An air fryer convenient for separation
By introducing a pin and a spring mechanism into the air fryer, the automatic separation of the pot body is achieved, and the partition and flip mechanism are used to solve the problems of fry adhesion and uneven maturity, the convenient use and uniform frying effect of the air fryer is achieved.
Patent Information
- Application Number
- CN202310917166.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-25
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2043-07-25
AI Technical Summary
When used, existing air fryers have problems such as inconvenient separation of the pot body from the machine, easy adhesion between the frying products, and failure to turn over, resulting in uneven maturity.
An air fryer that is easy to separate is designed. The automatic separation of the pot body is achieved by setting a pin and a spring mechanism on the pot body, and a partition and a flip mechanism are provided in the pot body, which are respectively used to avoid adhesion and to achieve full contact between the flip of the fry and the hot air.
It realizes convenient separation of the pot body, avoids the stickiness of the fried food, and ensures that the fried food is evenly cooked and thoroughly during the frying process.
Smart Images

Figure CN116763161B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air fryers, and specifically to an air fryer that is easy to separate. Background Art
[0002] An air fryer is a new type of cooking utensil. The principle of an air fryer is to use high-speed air circulation means. It forms hot air by heating the heat pipe inside the machine at a high temperature, and then uses a blower to blow the high-temperature air into the pot to heat the food ingredients. The hot air circulates in a closed space, and the food ingredients are fried using their own oils and fats, so that the food ingredients are dehydrated and the surface becomes golden and crispy, achieving the frying effect.
[0003] An air fryer usually consists of a heating device, an air circulation device, and a detachable pot body. After placing different types of fried foods in the pot body, it is installed in the machine for heating and frying.
[0004] The existing air fryers have the following defects when in use: First, the pull-out pot body of the fryer is usually of a drawer-like structure and is pulled out through a handle. However, in order to strengthen the fixation of the pot body on the machine, circular buckles are usually provided on the machine, and corresponding slots are provided on the pot body. Although the pot body is strengthened during the operation of the machine by means of clamping, correspondingly, a relatively large force is required to pull out the pot body and the machine when separating them, and it is very inconvenient to separate. Second, when frying fried foods, different fried foods are not well separated and are prone to sticking. Third, the fried foods are simply placed in the pot body without a function of turning them over, and there are dead corners where the circulating hot air cannot fully contact the fried foods, resulting in uneven cooking of the fried foods. Summary of the Invention
[0005] The present invention provides an air fryer that is easy to separate, which has the beneficial effects that the pot body can be separated with one key by pulling the bolt after frying, the fried foods are separated by a partition to avoid sticking, and the fried foods can be continuously turned over by the pushing of the upper and lower supporting nets to improve the evenness of cooking, and solves the problems mentioned in the above background art that it is very inconvenient to separate the pot body and the machine when the existing air fryers are in use, different fried foods are not well separated and are prone to sticking, and there is no function of turning over the fried foods, resulting in uneven cooking of the fried foods.
[0006] The present invention provides the following technical solution: An air fryer that is easy to separate, including an air fryer main body and a pot body. The pot body is used for placing spherical fried foods, and a heating mechanism and an installation mechanism are arranged in the air fryer main body;
[0007] The installation mechanism includes a separation component and a fixing component. The separation component includes a groove opened on the pot body. A first spring is arranged in the air fryer main body. A push block is arranged on the first spring, and the push block is adapted to the groove;
[0008] When the pot body is installed on the air fryer main body, the first spring accumulates elastic potential energy, so that when the fixing component releases the fixation of the pot body, the elastic potential energy is released by the first spring to realize the separation of the pot body from the air fryer main body by popping out the pot body;
[0009] A turning mechanism is further arranged on the pot body for turning spherical fried foods.
[0010] As an optional scheme of the air fryer convenient for separation according to the present invention, wherein: the heating mechanism includes a heating tube and a first motor arranged in the air fryer main body, and a fan blade is arranged on the output shaft of the first motor.
[0011] As an optional scheme of the air fryer convenient for separation according to the present invention, wherein: the fixing component includes a first sliding groove opened in the air fryer main body, a plug is slidably arranged in the first sliding groove, a slot is opened on the pot body, the slot is adapted to the plug, and the plug is elastically connected with the inner wall of the first sliding groove through a second spring;
[0012] There are two fixing components, and the two fixing components are symmetrically arranged in the air fryer main body.
[0013] As an optional scheme of the air fryer convenient for separation according to the present invention, wherein: a tray is arranged in the pot body, and a plurality of troughs are opened on the tray for placing spherical fried foods.
[0014] As an optional scheme of the air fryer convenient for separation according to the present invention, wherein: the turning mechanism includes two second sliding grooves opened in the pot body, a first supporting net is slidably arranged in one of the second sliding grooves, a second supporting net and a mounting seat are slidably arranged in the other second sliding groove, the second supporting net is rotatably connected to the mounting seat, and the first supporting net and the second supporting net are respectively located on the upper and lower sides of the spherical fried food;
[0015] The turning mechanism further includes a rotating component, and the rotating component is used for driving the second supporting net and the mounting seat to displace in opposite directions.
[0016] As an optional scheme of the air fryer convenient for separation according to the present invention, wherein: the rotating component includes a rotating shaft rotatably arranged in the pot body, a rotating rod is arranged on the rotating shaft, two third sliding grooves are symmetrically opened on the rotating rod, guide rods are arranged on both the first supporting net and the second supporting net, and the two guide rods are respectively slidably connected in the two third sliding grooves;
[0017] The turning mechanism further includes a driving component for driving the rotation shaft to rotate.
[0018] As an alternative embodiment of the air fryer that is easy to separate according to the present invention, wherein: the driving component includes a rotating cylinder rotatably disposed in the pot body, a push rod is disposed on the rotating cylinder, and a fixing rod is disposed on the rotation shaft;
[0019] A second motor is disposed on the air fryer main body, a connecting block is disposed on the output shaft of the second motor, a connecting groove is formed on the rotating cylinder, and the connecting groove is adapted to the connecting block.
[0020] As an alternative embodiment of the air fryer that is easy to separate according to the present invention, wherein: the driving component further includes a fourth sliding groove formed on the rotating cylinder, the push rod is slidably connected in the fourth sliding groove, and the push rod is elastically connected to the inner wall of the fourth sliding groove through a third spring, and a baffle is disposed on the inner wall of the pot body;
[0021] The rotating component further includes a first torsion spring, and the rotation shaft is elastically connected to the inner wall of the pot body through the first torsion spring.
[0022] As an alternative embodiment of the air fryer that is easy to separate according to the present invention, wherein: the turning mechanism further includes two guiding components, and the two guiding components are respectively located at the first tray and the second tray;
[0023] The guiding component includes a fixing seat disposed on the inner wall of the pot body, a guiding groove is formed on the fixing seat, and the guiding rod is slidably connected in the guiding groove.
[0024] As an alternative embodiment of the air fryer that is easy to separate according to the present invention, wherein: the guiding component further includes two rotating rods rotatably disposed on the fixing seat, rotating plates are disposed on the two rotating rods, the two rotating plates are both slidably connected in the guiding groove, two stoppers are symmetrically disposed on the fixing seat, and the two rotating rods are respectively elastically connected to the fixing seat through two second torsion springs.
[0025] The present invention has the following beneficial effects:
[0026] 1. For the air fryer that is easy to separate, when the pot body is installed, it is reinforced by two pins on the air fryer main body to make it more firm during frying, and the first spring is compressed to store elastic potential energy. After frying is completed, only by pulling the two pins can the pot body be automatically ejected to complete the separation. On the one hand, it is convenient for the user to separate the pot body to take out the fried food more conveniently. On the other hand, the user does not need to directly contact the pot body to avoid being scalded. Moreover, the fried foods are also separated by the partitions on the tray, with one fried food in one chamber to avoid sticking to each other.
[0027] 2. For this air fryer that is easy to separate, during frying, a turning mechanism is also provided inside the pot body to turn over several spherical fried foods. First, when the pot body is installed on the air fryer main body, the exposed rotating cylinder on the pot body will be connected to the second motor on the air fryer main body. During frying, driven by the second motor, the first support net and the second support net that are in contact with the upper and lower surfaces of the spherical fried foods respectively move in opposite directions, thereby pushing the spherical fried foods to rotate, enabling the spherical fried foods to turn over and come into full contact with the hot air, and each surface is evenly heated, so that the frying is more evenly cooked through. And because of the protrusions of the metal wire mesh, the spherical fried foods not only rotate in a single direction, but rotate at multiple angles, which is more conducive to heating.
[0028] 3. For this air fryer that is easy to separate, during the reciprocating movement of the first support net and the second support net, due to the action of the notch-shaped guiding groove, the first support net and the second support net always contact the spherical fried foods only during the movement in one direction. Thus, the spherical fried foods continuously rotate in a roughly one direction, preventing the spherical fried foods from rotating back and turning the just-turned-up surface back. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.
[0030] Figure 2 It is a first sectional structure schematic diagram of the present invention.
[0031] Figure 3 For the present invention Figure 3 A partial enlarged structure schematic diagram at A in it.
[0032] Figure 4 It is a second sectional structure schematic diagram of the present invention.
[0033] Figure 5 For the present invention Figure 4 A partial enlarged structure schematic diagram at B in it.
[0034] Figure 6 It is a third sectional structure schematic diagram of the present invention.
[0035] Figure 7 For the present invention Figure 6 A partial enlarged structure schematic diagram at C in it.
[0036] Figure 8 It is a three-dimensional structure schematic diagram of the heating mechanism and the installation mechanism of the present invention.
[0037] Figure 9 It is an exploded structure schematic diagram of the internal structure of the pot body of the present invention.
[0038] Figure 10Explosion structure schematic diagram of the turnover mechanism of the present invention.
[0039] Figure 11 Explosion structure schematic diagram of the guiding component of the present invention.
[0040] In the figure: 100, air fryer main body; 110, pot body; 120, tray; 130, support groove; 200, spherical fried food; 300, heating mechanism; 310, heating tube; 320, first motor; 330, fan blade; 400, installation mechanism; 410, separation component; 411, groove; 412, first spring; 413, push block; 420, fixing component; 421, first chute; 422, bolt; 423, slot; 424, second spring; 500, turnover mechanism; 510, second chute; 520, first support net; 530, second support net; 540, mounting seat; 550, rotating component; 551, rotating shaft; 552, rotating rod; 553, third chute; 554, guiding rod; 555, first torsion spring; 560, driving component; 561, second motor; 562, rotating cylinder; 563, push rod; 564, fixing rod; 565, connecting block; 566, connecting groove; 567, fourth chute; 568, third spring; 569, baffle; 570, guiding component; 571, fixing seat; 572, guiding groove; 573, rotating rod; 574, rotating plate; 575, stop block; 576, second torsion spring. Specific embodiments
[0041] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0042] Embodiment 1
[0043] An air fryer usually consists of two parts, namely an air fryer main body 100 and a pot body 110, as well as a power cord, etc. The pot body 110 can be slidably installed in the air fryer main body 100. The existing air fryer has the following defects: First, the pot body 110 usually relies on circular pullable separation buckles to enhance the fixation during frying, but correspondingly, a relatively large force is required to pull it out after frying is completed, and the handle of the pot body 110 is at a high temperature at this time, and the pulling process is also likely to cause the fried food or hot oil to splash out. Therefore, directly contacting the pot body 110 is not only very inconvenient but also relatively dangerous; Second, the fried food is not separated; Third, the fried food cannot be turned over to be cooked evenly, especially for the spherical fried food 200, and the contact surface between the container and the spherical fried food 200 does not make good contact with the hot air. Therefore, to solve the above problems, Embodiment 1 is proposed;
[0044] Please refer to Figures 1-8 , an air fryer that is easy to separate, including an air fryer main body 100 and a pot body 110. The pot body 110 is used to place spherical fried foods 200. A heating mechanism 300 and a mounting mechanism 400 are arranged in the air fryer main body 100;
[0045] The mounting mechanism 400 includes a separation component 410 and a fixing component 420. The separation component 410 includes a groove 411 opened on the pot body 110. A first spring 412 is arranged in the air fryer main body 100. A push block 413 is arranged on the first spring 412, and the push block 413 is adapted to the groove 411;
[0046] When the pot body 110 is mounted on the air fryer main body 100, the first spring 412 stores elastic potential energy. When the fixing component 420 releases the fixation of the pot body 110, the elastic potential energy is released through the first spring 412 to realize the separation of the pot body 110 from the air fryer main body 100 by popping out;
[0047] A turning mechanism 500 is further arranged on the pot body 110 to turn over the spherical fried food 200;
[0048] The heating mechanism 300 includes a heating tube 310 and a first motor 320 arranged in the air fryer main body 100. A fan blade 330 is arranged on the output shaft of the first motor 320;
[0049] The fixing component 420 includes a first chute 421 opened in the air fryer main body 100. A plug 422 is slidably arranged in the first chute 421. A slot 423 is opened on the pot body 110. The slot 423 is adapted to the plug 422. The plug 422 is elastically connected to the inner wall of the first chute 421 through a second spring 424;
[0050] There are two fixing components 420, and the two fixing components 420 are symmetrically arranged in the air fryer main body 100.
[0051] In this embodiment: First, the pot body 110 can slide along the opening at the side end of the air fryer main body 100 and enter the air fryer main body 100 to complete the installation. During the installation, the pot body 110 will first push against one end of the two plugs 422 extending to the inner side of the air fryer main body 100 and push them to the outer side of the air fryer main body 100 until the pot body 110 is installed. At this time, the two slots 423 on the pot body 110 slide to fit with the two plugs 422. At this time, the two plugs 422 move inward to the air fryer main body 100 under the resilience of the two second springs 424 and are clamped into the two slots 423. At the same time, the groove 411 on the pot body 110 also clamps into the push block 413 and compresses the first spring 412.
[0052] Moreover, the contact part between the slot 423 and the bolt 422 is not only a hemispherical surface, but also includes a section of cylindrical surface at the back, which can fix the pot body 110 more firmly and prevent it from moving unstably during frying.
[0053] Correspondingly, when the bolt 422 is inserted into the slot 423, the pot body 110 is fixed and cannot move. After that, the heating tube 310 installed in the air fryer main body 100 is powered on to generate heat, and the first motor 320 runs to drive the fan blade 330 fixed on its output shaft to rotate, generating circulating hot air in the air fryer main body 100 for frying. After completion,
[0054] By pulling one end of the two bolts 422 extending outside the air fryer main body 100, the two bolts 422 can be pulled out of the two slots 423. At this time, the fixing of the pot body 110 is released, and the push block 413 will push the pot body 110 to pop out under the resilience of the first spring 412 to complete automatic separation.
[0055] Embodiment 2
[0056] In order to enable the spherical fried food 200 to be turned over when placed in the pot body 110 for frying, so as to fully contact the hot air in the air fryer main body 100 and make the frying degree uniform, Embodiment 2 is proposed;
[0057] This embodiment is an improved description based on Embodiment 1. Specifically, please refer to Figures 2-11 , a tray 120 is arranged in the pot body 110, and a number of troughs 130 are opened on the tray 120 for placing the spherical fried food 200;
[0058] The turning-over mechanism 500 includes two second chutes 510 opened in the pot body 110. A first support net 520 is slidably arranged in one of the second chutes 510, and a second support net 530 and a mounting seat 540 are slidably arranged in the other second chute 510. The second support net 530 is rotatably connected to the mounting seat 540. The first support net 520 and the second support net 530 are respectively located on the upper and lower sides of the spherical fried food 200;
[0059] The turning-over mechanism 500 further includes a rotating assembly 550, and the rotating assembly 550 is used to drive the second support net 530 and the mounting seat 540 to displace in opposite directions;
[0060] The rotating assembly 550 includes a rotating shaft 551 rotatably arranged in the pot body 110. A rotating rod 552 is arranged on the rotating shaft 551. Two third chutes 553 are symmetrically opened on the rotating rod 552. Guide rods 554 are arranged on both the first support net 520 and the second support net 530. The two guide rods 554 are respectively slidably connected in the two third chutes 553;
[0061] The turning-over mechanism 500 further includes a driving component 560 for driving the rotation of the rotating shaft 551;
[0062] The driving component 560 includes a rotating cylinder 562 rotatably arranged inside the pot body 110. A push rod 563 is arranged on the rotating cylinder 562, and a fixed rod 564 is arranged on the rotating shaft 551;
[0063] A second motor 561 is arranged on the air fryer main body 100. A connecting block 565 is arranged on the output shaft of the second motor 561. A connecting groove 566 is formed on the rotating cylinder 562, and the connecting groove 566 is adapted to the connecting block 565.
[0064] In this embodiment: On the tray 120 installed on the inner wall of the pot body 110, there are partition plates in a grid shape to separate the spherical fried foods 200. A receiving groove 130 is formed in one space to hold one spherical fried food 200, thus completing the separation of the fried foods.
[0065] On the inner walls of the pot body 110 on both the upper and lower sides of the tray 120, second sliding grooves 510 are formed. A first support net 520 slides left and right in the lower second sliding groove 510, and a second support net 530 and a mounting seat 540 slide left and right in the upper second sliding groove 510. The second support net 530 is movably hinged to the mounting seat 540 through a hinge shaft or the like and can be turned upward to place the spherical fried food 200 into the receiving groove 130. The wire meshes on the first support net 520 and the second support net 530 are respectively in contact with the upper and lower surfaces of the spherical fried food 200.
[0066] When installing the pot body 110, the connecting groove 566 coaxially arranged on the rotating cylinder 562 exposed at the rear end of the pot body 110 will be aligned with the connecting block 565 for clamping. The connecting block 565 and the connecting groove 566 are set in a cross shape and can also be set in other regular polygons, etc. The shaft of the second motor 561 can rotate when not powered on, so as to drive the connecting block 565 to rotate for calibration and insertion when the rotating cylinder 562 moves backward.
[0067] By operating the second motor 561, the connecting block 565 coaxially fixed to its output shaft can be driven to rotate, thereby driving the rotating cylinder 562 to rotate. The push rod 563 installed on the rotating cylinder 562 will then push the fixed rod 564 to rotate, thereby driving the rotating shaft 551 fixed to the fixed rod 564 to rotate.
[0068] By the rotation of the rotating shaft 551, the rotating rod 552 fixed thereto can be driven to rotate. At this time, the two guide rods 554 fixed to the rear ends of the first support net 520 and the second support net 530 respectively move from the closer side to the farther side of the two third sliding grooves 553. At the same time, the second support net 530 and the mounting seat 540 move left and right respectively, so as to rotate and turn over several spherical fried foods 200.
[0069] Moreover, since the wire meshes on the first supporting net 520 and the second supporting net 530 have irregular protrusions, the rotational turnover of the spherical fried food 200 is not only rotation in the front-back axis direction, but also scraped by the protrusions to rotate at different angles, so that all surfaces of the spherical fried food 200 can increase the contact with hot air.
[0070] Embodiment 3
[0071] If the first supporting net 520 and the second supporting net 530 are displaced only once in the left-right opposite directions, they cannot continuously turn over the spherical fried food 200. If they move back and forth, the spherical fried food 200 will turn back when they return, and return to the state with the surface that has fully contacted the hot air facing up, which is not conducive to uniform cooking. Therefore, Embodiment 3 is proposed;
[0072] This embodiment is an improved explanation based on Embodiment 2. Specifically, please refer to Figures 2-11 , the driving assembly 560 further includes a fourth chute 567 opened on the rotating cylinder 562. The push rod 563 is slidably connected in the fourth chute 567, and the push rod 563 is elastically connected to the inner wall of the fourth chute 567 through a third spring 568. A baffle 569 is provided on the inner wall of the pot body 110;
[0073] The rotating assembly 550 further includes a first torsion spring 555. The rotating shaft 551 is elastically connected to the inner wall of the pot body 110 through the first torsion spring 555;
[0074] The turnover mechanism 500 further includes two guiding assemblies 570, and the two guiding assemblies 570 are respectively located at the first supporting net 520 and the second supporting net 530;
[0075] The guiding assembly 570 includes a fixed seat 571 provided on the inner wall of the pot body 110. A guiding groove 572 is opened on the fixed seat 571, and the guiding rod 554 is slidably connected in the guiding groove 572.
[0076] In this embodiment: the structures of the two guiding assemblies 570 are the same, but they correspond to the first supporting net 520 and the second supporting net 530 in an up-down manner. The guiding rod 554 not only slides in the third chute 553, but also slides in the guiding groove 572 opened on the fixed seat 571 fixed on the inner wall of the pot body 110. The guiding groove 572 is in the shape of a groove opening, with the upper and lower sides being left-right straight edges and the left and right sides being semicircles. When the first supporting net 520 and the second supporting net 530 are in the middle position, the upper guiding rod 554 is located at the lowermost part of the upper third chute 553, and the upper guiding rod 554 is located at the midpoint of the lower edge of the upper guiding groove 572. The lower guiding rod 554 is located at the uppermost part of the lower third chute 553, and the lower guiding rod 554 is located at the midpoint of the upper edge of the lower guiding groove 572.
[0077] When the rotating shaft 551 rotates clockwise so that the second wire mesh support 530 and the upper guide rod 554 move to the right, and the first wire mesh support 520 and the lower guide rod 554 move to the left, the two guide rods 554 slide counterclockwise along the two guide grooves 572 respectively.
[0078] As a result, when the second wire mesh support 530 on the upper side only moves to the right to push the spherical explosive 200 and moves back to the left, it is lifted upward as a whole and does not contact the spherical explosive 200. Similarly, when the first wire mesh support 520 on the lower side only moves to the left to push the spherical explosive 200 and moves back to the right, it moves downward and does not contact the spherical explosive 200.
[0079] The baffle 569 is located on the rotation trajectory of the fixed rod 564 to block the fixed rod 564 when the two guide rods 554 start to return. At this time, the fixed rod 564 is blocked, so the push rod 563 is resisted and moves backward. As a result, the push rod 563 slides out from the arc-shaped groove between the two inner cavities of the pot body 110 and returns to the rear cavity. At this time, the rotating shaft 551 rotates reversely under the resilience of the first torsion spring 555, so that the upper guide rod 554 slides to the left again when it slides to the right side of the guide groove 572 to complete counterclockwise rotation.
[0080] Through the elasticity of the first torsion spring 555, the first wire mesh support 520 and the second wire mesh support 530 can be reset not driven by the second motor 561 during reset, but using the elasticity to reset more quickly, so as to start pushing the spherical explosive 200 more quickly next time. When the push rod 563 rotates one circle back to the arc-shaped groove position, it slides forward under the elasticity of the third spring 568 and starts to push the fixed rod 564 again to make the rotating shaft 551 rotate.
[0081] Embodiment 4
[0082] In order to make the two guide rods 554 move along the established trajectory without deviation, Embodiment 4 is proposed;
[0083] This embodiment is an improved description based on Embodiment 3. Specifically, please refer to Figures 2-11 , the guide assembly 570 further includes two rotating rods 573 rotatably arranged on the fixed seat 571. Rotating plates 574 are arranged on the two rotating rods 573. The two rotating plates 574 are both slidably connected in the guide groove 572. Two stoppers 575 are symmetrically arranged on the fixed seat 571. The two rotating rods 573 are elastically connected to the fixed seat 571 through two second torsion springs 576 respectively.
[0084] In this embodiment, taking the upper guide rod 554 and the guide assembly 570 as an example, when they start to move counterclockwise from the midpoint of the lower side of the guide groove 572, first move to the right and then move upward in an arc along the right side. When passing the right turning plate 574, it will push the turning plate 574. However, due to the blockage of the right turning rod 573, the turning plate 574 cannot be pushed in the opposite direction. The same applies to the right side, thus ensuring that the guide rod 554 moves along the established trajectory.
[0085] It should be noted that in this text, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0086] The above are only the preferred embodiments of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the technical principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. An air fryer facilitating separation, comprising an air fryer main body (100) and a pot body (110), wherein the pot body (110) is used for placing spherical fried foods (200). Characterized in that: A heating mechanism (300) and a mounting mechanism (400) are arranged in the air fryer main body (100); The mounting mechanism (400) comprises a separation component (410) and a fixing component (420). The separation component (410) comprises a groove (411) formed in the pot body (110). A first spring (412) is arranged in the air fryer main body (100). A push block (413) is arranged on the first spring (412), and the push block (413) is adapted to the groove (411); When the pot body (110) is mounted on the air fryer main body (100), the first spring (412) stores elastic potential energy. When the fixing component (420) releases the fixation of the pot body (110), the elastic potential energy stored in the first spring (412) is released to eject the pot body (110) from the air fryer main body (100) for separation; A turning mechanism (500) is further arranged on the pot body (110) for turning the spherical fried foods (200); A tray (120) is arranged in the pot body (110), and a plurality of troughs (130) are formed in the tray (120) for placing spherical fried foods (200); The turning mechanism (500) comprises two second chutes (510) formed in the pot body (110). A first support net (520) is slidably arranged in one of the second chutes (510). A second support net (530) and a mounting seat (540) are slidably arranged in the other second chute (510). The second support net (530) is rotatably connected to the mounting seat (540). The first support net (520) and the second support net (530) are respectively located on the upper and lower sides of the spherical fried foods (200); The turning mechanism (500) further comprises a rotating component (550) for driving the second support net (530) and the mounting seat (540) to displace in opposite directions.
2. An air fryer facilitating separation according to claim 1, Characterized in that: The heating mechanism (300) comprises a heating tube (310) and a first motor (320) arranged in the air fryer main body (100). A fan blade (330) is arranged on the output shaft of the first motor (320).
3. An air fryer facilitating separation according to claim 1, Characterized in that: The fixing component (420) includes a first sliding groove (421) formed in the air fryer main body (100). A latch (422) is slidably disposed in the first sliding groove (421). A slot (423) is formed in the pot body (110), and the slot (423) is adapted to the latch (422). The latch (422) is elastically connected to the inner wall of the first sliding groove (421) through a second spring (424). There are two fixing components (420), and the two fixing components (420) are symmetrically disposed in the air fryer main body (100).
4. An air fryer facilitating separation according to claim 1, characterized in that: The rotating component (550) includes a rotating shaft (551) rotatably disposed in the pot body (110). A rotating rod (552) is disposed on the rotating shaft (551). Two third sliding grooves (553) are symmetrically formed in the rotating rod (552). Guide rods (554) are disposed on both the first wire mesh basket (520) and the second wire mesh basket (530). The two guide rods (554) are respectively slidably connected in the two third sliding grooves (553). The turning-over mechanism (500) further includes a driving component (560) for driving the rotating shaft (551) to rotate.
5. An air fryer facilitating separation according to claim 4, characterized in that: The driving component (560) includes a rotating cylinder (562) rotatably disposed in the pot body (110). A push rod (563) is disposed on the rotating cylinder (562). A fixing rod (564) is disposed on the rotating shaft (551). A second motor (561) is disposed on the air fryer main body (100). A connecting block (565) is disposed on the output shaft of the second motor (561). A connecting groove (566) is formed in the rotating cylinder (562), and the connecting groove (566) is adapted to the connecting block (565).
6. An air fryer facilitating separation according to claim 5, characterized in that: The driving component (560) further includes a fourth sliding groove (567) formed in the rotating cylinder (562). The push rod (563) is slidably connected in the fourth sliding groove (567), and the push rod (563) is elastically connected to the inner wall of the fourth sliding groove (567) through a third spring (568). A baffle (569) is disposed on the inner wall of the pot body (110). The rotating component (550) further includes a first torsion spring (555). The rotating shaft (551) is elastically connected to the inner wall of the pot body (110) through the first torsion spring (555).
7. An air fryer facilitating separation according to claim 4, characterized in that: The turning-over mechanism (500) further includes two guiding components (570), and the two guiding components (570) are respectively located at the first wire mesh basket (520) and the second wire mesh basket (530). The guiding assembly (570) includes a fixed seat (571) arranged on the inner wall of the pot body (110). A guiding groove (572) is formed in the fixed seat (571), and the guiding rod (554) is slidably connected in the guiding groove (572).
8. An air fryer facilitating separation according to claim 7, wherein: The guiding assembly (570) further includes two rotating rods (573) rotatably arranged on the fixed seat (571). Rotating plates (574) are arranged on both of the two rotating rods (573). Both of the two rotating plates (574) are slidably connected in the guiding groove (572). Two stoppers (575) are symmetrically arranged on the fixed seat (571), and the two rotating rods (573) are elastically connected to the fixed seat (571) through two second torsion springs (576) respectively.
Citation Information
Patent Citations
Air fryer
CN213821057U
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