CN109566677B - A one-way oil supply unit and food fryer for food fryer - Google Patents

A one-way oil supply unit and food fryer for food fryer Download PDF

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Publication number
CN109566677B
CN109566677B CN201811460354.9A CN201811460354A CN109566677B CN 109566677 B CN109566677 B CN 109566677B CN 201811460354 A CN201811460354 A CN 201811460354A CN 109566677 B CN109566677 B CN 109566677B
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China
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channel
oil
way
tank
food fryer
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Expired - Fee Related
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CN201811460354.9A
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Chinese (zh)
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CN109566677A (en
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不公告发明人
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21BBAKERS' OVENS; MACHINES OR EQUIPMENT FOR BAKING
    • A21B5/00Baking apparatus for special goods; Other baking apparatus
    • A21B5/08Apparatus for baking in baking fat or oil, e.g. for making doughnuts

Abstract

The invention provides a one-way oil supply assembly for a food fryer and the food fryer, wherein the one-way oil supply assembly for the food fryer comprises a dredging pressing plate, a supply pipe and a one-way supply structure which are sequentially connected; the dredging press plate is arranged at the bottom in the oil tank; the one-way supply structure is externally connected with a lift pump; the unidirectional supply structure comprises an inner shaft core piece, an outer shaft sleeve piece, an upper fixed end sleeve and a lower fixed end sleeve; the outer shaft sleeve is fixed on the inner shaft core piece through an upper fixed end sleeve and a lower fixed end sleeve, and a middle channel is formed between the outer shaft sleeve and the inner shaft core piece; the upper end part of the inner shaft core piece is provided with an upper channel and an upper connecting port which is connected with the upper channel and the middle channel, and the lower end part of the inner shaft core piece is provided with a lower channel and a lower connecting port which is connected with the lower channel and the middle channel; the upper channel, the middle channel and the lower channel are connected in sequence; the one-way feed structure further includes a spring fitted over the inner shaft core member and located within the intermediate passage and a piston seal provided at an end of the spring.

Description

A one-way oil supply unit and food fryer for food fryer
Technical Field
The invention relates to the technical field of food processing equipment, in particular to a one-way oil supply assembly for a food frying machine and the food frying machine.
Background
In the existing food frying machine, when food materials are fried, the oil tank is gradually reduced along with the increase of the frying time. If oil is to be added, the tank must be cooled before it is added. Otherwise the operator is easily splashed by hot oil during the oiling process.
Disclosure of Invention
In order to solve the technical problems, the invention provides a one-way oil supply assembly for a food frying machine and the food frying machine, which can supply oil into an oil tank from bottom to top in the frying process.
In order to achieve the purpose, the invention provides the following technical scheme:
a unidirectional oil supply assembly for a food fryer comprises a dredging pressing plate, a supply pipe and a unidirectional supply structure which are sequentially connected;
the dredging press plate is arranged at the bottom in the oil tank;
the one-way supply structure is externally connected with a lift pump;
the dredging press plate is used for converting the vertical feeding direction of the unidirectional feeding structure into a plurality of horizontal feeding directions diffused along the periphery of the dredging press plate;
the unidirectional supply structure comprises an inner shaft core piece, an outer shaft sleeve piece, an upper fixed end sleeve and a lower fixed end sleeve;
the outer axial set is fixed to the inner core piece by the upper and lower fixed end sleeves and an intermediate passage is formed between the outer axial set and the inner core piece; the upper end part of the inner shaft core piece is provided with an upper channel and an upper connecting port for connecting the upper channel with the middle channel, and the lower end part of the inner shaft core piece is provided with a lower channel and a lower connecting port for connecting the lower channel with the middle channel; the upper channel, the middle channel and the lower channel are connected in sequence;
the one-way feed structure further comprises a spring sleeved on the inner shaft core member and positioned in the middle channel and a piston seal arranged at the end part of the spring; when the spring is in a natural state, the piston sealing element is positioned below the upper connecting port, and when the spring is in a compressed state, the piston sealing element is positioned above the upper connecting port.
As an embodiment, the direction of the upper channel and the direction of the middle channel are the same.
As an embodiment, the direction of the lower channel is the same as the direction of the middle channel.
As an embodiment, the dredging press plate comprises a plate body, a pipe groove which is arranged on the plate body and is used for embedding the upper end part of the supply pipe, and a plurality of dredging manifolds which are arranged on the plate body and are connected around the pipe groove;
the plate body is pressed in the oil tank, so that the dredging manifolds only form ports at the end parts of the dredging paths; wherein the plurality of canalizing manifolds are diffused along all directions around the pipe groove.
In one embodiment, the canalizing manifold is arc-shaped; and a plurality of dredging manifolds are arrayed along the circumference of the pipe groove.
Correspondingly, the invention provides the following technical scheme:
a food fryer comprising a one-way oil supply assembly as described above for a food fryer, further comprising an oil tank, a cooking oil storage tank, and a lift pump; the lift pump is connected between the oil tank and the lift pump.
As an implementation mode, the edible oil storage box comprises a box body, a box cover arranged at the top of the box body, box wheels arranged at the bottom of the box body, and handles arranged on the side walls of the box body.
Compared with the prior art, the invention has the beneficial effects that:
the invention provides a one-way oil supply assembly for a food fryer and the food fryer, which can supply oil into an oil tank from bottom to top in a one-way mode, and can prevent operators from being splashed by hot oil due to the fact that the oil is supplied from the bottom of the oil tank through a supply pipe.
Drawings
FIG. 1 is a cross-sectional view of a one-way oil supply assembly for a food fryer provided in accordance with an embodiment of the present invention;
FIG. 2 is a cross-sectional view of a unidirectional feed structure provided by an embodiment of the present invention;
fig. 3 is a bottom view of the dredging press plate according to the embodiment of the present invention;
FIG. 4 is a cross-sectional view of a food fryer provided in accordance with an embodiment of the present invention;
FIG. 5 is a block diagram of the circuitry of a food fryer provided in accordance with an embodiment of the present invention;
FIG. 6 is a side view of an edible oil holding tank provided by an embodiment of the present invention;
fig. 7 is a perspective view of a heat generating tube according to an embodiment of the present invention.
In the figure: 1. a food feeding device; 101. a conveying unit; 102. a first weighing unit; 2. a food frying device; 201. an oil tank; 202. a heat generating tube; 202a, a fixing piece; 202b, a first tube group; 202c, a second tube group; 202d, a third tube group; 203. a supply pipe; 204. an edible oil storage tank; 204a, a box body; 204b, a box cover; 204c, case wheels; 204d, a handle; 205. a one-way feed structure; 205a, an inner core member; 205b, an outer shaft assembly; 205c, an upper fixed end sleeve; 205d, a lower fixed end sleeve; 205e, a middle channel; 205f, upper channel; 205g and an upper connecting port; 205h, a lower channel; 205i and a lower connecting port; 205j, a spring; 205k, piston seal; 206. a lift pump; 207. a second weighing unit; 208. dredging the pressing plate; 208a, a plate body; 208b, a pipe groove; 208c, a canalizing manifold; 3. and a controller.
Detailed Description
The above and further features and advantages of the present invention will be apparent from the following, complete description of the invention, taken in conjunction with the accompanying drawings, wherein the described embodiments are merely some, but not all embodiments of the invention.
In one embodiment, as shown in FIG. 1. The one-way oil supply assembly for the food fryer provided by the embodiment comprises a dredging pressing plate 208, a supply pipe 203 and a one-way supply structure 205 which are connected in sequence; the dredging press plate 208 is arranged at the bottom in the oil tank 201; the one-way feed structure 205 is externally connected to a lift pump (not shown). In this embodiment, the canalizing platen 208 is used to convert the vertical feeding direction of the unidirectional feeding structure 205 into several horizontal feeding directions that are spread along the circumference of the canalizing platen 208. When oil is supplied into the oil tank 201 through the one-way supply structure 205, the supply direction thereof is vertical. When the fuel is supplied into the fuel tank 201 through the dredging pressure plate 208, the supply direction is horizontal. And due to the installation position of the dredging press plate 208, the oil which is just pumped up is diffused at the bottom in the oil tank 201. In this embodiment, a unidirectional feed structure 205 is shown in FIG. 2. It includes an inner core piece 205a, an outer sleeve piece 205b, an upper fixed end cap 205c, and a lower fixed end cap 205 d. The outer external sleeve 205b is fixed to the inner core piece 205a by means of an upper fixed end sleeve 205c and a lower fixed end sleeve 205d, and an intermediate channel 205e is formed between the outer external sleeve 205b and the inner core piece 205 a; an upper end portion of the inner core piece 205a is provided with an upper channel 205f and an upper connection port 205g connecting the upper channel 205f and the intermediate channel 205e, and a lower end portion of the inner core piece 205a is provided with a lower channel 205h and a lower connection port 205i connecting the lower channel 205h and the intermediate channel 205 e; the upper channel 205f, the middle channel 205e, and the lower channel 205h are connected in sequence; the one-way feed structure 205 further includes a spring 205j that fits over the inner shaft core piece 205a and within the intermediate channel 205e and a piston seal 205k provided at the end of the spring 205 j; when the spring 205j is in a natural state, the piston seal 205k is positioned below the upper connection port 205g, and when the spring 205j is in a compressed state, the piston seal 205k is positioned above the upper connection port 205 g. In this embodiment, oil can be added to the oil tank 201 in a unidirectional manner from bottom to top, and since the oil is added from the bottom of the oil tank 201 through the supply pipe 203, the operator can be prevented from being splashed with the hot oil. Specifically, there is no communication between the upper channel 205f and the lower channel 205h due to the obstruction by the piston seal 205 k. But after the piston seal 205k receives the upward pressure from below, it can move upward until it is higher than the upper connection port 205g, and the upper passage 205f and the lower passage 205h communicate with each other. Thereby drawing oil from the lower gallery 205h to the intermediate gallery 205e, and from the intermediate gallery 205e to the upper gallery 205 f. The above process requires the lift pump 206 to provide sufficient pressure. In the present embodiment, the stiffness coefficient of the spring 205j may be relied on to prevent the oil in the oil tank 201 from flowing backward. In another embodiment, the oil in the oil tank 201 may be prevented from flowing backward by means of a stopper structure (not shown) disposed in the middle channel 205e and below the upper connection port 205 g. In the present embodiment, the deflector plate 208 suppresses the oil just drawn up from spreading upward and only spreads the oil at the bottom of the oil tank 201, so that the influence on the fried food can be reduced.
In one embodiment, as shown in FIG. 3. The dredging press plate 208 provided in this embodiment; it comprises a plate body 208a, a pipe groove 208b which is opened on the plate body 208a and provides the embedding of the upper end part of the supply pipe 203, and a plurality of dredging manifolds 208c which are opened on the plate body 208a and connected around the pipe groove 208 b; the plate body 208a is pressed in the oil tank 201, so that the plurality of dredging manifolds 208c only form ports at the end parts of the dredging paths; wherein the plurality of canalizing manifolds 208c are diffused along the circumference of the tube groove 208b in all directions. In this embodiment, the oil pumped up from the edible oil storage tank 204 by the lift pump 206 passes through the dredging pressure plate 208 and then spreads around at the bottom of the oil tank 201. Therefore, the temperature unevenness of the oil in the oil tank 201 caused by the fact that the oil temperature is too low can be avoided. Since the deflector plates 208 in this embodiment inhibit the oil just drawn up from spreading upward and spreading only at the bottom of the oil tank 201, the influence on the fried food can be reduced. In the present embodiment, the oil just drawn up is blocked by the plate body 208a and spreads in all directions around along the plurality of dredging manifolds 208 c. The diffusion path in each of the canalizing manifolds 208c canalize the canalizing path of the manifold 208c itself. In this embodiment, the supply pipe 203 and the dredging platen 208 may be used to preheat the oil just drawn up.
In one embodiment, as shown in fig. 4 and 5. The present embodiment provides a food fryer including a food feeding device 1, a food frying device 2 located at a subsequent stage of the food feeding device 1, and a controller 3 connecting the food feeding device 1 and the food frying device 2. The food feeding device 1 comprises a conveying unit 101 and a first weighing unit 102; the conveying unit 101 is used for conveying the food to a later stage; the first weighing unit 102 is used for acquiring a first weight value of the food conveyed to the rear stage; in a preferred embodiment, a weighing conveyer belt may be used instead of the conveying unit 101 and the first weighing unit 102, and the food items may be both conveyed to a later stage and weighed. The food frying device 2 comprises an oil tank 201, a heating pipe 202 positioned in the oil tank 201, a supply pipe 203 connected with the bottom of the oil tank 201, an edible oil storage tank 204 positioned below the oil tank 201, a one-way supply structure 205 and a lifting pump 206 connected between the supply pipe 203 and the edible oil storage tank 204, and a second weighing unit 207 arranged at the bottom of the oil tank 201; the second weighing unit 207 is used for acquiring a second weight value of the oil tank 201; in the present embodiment, the oil tank 201 and the heat generating pipe 202 may adopt a conventional structure. The food frying apparatus 2 according to the present embodiment is improved in that a supply pipe 203, an edible oil storage tank 204, a one-way supply structure 205, a lift pump 206, and a second weighing unit 207 are added, so that the food frying apparatus 2 can add oil into the oil tank 201 according to the actual oil amount of the oil tank 201. In the present embodiment, the actual amount of fuel in the fuel tank 201 is based on the weight difference generated by the first weight value and the second weight value. During frying, the food tends to suck up the oil in the oil tank 201, and therefore the amount of oil not actually contained in the oil tank 201 is obtained only by the second weighing unit 207. Accordingly, in this embodiment, the controller 3 is connected to the first weighing unit 102, the second weighing unit 207, and the lift pump 206; the controller 3 is used for receiving the first weight value and the second weight value and generating a weight difference value according to a difference function formula; when the weight difference is greater than the preset value, the controller 3 controls the lift pump 206 to add a preset amount of oil into the oil tank 201. Therefore, in the present embodiment, a preset amount of oil can be added to the oil tank 201 from bottom to top in a unidirectional manner, and since the oil is added from the bottom of the oil tank 201 through the supply pipe 203, the operator can be prevented from being splashed with the hot oil.
In one embodiment, as shown in FIG. 6. The edible oil storage tank 204 provided by this embodiment includes a tank body 204a, a tank cover 204b disposed on the top of the tank body 204a, a tank wheel 204c disposed on the bottom of the tank body 204a, and a handle 204d disposed on the sidewall of the tank body 204 a. In this embodiment, the handle 204d and the box wheel 204c are provided to facilitate the movement of the edible oil storage box 204.
In one embodiment, as shown in FIG. 7. The heat generating tube 202 provided in the present embodiment includes a fixing member 202a, a first tube group 202b, a second tube group 202c, and a third tube group 202 d; the fixing member 202a is provided on a side wall of the oil tank 201; the first tube group 202b, the second tube group 202c and the third tube group 202d are respectively connected to the fixing member 202a and extend downward to be close to the bottom in the oil tank 201; the first tube bank 202b, the second tube bank 202c, and the third tube bank 202d form respective heating zones. In this embodiment, the heating tube 202 is divided into the first tube group 202b, the second tube group 202c and the third tube group 202d which can operate in three heating zones, so as to ensure uniform heating in the oil tank 201 and improve the frying effect of the food. And the first tube bank 202b, the second tube bank 202c, and the third tube bank 202d are extended downward near the bottom of the oil tank 201, so that the oil just drawn up can be heated quickly.
The above-mentioned embodiments are provided to further explain the objects, technical solutions and advantages of the present invention in detail, and it should be understood that the above-mentioned embodiments are only examples of the present invention and are not intended to limit the scope of the present invention. It should be understood that any modifications, equivalents, improvements and the like, which come within the spirit and principle of the invention, may occur to those skilled in the art and are intended to be included within the scope of the invention.

Claims (7)

1. A one-way oil supply assembly for a food fryer, comprising a channeling pressure plate (208), a supply pipe (203), and a one-way supply structure (205) connected in sequence;
the dredging press plate (208) is arranged at the bottom in the oil tank (201);
the one-way supply structure (205) is externally connected with a lifting pump (206);
the canalizing press plate (208) is used for converting the vertical feeding direction of the unidirectional feeding structure (205) into a plurality of horizontal feeding directions spreading along the circumference of the canalizing press plate (208);
the one-way feeding structure (205) comprises an inner core member (205a), an outer sleeve member (205b), an upper fixed end sleeve (205c), and a lower fixed end sleeve (205 d);
said outer external sleeve (205b) being fixed to said inner core member (205a) by said upper fixed end sleeve (205c) and said lower fixed end sleeve (205d), and an intermediate channel (205e) being formed between said outer external sleeve (205b) and said inner core member (205 a); an upper channel (205f) and an upper connection port (205g) connecting the upper channel (205f) and the intermediate channel (205e) are provided at an upper end portion of the inner core member (205a), and a lower channel (205h) and a lower connection port (205i) connecting the lower channel (205h) and the intermediate channel (205e) are provided at a lower end portion of the inner core member (205 a); the upper channel (205f), the middle channel (205e), and the lower channel (205h) are connected in sequence;
the one-way feed structure (205) further comprises a spring (205j) fitted over the inner shaft core member (205a) and located within the intermediate channel (205e) and a piston seal (205k) provided at an end of the spring (205 j); the piston seal (205k) is positioned below the upper connection port (205g) when the spring (205j) is in a natural state, and the piston seal (205k) is positioned above the upper connection port (205g) when the spring (205j) is in a compressed state.
2. The unidirectional oil supply assembly for a food fryer according to claim 1, wherein the direction of the upper channel (205f) and the direction of the middle channel (205e) are the same.
3. The unidirectional oil supply assembly for a food fryer according to claim 1, wherein the direction of the lower channel (205h) and the direction of the middle channel (205e) are the same.
4. The one-way oil supply assembly for a food fryer according to claim 1, wherein the channeling pressure plate (208) comprises a plate (208a), a tube trough (208b) opening on the plate (208a) and providing for the insertion of the upper end of the supply tube (203), and a number of channeling manifolds (208c) opening on the plate (208a) and connected around the tube trough (208 b);
the plate body (208a) is pressed in the oil tank (201), so that a plurality of dredging manifolds (208c) only form ports at the end part of a dredging path; wherein a plurality of the canalizing manifolds (208c) are diffused along all directions around the pipe groove (208 b).
5. The one-way oil supply assembly for a food fryer according to claim 4, wherein the canalizing manifold (208c) is arc-shaped; a plurality of said canalizing manifolds (208c) are circumferentially arrayed along the circumference of said tube slots (208 b).
6. A food fryer comprising a one-way oil supply assembly for a food fryer according to any one of claims 1 to 5, further comprising an oil tank (201), a cooking oil storage tank (204), and a lift pump (206); the lift pump (206) is connected between the oil tank (201) and the lift pump (206).
7. The food fryer according to claim 6, wherein the reserve tank (204) for cooking oil comprises a tank body (204a), a tank cover (204b) provided on the top of the tank body (204a), tank wheels (204c) provided on the bottom of the tank body (204a), and a handle (204d) provided on a side wall of the tank body (204 a).
CN201811460354.9A 2018-12-01 2018-12-01 A one-way oil supply unit and food fryer for food fryer Expired - Fee Related CN109566677B (en)

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CN109566677B true CN109566677B (en) 2021-06-25

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101776166A (en) * 2008-12-30 2010-07-14 通用电气公司 Methods, apparatus and/or systems relating to controlling flow through concentric passages
CN102413743A (en) * 2009-04-21 2012-04-11 徐寅源 Deep fryer
JP5096553B2 (en) * 2007-03-19 2012-12-12 フライマスター エル.エル.シー. Automatic filling for fryer
US8926837B1 (en) * 2013-12-30 2015-01-06 Eldridge J. Shumate Portable cooking oil filtering system
CN104798844A (en) * 2015-05-28 2015-07-29 姜玉春 Fried food processing device
CN208095886U (en) * 2017-11-03 2018-11-16 浙江海洋大学东海科学技术学院 A kind of preventing splash Fryer

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5096553B2 (en) * 2007-03-19 2012-12-12 フライマスター エル.エル.シー. Automatic filling for fryer
CN101776166A (en) * 2008-12-30 2010-07-14 通用电气公司 Methods, apparatus and/or systems relating to controlling flow through concentric passages
CN102413743A (en) * 2009-04-21 2012-04-11 徐寅源 Deep fryer
US8926837B1 (en) * 2013-12-30 2015-01-06 Eldridge J. Shumate Portable cooking oil filtering system
CN104798844A (en) * 2015-05-28 2015-07-29 姜玉春 Fried food processing device
CN208095886U (en) * 2017-11-03 2018-11-16 浙江海洋大学东海科学技术学院 A kind of preventing splash Fryer

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