Hydraulic material testing machine TTM up to 5000 kN from Walter+Bai is designed to perform very high-load mechanical testing. This machine is designed to withstand even extreme load levels, and its servo-hydraulic system ensures a highly accurate testing process on a wide range of materials, including metals, steel, concrete, composites and other high-strength components.
Main features of the TTM series:
- High load range: The machine is capable of precisely handling loads up to 5000 kN, ensuring high accuracy even at maximum load levels.
- Servo-hydraulic system: Provides high accuracy and reliability, especially in very high load tests.
- Modular design: TTM series machines can be configured to individual requirements, including options for grippers, load cells and control systems.
- Digital control system: The easy-to-use digital control interface allows for simple control of test parameters and real-time test results.
- Wide range of testing: Tensile, compression, bending, hardness and other tests can be performed for a variety of industries, including construction, aviation, automotive and metallurgical.
Technical specifications:
Specification | Value |
---|---|
Maximum force | Up to 5000 kN |
Test types | Stretching, compression, bending |
Power accuracy | ± 1 % |
Speed range | 0.001 – 200 mm/min |
Workflow | Depends on configuration |
Management system | Servo-hydraulic with digital control interface |
Software support | Windows-based data analysis software |
Accessories | Grippers, strain gauges, load cells |
Dimensions and weight | Depends on the selected configuration |
Areas of use:
- Construction industry: Testing of concrete and steel elements
- Aviation industry: Testing of high-strength composites
- Automotive industry: Metal and structural component testing
- Metalworking industry: Mechanical testing of heavy-duty steels and other metals
TTM series is designed for intensive industrial and research activities where it is necessary to ensure the inspection of high-load materials. The machine design allows for efficient and precise control of testing processes, while ensuring durability and reliability under the highest loads.