Showing 193–204 of 511 results

GILLMORE NEEDLE APPARATUS AZA0790

  • Used to determine initial and final setting time of cement
  • Complies with ASTM C266 standards
  • Consists of two needles and a support frame
  • Durable brass and stainless-steel construction
  • Precision machined weights for accurate results
  • Ideal for construction and materials testing labs

GLOSS METER – SINGLE ANGLE MODELS AZA1298

The AZA1298 Single Angle Gloss Meter from AZA LAB is a compact, high-precision surface gloss measurement instrument designed for accurate, repeatable, and standardized evaluation of surface reflectivity across laboratory, production, inspection, and field environments.

Using a fixed-angle optical geometry, the AZA1298 measures surface gloss in Gloss Units (GU) with excellent repeatability and optical accuracy, making it ideal for quality control, product development, coating verification, and surface finish inspection.

GLOSS METER – TRIPLE ANGLE MODELS AZA1298A

The AZA1298A Triple Angle Gloss Meter from AZA LAB is a high-precision surface gloss measurement instrument designed for professional quality control, laboratory testing, production inspection, and standards-compliant surface evaluation.

The instrument measures gloss simultaneously at the three internationally recognized geometries:

  • 20°
  • 60°
  • 85°

allowing accurate assessment of high-gloss, semi-gloss, satin, and matte surfaces using a single compact handheld device.

Engineered for industrial, laboratory, and field applications, the AZA1298A delivers highly repeatable and reliable gloss measurements in Gloss Units (GU) while supporting haze and DOI (Distinctness of Image) analysis for advanced surface characterization.

Its advanced optical system, integrated data storage, USB connectivity, and ergonomic portable design make it ideal for paints, coatings, automotive, plastics, furniture, packaging, ceramics, flooring, and industrial finishing industries.

GPS SYSTEM AZA1039

AZA1039 GPS System (Professional GNSS Surveying Receiver)

The AZA1039 GPS System from Azalab is a high-performance, field-grade GNSS positioning solution engineered for land surveying, GIS mapping, construction layout, and geospatial data collection. Designed to deliver reliable accuracy in challenging environments, this system combines multi-constellation satellite tracking, real-time corrections, and rugged field durability.


Advanced Multi-Constellation GNSS Accuracy

Modern surveying demands precision beyond consumer-grade navigation devices. The AZA1039 utilizes multi-band GNSS technology, tracking multiple satellite constellations simultaneously, including:

  • GPS

  • GLONASS

  • Galileo

  • BeiDou

This ensures faster signal acquisition, higher positional reliability, and improved performance under tree canopy, near buildings, and in difficult terrain. When paired with RTK (Real-Time Kinematic) corrections, the system delivers centimeter-level accuracy, making it suitable for high-precision professional work.

GRADUATED MEASURING JARS AZA1047

AZA1047 Graduated Measuring Jars from AZA LAB (Azalab) are precision-designed containers used for accurate measurement, handling, and transfer of liquid volumes in laboratory, industrial, construction, educational, and kitchen environments. Engineered for durability and clarity, these jars deliver reliable and repeatable measurements where accuracy is critical.

Manufactured from high-quality polypropylene (PP), polycarbonate (PC), ordinary glass, borosilicate glass, or soda glass, the jars offer excellent chemical resistance and thermal stability, making them suitable for use with acids, alkalis, solvents, water, oils, and hot liquids, depending on material selection.

GRAIN SIZE ANALYSIS (PIPETTE METHOD) AZA0856

The AZA0856 Grain Size Analysis (Pipette Method) Apparatus from AZA Lab is a precision testing setup used for determining the distribution of fine soil particles such as silt and clay. It is widely used in geotechnical engineering, civil construction quality control, soil mechanics research, and academic laboratories, particularly where conventional sieve analysis is ineffective for particles finer than 75 microns. This apparatus is designed for the mechanical analysis of sub-sieve soil particles, expressing quantitatively the proportion by weight of various particle sizes present in a soil sample. The pipette method, based on sedimentation principles and Stokes’ Law, provides accurate and repeatable results for fine-grained soils. The system consists of a sliding vertical panel operated by a precision screw mechanism, allowing an Anderson pipette to be raised or lowered accurately. A sedimentation tube is held securely below the pipette using a laboratory clamp. The depth of immersion is measured using a millimeter-graduated scale mounted alongside the sliding panel. The apparatus is supplied complete with a 10 ml Anderson pipette, a 500 ml glass sedimentation tube, and test form pads, conforming to standard laboratory practices.

GRID SIEVES AZA0972

The AZA0972 Grid Sieves are heavy-duty screening tools designed for rapid particle size classification of coarse soils and aggregates. These sieves are ideal for quick, visual separation of gravel, crushed stone, and coarse sands in civil engineering, geotechnical, and construction materials laboratories. Their rugged construction makes them suitable for both laboratory and field applications.

Key Features

  • Designed for fast classification of coarse particles

  • Suitable for soil and aggregate testing

  • Heavy-duty stainless steel / galvanized steel construction

  • Precision-welded square or rectangular grid openings

  • Corrosion-resistant, abrasion-resistant long life design

  • Compatible with standard manual and mechanical sieve shakers

GROUT SAMPLE BOX AZA1161

The Grout Sample Box from Azalab is a practical, cost-efficient solution for preparing grout prisms in accordance with industry-recognized standards. Engineered for reliability and ease of use, it serves as a superior alternative to traditional steel prism molds, offering faster preparation and consistent specimen quality in both field and laboratory conditions.

Designed to fully comply with ASTM C-1019 and UBC 21-18, the sample box enables technicians to produce grout samples that accurately replicate the moisture absorption behavior of CMU units. Its engineered slotted corrugated construction promotes appropriate water retention, supporting uniform curing and improving the validity of compressive strength test results.

Each box forms four grout specimens, precisely sized at 6.25 mm × 81.5 mm × 162.5 mm, eliminating the need for bulky molds or time-consuming cleaning. Lightweight, disposable, and stackable, these boxes streamline the entire sampling process, especially in high-volume QA/QC programs.

GUM CONTENT TESTER AZA1317

The AZA1317 Gum Content Tester from AZA Lab is a precision laboratory instrument designed to determine the existent gum content in aviation gasoline and motor gasoline. Existent gum testing is critical for evaluating fuel cleanliness, storage stability, and combustion performance, helping prevent injector fouling, valve deposits, and engine performance degradation.

Note: This instrument is not suitable for aviation turbine fuel testing.

With accurate temperature control, efficient evaporation, and multi-sample capability, the AZA1317 is ideal for fuel testing laboratories, refineries, inspection agencies, and quality control departments.

GUN FOR MOULD AZA1129

The Azalab Mould Ejection Gun (AZA1129) is engineered for fast, clean, and damage-free ejection of concrete specimens from polyurethane (PU) and ABS moulds. Designed for both laboratory and field environments, this tool connects directly to a standard compressed air or water pressure line, allowing controlled pressure to release specimens effortlessly. Compatible with cube, cylinder, and beam moulds, the AZA1129 ensures uniform force application, eliminating specimen cracks and extending mould life. The ergonomic, rust-resistant design makes it suitable for repetitive, long-duration testing operations.

Key Features

  • Designed to eject specimens from PU and ABS concrete moulds
  • Connects to compressed air or water pressure line
  • Enables clean, fast, and damage-free demoulding
  • Compatible with cube, beam, and cylindrical moulds
  • Lightweight, reusable, and corrosion-resistant construction
  • Ideal for laboratory and site testing applications

HAND OPERATED FLEXURAL TESTING MACHINE 250 KN AZA1136

The Azalab AZA1136 Hand Operated Flexural Testing Machine (250 kN) is a robust, precision-built system designed for the accurate determination of flexural strength in concrete beams. It is ideal for construction sites, material testing laboratories, RMC plants, government QC facilities, and academic institutions. With its manually operated hydraulic system, durable steel frame, and reliable bourdon-type gauge, this machine ensures accurate and repeatable flexural strength measurements while operating independently of electrical power. The unit incorporates a heavy-duty lead screw for daylight adjustment, enabling smooth accommodation of various beam sizes. Its retraction spring assures quick piston return, improving testing efficiency. Key Features
  • Hand-operated flexural testing machine – 250 kN frame strength
  • Ideal for 100×100×500 mm and 150×150×700 mm concrete beams
  • Load range: 0–100 kN with 0.5 kN least count
  • Manual hydraulic operation with lead screw adjustment
  • Complies with IS 516, BS 1881, ASTM C78
  • Large 200 mm bourdon-type pressure gauge
  • Lightweight, portable, and easy to operate
  • Built-in retraction spring for automatic piston reset
  • Available exclusively from Azalab

HARDNESS TESTER FOR MASTIC ASPHALT AZA0942

The AZA0942 Hardness Tester for Mastic Asphalt from Azalab is a precision-engineered instrument designed for the determination of penetration hardness of mastic asphalt. This essential testing device is widely used in civil engineering laboratories, road construction projects, and quality control departments to evaluate the consistency, stiffness, and workability of mastic asphalt mixtures.

Accurate hardness measurement ensures that mastic asphalt complies with project specifications and delivers long-term pavement durability, deformation resistance, and performance reliability.