lift it back toward its original elevation.
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