Rotary baking device
By designing a rotary baking device, using electric heating pipes and motors to achieve all-round baking of food, and by combining the real-time monitoring and warning system of induction blocks and rotation monitoring components, the existing electric ovens are solved and the problems of uneven baking and difficulty in time are difficult to detect, ensuring the quality of food baking and the normal operation of equipment.
Patent Information
- Application Number
- CN202421863994.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-02
AI Technical Summary
During the baking process, existing electric ovens are prone to over-baking of food and insufficient baking of part of the food. If the drive parts of the electric oven with built-in rotary structure fail, it will be difficult for staff to discover it in time, which will affect the quality of food baking.
A rotary baking device is designed to achieve all-round baking by heating the electric heating pipe and driving the tray to rotate by the motor. It is equipped with a coordinated induction block and rotation monitoring component for synchronous rotation of the connecting shaft to monitor the rotation status in real time and promptly warn of faults.
The all-round baking of food is realized to ensure the quality of the baking. Through real-time monitoring and warning systems, driver failures are discovered in a timely manner to avoid affecting the quality of the baking.
Smart Images

Figure CN222853032U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing equipment, and in particular to a rotary baking device. Background Art
[0002] Most food baking processes use electric ovens for baking, but the heat of the electric oven is usually concentrated in a specific area of the oven, which causes the food part near the heating point to be over-baked, while other parts may not be fully baked, and the baking quality of the food cannot be guaranteed. To address the problem of insufficient baking, there are electric ovens with built-in rotating structures on the market, which use rotary baking to ensure that the food is baked in all directions to ensure the baking quality of the food. However, if the driving component used to drive the built-in rotating structure fails and cannot drive the rotating structure to rotate, the staff will not observe the internal situation of the oven in real time due to the long baking time. This makes it impossible for the staff to detect the failure of the driving component in time, thereby affecting the baking quality of the food. Utility Model Content
[0003] The utility model relates to a rotary baking device, which realizes rotary baking of food by heating of an electric heating tube and driving of a tray by a motor, so as to realize all-round baking of the food on the tray and ensure the baking quality of the food. Based on the above rotary baking, the utility model can realize real-time monitoring of the rotation of the rotary baking by induction of a matching sensing block and a rotation monitoring component which rotate synchronously with a matching connecting shaft, so as to cooperate with monitoring the running state of the motor which is used to drive the rotary baking, thereby facilitating a warning reminder at the first time when a failure occurs, so as to facilitate the staff to repair it in time and ensure the baking quality of the food.
[0004] The utility model provides a rotary baking device, specifically comprising: a baking box body, the front end surface of the baking box body is provided with a notch penetrating the top end surface thereof, and the rear side surface of the inner end of the notch is provided with a baking groove with a semicircular groove structure; the inner peripheral surface of the baking groove is provided with a heating matching groove with an arc groove structure, and a row of electric heating tubes are fixedly installed in the heating matching groove in a uniformly distributed manner; seven trays are arranged in the baking groove, which are evenly distributed up and down, and the seven trays are fixedly connected by three connecting rods distributed in a ring array, and the trays and the baking groove are arranged coaxially; a rotating monitoring cavity is provided on the lower side of the baking box body; a supporting frame is fixedly installed on the bottom end surface of the baking box body, and a group of motors are fixedly installed on the bottom end surface of the baking box body; a connecting shaft is fixedly connected to the axial center of the bottom end surface of the tray, and the connecting shaft penetrates the top end surface of the baking box body, the rotating monitoring cavity and the bottom end surface of the baking box body and is fixedly installed and connected to the motor shaft end.
[0005] Furthermore, a sensing groove is opened on the right side of the bottom surface of the inner end of the rotation monitoring cavity, and a group of rotation monitoring components are fixedly installed inside the sensing groove, and the rotation monitoring components adopt touch switches; an annular mating disk is fixedly installed on the outer peripheral surface of the connecting shaft, and the annular mating disk is located in the rotation monitoring cavity; a mating sensing block that can cooperate with the rotation monitoring component for sensing is embedded in the left side of the bottom surface of the inner end of the annular mating disk; when the mating sensing block does not correspond to the position of the sensing groove, the mating sensing block is not within the sensing range of the rotation monitoring component; when the mating sensing block corresponds to the position of the sensing groove, the mating sensing block is within the sensing range of the rotation monitoring component.
[0006] Furthermore, a microcontroller and a battery electrically connected to the microcontroller are provided inside the baking box, and the battery is an external power source; the electric heating tube, the rotation monitoring component and the motor are electrically connected to the microcontroller; a touch panel and a warning component are installed on the upper side of the right end surface of the baking box, and the touch panel and the warning component are electrically connected to the microcontroller, and the warning component is a buzzer.
[0007] Furthermore, a timing module is also provided inside the baking box, and the timing value of the timing module is one second longer than the time it takes for the motor shaft end to rotate one circle; when the rotation monitoring component senses the matching sensing block, the rotation monitoring component feedbacks a signal to the microcontroller, and the microcontroller controls the timing of the timing module to reset; when the timing value of the timing module is reached, the timing module feedbacks a signal to the microcontroller, and the microcontroller controls the alarm component to start buzzing.
[0008] Furthermore, a sealed box door is rotatably installed on the left edge of the rear side surface of the inner end of the groove, and the rear end surface of the sealed box door is provided with a baking matching groove that passes through its bottom end surface, and the baking matching groove is a semicircular groove structure; when the rear end surface of the sealed box door is in contact with the rear side surface of the inner end of the groove, the baking matching groove and the baking groove together form a complete circular groove structure; the front end surface of the sealed box door is installed with a transparent observation window that passes through the baking matching groove.
[0009] The utility model provides a rotary baking device, which has the following beneficial effects:
[0010] The utility model realizes rotary baking of food by heating the electric heating tube and driving the tray with the cooperation of the motor, so that the food on the tray is baked in all directions to ensure the baking quality of the food. Based on the above rotary baking, the utility model can realize real-time monitoring of the rotation of the rotary baking by cooperating with the induction block and the rotation monitoring component that rotate synchronously with the connecting shaft, so as to cooperate with the monitoring of the running state of the motor used to drive the rotary baking, thereby facilitating the first time of the failure, realizing warning reminder, so that the staff can repair it in time to ensure the baking quality of the food. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solution of the embodiment of the present utility model, the drawings of the embodiment will be briefly introduced below.
[0012] The drawings described below only relate to some embodiments of the present invention and are not intended to limit the present invention.
[0013] In the attached picture:
[0014] Figure 1 The top axonometric structure diagram of the present application is shown;
[0015] Figure 2 The bottom axonometric structure schematic diagram of the present application is shown;
[0016] Figure 3 It shows a schematic diagram of the axonometric structure of the sealed box door of the present application in an unfolded state;
[0017] Figure 4 This application shows Figure 3 Schematic diagram of the structure when the middle tray is disassembled;
[0018] Figure 5 A cross-sectional structural schematic diagram of the present application is shown;
[0019] Figure 6 shows a system block diagram of the present application;
[0020] Reference numerals list
[0021] 1. Baking box; 101. Support frame; 103. Touch panel; 104. Warning component; 105. Missing slot; 106. Baking slot; 107. Heating matching slot; 108. Electric heating tube; 109. Rotation monitoring cavity; 1010. Induction slot; 1011. Rotation monitoring component; 1012. Timing module; 1013. Battery; 1014. Microcontroller;
[0022] 2. Sealed door; 201. Transparent observation window; 202. Baking matching slot;
[0023] 3. Tray; 301. Connecting rod; 302. Motor; 303. Connecting shaft; 304. Annular matching disc; 305. Matching induction block. DETAILED DESCRIPTION
[0024] In order to make the purpose, technical solution and advantages of the practical embodiment clearer, the technical solution of the practical embodiment will be clearly and completely described below in conjunction with the drawings of the practical embodiment. Obviously, the described embodiment is a part of the practical embodiment, not all of the embodiments. Based on the described practical embodiment, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this practical embodiment.
[0025] Example: Please refer to Figures 1 to 6 :
[0026] The utility model provides a rotary baking device, comprising: a baking box 1, a notch 105 penetrating through the top surface of the baking box 1 is provided on the front end surface of the baking box 1, and a baking groove 106 with a semicircular groove structure is provided on the rear side of the inner end of the notch 105; a heating matching groove 107 with an arc groove structure is provided on the inner circumference of the baking groove 106, and a row of electric heating tubes 108 are evenly distributed and fixedly installed inside the heating matching groove 107; seven trays 3 evenly distributed up and down are provided inside the baking groove 106, and the seven trays 3 are fixedly connected by three connecting rods 301 distributed in a ring array, and the trays 3 and the baking groove 106 are coaxially arranged; a rotating monitoring cavity 109 is provided on the lower side of the baking box 1; a supporting frame 101 is fixedly installed on the bottom end surface of the baking box 1, and a group of motors 302 are fixedly installed on the bottom end surface of the baking box 1; a connecting shaft 303 is fixedly connected to the axial center of the bottom end surface of the tray 3, and the connecting shaft 303 passes through the baking box. 1, the top surface of the rotating monitoring cavity 109 and the bottom surface of the baking box 1 are fixedly connected with the rotating shaft end of the motor 302; a sensing groove 1010 is provided on the right side of the bottom surface of the inner end of the rotating monitoring cavity 109, and a group of rotating monitoring components 1011 are fixedly installed inside the sensing groove 1010, and the rotating monitoring components 1011 adopt a touch switch; an annular matching disc 304 is fixedly installed on the outer peripheral surface of the connecting shaft 303, and the annular matching disc 304 is located in the rotating monitoring cavity 109; a matching sensing block 305 that can cooperate with the rotating monitoring component 1011 for sensing is embedded on the left side of the bottom surface of the inner end of the annular matching disc 304; when the matching sensing block 305 does not correspond to the position of the sensing groove 1010, the matching sensing block 305 is not in the sensing range of the rotating monitoring component 1011; when the matching sensing block 305 corresponds to the position of the sensing groove 1010, the matching sensing block 305 is in the sensing range of the rotating monitoring component 1011.
[0027] In this embodiment, a microcontroller 1014 and a battery 1013 electrically connected thereto are provided inside the baking box 1, and the battery 1013 is connected to an external power source; the electric heating tube 108, the rotation monitoring component 1011 and the motor 302 are all electrically connected to the microcontroller 1014; a touch panel 103 and a warning component 104 are installed on the upper side of the right end surface of the baking box 1, and the touch panel 103 and the warning component 104 are all electrically connected to the microcontroller 1014, and the warning component 104 is a buzzer; a timing module 1012 is also provided inside the baking box 1, and the timing value of the timing module 1012 is one second longer than the time it takes for the shaft end of the motor 302 to rotate one circle; when the rotation monitoring component 1011 senses the matching sensing block 305, the rotation monitoring component 1011 feedbacks a signal to the microcontroller 1014, and the microcontroller 1014 controls the timing module 1012 to count When the timing value of the timing module 1012 is reached, the timing module 1012 feedbacks a signal to the microcontroller 1014, and the microcontroller 1014 controls the warning component 104 to buzz and start; a sealed box door 2 is rotatably installed on the left edge of the rear side surface of the inner end of the notch 105, and the rear end surface of the sealed box door 2 is provided with a baking matching notch 202 that runs through its bottom end surface, and the baking matching notch 202 is a semicircular groove structure; when the rear end surface of the sealed box door 2 is in contact with the rear side surface of the inner end of the notch 105, the baking matching notch 202 and the baking slot 106 together form a complete circular groove structure; a transparent observation window 201 that runs through the baking matching notch 202 is installed on the front end surface of the sealed box door 2. Through the setting of the transparent observation window 201, when the food is baked, the staff can observe the baking state of the food on the tray 3 through the transparent observation window 201.
[0028] The working principle of this embodiment:
[0029] Place the food to be baked evenly on the tray 3, and then rotate and close the sealed door 2, so that the rear end surface of the sealed door 2 fits with the rear side surface of the inner end of the notch 105, so as to close the baking slot 106;
[0030] The electric heating tube 108 is started by controlling the touch panel 103, and the heat generated by the electric heating tube 108 is used to bake the food located inside the baking groove 106; the motor 302 and the timing module 1012 are started by synchronously controlling the touch panel 103, and the motor 302 drives the tray 3 to rotate along the baking groove 106 through the connecting shaft 303 to ensure that the food on the tray 3 can be baked in all directions, and rotary baking is achieved to ensure the baking quality of the food; when the connecting shaft 303 is driven to rotate by the motor 302, the annular matching disk 304 located in the rotation monitoring cavity 109 also rotates synchronously, so that every time the annular matching disk 304 rotates one circle, the matching sensing block 305 will inevitably be in the sensing range of the rotation monitoring component 1011 once, and when the rotation monitoring component 1011 senses the matching sensing block 305, the rotation monitoring component 1011 feedbacks a signal to the microcontroller 1014, The microcontroller 1014 controls the timing module 1012 to reset the timing. If the motor 302 fails and cannot drive the connecting shaft 303 to rotate, the corresponding rotary baking operation cannot be achieved at this time, and the cooperative sensing block 305 will also be unable to rotate to the sensing range of the rotation monitoring component 1011, so the timing module 1012 cannot be reset, so that when the timing value of the timing module 1012 is reached, the timing module 1012 feedbacks a signal to the microcontroller 1014, and the microcontroller 1014 controls the warning component 104 to start the buzzer, thereby reminding the staff through the high-decibel buzzer warning that the current motor 302 has failed and cannot achieve the corresponding rotary baking operation, and needs timely maintenance and processing; further, because the timing value of the timing module 1012 is one second longer than the time it takes for the motor 302 shaft end to rotate one circle, as long as the motor 302 operates normally, no false alarm will occur.
[0031] In this article, there are a few points to note:
[0032] 1. The drawings of the embodiments of the present disclosure only involve structures related to the embodiments of the present disclosure, and other structures may refer to general designs.
[0033] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to obtain new embodiments.
[0034] The above are only specific implementation methods of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present disclosure, which should be covered by the protection scope of the present disclosure.
Claims
1. A rotary baking device, characterized in that: include: A baking box (1), wherein the front end surface of the baking box (1) is provided with a notch (105) penetrating the top end surface thereof, and the inner rear side surface of the notch (105) is provided with a baking groove (106) in the form of a semicircular groove structure; the inner peripheral surface of the baking groove (106) is provided with a heating matching groove (107) in the form of an arc groove structure, and a row of electric heating tubes (108) are evenly distributed and fixedly installed inside the heating matching groove (107); the baking groove (106) is provided with seven trays (3) evenly distributed up and down, and the seven trays (3) are connected to each other via three connecting rods (108) distributed in a ring array. The tray (3) and the baking groove (106) are fixedly connected, and the tray (3) and the baking groove (106) are coaxially arranged; a rotating monitoring cavity (109) is opened on the lower side of the baking box body (1); a supporting frame (101) is fixedly installed on the bottom end surface of the baking box body (1), and a group of motors (302) are fixedly installed on the bottom end surface of the baking box body (1); a connecting shaft (303) is fixedly connected to the axial center of the bottom end surface of the tray (3), and the connecting shaft (303) passes through the top end surface of the baking box body (1), the rotating monitoring cavity (109) and the bottom end surface of the baking box body (1) and is fixedly installed and connected to the rotating shaft end of the motor (302).
2. A rotary baking device according to claim 1, characterized in that: A sensing groove (1010) is provided on the right side of the bottom surface of the inner end of the rotation monitoring cavity (109), and a set of rotation monitoring components (1011) is fixedly installed inside the sensing groove (1010), and the rotation monitoring components (1011) adopt a light touch switch; an annular matching disc (304) is fixedly installed on the outer peripheral surface of the connecting shaft (303), and the annular matching disc (304) is located in the rotation monitoring cavity (109); the annular matching disc (304) is embedded in the left side of the bottom surface of the inner end A matching sensing block (305) is installed that can cooperate with the rotation monitoring component (1011) for sensing. When the matching sensing block (305) does not correspond to the position of the sensing slot (1010), the matching sensing block (305) is not within the sensing range of the rotation monitoring component (1011); when the matching sensing block (305) corresponds to the position of the sensing slot (1010), the matching sensing block (305) is within the sensing range of the rotation monitoring component (1011).
3. A rotary baking device according to claim 2, characterized in that: A microcontroller (1014) and a storage battery (1013) electrically connected thereto are provided inside the baking oven (1), and the storage battery (1013) is externally connected to a power source; the electric heating tube (108), the rotation monitoring component (1011) and the motor (302) are all electrically connected to the microcontroller (1014); a touch panel (103) and a warning component (104) are installed on the upper side of the right end surface of the baking oven (1), and the touch panel (103) and the warning component (104) are both electrically connected to the microcontroller (1014), and the warning component (104) is a buzzer.
4. A rotary baking device according to claim 3, characterized in that: A timing module (1012) is also provided inside the baking oven (1), and the timing value of the timing module (1012) is one second longer than the time it takes for the rotating shaft end of the motor (302) to rotate one circle; when the rotation monitoring component (1011) senses the matching sensing block (305), the rotation monitoring component (1011) feeds back a signal to the microcontroller (1014), and the microcontroller (1014) controls the timing of the timing module (1012) to reset; when the timing value of the timing module (1012) is reached, the timing module (1012) feeds back a signal to the microcontroller (1014), and the microcontroller (1014) controls the warning component (104) to start buzzing.
5. A rotary baking device according to claim 4, characterized in that: A sealed box door (2) is rotatably mounted on the left edge of the rear side surface of the inner end of the notch (105), and a baking matching notch (202) penetrating the bottom end surface thereof is provided on the rear end surface of the sealed box door (2), and the baking matching notch (202) is in a semicircular groove structure; when the rear end surface of the sealed box door (2) is in contact with the rear side surface of the inner end of the notch (105), the baking matching notch (202) and the baking slot (106) together form a complete circular groove structure; and a transparent observation window (201) penetrating the baking matching notch (202) is mounted on the front end surface of the sealed box door (2).