Air fryer
By incorporating an infrared heat source and a transmission element separation structure within the air fryer, the problem of liquids or objects falling onto the infrared heat source in the basket is solved. This achieves more efficient food heating and more stable infrared heat source operation, enhancing the practicality and safety of the air fryer.
Patent Information
- Application Number
- CN202422796473.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-15
AI Technical Summary
During use, liquids or objects in the air fryer basket can easily fall onto the infrared heat source, affecting its heating effect.
An infrared heat source is placed at the bottom of the air fryer's cavity, and a first transmissive element is placed at the bottom of the inner pot body so that the infrared heat source faces the first transmissive element. A second transmissive element separates the infrared heat source from the first transmissive element. Combined with the mounting components, the connection stability is improved to prevent food from falling onto the infrared heat source. At the same time, a top heating element is placed at the top to heat the top and bottom of the food.
It increases the heating temperature and heating rate at the bottom of the food, reduces the temperature difference on the food surface, enhances heating efficiency, ensures the normal operation of the infrared heat source, and improves the practicality and safety of the air fryer.
Smart Images

Figure CN223516182U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air fryers, and in particular to an air fryer. BACKGROUND
[0002] An air fryer can be used to heat food as a cooking device.
[0003] The air fryer can include a housing and a basket. The basket is detachably connected to the housing, food can be placed in the basket, the bottom of the housing has an infrared heat source for heating the food, and the bottom of the basket is provided with microcrystalline glass allowing infrared rays to pass through, so that the infrared rays emitted by the infrared heat source can enter the food in the basket.
[0004] However, in the related art, the liquid or object in the basket of the air fryer can easily fall onto the infrared heat source during use, affecting the heating effect of the infrared heat source. CONTENT OF THE INVENTION
[0005] The air fryer provided by the embodiments of the present application can solve the technical problem that the liquid or object in the basket of the air fryer in the related art can easily fall onto the infrared heat source during use, affecting the heating effect of the infrared heat source.
[0006] To achieve the above-mentioned purpose, the embodiments of the present application provide the following technical solutions:
[0007] The air fryer provided by the embodiments of the present application can solve the technical problem that the liquid or object in the basket of the air fryer in the related art can easily fall onto the infrared heat source during use, affecting the heating effect of the infrared heat source.
[0008] The inner basket is detachably arranged in the accommodating cavity.
[0009] The first transparent member constitutes at least part of the bottom of the inner basket.
[0010] The top heating member is located at the top of the accommodating cavity.
[0011] The infrared heat source is located between the bottom of the accommodating cavity and the bottom of the inner basket, and the infrared heat source is arranged towards the first transparent member.
[0012] The second transparent member is used to separate the infrared heat source and the first transparent member.
[0013] The infrared rays emitted by the infrared heat source are transmitted to the inner basket by the second transparent member and the first transparent member.
[0014] The mounting assembly is arranged in the accommodating cavity and is used to mount the second transparent member.
[0015] The embodiment of the present application provides an air fryer, an infrared heat source is arranged at the bottom of the containing cavity, a first transparent member constitutes at least part of the bottom of the inner pot body, the infrared heat source is directed towards the first transparent member, so that the infrared heat source is directly transmitted to the food in the inner pot body through the first transparent member, and direct heating of the bottom area of the food by the infrared heat source is realized, so that the infrared rays of the infrared heat source can directly act on the food in the inner pot body, the problems of too low temperature, slow temperature rise and large heat loss of the bottom of the food caused by the indirect heating mode in the prior art are avoided, and the heating temperature and the temperature rise speed of the air fryer on the bottom of the food and the heating effect of the air fryer on the food can be improved, and the practicability of the air fryer is improved.
[0016] In addition, the top heating member is arranged at the top of the containing cavity of the outer pot body to heat the food in the inner pot body on the top surface, so that the top and bottom of the food in the inner pot body are heated, the temperature difference on the surface of the food can be reduced, the heating efficiency of the food can be improved, and the heating effect of the air fryer on the food is improved, and the practicability of the air fryer is further improved.
[0017] By arranging the second transparent member between the infrared heat source and the first transparent member, the second transparent member can be used to separate the infrared heat source from the first transparent member under the condition that the infrared rays emitted by the infrared heat source can be transmitted to the first transparent member through the second transparent member, so that the food in the inner pot body can be prevented from falling on the infrared heat source in the process of heating the food, the influence of external substances on the infrared heat source can be reduced, and the situation that the infrared heat source cannot be normally used due to pollution can be avoided.
[0018] In addition, by using the mounting assembly to mount the second transparent member in the containing cavity, the connection stability between the second transparent member and the containing cavity of the outer pot body can be improved.
[0019] On the basis of the above technical scheme, the present application can also be improved as follows.
[0020] In a possible implementation manner, the mounting assembly comprises a mounting bottom plate;
[0021] The mounting bottom plate has an opening, and the second transparent member cover is arranged on the opening;
[0022] And the infrared heat source is located on the side of the second transparent member away from the inner pot body.
[0023] In this way, the mounting assembly comprises the mounting bottom plate, the mounting bottom plate is located between the infrared heat source and the inner pot body, the mounting bottom plate can be used to mount the second transparent member, so that the second transparent member separates the first transparent member from the infrared heat source, the structure of the mounting bottom plate is simple, the manufacturing cost is low, and the mounting stability of the second transparent member in the containing cavity can be improved.
[0024] Since the installation bottom plate is located between the inner pot body and the infrared heat source, the installation bottom plate can also play a role in separating the infrared heat source and the inner pot body. During the heating process of the air fryer on the food in the inner pot body, the installation bottom plate and the second transparent member can be used to simultaneously isolate the food and other impurities in the inner pot body from falling onto the infrared heat source, thereby ensuring the cleanliness of the infrared heat source, reducing the influence of impurities and the like on the emission of infrared rays by the infrared heat source, ensuring the normal operation of the infrared heat source, and improving the working stability of the air fryer.
[0025] In a possible implementation, the installation assembly further includes an installation cover.
[0026] The installation cover covers the infrared heat source and the second transparent member.
[0027] In this way, the installation assembly can connect the infrared heat source and the second transparent member to the installation bottom plate by including the installation cover and covering the infrared heat source and the second transparent member on the side of the installation bottom plate facing the bottom of the accommodating cavity, thereby improving the structural compactness among the infrared heat source, the second transparent member, and the installation assembly in the air fryer. Moreover, covering the infrared heat source and the second transparent member on the installation bottom plate by using the installation cover can improve the installation stability of the infrared heat source and the second transparent member on the installation bottom plate.
[0028] In addition, covering the infrared heat source and the second transparent member by using the installation cover can also protect the infrared heat source and the second transparent member, thereby reducing the probability of damage to the surfaces of the infrared heat source and the second transparent member and improving the practicality and durability of the air fryer.
[0029] In a possible implementation, the installation cover includes:
[0030] a containing portion covering the infrared heat source and containing the infrared heat source;
[0031] a pressing portion provided at an outer edge of the containing portion and used to press the second transparent member against the installation bottom plate.
[0032] In this way, the infrared heat source is arranged in the containing portion of the installation cover, so that the installation cover can be used to fix the infrared heat source and protect the outer surface of the infrared heat source. The second transparent member is pressed against the surface of the installation bottom plate by the pressing portion of the installation cover, so that the connection stability between the second transparent member and the installation bottom plate can be improved, and a gap between the second transparent member and the installation bottom plate can be avoided, thereby preventing impurities from falling onto the infrared heat source through the gap between the second transparent member and the installation bottom plate, reducing the probability of contamination of the infrared heat source, and ensuring the normal operation of the infrared heat source.
[0033] In a possible implementation, the infrared heat source is spaced apart from the second transparent member along a thickness direction of the second transparent member.
[0034] In this way, by spacing apart the infrared heat source from the second transparent member along the thickness direction of the second transparent member, a certain spacing is formed between the second transparent member and the infrared heat source, direct contact between the second transparent member and the infrared heat source is avoided, and thus the second transparent member is prevented from being damaged due to excessively high temperature caused by contact with the infrared heat source, the durability of the second transparent member and the practicality of the air fryer are improved.
[0035] In a possible implementation, the wall surface of the mounting cover has a hollow part for communicating the inside of the mounting cover with the containing cavity.
[0036] In this way, by providing the hollow part on the wall surface of the mounting cover, the inside of the mounting cover and the containing cavity are communicated, heat generated by the infrared heat source when the infrared heat source is working can be dissipated to the containing cavity through the hollow part on the mounting cover, and the heat dissipation effect of the infrared heat source is improved.
[0037] In a possible implementation, the infrared heat source is spaced apart from the inner wall of the mounting cover.
[0038] In this way, by spacing apart the infrared heat source from the inside of the mounting cover, direct contact between the infrared heat source and the inside of the mounting cover is avoided, air flow is allowed between the infrared heat source and the inner wall of the mounting cover, heat on the surface of the infrared heat source is conveniently taken away by the air flow, the heat dissipation effect of the infrared heat source is improved, and the durability of the mounting cover is improved because the infrared heat source is not in direct contact with the mounting cover.
[0039] In a possible implementation, the mounting assembly further includes a first connecting piece for detachably connecting the mounting cover with the mounting bottom plate.
[0040] In this way, the mounting assembly uses the first connecting piece to detachably connect the mounting cover with the mounting bottom plate, when the first connecting piece releases the connection between the mounting cover and the mounting bottom plate, the infrared heat source and the second transparent member are conveniently replaced and maintained, the detachable convenience of the second transparent member and the infrared heat source is improved, and the practicality of the air fryer is improved.
[0041] In a possible implementation, the mounting cover is a heat insulation cover for preventing heat of the infrared heat source from being dissipated toward the bottom of the outer pot body.
[0042] In this way, by setting the mounting cover as a heat insulation cover, the heat of the infrared heat source can be further reduced from spreading through the mounting cover to the bottom of the containing cavity of the outer pot body, so that the temperature of the bottom of the outer pot body can be prevented from being too high, the outer pot body can be prevented from being overheated to cause the user to be scalded, and the use safety of the air fryer is improved.
[0043] In a possible implementation, the mounting assembly further comprises a heat insulation side plate.
[0044] The heat insulation side plate is arranged around the outer periphery of the mounting bottom plate, extends towards the top of the containing cavity, and forms a heat insulation cavity together with the mounting bottom plate.
[0045] The inner pot body is detachably mounted in the heat insulation cavity.
[0046] In this way, by comprising the heat insulation side plate and arranging the heat insulation side plate around the outer periphery of the mounting bottom plate, and mounting the inner pot body in the heat insulation cavity formed by the heat insulation side plate, when the infrared heat source heats the inner pot body and the food in the inner pot body in the heat insulation cavity, the heat insulation side plate can reduce or isolate the temperature of the inner pot body from being dissipated to the side of the outer pot body, so that the user can be prevented from being scalded due to the temperature of the side of the outer pot body being too high, the practicability of the air fryer is improved, and the heat insulation and heating effects of the air fryer are improved.
[0047] In a possible implementation, the heat insulation side plate and the mounting bottom plate are detachably connected.
[0048] In this way, by detachably connecting the heat insulation side plate and the mounting bottom plate, the mounting and replacement of the heat insulation side plate can be facilitated, the disassembly and assembly of the mounting assembly can be facilitated, and the structural compactness between the components inside the air fryer can be improved.
[0049] In a possible implementation, the heat insulation side plate has a plug-in part, the mounting bottom plate has a plug hole, and the plug-in part is inserted into the plug hole.
[0050] In this way, by inserting the plug-in part into the plug hole to detachably connect the heat insulation side plate and the mounting bottom plate, the detachable connection mode between the heat insulation side plate and the mounting bottom plate can be simplified, the manufacturing cost of the mounting assembly can be reduced, the assembly efficiency of the heat insulation side plate and the mounting bottom plate can be improved, and the assembly efficiency of the mounting assembly is further improved.
[0051] In a possible implementation, the heat insulation side plate has a plug-in part, the mounting bottom plate has a plug hole, and the plug-in part is inserted into the plug hole.
[0052] In a possible implementation, the mounting bottom plate and the inner wall of the containing cavity are detachably connected.
[0053] Thus, by detachable connecting between the mounting bottom plate and the inner wall of the accommodating cavity, the assembly efficiency between the mounting bottom plate and the outer pot body can be facilitated, and the assembly efficiency between the mounting assembly and the outer pot body can be improved. In addition, the detachable connection mode between the mounting bottom plate and the inner wall of the accommodating cavity can facilitate the separate disassembly and maintenance of the mounting bottom plate, thereby reducing the maintenance and replacement cost of the air fryer.
[0054] In a possible implementation, the mounting assembly further comprises a second connecting piece;
[0055] The inner wall of the accommodating cavity has a first mounting portion;
[0056] The mounting bottom plate has a second mounting portion matched with the mounting portion;
[0057] The first mounting portion and the second mounting portion are detachably connected through the second connecting piece.
[0058] Thus, by detachably connecting the first mounting portion and the second mounting portion through the second connecting piece, the detachable connection between the mounting bottom plate and the accommodating cavity can be achieved. The connection mode of connecting the first mounting portion and the second mounting portion through the second connecting piece is simple and convenient to operate, and can improve the assembly efficiency between the mounting bottom plate and the inner wall of the accommodating cavity, thereby improving the assembly efficiency between the mounting assembly and the outer pot body.
[0059] In a possible implementation, the inner wall of the accommodating cavity has a third mounting portion;
[0060] The heat-insulating side panel is detachably connected with the third mounting portion.
[0061] Thus, on the basis of connecting the heat-insulating side panel with the mounting bottom plate, the heat-insulating side panel is further detachably connected with the third mounting portion on the accommodating cavity, which can improve the mounting stability of the heat-insulating side panel and the connection stability between the mounting assembly and the outer pot body, thereby improving the structural stability of the air fryer.
[0062] In a possible implementation, the infrared heat source is an electric ceramic stove heating disc;
[0063] And / or, along the height direction of the accommodating cavity, the orthographic projection of the infrared heat source is circular, and the outer diameter of the orthographic projection of the infrared heat source is greater than or equal to 9 cm and less than or equal to 12 cm;
[0064] And / or, the power of the infrared heat source is greater than or equal to 650 w and less than or equal to 1000 w.
[0065] In this way, by making the outer diameter of the infrared heat source greater than or equal to 9 cm, the size of the infrared heat source can be prevented from being too small, so that the heating area of the infrared heat source is small, which affects the heating effect of the food in the inner pot and the uniformity of the heating of the food in the inner pot. By making the outer diameter of the infrared heat source less than or equal to 12 cm, the manufacturing cost of the air fryer can be controlled while ensuring the heating effect, and the manufacturing cost of the air fryer can be prevented from being too high.
[0066] In addition, by making the power of the infrared heat source greater than or equal to 650w, the heating speed of the food in the inner pot can be prevented from being affected due to the power of the infrared heat source being too small, and the surface temperature difference of the food after heating can be prevented from being too large. By making the power of the infrared heat source less than or equal to 1000w, the bottom of the outer pot can be prevented from being overheated due to the power of the infrared heat source being too large while ensuring the heating effect, and the power consumption of the air fryer can be controlled to improve the practicability of the air fryer. BRIEF DESCRIPTION OF DRAWINGS
[0067] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0068] Figure 1 A structure schematic diagram of the air fryer provided by the embodiments of the present application is provided.
[0069] Figure 2 A sectional view of the air fryer provided by the embodiments of the present application is provided.
[0070] Figure 3 A sectional view of the outer pot of the air fryer provided by the embodiments of the present application is provided.
[0071] Figure 4 A partial schematic view of A in the air fryer provided by the embodiments of the present application is provided. Figure 3
[0072] Explanation of reference signs:
[0073] 10-air fryer;
[0074] 100-outer pot body;
[0075] 110- containing cavity;
[0076] 200-inner pot body;
[0077] 210-first transparent member;
[0078] 300-top heating member;
[0079] 400 - infrared heat source;
[0080] 500 - second transparent member;
[0081] 600 - mounting assembly;
[0082] 610 - mounting base; 620 - mounting cover; 630 - first connecting member; 640 - heat insulation side plate;
[0083] 650 - heat insulation cavity; 660 - first mounting portion; 670 - second mounting portion;
[0084] 680 - third mounting portion;
[0085] 611 - opening; 621 - accommodating portion; 622 - pressing portion; 623 - hollow portion; 641 - plug-in portion. DETAILED DESCRIPTION
[0086] As described in the background, in the related art, the liquid or the object in the basket is easy to fall on the infrared heat source during use, which affects the heating effect of the infrared heat source.
[0087] The reason for this problem is that the infrared heat source is directly arranged corresponding to the basket, and no separation structure is arranged between the basket and the infrared heat source. In this way, the liquid or steam exposed by the food in the basket during heating will fall on the infrared heat source, which will cause the infrared heat source to malfunction or affect the heating effect of the infrared heat source.
[0088] To solve the above technical problems, the air fryer provided by the embodiments of the present application sets the infrared heat source at the bottom of the accommodating cavity and sets the first transparent member at the bottom of the inner pot body, so that the infrared heat source is directed towards the first transparent member, so that the infrared heat source can directly transmit to the food in the inner pot body through the first transparent member, and directly heat the bottom area of the food by the infrared heat source. In this way, the infrared rays of the infrared heat source can directly act on the food in the inner pot body, avoiding the problems of too low temperature, slow temperature rise and large heat loss of the bottom of the food caused by the indirect heating method in the prior art, so as to improve the heating temperature and the temperature rise speed of the bottom of the food in the air fryer, and the heating effect of the food, and improve the practicability of the air fryer.
[0089] In addition, the top heating member is arranged at the top of the accommodating cavity of the outer pot body to heat the food in the inner pot body on the top surface, so as to heat the top and bottom of the food in the inner pot body. In this way, the temperature difference on the surface of the food can be reduced, and the heating efficiency of the food and the heating effect of the air fryer on the food can be improved, thereby further improving the practicability of the air fryer.
[0090] By arranging the second transparent member between the infrared heat source and the first transparent member, the infrared heat source can be separated from the first transparent member by using the second transparent member, so that the food in the inner pot body can be prevented from falling on the infrared heat source during heating of the food, the influence of external substances on the infrared heat source can be reduced, and the infrared heat source can be prevented from being unable to be normally used due to pollution.
[0091] In addition, by using the mounting assembly to mount the second transparent member in the accommodating cavity, the connection stability between the second transparent member and the accommodating cavity of the outer pot body can be improved. The mounting assembly also has the function of separating the inner pot body and the infrared heat source, and the mounting assembly and the second transparent member are used together to separate the infrared heat source and the first transparent member.
[0092] In order to make the above-mentioned purposes, features and advantages of the embodiments of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of protection of the present application.
[0093] Reference Figure 1 , Figure 2 and Figure 3 , the embodiments of the present application provide an air fryer 10, which can include an outer pot body 100, an inner pot body 200, a top heating element 300 and an infrared heat source 400.
[0094] The outer pot body 100 has an accommodating cavity 110, and the outer pot body 100 can be a shell of the air fryer 10. The accommodating cavity 110 of the outer pot body 100 can be used to accommodate the inner pot body 200. The outer pot body 100 has a removal port, which can be arranged on the side of the outer pot body 100. The removal port can communicate the accommodating cavity 110 with the outside of the outer pot body 100, and the inner pot body 200 can be installed in the accommodating cavity 110 through the removal port. The height direction of the accommodating cavity 110 can be the Y direction as shown in Figure 2 .
[0095] The inner pot body 200 is detachably arranged in the accommodating cavity 110, and the inner pot body 200 can be placed in the accommodating cavity 110 through the removal port or taken out of the accommodating cavity 110 through the removal port. The inner pot body 200 has a cooking cavity, which can be used to hold food to be cooked. The cooking cavity can be surrounded by the bottom and the side of the inner pot body 200.
[0096] The first transparent member 210 constitutes at least a part of the bottom of the inner pot 200, and can be a part of the bottom of the inner pot 200 or the entire bottom of the inner pot 200. Food can be located directly above or obliquely above the first transparent member 210.
[0097] In some embodiments, the first transparent member 210 can be microcrystalline glass, glass ceramic or other structure that facilitates infrared transmission.
[0098] The top heating member 300 is located at the top of the containing cavity 110 and can be connected to the inner top of the containing cavity 110. The inner pot 200 has a taking and placing opening for taking and placing food, which is directed to the top of the containing cavity 110 and the top heating member 300, so that the heat generated by the top heating member 300 can directly act on the food in the cooking cavity through the taking and placing opening.
[0099] The infrared heat source 400 is located between the bottom of the containing cavity 110 and the bottom of the inner pot 200, and is directed to the first transparent member 210.
[0100] In some embodiments, the infrared heat source 400 can be a far-infrared heat source, which emits far-infrared rays to the food in the inner pot 200 through the first transparent member 210 to directly heat the food in the inner pot 200 by the heat radiation of the far-infrared rays.
[0101] The embodiments of the present application provide an air fryer 10, which is provided with an infrared heat source 400 at the bottom of the containing cavity 110 and a first transparent member 210 at the bottom of the inner pot 200, so that the infrared heat source 400 is directed to the first transparent member 210, so as to directly transmit the infrared heat source 400 to the food in the inner pot 200 through the first transparent member 210 and directly heat the bottom area of the food by the infrared heat source 400. In this way, the infrared rays of the infrared heat source 400 can directly act on the food in the inner pot 200, avoiding the problems of low temperature, slow heating and large heat loss of the bottom of the food caused by the indirect heating method in the prior art, so as to improve the heating temperature and heating speed of the air fryer 10 on the bottom of the food and the heating effect of the air fryer 10 on the food, and improve the practicability of the air fryer 10.
[0102] In addition, the top heating member 300 is arranged at the top of the containing cavity 110 of the outer pot 100 to heat the food in the inner pot 200, so as to heat the top and bottom of the food in the inner pot 200, which can reduce the temperature difference on the surface of the food and improve the heating efficiency of the food and the heating effect of the air fryer 10 on the food, thereby further improving the practicability of the air fryer 10.
[0103] The second transparent member 500 is used to separate the infrared heat source 400 and the first transparent member 210, and the infrared rays emitted by the infrared heat source 400 are transmitted to the inner pot body 200 through the second transparent member 500 and the first transparent member 210.
[0104] By arranging the second transparent member 500 between the infrared heat source 400 and the first transparent member 210, the infrared heat source 400 can be separated from the first transparent member 210 by using the second transparent member 500 while ensuring that the infrared rays emitted by the infrared heat source 400 can be transmitted to the first transparent member 210 through the second transparent member 500. Thus, the food in the inner pot body 200 can be prevented from falling on the infrared heat source 400 during the heating process, the influence of external substances on the infrared heat source 400 can be reduced, and the infrared heat source 400 can be prevented from being unable to be normally used due to contamination.
[0105] The mounting assembly 600 is arranged in the accommodation cavity 110 and is used to mount the second transparent member 500.
[0106] By mounting the second transparent member 500 in the accommodation cavity 110 by using the mounting assembly 600, the connection stability between the second transparent member 500 and the accommodation cavity 110 of the outer pot body 100 can be improved.
[0107] Reference Figures 1 to 3 In some embodiments, the infrared heat source 400 is an electric ceramic heating disc.
[0108] The projection of the infrared heat source 400 in the height direction (for example, the Y direction) of the accommodation cavity 110 is circular, and the outer diameter of the projection of the infrared heat source 400 is greater than or equal to 9 cm and less than or equal to 12 cm. For example, the outer diameter of the projection of the infrared heat source 400 can be one of 9 cm, 10 cm, 11 cm, and 12 cm. Alternatively, the outer diameter of the projection of the infrared heat source 400 can be any value in the range of greater than or equal to 9 cm and less than or equal to 12 cm. Figure 2 In this way, by making the outer diameter of the projection of the infrared heat source 400 greater than or equal to 9 cm, the size of the infrared heat source 400 can be prevented from being too small, which can result in a small heating area of the infrared heat source 400 and affect the heating effect on the food in the inner pot body 200 and the uniformity of heating of the food in the inner pot body 200. By making the outer diameter of the infrared heat source 400 less than or equal to 12 cm, the manufacturing cost of the air fryer 10 can be controlled while ensuring the heating effect, and the manufacturing cost of the air fryer 10 can be prevented from being too high.
[0109]
[0110] In some embodiments, the power of the infrared heat source 400 is greater than or equal to 650w and less than or equal to 1000w. For example, the power of the infrared heat source 400 can be one of 700w, 800w, 900w and 1000w. Alternatively, the power of the infrared heat source 400 can be any value within the range of greater than or equal to 650w and less than or equal to 1000w.
[0111] In addition, by making the power of the infrared heat source 400 greater than or equal to 650w, the heating speed of the food in the inner pot body 200 can be avoided from being affected by the too small power of the infrared heat source 400, and the surface temperature difference of the food after heating can be avoided from being too large. By making the power of the infrared heat source 400 less than or equal to 1000w, the heating effect can be ensured, the bottom of the outer pot body 100 can be avoided from being overheated due to the too large power of the infrared heat source 400, the power consumption of the air fryer 10 can be controlled, and the practicability of the air fryer 10 can be improved.
[0112] Reference Figure 2 and Figure 3 In some embodiments, the mounting assembly 600 can include a mounting bottom plate 610 having an opening 611, and the second transparent member 500 is covered on the opening 611. The infrared heat source 400 is connected with the mounting bottom plate 610, and the infrared heat source 400 is located on the side of the second transparent member 500 away from the inner pot body 200. The infrared heat source 400 is located on the side of the mounting bottom plate 610 facing the bottom of the containing cavity 110. The mounting bottom plate 610 and the second transparent member 500 can be used together to separate the first transparent member 210 and the infrared heat source 400. The mounting bottom plate 610 and the second transparent member 500 can also support the food or liquid falling in the inner pot body 200, so as to avoid the food or liquid falling on the infrared heat source 400.
[0113] In some embodiments, the mounting bottom plate 610 can be a metal plate, and the mounting bottom plate 610 can be connected with the inner wall of the containing cavity 110 to fix the mounting bottom plate 610 and the mounting assembly 600, and improve the structural stability of the air fryer 10.
[0114] In this way, the mounting assembly 600 can include the mounting bottom plate 610 located between the infrared heat source 400 and the inner pot body 200, and the mounting bottom plate 610 can be used to mount the second transparent member 500, so that the second transparent member 500 separates the first transparent member 210 and the infrared heat source 400. The structure of the mounting bottom plate 610 is simple, and the manufacturing cost is low. The mounting bottom plate 610 can improve the mounting stability of the second transparent member 500 in the containing cavity 110.
[0115] Since the installation bottom plate 610 is located between the inner pot body 200 and the infrared heat source 400, the installation bottom plate 610 can also play a role in separating the infrared heat source 400 and the inner pot body 200. During the heating process of the air fryer 10 on the food in the inner pot body 200, the installation bottom plate 610 and the second transparent member 500 can be used to isolate the food and other impurities in the inner pot body 200 from falling onto the infrared heat source 400, ensuring the cleanliness of the infrared heat source 400, reducing the influence of impurities and the like on the emission of infrared rays by the infrared heat source 400, ensuring the normal operation of the infrared heat source 400, and improving the working stability of the air fryer 10.
[0116] In some embodiments, the installation bottom plate 610 can have heat insulation and high-temperature resistance performance to avoid damage caused by the infrared heat source 400 radiating heat to the installation bottom plate 610, which causes the installation bottom plate 610 to be too high in temperature.
[0117] Reference Figure 2 , Figure 3 and Figure 4 In some embodiments, the installation assembly 600 can also include an installation cover 620, which covers the infrared heat source 400 and the second transparent member 500. The installation cover 620 can be used to accommodate the infrared heat source 400 and the second transparent member 500. The installation cover 620 can be located on the side of the infrared heat source 400 facing the bottom of the accommodation cavity 110.
[0118] In some embodiments, the installation cover 620 can be connected to the installation bottom plate 610, for example, the installation cover 620 and the installation bottom plate 610 can be connected by a detachable connection. Alternatively, the installation cover 620 can also be connected to the inner wall of the accommodation cavity 110.
[0119] In this way, the installation assembly 600 can include the installation cover 620, and the installation cover 620 is used to cover the infrared heat source 400 and the second transparent member 500 on the side of the installation bottom plate 610 facing the bottom of the accommodation cavity 110, so that the infrared heat source 400 and the second transparent member 500 are both connected to the installation bottom plate 610, improving the structural compactness between the infrared heat source 400, the second transparent member 500, and the installation assembly 600 in the air fryer 10. Moreover, the use of the installation cover 620 to cover the infrared heat source 400 and the second transparent member 500 on the installation bottom plate 610 can improve the installation stability of the infrared heat source 400 and the second transparent member 500 on the installation bottom plate 610.
[0120] In addition, the use of the installation cover 620 to cover the infrared heat source 400 and the second transparent member 500 can also provide protection for the infrared heat source 400 and the second transparent member 500, reducing the probability of damage to the surfaces of the infrared heat source 400 and the second transparent member 500, and improving the practicality and durability of the air fryer 10.
[0121] Reference Figure 2 、 Figure 3 and Figure 4 In some embodiments, the mounting cover 620 can include a containing portion 621 and a pressing portion 622. The containing portion 621 is arranged outside the infrared heat source 400 and is used to contain the infrared heat source 400. The pressing portion 622 is arranged at the outer edge of the containing portion 621, and the pressing portion 622 is used to press the second transparent member 500 to the mounting base plate 610.
[0122] In some embodiments, the containing portion 621 and the pressing portion 622 can be an integrated structure. The containing portion 621 can have a mounting space, and the infrared heat source 400 can be mounted in the mounting space of the containing portion 621. The pressing portion 622 can be arranged at the end of the containing portion 621 towards the second transparent member 500, and the pressing portion 622 can be arranged axially along the edge of the end.
[0123] In some embodiments, the pressing portion 622 can be used to connect with the mounting base plate 610 to achieve the connection of the mounting cover 620 and the mounting base plate 610. The pressing portion 622 can be connected with the mounting base plate 610 in a detachable manner.
[0124] In this way, by arranging the infrared heat source 400 in the containing portion 621 of the mounting cover 620, the mounting cover 620 can be used to mount and fix the infrared heat source 400, and the outer surface of the infrared heat source 400 can be protected. The second transparent member 500 is pressed to the surface of the mounting base plate 610 by the pressing portion 622 of the mounting cover 620, which can improve the connection stability between the second transparent member 500 and the mounting base plate 610, avoid the existence of gaps between the second transparent member 500 and the mounting base plate 610, and thus avoid impurities falling on the infrared heat source 400 through the gaps between the second transparent member 500 and the mounting base plate 610, reduce the probability of pollution of the infrared heat source 400, and ensure the normal work of the infrared heat source 400.
[0125] Reference Figure 2 、 Figure 3 and Figure 4 In some embodiments, along the thickness direction of the second transparent member 500 (such as the Y direction in Figure 4 , the infrared heat source 400 is arranged spaced apart from the second transparent member 500. It can be understood that if the infrared heat source 400 is arranged spaced apart from the second transparent member 500, along the thickness direction of the second transparent member 500, the infrared heat source 400 and the second transparent member 500 have a certain spacing distance, and the infrared heat source 400 and the second transparent member 500 do not directly contact.
[0126] In this way, by arranging the infrared heat source 400 to be spaced apart from the second transparent member 500 in the thickness direction of the second transparent member 500, a certain spacing is formed between the second transparent member 500 and the infrared heat source 400, direct contact between the second transparent member 500 and the infrared heat source 400 can be avoided, and thus the second transparent member 500 can be prevented from being damaged due to excessively high temperature caused by contact with the infrared heat source 400, and the durability of the second transparent member 500 and the practicability of the air fryer 10 are improved.
[0127] With reference to Figure 3 and Figure 4 In some embodiments, the wall surface of the mounting cover 620 has a hollow portion 623 for allowing the interior of the mounting cover 620 to communicate with the containing cavity 110.
[0128] In this way, by arranging the infrared heat source 400 to be spaced apart from the second transparent member 500 in the thickness direction of the second transparent member 500, a certain spacing is formed between the second transparent member 500 and the infrared heat source 400, direct contact between the second transparent member 500 and the infrared heat source 400 can be avoided, and thus the second transparent member 500 can be prevented from being damaged due to excessively high temperature caused by contact with the infrared heat source 400, and the durability of the second transparent member 500 and the practicability of the air fryer 10 are improved.
[0129] In some embodiments, the mounting cover 620 has a plurality of hollow portions 623, which are spaced apart and uniformly arranged along the circumference of the mounting cover 620, so that the heat dissipation capacity is improved on the basis of ensuring the strength of the mounting cover 620, and the practicability of the air fryer 10 is improved.
[0130] With reference to Figure 3 and Figure 4 In some embodiments, the infrared heat source 400 is arranged to be spaced apart from the inner wall of the mounting cover 620. There is a certain spacing distance between the infrared heat source 400 and the inner wall of the mounting cover 620. There is a spacing between the outer circumferential side of the infrared heat source 400 and the inner circumferential side of the mounting cover 620, so that the infrared heat source 400 and the mounting cover 620 are not in direct contact in the circumferential direction.
[0131] In this way, by arranging the infrared heat source 400 to be spaced apart from the second transparent member 500 in the thickness direction of the second transparent member 500, a certain spacing is formed between the second transparent member 500 and the infrared heat source 400, direct contact between the second transparent member 500 and the infrared heat source 400 can be avoided, and thus the second transparent member 500 can be prevented from being damaged due to excessively high temperature caused by contact with the infrared heat source 400, and the durability of the second transparent member 500 and the practicability of the air fryer 10 are improved.
[0132] In addition, since the infrared heat source 400 is not in direct contact with the mounting cover 620, the efficiency of heat conduction from the infrared heat source 400 to the mounting cover 620 can be reduced, and the mounting cover 620 can be prevented from being damaged due to overheating, and the durability of the mounting cover 620 is improved.
[0133] With referenceFigure 4 In some embodiments, the mounting assembly 600 can further comprise a first connecting member 630 for detachably connecting the mounting cover 620 with the mounting base plate 610.
[0134] In this way, the mounting assembly 600 can facilitate the replacement and maintenance of the infrared heat source 400 and the second transparent member 500 by using the first connecting member 630 to detachably connect the mounting cover 620 with the mounting base plate 610, and improve the detachable convenience of the second transparent member 500 and the infrared heat source 400, thereby improving the practicability of the air fryer 10.
[0135] In some embodiments, the first connecting member 630 can be a threaded connecting member, for example, the first connecting member 630 can be a screw or a bolt. The mounting base plate 610 and the mounting cover 620 can be detachably connected by screws.
[0136] Reference Figure 3 and Figure 4 In some embodiments, the mounting cover 620 is a heat insulation cover for preventing the heat of the infrared heat source 400 from spreading towards the bottom of the outer pot body 100, and the mounting cover 620 can be made of a heat insulation material.
[0137] In this way, by setting the mounting cover 620 as a heat insulation cover, the heat of the infrared heat source 400 can be further prevented from spreading towards the bottom of the containing cavity 110 of the outer pot body 100 through the mounting cover 620, thereby avoiding the temperature of the bottom of the outer pot body 100 being too high and the user being scalded due to the overheating of the outer pot body 100, and improving the use safety of the air fryer 10.
[0138] Reference Figure 2 , Figure 3 and Figure 4 In some embodiments, the mounting assembly 600 can further comprise a heat insulation side wall 640 surrounding the outer periphery of the mounting base plate 610. Along the height direction (e.g. Y direction in FIG. 1) of the containing cavity 110, one end of the heat insulation side wall 640 is arranged at the outer periphery of the mounting base plate 610, and the other end of the heat insulation side wall 640 extends towards the top of the containing cavity 110, and the heat insulation side wall 640 and the mounting base plate 610 form a heat insulation cavity 650, and the inner pot body 200 is detachably mounted in the heat insulation cavity 650. Figure 3 In some embodiments, the heat insulation side wall 640 also has an outlet at a position corresponding to the moving outlet, so as to facilitate the inner pot body 200 to be sent into the heat insulation cavity 650 through the outlet.
[0139]
[0140] In some embodiments, the heat insulation side plate 640 is spaced apart from the side wall of the inner pot body 200 so that the heat insulation side plate 640 is not in direct contact with the side wall of the inner pot body 200.
[0141] In this way, the mounting assembly 600 can include the heat insulation side plate 640, and the heat insulation side plate 640 is arranged around the outer periphery of the mounting base plate 610. The inner pot body 200 is mounted in the heat insulation cavity 650 surrounded by the heat insulation side plate 640. When the infrared heat source 400 heats the inner pot body 200 and the food in the inner pot body 200 in the heat insulation cavity 650, the heat insulation side plate 640 can reduce or isolate the temperature of the inner pot body 200 from being dissipated to the side of the outer pot body 100, thereby avoiding the user being scalded due to the high temperature of the side of the outer pot body 100, improving the practicability of the air fryer 10, and improving the heat insulation and heating effect of the air fryer 10.
[0142] Reference Figure 3 and Figure 4 In some embodiments, the heat insulation side plate 640 and the mounting base plate 610 are detachably connected. For example, the heat insulation side plate 640 and the mounting base plate 610 can be connected by a threaded connection, or the heat insulation side plate 640 and the mounting base plate 610 can also be connected by a lap joint or a plug-in joint.
[0143] In other embodiments, the heat insulation side plate 640 and the mounting base plate 610 can also be connected by welding to improve the connection stability between the heat insulation side plate 640 and the mounting base plate 610.
[0144] In this way, by detachably connecting the heat insulation side plate 640 and the mounting base plate 610, the installation and replacement of the heat insulation side plate 640 can be facilitated, the disassembly and installation of the mounting assembly 600 can be facilitated, and the structural compactness between the components inside the air fryer 10 can be improved.
[0145] Reference Figure 4 In some embodiments, the heat insulation side plate 640 has a plug-in portion 641, and the mounting base plate 610 has a plug hole, and the plug-in portion 641 is inserted into the plug hole to realize the plug-in connection between the heat insulation side plate 640 and the mounting base plate 610.
[0146] In some embodiments, the plug-in portion 641 can be located at the end of the heat insulation side plate 640 facing the mounting base plate 610.
[0147] In this way, the detachable connection between the heat insulation side plate 640 and the mounting bottom plate 610 is achieved by inserting the plug-in part 641 into the plug-in hole, which can simplify the detachable connection between the heat insulation side plate 640 and the mounting bottom plate 610, reduce the manufacturing cost of the mounting assembly 600, improve the assembly efficiency of the heat insulation side plate 640 and the mounting bottom plate 610, and further improve the assembly efficiency of the mounting assembly 600.
[0148] With reference to Figure 4 In some embodiments, the mounting bottom plate 610 is detachably connected with the inner wall of the containing cavity 110. In this way, the assembly efficiency between the mounting bottom plate 610 and the outer pot body 100 can be facilitated by detachably connecting the mounting bottom plate 610 with the inner wall of the containing cavity 110, and the assembly efficiency between the mounting assembly 600 and the outer pot body 100 can be improved. In addition, the detachable connection between the mounting bottom plate 610 and the inner wall of the containing cavity 110 can facilitate the separate disassembly and repair of the mounting bottom plate 610, thereby reducing the repair and replacement cost of the air fryer 10.
[0149] With reference to Figure 4 In some embodiments, the mounting assembly 600 can further include a second connecting member, the inner wall of the containing cavity 110 has a first mounting part 660, the mounting bottom plate 610 has a second mounting part 670 matched with the mounting part, and the first mounting part 660 and the second mounting part 670 are detachably connected by the second connecting member.
[0150] In some embodiments, the second connecting member can also be a threaded connecting member, for example, the second connecting member can be a screw or a bolt, so that the first mounting part 660 and the second mounting part 670 are detachably connected by the screw or the bolt.
[0151] In other embodiments, on the basis of the detachable connection between the first mounting part 660 and the second mounting part 670 by the second connecting member, the first mounting part 660 and the second mounting part 670 can also be lap jointed.
[0152] In this way, the detachable connection between the mounting bottom plate 610 and the containing cavity 110 is achieved by detachably connecting the first mounting part 660 and the second mounting part 670 by using the second connecting member. The connection between the first mounting part 660 and the second mounting part 670 by the second connecting member is simple and easy to operate, which can improve the assembly efficiency between the mounting bottom plate 610 and the inner wall of the containing cavity 110, and thus improve the assembly efficiency between the mounting assembly 600 and the outer pot body 100.
[0153] With reference to Figure 3 In some embodiments, the inner wall of the containing cavity 110 has a third mounting part 680, and the heat insulation side plate 640 is detachably connected with the third mounting part 680.
[0154] In this way, on the basis of the connection of the heat insulation side plate 640 and the mounting bottom plate 610, further detachable connection of the heat insulation side plate 640 and the third mounting portion 680 on the containing cavity 110 can improve the mounting stability of the heat insulation side plate 640, improve the connection stability between the mounting assembly 600 and the outer pot body 100, and thus improve the structural stability of the air fryer 10.
[0155] In some embodiments, the third mounting portion 680 can be arranged close to the top of the containing cavity 110, which can facilitate the connection of the heat insulation side plate 640 to the containing cavity 110 towards the area of the top of the containing cavity 110, so that both ends of the heat insulation side plate 640 in the height direction can be directly or indirectly connected to the outer pot body 100, improving the connection stability between the heat insulation side plate 640 and the outer pot body 100, and further improving the connection stability between the mounting assembly 600 and the outer pot body 100.
[0156] The heat insulation side plate 640 can be detachably connected to the third mounting portion 680 through a threaded connection, so as to facilitate disassembly and maintenance of the heat insulation side plate 640.
[0157] In the specification, each embodiment or implementation is described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts between embodiments can be mutually referred to.
[0158] It should be noted that the terms "in a specific implementation", "in some embodiments", "in the present embodiment", "exemplarily" and the like in the specification indicate that the described embodiments can include specific features, structures or characteristics, but not necessarily every embodiment includes the specific features, structures or characteristics. In addition, such phrases do not necessarily refer to the same embodiment. In addition, when a specific feature, structure or characteristic is described in combination with an embodiment, it is within the knowledge of those skilled in the art to realize such feature, structure or characteristic in combination with other embodiments described explicitly or implicitly.
[0159] Generally, the terms should be understood at least partly by the use in context. For example, at least partly according to the context, the term "one or more" used in the specification can be used to describe any feature, structure or characteristic in singular sense, or can be used to describe a combination of features, structures or characteristics in plural sense. Similarly, at least partly according to the context, terms such as "a" or "said" can be understood to convey singular usage or convey plural usage.
[0160] It should be readily understood that "on," "over," and "above" in the present disclosure are to be interpreted in the broadest context, such that "on" means not only "directly on" but also includes the meaning of "on" with intervening features or layers therebetween, and "over" or "above" includes not only the meaning of "over" or "above" but also the meaning of "over" or "above" with no intervening features or layers therebetween (i.e., directly on).
[0161] In addition, spatially relative terms, such as "beneath", "below", "lower", "above", "upper" and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. The spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. The devices can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly.
[0162] Finally, it should be noted that the above-described embodiments are merely intended for describing and illustrating, not limiting, the technical solutions of the present application; even though the present application has been described in detail with reference to the above-described embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the above-described embodiments, or equivalently replace some or all of the technical features thereof; and such modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. An air fryer characterized in that, The application relates to a cooking device, comprising, an outer pot body with a containing cavity; an inner pot body detachably arranged in the containing cavity; a first transparent member constituting at least a part of the bottom of the inner pot body; a top heating member located at the top of the containing cavity; an infrared heat source located between the bottom of the containing cavity and the bottom of the inner pot body, the infrared heat source being arranged towards the first transparent member; a second transparent member for separating the infrared heat source and the first transparent member; infrared rays emitted by the infrared heat source are transmitted into the inner pot body through the second transparent member and the first transparent member; a mounting assembly arranged in the containing cavity and used for mounting the second transparent member.
2. The air fryer according to claim 1, characterized in that The mounting assembly comprises a mounting bottom plate; the mounting bottom plate has an opening, and a second transparent member cover is arranged on the opening; the infrared heat source is located on the side of the second transparent member away from the inner pot body.
3. The air fryer according to claim 2, characterized in that The mounting assembly further comprises a mounting cover; the mounting cover covers the infrared heat source and the second transparent member.
4. The air fryer according to claim 3, characterized in that The mounting cover comprises: a containing part for containing the infrared heat source; a pressing part arranged at the outer edge of the containing part, and the pressing part is used for pressing the second transparent member to the mounting bottom plate.
5. The air fryer of claim 1, wherein, Along the thickness direction of the second transparent member, the infrared heat source is arranged in a spaced manner with the second transparent member.
6. The air fryer of claim 3, wherein, The wall surface of the mounting cover has a hollow part for communicating the inside of the mounting cover with the containing cavity.
7. The air fryer of claim 3, wherein, The infrared heat source is arranged in a spaced manner with the inner wall of the mounting cover.
8. The air fryer of claim 3, wherein, The mounting assembly further comprises a first connecting member for detachably connecting the mounting cover with the mounting bottom plate.
9. The air fryer of claim 3, wherein, The mounting cover is a heat insulation cover used for preventing the heat of the infrared heat source from spreading towards the bottom of the outer pot body.
10. The air fryer of claim 2, wherein, The mounting assembly further comprises a heat insulation side wall plate; the heat insulation side wall plate is arranged around the outer periphery of the mounting bottom plate, extends towards the top of the containing cavity, and forms a heat insulation cavity together with the mounting bottom plate; the inner pot body is detachably arranged in the heat insulation cavity.
11. The air fryer of claim 10, wherein, The heat insulation side wall plate and the mounting bottom plate are detachably connected.
12. The air fryer of claim 11, wherein, The heat insulation side wall plate has a plug-in part, and the mounting bottom plate has a plug hole, the plug-in part being arranged in the plug hole.
13. The air fryer of claim 2, wherein, The mounting bottom plate is detachably connected with the inner wall of the containing cavity.
14. The air popcorn popper of claim 13, wherein, The mounting assembly further comprises a second connecting member; the inner wall of the containing cavity has a first mounting part; the mounting bottom plate has a second mounting part matched with the mounting part; the first mounting part and the second mounting part are detachably connected through the second connecting member.
15. The air fryer of claim 10, wherein, The inner wall of the containing cavity has a third mounting part; the heat insulation side wall plate is detachably connected with the third mounting part.
16. The air fryer of claim 1, wherein, The infrared heat source is an electric ceramic stove heating disc; and / or, along the height direction of the containing cavity, the orthographic projection of the infrared heat source is circular, the outer diameter of the orthographic projection of the infrared heat source is greater than or equal to 9 cm and less than or equal to 12 cm; and / or, the power of the infrared heat source is greater than or equal to 650 W and less than or equal to 1000 W.