Correlated Power Input Pumps And/or Pressurized Fluid Sources Patents (Class 60/375)
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Patent number: 11333101Abstract: An assembly with a piston reciprocated with the aid of a floating head in fluid communication with the piston. The assembly may utilize a floating head that is shifted in position to promote reciprocation of the piston through the aid of pressure supplied to the floating head from a pressure volume regulator. Alternatively, the floating head may be in fluid communication with the piston at one side of the head and isolated at the other side. In this manner changing volume and pressure at this other side of the head during reciprocation may ultimately lead to floating head movement toward the piston, thereby promoting the continued reciprocation. Additional efficiencies may also be realized through unique hydraulic layouts for both operating and working fluid circulations.Type: GrantFiled: January 10, 2019Date of Patent: May 17, 2022Inventor: Joshua M. Schmitt
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Patent number: 10113564Abstract: A hydraulic system includes a pressure-driven actuator operable to provide a mechanical output in response to a pressure input, a single hydraulic circuit communicating with the pressure-driven actuator, a vibratory actuator in the single hydraulic circuit and operable to generate a first component of the mechanical output at a first frequency, and a hydraulic supply apparatus separate from the vibratory actuator, in the single hydraulic circuit, and operable to generate a second component of the mechanical output at a second frequency less than the first frequency.Type: GrantFiled: December 23, 2016Date of Patent: October 30, 2018Assignee: Robert Bosch GmbHInventor: Paul C. Stavrou
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Patent number: 9827701Abstract: An injection molding apparatus including: a valve pin driven by an actuator, the valve pin extending axially through at least a portion of the channel length of the fluid flow channel, the fluid flow channel including a throat, downstream flow of the injection fluid being restricted by a bulb portion of the pin, the valve pin having an intermediate position where downstream flow of injection fluid is unrestricted and a fully downstream position where downstream flow of injection fluid is stopped at both the gate and at the throat, wherein the actuator is driven by a valve assembly comprised of a spool mechanically driven by first and second actuators or solenoids that each separately engage the spool at opposing axial ends to effect movement of the spool back and forth between the drive fluid flow positions.Type: GrantFiled: December 17, 2015Date of Patent: November 28, 2017Assignee: Synventive Molding Solutions, Inc.Inventors: Vito Galati, Zhuang Rui Tan
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Patent number: 8997474Abstract: A differential fluid pressure energy conversion system includes a valve (V1) for regulating an input from a pressure source to define a fluid flow; and a lower piston chamber (LPC) in fluid communication with an output of V1, the LPC disposed about a central vertical axis of the system; Further included is a double acting reciprocatable piston (DAP) having an integral lower portion (PI) and an integral upper integral portion (P2), each portion having a bottom radial surface area, the radial surface area of P1 greater than that of P2, an outer peripheral edge of the P1 in fluid-tight slidable continuous contact with an inner complemental surface of LPC, DAP further including an elongate axial channel, co-axial with the vertical axis of the system, the channel extending an entire axial length of the DAP.Type: GrantFiled: February 23, 2011Date of Patent: April 7, 2015Inventors: William Lewry, Hazel Ann Whyte Lewry
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Publication number: 20110289910Abstract: A differential fluid pressure energy conversion system includes a valve (V1) for regulating an input from a pressure source to define a fluid flow; and a lower piston chamber (LPC) in fluid communication with an output of V1, the LPC disposed about a central vertical axis of the system; Further included is a double acting reciprocatable piston (DAP) having an integral lower portion (P1) and an integral upper integral portion (P2), each portion having a bottom radial surface area, the radial surface area of P1 greater than that of P2, an outer peripheral edge of the P1 in fluid-tight slidable continuous contact with an inner complemental surface of LPC, DAP further including an elongate axial channel, co-axial with the vertical axis of the system, the channel extending an entire axial length of the DAP.Type: ApplicationFiled: February 23, 2011Publication date: December 1, 2011Inventors: William Lewry, Hazel Ann Whyte Lewry
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Publication number: 20100326069Abstract: A compressed-air energy storage system according to embodiments of the present invention comprises a reversible mechanism to compress and expand air, one or more compressed air storage tanks, a control system, one or more heat exchangers, and, in certain embodiments of the invention, a motor-generator. The reversible air compressor-expander uses mechanical power to compress air (when it is acting as a compressor) and converts the energy stored in compressed air to mechanical power (when it is acting as an expander). In certain embodiments, the compressor-expander comprises one or more stages, each stage consisting of pressure vessel (the “pressure cell”) partially filled with water or other liquid. In some embodiments, the pressure vessel communicates with one or more cylinder devices to exchange air and liquid with the cylinder chamber(s) thereof. Suitable valving allows air to enter and leave the pressure cell and cylinder device, if present, under electronic control.Type: ApplicationFiled: January 28, 2010Publication date: December 30, 2010Applicant: LightSail Energy Inc.Inventors: Danielle A. FONG, Stephen E. Crane, Edwin P. Berlin, JR.
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Publication number: 20090084100Abstract: A combustor assembly is provided comprising a combustor casing; a liner coupled to the combustor casing; a burner assembly coupled to the combustor casing; and at least one resonator assembly. The resonator assembly comprises a resonator outer plate having at least one opening, a resonator side wall coupled to the resonator outer plate, and a resonator inner plate defined by a portion of the liner. The resonator inner plate is coupled to the resonator side wall and has at least one slot formed therein having an aspect ratio of at least 4:1.Type: ApplicationFiled: September 27, 2007Publication date: April 2, 2009Applicant: SIEMENS POWER GENERATION, INC.Inventors: Clifford E. Johnson, Joachim Lepers, Samer P. Wasif
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Patent number: 5519267Abstract: An energy saving electromagnetic motor in which a pressure tank provides pressurized fluid to a turbine, rotating the turbine and a crankshaft. The crankshaft is connected via a clutch and axle to a skin comprising a plurality of magnets, which thus revolve about the axle. The magnet's revolution causes electromagnets to operate piston-driven pumps, which serve to partially replenish the pressure lost by the pressurized fluid after the fluid rotates the turbine.Type: GrantFiled: May 26, 1994Date of Patent: May 21, 1996Inventor: J. R. Pentecost
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Patent number: 5411386Abstract: There is disclosed in connection with a random orbital sander the utilization of improved arrangements for resiliently supporting an air motor, controlling the flow of pressurized air to the motor, and utilizing air exhausted from the motor to withdraw dust from a shroud arranged to collect dust generated incident to operation of the sander. Also disclosed is an alternative dust collecting arrangement, wherein the shroud is connected by a sander mounted duct to a source of vacuum.Type: GrantFiled: November 8, 1993Date of Patent: May 2, 1995Assignee: Dynabrade, Inc.Inventors: Paul W. Huber, David G. Heckmiller, Jr.
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Patent number: 5271215Abstract: The system comprises at least one combustion chamber, an expansion turbine, an air compressor driven by the expansion turbine, and means for coupling the expansion turbine to at least one external receiver of mechanical energy. The system further includes means for injecting water to constitute a thermal ballast in the combustion chamber, the quantity of compressed air used remaining close to the quantity of oxidizing air required for stoichiometric combustion.Type: GrantFiled: March 13, 1992Date of Patent: December 21, 1993Assignee: Gaz de FranceInventor: Remi Guillet
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Patent number: 5048292Abstract: A single rod three chamber fluid motor is driven in a forward stroke which includes a rapid initial advance followed by a relatively short and slow feed stroke under high pressure. The rapid advance is performed by a closed loop system in which a high displacement main pump, pumps fluid to act against a first equal area at the head side of the piston and receives fluid expelled from a second equal area at the rod side of the piston while an accumulator maintains the third chamber exposed to a third area of the head side of the piston filled with fluid. Upon shifting to the feed stroke, the main pump is disconnected and a feed pump applies pressure to both of the first and third areas at the head side of the piston and receives fluid expelled by the second equal area and from a charge pump. The access fluid added to the feed pump circuit by the charge pump is returned via the accumulator to the charge pump sump during the return stroke of the piston.Type: GrantFiled: August 2, 1990Date of Patent: September 17, 1991Inventor: Philip A. Kubik
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Patent number: 4680930Abstract: A hydraulic power and control system for operating a reciprocating hydraulic mechanism including pump means connected to the hydraulic mechanism, a continuous torque hydraulic motor, a direction control driven by the motor to sequentially direct hydraulic power fluid to separate inlets of the mechanism, an escapement for restraining the motor at 180.degree. intervals of rotation for sequentially holding the direction control at two separate positions, one for supplying one inlet and the other for supplying the other inlet of the mechanism, and hydraulic limit valves for controlling the escapement when a reciprocating member of the mechanism reaches the end of each stroke. One embodiment has two constant volume hydraulic pumps connected with the hydraulic mechanism through a reversing valve assembly operated by a scotch yoke connected with the escapement.Type: GrantFiled: December 5, 1983Date of Patent: July 21, 1987Assignee: Otis Engineering CorporationInventor: William W. Dollison
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Patent number: 4581893Abstract: Manipulator apparatus is provided with an energy efficient control arrangement. The control arrangement in a point-to-point mode of operation utilizes a servo valve to selectively admit fluid from a pressurized source to one end of a cylinder. A piston is slidably mounted within the cylinder and connected to move a manipulator arm that is movable in a plurality of axes. The servo valve is closed when a predetermined arm velocity is reached and a bypass valving arrangement is opened to interconnect the ends of the cylinder. At a predetermined position of the manipulator arm, the control arrangement closes the bypass valving arrangement and the manipulator arm is decelerated as the arm approaches the desired final position.Type: GrantFiled: April 19, 1982Date of Patent: April 15, 1986Assignee: Unimation, Inc.Inventor: Torsten H. Lindbom
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Patent number: 4571939Abstract: A hydraulic well pump for operating a pump sucker rod string including a hydraulic cylinder assembly for raising and lowering the sucker rod string and a fluid counterbalancing system for offsetting the combined weight of the reciprocating service equipment, the fluid column above the pump plunger, and the sucker rod string. One counterbalancing embodiment includes an air supported piston on the movable cylinder exposed to an air chamber below the air piston functioning independently of the hydraulic and power and logic system of the pump. Another counterbalancing system embodiment uses a hydraulic fluid accumulator connected into the system fluid power and logic for supercharging the hydraulic power pumps during the lift stroke and providing opposing force during the downstroke.Type: GrantFiled: December 14, 1982Date of Patent: February 25, 1986Assignee: Otis Engineering CorporationInventor: William W. Dollison
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Patent number: 4404800Abstract: A Gas Energized Engine System, according to the present invention, is adapted to drive a piston type gas energized engine having a piston and cylinder system that is operatively interconnected with a crankshaft that transmits rotary force to any suitable load. The piston type engine is provided with gas intake and exhaust systems. The gas intake system is interconnected with a gas supply system having a high pressure supply vessel and an operating pressure supply vessel that are interconnected by a pressure regulator. A converter system which is an engine and compressor system that is separate from the gas energized engine, and has a gas inlet that receives the exhaust of the gas exhaust system of the engine and functions to compress the exhaust gas to a high pressure and communicate the high pressure to the high pressure vessel of the gas supply system and to modify the exhaust atmosphere of the gas energized engine.Type: GrantFiled: September 16, 1980Date of Patent: September 20, 1983Inventor: Edison P. Penney
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Patent number: 4184331Abstract: A pumping system for pumping liquid clay or slip into a filter press comprises a hydraulically-powered double-acting ram for pumping the slip and a hydraulic control circuit for the ram. The control circuit includes a pair of hydraulic pumps one of which provides a high pressure, low volume delivery and the other of which provides a low pressure high volume delivery, and valves controlling the supply of oil from these pumps to the ram according to the resistance encountered by the ram.Type: GrantFiled: February 27, 1978Date of Patent: January 22, 1980Assignee: Thomas Willett & Company LimitedInventor: Peter N. Bentley
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Patent number: 4043122Abstract: Apparatus for imparting reciprocating motion to a double-acting hydraulic piston and cylinder motor assembly. Hydraulic fluid is supplied through pressure lines alternately to opposite ends of the cylinder by two pumps. The pumps are operated so that one is on its pressure stroke while the other is on its suction stroke. The valving is such that fluid flowing out of the cylinder is discharged to an unpressured reservoir and fluid flowing into the pumps on their suction strokes is drawn from the same reservoir.Type: GrantFiled: April 2, 1976Date of Patent: August 23, 1977Assignee: Android International, Inc.Inventor: James T. Graham
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Patent number: 3940930Abstract: A fixed platen is supported in the machine frame, and a movable platen is connected to two parallel rods which project rearwardly through the fixed platen. Each rod carries a first piston and each piston is slidably received in a first cylinder. These cylinders are slidably received on the rods and each cylinder has a forward end defining a second larger piston slidably received in a fixed second cylinder. The front and rear faces of the smaller pistons are selectively connected to fluid from a first pump through a synchronizing valve, and a paralleling pump supplements the flow from the first pump during synchronization, that is during the major part of the mold opening and closing movement. Slower movement is provided for just prior to the platen reaching the mold open and closed positions.Type: GrantFiled: January 20, 1975Date of Patent: March 2, 1976Assignee: Package Machinery CompanyInventor: Russell B. Rosander