Automatic oil spill detection system
US-9506465-B2 · Nov 29, 2016 · US
US9728314B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9728314-B2 |
| Application number | US-201514609626-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 30, 2015 |
| Priority date | Jan 31, 2014 |
| Publication date | Aug 8, 2017 |
| Grant date | Aug 8, 2017 |
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Official abstract text for this publication.
A latching solenoid assembly is provided which includes a solenoid actuator. A housing is also provided which has an axial passage. An intermediate piston is moved by the solenoid actuator. A reaction member is also placed within the housing axial passage spring biased by a transfer spring from the intermediate piston. The housing has a latching port allowing pressure to latch the intermediate piston in position to set the force which is transmitted to the reaction member.
Opening claim text (preview).
What is claimed is: 1. A latching solenoid actuator assembly comprising: a solenoid actuator; a housing having an axial passage with an intersecting latching pressure port; an intermediate piston positioned within said housing axial passage movable by said solenoid actuator, said intermediate piston being latchable by frictional engagement with said passage by side loading resultant of pressurizing said latching pressure port; a transfer spring engaged by said intermediate piston; and a reaction member loaded by said intermediate piston via said transfer spring. 2. The latching solenoid actuator assembly of claim 1 wherein said reaction member is taken from the group of pressure regulating control valves, flow regulating valves, poppet valves or mechanical actuators. 3. The latching solenoid actuator assembly of claim 1 further having a reaction spring engaged against said reaction member to provide a force generally opposite a force placed upon said reaction member by said transfer spring. 4. The latching solenoid actuator assembly of claim 3 wherein said reaction spring has a lower spring constant than said transfer spring. 5. The latching solenoid actuator assembly of claim 1 wherein said housing is a hydraulic housing with an exhaust port, supply port, transverse control port and axial control port intersecting said axial passage, said housing having said exhaust port closest to said solenoid actuator followed by said transverse control port and said supply port. 6. The latching solenoid actuator assembly of claim 1 wherein said reaction member is a three-way flow control valve and wherein said housing has a supply port, control port and exhaust port and a reaction spring acting upon said reaction member in concert with said transfer spring regulates a valve opening from said supply port to said control port or from said control port to said exhaust port. 7. The latching solenoid actuator assembly of claim 1 said reaction member is a four-way flow control valve and wherein said housing includes a housing port, a first actuation port, a second actuation port and an exhaust port and wherein a reaction spring acts in concert with the transfer spring to regulate a valve opening from said supply port to said first actuation port and from said second actuation port to said exhaust port or from said supply port to said second actuation port and said first actuation port to said exhaust port. 8. An arrangement for controlling multiple latching solenoid actuator assemblies, there being at least two latching solenoid actuator assemblies including: a solenoid actuator; a housing having an axial passage with intersecting latching pressure port; an intermediate piston positioned within said housing axial passage movable by said solenoid actuator, said intermediate piston being latchable by frictional engagement with said passage by side loading resultant of pressurizing said latching pressure port; and a transfer spring acted upon by said intermediate piston for the purpose of transferring load from said solenoid actuator, through said intermediate piston to a reaction member; and wherein said arrangement includes a master solenoid valve for supplying fluid pressure to said latching ports of said solenoid actuator assemblies. 9. The arrangement of claim 8 wherein said master solenoid valve is normally open to a sump. 10. The arrangement of claim 8 wherein said housing of said latching solenoid actuator assemblies are connected with supply ports and said supply ports of said solenoid latching solenoid valve assemblies are connected with a common header. 11. The arrangement of claim 8 wherein said latching solenoid actuator assemblies can be utilized to regulate fluid properties taken from the group of fluid pressure and fluid flow opening. 12. The arrangement of claim 8 wherein said latching solenoid actuator assemblies can by utilized to regulate differing levels of fluid properties taken from the group of fluid pressure and fluid flow opening control.
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