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.
Though concrete is prone to cracking, unfortunately, concrete that is free from cracking is not available. Temperature and moisture changes cause the concrete to expand resulting in cracking. Cracks may not be discovered once they develop in the substructure even after a long time. The owner of a building should be concerned about the emerging cracks regardless of when they were formed. Mostly, cracks tend to form at weak points such as walls, corners, and pipes of the substructures.
Additionally, cracks can form on buildings irrespective of how old the structure is. Some people think that new buildings are stronger and less prone to cracking. However, any problem, for instance, sagging on a building could result into a crevice despite the age of a building. Cracking highly compromises a building and if the cause of the cracking is not addressed, the building continually becomes weaker.
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.
Another factor that causes the cracks to form in the understructure is earthquakes. The occurrence of an earthquake results in shaking the ground leading to trembling of the structure. Unstable substructure makes it move around becoming weaker resulting in cracking. However, minor earthquakes are unlikely to cause new cracks but end up deepening the existing cracks in the building.
Another significant factor leading to cracking of a building substructure is a pipe leak or flooding. Water leaks and floods lead to soil expansion, which exerts pressure against the understructure. As a result, there is extreme pressure on the understructure causing more leakage and further cracks.
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.
Nonetheless, the building owner should not worry regarding cracks that have formed as a result of flooding and excessive moisture because they can be prevented using basement waterproofing techniques. Also, one can use epoxy injections to repair the cracks.
Though concrete is prone to cracking, unfortunately, concrete that is free from cracking is not available. Temperature and moisture changes cause the concrete to expand resulting in cracking. Cracks may not be discovered once they develop in the substructure even after a long time. The owner of a building should be concerned about the emerging cracks regardless of when they were formed. Mostly, cracks tend to form at weak points such as walls, corners, and pipes of the substructures.
Additionally, cracks can form on buildings irrespective of how old the structure is. Some people think that new buildings are stronger and less prone to cracking. However, any problem, for instance, sagging on a building could result into a crevice despite the age of a building. Cracking highly compromises a building and if the cause of the cracking is not addressed, the building continually becomes weaker.
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.
Another factor that causes the cracks to form in the understructure is earthquakes. The occurrence of an earthquake results in shaking the ground leading to trembling of the structure. Unstable substructure makes it move around becoming weaker resulting in cracking. However, minor earthquakes are unlikely to cause new cracks but end up deepening the existing cracks in the building.
Another significant factor leading to cracking of a building substructure is a pipe leak or flooding. Water leaks and floods lead to soil expansion, which exerts pressure against the understructure. As a result, there is extreme pressure on the understructure causing more leakage and further cracks.
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.
Nonetheless, the building owner should not worry regarding cracks that have formed as a result of flooding and excessive moisture because they can be prevented using basement waterproofing techniques. Also, one can use epoxy injections to repair the cracks.
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