Prefabricated lunch box vending machine
By designing a prefabricated lunch box vending machine, using the combination of control cabinets, refrigerators, insulation cabinets, microwave ovens and robots, the convenience of using prefabricated lunch boxes in outdoor or office environments is solved, and consumers' needs to order in advance and pick up meals on time.
Patent Information
- Application Number
- CN202422184041.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The prior art is difficult to quickly and effectively use prefabricated lunch boxes in outdoor or office environments, and cannot meet consumers' needs for orders in advance and pick up meals on time.
A prefabricated lunch box vending machine is designed, including control cabinets, refrigerators, insulation cabinets, microwave ovens and robots. The delivery pallets and conveyor belts are controlled through program to realize preheating and on-demand distribution of lunch boxes.
It realizes the convenience of using prefabricated lunch boxes in office environments or outdoor environments, meets consumers' needs for orders in advance and pick up meals on time, and expands the scope of use of equipment.
Smart Images

Figure CN223038440U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical equipment, and particularly relates to a prefabricated lunch box vending machine. Background Art
[0002] Ordinary retail vending machines have been developed for many years. This year, prefabricated lunch boxes have emerged in the market. For fast food to reduce costs, automation is essential. Most prefabricated lunch boxes are supplied to families and restaurants. When using them, the prefabricated lunch boxes can be eaten after being reheated and cooked for the second time. There are also devices for prefabricated cooked foods in the market, but this type of device often requires consumers to place an order, and the machine immediately makes them. This type of cooked food device often has low efficiency and is only suitable for fast foods such as hamburgers.
[0003] The above-mentioned reheating and cooking for the second time both require a certain cooking environment. Therefore, for quick consumption outdoors or in office spaces, the use requirements of prefabricated lunch boxes cannot be met. Therefore, it is necessary to develop a vending machine that can be suitable for prefabricated lunch boxes. Summary of the Utility Model
[0004] For this reason, the utility model provides a prefabricated lunch box vending machine to solve the problem that when the environment does not have the conditions for cooking and heating, the prefabricated lunch box can be used, and consumers can heat it in advance according to their needs and pick up the meal on time.
[0005] In order to achieve the above object, the utility model provides the following technical solution: A prefabricated lunch box vending machine includes a control cabinet. A refrigerator cabinet is arranged side by side on the left side of the control cabinet, and a heat preservation cabinet is arranged on the right side of the control cabinet. The control cabinet, the refrigerator cabinet and the heat preservation cabinet are independently separated. First transfer ports are designed on the cabinet side plates of the control cabinet and the refrigerator cabinet, and second transfer ports are designed on the cabinet sides of the control cabinet and the heat preservation cabinet. The first transfer ports and the second transfer ports are normally in a closed state. A refrigerated shelf is designed inside the refrigerator cabinet, and a heat preservation shelf is designed inside the heat preservation cabinet.
[0006] Vertical moving rails are designed on both sides of the inner walls of the refrigerator cabinet and the heat preservation cabinet. Grooves are designed in the middle of the vertical moving rails. A horizontal moving rail that can move along the groove is inserted into the groove. A delivery tray that can move inside the horizontal moving rail is designed on the surface of the horizontal moving rail. Driving wheels are designed on both sides of the bottom of the horizontal moving rail, and the driving wheels cooperate with the inner wall of the groove to move in the vertical direction.
[0007] A microwave oven is designed inside the control cabinet near the top. A manipulator connected to the cabinet body is designed in front of the microwave oven. A conveyor belt is correspondingly designed below the manipulator, and the position of the conveyor belt corresponds to the first transfer port and the second transfer port on both sides of the control cabinet.
[0008] The first gear shifting arm and the second gear shifting arm are correspondingly penetrated with pressure screw holes. A pressure male screw is inserted at a position close to the first gear shifting arm of the pressure screw hole, and a pressure female screw is inserted at a position close to the second gear shifting arm of the pressure screw hole. The pressure male screw and the pressure female screw can be threadedly connected to each other;
[0009] The interior of the second gear shifting arm is an embedded structure with a gear position hole designed inside. A first gear position piece with a thickness consistent with the embedded depth is designed at the embedded position of the second gear shifting arm. The first gear position piece and the gear position hole are inserted and connected through a gear position column. On the other side of the first gear position piece, a second gear position piece is designed inside the rotator. Therefore, the surfaces of the first gear position piece and the second gear position piece perform a knob operation through concave-convex clamping bars.
[0010] The usage process of the present utility model is as follows: The user places an order in advance through a preset program. The delivery tray moves to the corresponding shelf position through the cooperation of the vertical moving rail and the horizontal moving cabinet, takes out the lunch box, and then moves to the second transfer port to send out the lunch box;
[0011] The sent lunch box is driven by the conveyor belt, and the manipulator operates to put the lunch box into the microwave oven and cook the lunch box according to the heating time. The cooked lunch box also reaches the insulation cabinet through the action of the conveyor belt and the manipulator. The delivery tray of the insulation cabinet places the lunch box in the corresponding shelf. Finally, the user opens the insulation cabinet through the meal collection code to complete the meal collection process.
[0012] The beneficial effects of the present utility model are:
[0013] In the present utility model, the prefabricated lunch box vending machine can preheat and cook the lunch box through the designed program, and this device can be applied in the office environment or outdoor environment, so that the scope of use is wide, and it can meet the requirements of users for placing orders in advance and picking up meals on time. Description of the Drawings
[0014] Figure 1 is a three-dimensional structure schematic diagram of the present utility model;
[0015] Figure 2 is the Figure 1 exploded structure schematic diagram of the present utility model;
[0016] Figure 3 is a vertical moving rail structure diagram of the present utility model;
[0017] Figure 4 is a control cabinet structure schematic diagram of the present utility model; Detailed Embodiments
[0018] The following describes the preferred embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present utility model and are not used to limit the present utility model.
[0019] Example 1:
[0020] Referring to the attached Figures 1-4 , a prefabricated lunch box vending machine provided by the utility model includes a control cabinet 1. A refrigerator cabinet 2 is arranged side by side on the left side of the control cabinet 1. A heat preservation cabinet 3 is arranged on the right side of the control cabinet 1. The control cabinet 1, the refrigerator cabinet 2 and the heat preservation cabinet 3 are independently separated. A first transfer port 41 is designed on the cabinet side plates of the control cabinet 1 and the refrigerator cabinet 2. A second transfer port 42 is designed on the cabinet sides of the control cabinet 2 and the heat preservation cabinet 3. The first transfer port 41 and the second transfer port 42 are usually in a closed state. A refrigerated shelf 21 is designed inside the refrigerator cabinet 2. A heat preservation shelf 31 is designed inside the heat preservation cabinet 3.
[0021] Vertical moving rails 5 are designed on both sides of the inner walls of the refrigerator cabinet 2 and the heat preservation cabinet 3. A groove 51 is designed in the middle of the vertical moving rail 5. A horizontal moving rail 52 that can move along the groove 51 is inserted into the groove 51. A delivery tray 521 that can move inside the horizontal moving rail 52 is designed on the surface of the horizontal moving rail 52. Driving wheels 522 are designed on both sides of the bottom of the horizontal moving rail 52. The driving wheels 522 cooperate with the inner wall of the groove 51 to move in the vertical direction;
[0022] A microwave oven 12 is designed inside the control cabinet 1 near the top. A manipulator 13 connected to the cabinet body is designed in front of the microwave oven 12. A conveyor belt 14 is correspondingly designed below the manipulator 13. The position of the conveyor belt 14 corresponds to the first transfer port 41 and the second transfer port 42 on both sides of the control cabinet;
[0023] The first gear adjusting arm and the second gear adjusting arm are correspondingly penetrated with pressure screw holes. A pressure male screw is inserted into the pressure screw hole near the position of the first gear adjusting arm. A pressure female screw is inserted into the pressure screw hole near the position of the second gear adjusting arm. The pressure male screw and the pressure female screw can be threadedly connected to each other;
[0024] A gear position hole is designed inside the second gear adjusting arm which belongs to an embedded structure. A first gear position piece with a thickness consistent with the embedded depth is designed at the embedded position of the second gear adjusting arm. The first gear position piece and the gear position hole are inserted and connected through a gear position column. A second gear position piece is designed on the inner side of the rotator on the other side of the first gear position piece. Therefore, the surfaces of the first gear position piece and the second gear position piece perform a knob operation through an uneven clamping position bar.
[0025] The usage process of the utility model is that the user places an order in advance through a preset program. The delivery tray 521 moves to the corresponding shelf position through the cooperation of the vertical moving rail 5 and the horizontal moving cabinet 52 to take out the lunch box, and then moves to the second transfer port 42 to send out the lunch box;
[0026] The delivered lunch boxes are driven by the conveyor belt 14, and the manipulator 13 operates to put the lunch boxes into the microwave oven 12. The lunch boxes are cooked according to the heating time. The cooked lunch boxes are also delivered to the warming cabinet 3 through the action of the conveyor belt 14 and the manipulator 13. The delivery tray 521 of the warming cabinet 3 places the lunch boxes among the adjacent shelves. Finally, the user opens the warming cabinet by the meal collection code to complete the meal collection process.
[0027] The beneficial effects of the present utility model are:
[0028] In the present utility model, the prefabricated lunch box vending machine can pre-heat and cook the lunch boxes through the designed program, and this device can be applied in the office environment or outdoor environment, so that the application range is wide, and it can meet the requirements of users for placing orders in advance and picking up meals on time.
Claims
1. A prefabricated lunch box vending machine, characterized in that: It comprises a control cabinet, a refrigerated cabinet is arranged side by side on the left side of the control cabinet, and a heat preservation cabinet is arranged on the right side of the control cabinet. The control cabinet, the refrigerated cabinet and the heat preservation cabinet are separated independently. The side panels of the control cabinet and the refrigerated cabinet are designed with a first transmission port, and the sides of the control cabinet and the heat preservation cabinet are designed with a second transmission port. The first transmission port and the second transmission port are usually in a closed state. The interior of the refrigerated cabinet is designed with a refrigerated shelf, and the interior of the heat preservation cabinet is designed with a heat preservation shelf. Both sides of the inner wall of the refrigerator and the thermal insulation cabinet are designed with vertical movable rails, a groove is designed in the middle of the vertical movable rail, a transverse movable rail that can move along the groove is inserted into the groove, a delivery tray that can move inside the transverse movable rail is designed on the surface of the transverse movable rail, and driving wheels are designed on both sides of the bottom of the transverse movable rail, and the driving wheels cooperate with the inner wall of the groove to move in the vertical direction; A microwave oven is designed inside the control cabinet near the top, a manipulator connected to the cabinet is designed in front of the microwave oven, a transmission belt is designed correspondingly below the manipulator, and the position of the transmission belt corresponds to the first transmission port and the second transmission port on both sides of the control cabinet; The first gear adjustment arm and the second gear adjustment arm are respectively provided with pressure screw holes, wherein a pressure male screw is inserted into the pressure screw hole near the first gear adjustment arm, and a pressure female screw is inserted into the pressure screw hole near the second gear adjustment arm, and the pressure male screw and the pressure female screw can be threadedly connected; The interior of the second gear shift arm is an embedded structure with a gear hole designed inside. The embedded position of the second gear shift arm is designed with a first gear plate with a thickness consistent with the embedded depth. The first gear plate is inserted and connected to the gear hole through a gear column. A second gear plate is designed on the other side of the first gear plate on the inner side of the rotator, so the surfaces of the first gear plate and the second gear plate are used for horizontal knob operation through concave and convex positioning.