The present disclosure relates to the field of air fryers, in particular to an air fryer with a transparent window.
An air fryer is an electrical appliance that uses high-temperature air to fry and roast food. In order to observe the cooking state of the food, the existing air fryers are often equipped with a window structure. Some of the windows are set on the drawer-type frying basket, and some are set on the top of the body. The sealing of the window structure provided on the drawer-type frying basket is a problem, in which the window is easy not to be installed firmly, and therefore, the sealing is poor, which will cause the heat in the frying basket to leak.
At present, illumination lights are generally installed inside the air fryer with a window. The illumination light of most products is installed in places where the ambient temperature is relatively high, which will lead to a short lifespan of the illumination lights.
The present disclosure provides an air fryer with a transparent window, which can realize the positioning and installation of the window member, at the same time, effectively prevent the heat in the frying basket from overflowing, reduce the ambient temperature at the installation position of the illumination light, and prolong the lifespan of the illumination light.
In order to achieve the above object, the present disclosure provides the following technical solutions. An air fryer with a transparent window includes a body, wherein the side of the body is provided with an opening communicating with the cooking chamber inside the air fryer. The opening can be inserted by a drawer-type frying basket, and the drawer-type frying basket includes a frying basket and a door panel portion connected to one side of the frying basket, wherein the door panel portion is configured to seal the opening. The door panel portion and the side wall of the frying basket are correspondingly provided with hollow portions, wherein the hollow portion of the door panel portion is provided with a window member. A window rear cover is installed between the inner side of the door panel portion and the frying basket, wherein the window rear cover has a hollow structure corresponding to the hollow portions on the door panel portion and the frying basket. One side of the window rear cover abuts against the frying basket, and the other side abuts against the window member to press and fix the window member on the door panel portion.
Preferably, the door panel portion includes a front door panel and a rear door panel, wherein the hollow portions of the front door panel and the rear door panel are respectively equipped with a window front cover made of a light-transmitting material and the window member.
Preferably, the edge of the hollow portion of the frying basket is provided with a flanging portion, wherein the side of the window rear cover facing the frying basket is provided with a concave step.
Preferably, one side of the window rear cover facing the window member is provided with a ring of retaining rib that is attached to the window member.
Preferably, several buffer pads are provided between the window member and the window rear cover on the periphery of the retaining rib.
Preferably, the buffer pads include a buffer sheet attached to the window member and a mounting column arranged on one side of the buffer sheet, wherein several slots are provided on the circumferential side wall of the mounting column, and a positioning hole are provided at the end portion of the mounting column. A socket for inserting the mounting column is provided on the side wall of the window rear cover at a position corresponding to the buffer pad, and the inner wall of the socket is provided with convex ribs embedded in the corresponding slot, and the bottom of the socket is provided with a positioning column inserted into the positioning hole.
Preferably, the rear door panel is provided with a positioning groove corresponding to the window member, wherein the edge of the window member is at least partially located in the positioning groove.
Preferably, the frying basket is connected with the rear door panel through several fasteners, wherein the fasteners are distributed outside the hollow portion.
Preferably, a frying panel supporting step is provided on the inner wall of the frying basket, wherein the hollow portion of the frying basket is located on the upper side of the frying panel supporting step.
Preferably, the side wall of the rear door panel facing the frying basket is provided with a frying basket positioning groove, wherein the outwardly extending edge of the upper end of the frying basket extends into the frying basket positioning groove.
Preferably, a heat dissipation channel is formed between the outside of the cooking chamber and the body of the air fryer, wherein an illumination light is arranged in the heat dissipation channel, and a light-transmitting member is provided at a position corresponding to the illumination light on the cooking chamber. The light emitted by the illumination light is irradiated into the cooking chamber through the light-transmitting member.
Preferably, the cooking chamber is formed by the lower machine core and the air duct plate on the upper side of the lower machine core, wherein a heat dissipation channel is formed between the air duct plate and the upper machine core on its upper side, and the illumination light is located inside the heat dissipation channel.
Preferably, an opening is provided on the air duct plate at a position corresponding to the illumination light, wherein a light-transmitting member is installed at the opening.
Preferably, the light-transmitting member is light-transmitting glass.
Preferably, the opening is arranged inside an inner recess outside the air duct plate, wherein the size of the inner recess matches the light-transmitting member.
Preferably, the illumination light is installed on the upper machine core.
Preferably, the top and bottom of the body are both provided with cold air inlets, and the sides of the body are provided with cold air outlets, wherein the cold air inlets and cold air outlets are all communicated to the heat dissipation channel.
Preferably, a cooling fan communicating with the heat dissipation channel is installed on the upper side of the cooking chamber.
Compared with prior art, the beneficial effect of the present disclosure is as follow.
The drawer-type frying basket has a window structure, and a window rear cover is provided, which can realize the positioning and installation of the window member, and at the same time, effectively prevent the heat in the frying basket from overflowing. Multiple buffer rubber pads are provided between the window rear cover and the window member, wherein the height of buffer rubber pads are slightly higher than that of the retaining rib, so as to prevent the retaining rib from crushing the window member. The illumination light is arranged in the heat dissipation channel outside the cooking chamber, and the light can pass through the light-transmitting member on the cooking chamber and enter the cooking chamber to perform illumination. At the same time, the illumination light is continuously being cooled, thereby greatly extending the lifespan.
1. cooking chamber, 11. flanging portion, 12. lower machine core; 14. heat dissipation channel, 15. light-transmitting member; 16. illumination light; 17. upper machine core, 18. air duct plate; 19. cooling fan; 2. window rear cover; 21. concave step; 22. retaining rib; 23. socket; 24. convex rib; 25. positioning column; 3. window member; 4. rear door panel; 42. positioning groove; 43. frying basket positioning groove; 5. window front cover; 6. front door panel; 7. frying panel supporting step; 8. buffer pad; 81. buffer sheet; 82. mounting column; 83. positioning hole; 84. slot; 9. fastener; 10. frying basket.
The following will clearly and completely describe the technical solutions in the embodiments of the present disclosure with reference to the drawings in the embodiments of the present disclosure.
As shown in
The window member 3 is pressed by the window rear cover 2 to realize the positioning and installation of the window member 3, and at the same time, effectively prevent the heat in the frying basket from overflowing from the installation gap of the window member 3.
As shown in
The front door panel 6 and the rear door panel 4 are assembled first while installing, and the window front cover 5 is installed and positioned at the same time, then the window member 3 is installed on the rear side of the rear door panel 4 and is compressed by the window rear cover 2. After that, the frying basket 10 is connected with the rear door panel 4, so as to clamp tightly the window rear cover 2, so that the installation and fixation of the window member 3 is accomplished.
At the same time, as shown in
The side of the window rear cover 2 facing the window member 3 is provided with a ring of retaining rib 22 attached tightly to the window member 3, and the retaining rib 22 can block heat and prevent heat from overflowing.
In order to prevent the window member 3 from being crushed by the window rear cover 2, several buffer pads 8 are arranged between the window member 3 and the window rear cover 2 on the periphery of the retaining rib 22, and the buffer pads 8 limit and support the window member 3, wherein the height of buffer pads 8 is slightly higher than that of the retaining rib 22, thus, the retaining rib 22 will not directly contact and put stress on the window member 3, so as to prevent the retaining rib from crushing the window member 3.
As a specific embodiment of the buffer pad 8, as shown in
The insertion connection between the slot 84 and the convex rib 24 can prevent the buffer pad 8 from rotating, and the positioning hole 83 can perform central orientation for the buffer pad 8 when installing the buffer pad 8. Through this installation method, the end face of the buffer sheet 81 can be flatly attached to the window member 3, thereby effectively supporting the window member 3.
In order to further facilitate the installation of the window member 3, as shown in
The frying basket 10 is connected with the rear door panel 4 through several fasteners 9, as shown in
As shown in
The side wall of the rear door panel 4 facing the frying basket 10 is provided with a frying basket positioning groove 43, wherein the outwardly extending edge of the upper end of the frying basket 10 extends into the frying basket positioning groove 43. When installing the frying basket 10, the edge can be first inserted into the frying basket positioning groove 43 for positioning, which is convenient for installation. Moreover, the edge embedded in the frying basket positioning groove 43 can also prevent the leakage of heat.
At the same time, when installing the handle, the fastener 9 configured for the handle installation can be arranged in the frying basket positioning groove 43, such that the handle is fixed from the inside, which saves space.
As another embodiment of the present disclosure, as shown in
As shown in
Specifically, as shown in
At the same time, the position corresponding to the illumination light 16 is opened on the air duct plate 18, wherein the light-transmitting member 15 is installed at the opening. The air duct plate 18 is an independent part, and it is easier to form an opening on it, and the area of the light-transmitting member 15 can also be made larger to increase the lighting area. Specifically, the opening on the side wall of the air duct plate 18 is provided with a concave part. The light-transmitting member 15 is embedded in the concave part for positioning, and simultaneously, is connected to the air duct plate 18.
The light-transmitting member 15 herein is light-transmitting glass, which generally adopts heat-insulating glass. A sealing member is arranged between the light-transmitting member 15 and the air duct plate 18, to prevent the heat in the cooking chamber from leaking.
In order to improve the flow rate of the cold air in the heat dissipation channel 14 and simultaneously dissipate heat to the components in the cooking chamber and the upper machine core, the top and bottom of the body are provided with cold air inlets, and the sides of the body are provided with cold air outlets, wherein the cold air inlets and the cold air outlets are all in communication with the heat dissipation channel 14.
Simultaneously, the upper side of the cooking chamber 1 is installed with the cooling fan 19 that communicates with the heat dissipation channel 14, the cold air can be inhaled from cold air inlets at the top and bottom of body by cooling fan 19, then can be led to and discharged through the cold air outlets, thereby improving the flow rate of cold air in the heat dissipation channel 14. A cooling fan 19 also can be installed in the upper machine core 17, so that the cold air can be inhaled quickly from the top of the body conveniently.
While the present disclosure has been described above with reference to the embodiments, various modifications can be made thereto and equivalents can be used to substitute the elements thereof without departing from the scope of the present disclosure. In particular, the various features in the embodiments disclosed in the present disclosure can be configured in combination with each other in any way, as long as there is no structural conflict, and the description of these combinations is not exhaustive in this specification only because of consideration of omitting space and saving resources. Therefore, the present disclosure is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Number | Date | Country | Kind |
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202120304344.7 | Feb 2021 | CN | national |
202120304361.0 | Feb 2021 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2021/112479 | 8/13/2021 | WO |