Microwave suppression tunnel and related features
A continuous asphalt mix system for using a microwave heating vessel at the point of production that includes a microwave energy suppression tunnel with one or more mesh flaps for substantially reducing or preventing the leakage of microwave energy from a microwave system, while having a continuous flow of product through the vessel and suppression tunnels. The suppression tunnels are installed on the inlet and/or the outlet side of the system and are sized to suppress leakage.
1. A microwave suppression system, comprising:
a tunnel associated with a material inlet or a material outlet, the tunnel comprising at least one flexible and/or movable flap comprising a shielding mesh,
wherein the at least one flap is configured to absorb, deflect, or block microwave energy, and
wherein the at least one flap is configured to be deflected as a material passes through the tunnel and then to return to a resting, closed position when the material is no longer passing through the tunnel.
2. The microwave suppression system of claim 1 , wherein the shielding mesh of the flap is a metallic shielding mesh.
3. The microwave suppression system of claim 1 , wherein the metallic shielding mesh flap comprises stainless steel.
4. The microwave suppression system of claim 1 , wherein the flap has substantially the same cross-sectional size as the tunnel, and wherein the flap is shaped to conform to a shape of the tunnel.
5. The microwave suppression system of claim 1 , wherein the flap comprises a single-layer.
6. The microwave suppression system of claim 1 , wherein the flap comprises multiple layers.
7. The microwave suppression system of claim 1 , wherein the flap is folded or looped.
8. The microwave suppression system of claim 1 , wherein the flap is pivotable.
9. The microwave suppression system of claim 1 , wherein the flap is rigid.
10. The microwave suppression system of claim 1 , wherein the flap is coated.
11. The microwave suppression system of claim 10 , wherein the flap is coated with a polytetrafluoroethylene coating.
12. The microwave suppression system of claim 1 , wherein the at least one flap comprises at least two flaps spaced by an interval.
13. The microwave suppression system of claim 1 , wherein the flap is comprised within the tunnel.
14. The microwave suppression system of claim 1 , wherein the deflection of the flap comprises the flap pivoting along a top flap portion or axis, or a bending of the flap as the material passing through the tunnel applies a pressure to the flap.
15. The microwave suppression system of claim 1 , wherein the at least one flap is configured to be used with a microwave-based processing system comprising a microwave processing vessel and at least one microwave energy generator in order to reduce microwave emissions that would otherwise reach an outside of the microwave-based processing system.
16. The microwave suppression system of claim 15 , wherein the microwave-based processing system is configured to operate to process the material continuously.
17. The microwave suppression system of claim 1 , wherein the tunnel is an inlet tunnel or an outlet tunnel.
18. The microwave suppression system of claim 1 , wherein the at least one flap is configured to cover the inlet tunnel or the outlet tunnel.
19. The microwave suppression system of claim 1 , wherein the material inlet or material outlet are associated with an inlet side or an outlet side of a conveyor unit, respectively.
20. The microwave suppression system of claim 1 , wherein the shielding mesh of the flexible and/or movable flap is breathable.