Vehicle driveline component with pinned vent
US-11940056-B2 · Mar 26, 2024 · US
US2024301924A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024301924-A1 |
| Application number | US-202418426148-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 29, 2024 |
| Priority date | Mar 7, 2023 |
| Publication date | Sep 12, 2024 |
| Grant date | — |
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The present disclosure relates to a duct valve for a clutch assembly of an off-road vehicle. The duct valve is configured to be coupled to a housing of the clutch assembly. The duct valve comprises a first duct attached to the housing and a first valve cage attached to the first duct. The first valve cage is configured to hold a first floatable element therewithin. The first floatable element is configured to have a first buoyancy and is configured to displace towards a first air opening of the first duct corresponding to a level of a liquid to seal the first air opening.
Opening claim text (preview).
What is claimed is: 1 . A duct valve for a continuously variable transmission (CVT) clutch assembly having a housing including a cover, the duct valve comprising: a first duct configured to be coupled to the housing of the clutch assembly; a first valve cage coupled to the first duct, the first valve cage comprising a first surface having at least one first opening. 2 . The valve of claim 1 , wherein the first surface is a first peripheral surface, the at least one first opening being a first side opening. 3 . The valve of claim 1 , wherein the first valve cage further comprises a first bottom surface having a first bottom opening, the first bottom opening substantially covering the first bottom surface thereof. 4 . The valve of claim 1 , wherein the valve cage includes a top opening smaller than a cross-section of the first valve cage. 5 . The valve of claim 4 , wherein the first valve cage is configured to comfortably hold a first floatable element therewithin, so as to provide a displacement of the first floatable element between a first top surface and a first bottom surface thereof, wherein the first floatable element is configured to have a dimension so as to cover the top opening of the valve cage. 6 . The valve of claim 5 , wherein the first floatable element is configured to have a first buoyancy so as to displace towards the first top surface of the first valve cage according to a liquid level when the first valve cage is at least partially submerged in a liquid medium. 7 . The valve of claim 5 , wherein the first floatable element is configured to cover a first air opening when the first valve cage is completely in the liquid medium, thereby preventing entering of the liquid within the clutch assembly from the first duct. 8 . The valve of claim 7 , wherein a top surface of the first valve cage is contoured to complement the shape of the first floatable element. 9 . The valve of claim 2 , further comprising a second duct coupled to the housing, the second duct coupled to a second valve cage defined by a second side opening, wherein a top of the second side opening is positioned vertically lower than the top of the first side opening of the first valve cage extending from the first duct. 10 . The valve of claim 9 , wherein the second valve cage comprises a second peripheral surface having at least one second side aperture and a second top surface coupled to the second duct, wherein the second valve cage is configured to comfortably hold a second floatable element therewithin so as to provide a comfortable displacement of the second floatable element therewithin, wherein the second floatable element is configured to have a second buoyancy so as to be displaced towards the second top surface according to a liquid level when the clutch assembly is at least partially in a liquid medium. 11 . The valve of claim 9 , wherein the second duct is defined by a second proximal end coupled to the housing and a second distal end coupled to the second valve cage and configured to provide a second air opening, and wherein the second floatable element is configured to substantially cover the second air opening when the clutch assembly is substantially immersed in a liquid medium, thereby preventing substantial entry of the liquid within the clutch assembly from the second duct. 12 . A duct valve for a continuously variable transmission (CVT) clutch assembly having a housing including a cover, the duct valve comprising: a first duct; a first valve cage coupled to the first duct, the first valve cage comprising a first peripheral surface having at least one first side opening; a second duct; and a second valve cage coupled to the second duct, the second valve cage comprising a second peripheral surface having at least one second side opening. 13 . The duct valve of claim 12 , wherein the top of the second side opening of the valve cage is vertically lower than the first side opening of the first valve cage. 14 . The valve of claim 12 , wherein each of the first valve cage and the second valve cage comprises a first bottom surface and a second bottom surface, respectively, the first bottom surface having a first bottom opening substantially covering the first bottom surface and the second bottom surface having a second bottom opening substantially covering the second bottom surface. 15 . The valve of claim 12 , wherein the first valve cage is configured to hold a first floatable element and the second valve cage is configured to hold a second floatable elements, wherein the first floatable element and the second floatable element are configured to have a first buoyancy and a second buoyancy, respectively, the first floatable element and the second floatable element configured to displace towards a first top surface of the first valve cage and a second top surface of the second valve cage, respectively, according to a liquid level when the clutch assembly is partially in a liquid medium. 16 . The valve of claim 15 , wherein the first floatable element and the second floatable element are configured to completely cover the first air opening and the second air opening when the clutch assembly is completely within the liquid medium, wherein the second air opening is configured to be covered before the first air opening. 17 . An off-road vehicle having an engine assembly, a continuously variable transmission (CVT) clutch assembly having a housing, and a duct valve for the clutch assembly, wherein the duct valve comprises a first duct, a first valve cage having a first side opening, a second duct, and a second valve cage having a second side opening. 18 . The vehicle of claim 17 , wherein the first duct is coupled to the housing of the CVT clutch assembly and configured to extend towards a first side of the vehicle and the second duct is coupled with the housing of the clutch assembly and configured to extend towards a second side, opposite to the first side, of the vehicle. 19 . The vehicle of claim 18 , wherein the second side opening is lower than the first side opening. 20 . The vehicle of claim 18 , wherein the first valve cage is configured to hold a first floatable element, and the second valve cage is configured to hold a second floatable element, wherein the first floatable element and the second floatable elements are configured to have a first buoyancy and a second buoyancy, respectively, the first floatable element and the second floatable element configured to displace towards a first top surface of the first valve cage and a second top surface of the second valve cage, respectively, according to a liquid level when the respective valve cages are partially immersed in a liquid medium.
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