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BEEN 3160 Laboratory 1 Mechanical Sieve Analysis Specific Gravity of Soil Solids INTRODUCTION Grain size analysis is widely used for the classification of soils and for specifications of soil for
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How to fill out mechanical sieve analysis

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How to fill out mechanical sieve analysis:

01
Gather the necessary equipment and materials. This includes a mechanical sieve shaker, a set of standardized sieves, a sample of the material to be analyzed, and a pan to collect the sieved material.
02
Start by weighing the empty pan and record the weight. This will be used later to determine the weight of the retained material.
03
Next, ensure that the mechanical sieve shaker is clean and properly calibrated. Follow the manufacturer's instructions for setting up the shaker and adjusting the sieve motion.
04
Place the appropriate sieve size on top of the mechanical sieve shaker. The sieve size chosen will depend on the desired analysis and the material being tested. Make sure that the sieve is securely fastened to the shaker.
05
Carefully pour a representative sample of the material onto the top sieve. The amount of material used will depend on the required analysis and the size of the sieves. Ensure that the material is evenly distributed across the sieve.
06
Turn on the mechanical sieve shaker and let it run for a predetermined period of time. The length of time will depend on the specific analysis being performed. This motion will help to separate the material by size.
07
After the sieving process is complete, carefully remove the sieves from the shaker. Tap the sieves gently to ensure that all of the material has passed through.
08
Carefully weigh each sieve containing the retained material. Record the weight of each sieve along with the sieve mesh size. This information will be used to calculate the particle size distribution.
09
Calculate and record the weight percentage of each sieve fraction. This can be done by dividing the weight of each sieve by the total weight of the retained material.
10
Repeat the process for each desired sieve size until all of the material has been analyzed.

Who needs mechanical sieve analysis:

01
Geotechnical engineers: Mechanical sieve analysis is commonly used in geotechnical engineering to determine the particle size distribution of soils. This information is crucial in assessing the engineering properties of soils and designing foundations, embankments, and other structures.
02
Materials scientists: Mechanical sieve analysis is also utilized in the field of materials science to characterize granular materials and powders. By determining the particle size distribution, researchers can understand the behavior and performance of various materials in different applications.
03
Quality control professionals: Industries such as construction, mining, and pharmaceuticals often employ mechanical sieve analysis as part of their quality control processes. By monitoring the particle size distribution, companies can ensure the consistency and quality of their products.
In conclusion, mechanical sieve analysis is a valuable technique for determining the particle size distribution of materials. By following the steps outlined above, practitioners from various fields can effectively fill out a mechanical sieve analysis and obtain meaningful data for their respective applications.
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Mechanical sieve analysis is a method used to determine the particle size distribution of a sample of material by passing it through a series of sieves with progressively smaller openings.
Organizations involved in construction, mining, and materials testing may be required to file mechanical sieve analysis depending on regulations and project specifications.
Mechanical sieve analysis is filled out by conducting the test on the sample material, recording the results, and reporting the particle size distribution in a specified format.
The purpose of mechanical sieve analysis is to determine the gradation of a sample material, which is important for construction and engineering applications.
The information reported on mechanical sieve analysis typically includes the sample material, test results, sieve sizes used, and the particle size distribution data.
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