Simple models representing a shaker and a test object are used to illustrate changes in test object response due to shaker dynamics and differences between the test and service environment. The degree of coupling is quantified in terms of ratios of the natural frequencies and the masses. Regions of overstress can depend on reproducing absolute rather than relative motion in a test. Shaker tests reprodusing output spectra observed in service, when shakerlji.xture impedance is higher than the impedance in service, is shown to cause overtest at frequencies below natural frequencies of the service environment
A shaker can be used to simulate launch vibrations and check responses of structures forced at diffe...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...
The increase in computing resources makes simulation methods more affordable. The processing speed a...
The increase in computing resources makes simulation methods more affordable. The processing speed a...
Shaker testing is utilized in the development of many experimental modal tests. The setup of the sha...
In spacecraft engineering, environmental testing is crucial to demonstrate the spacecraft’s integrit...
Introduction. When non-linear systems are tested dynamically they are usually excited by a shaker sy...
Motivation: For large system level random vibration tests, there may be some concerns about the shak...
Controlled amplitude and phase relationships between multiaxial shaker inputs (i.e., spatial shaping...
In the field of vibration testing, the interaction between the structure being tested and the instru...
In the field of vibration testing, the interaction between the structure being tested and the instru...
AbstractDuring high level vibration test on a high mass specimen, the test engineer is often facing ...
In the field of vibration testing, the interaction between the structure being tested and the instru...
A shaker can be used to simulate launch vibrations and check responses of structures forced at diffe...
A shaker can be used to simulate launch vibrations and check responses of structures forced at diffe...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...
The increase in computing resources makes simulation methods more affordable. The processing speed a...
The increase in computing resources makes simulation methods more affordable. The processing speed a...
Shaker testing is utilized in the development of many experimental modal tests. The setup of the sha...
In spacecraft engineering, environmental testing is crucial to demonstrate the spacecraft’s integrit...
Introduction. When non-linear systems are tested dynamically they are usually excited by a shaker sy...
Motivation: For large system level random vibration tests, there may be some concerns about the shak...
Controlled amplitude and phase relationships between multiaxial shaker inputs (i.e., spatial shaping...
In the field of vibration testing, the interaction between the structure being tested and the instru...
In the field of vibration testing, the interaction between the structure being tested and the instru...
AbstractDuring high level vibration test on a high mass specimen, the test engineer is often facing ...
In the field of vibration testing, the interaction between the structure being tested and the instru...
A shaker can be used to simulate launch vibrations and check responses of structures forced at diffe...
A shaker can be used to simulate launch vibrations and check responses of structures forced at diffe...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...
Multi-axis shaker systems for the mechanical testing of components up to 2 kHz generally exhibit mul...