Multi-way valve
A multi-way valve adapted to control a flow of fluid to different thermal fluid circuits includes a valve housing, a valve flow controller, and a scaling system. The valve flow controller is arranged in the valve housing to control flow through the valve housing. The scaling system is configured to seal between the valve housing and the valve flow controller.
1 . A multi-way valve comprising
a valve housing coupled to a manifold of thermal fluid circuits, the valve housing including a valve housing body and a housing cover coupled to the valve housing body, the valve housing body shaped to define a valve cavity and a plurality of apertures that open into the valve cavity, and the housing cover coupled to the valve housing to close a top opening to the valve cavity, and
a valve flow controller including a valve rotor arranged in the valve cavity of the valve housing body and configured to rotate relative to the valve housing body about a valve axis and an actuator coupled to the valve rotor to drive rotation of the valve rotor about the valve axis, wherein the valve rotor cooperates with the valve housing to define a plurality of flow paths when the valve rotor is rotated about the valve axis to a plurality of different predetermined positions to control a flow of fluid through the valve housing, and
a sealing system configured to seal between the valve rotor and the valve housing in the valve cavity, the sealing system including a seal coupled to the valve rotor for rotation therewith and arranged axially between the valve flow rotor and a bottom surface of the valve housing and a biasing assembly configured to selectively apply an axial force on the valve rotor to urge the valve rotor toward the plurality of apertures formed in the valve housing body when the valve rotor is in one of the plurality of different predetermined positions to increase sealing between the valve rotor and the valve housing,
wherein the plurality of apertures formed in the valve housing body include a center aperture that extends axially through the valve housing body at the valve axis and four outer apertures that are spaced apart circumferentially about the valve axis around the center aperture.
2 . The multi-way valve of claim 1 , wherein the biasing assembly includes a bias spring arranged around a valve rotor shaft of the valve rotor and configured to apply at least a portion of the axial force on the valve rotor to urge the valve rotor toward the plurality of apertures formed in the valve housing body and a spring cover that extends around the bias spring and couples to the valve rotor.
3 . The multi-way valve of claim 2 , wherein the biasing assembly further includes cam ramps on an axially facing surface of the housing cover of the valve housing and a cam surface on the spring cover configured to engage the cam ramps on the housing cover as the valve rotor rotates about the valve axis to the plurality of different predetermined positions.
4 . The multi-way valve of claim 1 , wherein the biasing assembly includes cam ramps on an axially facing surface of the housing cover of the valve housing and a cam surface on the spring configured to engage the cam ramps on the housing cover as the valve rotor rotates about the valve axis to the plurality of different predetermined positions.
5 . The multi-way valve of claim 1 , wherein the seal comprises polytetrafluoroethylene material.
6 . The multi-way valve of claim 1 , wherein the valve rotor includes a valve rotor body that extends circumferentially about the valve axis and a valve rotor shaft that extends axially from the valve rotor body through the housing cover of the valve housing to a terminal end located outside of the housing cover of the valve housing and coupled to the actuator.
7 . The multi-way valve of claim 6 , wherein the valve rotor body is shaped to define a first chamber that extends around at least two apertures included in the plurality of apertures that open into the valve cavity and a second chamber separate from the first chamber that extends around at least two different apertures included in the plurality of apertures that open into the valve cavity.
8 . The multi-way valve of claim 6 , wherein the valve rotor body includes a valve rotor plate that extends circumferentially about the valve axis, a first flow divider member that extends axially away from the valve rotor plate and defines a first chamber that extends around at least two apertures included in the plurality of apertures that open into the valve cavity, and a second flow divider member that extends axially away from the valve rotor plate and defines a second chamber separate from the first chamber that extends around at least two different apertures included in the plurality of apertures that open into the valve cavity.
9 . A multi-way valve comprising
a valve housing coupled to a manifold of thermal fluid circuits, the valve housing including a valve housing body and a housing cover coupled to the valve housing body, the valve housing body shaped to define a valve cavity and a plurality of apertures that open into the valve cavity, and the housing cover coupled to the valve housing to close a top opening to the valve cavity, and
a valve flow controller including a valve rotor arranged in the valve cavity of the valve housing body and configured to rotate relative to the valve housing body about a valve axis and an actuator coupled to the valve rotor to drive rotation of the valve rotor about the valve axis, wherein the valve rotor cooperates with the valve housing to define a plurality of flow paths when the valve rotor is rotated about the valve axis to a plurality of different predetermined positions to control a flow of fluid through the valve housing, and
a sealing system configured to seal between the valve rotor and the valve housing in the valve cavity, the sealing system including a seal coupled to the valve rotor for rotation therewith and arranged axially between the valve flow rotor and a bottom surface of the valve housing and a biasing assembly configured to selectively apply an axial force on the valve rotor to urge the valve rotor toward the plurality of apertures formed in the valve housing body when the valve rotor is in one of the plurality of different predetermined positions to increase sealing between the valve rotor and the valve housing,
wherein the seal of the sealing system includes an outer ring that extends circumferentially about the valve axis at an outer edge of the valve housing body and a dividing member that extends between opposite sides of the outer ring.
10 . The multi-way valve of claim 9 , wherein the plurality of apertures formed in the valve housing body include a center aperture that extends axially through the valve housing body at the valve axis and four outer apertures that are spaced apart circumferentially about the valve axis around the center aperture.
11 . A multi-way valve comprising
a valve housing that extends axially along a valve axis, the valve housing formed to include a valve cavity and a plurality of apertures that open into the valve cavity,
a valve flow controller including a valve rotor arranged in the valve cavity of the valve housing and configured to rotate relative to the valve housing about a valve axis and an actuator coupled to the valve rotor to drive rotation of the valve rotor about the valve axis, wherein the valve rotor cooperates with the valve housing to define a plurality of flow paths when the valve rotor is rotated about the valve axis to a plurality of different predetermined positions to control a flow of fluid through the valve housing, and
a sealing system configured to seal between the valve rotor and the valve housing in the valve cavity, the sealing system including a seal coupled to the valve rotor for rotation therewith and arranged axially between the valve flow rotor and a bottom surface of the valve housing and biasing means for applying an axial force on the valve rotor to urge the seal into engagement with the bottom surface of the valve housing when the valve rotor is in one of the plurality of different predetermined positions to improve sealing between the valve rotor and the valve housing and for removing at least some of the axial force on the valve rotor to reduce friction between the seal and the valve housing when the valve rotor is rotated about the valve axis from one position to another position included in the plurality of different predetermined positions,
wherein the valve housing includes a valve housing body and a housing cover coupled to the valve housing body, the valve housing body shaped to define the valve cavity and the plurality of apertures that open into the valve cavity, and the housing cover coupled to the valve housing to close a top opening to the valve cavity, and
wherein the plurality of apertures formed in the valve housing body include a center aperture that extends axially through the valve housing body at the valve axis and four outer apertures that are spaced apart circumferentially about the valve axis around the center aperture.
12 . The multi-way valve of claim 11 , wherein the biasing means includes a bias spring arranged around a valve rotor shaft of the valve rotor and configured to apply at least a portion of the axial force on the valve rotor to urge the valve rotor toward the plurality of apertures formed in the valve housing body and a spring cover that extends around the bias spring and couples to the valve rotor.
13 . The multi-way valve of claim 12 , wherein the biasing means further includes cam ramps on an axially facing surface of the housing cover of the valve housing and a cam surface on the spring cover configured to engage the cam ramps on the housing cover as the valve rotor rotates about the valve axis to the plurality of different predetermined positions.
14 . The multi-way valve of claim 11 , wherein the biasing means includes cam ramps on an axially facing surface of the housing cover of the valve housing and a cam surface on the spring rotor configured to engage the cam ramps on the housing cover as the valve rotor rotates about the valve axis to the plurality of different predetermined positions.
15 . The multi-way valve of claim 11 , wherein the seal comprises polytetrafluoroethylene material.
16 . The multi-way valve of claim 11 , wherein the valve rotor includes a valve rotor body that extends circumferentially about the valve axis and a valve rotor shaft that extends axially from the valve rotor body through the housing cover of the valve housing to a terminal end located outside of the housing cover of the valve housing and coupled to the actuator.
17 . The multi-way valve of claim 16 , wherein the valve rotor body is shaped to define a first chamber that extends around at least two apertures included in the plurality of apertures that open into the valve cavity and a second chamber separate from the first chamber that extends around at least two different apertures included in the plurality of apertures that open into the valve cavity.
18 . The multi-way valve of claim 16 , wherein the valve rotor body includes a valve rotor plate that extends circumferentially about the valve axis, a first flow divider member that extends axially away from the valve rotor plate and defines a first chamber that extends around at least two apertures included in the plurality of apertures that open into the valve cavity, and a second flow divider member that extends axially away from the valve rotor plate and defines a second chamber separate from the first chamber that extends around at least two different apertures included in the plurality of apertures that open into the valve cavity.