CN212234181U - Air fryer facilitating wiring - Google Patents

Air fryer facilitating wiring Download PDF

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Publication number
CN212234181U
CN212234181U CN202020494427.2U CN202020494427U CN212234181U CN 212234181 U CN212234181 U CN 212234181U CN 202020494427 U CN202020494427 U CN 202020494427U CN 212234181 U CN212234181 U CN 212234181U
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Prior art keywords
air
air outlet
seat
upper cover
cover
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CN202020494427.2U
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Chinese (zh)
Inventor
张新航
马言辉
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Cixi Zhaofeng Appliance Co ltd
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Cixi Zhaofeng Appliance Co ltd
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Abstract

The utility model discloses an air fryer, including having organism (1), the pot body (2) and hot-blast subassembly, organism (1) is including shell (11), upper cover (12) on shell (11) are established to the lid, install inner bag (13) in shell (11) and install wind scooper (14) in upper cover (12), intercommunication pipeline (4) have in first intermediate layer (121) between upper cover (12) and wind scooper (14), intercommunication pipeline (4) communicate second air outlet (144) and first air outlet (123) of upper cover (12) of wind scooper (14) respectively, first articulated seat (151) and the articulated seat (145) of second of upper cover (12) below of shell (11) top are articulated mutually, intercommunication pipeline (4) and second are articulated to have clearance (41) between seat (145). Compared with the prior art, the utility model discloses an air is fried pot utilizes the wiring, makes things convenient for steam to discharge fast.

Description

Air fryer facilitating wiring
Technical Field
The utility model relates to a kitchen equipment technical field specifically indicates a do benefit to air of wiring and explode pot.
Background
The air fryer is a novel household appliance for frying food by utilizing a high-speed and high-temperature air circulation technology, the oil of the manufactured food can be reduced by 80 percent compared with that of the traditional electric fryer, and the air fryer is easy to clean in daily use, is safe and economical and is favored by people.
Current air fryer generally includes the organism, be formed with the culinary art cavity in the organism, be equipped with the hot-blast subassembly that can send into high-temperature air to culinary art cavity inside in the organism, be equipped with the pot body that is used for holding food in the culinary art cavity, the high-temperature hot-blast that utilizes hot-blast subassembly during operation to produce heats the edible material in the pot, hot-air and food fully contact, utilize the food surface to lose moisture fast in the twinkling of an eye, or in addition the grease that food self produced, make the food surface form crisp taste, the effect of being fried appears.
The air fryer mainly comprises a pull-type air fryer and a flip-type air fryer. Wherein, for the flip-type air fryer, an air inlet and an air outlet are generally arranged at the top of the upper cover.
The utility model discloses a flip formula air explodes pot like patent application No. CN201621044633.3 (publication No. CN206603656U) utility model patent "a flip formula air that heats evenly explodes pot" discloses a flip formula air explodes pot, goes up and is equipped with air intake and air outlet with external intercommunication on the lid, goes up the lid and still is equipped with the holding chamber, and the holding intracavity is equipped with the flabellum, goes up the flabellum and introduces the holding intracavity with the cold wind of air frying pot outside through the air intake to discharge the heat of holding intracavity through the air outlet, in order to give the heat dissipation of last lid.
To above-mentioned flip formula air fryer, it is inside that hot gas and the steam that carries need get into the upper cover earlier in the culinary art chamber, then discharge outside atmosphere again, and the path is long, and in easy loss the inside spare part of upper cover, inconvenient steam discharges fast, can lead to steam condensation to become the drop of water again on dropping to food like this, influences the taste of food, and exhaust passage is indirect, and steam gets rid of the effect slowly, increases the time that food toasted.
However, if the duct is provided at the rear of the mezzanine, the hinged portion of the air fryer can be shielded, which can interfere with the wiring of the wires used to connect the power source to the control panel.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that to prior art, provide a do benefit to air of wiring and explode pot, this air explodes pot can effectively avoid the drop of water that steam condenses to drop to food on simultaneously, and because steam in time discharges, can shorten the baking time.
The utility model provides a technical scheme that above-mentioned technical problem adopted does: an air fryer beneficial to wiring comprises
The cooking machine comprises a machine body, a cooking cavity and a cooking cavity, wherein the machine body comprises a shell, an upper cover, an inner container arranged in the shell and an air guide cover arranged in the upper cover, a first interlayer is formed between the outer wall of the air guide cover and the inner wall of the upper cover, a second interlayer is formed between the outer wall of the inner container and the inner wall of the shell, and the cooking cavity is formed in the inner container;
the pot body can enter and exit the cooking cavity; and
the hot air assembly is arranged in the machine body and can feed high-temperature gas into the cooking cavity;
the method is characterized in that:
a first hinge seat is arranged above the shell, and a second hinge seat hinged with the first hinge seat is arranged below the upper cover;
the top wall of the upper cover is provided with a first air inlet, the rear side wall of the upper cover is provided with a first air outlet, the top wall of the air guide cover is provided with a second air inlet, the rear side wall of the air guide cover is provided with a second air outlet, and a communication pipeline for communicating the second air outlet with the first air outlet is arranged in the first interlayer;
the communicating pipe is located above the second hinged seat and has a gap with the second hinged seat, and the first hinged seat and the second hinged seat are provided with threading holes for communicating the gap and the second interlayer.
In order to avoid the direct baking of hot air in the cooking cavity on the air guide cover, a heat insulation cover is arranged in the air guide cover, the heat insulation cover divides the inner space of the air guide cover into a cold air cavity positioned at the upper part and a hot air cavity positioned at the lower part, and a third air outlet communicated with the second air outlet is formed in the side wall of the heat insulation cover.
In order to improve the circulation efficiency of the air flow, a cooling fan is arranged in the cold air cavity, and the cooling fan can suck the outside atmosphere into the cold air cavity sequentially through the first air inlet, the first interlayer and the second air inlet and discharge the atmosphere sequentially through the second air outlet, the communicating pipeline and the first air outlet.
In order to facilitate the airflow at the third air outlet to enter the communicating pipeline through the second air outlet, the cross-sectional area of the second air outlet is larger than that of the third air outlet.
In order to ensure the circulation of hot air in the hot air cavity and improve the heating effect, the hot air assembly comprises a heating element and a thermal circulation fan positioned above the heating element, and the thermal circulation fan can enable water vapor to be discharged from the first air outlet after passing through the third air outlet and the communicating pipeline from the cooking cavity.
In order to facilitate the air flow in the hot air cavity to be discharged through the third air outlet, the thermal circulation fan and the third air outlet are basically positioned on the same horizontal plane.
In order to avoid hot gas from escaping between shell and the upper cover, first annular seal receptacle is installed at the top of shell, the bottom of upper cover is provided with second annular seal receptacle, the bottom surface of first annular seal receptacle with the top surface of second annular seal receptacle laminates each other.
In order to further avoid hot gas from escaping, an annular baffle plate is convexly arranged downwards on the inner edge of the bottom of the second annular sealing seat and used for shielding a gap between the first annular sealing seat and the second annular sealing seat.
In order to facilitate reasonable layout of the first hinged seat and the second hinged seat on the machine body, the first hinged seat is located on the first annular sealing seat, and the second hinged seat is located on the air guide cover.
In order to realize the hinging between the first hinging seat and the second hinging seat, the two sides of the top surface of the first hinging seat are convexly provided with first lugs, correspondingly, the two sides of the bottom surface of the second hinging seat are convexly provided with second lugs, and the first hinging seat and the second hinging seat are rotatably connected by penetrating the rotating shaft on the corresponding first lugs and the corresponding second lugs.
Compared with the prior art, the utility model has the advantages of:
(1) the top wall and the rear side wall of the upper cover are respectively provided with a first air inlet and a first air outlet, the top wall and the rear side wall of the air guide cover are respectively provided with a second air inlet and a second air outlet, the side wall of the heat insulation cover is provided with a third air outlet, and a communication pipeline for communicating the second air outlet and the first air outlet is arranged in a first interlayer between the upper cover and the air guide cover, so that cold air enters from the first air inlet, passes through the second air inlet, the second air outlet and the communication pipeline and then is discharged from the first air outlet, and water vapor passes through the third air outlet and the communication pipeline from the cooking cavity and then is discharged from the first air outlet; firstly, as the exhaust path is short and the side part is positioned closer to the pot body, the water vapor can be conveniently and rapidly exhausted, the water vapor is prevented from being condensed in the pot body, the taste of food is ensured, and the baking time can be shortened as the water vapor is exhausted in time; secondly, the circulation of cold air in the first interlayer can dissipate heat of the components in the first interlayer; thirdly, the cold and hot air flows are mixed and then distributed in the communicating pipeline, so that the temperature of the discharged air is lower; fourthly, the water vapor is discharged through the communicating pipeline, so that the damage to the parts in the first interlayer caused by the water vapor escaping into the first interlayer can be avoided;
(2) the clearance has between the articulated seat of intercommunication pipeline and second, and is equipped with the through wires hole that is used for intercommunication clearance and second intermediate layer on the articulated seat of first articulated seat and second, consequently, the intercommunication pipeline in first intermediate layer can be walked around to the wire of connection control board earlier, then passes clearance, through wires hole, second intermediate layer in proper order and is connected with the power, can not influence the wiring because setting up of intercommunication pipeline.
Drawings
FIG. 1 is a schematic perspective view of an embodiment of an air fryer according to the present invention;
FIG. 2 is a longitudinal cross-sectional view of an embodiment of the air fryer of the present invention;
FIG. 3 is another directional longitudinal cross-sectional view of an embodiment of the air fryer of the present invention;
FIG. 4 is a schematic perspective view of the air fryer of the present invention without the upper cover;
FIG. 5 is a schematic exploded view of an embodiment of the air fryer of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
As shown in fig. 1 to 5, a preferred embodiment of the air fryer facilitating wiring according to the present invention is shown. The air fryer comprises a machine body 1, a pot body 2, a heat insulation cover 3, a communication pipeline 4, a heating element 5, a motor 6, a cooling fan 7 and a heat circulation fan 8.
The machine body 1 comprises a shell 11, an upper cover 12 covering the shell 11, an inner container 13 installed in the shell 11, and an air guide cover 14 installed in the upper cover 12, wherein a first interlayer 121 is formed between the outer wall of the air guide cover 14 and the inner wall of the upper cover 12, a second interlayer 111 is formed between the outer wall of the inner container 13 and the inner wall of the shell 11, and a cooking cavity 131 is formed in the inner container 13. The top wall of the upper cover 12 is provided with a first air inlet 122, the rear side wall of the upper cover 12 is provided with a first air outlet 123, the top wall of the wind scooper 14 is provided with a second air inlet 143, and the rear side wall of the wind scooper 14 is provided with a second air outlet 144.
First annular seal receptacle 15 is installed at the top of shell 11, and the bottom of upper cover 12 is provided with second annular seal receptacle 16, and the bottom surface of first annular seal receptacle 15 and the top surface of second annular seal receptacle 16 laminate each other, and the inner edge that second annular seal receptacle 16 is located the bottom is protruding downwards to be equipped with annular baffle 161 for shelter from the gap between first annular seal receptacle 15 and the second annular seal receptacle 16.
In order to turn the upper cover 12 on the housing 11, the first annular sealing seat 15 has a first hinge seat 151, two sides of a top surface of the first hinge seat 151 are protruded with first lugs 1511, correspondingly, the wind scooper 14 has a second hinge seat 145, two sides of a bottom surface of the second hinge seat 145 are protruded with second lugs 1451, and the first hinge seat 151 and the second hinge seat 145 are rotatably connected by penetrating the rotating shaft 152 on the corresponding first lugs 1511 and the second lugs 1451.
The pan body 2 can enter and exit the cooking chamber 131.
The heat shield 3 is installed in the air guide cover 14, and divides an internal space of the air guide cover 14 into a cool air chamber 141 located at an upper portion and a hot air chamber 142 located at a lower portion. A third air outlet 31 communicated with the second air outlet 144 is formed on the rear side wall of the heat shield 3.
The communication duct 4 is installed in the first interlayer 121 and is positioned right above the second hinge seat 145. The inlet of the communication duct 4 communicates with the second outlet 144 and faces the third outlet 31, and the outlet of the communication duct 4 communicates with the first outlet 123. In this embodiment, the cross-sectional area of the second outlet 144 is larger than that of the third outlet 31, and the communication pipe 4 is located at one side of the outlet and is in a fence shape.
In order to avoid the influence of the arrangement of the communication duct 4 on the wiring, as shown in fig. 4, a gap 41 is formed between the communication duct 4 and the second hinge seat 145, and a wire threading hole 9 for communicating the gap 41 and the second interlayer 111 is formed in the middle of the first hinge seat 151 and the second hinge seat 145. In this way, the wires connected to the control board can firstly bypass the communication channel 4 in the first interlayer 121, and then sequentially pass through the gap 41, the threading hole 9 and the second interlayer 111 to be connected to the power supply.
The heating element 5 is provided in the hot air chamber 142. In this embodiment, the heating element 5 is a spirally wound heating tube.
The motor 6 is arranged in the first interlayer 121 and is arranged above the wind scooper 14.
The cooling fan 7 is arranged in the cold air cavity 141 and is in transmission connection with an output shaft of the motor 6. The cooling fan 7 can suck the external atmosphere into the cold air chamber 141 through the first air inlet 122, the first interlayer 121, and the second air inlet 143 in this order, and discharge the external atmosphere through the second air outlet 144, the communication duct 4, and the first air outlet 123 in this order.
The thermal circulation fan 8 is arranged in the hot air cavity 142 and above the heating element 5, and is in transmission connection with the output shaft of the motor 6, and the thermal circulation fan 8 can enable water vapor to be discharged from the cooking cavity 131 through the third air outlet 31 and the communication pipeline 4 and then from the first air outlet 123. The hot air component consisting of the heat circulating fan 8 and the heating element 5 blows hot air to the food materials in the pot body 2, takes away water in the food through the hot air and heats the food, thereby achieving the effect and the taste of frying various foods, chips, fishes and other fried foods. In this embodiment, the thermal circulation fan 8 and the third air outlet 31 are located on the same horizontal plane, so that the water vapor is conveniently discharged through the third air outlet 31, the communication pipeline 4 and the first air outlet 123 in sequence.
The working principle of the utility model is as follows:
(1) during wiring, a lead wire connected with the control panel firstly bypasses the communicating pipeline 4 in the first interlayer 121 and then sequentially passes through the gap 41, the threading hole 9 and the second interlayer 111 to be connected with a power supply;
(2) the pot body 2 filled with food materials is put into the cooking cavity 131, the air fryer is started, the motor 6 drives the cooling fan 7 and the heat circulation fan 8 to rotate, the cooling fan 7 sucks the external atmosphere into the first interlayer 121 from the first air inlet 122, the internal circulation of cold air in the first interlayer 121 can cool each component, particularly the upper cover 12 and the motor 6, finally air flow enters the cold air cavity 141 from the second air inlet 143 under the action of the cooling fan 7, finally the air flow is discharged into the external atmosphere through the second air outlet 144, the communication pipeline 4 and the first air outlet 123, the air in the hot air cavity 142 is heated by the heating element 5 to form hot air, then the heat circulation fan 8 blows the hot air into the pot body 2 to form circulating air to heat the food materials in the pot body 2, finally the hot air in the hot air cavity 142 carries water vapor to enter the communication pipeline 4 through the third air outlet 31 to be fully mixed with cold air, finally, discharge to external atmosphere through first air outlet 123 in, make things convenient for steam to discharge fast, moreover, because steam can not get into first intermediate layer 121, can not exert an influence to the wire that is arranged in first intermediate layer 121.

Claims (10)

1. An air fryer beneficial to wiring comprises
The machine body (1) comprises a shell (11), an upper cover (12), an inner container (13) installed in the shell (11) and an air guide cover (14) installed in the upper cover (12), wherein a first interlayer (121) is formed between the outer wall of the air guide cover (14) and the inner wall of the upper cover (12), a second interlayer (111) is formed between the outer wall of the inner container (13) and the inner wall of the shell (11), and a cooking cavity (131) is formed in the inner container (13);
a pan body (2) which can enter and exit the cooking cavity (131); and
the hot air assembly is arranged in the machine body (1) and can send high-temperature gas to the cooking cavity (131);
the method is characterized in that:
a first hinge seat (151) is arranged above the shell (11), and a second hinge seat (145) hinged with the first hinge seat (151) is arranged below the upper cover (12);
a first air inlet (122) is formed in the top wall of the upper cover (12), a first air outlet (123) is formed in the rear side wall of the upper cover (12), a second air inlet (143) is formed in the top wall of the air guiding cover (14), a second air outlet (144) is formed in the rear side wall of the air guiding cover (14), and a communication pipeline (4) for communicating the second air outlet (144) with the first air outlet (123) is arranged in the first interlayer (121);
the connecting pipeline (4) is located above the second hinged seat (145), a gap (41) is formed between the connecting pipeline and the second hinged seat (145), and the first hinged seat (151) and the second hinged seat (145) are provided with threading holes (9) used for connecting the gap (41) and the second interlayer (111).
2. An air fryer according to claim 1, wherein: the air guide cover (14) is internally provided with a heat insulation cover (3), the heat insulation cover (3) divides the inner space of the air guide cover (14) into a cold air cavity (141) at the upper part and a hot air cavity (142) at the lower part, and the side wall of the heat insulation cover (3) is provided with a third air outlet (31) communicated with the second air outlet (144).
3. An air fryer according to claim 2, wherein: and a cooling fan (7) is arranged in the cold air cavity (141), and the cooling fan (7) can suck outside atmosphere into the cold air cavity (141) through the first air inlet (122), the first interlayer (121) and the second air inlet (143) in sequence and discharge the atmosphere through the second air outlet (144), the communication pipeline (4) and the first air outlet (123) in sequence.
4. An air fryer according to claim 2, wherein: the cross-sectional area of the second air outlet (144) is larger than that of the third air outlet (31).
5. An air fryer according to claim 2, wherein: the hot air assembly comprises a heating element (5) and a heat circulating fan (8) located above the heating element (5), and the heat circulating fan (8) enables water vapor to be discharged from the first air outlet (123) from the cooking cavity (131) through the third air outlet (31) and the communicating pipeline (4).
6. An air fryer according to claim 5, wherein: the heat circulation fan (8) and the third air outlet (31) are basically positioned on the same horizontal plane.
7. An air fryer according to any one of claims 1 to 6, wherein: first annular seal receptacle (15) are installed at the top of shell (11), the bottom of upper cover (12) is provided with second annular seal receptacle (16), the bottom surface of first annular seal receptacle (15) with the top surface of second annular seal receptacle (16) is laminated each other.
8. An air fryer according to claim 7, wherein: an annular baffle plate (161) is arranged on the inner edge of the second annular sealing seat (16) at the bottom in a downward protruding mode and used for shielding a gap between the first annular sealing seat (15) and the second annular sealing seat (16).
9. An air fryer according to claim 8, wherein: the first hinged seat (151) is located on the first annular sealing seat (15), and the second hinged seat (145) is located on the air guide cover (14).
10. An air fryer according to any one of claims 1 to 6, wherein: the hinge structure is characterized in that first lugs (1511) are convexly arranged on two sides of the top surface of the first hinge seat (151), correspondingly, second lugs (1451) are convexly arranged on two sides of the bottom surface of the second hinge seat (145), and the first hinge seat (151) and the second hinge seat (145) are rotatably connected by penetrating a rotating shaft (152) on the corresponding first lugs (1511) and the corresponding second lugs (1451).
CN202020494427.2U 2020-04-07 2020-04-07 Air fryer facilitating wiring Active CN212234181U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020494427.2U CN212234181U (en) 2020-04-07 2020-04-07 Air fryer facilitating wiring

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020494427.2U CN212234181U (en) 2020-04-07 2020-04-07 Air fryer facilitating wiring

Publications (1)

Publication Number Publication Date
CN212234181U true CN212234181U (en) 2020-12-29

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ID=73983874

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020494427.2U Active CN212234181U (en) 2020-04-07 2020-04-07 Air fryer facilitating wiring

Country Status (1)

Country Link
CN (1) CN212234181U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114680604A (en) * 2020-12-30 2022-07-01 杭州九阳小家电有限公司 Cooking utensil

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114680604A (en) * 2020-12-30 2022-07-01 杭州九阳小家电有限公司 Cooking utensil
CN114680604B (en) * 2020-12-30 2024-03-12 杭州九阳小家电有限公司 Cooking utensil

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