1460732023-46d02732-3592-4030-8987-77728713fe54

1. A method of making a baked product having first and second outer regions opposing each other and an intermediate region interposed therebetween in a baking mold including a first exterior element having at least one first baking cavity, a second exterior element having at least one second baking cavity, and an intermediate supportive element disposed between the first and second exterior elements and having at least one operational channel so that said at least one first baking cavity, said at least one second baking cavity, and said at least one operational channel define at least one baking chamber, said method comprising:
at least partially filling said at least one baking chamber with dough, so as to form said first and second outer regions and said intermediate region respectively within each of said at least one first baking cavity, said at least, one second baking cavity and said at least one operational channel;
exposing said at least one baking chamber of the baking mold to an outside heat causing initial baking and solidifying of said dough within said at least one baking chamber;
directly exposing said oppositely disposed first and second outer regions of the product to said outside heat;
supporting said product by said at least one operational channel of said intermediate supportive element; and
continuing baking said product so as to form a crust on said first and second oppositely disposed outer regions.
2. The method according to claim 1, wherein, in said exposing said at least one baking chamber of the baking mold to an outside heat, formation of the crust being prevented or minimized in said first and second oppositely disposed outer regions of the baked product.
3. The method according to claim 2, wherein:
said at least one first baking cavity and said at least one second baking cavity each comprises a mesh screen; and
said crust formation is manipulated by slowly raising the temperature within the at least one baking chamber so as to minimize the temperature variation between inside and outside of the dough and to allow developed gases to escape from the at least one baking chamber through said mesh screen.
4. The method according to claim 1, further comprising detecting a condition of said dough within said at least one baking chamber prior to said directly exposing.
5. The method according to claim 4, further comprising ejecting a finally baked product from said at least one operational channel of said intermediate supportive element.
6. A method according to claim 5, wherein:
said intermediate supportive element is defined by at least a pair of supportive members movably connected to each other;
each of said at least the pair of supportive members is formed with at least one recess; and
corresponding recesses of the at least the pair of supportive members are configured to define, in combination, said at least one respective operational channel, such that in said ejecting the finally baked product, supportive members are separated, facilitating ejection of said finally baked product from said intermediate supportive element.
7. The method according to claim 6, wherein each of said at least the pair of supportive members is formed with recesses forming, in combination, corresponding operational channels.
8. The method according to claim 1, wherein, in said at least partially filling said at least one baking chamber with dough, said first outer region of the baked product is formed within said at least one first baking cavity of the first exterior element and said second outer region is formed within said at least one second baking cavity of the second exterior element, and said intermediate region is formed within said at least one operational channel of said intermediate supportive element.
9. The method according to claim 6, wherein, in said detecting the condition of said dough, upon detecting of a predetermined degree of viscosity of the dough within said at least one baking chamber, a signal is generated causing separation of said supportive members.
10. The method according to claim 7, wherein said first exterior element is provided with a plurality of the first baking cavities and said second exterior element is formed with a plurality of the second baking cavities, so that a plurality of continuous baking chambers is formed within said baking mold.
11. A method of producing a baked product, comprising:
removably interconnecting a first structural portion, a second structure portion and an intermediate structural portion such that said intermediate structural portion is interposed between said first and second structural portions, said intermediate structural portion defining an operational channel extending between a first channel opening and a second channel opening of said intermediate structural portion, said first structural portion including a first hollow region having a first opening and said second structural portion including a second hollow region having a second opening, said removably interconnecting including bringing said first opening and said second opening of said first and second structural portions each into communication with a corresponding one of said first channel opening and said second channel opening such that said operational channel provides communication between said first hollow region of said first structural portion and said second hollow region of said second structural portion, said first hollow region, said second hollow region and said operational channel thereby collectively defining at least a portion of a baking chamber;
at least partially filling said baking chamber with a desired amount of a dough;
baking the dough in said baking chamber by exposing said baking chamber to heat;
creating a separation between said first opening and said second opening of said first and second structural portions and the corresponding one of each of said first and second channel openings when the dough is formed into a partially baked product which is sufficiently solidified to be supportable by the operational channel of the intermediate structure to thereby directly expose to baking conditions extended portions of the partially baked product which protrude from said first and second channel openings and which were formed within said first and second hollow regions during said partially baking; and
continuing said baking to transform the partially baked product into the baked product having a crust on said extended portions thereof.
12. A method of preparing a baked product, comprising:
filling a desired amount of a dough in a baking chamber;
baking the dough in said baking chamber by exposure thereof to heat to initially form a partially baked product which is sufficiently firm so as to be self-supportive;
directly exposing extended portions of the partially baked product located outward of a central portion of the partially baked product to the ambient heat; and
continuing the baking to transform the partially baked product into the baked product having a crust formed on the extended portions.
13. A method of preparing a baked product, comprising:
providing a baking chamber comprised of first and second outer chamber portions and an intermediate chamber portion interposed between said first and second outer chamber portions;
at least partially filling said baking chamber with a desired amount of a dough;
baking the dough in said baking chamber by exposure thereof to heat to form a partially baked product including an intermediate product portion being disposed within said intermediate chamber portion and extended product portions which protrude from said intermediate chamber portion into said first and second outer chamber portions;
exposing said extended product portions of the partially baked product directly to said heat by moving said first and second outer chamber portions away from said intermediate chamber portion when the partially baked product is sufficiently solidified to be self-supportable in the intermediate chamber portion; and
continuing baking the partially baked product to form the baked product which includes a crust formed on each of said extended portions thereof.
14. The method according to claim 13, wherein said at least partially filling includes injecting the dough through an opening in structure defining the baking chamber.
15. The method according to claim 13, further comprising detecting a critical point in the baking for proceeding with said directly exposing, said detecting including measuring a viscosity of the partially baked product.
16. The method according to claim 13, wherein said baking the dough in said baking chamber with the extended product portions which protrude from said intermediate chamber into said first and second outer chamber portions includes inhibiting crust formation before said directly exposing is carried out.
17. The method according to claim 13, wherein at least a portion of structure defining the baking chamber is in a form of a mesh.
18. The method according to claim 13, wherein moving said first and second outer chamber portions away from said intermediate chamber portion is initiated in response to detecting that the partially baked product is sufficiently solidified to be self-supportable by the intermediate chamber portion.
19. The method according to claim 16, wherein said inhibiting includes defining said first and second outer chamber portions by a structure having a low specific heat which surrounds the partially baked product on all sides.
20. The method according to claim 16, wherein said inhibiting includes slowly raising a temperature of from a time when the dough in said baking chamber is exposed thereto, so as to minimize a difference in temperature between an inside and an outside of the dough.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A shell structure with a ring clip, the shell structure having a retainer hole bored therethrough, characterized by:
the ring clip comprising a head portion and an adjoining neck portion, the head portion being exposed outside the shell structure, the neck portion extending through the retainer hole of the shell structure and hooking a inner wall of the shell structure, the neck portion having a cone shape with a slope, and the ring clip capable of rotating freely relative to the shell body.
2. The shell structure with a ring clip of claim 1, wherein the head portion has a through slot for insertion by an external string.
3. The shell structure with a ring clip of claim 1, wherein the head portion includes a skirt formed at the bottom thereof, the diameter of the skirt larger than the diameter of the retainer hole for preventing the head portion from falling into the shell body.
4. The shell structure with a ring clip of claim 1, wherein the neck portion further comprises a retainer portion extending from the bottom of the neck portion.
5. The shell structure with a ring clip of claim 1, wherein the neck portion is gradually shrunk from the interior of the shell body to the exterior of the shell body.
6. The shell structure with a ring clip of claim 1, wherein the neck portion is gradually shrunk from the exterior of the shell body to the interior of the shell body.
7. The shell structure with a ring clip of claim 1, wherein the height of the neck portion is longer than the depth of the retainer hole of the shell body for enabling the neck portion to move slightly back and forth relative to the shell body.