A double-layer air fryer convenient to operate
Patent Information
- Application Number
- CN202521821029.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-08-26
AI Technical Summary
[0004]本实用新型的目的是提供一种操作便捷的双层式空气炸锅,解决取双层炸篮时操作不便、效率低下的问题,具有提升用户的使用体验的效果
采用炸锅本体内设置弹出装置,使所述炸篮松脱并伸出于烹饪空间,操作者只需按压按压部,即可轻松将炸篮取出,且避免炸锅本体移动或倾翻,提升了使用的便捷性;顶出部分别作用于上方炸篮与下方炸篮的延伸部,使上方炸篮和下方炸篮能同时松脱于烹饪空间,节省操作步骤,也避免双手同时操作导致炸锅本体晃动、炸篮滑脱甚至食物洒落的问题,提升了用户的使用体验。
Smart Images

Figure CN224685683U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen cooking appliances technology, and in particular to a convenient double-layer air fryer. Background Technology
[0002] Air fryers have become one of the most popular appliances in modern family kitchens due to their convenient, healthy, and efficient cooking methods. To further improve cooking efficiency and meet the needs of cooking different ingredients at the same time, double-layer air fryers have appeared on the market. These fryers typically have two independent cooking spaces inside a single fryer body, with each space equipped with a separate frying basket for placing food.
[0003] While existing double-layer air fryer designs improve space utilization and cooking flexibility, they present significant inconveniences in actual operation, especially when both baskets need to be removed simultaneously. The main problem is that users typically need one hand to stabilize the fryer body to prevent it from moving or tipping over, while the other hand can pull out the baskets. Furthermore, removing both baskets at the same time is difficult. The common practice is to remove the upper basket first, set it aside, and then remove the lower basket. This process is cumbersome and time-consuming. Even if attempts are made to remove them simultaneously, instability can easily lead to the fryer body shaking, the baskets slipping, or even food spilling, posing a safety hazard. Utility Model Content
[0004] The purpose of this invention is to provide a convenient double-layer air fryer that solves the problems of inconvenience and low efficiency when taking out the double-layer frying basket, thereby improving the user experience.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a convenient double-layer air fryer, including an air fryer body and a heating component located inside the air fryer body. The air fryer body is provided with a cooking space, and a detachable frying basket is provided in the cooking space. The frying basket has a locked state that engages with the cooking space. The air fryer body is provided with a pop-out device, which includes a pressing part extending out of the air fryer body. The pop-out device applies force to the frying basket through the pressing part, so that the frying basket is released and extends out of the cooking space.
[0006] By adopting the above technical solution, the operator can easily remove the frying basket by simply pressing the pressing part, thus avoiding the fryer body from moving or tipping over, and improving the convenience of use.
[0007] A further feature of this invention is that the fryer body includes a housing, the heating assembly includes a fan and a heating tube fixed inside the housing, the fan is located in the insertion direction of the frying basket, the heating tube corresponds to the opening end of the frying basket, and the heating assembly acts independently on each layer of the cooking space.
[0008] By adopting the above technical solution, the layout is reasonable, and the two sets of heating components operate independently without interfering with each other, thus ensuring work efficiency.
[0009] A further feature of this invention is that a support is horizontally arranged inside the casing, located in the middle of the casing. The support creates a cooking space with an upper and lower double-layer structure inside the casing. A hollow portion is provided inside the support to accommodate the ejector device. One end of the frying basket forms an extension that extends into the hollow portion, and the extension contacts the ejector device.
[0010] By adopting the above technical solution, the structure is simple, the operation is convenient, and it is easy to implement.
[0011] A further feature of this invention is that: guide components are provided on both the upper and lower inner walls of the hollow portion; the pop-out device includes a push-out portion formed on the pressing portion; the push-out portion extends into the hollow portion; and the guide components act on the surface of the extension portion to push it out of the cooking space.
[0012] A further feature of this invention is that the ejector portion acts on the extension of each frying basket, causing each frying basket to pop out of the cooking space.
[0013] By adopting the above technical solution, the upper and lower frying baskets can be released from the cooking space at the same time, saving operation steps and avoiding the problems of the fryer shaking, the frying basket slipping, or even food spilling caused by operating with both hands at the same time, thus improving the user experience.
[0014] A further feature of this invention is that the ejector device includes a fixed plate disposed below the pressing part, a push post disposed between the fixed plate and the pressing part, a fixed block fixedly connected to the fixed plate, one end of the push post fixedly connected to the pressing part, and the other end movably passing through the fixed block, a first spring sleeved on the push post, the first spring being located between the fixed block and the pressing part, the contraction direction of the first spring being the same as the pressing direction of the pressing part, a third storage groove disposed below the pressing part, a fixed post horizontally fixedly disposed on the third storage groove, a second spring sleeved on the fixed post, an elastic clip fixedly connected to the end of the second spring, a clip plate formed on the fixed plate, a slot for the elastic clip to enter the slot, the slot being arranged in a stepped manner, forming a first step surface, a second step surface, and a third step surface arranged sequentially from high to low, an arc-shaped surface for transitioning the first step surface, the second step surface, and the third step surface being disposed at the opening end of the slot, a clip block disposed in the slot, the clip block having an arc-shaped groove opening downwards, the arc-shaped groove being located on the second step surface.
[0015] By adopting the above technical solution, the frying basket can be popped out quickly, making it easy to pick up and simple and labor-saving to operate.
[0016] A further feature of this invention is that guide components are provided on both the upper and lower inner walls of the hollow portion, and the guide components transmit the pressing force applied by the top portion in the opposite direction to the extension of the frying basket.
[0017] By adopting the above technical solution, the function of pressing the pressing part to push out the exploding basket can be achieved.
[0018] A further feature of this invention is that: a guide surface is provided at the end of the ejector portion away from the pressing portion; the guide assembly includes an elastic element; a guide block is fixedly connected to the movable end of the elastic element; a mating surface is provided on the guide block to guide and cooperate with the guide surface; an inclined block is fixedly connected to the bottom of the frying basket; an inclined surface is provided on the inclined block; when the guide surface and the mating surface guide and cooperate, causing the guide block to move in the direction of compressing the elastic element, the guide block acts on the inclined surface and pushes the inclined block to move away from the pressing direction of the pressing portion.
[0019] By adopting the above technical solution, the sudden rebound of the guide block is avoided, which can easily cause damage and improve the service life of the parts. In addition, when the elastic clip is inserted into the arc groove, there will be a "tick" sound to indicate that the pressing is complete, which reduces the error operation and has the effect of preventing mistakes.
[0020] A further feature of this invention is that a support frame is formed on the hollow portion, the support frame is mounted between the top and bottom walls of the hollow portion, and has a protrusion protruding toward the ejection device, the upper and lower ends of the protrusion respectively abutting against the guide block.
[0021] By adopting the above technical solution and setting up a support frame to support the guide block, the overall transmission of the ejection device becomes more stable.
[0022] In summary, this utility model has the following beneficial effects: The fryer features a pop-out mechanism inside, allowing the frying basket to detach and extend into the cooking space. The operator can easily remove the basket by simply pressing the pressing part, preventing the fryer from moving or tipping over, thus improving ease of use. The ejection part acts on the extensions of the upper and lower frying baskets, allowing both baskets to detach from the cooking space simultaneously. This saves on steps and avoids problems such as the fryer shaking, basket slippage, or food spillage caused by operating both hands at the same time, enhancing the user experience. Attached Figure Description
[0023] Figure 1 This is a perspective view of the present invention.
[0024] Figure 2 This is a cross-sectional view of the present invention.
[0025] Figure 3 This is a utility model Figure 2 Enlarged view of point B in the middle.
[0026] Figure 4 This is a schematic diagram of the ejection device of this utility model.
[0027] Figure 5 This is a utility model Figure 3 Enlarged view of point A in the middle.
[0028] In the diagram: 1. Fryer body; 11. Housing; 12. Support; 2. Heating assembly; 21. Fan; 22. Heating tube; 3. Cooking space; 4. Frying basket; 41. Extension; 5. Hollow part; 6. Pop-out device; 61. Pressing part; 62. Ejection part; 621. Guide surface; 63. Fixing plate; 64. Pushing column; 65. Fixing block; 66. First spring; 67. Third storage slot; 68. Fixing column; 69. Second spring; 70. Elastic clip; 71. Clamping plate; 72. Slot; 73. First step surface; 74. Second step surface; 75. Third step surface; 76. Arc surface; 77. Clamping block; 78. Arc groove; 81. Elastic element; 82. Guide block; 821. Mating surface; 83. Inclined block; 831. Inclined surface; 84. Support frame; 841. Protrusion. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings.
[0030] A user-friendly double-layer air fryer, such as Figure 1-5As shown, the fryer includes a fryer body 1 and a heating element 2 located within the fryer body 1. The fryer body 1 has a cooking space 3, and a detachable frying basket 4 is installed within the cooking space 3. The frying basket 4 is in a locked state that engages with the cooking space 3. The fryer body 1 also has a pop-out device 6, which includes a pressing part 61 extending from the fryer body 1. The pop-out device 6 applies force to the frying basket 4 through the pressing part 61, causing the frying basket 4 to detach and extend out of the cooking space 3. Two cooking spaces 3 are configured, perpendicular and independent of each other, and two corresponding frying baskets 4 are also configured, each engaging with its respective cooking space 3. With this design, the operator can easily remove the frying basket 4 by simply pressing the pressing part 61, preventing the fryer body 1 from moving or tipping over, thus improving ease of use.
[0031] Preferably, the fryer body 1 includes a housing 11, and the heating assembly 2 includes a fan 21 and a heating tube 22 fixed inside the housing 11. The fan 21 is located in the insertion direction of the frying basket 4, and the heating tube 22 corresponds to the open end of the frying basket 4. The heating assembly 2 acts independently on each layer of cooking space 3. Two fans 21 and two heating tubes 22 are configured and fixed vertically to the inner wall of the housing 11. Natural air is drawn into the fan 21 and blown over the heating tube 22 to form hot air, which cooks the food in the frying basket 4 below the heating tube 22. The layout is reasonable, and the two sets of heating assemblies 2 operate independently without interference, ensuring working efficiency.
[0032] Preferably, a support 12 is horizontally arranged inside the housing 11, located at the middle of the housing 11. The support 12 creates a cooking space 3 with a double-layer structure inside the housing 11. A hollow portion 5 is provided inside the support 12 to accommodate the ejector device 6. One end of the frying basket 4 forms an extension 41 that extends into the hollow portion 5, and the extension 41 contacts the ejector device 6. The hollow portion 5 is close to the insertion end of the frying basket 4. An elastic device acts on the extension 41, causing the extension 41 to shift, thereby releasing the frying basket 4 from the cooking space 3. The structure is simple, the operation is convenient, and it is easy to implement.
[0033] Preferably, guide components are provided on both the upper and lower inner walls of the hollow part 5, and the pop-out device 6 includes a push-out part 62 formed on the pressing part 61. The push-out part 62 extends into the hollow part 5 and is pushed out of the cooking space 3 by the guide components acting on the surface of the extension part 41.
[0034] Preferably, the ejector portion 62 acts on the extension portion 41 of each frying basket 4, causing each frying basket 4 to pop out of the cooking space 3. The ejector portion 62 consists of two elongated protrusions extending away from the pressing portion 61. One protrusion acts on the extension portion 41 of the upper frying basket 4, and the other protrusion acts on the extension portion 41 of the lower frying basket 4, allowing the upper and lower frying baskets 4 to be released from the cooking space 3 simultaneously. This saves on operation steps and avoids problems such as shaking of the fryer body 1, slippage of the frying baskets 4, or even food spillage caused by simultaneous operation with both hands, thus improving the user experience.
[0035] Preferably, the pop-out device 6 further includes a fixing plate 63 disposed below the pressing part 61. A pushing column 64 is disposed between the fixing plate 63 and the pressing part 61. A fixing block 65 is fixedly connected to the fixing plate 63. One end of the pushing column 64 is fixedly connected to the pressing part 61, and the other end is movably inserted into the fixing block 65. A first spring 66 is sleeved on the pushing column 64. The first spring 66 is located between the fixing block 65 and the pressing part 61. The contraction direction of the first spring 66 is the same as the pressing direction of the pressing part 61. A third storage slot 67 is disposed below the pressing part 61. A fixing column 68 is horizontally fixedly disposed on the third storage slot 67. A second spring 69 is sleeved on the upper part, and an elastic clip 70 is fixedly connected to the end of the second spring 69. A clip plate 71 is formed on the fixing plate 63. The clip plate 71 has a slot 72 for the elastic clip 70 to enter. The slot 72 is arranged in a stepped manner, forming a first step surface 73, a second step surface 74, and a third step surface 75 arranged sequentially from high to low. An arc-shaped surface 76 is provided at the opening end of the slot 72 to transition between the first step surface 73, the second step surface 74, and the third step surface 75. A clip block 77 is provided in the slot 72. An arc-shaped groove 78 with an opening facing downward is provided on the clip block 77. The arc-shaped groove 78 is located on the second step surface 74. When the pressing part 61 is pressed, the pushing column 64 drives the first spring 66 to move along the pressing direction, causing the first spring 66 to contract under the pressure of the pressing part 61 and the fixing block 65. At this time, the elastic clip 70 moves downward along the first step surface 73 within the slot 72. Guided by the outer contour of the clip block 77, it gradually moves to the second step surface 74 below the first step surface 73. At this time, the ejector part 62 acts on the surface of the guide block 82 to push its displacement. Then, the pressing part 61 is released, and the elastic clip 70, under the height resistance of the first step surface 73, moves along the second step surface 74. The fryer basket 4 slides into the arc-shaped groove 78, with the ejector part 62 maintaining its pushing posture. After ejection, pressing the pressing part 61 again causes the elastic clip 70 to slide into the third step surface 75 under the guidance of the arc-shaped groove 78. At this time, the second spring 69 is compressed. After releasing the pressing part 61, under the guidance of the outer contour of the locking block 77 and the elastic force of the second spring 69, the elastic clip 70 gradually moves upward along the outer contour of the locking block 77 until it moves through the arc-shaped surface 76 to the displacement starting end on the first step surface 73. At this time, the ejector part 62 retracts, allowing the fryer basket 4 to enter the cooking space 3 normally. Through the above structural design, the fryer basket 4 can pop out quickly, making it easy to pick up and operate simply and effortlessly.
[0036] Preferably, guide components are provided on both the upper and lower inner walls of the hollow portion 5. The guide components transmit the pressing force applied by the ejector portion 62 in the opposite direction to the extension portion 41 of the frying basket 4. Specifically, the pressing force applied by the ejector portion 62 is directed from the outside to the inside of the fryer body 1, but through the guiding effect of the guide components, the force applied to the frying basket 4 is directed from the inside to the outside of the fryer body 1, thus realizing the function of the pressing part 61 ejecting the frying basket 4.
[0037] Preferably, the end of the ejector portion 62 away from the pressing portion 61 is provided with a guide surface 621. The guide assembly includes an elastic element 81. The movable end of the elastic element 81 is fixedly connected to a guide block 82. The guide block 82 is provided with a mating surface 821 that guides and cooperates with the guide surface 621. The bottom of the frying basket 4 is fixedly connected to an inclined block 83. The inclined block 83 is provided with an inclined surface 831. When the guide surface 621 and the mating surface 821 guide and cooperate, causing the guide block 82 to move in the direction of compressing the elastic element 81, the guide block 82 acts on the inclined surface 831 and pushes the inclined block 83 to move away from the pressing direction of the pressing portion 61. The guide block 82 is a wedge-shaped block, with its guide surface 621 parallel to the mating surface 821. The tilting block 83 is integrally formed with the blast basket 4. The tilting surface 831 of the tilting block 83 is located on the displacement path of the guide block 82 along the elastic member 81 and tilts towards the guide block 82. When the outer contour of the locking block 77 gradually moves to the second step surface 74 below the first step surface 73 under the guidance of the outer contour, the guide surface 621 of the ejector part 62 acts on the mating surface 821 of the guide block 82, and under the drive of the elastic member 81, pushes the guide block 82 to move away from the ejector part 62 until it abuts against the tilting surface 831 of the tilting block 83. The continuous force pushes the tilting block 83, causing the entire frying basket 4 to move away from the cooking space 3. When the pressing part 61 is released, the elastic clip 70, under the height resistance of the first step surface 73, slides into the arc groove 78 along the second step surface 74. The ejector part 62 maintains the holding posture of the guide block 82. The guide block 82 always maintains the holding state of the tilting block 83, avoiding the sudden rebound of the guide block 82 which can easily cause damage, thus improving the service life of the parts. Moreover, when the elastic clip 70 is inserted into the arc groove 78, there will be a "tick" sound to indicate that the pressing is complete, reducing accidental operation and having a foolproof effect.
[0038] Preferably, a support frame 84 is formed on the hollow portion 5. The support frame 84 is mounted between the top and bottom walls of the hollow portion 5 and has a protrusion 841 protruding towards the ejection device 6. The upper and lower ends of the protrusion 841 abut against the guide block 82, respectively. The support frame 84 is integrally formed with the bracket 12. The maximum diameter of the protrusion 841 is smaller than the distance between the ejection portions 62. By setting the support frame 84 to support the guide block 82, the overall transmission of the ejection device 6 is made more stable.
[0039] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A convenient double-layer air fryer, comprising an air fryer body (1) and a heating component (2) located within the air fryer body (1), characterized in that: The fryer body (1) is provided with a cooking space (3), and a detachable frying basket (4) is provided in the cooking space (3). The frying basket (4) is in a locked state that is engaged with the cooking space (3). The fryer body (1) is provided with a pop-out device (6). The pop-out device (6) includes a pressing part (61) extending out of the fryer body (1). The pop-out device (6) applies force to the frying basket (4) through the pressing part (61) so that the frying basket (4) is released and extends out of the cooking space (3).
2. The convenient double-layer air fryer according to claim 1, characterized in that: The fryer body (1) includes a housing (11), and the heating component (2) includes a fan (21) and a heating tube (22) fixed in the housing (11). The fan (21) is located in the insertion direction of the frying basket (4), and the heating tube (22) corresponds to the opening end of the frying basket (4). The heating component (2) acts independently on each layer of cooking space (3).
3. The convenient double-layer air fryer according to claim 2, characterized in that: A bracket (12) is horizontally arranged inside the housing (11) and located in the middle of the housing (11). The bracket (12) creates a cooking space (3) with a double-layer structure inside the housing (11). A hollow part (5) is provided inside the bracket (12) to accommodate the pop-up device (6). One end of the frying basket (4) forms an extension (41) and extends into the hollow part (5). The extension (41) contacts the pop-up device (6).
4. A convenient double-layer air fryer according to claim 3, characterized in that: The hollow part (5) is provided with guide components on both the upper and lower inner walls. The pop-out device (6) includes a push-out part (62) formed on the pressing part (61). The push-out part (62) extends into the hollow part (5) and is pushed out of the cooking space (3) by the guide components acting on the surface of the extension part (41).
5. A convenient double-layer air fryer according to claim 4, characterized in that: The ejector (62) acts on the extension (41) of each frying basket (4) and causes each frying basket (4) to pop out of the cooking space (3).
6. A convenient double-layer air fryer according to claim 4, characterized in that: The ejection device (6) further includes a fixing plate (63) disposed below the pressing part (61). A push post (64) is disposed between the fixing plate (63) and the pressing part (61). A fixing block (65) is fixedly connected to the fixing plate (63). One end of the push post (64) is fixedly connected to the pressing part (61), and the other end is movably inserted into the fixing block (65). A first spring (66) is sleeved on the push post (64). The first spring (66) is located between the fixing block (65) and the pressing part (61). The contraction direction of the first spring (66) is the same as the pressing direction of the pressing part (61). A third storage slot (67) is disposed below the pressing part (61). A fixing post (68) is horizontally fixedly disposed on the third storage slot (67). A fixing post (68) is sleeved on the fixing post (68). A second spring (69) is connected to the end of the second spring (69), and an elastic clip (70) is fixedly connected to the end of the second spring (69). A clip plate (71) is formed on the fixing plate (63). A slot (72) is opened on the clip plate (71) for the elastic clip (70) to enter. The slot (72) is arranged in a stepped manner, forming a first step surface (73), a second step surface (74), and a third step surface (75) arranged from high to low. An arc-shaped surface (76) for transitioning the first step surface (73), the second step surface (74), and the third step surface (75) is provided at the opening end of the slot (72). A clip block (77) is provided in the slot (72). An arc-shaped groove (78) with an opening facing downward is opened on the clip block (77). The arc-shaped groove (78) is located on the second step surface (74).
7. A convenient double-layer air fryer according to claim 4, characterized in that: The guide assembly transmits the pressing force applied by the ejector (62) in the opposite direction to the extension (41) of the frying basket (4).
8. A convenient double-layer air fryer according to claim 7, characterized in that: The ejector part (62) has a guide surface (621) at one end away from the pressing part (61). The guide assembly includes an elastic element (81). The movable end of the elastic element (81) is fixedly connected to a guide block (82). The guide block (82) has a mating surface (821) that guides and cooperates with the guide surface (621). The bottom of the frying basket (4) is fixedly connected to an inclined block (83). The inclined block (83) has an inclined surface (831). When the guide surface (621) and the mating surface (821) guide and cooperate, causing the guide block (82) to move in the direction of compressing the elastic element (81), the guide block (82) acts on the inclined surface (831) and pushes the inclined block (83) to move away from the pressing direction of the pressing part (61).
9. A convenient double-layer air fryer according to claim 8, characterized in that: A support frame (84) is formed on the hollow part (5). The support frame (84) is mounted between the top wall and the bottom wall of the hollow part (5) and has a protrusion (841) protruding toward the pop-out device (6). The upper and lower ends of the protrusion (841) abut against the guide block (82) respectively.