Concrete Pipe Tester
- ASTM Standard-Compression Machines
- Flexural Testing Machine
- Combined Frame
- Elastic Modulus Determination
- Accessories and Spares for Compression and Flexrual Machine
- Concrete Pipe Tester
- Concrete Specimens Preparartion
- Compaction of Concrete
- Core Drilling Machine
- Curing Tanks/Rooms for Concrete Specimens
- Mixers for Concrete
- Moulds for Concrete Specimens
- SCC Testing Apparatus
- Workability and Consistency for Fresh Concrete
- Air Entrainment Meter
- Water Permeability Testers
- NDT
- Ultransonic Pulse Velocity Tester
- ASTM Standard-Compression Machines
- Flexural Testing Machine
- Combined Frame
- Elastic Modulus Determination
- Accessories and Spares for Compression and Flexrual Machine
- Concrete Pipe Tester
- Concrete Specimens Preparartion
- Compaction of Concrete
- Core Drilling Machine
- Curing Tanks/Rooms for Concrete Specimens
- Mixers for Concrete
- Moulds for Concrete Specimens
- SCC Testing Apparatus
- Workability and Consistency for Fresh Concrete
- Air Entrainment Meter
- Water Permeability Testers
- NDT
- Ultransonic Pulse Velocity Tester
Concrete Pipe Tester
Product Code
KBL
Concrete Pipe Tester
Standards
ASTM C497
Concrete Pipe Testing Machines are specialized machines that assess the strength and durability of concrete pipes, which are critical components in infrastructure projects such as sewage and water supply systems. These devices apply varied loads and pressures on the pipes to imitate real-world circumstances and evaluate their performance under stress.
These devices assist ensure that concrete pipes fulfill industry safety, quality, and durability requirements by assessing criteria such as the pipe's capacity to endure internal pressure without leaking or its resistance to crushing pressures.
The findings of these tests are crucial for engineers and manufacturers to make educated decisions about the design, production, and selection of concrete pipes for building projects.
Concrete pipe testing equipment are made up of a frame and a hydraulic power pack. The frame consists of two additional stiff columns and a carrying chassis. The top beam features a double-acting actuator.The actuator has an anti-rotation device to inhibit the actuator's natural propensity to rotate. A load cell is utilized for accurate load measurement and closed-loop control.
Upper beam height pre-adjustment is performed using a hydraulic piston, allowing the load piston to operate within higher stroke limitations. Locking pins are used to manually secure the top beam to the columns.