G series high frequency fatigue testing machine
Inquire NowDescription
The G series high frequency fatigue testing machine is an innovative electromagnetic excitation resonance type equipment designed to evaluate the anti-fatigue fracture performance of various metal materials and components. Utilizing advanced technology such as a digital pulse width modulator and intelligent force amplifier, this machine ensures precise operation with features like real-time display of experimental waveforms, average load values, alternating load peak values, resonant frequency, and cycle counts. Its intelligent air gap structure allows for easy initiation of vibrations, while excellent alignment and coaxiality minimize lateral forces, ensuring accurate results.
With a concise structure that simplifies operation, the G series machine eliminates the need for cooling water or hydraulic oil, making it a low-energy and highly efficient solution for fatigue testing. It is capable of conducting a variety of tests including symmetrical and asymmetrical fatigue tests, unidirectional pulsating fatigue tests, block spectrum fatigue tests, and modulation control fatigue tests. This versatility makes it ideal for applications in the automotive and aerospace industries, as well as in universities, scientific research institutes, quality inspection agencies, metallurgy, and new material R&D.
Specifications
Feature | Description |
---|---|
Type | Electromagnetic Excitation Resonance Fatigue Testing Machine |
Testing Capability | Fatigue life and fatigue limit testing of various materials |
Applications | Automotive, Aerospace, Universities, Scientific Research, Quality Inspection, Metallurgy, R&D |
Energy Consumption | Low |
Operation | No need for cooling water or hydraulic oil |
Testing Methods | Symmetrical, Asymmetrical, Unidirectional Pulsating, Block Spectrum, Modulation Control |
Additional Information
For optimal performance, ensure that the machine is calibrated regularly and maintained according to the manufacturer’s guidelines. Proper setup and operation can significantly enhance the accuracy of test results.