Claims
- 1. A control element capable of modifying the microwave heating of a microwave heatable load,
- said control element having microwave reflective boundaries corresponding to a shape selected from closed loops and annular slots;
- said boundaries providing guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load, with dielectric materials when adjacent thereto, and with dielectric components of a microwave cavity or oven when the said control element is located beneath said load and when the load and element are supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- and said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load,
- the said control element being shaped in the form of a closed loop or annular slot whose mean circumference s is given by
- s=n.lambda..sub.o /2.sqroot..epsilon..sub.eff
- n is the mode order, and for resonance n is an even positive non-zero integer, and for anti-resonance n is an odd positive integer, and
- .epsilon..sub.eff is the effective dielectric constant adjacent to the element, and
- .lambda..sub.o is the free space wavelength of the microwaves.
- 2. A control element as claimed in claim 1 in thermal contact with a susceptor, in which the boundaries provide guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load and susceptor, said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load and the susceptor, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load and the susceptor.
- 3. A control element capable of modifying the microwave heating of a microwave heatable load,
- said control element having microwave reflective boundaries corresponding to a shape selected from open strips or slots;
- said boundaries providing guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load, with dielectric materials when adjacent thereto, and with dielectric components of a microwave cavity or oven when the said control element is located beneath said load and when the load and element are supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- and said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load,
- the said control element being shaped in the form of an open strip or slot whose length s is given by
- s=n.lambda..sub.o /2.sqroot..epsilon..sub.eff
- n is the mode order, and for resonance n is a positive non-zero integer, and
- .epsilon..sub.eff is the effective dielectric constant adjacent to the element, and
- .lambda..sub.o is the free space wavelength of the microwaves.
- 4. A control element as claimed in claim 3 in thermal contact with a susceptor, in which the boundaries provide guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load and susceptor, said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load and the susceptor, and from destructive interference to provide antiresonant reduction of microwave field intensities for reduced microwave heating of the load and the susceptor.
- 5. A control element capable of modifying the microwave heating of a microwave heatable load,
- said control element having microwave reflective boundaries corresponding to a shape selected from monopole strips or slots;
- said boundaries providing guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load, with dielectric materials when adjacent thereto, and with dielectric components of a microwave cavity or oven when the said control element is located beneath said load and when the load and element are supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- and said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load,
- the said control element being shaped in the form of a monopole strip or slot whose length s is given by
- s=(2k+1).lambda..sub.o /4.sqroot..epsilon..sub.eff
- k is zero or a positive integer, and
- .epsilon..sub.eff is the effective dielectric constant adjacent to the element, and
- .lambda..sub.o is the free space wavelength of the microwaves.
- 6. A control element as claimed in claim 5 in thermal contact with a susceptor, in which the boundaries provide guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load and susceptor, said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load and the susceptor, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load and the susceptor.
- 7. A method of controlling the heating of a microwave heatable load by microwave radiation, which comprises positioning a control element capable of modifying the microwave heating of a microwave heatable load when proximal thereto, and capable of providing reduced scorching of adjacent lossy packaging materials when a microwave heatable load is not proximal thereto,
- said control element having microwave reflective boundaries corresponding to a shape selected from closed loops or annular slots;
- said boundaries providing guidance of microwaves leading to destructive interference effects when said active element is not proximal to a microwave heatable load, by interaction with lossy packaging materials, and with dielectric components of microwave cavity or oven when the said control element is located thereon and supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- and said destructive interference effects providing anti-resonant reduction of microwave field intensities for reduced microwave heating or scorching of said adjacent lossy packaging materials when a microwave heatable load is not proximal thereto,
- the said control element being shaped in the form of a closed loop or annular slot whose mean circumference s is given by
- s=n.lambda..sub.o /2.sqroot..epsilon..sub.eff
- n is the mode order, and for resonance n is an even positive non-zero integer, and for anti-resonance n is an odd positive integer, and
- .epsilon..sub.eff is the effective dielectric constant adjacent to the element, and
- .lambda..sub.o is the free space wavelength of the microwaves.
- exposing said microwave heatable load to a heating cycle of microwave radiation to heat the load, and controlling the microwave heating of the load by modifying cooperatively the distribution of microwave heating in a preset pattern in dependence on the shape and dimensions of the control element.
- 8. A method of controlling microwave heating of a microwave heatable body by microwave radiation, which comprises:
- positioning at least one control element at least proximate to one or more faces of a microwave heatable load and a susceptor, said element having microwave reflective boundaries corresponding to a shape selected from strips, loops, patches, slots, apertures and combinations thereof,
- said boundaries providing guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load and susceptor, with dielectric materials when adjacent thereto, and with dielectric components of a microwave cavity or oven when the said control element and susceptor are located beneath said load and when the load, element, and susceptor are supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating of the load and susceptor, and from destructive interference to provide anti-resonant reduction of microwave field intensities for reduced microwave heating of the load and susceptor,
- exposing said microwave heatable load to a heating cycle of microwave radiation to heat the load, and controlling the microwave heating of the load by modifying cooperatively the distribution of microwave heating in a preset pattern in dependence on the shape and dimensions of the control element.
- 9. A method of controlling microwave heating of a microwave heatable body by microwave radiation, which comprises:
- positioning a plurality of control elements at least proximate to one or more faces of a microwave heatable load, said elements having microwave reflective boundaries corresponding to a shape selected from strips, loops, patches, slots, apertures and combinations thereof,
- said boundaries providing guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load, with dielectric materials when adjacent thereto, and with dielectric components of a microwave cavity or oven when the said control element is located beneath said load and when the load and element are supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- and said interference effects being selected from constructive interference to provide resonant intensification of the microwave fields for intensification of microwave heating locally within the load, and from destructive interference to provide anti-resonant reduction of microwave field intensities for locally reduced microwave heating of the load,
- exposing said microwave heatable load to a heating cycle of microwave radiation to heat the load, and
- modifying cooperatively the distribution of microwave heating in the microwave heatable load in a preset pattern by coupling the microwave fields of said individual control elements by field coupling means selected from direct connection of the elements, and from linkage of the fields across separating dielectric material and air gaps when the elements are exposed.
- 10. A method of controlling microwave heating of a microwave heatable body by microwave radiation as claimed in claim 9 in which the plurality of control elements is positioned proximate to one or more faces of a microwave heatable load and a susceptor,
- and in which said boundaries provide guidance of microwaves leading to specific interference effects by interaction with the microwave heatable load and the susceptor,
- said interference effects being selected from constructive interference to provide resonant intensification interference to provide resonant intensification of the microwave fields for intensification of microwave heating locally within the load and susceptor, and from destructive interference to provide anti-resonant reduction of microwave field intensities for locally reduced microwave heating of the load and susceptor.
- 11. A method of reducing scorching of lossy packaging materials that incorporate control elements for modifying the microwave heating of proximal microwave heatable loads, when the microwave heatable loads are not proximal thereto, which method comprises:
- positioning at least one control element at least proximate to one or more faces of a lossy packaging material, said element having microwave reflective boundaries corresponding to a shape selected from strips, loops, patches, slots, apertures and combinations thereof,
- said boundaries providing guidance of microwaves leading to destructive interference effects when said control element is not proximal to a microwave heatable load, by interaction with said adjacent lossy packaging materials, and with dielectric components of a microwave cavity or oven when the said control element is located thereon and supported thereby,
- said microwave reflective boundaries being formed by variation of constitutive parameters across the boundaries of the control element to provide contiguous regions with differing constitutive parameters selected from differing dielectric constants, differing magnetic permeabilities, and differing conductivities between the regions,
- said destructive interference effects providing anti-resonant reduction of microwave field intensities for reduced microwave heating or scorching of said adjacent lossy packaging materials when a microwave heatable load is not proximal thereto,
- exposing said lossy packaging material to a heating cycle of microwave radiation, and
- reducing scorching of the lossy packaging material in a preset pattern according to the shape and dimensions of the control element, and in dependence on the proximity of a microwave heatable load.
REFERENCE TO RELATED APPLICATION
This application is a divisional application of copending of U.S. patent application Ser. No. 08/529,074 filed Sep. 15, 1995 and a continuation-in-part of U.S. patent application Ser. No. 08/458,419 filed Jun. 2, 1995 (now abandoned).
US Referenced Citations (7)
Divisions (1)
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Number |
Date |
Country |
Parent |
529074 |
Sep 1995 |
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