Incident wave control method for electromagnetic force Hopkinson compression rod and tension rod experimental loading device
A Hopkinson pressure bar and electromagnetic force technology, applied in program control, measuring device, computer control, etc., can solve problems such as poor practicability, avoid errors, increase the maximum pulse amplitude, and simplify the experimental operation process.
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[0038] refer to Figure 1-9 . The specific steps of the incident wave control method of the electromagnetic force Hopkinson compression rod and pull rod experimental loading device of the present invention are as follows:
[0039] 1. The working state of the discharge circuit.
[0040] The principle of electromagnetic force stress wave loading is the same as that of electromagnetic riveting, and its discharge circuit is an RLC oscillation circuit. The selected parameters of the discharge circuit are different, and the RLC oscillation circuit has three working states: under-damped state, critically damped state and over-damped state. Under the same discharge conditions, the discharge current pulse amplitude in the underdamped state is the largest, the rising edge is the steepest, and the pulse width is the narrowest, which is conducive to improving the electromagnetic force incident wave amplitude and rising edge slope, and reducing the difficulty of incident wave control. I...
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