WO2023248118A1 - Piston d'étrier de frein et étrier de frein - Google Patents

Piston d'étrier de frein et étrier de frein Download PDF

Info

Publication number
WO2023248118A1
WO2023248118A1 PCT/IB2023/056361 IB2023056361W WO2023248118A1 WO 2023248118 A1 WO2023248118 A1 WO 2023248118A1 IB 2023056361 W IB2023056361 W IB 2023056361W WO 2023248118 A1 WO2023248118 A1 WO 2023248118A1
Authority
WO
WIPO (PCT)
Prior art keywords
piston
thrust
brake
annular edge
caliper
Prior art date
Application number
PCT/IB2023/056361
Other languages
English (en)
Inventor
Alberto Bosis
Mauro BOTTI
Original Assignee
Brembo 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 Brembo S.P.A. filed Critical Brembo S.P.A.
Publication of WO2023248118A1 publication Critical patent/WO2023248118A1/fr

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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/14Actuating mechanisms for brakes; Means for initiating operation at a predetermined position
    • F16D65/16Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake
    • F16D65/18Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake adapted for drawing members together, e.g. for disc brakes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T13/00Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems
    • B60T13/74Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with electrical assistance or drive
    • B60T13/741Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with electrical assistance or drive acting on an ultimate actuator
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/78Features relating to cooling
    • F16D65/84Features relating to cooling for disc brakes
    • F16D65/847Features relating to cooling for disc brakes with open cooling system, e.g. cooled by air
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2121/00Type of actuator operation force
    • F16D2121/02Fluid pressure
    • F16D2121/04Fluid pressure acting on a piston-type actuator, e.g. for liquid pressure
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2121/00Type of actuator operation force
    • F16D2121/18Electric or magnetic
    • F16D2121/24Electric or magnetic using motors
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2125/00Components of actuators
    • F16D2125/02Fluid-pressure mechanisms
    • F16D2125/06Pistons
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2125/00Components of actuators
    • F16D2125/18Mechanical mechanisms
    • F16D2125/20Mechanical mechanisms converting rotation to linear movement or vice versa
    • F16D2125/34Mechanical mechanisms converting rotation to linear movement or vice versa acting in the direction of the axis of rotation
    • F16D2125/40Screw-and-nut
    • 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
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D2125/00Components of actuators
    • F16D2125/18Mechanical mechanisms
    • F16D2125/44Mechanical mechanisms transmitting rotation
    • F16D2125/46Rotating members in mutual engagement

Definitions

  • the present invention relates to a piston for a brake caliper, and to a brake caliper .
  • Brake calipers which comprise at least one piston actuatable by both a brake fluid, to act on a brake pad as a service brake, and a mechanically or electrically actuated thrust member, to act on the brake pad as a parking brake , such as an electromechanical parking brake (EBB) , for example .
  • EBB electromechanical parking brake
  • Such brake calipers comprise a caliper body, in which a hollow cylinder delimited by a cylindrical wall and a bottom wall , substantially transverse to the cylindrical wall , is obtained .
  • the bottom wall internally delimits a through-seat adapted to house in a sealed and rotational manner at least one portion of a rotating member connectable , on one side, to an actuating mechanism, such as an electric motor, and on the other side to the thrust member connectable to the piston .
  • the piston comprises a thrust head adapted to come into contact with the brake pad and a side wall adapted to sealingly slide with respect to the cylindrical wall .
  • the piston delimits an open cavity on the side opposite to the thrust head, adapted to accommodate at least partially the thrust member coupled to the rotating member of the parking brake device .
  • the thrust member is coupled to the rotating member so as to transform the rotation of the rotating member into a translation of the thrust member, which allows a displacement in the axial direction by biasing the brake pad .
  • the brake fluid is fluid- tightly introduced between the bottom wall of the cylinder and the piston, which allows the piston to be actuated by virtue of the fluid pressure, where the rotating member and the thrust member are immersed in the brake fluid and allow the piston to be actuated as a parking brake regardless of the action of the fluid .
  • the disc, the pads , as well as the thrust member and the rotating member are immersed in the braking fluid, they reduce their si ze as they cool down after the expansion due to the increase in temperature, causing the parking force initially established on the high temperature disc to be insufficient to keep the vehicle stationary on slopes after the caliper has cooled down .
  • FIG. 1 is an axonometric view of a brake caliper for a disc brake according to an embodiment of the invention
  • FIG. 1 is a side view of the brake caliper shown in figure 1 ;
  • FIG. 3 is a side view of a brake caliper, sectioned along a plane comprising an axial direction A-A and a radial direction R-R, according to an embodiment of the invention, in which a piston actuatable by a brake fluid and a thrust device can be seen, so as to brake a vehicle as a service brake and as a parking brake, where the piston delimits a ventilation chamber in the direction of a first brake pad which allows thermally insulating a septum of the piston which separates the ventilation chamber from a thrust seat delimited by the piston in which a thrust device immersed in the brake fluid is housable , where a stepped piston sidewall is also visible, which allows reducing the radial dimensions of a pressure chamber in which the brake fluid is introduced by moving the brake fluid away from the first brake pad;
  • FIG. 4 is an axonometric view of a piston according to the present invention, slidingly insertable into a cylinder delimited by the brake caliper in figure 3 , in which the ventilation chamber delimited by the piston can be seen;
  • FIG. 5 is an exploded axonometric view of the piston in figure 4 and a thrust device housable in a thrust seat delimited by the piston and configured to mechanically and/or electromechanically actuate the piston, according to an embodiment of the invention;
  • FIG. 6 is an axonometric view of the piston according to the present invention, sectioned along a plane comprising an axial direction A-A and a radial direction R-R, according to an embodiment of the invention;
  • FIG. 7 is a front view of the piston according to the present invention, in which a first septum surface facing the brake pad can be seen, delimiting a bottom of the pressure chamber, having a raised central portion and two depressed peripheral portions according to an embodiment ;
  • FIG. 8 is a front view of the piston according to the present invention, in which a first surface of the septum facing the brake pad can be seen, delimiting a bottom of the pressure chamber, having a raised circular central portion and a depressed peripheral circular-crown portion according to an embodiment .
  • a piston for a brake caliper 1 is indicated by reference numeral 10 .
  • the piston 10 comprises a side wall 11 mainly extending along an axial direction A-A.
  • the piston 10 comprises a first annular edge configured to come into contact with a first brake pad 4 .
  • the piston 10 comprises a second annular edge 13 configured to receive a thrust from a brake fluid .
  • the side wall 11 extends between the first annular edge 12 and the second annular edge 13 .
  • the piston 10 comprises a septum 14 extending at least along a radial direction R-R, where said radial direction R-R is transverse to said axial direction A-A.
  • Said septum 14 comprises a first pad-side surface 15 adapted to face said first brake pad 4 .
  • Said septum 14 comprises a second brake fluid-side surface 16 adapted to face the opposite side of said first pad-side surface 15 , along said axial direction A-A.
  • Said side wall 11 and said septum 14 delimit a thrust seat 18 and a ventilation chamber 17 , where said thrust seat 18 and said ventilation chamber 17 are fluidically separated along said axial direction A-A by said septum 14 .
  • Said thrust seat 18 is open at said second annular edge 13 and is closed at said second brake fluid-side surface 16.
  • Said thrust seat 18 is adapted to receive at least partially a thrust device 19 to mechanically actuate the piston 10 by biasing said first brake pad 4 .
  • Said ventilation chamber 17 is open at said first annular edge 12 and is closed at least by said first pad-side surface 15.
  • said ventilation chamber 17 is adapted to accommodate air to thermally insulate the septum 14 . Air can thus be trapped between the pad and the septum 14 , reducing the heat transfer from the pad zone to the thrust seat 18 in which the brake fluid is present when the piston is under operating conditions in a brake caliper 1 .
  • said side wall 11 comprises a first side wall portion 20 having a first outer diameter Del and a second side wall portion 21 having a second outer diameter De2 , where said first outer diameter Del is greater than said second outer diameter De2 .
  • Said first side wall portion 20 internally delimits at least said ventilation chamber 17 .
  • Said second side wall portion 21 internally delimits said thrust seat 18 at least partially .
  • Said piston 10 comprises a third annular edge 22 mainly extending along said radial direction R-R, where said third annular edge 22 externally connects said first side wall portion 20 and said second side wall portion 21 in an undercut manner to receive a thrust from said brake fluid .
  • the third annular edge 22 forms a shoulder of said side wall 11 which extends along said radial direction .
  • said septum 14 on the side of said first pad-side surface 15, comprises a central portion 23 and a peripheral portion 24 , where said central portion 23 is raised with respect to said peripheral portion 24 .
  • said peripheral portion 24 is depressed with respect to said central portion 23 . This allows ensuring the air trapping in the ventilation chamber .
  • the geometry of the central portion 23 and the peripheral portion 24 allows increasing a turbulent motion of the air present in the ventilation chamber, avoiding an excessive overheating of the septum 14 .
  • said central portion 23 has a circular shape
  • said peripheral portion 24 has a circular-crown shape about said central portion 23 .
  • said central portion 23 is bone-shaped
  • said peripheral portion 24 is formed by two crescent-shaped portions , separated by said central portion 23 .
  • said first annular edge 12 comprises at least one contact tooth 25 and at least one dip 26, where said at least one contact tooth 25 is raised along said axial direction A-A or a direction parallel to said axial direction A-A with respect to said at least one dip 26 so that when said at least one tooth 25 is in contact with said first brake pad 4 , said dip 26 forms a radial window with said side wall 11 , adapted to allow a passage of air into and out of the ventilation chamber 17 and reduce a contact surface between the first annular edge 12 and the first brake pad 4 .
  • said first annular edge 12 comprises a plurality of said at least one contact tooth 25 and a plurality of said at least one dip 26, arranged circumferentially alternating along said first annular edge 12 .
  • the 20 comprises a first tubular portion 27 .
  • the first tubular portion 27 has a first thickness SI and a first axial length Al .
  • said first tubular portion 27 internally delimits said ventilation chamber 17 . [0045 ] .
  • said second side wall portion is a first tubular portion 27 .
  • said 21 comprises a second tubular portion 28 connected to said first tubular portion 27 .
  • said second tubular portion 28 has a second thickness S2 and a second axial length A2 .
  • said second tubular portion 28 at least partially delimits said thrust seat 18 .
  • said first axial length Al is at least equal to said second axial length A2 .
  • said first thickness SI is at least equal to said second thickness S2 .
  • said second thickness S2 is less than said first thickness S I .
  • said first side wall portion 20 comprises a third tubular portion 29 interposed between said first tubular portion 27 and said second tubular 29.
  • the third tubular portion 29 is connected to the second tubular portion 28 with said third annular edge 22 .
  • the third tubular portion 29 has a third thickness S3 and a third axial length A3 .
  • said third thickness S3 is at least double said first thickness S I .
  • said third axial length A3 is at least double said first thickness SI .
  • said first axial length Al is greater than said third axial length A3 .
  • said first tubular portion 27 and said septum 14 form a cup-shaped portion .
  • said second tubular portion 28 and said third tubular portion 29 and said septum 14 form a T-shaped portion .
  • said third tubular portion 29 forms a restricted shank of said T-shaped portion and said third tubular portion 29 connected to said septum 14 forms a head of said T-shaped portion .
  • said third tubular portion 29 of greater thickness than said first tubular portion and said second tubular portion, and having a length equal to at least half the outer diameter of the first wall portion 20 allows slowing down the overheating and heat transfer from the pad side to the third annular edge 22 facing the brake fluid .
  • said first pad-side surface 15 and said second brake fluid-side surface 16 are diametrically opposite to each other along said axial direction A-A.
  • said first pad-side surface 15 and said second brake fluid-side surface 16 comprise respective central portions mainly extending along directions parallel to said radial direction R-R .
  • said first annular edge 12 and said second annular edge 13 mainly extend along directions parallel to said radial direction R-R and form opposite axial ends of said piston 10 .
  • said first annular edge 12 and said second annular edge 13 mainly extend along a respective circumferential direction C-C punctually orthogonal to said axial direction A-A and said radial direction R-R .
  • said piston 10 has a ventilation chamber depth Pl and a thrust seat depth P2 .
  • Said ventilation chamber depth Pl is defined by a first distance along said axial direction A-A between the central portion of said first pad-side surface 15 and an orthogonal proj ection of said first annular edge 12 on said axial direction A-A.
  • Said thrust seat depth P2 is defined by a distance along said axial direction A-A between the central portion of said second brake fluid-side surface 16 and an orthogonal proj ection of said second annular edge 13 on said axial direction A-A.
  • Said ventilation seat depth Pl is at least half the thrust seat depth P2 .
  • said septum 14 delimits an undercut seat to house an end portion of the thrust device .
  • the undercut seat forms a narrowing of said thrust seat 18 .
  • said thrust seat 18 has a polygonal shape .
  • said piston 10 has a piston axis A parallel to said axial direction A-A about which it extends symmetrically .
  • said side wall 11 comprises an outer side surface which externally delimits said piston 10 with respect to said ventilation chamber 17 and said thrust seat 18 .
  • said outer side surface is a substantially cylindrical surface .
  • said side wall 11 comprises a first inner side surface 30 and a second inner side surface 31 , which delimit said piston 10 by internally facing said ventilation chamber 17 and said thrust seat 18 , respectively .
  • said first inner diameter Dil is equal to at least one third more than said second inner diameter Di l .
  • said first inner diameter Di l is at least double said second inner diameter Di l .
  • 31 is a polygonal surface, such as a parallelepiped side surface, for example with a square base , with rounded corners .
  • the present invention further relates to a brake caliper for a disc brake, generally indicated by reference numeral 1 .
  • the brake caliper 1 comprises at least one piston 10 according to at least one of the previously described embodiments .
  • the brake caliper 1 comprises a caliper body 2 adapted to be arranged straddling a brake disc 32 .
  • Said brake disc 32 has a first braking surface 33 and an opposite second braking surface 34 , said brake disc 3 being adapted to rotate about a rotation axis X-X which defines a direction parallel to said axial direction A-A.
  • Said caliper body 2 comprises a first caliper body portion 6 adapted to face said first braking surface 33 either directly or indirectly .
  • Said caliper body 2 comprises at least one connecting bridge 8 supported by said first caliper body portion 6 and which proj ects straddling said brake disc 32 .
  • Said caliper body 2 comprises a second caliper body portion 7 supported so as to be cantilevered with respect to said at least one floating element bridge 12 and adapted to face said second braking surface 4 either directly or indirectly .
  • Said first caliper body portion 6 internally delimits a piston or cylinder seat 9 adapted to slidingly house said at least one piston 10 in a fluid-tight manner .
  • said first caliper body portion 6 comprises a cylindrical wall 35 and a bottom wall 36 which define said piston or cylinder seat 9.
  • the bottom wall 36 is transverse to the cylindrical wall 35 extending parallel to said radial direction R-R and is made in one piece with said cylindrical wall 35 .
  • said cylindrical wall 35 comprises a first cylindrical portion 37 and a second cylindrical portion 38 connected by a cylinder shoulder 39 mainly extending substantially parallel to said radial direction R-R .
  • said first cylindrical portion 37 slidingly accommodates said first side wall portion 20 of said piston 10 .
  • Said second cylindrical portion 38 slidingly accommodates said second cylindrical wall portion 21 of said piston 10 .
  • said third annular edge 22 faces said cylinder shoulder 39
  • said second annular edge 13 and said thrust seat 18 indirectly face said bottom wall 36 delimiting a pressure chamber in which a brake fluid is inj ected through a conduit 40 passing through said cylinder shoulder 39 to hydraulically bias said piston 10 at least during a service braking action .
  • said brake caliper 1 comprises a thrust device 19 adapted to mechanically bias said piston 10 at least during a parking braking action .
  • said thrust device 19 is partially housed in said thrust seat 18 and within said second cylindrical portion 38 between said bottom wall 36 and said second annular edge 22 of said piston 10 .
  • said thrust device 19 comprises at least one rotating member 41 coupled to a thrust member 42 , where a rotation of said rotating member 41 corresponds to a translation of said thrust member 42 integrally with said piston 10 .
  • said rotating member 41 being rotatably accommodated in a sealing manner inside a rotation seat 43 formed in the bottom wall 36 of the cylinder 9 and passing through said bottom wall 36 so that the rotating member 41 is rotatable about a rotation axis substantially parallel to the axial direction A-A in connection with an electric motor 44 , constrainable to the caliper body 2 .
  • said thrust device 19 comprises a screw-nut screw assembly .
  • said rotating member 41 is a screw
  • said thrust member 42 is a nut screw housed in said thrust seat 18
  • said nut screw comprises a threaded hollow body having a substantially cylindrical shape and a plurality of petals proj ecting radially outward from the hollow body so as to fit into the thrust seat 18 thus allowing the piston 10 to slide forward with respect to said plurality of petals when biased by the brake fluid and allowing the screw nut to advance integrally with the piston when the thrust device 19 biases the piston 10 .
  • said thrust device 19 comprises a ball-in-ramp device , which connects said rotating member 41 to said thrust device 42 .
  • the ball-in-ramp device is known from document US20150323026A1 .
  • said brake caliper 1 comprises a motor unit connected to said caliper body 2 , where said motor unit comprises an electric motor 44 and a reduction gear 45 , where said reduction gear 45 is connected to said rotating member 41 .
  • said brake caliper l is a floating type caliper .
  • the brake caliper 1 comprises a bracket 3 adapted to connect to a caliper support provided in a vehicle .
  • the caliper body 2 is slidingly supported by said bracket 3 so as to move with respect to the bracket 3 along said axial direction A-A.
  • said bracket 3 slidingly supports said first brake pad 4 and said second brake pad 5.
  • said brake caliper 1 is a single-piston caliper .
  • said first caliper body portion 6 has a caliper body shoulder 46 , which externally reduces the radial dimension of the caliper body between the first cylindrical portion 37 and the second cylindrical portion 38 , outside the piston or cylinder seat 9 according to an embodiment .
  • said brake caliper 1 comprises at least one electromechanical parking brake (EPB) .
  • EPB electromechanical parking brake

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transportation (AREA)
  • Braking Arrangements (AREA)

Abstract

La présente invention concerne un piston (10 ) pour un étrier de frein (1) comprenant une paroi latérale (11) s'étendant principalement le long d'une direction axiale (A-A) entre un premier bord annulaire (12) configuré pour venir en contact avec une première plaquette de frein (4) et un deuxième bord annulaire (13) configuré pour recevoir une poussée à partir d'un liquide de frein, une cloison (14) s'étendant au moins le long d'une direction radiale (R-R), ladite direction radiale (R-R) étant transversale à ladite direction axiale (A-A), ladite cloison (14) comprenant une première surface côté plaquette (15) conçue pour faire face à ladite première plaquette de frein (4) et une seconde surface côté liquide de frein (16), ladite paroi latérale (11) et ladite cloison (14) délimitant un siège de poussée (18) et une chambre de ventilation (17), ledit siège de poussée (18) et ladite chambre de ventilation (17) étant fluidiquement séparés le long de ladite direction axiale (A-A) par ladite cloison (14), ledit siège de poussée (18) étant ouvert au niveau dudit deuxième bord annulaire (13) et étant fermé au niveau de ladite seconde surface côté liquide de frein (16), ledit siège de poussée (18) étant conçu pour recevoir au moins partiellement un dispositif de poussée (19) pour actionner mécaniquement le piston (10) par sollicitation de ladite première plaquette de frein (4), ladite chambre de ventilation (17) étant ouverte au niveau dudit premier bord annulaire (12) et étant fermée au moins par ladite première surface côté plaquette (15), ladite chambre de ventilation (17) étant conçue pour recevoir de l'air pour isoler thermiquement la cloison (14), ladite paroi latérale (11) comprenant une première partie de paroi latérale (20) présentant un premier diamètre externe (De1) et une seconde partie de paroi latérale (21) présentant un second diamètre externe (De2), ledit premier diamètre externe (De1) étant supérieur audit second diamètre externe (De2 ), ladite première partie de paroi latérale (20) délimitant en interne au moins ladite chambre de ventilation (17), ladite seconde partie de paroi latérale (21) délimitant en interne ledit siège de poussée (18) au moins partiellement, ledit piston (10) comprenant un troisième bord annulaire (22) s'étendant principalement le long de ladite direction radiale (R-R), ledit troisième bord annulaire (22) reliant en externe ladite première partie de paroi latérale (20) et ladite seconde partie de paroi latérale (21) à la manière d'une contre-dépouille pour recevoir une poussée à partir dudit liquide de frein.
PCT/IB2023/056361 2022-06-23 2023-06-20 Piston d'étrier de frein et étrier de frein WO2023248118A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT202200013279 2022-06-23
IT102022000013279 2022-06-23

Publications (1)

Publication Number Publication Date
WO2023248118A1 true WO2023248118A1 (fr) 2023-12-28

Family

ID=83188592

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2023/056361 WO2023248118A1 (fr) 2022-06-23 2023-06-20 Piston d'étrier de frein et étrier de frein

Country Status (1)

Country Link
WO (1) WO2023248118A1 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3770082A (en) * 1972-11-29 1973-11-06 Gen Motors Corp Disc brake caliper assembly
GB2156021A (en) * 1984-03-19 1985-10-02 Teves Gmbh Alfred Process and apparatus for the control of a brake unit for automotive vehicles
DE10034364A1 (de) * 2000-07-14 2002-02-07 Toyota Motorsport Gmbh Bremssattel
US20050252732A1 (en) * 2004-05-17 2005-11-17 Koichi Hashida Combined service and parking brake apparatus
US20070164602A1 (en) * 2003-12-19 2007-07-19 Robert Bosch Gmbh Automatic parking brake

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3770082A (en) * 1972-11-29 1973-11-06 Gen Motors Corp Disc brake caliper assembly
GB2156021A (en) * 1984-03-19 1985-10-02 Teves Gmbh Alfred Process and apparatus for the control of a brake unit for automotive vehicles
DE10034364A1 (de) * 2000-07-14 2002-02-07 Toyota Motorsport Gmbh Bremssattel
US20070164602A1 (en) * 2003-12-19 2007-07-19 Robert Bosch Gmbh Automatic parking brake
US20050252732A1 (en) * 2004-05-17 2005-11-17 Koichi Hashida Combined service and parking brake apparatus

Similar Documents

Publication Publication Date Title
CN105909698B (zh) 盘式制动卡钳、制动片组件和偏置构件组件
US8875849B2 (en) Caliper brake device
US20070163851A1 (en) High thermal transfer caliper
US5205382A (en) Aircraft brake
CN108291594B (zh) 盘式制动器卡钳体、卡钳和车辆
JP5822134B2 (ja) キャリパブレーキ装置
JP2013160300A (ja) キャリパブレーキ装置
JP5464012B2 (ja) ディスクブレーキ
CN110949337A (zh) 一种带有急刹缓冲结构设计的汽车刹车系统
WO2023248118A1 (fr) Piston d'étrier de frein et étrier de frein
WO2018127751A1 (fr) Corps d'étrier pour frein à disque, étrier de frein et frein à disque
AU2005276380A1 (en) Disk brake equipped reduced-size yoke
CN110529521A (zh) 一种汽车双活塞独立液压分配型浮钳盘式制动器
JPH034041A (ja) 自動車用ディスクブレーキ
US11428286B2 (en) Brake caliper thrust device, brake caliper and manufacturing method
EP0480358A1 (fr) Frein pour avion
US2867296A (en) Hydraulic brake system
CN113272570B (zh) 卡钳本体、盘式制动器卡钳和盘式制动器
JP4028405B2 (ja) 車両用ディスクブレーキのピンスライド型キャリパボディ
EP3436716B1 (fr) Élément support d'étrier de frein
CN109312795B (zh) 用于盘式制动器的卡钳的卡钳本体
US5782323A (en) Caliper disc brake having a low thermal conductivity extension element
JP5409102B2 (ja) ディスクブレーキ
JP7253404B2 (ja) 車両用ディスクブレーキ
ITPD20120214A1 (it) Pinza di freno a disco

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 23738877

Country of ref document: EP

Kind code of ref document: A1