A load bearing brick with a compressive strength of 10Mpa having the d...
Maximum Load Capacity of a Load Bearing Brick
Introduction
A load bearing brick is a type of brick that is designed to carry the weight of a building, and is typically used in the construction of walls. The compressive strength of a brick is an important factor in determining its load bearing capacity.
Compressive Strength
The compressive strength of a brick is the amount of force required to crush it. It is measured in megapascals (MPa) which is a unit of pressure. A brick with a compressive strength of 10 MPa means that it can withstand a force of 10 million pascals before it breaks.
Dimensions of the Brick
The dimensions of the brick are also important in determining its load bearing capacity. The length, width, and height of the brick determine the surface area that it can support.
Calculation
To calculate the maximum load capacity of a load bearing brick, we use the following formula:
Maximum Load Capacity = Compressive Strength x Surface Area
The surface area of the brick can be calculated by multiplying its length, width, and height. For example, if the dimensions of the brick are 19cm x 9cm x 9cm, the surface area would be:
Surface Area = 19cm x 9cm x 9cm = 1539cm²
Using the compressive strength of 10 MPa, we can calculate the maximum load capacity of the brick using the formula:
Maximum Load Capacity = 10 MPa x 1539cm² = 15390 kN
Therefore, the maximum load capacity of the load bearing brick in this example is 15390 kilonewtons (kN).
Conclusion
The compressive strength and dimensions of a load bearing brick are important factors in determining its load bearing capacity. By calculating the maximum load capacity using the formula, builders can ensure that they are using the appropriate bricks for their construction projects.
A load bearing brick with a compressive strength of 10Mpa having the d...
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