The Six-Degree-of-Freedom (6-DOF) Electromagnetic Vibration Test System is a cutting-edge technology designed to simulate complex vibration environments experienced by products or structures during re ...
The Six-Degree-of-Freedom (6-DOF) Electromagnetic Vibration Test System is a cutting-edge technology designed to simulate complex vibration environments experienced by products or structures during real-world conditions, including transportation, operation, or extreme weather events. Unlike traditional vibration testing systems that typically operate in one or two directions (such as vertical or horizontal), the 6-DOF system is capable of reproducing simultaneous vibrations across all three translational and three rotational axes, providing a comprehensive testing solution for more accurate and realistic simulations.
Multi-Axis Vibration Testing:
The 6-DOF system uses an advanced electromagnetic actuator setup to apply forces in all six degrees of freedom—three linear (X, Y, Z) and three angular (pitch, roll, yaw). This ability to generate multi-directional vibrations simultaneously makes it ideal for testing complex products, systems, and components that may undergo unpredictable movements during real-world applications.
The electromagnetic design allows for fine-tuned control over vibration parameters. Operators can adjust frequency, amplitude, and force across different axes with high precision. This flexibility is crucial for testing a wide range of products, from small electronic devices to large aerospace components, under various vibration profiles.
The 6-DOF vibration system accurately replicates the dynamic environments that products encounter during transportation, operation, and testing. Whether it’s simulating the vibrations of a car in motion, the shaking of an aircraft during flight, or the stresses of a shipping container, this system delivers highly realistic and repeatable results that reflect true operational conditions.
Unlike traditional mechanical vibration systems, which rely on physical contact between components, the electromagnetic actuators in a 6-DOF system create vibrations through non-contact forces. This results in reduced wear and tear, lower maintenance costs, and improved system longevity, allowing for longer and more consistent testing cycles.
Advanced sensors and monitoring equipment integrated into the system allow for real-time data collection during testing. Vibration profiles, stress points, and potential failure modes can be tracked and analyzed to gain deeper insights into a product’s behavior under stress. This helps engineers identify vulnerabilities, refine designs, and improve product durability.
The 6-DOF Electromagnetic Vibration Test System is used across various industries, including aerospace, automotive, electronics, telecommunications, and defense. It is especially valuable in sectors where products must withstand complex dynamic forces, such as spacecraft components, automotive assemblies, consumer electronics, and military equipment.
Item | Specification |
Machine dimension | 500*500mm |
Max. Loading | 0~10kg |
Vibration direction | Up and down; right and left; front and back (switch automatically) |
Amplitude | 0~5mm (random) |
Sweep frequency | 1—600Hz (adjustable; can be customized to 3000Hz) |
Maximum acceleration | 10G |
Function | frequency adjustable; programmable; time control |
Accuracy | 0.1Hz |
Programmable function | 1~600Hz Group 1 – 8 can set different frequency and time, cyclic |
Vibration waveform | Sine wave (half wave / full wave) |
Time control | Adjustable, unit: seconds |
Output | To connect U Flash Dish for output curve graph |
Power | 220V; 50Hz; 0.75KW |
Test Method | the frequency of 10-55Hz, the amplitude of 0.35mm, each direction of the frequency sweep cycle for 10 times. After testing the electrical performance OK |