Elimination of cracks in foundations and supporting structures

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The problem that you solve and forget with Uretek

Cracks - the headache of any manager or service operator

Technologies that ensure the elimination of cracks in the foundation and walls of office and business centres without excavation and the need to stop the work of the business center and the shopping center. A process that does not disrupt the natural rhythm of work and existing communications. As fast as possible, economically and reliably.

Wall cracks in commercial and industrial buildings

               Uretek's restoration methods allow you to lift buildings of almost any size. Great practice in numerous projects has caused the success of technology around the world. The solutions to correct the consequences of subsidence of foundations that we provide to the commercial and industrial sector are in demand for many reasons. An important factor is how efficient the processes are in terms of time and cost. Buildings that  "leveled" are not suffer from cracks in the walls. They can form inside and outside. But as the building returns to its design level, these cracks usually close up, leaving only a small patch, and require final processing. Most importantly, structural damage is reparable so there is a future for the building.

How to fix large cracks in the walls

               The best long-term solution for fixing and subsequent filling of cracks is lifting with re-alignment (so that the cracks close) or stabilization of the base and then filling the cracks in the next step. This crack correction process is called reinforcement. As the building is leveled, cracks in the walls can be closed or reduced, ready for plaster or other finishing process. Windows and doors again, as a rule, begin to work properly. Traditional methods of strengthening the foundation or leveling include total excavating or excavating parts of the foundation, pouring concrete (or cement milk), waiting for it to cure (which is not always possible to track), and then lifting the building from concrete blocks with jacks (if it is possible). In any case, the traditional method does not guarantee the result and can be time-consuming and not reliable (often requiring weeks or months) and necessarily dirty. This usually means that you will have to free part or all of the building while the professionals are working.

               

Request a free consultation with a geotechnical engineer to discuss your case and determine the options and solutions that are right for you

The formation of cracks in the foundation and walls is provoked by the following factors:

  • Not well compacted soil
  • Extra loads
  • Breakdowns and accidents of engineering communications
  • Regular fluctuations in moisture and temperature
  • Earthworks or piling nearby
  • Structural differences of foundations within the same building
  • Impact of regular vibrations
  • Biological processes in base soils
  • Different types of soil under one building

As a result of contacting Uretek, you will be able to:

  • Understand what is happening
  • Make an informed and suitable decision
  • Take control of an asset
  • Increase facility lifecycle
  • Stop looosing of asset value
  • Choose the most suitable way to implement the solution
  • Get a reliable expert in building maintenance
World wide brand since 1978
Warranty terms up-to 60 years

                      International expertise and database of projects
International expertise and database of projects
Approved international technologies
Individual project and raw material design
Visual effect and approving results
Increasing value and lifecycle of your property
Ecologically neutral materials
What we guarantee:
Almost instant results
Selection and determination of a suitable solution together with the client
Only top brands of equipment and tools
Possibility of phased implementation of the project according to the schedule required by the client
Post-project monitoring and efficiency, if necessary, improvements. 24/7 communication
Parallel improvement of the characteristics of hydro, thermal and vibration insulation of structures
Completed projects

Technological excessive subsidence of a building columns

Stopping subsidence and increasing the load-bearing capacity of the pile foundation

In a residential building, a floor slab sank after a pipe burst

Reinforcement of base soils and re-leveling of floor slab

Erection of a new curtain wall on the existing foundation

Strengthening and sloughing of soils of the base of the foundation

Cracks on load-bearing walls, incl. on window and doorways

Reinforcement of foundation soils, filling of voids

Weak watered soils and unsuccessful attempt to stabilize

Reinforcement of soils at the base of slab foundations

Cracks on the inner sides of the walls of the basement room

Strengthening and consolidation of soils of the base of foundations

Local floor subsidence

Reinforcement of base soils and leveling of the floor slab

Tank bottom subsidence

Reinforcement and leveling of the steel bottom

Deformations and cracks of supporting structures

Reinforcement of soils of foundations

Internal load-bearing columns have undergone settlement

Stopping uneven settlement of column foundations

Draft of the structure with non-standard heel

Aligning the tank structure

Eroding the foundation of the supporting columns

Strengthening the foundation foundation without disrupting the entire project schedule

Strengthening the foundation soil and stabilizing the foundation

Strengthening the foundation soil and stabilizing the foundation

Negative effects of dynamic loads on foundations and floor slabs

Reinforcement of foundation soils and leveling of foundations and floors

Erosion under the floor and foundations

Stabilizing piles and leveling the foundation slab

Re-leveling of industrial structures

Alignment in the plane of structures of foundations and equipment

Washing out some of the soil and damage to floor slabs

Reinforcement and local leveling of floor slabs

Reinforcement of foundation soils and stabilization of the foundation

Reinforcement of foundation soils and stabilization of the foundation

Uneven settlement of a building after a pipe break

Strengthening the soils of the base of the strip foundation

Draft of one of the corners of the building

Raising and leveling the foundation slab in the horizon

Ragged horizontal cracks began to appear and develop

Reinforcement of foundation soils and filling of voids

Insufficient bearing capacity of base soils

Reinforcement of base soils and leveling of the floor slab

The room sagged due to a weak soil base

Strengthening the base and leveling sagging structures

The back of the house began to sag. Cracks appeared on the walls and ceiling

Strengthening and lifting load-bearing structures quickly and safely

Lack of bearing capacity of the base

Securing soils under floors in places where racks are installed

A void has formed under the foundation slab

Reconstruction of the foundation slab support

The method of reinforcement proposed by the prescription did not suit the customer

Strengthening the base and vertical lifting of sagging structures

Uneven settlement of the floor slab and the foundation of the landing stage

Leveling the floor slab and lifting sagging foundation elements

Soil leaching and significant settlement of floors and foundations

Reinforcement of soils of the base of foundations, lifting and leveling the floor slab

Cracks in the walls with development in time

Reinforcement of foundation soils and lifting of structures

Some of the column foundations have undergone uneven settlement

Stopping uneven settlement of column foundations

Cracks in load-bearing walls

Repair and restoration work with soil and bearing structures

Deformations of barbecue area structures

Filling and leveling the foundation

Uneven settlement of load-bearing columns

Stopping sedimentary processes

Uneven settlement of foundations with deformations

Reinforcement of the foundation soils, recommendations for drainage are given

Progressive uneven settlement of the foundation with a heel

Strengthening the foundation soil and leveling the building

Insufficient bearing capacity of watered base soils

Increasing the bearing capacity of the base and foundations

Excessive uneven settlement of foundations

Reinforcement of the foundation and lifting of settled foundations

Drawdown of road maps of the ring road

Aligning the plane of the road while maintaining the "slope"

Local subsidence of the floor of the room

Reinforcement of base soils and leveling of the floor slab

Sagging corner of the house and a crack along the body of the foundation

Deformation stabilization

A void has formed under the foundation slab

Recreating the support of the foundation slab on the base

Building roll problem

Reinforcement of the base and alignment of the roll

Uneven draft on average 45 mm

Compaction of the base and return of structures to their previous level

Unstable foundation and settlement of load-bearing structures

Stopping the processes of settling foundations

Deformation of crane runways of the Crane-Stacker

Alignment of crane rails

Leakage of the retaining wall of the entrance to the underground garage

Compaction of soils and plugging of leaks in the retaining wall structure

Deflection of the floor slab and the appearance of cracks on load-bearing walls

Reinforcement, filling and leveling of floor slabs

Defects in overhead structures from frost heaving in soils

Strengthening the base soils with the elimination of heaving properties

Subsidence of the slab and the appearance of a longitudinal crack

Compaction of the soil with filling the gap under the slab

Uneven house draft during renovation

Providing support for foundations with alignment of structures

The foundation has settled with deformations reflected on the floor slabs

Stopping the processes of settling foundations and leveling the working surface of the floor slabs

Uneven settlement of foundations with cracking

Soil hardening at the base of foundations

Cracks in load-bearing walls both inside and outside the house

The load-bearing structures have been reinforced and raised to a predetermined level

Instability of floor slabs and local subsidence

Stabilization of base soils and leveling of floor slabs

Deformations in the masonry at the outer wall section

Strengthening the soil at the base of the foundation with its rise

Floor subsidence occurred inside the warehouse

Restoration of the design levels of the floor and shelving in the premises

Deformations and settlements of asphalt concrete pavement

Reinforcement of foundation soils to a depth of - 5.5m

Uneven settling of the floor slab

Stabilization and lifting of reinforced concrete floor slabs

Cracks in load-bearing walls and foundations

The base and foundations have been improved and strengthened

Deformation of reinforced concrete floor slabs under new equipment

Restoration of the bearing capacity of reinforced concrete floor slabs in places of deformation

Deformations in supporting structures

Soil stabilization of foundations

Uneven subsidence of the floor and the formation of voids under it

Restoration of the design level of the floor

The surface of the concrete highway began to crack and collapse

Filling of voids under slabs, restoration of bituminous insulation

Sagging corner and crack in the outer cladding

Consolidation and strengthening of soil at the base of foundations

Building faсade subsidence

Strengthening foundations and stopping subsidence of a part of the building

Deformations of the coating of some areas of the courts

Filling voids and leveling floor structures

Wall cracks and foundation subsidence

The base of the foundation is reinforced up to 10 times

Uneven draft and roll of buildings

Buildings have been re-aligned within tolerance

Subsoil does not have sufficient bearing capacity

Compaction and stabilization of foundation soils

All works using URETEK technology are carried out:
  • In the presence of the customer
  • On a local site without excavation and excavation
  • Without dismantling equipment and stopping technological processes
  • At any time of the day and in any weather conditions
  • Fast, silent, no waste or debris
  • Warranty obligations include not only the absence of subsidence and destruction, but also the return to the design position
Efficiency and effectiveness

Efficiency and effectiveness

5years

Extended minimum warranty terms

2-3
days

Fantastic productivity and speed

18sec

Quick material curing time

0,5mm

Accuracy at every stage of works

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