WO2018020460A1 - Mechanical seal - Google Patents

Mechanical seal Download PDF

Info

Publication number
WO2018020460A1
WO2018020460A1 PCT/IB2017/054579 IB2017054579W WO2018020460A1 WO 2018020460 A1 WO2018020460 A1 WO 2018020460A1 IB 2017054579 W IB2017054579 W IB 2017054579W WO 2018020460 A1 WO2018020460 A1 WO 2018020460A1
Authority
WO
WIPO (PCT)
Prior art keywords
seal
container
sealing ring
wall
cup
Prior art date
Application number
PCT/IB2017/054579
Other languages
English (en)
French (fr)
Inventor
Alessandro Ventura
Luigi Massimiliano FERRI
Original Assignee
Meccanotecnica Umbra S.P.A.
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Meccanotecnica Umbra S.P.A. filed Critical Meccanotecnica Umbra S.P.A.
Publication of WO2018020460A1 publication Critical patent/WO2018020460A1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/34Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member
    • F16J15/3464Mounting of the seal
    • F16J15/348Pre-assembled seals, e.g. cartridge seals
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/34Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member
    • F16J15/3464Mounting of the seal
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/34Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member
    • F16J15/36Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member connected by a diaphragm or bellow to the other member
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/34Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member
    • F16J15/38Sealings between relatively-moving surfaces with slip-ring pressed against a more or less radial face on one member sealed by a packing

Definitions

  • the invention relates to a mechanical seal and, especially, to a mechanical seal adapted to be interposed between a rotating shaft and an opening through which the shaft is mounted.
  • the invention finds advantageous - though not exclusive - application in the seals of rotary pumps and, in particular, in engine coolant recirculation pumps installed in motor vehicles, hereinafter simply referred to as "water pumps”.
  • the water pump of a motor vehicle comprises a pump body, an operating shaft and an impeller, which is housed inside the pump body and is splined to the shaft.
  • the latter is operated by a pulley an is mounted so as to pass through an opening of the pump body, where it is supported by means of a bearing.
  • the seal between the shaft and the pump body is usually obtained by means of a mechanical seal, which is fitted on the shaft in the area that is axially comprised between the impeller and the bearing of the shaft.
  • the mechanical seal comprises a sealing ring, which is integral to the shaft and rotates with it, and a sealing ring, which is rotation-fixed and is constrained to the pump body.
  • the two sealing rings axially cooperate with one another and, therefore, create a front sliding seal.
  • a first sealing ring is constrained to a metal container, which is adapted to be fitted into the opening of the pump body through the interposition of an elastomeric material bellows having its ends fixed to the container and to the first sealing ring, respectively;
  • a second sealing ring is mounted on a metal sleeve, which is adapted to be fitted on the shaft, with the interposition of an elastomeric material ring or bellows in contact both with the sleeve and with the second sealing ring, so as to obtain a static seal.
  • the mechanical seal finally comprises a spring, which is housed in the container and is directly or indirectly compressed between a bottom wall of the container and the first sealing ring, so as to push the first sealing ring against the second sealing ring with a predetermined working load.
  • the aforesaid solution is suitable for conventional applications, where the diameter of the opening of the pump body that is going to house a mechanical seal ranges from 28 to 30 mm, whereas the diameter of the shaft is 12 mm; therefore, a radial space of 8-9 mm is available for the seal .
  • the spring that provides the elastic load of the sealing rings was transferred to the fixed part of the movable part and acts between a flange of the sleeve and a metal cup housing the rotating sealing ring.
  • the fixed sealing ring is mounted through interference inside the metal container with the interposition of an elastomeric material bellows.
  • the object of the invention is to provide an improved mechanical seal, which allows manufacturers to obtain optimal performances with reduced dimensions and is simple and economic to be manufactured.
  • the invention provides a mechanical seal according to claim 1.
  • figure 1 is a diametrical section of a mechanical seal according to the invention.
  • figure 2 shows a detail of figure 1 on a larger scale
  • figure 3 schematically shows the coupling between two components of the seal.
  • number 1 indicates, as a whole, a mechanical seal, which is adapted to be interposed between a rotating shaft 3 and a fixed casing 3, which is provided with an opening 4, through which the shaft 2 is mounted.
  • the shaft 2 and the casing 3 can consist of the shaft and the body of a water pump of a motor vehicle (not shown) .
  • the seal 1 comprises, in a known manner, a fixed part 5 comprising a first sealing ring 6 constrained to the pump body 3, and a rotating part 7 comprising a second sealing ring 8 mounted so as to be integral to the shaft 2 and rotate with it.
  • the two sealing rings 6, 8 axially cooperate with one another and create a front sliding seal.
  • the sealing rings 6, 8 are conveniently made of a ceramic material, for example silicon carbide, or of a carbon-based material.
  • the seal 1 comprises an annular container 9, which is made of sheet metal, is manufactured through deep drawing and comprises an annular flat end wall 10, an outer cylindrical wall 11 extending from an outer edge of the flat wall 10 towards the sealing rings 6, 8, an outer flange 12 radially extending from an axial end of the outer wall 11 opposite the flat wall 10, and an inner tubular wall 13 extending from an inner edge of the flat wall 10 towards the sealing rings 6, 8 coaxially to the outer wall 11.
  • the outer wall 11 is fitted and sealed inside the opening 4 of the pump body 3, which has a reduced diameter, for example 20 mm.
  • the flange 12, which axially strikes against the pump body 3, determines the axial position of the seal 1 relative to the latter.
  • the first sealing ring 6 is inserted in the container 9.
  • the inner surface 14 of the first sealing ring 6 is coupled to the inner wall 13 of the container 9 through a pseudo-prismatic coupling, which is adapted to permit a limited possibility of relative rotation, though preventing the first sealing ring 6 from being dragged in rotation - through friction - by the second sealing ring 8.
  • the 14 of the first sealing ring 6 has a minor axis (A) that is greater than the minor axis (a) of a section of the outer surface 15 of the inner wall 13 of the container 9, but smaller than the major axis (b) of the section of the aforesaid surface 15.
  • the major axis (B) of the section of the inner surface 14 of the first sealing ring 6 is greater than the major axis (b) of the section of the outer surface
  • the first sealing ring 6 is mounted inside a cup 16, which is housed in the container 9 in an axially sliding manner.
  • An elastomeric material bellows 33 is interposed between the first ring 6 and the cup 16.
  • the cup 16 comprises an annular flat wall 17, which faces the flat wall 10 of the container 5, and an outer cylindrical wall 18, which axially extends from an outer edge of the flat wall, so as to at least partially enclose the first sealing ring 6.
  • the flat wall 17 has an inner edge 19, which is axially bent towards the flat wall 10 of the container 9 and has, in its cross section, a rounded inner profile.
  • the bellows 33 comprises, in a corresponding manner, an annular flat wall 20, which is axially interposed between the flat wall 17 of the cup 16 and the first sealing ring 6, and an (optional) outer cylindrical wall 21, which axially projects from the annular wall 20 and is radially interposed between the cylindrical wall 18 of the cup and the first sealing ring 6.
  • the latter is axially locked inside the cup 16 through radial interference, namely by radially compressing the cylindrical wall 21 of the bellows 33, and - in the absence of the wall 21 - the wall 16 is in direct contact with the ring 6, so as to define a fixed relative axial position, in which the annular wall 20 is axially compressed between the flat wall 17 of the cup 16 and the first sealing ring 6.
  • the bellows 33 finally comprises a lip seal portion
  • the lip seal portion 22 comprises a first lip 23 with an annular blade, which is radially arranged on the inside of the annular wall 20, a second intermediate lip 24 with a convex rounded profile, which is arranged on the inside of the inner edge 19 of the cup 16, and a third radially flexible lip 25, which axially extends towards the flat wall 10 of the cup 9.
  • the second lip 24 elastically cooperates with the inner wall 13 of the container 9 and ensures the static seal between the cup 16 and the inner wall 13 of the container 9; the first and the third lip (23; 25) cooperate with the second lip 24 for the seal, but are mainly aimed at protecting the area of the seal from dirt particles.
  • the first and the third lip (23; 25) delimit, with the second lip 24, respective annular chambers, which can be optionally filled with a lubricant .
  • the seal 1 comprises, furthermore, a spring 26, which is housed in the container 9 and is axially compressed between the flat wall 10 of the container and the flat wall 17 of the cup 16, so as to axially push the first sealing ring 6 against the second sealing element 8.
  • the spring 26 is a helical- wave spring made with a flat band, like for example the springs sold under the name of Crest-to-Crest® by Smalley.
  • the spring 26 could be replaced by an annular-wave spring or by a conventional cylindrical helical spring or even by a plurality of annular springs (such as Belleville or wave springs) stacked together .
  • the static seal between the second sealing ring 8 and the housing is conveniently obtained by means of a FIP (formed in place) sealant, which is interposed between the ring 8 and the walls 30 and 31 or one of them.
  • the FIP sealant can also be replaced by an elastomeric cap.
  • the seal 1 works as follows:
  • the first sealing ring 6 is fixed, whereas the second sealing ring 8 rotates with the shaft 2 in an integral manner. Therefore, between the two sealing rings 6, 8 there is a relative rotation with sliding under the load of the spring 26.
  • the rotary coupling between the sealing rings 6, 8 and, respectively, the container 9 and the sleeve 27 is obtained by means of elliptical couplings with very small radial dimensions .
  • the static seal between the bellows 33 and the container 9 is exclusively obtained through the geometry of the lip seal portion 22, without any rigid or elastic element that helps compress said portion against the inner wall 13 of the container, except for the pressure of the fluid.
  • the element 19 has the function of containing the swelling of the lip 13 in case of pressure on the inside, for example when a vacuum is generated before filling the cooling circuit.
  • the lip seal portion 22 is free to axially slide and rotate relative to the container 9; by so doing, you can avoid self-induced vibrations caused by stick-slip phenomena between the sealing rings 6, 8 and the consequent noise. Furthermore, the number of components is reduced, thus improving the simplicity, the cost-effectiveness and the reliability of the seal.
  • the lip seal portion 22 has a geometry that is such as to prevent dirt from getting into the area of the static seal with the container 9 and, at the same time, it can act as "tank" for a possible lubricant.
  • the bellows 33 as it can freely slide in an axial direction, does not generate an elastic load acting upon the sealing rings 6, 8 to obtain the dynamic seal.
  • the consequent absence of elastic deformations helps reduce radial dimensions and assign the load to the sole spring 26, thus obtaining a greater stability of the load during the entire life of the seal .
  • the fixed part of the seal could be directly installed in the outer ring of the bearing of the shaft, which needs to be elongated accordingly.
  • first sealing ring 11 could be directly fitted into the cup 14, without the interposition of the wall 21 of the bellows 33.
PCT/IB2017/054579 2016-07-27 2017-07-27 Mechanical seal WO2018020460A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT102016000078983 2016-07-27
IT102016000078983A IT201600078983A1 (it) 2016-07-27 2016-07-27 Tenuta meccanica

Publications (1)

Publication Number Publication Date
WO2018020460A1 true WO2018020460A1 (en) 2018-02-01

Family

ID=58159203

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2017/054579 WO2018020460A1 (en) 2016-07-27 2017-07-27 Mechanical seal

Country Status (2)

Country Link
IT (1) IT201600078983A1 (it)
WO (1) WO2018020460A1 (it)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202019103673U1 (de) 2018-07-11 2019-07-16 Meccanotecnica Umbra S.P.A. Gleitringdichtung mit verbesserter Verdrehsicherung
WO2020156925A1 (en) * 2019-01-31 2020-08-06 Meccanotecnica Umbra - S.P.A. Anti-tilting seal for a hollow shaft of an electric motor

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4415167A (en) * 1982-12-13 1983-11-15 Gits Norbert W Assembled multi-component seal
US20070290450A1 (en) * 2004-12-17 2007-12-20 Kaco Gmbh & Co. Kg Face Seal, Especially for Cooling Medium Pumps of Motor Vehicles
WO2010068297A2 (en) * 2008-12-12 2010-06-17 Flowserve Management Company Pump seal
US20140319774A1 (en) * 2013-04-30 2014-10-30 MECCANOTECNICA UMBRA S.p.A Mechanical seal

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4415167A (en) * 1982-12-13 1983-11-15 Gits Norbert W Assembled multi-component seal
US20070290450A1 (en) * 2004-12-17 2007-12-20 Kaco Gmbh & Co. Kg Face Seal, Especially for Cooling Medium Pumps of Motor Vehicles
WO2010068297A2 (en) * 2008-12-12 2010-06-17 Flowserve Management Company Pump seal
US20140319774A1 (en) * 2013-04-30 2014-10-30 MECCANOTECNICA UMBRA S.p.A Mechanical seal

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202019103673U1 (de) 2018-07-11 2019-07-16 Meccanotecnica Umbra S.P.A. Gleitringdichtung mit verbesserter Verdrehsicherung
WO2020156925A1 (en) * 2019-01-31 2020-08-06 Meccanotecnica Umbra - S.P.A. Anti-tilting seal for a hollow shaft of an electric motor

Also Published As

Publication number Publication date
IT201600078983A1 (it) 2018-01-27

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