Claims
- 1. A pressure sensitive device comprising an electrolytic cell including a pair of separate chambers, means for maintaining an ion concentration gradient between said chambers, means including an electrode communicating said chambers for producing an electrical signal correlative with the rate of electrolyte flow through said communicating means and correlative with the ion concentration of the electrolyte, means for varying the ion concentration of the electrolyte flowing through said electrode inversely in accordance with the magnitude of the average pressure variations applied to the device, and pressure sensitive means for causing the electrolyte in one chamber to flow through said communication means into the other chamber variably in accordance with the amplitude of the pressure variations.
- 2. The combination of claim 1 including means for producing an output signal correlative with the time integral of said electrical signal, and mine firing means responsive to said output signal.
- 3. A pressure sensitive device comprising an electrolytic cell including first and second chambers, passage means communicating said chambers, an orifice electrode and a porous filter plug in said passage means in spaced relation to each other and defining a compartment therebetween, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing electrolyte in one chamber to flow through said passage means into the other chamber variably in accordance with the amplitude of the applied pressure signals, said plug having a porosity such that the rate of ion diffusion through the plug is lower than the rate of electrolyte flow through said orifice electrode whereby the ion concentration in said compartment varies in accordance with the amplitude of the average pressure signals applied to the device.
- 4. The combination of claim 3 including means for electrically insulating said orifice electrode on the side thereof adjacent said compartment.
- 5. A pressure sensitive device comprising an electrolytic cell including first and second chambers, passage means communicating said chambers, an orifice electrode and a porous filter plug in said passage in spaced relation to each other and defining a compartment therebetween, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing electrolyte in one chamber to flow through said passage means into the other chamber variably in accordance with the amplitude of the applied pressure signals, said plug having a porosity such that the rate of ion diffusion through said plug is lower than the rate of electrolyte flow through said orifice electrode whereby the ion concentration in said compartment varies in accordance with the amplitude of the average pressure signals applied to the device, an electrolytic integrator cell in fluid communication with one of said chambers, a pair of electrodes in said integrator cell, circuit means including a source of potential connecting said orifice electrode and one of the electrodes in said integrator cell whereby the ion concentration of said integrator cell is increased in accordance with the rate of ion flow through said orifice electrode, and means including said pair of electrodes for measuring the ion concentration in said individual integrator cell.
- 6. A pressure sensitive device comprising an electrolytic cell including first and second chambers, passage means communicating said chambers, an orifice electrode and a porous filter plug in said passage in spaced relation to each other and defining a compartment therebetween, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing electrolyte in one chamber to flow through said passage means into the other chamber variably in accordance with the amplitude of the applied pressure signals, said plug having a porosity such that the rate of ion diffusion through said plug is lower than the rate of electrolyte flow through said orifice electrode whereby the ion concentration in said compartment varies in accordance with the amplitude of the average pressure signals applied to the device, an electrolytic integrator cell in fluid communication with one of said chambers, a pair of electrodes in said integrator cell, circuit means including a source of potential connecting said orifice electrode and one of the electrodes in said integrator cell whereby the ion concentration of said integrator cell is increased in accordance with the rate of ion flow through said orifice electrode, means including said pair of electrodes for measuring the ion concentration in said individual integrator cell, means including a sweep electrode in said integrator cell for reducing the ion concentration between said pair of electrodes, and means responsive to a predetermined current flow through said circuit means for rendering said concentration reducing means inoperative.
- 7. A pressure sensitive apparatus comprising an electrolytic cell including a pair of separate chambers, passage means including an orifice electrode communicating said chambers, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing the electrolyte to flow from one chamber to the other chamber through said passage means variably in accordance with the magnitude of the pressure signals applied to the apparatus, means for varying the ion concentration of the electrolyte flowing through said passage means inversely in accordance with the average magnitude of the applied pressure signals, and means including said electrode for producing a signal correlative with the quantity and the ion concentration of the electrolyte flowing through said passage means.
- 8. A pressure sensitive submarine mine firing apparatus comprising an electrolytic cell including a pair of separate chambers, passage means including an orifice electrode communicating said chambers, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing the electrolyte to flow from one chamber to the other chamber through said passage means variably in accordance with the magnitude of the pressure signals applied to the apparatus, means for varying the ion concentration of the electrolyte flowing through said passage means inversely in accordance with the average magnitude of the applied pressure signals, means including said electrode for producing a signal correlative with the quantity and the ion concentration of the electrolyte flowing through said passage means, an electrolytic integrator cell in fluid communication with one of said chambers, a pair of electrodes in said integrator cell, circuit means including a source of potential connecting said orifice electrode and one of the electrodes in said integrator cell whereby the ion concentration of said integrator cell is increased in accordance with the rate of ion flow through said orifice electrode, a second circuit means including a source of potential and a firing relay connecting said pair of electrodes in said integrator cell, and means for selectively shunting said relay to thereby vary the magnitude of the pressure signal necessary to actuate the relay.
- 9. The combination of claim 8 including means responsive to the static pressure adjacent the apparatus for varying the current flow through said firing relay to thereby increase the sensitivity of the mine.
- 10. A pressure sensitive submarine mine firing apparatus comprising an electrolytic cell including a pair of separate chambers, passage means including an orifice electrode communicating said chambers, means for maintaining an ion concentration gradient between said chambers, pressure sensitive means for causing the electrolyte to flow from one chamber to the other chamber through said passage means variably in accordance with the magnitude of the pressure signals applied to the apparatus, means for varying the ion concentration of the electrolyte flowing through said passage means inversely in accordance with the average magnitude of the applied pressure signals, and means including said electrode for producing a signal correlative with the quantity and the ion concentration of the electrolyte flowing through said passage means, an electrolytic integrator cell communicating at one end thereof with one of said chambers, a pair of spaced electrodes in said integrator cell remote from said one end thereof, a first circuit means including a source of potential connecting said orifice electrode to one of said pairs of electrodes in said integrator cell to thereby increase the ion concentration between said pair of electrodes in accordance with the rate of ion flow through said orifice electrode, a second circuit means including a mine firing relay and a source of potential connecting said pair of electrodes in said integrator cell to thereby actuate the relay when a predetermined ion concentration exists between said pair of electrodes, a sweep electrode in said integrator cell adjacent said one end, a third circuit means connecting said one of said pair of electrodes to said sweep electrode, and means responsive to a predetermined current flow through said first circuit means for rendering said third circuit means inoperative.
Government Interests
The invention described herein may be manufactured and used by or for the Government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (2)