Although buildings are designed to be resilient to many factors, eventually they tend to wear down. As people show signs of old age through wrinkles, buildings show it through cracks and imperfections. Results of poor construction, the weight of the structure and the pressure surrounding the building appear to be taken by the foundation. But before it becomes too late, perform foundation crack repair Atlanta and prevent massive losses that may arise as the cracks get bigger.
As a matter of fact, concrete has the disposition to break unfortunately, there is no crack-free concrete. As temperature and moisture changes concrete expands and shrinks causing it to crack. Usually, when the cracks form on the understructure, they are not easily detected until long enough. Irrespective of when the cracks formed, it is a concern for the owner of a house. In most cases, cracks at the substructure form on the weak points such as corners, pipe areas, and walls.
Cracks appear in both old and newly erected buildings. There is an illusion that a new building substructure is resilient to cracking. Nonetheless, irrespective of the age of the building, any defect in the substructure, for instance, sagging, exposes it to cracking. The integrity of any building is significantly compromised by cracking. Failure to address pressure that result in cracking increases strain on the vulnerable building.
Numerous factors can cause cracks at the substructure of the structure. For instance, too much or too little moisture in the soil can result in cracks. When moisture is removed from the soil, the soil shrinks and pulls away from the substructure of the building creating a gap. The gap gives the substructure an allowance to move. As the shifting around happens, cracks begin to form.
Earthquakes are among the common factors that lead to cracking of the foundations of buildings. Despite the magnitude of an earthquake, the effects of shaking and rolling the ground result in the movement of a building substructure. As a result in the movements, unstable foundations become weaker and end up cracking. Besides, lesser magnitude earthquakes may not cause new crevices but often deepen the existing gaps.
Flooding and plumbing leakages can be disastrous. Excessive water causes soil expansion which in turn makes it push on the foundation. Moreover, exerting a lot of hydrostatic pressure to the understructure exposes more cracks and leaks.
Even before a big cracks appears there will be some warning signs. Although the sign might not mean cracks in the foundation, they should raise an alarm that some changes are taking place. For instance, a door starts to jam, cracks on the walls of the windows and doorway. Also, cracks in the ceramic tile on a concrete floor and windows that opened with ease suddenly stop closing completely. With such signs, you should be more alert to monitor the progress. All the cracks detected should be checked on regular basis.
The good news is that cracks due to flooding and too much moisture can be prevented through basement waterproofing methods. Besides, it is possible to repair the cracks that form at the understructure with epoxy injections.
As a matter of fact, concrete has the disposition to break unfortunately, there is no crack-free concrete. As temperature and moisture changes concrete expands and shrinks causing it to crack. Usually, when the cracks form on the understructure, they are not easily detected until long enough. Irrespective of when the cracks formed, it is a concern for the owner of a house. In most cases, cracks at the substructure form on the weak points such as corners, pipe areas, and walls.
Cracks appear in both old and newly erected buildings. There is an illusion that a new building substructure is resilient to cracking. Nonetheless, irrespective of the age of the building, any defect in the substructure, for instance, sagging, exposes it to cracking. The integrity of any building is significantly compromised by cracking. Failure to address pressure that result in cracking increases strain on the vulnerable building.
Numerous factors can cause cracks at the substructure of the structure. For instance, too much or too little moisture in the soil can result in cracks. When moisture is removed from the soil, the soil shrinks and pulls away from the substructure of the building creating a gap. The gap gives the substructure an allowance to move. As the shifting around happens, cracks begin to form.
Earthquakes are among the common factors that lead to cracking of the foundations of buildings. Despite the magnitude of an earthquake, the effects of shaking and rolling the ground result in the movement of a building substructure. As a result in the movements, unstable foundations become weaker and end up cracking. Besides, lesser magnitude earthquakes may not cause new crevices but often deepen the existing gaps.
Flooding and plumbing leakages can be disastrous. Excessive water causes soil expansion which in turn makes it push on the foundation. Moreover, exerting a lot of hydrostatic pressure to the understructure exposes more cracks and leaks.
Even before a big cracks appears there will be some warning signs. Although the sign might not mean cracks in the foundation, they should raise an alarm that some changes are taking place. For instance, a door starts to jam, cracks on the walls of the windows and doorway. Also, cracks in the ceramic tile on a concrete floor and windows that opened with ease suddenly stop closing completely. With such signs, you should be more alert to monitor the progress. All the cracks detected should be checked on regular basis.
The good news is that cracks due to flooding and too much moisture can be prevented through basement waterproofing methods. Besides, it is possible to repair the cracks that form at the understructure with epoxy injections.
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