SAND POURING CYLINDER AZA0880
The AZA0880 BS Standard Sand Pouring Cylinder from Azalab is a professional-grade field testing apparatus designed for accurate determination of in-situ soil density using the Sand Replacement Method, in full accordance with BS 1377-9. It is especially suited for coarse-grained and granular soils where alternative methods such as the core cutter test are not applicable or reliable.
This apparatus is widely used in roadworks, embankments, pavement layers, foundation backfills, and general earthwork compaction control, providing dependable field results for quality assurance and compliance verification.
Description
Purpose & Principle
The AZA0880 determines the volume of an excavated test pit by filling it with dry, standardized sand of known density. By correlating the mass of sand used with its calibrated density, the pit volume is calculated. Combined with the mass and moisture content of the excavated soil, the in-situ bulk and dry density of the soil are accurately determined.
This method is particularly effective for coarse soils with large particles, uneven gradation, or gravel content.
Available Cylinder Sizes
| Diameter | Typical Application |
|---|---|
| 100 mm | Standard small pit field testing |
| 150 mm | Medium-volume compaction and QA/QC tests |
| 200 mm | Large pits, deeper layers, heavy compaction works |
All sizes are manufactured to BS precision tolerances, ensuring consistent and repeatable results.
Standard Compliance
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BS 1377-9 – Methods of test for soils: In-situ density tests
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Designed for British and international site testing protocols
What’s Included
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Sand Pouring Cylinder (100 mm / 150 mm / 200 mm diameter – as selected)
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Integrated metal funnel with brass shutter
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Steel base tray with central hole for pit alignment
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Optional lockable storage / transport case
Applications
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Field density determination of coarse and granular soils
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Road and pavement construction quality control
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Embankments and earthworks compaction verification
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Bridge and foundation backfill testing
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QA/QC field inspections in civil engineering projects
Method of Use (Summary)
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Place the steel tray on level ground
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Excavate the test pit through the central opening
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Weigh excavated soil and determine moisture content
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Position the sand pouring cylinder centrally on the tray
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Open the brass shutter to fill the pit with standard sand
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Weigh the sand used to calculate pit volume
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Compute bulk and dry density of soil
Technical Specifications
Model Number: AZA0880
Apparatus Type: BS Standard Sand Pouring Cylinder
Test Method: Sand Replacement Method
Standard Compliance: BS 1377-9
Cylinder Diameters:
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100 mm
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150 mm
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200 mm
Approximate Capacity:
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3 L to 6 L (depending on diameter)
Material:
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Mild Steel / Aluminum
Shutter Mechanism:
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Brass, leak-proof, manually operated
Tray Size:
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Approx. 300 × 300 mm with central opening
Surface Finish:
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Powder-coated or galvanized, rust-resistant
Key Features
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Manufactured strictly as per BS 1377-9
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Suitable for coarse and granular soils
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Brass shutter ensures smooth, controlled sand flow
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Multiple diameters for varied site conditions
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Robust construction for repeated field use
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High accuracy and repeatability
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Backed by Azalab quality engineering
Frequently Asked Questions (FAQ)
Q1: Are the cylinders certified to BS 1377-9?
Yes. All AZA0880 units are manufactured in accordance with BS 1377-9 requirements.
Q2: How do I select the correct diameter?
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100 mm: Standard field tests
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150 mm: Heavier or coarser soil conditions
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200 mm: Large pits and deep compaction layers
Q3: Is calibration required before use?
Yes. Each cylinder must be calibrated with standard sand before field testing.
Q4: Can all three sizes be supplied as a kit?
Yes. A combo kit containing 100 mm, 150 mm, and 200 mm cylinders is available on request.
Q5: Is the shutter durable for long-term use?
Yes. The brass shutter is designed for smooth, leak-free operation under repeated field conditions.
AZA0880 – BS Standard Sand Pouring Cylinder
A dependable, BS-compliant solution for accurate in-situ soil density testing in demanding civil engineering environments.
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