US2759459A - Electromagnetic device for distributing compressed fluids - Google Patents

Electromagnetic device for distributing compressed fluids Download PDF

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Publication number
US2759459A
US2759459A US320444A US32044452A US2759459A US 2759459 A US2759459 A US 2759459A US 320444 A US320444 A US 320444A US 32044452 A US32044452 A US 32044452A US 2759459 A US2759459 A US 2759459A
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Prior art keywords
pressure
chamber
distributor
electromagnetic device
orifice
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Expired - Lifetime
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US320444A
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Lucien Rene
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Societe dInventions Aeronautiques et Mechaniques SIAM SA
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Societe dInventions Aeronautiques et Mechaniques SIAM SA
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D7/00Control of flow
    • G05D7/06Control of flow characterised by the use of electric means
    • G05D7/0617Control of flow characterised by the use of electric means specially adapted for fluid materials
    • G05D7/0629Control of flow characterised by the use of electric means specially adapted for fluid materials characterised by the type of regulator means
    • G05D7/0635Control of flow characterised by the use of electric means specially adapted for fluid materials characterised by the type of regulator means by action on throttling means
    • G05D7/0641Control of flow characterised by the use of electric means specially adapted for fluid materials characterised by the type of regulator means by action on throttling means using a plurality of throttling means
    • G05D7/0664Control of flow characterised by the use of electric means specially adapted for fluid materials characterised by the type of regulator means by action on throttling means using a plurality of throttling means the plurality of throttling means being arranged for the control of a plurality of diverging flows from a single flow
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01LCYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
    • F01L25/00Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means
    • F01L25/08Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means by electric or magnetic means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B13/00Details of servomotor systems ; Valves for servomotor systems
    • F15B13/02Fluid distribution or supply devices characterised by their adaptation to the control of servomotors
    • F15B13/04Fluid distribution or supply devices characterised by their adaptation to the control of servomotors for use with a single servomotor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2278Pressure modulating relays or followers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2278Pressure modulating relays or followers
    • Y10T137/2409With counter-balancing pressure feedback to the modulating device
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2496Self-proportioning or correlating systems
    • Y10T137/2559Self-controlled branched flow systems
    • Y10T137/2574Bypass or relief controlled by main line fluid condition
    • Y10T137/2605Pressure responsive
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/8593Systems
    • Y10T137/87169Supply and exhaust
    • Y10T137/87217Motor

Definitions

  • My distributing device is characterized essentially in that the pressure of the liquid supplied to the operating system is controlled by an outlet for said liquid through which the flow is regulated by a needle or the like which is responsive to the combined actions of the control current and of the back-pressure set up by the liquid below said outlet.
  • such a back-pressure is generated by passing the liquid through one or several calibrated orifices provided below a chamber arranged opposite said outlet relative to the electromagnetic core.
  • the rate of flow from the distributor into the working system is determined in dependency on the working pressure of the hydraulic motor by a calibrated orifice located ahead of a supply chamber connected with said system and through a by-pass with said outlet.
  • said supply chamber is surmounted in the distributor housing with a magnetic circuit which carries the coreenergizing coil and which is drilled axially with a channel constituting the said by-pass leading to the outlet.
  • the distributor comprises a pair of absolutely identical and geometrically equipollent wells I and II bored in a common block D.
  • the corresponding members bear the same reference characters in the one and the other.
  • the two wells are provided with a common pressurefluid supply or intake pipe P and a common discharge pipe H leading to the sump; each of them controls the pressure within the respective chambers defined by a piston M of a double-acting jack V.
  • the source of pressure and the sump are not shown in the drawing since they are foreign to the invention. It will be appreciated that the distributor can be made to control a single-acting jack by using one single well of the distributor.
  • Each of the said wells comprises a delivery chamber B which communicates on the one hand with the supply orificc A through a calibrated orifice a and on the other hand with the operating system, here the jack, through the supply orifice U.
  • the calibrated orifice a determines the rate of flow depending on the operating pressure, for example the jack operating pressure.
  • the pressure within the chamber B is determined by the sectional area of an orifice b to which leads the channel 0 which on the other hand communicates with the said chamber.
  • the sectional area of the orifice b is governed by any member which can be actuated electromagnetically which, as shown by way of example in the drawing, is a needle d which can be substituted by any other member such as a ball, a valve, a flap, and so on.
  • the needle d or its equivalent is actuated by an electromagnetic control device having a core e which has an insert z protruding slightly beyond the core e. Through the insert z, the core e presses the needle upon orifice b with a force which is proportional to the current which flows through the coil 1 contained in the magnetic circuit g through which the channel 0 is bored.
  • the orifice b governs the pressure of the liquid in chamber B by allowing part of said liquid to flow back into the sump through channels h -h the upper chamber i, the orifice j, chamber k, backflow orifice R and pipe H.
  • the orifices j are so calibrated that a definite pressure which is dependent on the rate of flow will prevail in the upper chamber i and thereby act upon the core 2 so as to counteract the movement initiated by the latter in one direction or the other.
  • the purpose of such a counteraction is to practically eliminate the background noise, and notwithstanding the fact that the performances at this stage are slightly decreased it will nevertheless result in an improvement of the operation of the whole system and the attainment of high performances.
  • the pressure supplied to the hydraulic motor by this apparatus is a linear function of the current flowing through the coil f.
  • the inlet to each well is protected by a filter 1 arranged in the pressure fluid intake pipe.
  • An electro-magnetically actuated pressure fluid distributor more particularly for use in an electrohydraulic remote control system for a hydraulic motor, and comprising: a pressure fluid supply, a delivery chamber communicating with the supply and with the hydraulic motor, a duct opening into the delivery chamber, a discharge port in the duct, a movable member for controlling the crosssection of the discharge port, and directly subjected to the pressure of the fluid discharged through said port, a core mechanically connected to the movable member, an electromagnetic control device acting on the core, and means for exerting on said core in the same direction as said electromagnetic device a variable back pressure the variations of which compensate to the variations of the force exerted on said core by the control device.
  • a distributor as in claim 1 wherein the said means comprise a back pressure chamber positioned on the opposite side of the control member with respect to the core, a passageway communicating between the back pressure chamber and the discharge port, an exhaust chamber adjacent said back pressure chamber, and narrow restricted 3.
  • a distributor as in claim 1 including a calibrated orifice in the communication between the pressure fluid References Cited in the file of this patent supply and the delivery'chamber.
  • a distributor as in claim 1 wherein said electro- UNITED STATES PATENTS magnetic control device comprises a magnetic CiIClli 00- 901,613 Herrgott Oct. 20, 1908 axial with the duct, anda coil included in the circuit. 5 1,857,386 Lanquetin May 10, 1932 5.
  • a control system comprising two identical dis rib- 2,328,163 Moore Au 31, 1943 utors each as claimed in claim 1 and means Conne ting h 2,398,421 Frische et a1 Apr. 16, 1946 respective pressure fluid supplies, and the back pres r 2,629,365 Kennedy Feb. 24, 1953 exerting means thereof in symmetrical relationship.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Fluid Mechanics (AREA)
  • Fluid-Pressure Circuits (AREA)

Description

Aug. 21, 1956 R. LUCIEN 2,759,459
ELECTROMAGNETIC DEVICE FOR DISTRIBUTING COMPRESSED FLUIDS Filed Nov. 14, '1952 INVENTOR 'RENE LUCIEN AGENTS United States Patent ELECTROMAGNETIC DEVICE FOR DISTRIBUTING CONIPRESSED FLUIDS T Ren Lucien, Paris, France, assignor to Societe dInvennous Aeronautiques et Mecaniques S. I. A. M., Fribourg, Switzerland, a corporation of Switzerland This invention relates to electromagnetic devices and more particularly to electromagnetic devices for distributing compressed fluids which are designed to control the operation of a liquid-operated motor.
In the operation of a distributor in accordance with my invention the following requirements are fulfilled: so little current is needed that an electronic tube can cover its consumption; the pressure at the inlet of the hydraulic motor is directly related to the control current; no background noise is set up, by which is meant that the device is wholly stable in operation and will neither generate nor maintain any vibration.
My distributing device is characterized essentially in that the pressure of the liquid supplied to the operating system is controlled by an outlet for said liquid through which the flow is regulated by a needle or the like which is responsive to the combined actions of the control current and of the back-pressure set up by the liquid below said outlet.
In a particular embodiment of my device, to be described hereinafter, such a back-pressure is generated by passing the liquid through one or several calibrated orifices provided below a chamber arranged opposite said outlet relative to the electromagnetic core.
According to a further feature of my device the rate of flow from the distributor into the working system is determined in dependency on the working pressure of the hydraulic motor by a calibrated orifice located ahead of a supply chamber connected with said system and through a by-pass with said outlet.
In the aforementioned embodiment of my invention said supply chamber is surmounted in the distributor housing with a magnetic circuit which carries the coreenergizing coil and which is drilled axially with a channel constituting the said by-pass leading to the outlet.
A distributor involving these several features is illustrated in longitudinal sectional view in the drawing appended hereto.
In this embodiment the distributor comprises a pair of absolutely identical and geometrically equipollent wells I and II bored in a common block D. The corresponding members bear the same reference characters in the one and the other.
The two wells are provided with a common pressurefluid supply or intake pipe P and a common discharge pipe H leading to the sump; each of them controls the pressure within the respective chambers defined by a piston M of a double-acting jack V. The source of pressure and the sump are not shown in the drawing since they are foreign to the invention. It will be appreciated that the distributor can be made to control a single-acting jack by using one single well of the distributor.
Each of the said wells comprises a delivery chamber B which communicates on the one hand with the supply orificc A through a calibrated orifice a and on the other hand with the operating system, here the jack, through the supply orifice U.
There is no inconvenience in the pressure of the hyuniform since even a substantial variation of the said pressure will not affect the operation of the apparatus.
The calibrated orifice a determines the rate of flow depending on the operating pressure, for example the jack operating pressure.
The pressure within the chamber B is determined by the sectional area of an orifice b to which leads the channel 0 which on the other hand communicates with the said chamber.
The sectional area of the orifice b is governed by any member which can be actuated electromagnetically which, as shown by way of example in the drawing, is a needle d which can be substituted by any other member such as a ball, a valve, a flap, and so on.
The needle d or its equivalent is actuated by an electromagnetic control device having a core e which has an insert z protruding slightly beyond the core e. Through the insert z, the core e presses the needle upon orifice b with a force which is proportional to the current which flows through the coil 1 contained in the magnetic circuit g through which the channel 0 is bored.
The orifice b governs the pressure of the liquid in chamber B by allowing part of said liquid to flow back into the sump through channels h -h the upper chamber i, the orifice j, chamber k, backflow orifice R and pipe H.
The orifices j are so calibrated that a definite pressure which is dependent on the rate of flow will prevail in the upper chamber i and thereby act upon the core 2 so as to counteract the movement initiated by the latter in one direction or the other. The purpose of such a counteraction is to practically eliminate the background noise, and notwithstanding the fact that the performances at this stage are slightly decreased it will nevertheless result in an improvement of the operation of the whole system and the attainment of high performances.
It is to be pointed out that in the arrangement described which includes a pair of identical distributors the fact that the two distributors are geometrically equipollent aflords the remarkable advantage that their conjugated actions are independent relative to the accelerations of the apparatus on which the are fitted, which accelerations, for want of such an equipollence, would cause perturbations.
The pressure supplied to the hydraulic motor by this apparatus is a linear function of the current flowing through the coil f.
Advantageously, the inlet to each well is protected by a filter 1 arranged in the pressure fluid intake pipe.
I claim:
1. An electro-magnetically actuated pressure fluid distributor, more particularly for use in an electrohydraulic remote control system for a hydraulic motor, and comprising: a pressure fluid supply, a delivery chamber communicating with the supply and with the hydraulic motor, a duct opening into the delivery chamber, a discharge port in the duct, a movable member for controlling the crosssection of the discharge port, and directly subjected to the pressure of the fluid discharged through said port, a core mechanically connected to the movable member, an electromagnetic control device acting on the core, and means for exerting on said core in the same direction as said electromagnetic device a variable back pressure the variations of which compensate to the variations of the force exerted on said core by the control device.
2. A distributor as in claim 1 wherein the said means comprise a back pressure chamber positioned on the opposite side of the control member with respect to the core, a passageway communicating between the back pressure chamber and the discharge port, an exhaust chamber adjacent said back pressure chamber, and narrow restricted 3. A distributor as in claim 1 including a calibrated orifice in the communication between the pressure fluid References Cited in the file of this patent supply and the delivery'chamber.
4. A distributor as in claim 1 wherein said electro- UNITED STATES PATENTS magnetic control device comprises a magnetic CiIClli 00- 901,613 Herrgott Oct. 20, 1908 axial with the duct, anda coil included in the circuit. 5 1,857,386 Lanquetin May 10, 1932 5. A control system comprising two identical dis rib- 2,328,163 Moore Au 31, 1943 utors each as claimed in claim 1 and means Conne ting h 2,398,421 Frische et a1 Apr. 16, 1946 respective pressure fluid supplies, and the back pres r 2,629,365 Kennedy Feb. 24, 1953 exerting means thereof in symmetrical relationship.
US320444A 1952-10-08 1952-11-14 Electromagnetic device for distributing compressed fluids Expired - Lifetime US2759459A (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2844157A (en) * 1954-06-04 1958-07-22 Canadian Chemical Company Ltd Electropneumatic transducer
US2977769A (en) * 1956-07-09 1961-04-04 J H Holan Corp Control for mobile aerial tower
US3012578A (en) * 1959-03-16 1961-12-12 Walter D Ludwig Double plunger solenoid valve
US5595103A (en) * 1993-03-18 1997-01-21 Ecoff; William B. Hydraulic drive assembly for electrical discharge machine
US5725023A (en) * 1995-02-21 1998-03-10 Lectron Products, Inc. Power steering system and control valve
US20200078801A1 (en) * 2018-09-11 2020-03-12 Xiamen EASO Co., Ltd. Convenient switching valve

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US901613A (en) * 1906-04-27 1908-10-20 Joseph Michel Camille Herrgott Electromechanical regulator for electric tension.
US1857386A (en) * 1929-02-09 1932-05-10 Lanquetin Roger Relay device for automatic control by the use of alpha fluid under pressure
US2328163A (en) * 1938-03-08 1943-08-31 Brown Instr Co Measuring instrument
US2398421A (en) * 1939-07-15 1946-04-16 Sperry Gyroscope Co Inc Electrohydraulic control system
US2629365A (en) * 1949-03-11 1953-02-24 Union Carbide & Carbon Corp Electropneumatic control system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US901613A (en) * 1906-04-27 1908-10-20 Joseph Michel Camille Herrgott Electromechanical regulator for electric tension.
US1857386A (en) * 1929-02-09 1932-05-10 Lanquetin Roger Relay device for automatic control by the use of alpha fluid under pressure
US2328163A (en) * 1938-03-08 1943-08-31 Brown Instr Co Measuring instrument
US2398421A (en) * 1939-07-15 1946-04-16 Sperry Gyroscope Co Inc Electrohydraulic control system
US2629365A (en) * 1949-03-11 1953-02-24 Union Carbide & Carbon Corp Electropneumatic control system

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2844157A (en) * 1954-06-04 1958-07-22 Canadian Chemical Company Ltd Electropneumatic transducer
US2977769A (en) * 1956-07-09 1961-04-04 J H Holan Corp Control for mobile aerial tower
US3012578A (en) * 1959-03-16 1961-12-12 Walter D Ludwig Double plunger solenoid valve
US5595103A (en) * 1993-03-18 1997-01-21 Ecoff; William B. Hydraulic drive assembly for electrical discharge machine
US5725023A (en) * 1995-02-21 1998-03-10 Lectron Products, Inc. Power steering system and control valve
US20200078801A1 (en) * 2018-09-11 2020-03-12 Xiamen EASO Co., Ltd. Convenient switching valve
US10730060B2 (en) * 2018-09-11 2020-08-04 Xiamen EASO Co., Ltd. Convenient switching valve

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