Abstract:
A pumping assembly keeps a pneumatic tire from becoming underinflated. The pumping assembly includes an even number of pumps attached to the tire rim, a gravity mass for producing a pumping action, a cam fixed to the gravity mass for maintaining the cam in a fixed position relative to the gravity mass, and rollers for engaging the cam and producing the pumping action as the tire rim rotates and the gravity mass retards rotation of the cam as the tire rim rotates.
Abstract:
A tire inflation system and a method of control. Tire inflation pressure may be adjusted based on a target tire pressure that may vary with vehicle load.
Abstract:
A valve stem-based air maintenance tire assembly and method of operation is provided employing a tire mounted air pumping system, The assembly includes a rim-mounted pressure regulator positioned within a tire cavity opposite an inward end of a tire valve stem to selectively open and close pressurized air flow from a valve stem internal passageway into the tire cavity. An elongate valve stem shaft is mounted within the valve stem air passageway and reciprocally moves axially to close off and open the valve stem air passageway to create or close a pressurized air path into the tire cavity as needed.
Abstract:
The invention provides a method of mounting a device to a tire comprising the following steps: buffing an inside surface of the tire, forming a rubber layer and a rubber extension on a mounting surface of the device, wherein the rubber extension extends past the support frame; applying rubber cement to the mounting surface and then affixing the mounting surface of the device to the inside surface; and then curing the rubber cement.
Abstract:
The invention relates generally to a pneumatic rubber tire which contains an outer, annular, circular groove which contains a flexible tube bonded to the walls of the groove.
Abstract:
A tire support apparatus includes a support plate for receiving a tire includes an optional inflatable inner tube for insertion into the tire cavity, and an upper plate having a hole for receiving a support member, the upper plate further includes a ring having an inner lip that seats against the bead region of the tire and a radially outer surface that seats against the lower sidewall region of the tire T.
Abstract:
A self-inflating tire assembly includes an air tube connected to a tire and defining an air passageway, the air tube being composed of a flexible material operative to allow an air tube segment opposite a tire footprint to flatten, closing the passageway, and resiliently unflatten into an original configuration. The air tube is sequentially flattened by the tire footprint in a direction opposite to a tire direction of rotation to pump air along the passageway to a regulator device. The regulator device regulates the inlet air flow to the air tube and the outlet air flow to the tire cavity.
Abstract:
An air maintenance tire includes an air inlet housing affixed to the inner liner of a tire. An elongate sidewall air pumping passageway is incorporated within a first tire sidewall. An intake conduit and an elongate tubular inlet conduit are provided having a quick connect/disconnect latching attachment to sockets formed by the air inlet housing.
Abstract:
A tire assembly for a road vehicle is provided. The assembly includes a tire and first and second expandable chambers positioned within the tire. A series of actuators for selectively pumping air to the first and second chambers is provided, wherein the assembly includes a third chamber arranged between the first and second chambers. Each of the actuators is pneumatically connected to the first, second and third chambers by way of a radial air loop, wherein the radial air loop has a first chamber valve, a second chamber valve, an actuator valve, and a third chamber valve.
Abstract:
An energy extraction system for a rotational surface including a drive mechanism having a rotational axis and configured to rotatably couple to the rotational surface and an energy extraction mechanism coupled to the drive mechanism. The drive mechanism includes a cam rotatable about the rotational axis and an eccentric mass coupled to the cam that offsets a center of mass of the drive mechanism from the rotational axis, the eccentric mass cooperatively formed by a first and a second section, the eccentric mass operable between a connected mode wherein the first and second sections are adjacent and a disconnected mode wherein the first and second sections are separated. The energy extraction mechanism is connected to the cam and is statically coupled to the rotating surface, wherein the energy extraction mechanism configured to extract energy from relative rotation between the energy extraction mechanism and the cam.