Systems and methods for bladderless tire curing
A system for curing tires that does not require a traditional bladder is described. The system disclosed has top and bottom assembly rings that are coupled to modified mold rings. The bottom assembly ring has a curing medium delivery system, which has ports and a diverter that disperses the curing medium thereby reducing the momentum of the curing medium striking a liner of the tire being cured. The system is adapted for easy installation to existing center post presses.
1. A bladderless curing system for curing a green tire where the green tire has an interior surface with a liner, comprising: mold rings that are coupled to the green tire forming a sealed cavity defined by the interior surface of the green tire; an injection cap having at least one injection port; and a diverter having a periphery extending around the injection cap and defining a diverter cavity into which a curing medium flows from the injection port, the diverter defining an elongated gap extending along the periphery and through which the curing medium flows from the diverter cavity into the sealed cavity, wherein the diverter is configured to divert the curing medium through the elongated gap such that passage of the curing medium through the elongated gap induces turbulence in a flow of the curing medium causing the curing medium to disperse within the sealed cavity prior to striking the liner thereby reducing momentum of the curing medium striking the liner, wherein the injection cap has a hole for receiving an inner post of a center post press, and wherein the injection cap defines a portion of the diverter cavity.
2. The system of claim 1 , wherein the elongated gap is defined by the diverter and a surface of a bottom ring assembly.
3. The system of claim 1 , wherein the curing medium is received by the diverter cavity from a plurality of injection ports.
4. The system of claim 1 , wherein the diverter is configured to divert the curing medium such that the curing medium deflects off of a surface defining the elongated gap as the curing medium is exiting the diverter cavity.
5. The system of claim 1 , further comprising a bottom ring assembly and a top ring assembly.
6. The system of claim 5 , wherein the elongated gap is defined by a surface of the bottom ring assembly.
7. The system of claim 1 , wherein the diverter surrounds the injection cap.