EP0517674B1 - A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits - Google Patents

A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits Download PDF

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Publication number
EP0517674B1
EP0517674B1 EP92830257A EP92830257A EP0517674B1 EP 0517674 B1 EP0517674 B1 EP 0517674B1 EP 92830257 A EP92830257 A EP 92830257A EP 92830257 A EP92830257 A EP 92830257A EP 0517674 B1 EP0517674 B1 EP 0517674B1
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EP
European Patent Office
Prior art keywords
movable contact
membrane
aforesaid
union
pressure
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP92830257A
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German (de)
French (fr)
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EP0517674A1 (en
Inventor
Giovanni C/O Siceb S.P.A. Bianco
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bitron SpA
Original Assignee
Bitron SpA
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Publication date
Application filed by Bitron SpA filed Critical Bitron SpA
Publication of EP0517674A1 publication Critical patent/EP0517674A1/en
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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H35/00Switches operated by change of a physical condition
    • H01H35/24Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow
    • H01H35/34Switches operated by change of fluid pressure, by fluid pressure waves, or by change of fluid flow actuated by diaphragm

Definitions

  • One object of the present invention is to provide an electrical switch which is not subject to uncertainty during the opening and closing phases of the electric contacts and in which the fluid-tightness of the membrane which is directly exposed to the action of the pressure of the circuit is improved.

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  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Switches Operated By Changes In Physical Conditions (AREA)
  • Fluid-Pressure Circuits (AREA)
  • Supply Devices, Intensifiers, Converters, And Telemotors (AREA)

Abstract

A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits, comprising a cylindrical hollow body (2) with a tubular union (3) for connection to a pressure circuit and blades (7) for connection to an electrical indicator circuit. Inside the body (2) are a pair of fixed contacts (16) connected to the blades (7) and a movable contact (17) adapted to engage the fixed contacts (16). Thrust means (18) seek to maintain the movable contact (17) in engagement with the fixed contacts (16). An elastic membrane (8) separates sealingly the cavity in the body (2) from the tubular union (3) and controls the displacement of the movable contact (17) when a predetermined pressure is reached. A locking member (10) locks the peripheral edge (8a) of the membrane (8) in relation to the body (2). Interposed between the membrane (8) and the movable contact (17) is a cap-shaped elastic member (9) adapted to change shape with a snap action when a pressure threshold value is attained. The locking member (10) is locked either by the folding of an end edge (5) or by the member (10) being screwed into the body (2). <IMAGE>

Description

  • The present invention relates to electrical pressure switches or pressostats, generally used in hydraulic or pneumatic circuits in the suspension or braking systems of motor vehicles to indicate that a maximum pressure has been reached.
  • In particular, the invention relates to a fluid-tight electrical pressure switch of the type indicated in the pre-characterising portion of appended claim 1.
  • EP-A-403 254 discloses a pressure switch of the type defined above.
  • In some known electrical switches, when a predetermined pressure threshold value is reached, the movable contact is detached from the fixed contact, overcoming the opposing action of a compressing spring which opposes its displacement. Such a solution however renders uncertain the separation of the movable contact from the fixed contact which can occur at pressure levels which are close to but which may not be equal to the predetermined separation pressure, creating the risk of inaccurate indication by the signalling circuit associated with the switch.
  • One object of the present invention is to provide an electrical switch which is not subject to uncertainty during the opening and closing phases of the electric contacts and in which the fluid-tightness of the membrane which is directly exposed to the action of the pressure of the circuit is improved.
  • The present invention is characterised by the features set forth in the characterising portion of claim 1.
  • By reason of the above-defined characteristic features, the electrical switch which is the object of the present invention is not subject to uncertainty during the phases of closure and opening of the electric contacts, even in the presence of minor fluctuations of the pressure around the predetermined value at which the switch is to be tripped, guaranteeing a better pressure resistance due to a double system of locking of the elastic membrane, and characterised by an increased operative reliability and structural compactness.
  • Further characteristic features and advantages of the invention will become evident from the ensuing detailed description in which reference is made to the single drawing attached, and supplied purely by way of non-limitative example, which illustrates a longitudinal section through an electrical switch according to the present invention.
  • With reference to the drawing, reference numeral 1 generally denotes a fluid-tight electrical pressure switch for hydraulic or pneumatic circuits of the "normally closed" type. It comprises a body 2 of cylindrical shape, of which one end is narrowed to form a union 3 provided with an external screw thread 3a, for example, for connection to pipe work (not shown in the drawing) in which there is contained a pressurised fluid, and inside which there is provided a conduit 4.
  • The opposite end of the body 2 is open and has an edge 5 which is bent over a folding process.
  • Corresponding to the open end there is a head 6 locked axially by the folded edge 5 and which carries two blades 7 for electrical connection are integrated into it for example by stamping, which blades are intended to be connected to an electric signalling or alarm circuit of conventional type, not shown in the drawing.
  • Inside the cavity in the body 2 and close to the conduit 4 there is an elastic membrane 8 of generally disc shape, the peripheral edge of which is indicated at 8a. Above the membrane 8 (with reference to the drawing) there is a cap-shaped elastic member 9 adapted to change with snap action from an extroverted configuration to a symmetrically opposed introverted configuration illustrated in its stable extroverted state. A cup-shaped element 10 is disposed adjacent the membrane 8 and is clamped to compriess the peripheral edge 8a against the body 2. The element 10 has a screw-threaded portion 10a on its outer surface which engages a corresponding screw thread 2a provided on the inside of the body 2 and it is furthermore rigidly fixed to the body 2 by means of the folded end 5. On the bottom part of the base 10b of the element 10 is a seat 11 adapted to house the cap-shaped flexible member 9. The base 10b has passing through it an axial bore 12 which functions as a guide, through which slides a rod 13 which has a shoulder consisting of an annular projection 14 close to its middle portion.
  • Inside the cup-shaped element 10 is inserted a substantially cylindrical element 15 which carries a pair of fixed electric contacts 16 carried by respective support arms 16a respectively connected to the connecting blades 7.
  • The rod 13 carries in a slidable manner an annular member 17 of conductive material which is disposed coaxially above the projection 14 (with reference to the drawing) and constitutes a movable contact adapted to assume either a position in which it connects the two fixed contacts 16 or a position in which the fixed contacts 16 are spaced apart from each other and the switch is open. Between the cylindrical element 15 and the movable contact 17 is interposed a helical spring 18 which tends to bias the said movable contact 17 in the direction of the fixed contacts 16.
  • In operation, under normal pressure conditions, the switch is disposed in the configuration shown in the drawing. In such a configuration, the cap-shaped elastic member 9 is, as previously stated, in an extroverted condition of stable equilibrium and the fixed contacts 16 and the movable contact 17 are mutually engaged in such a way as to determine a connection between the electrical connection blades 7 and therefore closure of the electric circuit.
  • Upon an increase in the pressure in the conduit 4 in the union 3, the membrane 8 tends to deform in such a way as to exert a pressure on the elastic member 9 in the direction of the rod 13.
  • Thanks to the double locking system of the element 10, which comprises both its screwing onto the screw thread 2a on the body 2 and the subsequent folding over of the end edge 5 to prevent its becoming unscrewed accidentally, optimum sealing and pressure-tightness of the membrane 8 is guaranteed, this membrane being subject to the effective action of compression along all its peripheral edge 8a.
  • When the pressure in the conduit 4 reaches a predetermined threshold level p1, for example corresponding to a maximum pressure which the circuit will withstand, the deformation of the elastic membrane 8 overcomes the reaction of the elastic member 9 causing it to change over rapidly to an introverted configuration in which its concavity is opposite that shown in the drawing. In passing into this configuration, the elastic member 9 brings about axial displacement of the rod 13 which moves and in doing so entrains the movable contact 17 overcoming the action of the spring 18 and therefore producing a closure of the switch and intervention of the electric signalling associated with it.
  • The introverted configuration may be unstable or stable.
  • In the first case, whenever the pressure of the circuit falls below the threshold value p1, the elastic member 9 will immediately return to the extroverted configuration, closing the switch again.
  • In the second case, the fresh closure of the switch will be verified at a pressure value p2 which is less than the value p1 so that the circuit will remain open even in the presence of minor fluctuations in the value of the pressure around the value p1. The difference (p1-p2) is a parameter which can be defined at the design stage with the geometrical characteristics of the cap-shaped elastic member 9 and the loading on the thrust spring 18.
  • For example, electric switches of the "normally open" type may be constructed in which the fixed contacts 16 are carried directly by the cylindrical element 15 and in which the switch closes when the predetermined pressure p1 is attained.

Claims (4)

  1. A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits, comprising a substantially cylindrical hollow body (2) which has at the one end a tubular union (3) for connection to the circuit and which carries on the other end electrical connection means (7) intended to be connected to an electrical signalling circuit, the said body (2) accommodating:
    at least one fixed contact (16) connected to said electrical connection means (7),
    a contact (17) adapted for movement between a first position of engagement with the said fixed contact (16) and a second position in which it is spaced apart from the said fixed contact (16),
    thrust means (18) acting on the movable contact (17),
    an elastic membrane (8) which sealingly separates the cavity of the said body (2) from the tubular union (3), for controlling the displacement of the movable contact (17) between the first and the second position as a result of a predetermined pressure level being attained in the said union (3),
    a locking member (10) disposed inside the hollow body (2) to clamp the peripheral edge (8a) of the membrane (8) in relation to the union (3), and
    a substantially cup-shaped elastic member (9) interposed between the movable contact (17) and the aforesaid membrane (8), disposed normally in an extroverted configuration and adapted to bring about displacement of the movable contact (17) by changing its shape with a snap action into an introverted configuration by the effect of a pressure threshold value being attained in the said union (3),
    characterised in that the locking member (10) has an external screw thread (10a) adapted to engage a corresponding screw thread (2a) provided on the inside of the cavity of said body (2), in order to fix it to the body (2), and it is furthermore axially locked relative to the body (2) by folding of an end edge (5) of the hollow body (2), the folded edge (5) allowing to further fixing the locking member (10) to the body (2) and to prevent it becoming unscrewed accidentally, and in that said thrust means (18) tend to maintain the movable contact (17) in the said first position, the elastic membrane (8) being adapted to control the displacement of the movable contact (17) from said first position to said second position, against the action of the said thrust means (18).
  2. As switch according to Claim 1, characterised in that it comprises a pair of fixed contacts (16) engageable by the movable contact (17) carried by a rod (13) which has a shoulder (14) disposed axially inside the hollow body (2) and is slidable between a first back rest position and a second forward operative /position as a result of displacement of the aforesaid cap-shaped elastic member (9) between the said extroverted configuration and the said introverted configuration respectively.
  3. A switch according to Claim 1 or 2, characterised in that the aforesaid external electrical connection means (7) are carried by a closure member (6) which is locked in respect of the body (2) by the folding over of the aforesaid end edge (5).
  4. A switch according to Claim 3, characterised in that the aforesaid clamping member (10) is a cup-shaped element the base (10b) of which is traversed by an axial guide bore (12) for the said rod (13) and in that it has a seat (11) which faces the aforesaid membrane (8) and in which the said cap-shaped elastic member (9) is disposed.
EP92830257A 1991-06-04 1992-05-26 A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits Expired - Lifetime EP0517674B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITTO910130U IT223202Z2 (en) 1991-06-04 1991-06-04 WATERPROOF ELECTRIC PRESSURE SWITCH FOR HYDRAULIC OR PNEUMATIC CIRCUITS
ITTO910130U 1991-06-06

Publications (2)

Publication Number Publication Date
EP0517674A1 EP0517674A1 (en) 1992-12-09
EP0517674B1 true EP0517674B1 (en) 1996-07-24

Family

ID=11408981

Family Applications (1)

Application Number Title Priority Date Filing Date
EP92830257A Expired - Lifetime EP0517674B1 (en) 1991-06-04 1992-05-26 A fluid-tight electrical pressure switch for hydraulic or pneumatic circuits

Country Status (4)

Country Link
EP (1) EP0517674B1 (en)
AT (1) ATE140821T1 (en)
DE (1) DE69212396T2 (en)
IT (1) IT223202Z2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5461208A (en) * 1993-03-24 1995-10-24 Texas Instruments Incorporated Compact high pressure snap-acting switch
DE29619060U1 (en) * 1996-11-02 1998-03-05 Stein, Wolfgang, 63776 Mömbris Device for increasing traffic safety in the flowing traffic of motor vehicles
CN108305814B (en) * 2018-02-27 2024-04-16 四川新川航空仪器有限责任公司 Pressure signal device capable of bearing ultrahigh overload for long time
TWI745246B (en) * 2021-02-26 2021-11-01 廣大工業股份有限公司 Switch with two-way signal
CN116072470B (en) * 2023-02-17 2026-05-01 桂林航天电子有限公司 Air-tight pneumatic switch and use method thereof

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3378656A (en) * 1966-01-03 1968-04-16 Texas Instruments Inc Adjustment means for electrical switch
DE6602431U (en) * 1969-02-21 1969-05-22 Bosch R Gmbh
DE7031358U (en) * 1970-08-21 1970-12-17 Messmer Kg Werner HYDRAULIC SWITCH.
US5025667A (en) * 1989-06-15 1991-06-25 Texas Instruments Incorporated Hermetic pressure sensor

Also Published As

Publication number Publication date
DE69212396T2 (en) 1996-12-05
DE69212396D1 (en) 1996-08-29
EP0517674A1 (en) 1992-12-09
IT223202Z2 (en) 1995-06-13
ITTO910130V0 (en) 1991-06-04
ATE140821T1 (en) 1996-08-15
ITTO910130U1 (en) 1992-12-04

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