Thí nghiệm Osterberg

What we did

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 Successful load testing in the project: bridge Vinh Tuy, building Keangnam… using the O-cell requires precision monitoring of numerous test parameters.
These include concrete strain using strain gages, compression using telltale rods, shaft movement using displacement transducers and load, by way of hydraulic pump pressure monitoring using pressure transducers.
We will continue to develop this technology in our projects in the future.

General Information

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The award winning Osterberg Cell, or "O-Cell', gets its name from the inventor, Dr. Jorj O. Osterberg. The O-cell is a hydraulically driven, high capacity, sacrificial loading device installed within the foundation unit. Working in two directions, upward against side-shear and downward against end-bearing, the O-cell automatically separates the resistance parameters. By virtue of its installation within the foundation member, the Osterberg Cell load test is not restricted by overhead structural beams and tie-down piles. Instead, the O-cell derives all reaction from the soil and/or rock system. End bearing provides reaction for the skin friction portion of the O-cell load test, and skin friction provides reaction for the end bearing portion of the test. Load testing with the O-cell continues until one of three things occurs: ultimate skin friction capacity is reached, ultimate end bearing capacity is reached, or the maximum O-cell capacity is reached.

Each Osterberg Cell is specially instrumented to allow for direct measurement of the expansion so with compression and top of pile shaft measurements the downward end bearing movement and the upward skin friction movement are known. O-cells range in capacities from 0.7 MN to 27 MN. By using multiple O-cells on a single horizontal plane, the available test capacity can be increased to more than 200 MN. By utilizing multiple O-cells on different planes, distinct elements within a shaft or pile can be isolated for testing. Using the O-cell, LOADTEST, Inc. has elevated the application of deep foundation load testing, from expensive time consuming small scale field tests, to state-of-the-art short duration full scale load testing of production shafts and piles.

 

 



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