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plate load test
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plate load test

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Plate Load Test is an essential method for determining the bearing capacity and settlement of soil. Learn more about the procedure, calculations, and importance of this test in civil engineering.

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SKU: Cvl-040 Categories: All Categories, Civil Engineering Tags: Advantages and limitations of plate load test, Bearing Capacity of Soil, Dial gauge for settlement measurement, ettlement of Soil, How to determine ultimate bearing capacity from plate load test, Mild steel test plates (300mm to 750mm), Plate Bearing Test, plate load test, Plate load test calculation formula, Plate load test for shallow foundation, Plate load test hydraulic jack, Plate load test procedure and apparatus, Reaction beam and truss method, Soil Investigation Test
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plate load test 50kn 

What is plate load test:

A. Definition & Objective

The plate load test is an in-situ field test conducted to determine the ultimate bearing capacity of soil and the probable settlement under a given load. It is primarily used for Shallow Foundation design.

  • Ultimate Bearing Capacity: The maximum load the soil can handle before shear failure.

  • Allowable Settlement: Ensuring the structure doesn’t sink beyond safety limits.

B. Apparatus & Equipment

  • Test Plates: Square or circular mild steel plates (thickness ≥25 mm), sizes ranging from 300 mm to 750 mm.

  • Loading Gear: Hydraulic jack, pressure gauge, and a reaction beam or loaded platform (Truss/Sandbags).

  • Settlement Recording: At least two Dial Gauges with a sensitivity of 0.01 mm placed on a reference beam.

C. Testing Procedure (Step-by-Step)

  1. Excavation: A pit is dug to the proposed foundation level. The bottom must be perfectly leveled.

  2. Placement: The plate load test centrally. The hydraulic jack is positioned between the plate and the reaction beam.

  3. Seating Load: A small initial load (approx. 70 g/cm2) is applied to seat the plate properly.

  4. Loading Increments: Load is applied in increments (usually 1/5th of the estimated ultimate load).

  5. Observation: Settlement is recorded via dial gauges. Readings are taken at 1,4,10,20,40,… and 60 minutes.

  6. Termination: The test continues until the load reaches 1.5 times the estimated ultimate load or settlement exceeds 25 mm.

D. Limitations to Consider

  • Depth Influence: The test only reflects the characteristics of the soil at a depth of about twice the plate width (2B). It may miss weaker strata deeper down.

  • Scale Effect: Results from a small plate (300 mm) may differ significantly from a large foundation (3 m).

  • Time Factor: It is a short-term test; it cannot accurately predict long-term Consolidation Settlement in cohesive (clayey) soils.


4. Key Calculation Formulas

The relationship between the settlement of the plate (Sp​) and the foundation (Sf​) depends on the soil type:

Soil Type Settlement Formula
Clayey Soil
Sf​=Sp​×(Bp​Bf​​)
Sandy Soil
Sf​=Sp​×[Bp​×(Bf​+0.3)Bf​×(Bp​+0.3)​]2

 

Ktcdhaka of plate load test:

We always try to sell civil technical ktcdhaka of plate load test product and always flexible with customer we try to do business nicely.

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