EP4511241A1 - Bahnaufweiter zum aufpumpen/entlüften von reifen eines fahrzeugs - Google Patents

Bahnaufweiter zum aufpumpen/entlüften von reifen eines fahrzeugs

Info

Publication number
EP4511241A1
EP4511241A1 EP23724802.6A EP23724802A EP4511241A1 EP 4511241 A1 EP4511241 A1 EP 4511241A1 EP 23724802 A EP23724802 A EP 23724802A EP 4511241 A1 EP4511241 A1 EP 4511241A1
Authority
EP
European Patent Office
Prior art keywords
widener
track
rotation
vehicle
axis
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.)
Pending
Application number
EP23724802.6A
Other languages
English (en)
French (fr)
Inventor
Enguerrand PLANCHET
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.)
Teleflow SAS
Original Assignee
Teleflow SAS
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 Teleflow SAS filed Critical Teleflow SAS
Publication of EP4511241A1 publication Critical patent/EP4511241A1/de
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C23/00Devices for measuring, signalling, controlling, or distributing tyre pressure or temperature, specially adapted for mounting on vehicles; Arrangement of tyre inflating devices on vehicles, e.g. of pumps or of tanks; Tyre cooling arrangements
    • B60C23/001Devices for manually or automatically controlling or distributing tyre pressure whilst the vehicle is moving
    • B60C23/003Devices for manually or automatically controlling or distributing tyre pressure whilst the vehicle is moving comprising rotational joints between vehicle-mounted pressure sources and the tyres
    • B60C23/00345Details of the rotational joints
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60BVEHICLE WHEELS; CASTORS; AXLES FOR WHEELS OR CASTORS; INCREASING WHEEL ADHESION
    • B60B27/00Hubs
    • B60B27/0047Hubs characterised by functional integration of other elements

Definitions

  • the invention relates to the technical field of centralized vehicle tire inflation systems, known by the acronym “CTIS” from the Anglicism “Central Tire Inflation System”.
  • a vehicle driving on soft ground must have low tire pressure to maximize grip and allow the vehicle to move forward.
  • the tire pressure should be increased so that the vehicle can travel at a higher speed, for example when the vehicle joins a road.
  • CTIS generally include rotating joints making it possible to connect each tire of the vehicle to a source of compressed air as well as to an exhaust. It is therefore possible to adjust the tire pressure, upwards or downwards, without having to manipulate individual pneumatic elements. In particular, the pressure adjustment can be made while the vehicle is driving.
  • CTIS on vehicles are becoming more widespread, in particular for 4x4 or all-terrain vehicles. Some of these vehicles are equipped with them from their design, or are pre-designed by having provided for example a watertight supply conduit to the wheel of the vehicle. When the vehicle is pre-equipped to receive a CTIS, it is generally already equipped with rotating joints. It is then necessary to fix a supply valve with the rotating joint between the end of this sealed conduit, generally fixed on the vehicle, and the wheel driven by a rotating movement around its axis. [0007] CTIS adaptation systems have been developed for vehicles lacking any complete or partial installation. This is usually a supply valve attached to the center of the wheel and connected to a fixed waterproof conduit on the vehicle. However, the size of the wheel arch generally makes it necessary to position this supply valve on the outside of the vehicle, which, in addition to being unsightly, is detrimental to the endurance of the supply valve or the supply conduit. which could render the CTIS inoperative.
  • this supply valve is equipped with a rotating joint in order to ensure the rotation of the valve with the wheel, while the fluid supply conduit is fixed.
  • This prototype solution remains to be adapted to each vehicle, which is tedious and expensive.
  • One of the aims of the invention is to overcome the drawbacks of the prior art, by proposing additional equipment on the vehicle allowing the installation and operation of a tire inflation/deflation system, interoperable on any type of vehicle and solving the reliability and aesthetic problems caused by direct adaptation to the wheel.
  • a movable part capable of being fixed between a first component and at least one second component movable in rotation around an axis of rotation of a mounted assembly of a vehicle, the movable part having an axis of rotation intended to be coaxial with the axis of rotation of the assembled assembly,
  • the track widener comprises:
  • an airtightness system defining a chamber between the mobile part and the static part, - at least one main fluid conduit provided in the static part and opening, on the one hand, into the chamber and, on the other hand, outside the track widener,
  • the additional equipment allowing the installation and operation of a tire inflation system is in the form of a track widener.
  • the spacer is positioned internally to the wheel of the vehicle so that it is protected from attacks from the outside and is not visible, which does not hinder the general aesthetics of the vehicle.
  • the track widener according to the invention is mounted between existing components of the vehicle and does not require any major modification of these components, so that it is simple to implement.
  • the guide system is positioned radially to the axis of rotation of the movable part, internally or externally, relative to the sealing system, which makes it possible to improve the quality of the rotation of the part. mobile relative to the static part, offering better coaxiality. This also helps reduce mechanical stress on the sealing system and the risk of air leaks.
  • the guiding system used is of any suitable type, for example in the form of a ball bearing with one or more rows of balls, a needle bearing, a roller bearing, a self-lubricating bearing, a bushing, or any other suitable guiding system.
  • the sealing system is of any suitable type, and is for example in the form of lip rings, V-shaped seals, O-rings, four-lobe seals, cassette seals, or any other suitable sealing system.
  • the minimum section of the main fluid conduit when there is only one, or the sum of the minimum sections of the main fluid conduits, when there are several , is between 10 and 200 mm 2 , preferably between 20 and 150 mm 2 , and very preferably between 25 and 90 mm 2 .
  • Each main fluid conduit has a minimum section which is the smallest fluid passage section perpendicular to the trajectory of the fluid defined by the main fluid conduit. Whether the main fluid conduit is single or multiple, all of the minimum sections of the network of main fluid conduits should be included between the aforementioned limits. This defines the ease of circulation of the compressed air in the network of fluidic conduits to the annular chamber and dimensions the mechanical constraints of the static part. The fact of multiplying the fluidic conduits ensures inflation/deflation functionality even in the event of an unfortunate obstruction of a fluidic conduit.
  • the static part of the track widener comprises a single main fluid conduit, which makes it possible to have only one connection between the track widener and a compressed air reserve, without a joint. rotating, already present in the vehicle.
  • the minimum section of the secondary fluid conduit when there is only one, or the sum of the minimum sections of the secondary fluid conduits, when there are several, is equal to the minimum section of the single main fluid conduit or the sum of the minimum sections of the main fluid conduits.
  • the mobile part comprises at least two secondary fluid conduits, regularly distributed angularly around the axis of rotation, to ensure better mass distribution and better balancing of the mobile part, since the latter is animated of a rotational movement.
  • This also makes it possible to improve the endurance of the moving components around the axis of rotation of the assembled assembly.
  • a minimum section of each secondary fluid conduit is greater than 5 mm 2 .
  • the secondary fluid conduit opens outside the expander at the level of the axis of rotation of the movable part, which ensures better dynamic balance on the movable part since it is animated by a rotational movement. This also makes it possible to improve the endurance of the moving components around the axis of rotation of the assembled assembly.
  • a smaller axial dimension of the movable part of the expander that is to say along the axis of rotation, between a first support face of the first component and a second support face of at least one second component is less than 120 mm, preferably less than 60 mm, and very preferably less than 30 mm.
  • the invention also relates to a vehicle comprising a track widener according to one of the aforementioned characteristics, mounted between a first component and a second component, movable in rotation around an axis of rotation of a mounted assembly of the vehicle , chosen from a group comprising: a brake disc, an axle, a hub, a spindle, bearings, a second track spacer initially present, etc.
  • a brake disc an axle, a hub, a spindle, bearings, a second track spacer initially present, etc.
  • the invention also relates to a method of fixing a track widener according to one of the aforementioned characteristics, between a first component and at least one second component, movable in rotation around an axis of rotation of a assembled assembly of a vehicle.
  • the fixing of the movable part to the second component is carried out using a fixing system initially present on the vehicle and previously intended to fix the assembled assembly, the mounted assembly being fixed integrally to the part movable in rotation of the expander by a similar fixing system.
  • FIG.1 is a longitudinal sectional view of the track widener according to the invention mounted between a rim and a hub of a mounted assembly of a vehicle, the section passing through the main fluidic channels and secondary.
  • FIG.2 is a longitudinal sectional view of the track widener similar to that of Figure 1, the section passing through the means for fixing the movable part to the first and second movable components of the vehicle.
  • the invention relates to a track widener (1) intended to be mounted on a vehicle and allowing the installation and operation of a tire inflation system known according to the acronym “CTIS” from the anglicism “Central Tire Inflation System”.
  • CTIS Central Tire Inflation System
  • the track widener (1) comprises a movable part (2), in particular in the form of a disc having a cylindrical central surface, intended to be fixed between a first component (3) and a second component (4 ) of the vehicle, both movable in rotation around an axis of rotation (R) of a mounted assembly of the vehicle.
  • the movable part (2) is fixed between the two components (3, 4) and has an axis of rotation (R) coaxial with that of the components (3, 4).
  • the movable part (2) of the track widener (1) is fixed between a rim, as the first component (3), and a hub, as the second component (4), carrying a brake disc and initially intended to receive the rim.
  • the cylindrical surface of the movable part (2) is engaged and centered in a central bore of the rim, and comprises first orifices regularly distributed around the axis of rotation (R) in which are intended to insert the first studs (5) projecting from the hub, which were initially used to fix the rim. Nuts are screwed around the first studs (5) and integrated into the thickness of the movable part (2), to fix said movable part (2) to the hub.
  • the fixing of the movable part (2) to the second component (4) is therefore carried out using a fixing system initially present on the vehicle and previously intended to fix the assembled assembly, the assembled assembly being fixed integrally to the movable rotating part (2) of the expander by a similar fixing system, in particular nuts and studs.
  • the assembly is simple and reliable, and does not require any major structural modification of the components (3, 4) of the vehicle.
  • the track widener (1) also comprises a static part (7), for example in the form of a ring, inserted in an annular groove formed in the movable part (2) around the axis of rotation (R) from a side facing the hub.
  • the static part (7) is, in a manner known in a track widener (1), capable of being linked to at least one fixed element of the vehicle to remain static.
  • a guiding system (8) is mounted radially around the axis of rotation (R ) between the static part (7) and the mobile part (2), in particular resting against an exterior face of the static part (7) relative to the axis of rotation (R).
  • Cantilever assemblies which are less efficient, are avoided.
  • An airtightness system (9) is positioned radially around the axis of rotation (R) between the static part (7) and the mobile part (2), resting against at least one face interior of the static part (7) relative to the axis of rotation (R), and defines a chamber (10), in particular annular around the axis of rotation (R), between the movable part (2), the static part (7), and said sealing system (9).
  • the guiding system (8) is therefore positioned radially relative to the axis of rotation (R) of the movable part (2), externally to the airtightness system (9).
  • This particular arrangement allows more space for the guiding system (8). It is therefore possible to install a more robust guidance system (8), to guarantee the lifespan of the CTIS. For example, it is possible to install ball bearings of a higher series, compared to bearings which would have been arranged internally in relation to the airtightness system (9).
  • the guide system (8) is in the form of a ball bearing
  • the sealing system (9) comprises two annular seals, positioned side by side and spaced apart. one from the other to define the chamber (10) between the joints, the mobile part (2) and the static part (7).
  • the seals used can be of any suitable type, such as for example a radial friction lip seal positioned on the bottom side of the groove of the movable part (2), and a radial friction lip seal with a Dust lip positioned from the open side to the outside of the groove.
  • Lip seals are preferred because they provide excellent sealing in dynamic conditions.
  • the track widener (1) also comprises at least one secondary fluid conduit (12), having a minimum section greater than 5mm 2 , provided in the mobile part (2) and opening out:
  • the first end of the main fluid conduit (11) makes it possible to position a supply valve, not shown, connected to a compressed air supply circuit of the vehicle, and the second end of the secondary fluid conduit (12), which rotates with the wheel, can be connected to a fluid cavity defined between the rim and the tire.
  • the static part (7) comprises only one main fluid conduit (11), which allows only one connection between the track widener (1) and the air supply circuit. tablet of the vehicle.
  • the air injected by the compressed air supply circuit of the vehicle from the first end of the main fluid conduit (11) of the static part (7) thus enters the chamber (10) and circulates in the fluid conduit secondary (12) of the mobile part (2) to inflate or control the deflation of the tire.
  • the track widener (1) thus allows the installation and operation of a tire inflation system, interoperable on any type of vehicle, and in a reliable manner.
  • the track widener (1) is positioned inside the wheel and is therefore protected from attacks from the outside, and does not harm the general aesthetics of the vehicle.
  • the dynamic balance is optimal since the track widener (1) is positioned between two rotating components (3, 4) of the vehicle sharing the same axis of rotation (R).
  • the mobile part (2) comprises at least two secondary fluid conduits (12), regularly distributed angularly around the axis of rotation (R) in order to improve the mass distribution and optimize balancing. of the mobile part (2) driven in rotation. Still with this aim, the secondary fluidic conduit(s) (12) of the movable part (2) open outside the expander at the level of the axis of rotation (R) of the movable part (2), in particular in the cylindrical bearing.
  • the invention makes it possible to set up and operate a CTIS, without requiring major modification of the elements constituting the vehicle.
  • the movable part (2) could have a sufficient radial dimension to extend radially from the hub so that the air sealing system (9) positioned between the mobile part (2) and the static part (7), can be accessible without dismantling the assembly ..
  • the minimum section of the main fluid conduit when there is only one, or the sum of the minimum sections of the main fluid conduits (11) when there are several is included between 10 and 200 mm 2 , preferably between 20 and 150 mm 2 , and very preferably between 25 and 90 mm 2 .
  • the minimum section of the secondary fluidic conduit when there is only one, or the sum of the minimum sections of the secondary fluidic conduits (12) when there are several is equal to the minimum section of the single main fluid conduit (11) or the sum of the minimum sections of the main fluid conduits (11).
  • the smallest axial dimension of the movable part (2), between a support face of the first component (3) and a bearing face of the second component (4) is less than 120 mm, preferably less than 60 mm, and very preferably less than 30 mm. The lower this dimension, the better the mechanical endurance of the vehicle.
  • the invention provides additional equipment on the vehicle, namely a track widener, allowing the installation and operation of a tire inflation/deflation system, interoperable on any type vehicle and solving the reliability and aesthetic problems caused by direct adaptation to the wheel.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Joints Allowing Movement (AREA)
  • Centrifugal Separators (AREA)
  • Medical Preparation Storing Or Oral Administration Devices (AREA)
  • Agricultural Chemicals And Associated Chemicals (AREA)
  • Ultra Sonic Daignosis Equipment (AREA)
  • Tires In General (AREA)
  • Diaphragms And Bellows (AREA)
  • Seal Device For Vehicle (AREA)
EP23724802.6A 2022-06-07 2023-05-04 Bahnaufweiter zum aufpumpen/entlüften von reifen eines fahrzeugs Pending EP4511241A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR2205460A FR3136196B1 (fr) 2022-06-07 2022-06-07 Elargisseur de voie pour le gonflage/dégonflage de pneumatiques d’un véhicule
PCT/EP2023/061878 WO2023237266A1 (fr) 2022-06-07 2023-05-04 Elargisseur de voie pour le gonflage/dégonflage de pneumatiques d'un véhicule

Publications (1)

Publication Number Publication Date
EP4511241A1 true EP4511241A1 (de) 2025-02-26

Family

ID=83188569

Family Applications (1)

Application Number Title Priority Date Filing Date
EP23724802.6A Pending EP4511241A1 (de) 2022-06-07 2023-05-04 Bahnaufweiter zum aufpumpen/entlüften von reifen eines fahrzeugs

Country Status (6)

Country Link
US (1) US20250346076A1 (de)
EP (1) EP4511241A1 (de)
CA (1) CA3258238A1 (de)
FR (1) FR3136196B1 (de)
WO (1) WO2023237266A1 (de)
ZA (1) ZA202408672B (de)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102009036524B4 (de) * 2009-08-07 2016-09-22 Ralf Heinemann Vorrichtung zum Verbinden eines Reifens eines Kraftfahrzeugrades mit einer Luftdruckregeleinrichtung des Kraftfahrzeugs
DE102012006901B3 (de) * 2012-04-05 2013-10-10 Ludwig Volk Drehdurchführung
US20140028016A1 (en) * 2012-07-30 2014-01-30 Dana Heavy Vehicle Systems Group, Llc Rotary union for use with a fluid conduit

Also Published As

Publication number Publication date
CA3258238A1 (fr) 2023-12-14
FR3136196A1 (fr) 2023-12-08
US20250346076A1 (en) 2025-11-13
ZA202408672B (en) 2025-06-25
FR3136196B1 (fr) 2024-06-14
WO2023237266A1 (fr) 2023-12-14

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