AUTOMATIC FRYER
20180325317 ยท 2018-11-15
Assignee
Inventors
- Charles Leader (Napoleon, OH, US)
- Chuck Tomecek (Edgerton, OH, US)
- John Hill (Bryan, OH, US)
- Dave Casler (Defiance, OH, US)
- Michael Manzella (Toledo, OH, US)
- Rick Baden (Napoleon, OH, US)
- William M. Casey (Kettering, OH, US)
- Melissa M. Hohler (Kettering, OH, US)
- Edward J. Florkey (Vandalia, OH, US)
- Manouchehr Shirali (Richmond, IN, US)
- Douglas A. Burkett (Eaton, OH)
- Mark Gogel (Richmond, IN, US)
- Brian K. Brooks (Wilmington, OH, US)
Cpc classification
A47J37/1214
HUMAN NECESSITIES
A47J37/1266
HUMAN NECESSITIES
A47J37/1228
HUMAN NECESSITIES
International classification
Abstract
An automatic fryer apparatus and method of frying food products includes a cooking chamber, a heating mechanism disposed in the cooking chamber, and a pump disposed at an end of the cooking chamber to circulate cooking medium within the cooking chamber. Food product is added to the cooking chamber and flows along with the cooking medium in a flow direction. A controller controls a plurality of gates by individually actuating each gate. The controller stores data regarding predetermined time periods, which regulate when to raise and lower each gate. Food product moves downstream of each gate along a flow direction when each respective gate is raised. Food product is automatically transferred to a holding station when it reaches an outlet end of the cooking chamber.
Claims
1. A method for automatically cooking food products comprising: circulating cooking medium through a fryer apparatus in a flow direction using a pump; delivering food product to an inlet end of the fryer apparatus; actuating a first gate from a first lowered position to a first raised position after a first predetermined amount of time, wherein food product moves downstream of the first gate along the flow direction in response to the circulation of cooking medium while the first gate is in the first raised position; returning the first gate from the first raised position to the first lowered position after a second predetermined amount of time; actuating a second gate from a second lowered position to a second raised position after a third predetermined amount of time, wherein food product moves downstream of the second gate along the flow direction in response to the circulation of cooking medium while the second gate is in the second raised position; returning the second gate from the second raised position to the second lowered position after a fourth predetermined amount of time; and transferring food product from the fryer apparatus at an outlet end downstream from the second gate in the flow direction.
2. A method for automatically cooking food products comprising: circulating cooking medium through a fryer apparatus using a pump; heating the cooking medium while the cooking medium is circulating to maintain a substantially constant temperature of the cooking medium; delivering food product to an inlet end of the fryer apparatus; maintaining food product in a first section of the fryer apparatus proximate to the inlet end; actuating a first gate, such that food product moves downstream of the first gate into a second section of the fryer apparatus; maintaining food product in the second section of the fryer apparatus; actuating a second gate, such that food product moves downstream of the second gate into a third section of the fryer apparatus; and transferring food product to a holding station at an outlet end of the fryer apparatus.
3. The method of claim 2, further comprising: maintaining food product in the third section of the fryer apparatus; actuating a third gate, such that the food product moves downstream of the third gate into a fourth section of the fryer apparatus proximate to the holding station.
4. The method of claim 2, wherein maintaining food product in the first section further comprises waiting a first predetermined amount of time before actuating the first gate; and wherein maintaining food product in the second section further comprises waiting a second predetermined amount of time before actuating the second gate.
5. The method of claim 4, wherein the fryer apparatus further comprises a controller configured to actuate the first gate after the first predetermined amount of time and actuate the second gate after the second predetermined amount of time are programmable by an operator.
6. The method of claim 5, wherein data corresponding the first predetermined amount of time and the second predetermined amount of time are stored in a non- volatile computer readable medium for use by the controller.
7. The method of claim 2, wherein actuating the first gate comprises: raising the first gate; maintaining the first gate in a first raised position for a first delay period in order to allow food product to flow beneath the first gate in a flow direction of the circulating cooking medium; and lowering the first gate after the first delay period ends.
8. The method of claim 7, wherein after lowering the first gate, the food product is located downstream relative to the first gate, and wherein the second gate is configured to prevent food product from continuing in the flow direction for at least a second predetermined amount of time.
9. The method of claim 8, wherein actuating the second gate comprises: raising the second gate after lowering the first gate; maintaining the second gate in a second raised position for a second delay period in order to allow the food product to flow beneath the second gate in the flow direction; and lowering the second gate after the second delay period ends.
10. A fryer apparatus comprising: a cooking chamber configured to hold a cooking medium and configured to receive food product; a heating mechanism disposed in the cooking chamber, wherein the heating mechanism is configured to heat the cooking medium; a pump connected to the cooking chamber, wherein the pump is configured to circulate the cooking medium within the cooking chamber; a ledge connected to a first end of the cooking chamber and extending into the cooking chamber towards a second end, wherein the second end is opposite the first end; a false bottom configured to rest on the ledge; and a first gate and a second gate configured to be separately and individually actuated from a first position to a second position to permit food product to flow with the circulating cooking medium from the first end to the second end in a flow direction, wherein each of the first gate and the second gate are configured to be in contact with the false bottom when in the respective first position, wherein food product moves downstream of the first gate along the flow direction in response to the circulation of cooking medium while the first gate is in the second position, and wherein food product moves downstream of the second gate along the flow direction in response to the circulation of cooking medium while the second gate is in the second position.
11. The fryer apparatus of claim 10, wherein each of the first gate and the second gate are configured to be spaced from the false bottom when in the respective second position.
12. The fryer apparatus of claim 10, wherein the second gate is spaced from the first gate in the flow direction such that the second gate is located downstream relative to the first gate.
13. The fryer apparatus of claim 10, further comprising: a perforated sheet connected to the ledge and to the second end of the cooking chamber, wherein the perforated sheet is configured to maintain food product in a portion of the cooking chamber disposed above the ledge.
14. The fryer apparatus of claim 10, further comprising: a controller configured to automatically actuate the first gate after a first time period and configured to automatically actuate the second gate after a second time period, wherein the second time period ends after the first time period ends.
15. The fryer apparatus of claim 14, wherein data corresponding to the first time period and the second time period are stored in a non-volatile computer readable medium for use by the controller.
16. The fryer apparatus of claim 15, further comprising: a third gate configured to be individually actuated from the respective first position to the second position, wherein the third gate is spaced from the second gate in the flow direction that the third gate is downstream relative to the first gate and the second gate.
17. The fryer apparatus of claim 16, wherein the controller is further configured to automatically actuate the third gate after a third time period, wherein the third time period ends after the second time period ends, and wherein data corresponding to the third time period is stored in the non-volatile computer readable medium for use by the controller.
18. The fryer apparatus of claim 10, further comprising: an inlet pipe configured to allow cooking medium to enter the cooking chamber from the pump; and an outlet pipe configured to allow cooking medium to exit the cooking chamber and enter the pump, wherein the outlet pipe is arranged downstream of the inlet pipe to provide circulation of cooking medium in the flow direction.
19. The fryer apparatus of claim 18, the inlet pipe further comprising: a filter configured to prevent food products from entering the inlet pipe.
20. The fryer apparatus of claim 10, further comprising: a holding station disposed downstream of the second gate along the flow direction; wherein the holding station is configured to receive food product from an outlet end of the fryer apparatus.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] For a more complete understanding of the present invention, needs satisfied thereby, and the objects, features, and advantages thereof, reference is now made to the following description taken in connection with the accompanying drawings.
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DETAILED DESCRIPTION OF THE INVENTION
[0022] Preferred embodiments of the present invention, and their features and advantages, may be understood by referring to
[0023] Referring to
[0024] Cooking medium 108 may be circulated through the fryer apparatus 100 by a pump 101 in a flow direction X to create a flume that transports food product throughout the cooking process. Cooking medium 108 may enter the fryer apparatus 100 through pump outlet 109, flow in direction X through the fryer apparatus 100, and back into the pump 101 through pump inlet 110. Any suitable pump may be implemented for pump 100, including, but not limited to, a centrifugal pump, a gear pump, a vane pump, a roller pump, or a diaphragm pump. A filter manifold 116 may be disposed such that the cooking medium 108 passes through the filter manifold 116 as it flows in direction X between pump inlet 110 and pump outlet 109.
[0025] In order to facilitate the circulation of cooking medium 108, false bottom 102 and ledge 103 may be spaced from inlet end wall 105. A filter 112 may connect ledge 103 to inlet end wall 105. The filter 112 may be perforated sheet metal or any other suitable material configured to allow oil to flow from pump outlet 109 to pump inlet 110 in flow direction X. The filter 112 is configured to prevent the food products from sinking below false bottom 102 and ledge 103 and to ensure the food products flow in direction X, along the flow of cooking medium 108. Upon reaching outlet end wall 106, the food products may be transferred to a holding station (not shown). A second filter (not shown) prevents food products from entering pump inlet 110. The filter manifold 116 may include another filtering mechanism, such as a paper filter, metal mesh, or other mechanism suitable for use with heated cooking medium. Filter manifold 116 may be removable for easy cleaning of accumulated filtered particles. A heating element 104 may be disposed in fryer apparatus 100 for heating the cooking medium 108. The heating element 104 may be an electric heater or any other suitable heating mechanism.
[0026] The flow of food products from inlet end wall 105 to outlet end wall 106 may be controlled by a plurality of gates. First gate 120, second gate 122, and third gate 124 are each in a lowered position when the food products are placed in the fryer apparatus 100. In the lowered position, the first gate 120, second gate 122, and third gate 124 may each be in contact with the false bottom 102, or located relative to the false bottom 102 such that food product does not pass by the first gate 120, second gate 122, or third gate 124 in the lowered position. First gate 120 will prevent the food products from continuing to move in flow direction X until first gate 120 is raised.
[0027] After a predetermined period of time, first gate 120 may be raised and the food products may continue to flow in direction X due to the flow of the cooking medium 108. After a second predetermined period of time, first gate 120 may be lowered. At this time, the food products are located in the cooking medium 108 between first gate 120 and second gate 122.
[0028] After a third predetermined period of time, second gate 122 is raised and the food products may continue to flow in direction X due to the flow of the cooking medium 108. After a fourth predetermined period of time, second gate 122 may be lowered. The food products are then located in the cooking medium 108 between second gate 122 and third gate 124. Similarly, after a fifth predetermined period of time, third gate 124 may be raised and the food products may continue to flow in direction X due to the flow of the cooking medium 108. After a sixth predetermined period of time, third gate 124 may be lowered and the food products may be automatically transferred to a holding station (not shown) upon reaching outlet end 106. Gates 120, 122, 124 may be raised and lowered along direction a.
[0029] Actuating the gates may occur by any suitable mechanism that blocks the flow of food products in one position, and allows food products to flow downstream of the gate in a second position, for example by pivoting the gates. Actuating gates 120, 122, 124 by raising and lowering the gates is an exemplary embodiment of the present invention. Alternatively, gates 120, 122, 124 may be actuated to swing open about a pivot point. The cooking process using gates 120, 122, 124 may allow cooking of multiple batches of food product to increase the output of fryer apparatus 100.
[0030] Gates 120, 122, 124 may be raised and lowered by any suitable actuator, including but not limited to electric or pneumatic actuators. The raising and lowering of the gates may be automatically controlled by any suitable processor or controller. Data related to the predetermined time periods, defining when each gate is to be raised and lowered, may be stored on any suitable non-volatile computer readable medium. The data may be accessible by the processor or controller. This enables using fryer apparatus 100 to cook different types of food products and allows for customized settings for each particular food product. While the fryer apparatus 100 is shown with three gates in
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[0037] While the invention has been described in connection with preferred embodiments, it will be understood by those of ordinary skill in the art that other variations and modifications of the preferred embodiments described above may be made without departing from the scope of the invention. Other embodiments will be apparent to those of ordinary skill in the art from a consideration of the specification or practice of the invention disclosed herein. The specification and described examples are considered exemplary only, with the true scope and spirit of the invention indicated by the following claims.