Food packaging equipment and weighing structure
By designing food packaging equipment and weighing structures, and utilizing components such as flow pumps and weight sensors, efficient and flexible control of food filling and packaging is achieved, solving the problem of equipment synchronization in existing technologies and improving production efficiency and quality.
Patent Information
- Application Number
- CN202520438274.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-03-13
AI Technical Summary
The existing food filling and packaging process suffers from difficulties in ensuring equipment synchronization, resulting in low production efficiency, poor flexibility, and high costs.
Design a food packaging equipment and weighing structure, including a diversion pump, an external pump pipe, a piston pressure pump, an electric rod, a diversion pipe, and a weight sensor. Through sealed connection, electric drive, and weight detection, achieve efficient and flexible control of food filling and packaging.
It improves the efficiency and flexibility of food filling and packaging, ensures filling uniformity, and enhances production quality and market responsiveness.
Smart Images

Figure CN223751168U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of food filling and packaging technology, and relates to a food packaging equipment and weighing structure. Background Technology
[0002] In existing food filling and packaging processes, the main drawbacks of simultaneous filling and packaging processes lie in efficiency, flexibility, hygiene and safety, and cost control. Simultaneous filling and packaging processes often require perfectly matched operating speeds for filling and packaging equipment, which is difficult to achieve in practice because different products and packaging materials may have different processing speeds, leading to waiting times between equipment and reducing overall production efficiency. When product types or packaging specifications change, the simultaneous process has poor adjustment flexibility, requiring lengthy equipment adjustments and recalibrations, affecting production flexibility and market responsiveness. Furthermore, in simultaneous filling and packaging processes, if a problem occurs in any step, such as inaccurate filling or damaged packaging, the entire production line may be forced to stop, which not only affects production efficiency but can also cause significant losses.
[0003] These shortcomings arise because the synchronous filling and packaging process demands extremely high levels of synchronization and precision from the equipment, while in actual production it is difficult to guarantee perfect synchronization at every stage. Conventional solutions include adding buffer zones, using more advanced control systems and sensors to improve synchronization accuracy, and designing modular equipment to increase flexibility in adjustments. Therefore, there is an urgent need for a food packaging equipment and weighing structure to address these issues. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a food packaging equipment and weighing structure to solve the problems mentioned in the background art.
[0005] This utility model is achieved through the following technical solution: a food packaging equipment and weighing structure, including: a main body and an inner movable groove, the main body is provided with two sets of guide pumps for pumping in food raw materials, and the left and right sides of the main body are respectively provided with a set of external pump pipes for introducing external food raw materials, and the lower ends of the two sets of external pump pipes are respectively provided with a set of external pipe ports for sealing and connecting the external food raw material pipes.
[0006] The lower end of the external pumping pipe is equipped with a set of piston pressure pumps for introducing external food raw materials into the external pumping pipe. The lower end of the piston pressure pump is equipped with a set of electric rods for pushing the internal piston up and down. The lower end of the electric rods is equipped with a set of lower support seats for supporting its lower end. The external pipe opening is a flange structure. The front side of the output end of the guide pump is equipped with a set of front pump material pipes for discharging food raw materials. The front side of the front pump material pipes is equipped with a set of diversion pipes for connecting and fixing with four sets of filling pipes.
[0007] As a preferred embodiment, the shunt pipe is in communication with the front pump pipe and four groups of filling pipes. Each group of the filling pipes is provided with a group of pump heads for pumping food raw materials. Each group of the pump heads is correspondingly connected with a group of the filling pipes. First, the staff seals the external pipe port with the external food raw material conduit. When the food raw material is introduced into the external pipe port, the electric rod is used to drive the piston to pump the food raw material into the external pump pipe. Then, the food raw material is pumped into the front pump pipe and the shunt pipe by the flow guide pump, and is uniformly introduced into a plurality of groups of the shunt pipe. Then, the staff controls the flow of the corresponding number of shunt pipes through the plurality of pump heads, so as to increase the efficiency of food filling and packaging according to the actual production situation.
[0008] As a preferred embodiment, the lower end of each group of the pump heads is provided with a group of food containers for filling food raw materials. Each four food containers form a group, and are placed on the upper end of the guide frame belt. The guide frame belt is provided with a plurality of groups.
[0009] As a preferred embodiment, each two groups of the guide frame belts are connected by a rotating shaft, and the connection part of the two groups of the guide frame belts is provided with a group of inner movable grooves for facilitating the change of the angle of the guide frame belt. The front side of the guide frame belt has an elliptical structure, and a plurality of groups of inner power shafts are arranged in a straight line inside the guide frame belt.
[0010] As a preferred embodiment, a group of weight sensors for detecting the weight of the food containers are arranged at the middle position of each two groups of the guide frame belts. A group of lower support seats for supporting the guide frame belts are arranged at the lower end of the guide frame belts. When the staff places the food containers at the middle position of the guide frame belt, the weight sensor can measure the weight of the food containers. After the food filling is completed, the weight of the food containers can be directly read by the corresponding weight sensor, so as to determine the uniformity of the food filling, thereby ensuring the quality of food production.
[0011] As a preferred embodiment, the outer side of the front and rear ends of the lower support seat is respectively provided with a group of side guide bars for guiding and limiting the support of the food containers. The outer side of each group of the side guide bars is respectively provided with a plurality of groups of positioning frames for fixing the side guide bars.
[0012] As a preferred embodiment, the positioning frames, the lower support seat and the side guide bars are fixed by bolts. The lower end of the lower support seat is provided with a group of support tables for supporting the lower support seat.
[0013] The beneficial effects of the present application are as follows: the external pipe opening is sealed and connected with the external food material conduit, when the food material is introduced into the external pipe opening, the electric rod is used to drive the piston material pump to introduce the food material into the external pump flow pipe, and then the food material is pumped into the front pump material pipe and the shunt pipe by the flow pump, and then the food material is uniformly introduced into the shunt pipe, and then the staff controls the shunt pipe to flow, and then the food filling and packaging efficiency is increased according to the actual production situation.
[0014] When the food container is placed in the middle position of the guide frame belt, the weight sensor can measure the weight of the food container, and after the food filling is completed, the weight of the food container can be directly read by the corresponding weight sensor, so as to determine the uniformity of the food filling, thereby ensuring the food production quality. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0016] Figure 1 It is a left oblique front side top view structure schematic diagram of the food packaging equipment and the weighing structure of the present application.
[0017] Figure 2 It is a right oblique front side top view structure position schematic diagram of the support table in the food packaging equipment and the weighing structure of the present application.
[0018] Figure 3 It is a left oblique front side top view structure diagram of the several groups of guide frame belts in the food packaging equipment and the weighing structure of the present application.
[0019] Figure 4 It is Figure 3 It is an enlarged schematic diagram of structure A in the present application.
[0020] In the figure: 100-main body, 110-external pump flow pipe, 120-external pipe opening, 130-electric rod, 140-lower support seat, 150-front pump material pipe, 160-shunt pipe, 170-pump head, 180-filling pipe, 190-positioning frame, 200-lower support seat, 210-guide frame belt, 220-side guide column, 230-weight sensor, 240-support table, 250-internal movable groove. DETAILED DESCRIPTION
[0021] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0022] Please refer to Figures 1-4 A food packaging equipment and weighing structure, comprising: a main body 100, a guide frame belt 210 and an inner movable groove 250, the main body 100 is internally provided with two groups of flow guide pumps for pumping food raw materials, the left and right sides of the main body 100 are respectively provided with a group of outer pump flow pipes 110 for guiding the external food raw materials into the main body 100, and the lower ends of the two groups of outer pump flow pipes 110 are respectively provided with a group of external pipe openings 120 for sealingly connecting the external food raw material pipes;
[0023] The lower end of the outer pump flow pipe 110 is provided with a group of piston pressure pumps for guiding the external food raw materials into the inner part of the outer pump flow pipe 110, the lower end of the piston pressure pump is provided with a group of electric rods 130 for driving the piston in the piston pressure pump to move up and down, the lower end of the electric rod 130 is provided with a group of lower support seats 140 for supporting the lower end of the electric rod 130, the external pipe opening 120 is a flange structure, the front side of the output end of the flow guide pump is provided with a group of front pump pipes 150 for guiding the food raw materials out, and the front side of the front pump pipe 150 is provided with a group of shunt pipes 160 for being fixedly connected with four groups of filling pipes 180.
[0024] The shunt pipe 160 is in communication with the inner parts of the front pump pipe 150 and the four groups of filling pipes 180, the upper end of each group of filling pipes 180 is provided with a group of sub-pump heads 170 for pumping the food raw materials into the filling pipes 180, and each group of sub-pump heads 170 is sealingly connected with a group of filling pipes 180.
[0025] Please refer to Figures 1-4 As a first embodiment of the present application, first, the staff sealingly connects the external food raw material guide pipe with the external pipe opening 120, when the food raw materials are guided into the inner part of the external pipe opening 120, the staff drives the piston pressure pump to guide the food raw materials into the inner part of the outer pump flow pipe 110 by using the electric rod 130, and after the food raw materials are pumped into the inner parts of the front pump pipe 150 and the shunt pipe 160 by the flow guide pump, the food raw materials can be uniformly guided into the inner parts of the several groups of shunt pipes 160, and the staff controls the flow of the corresponding number of shunt pipes 160 by using the plurality of sub-pump heads 170, so as to increase the efficiency of food filling and packaging according to the actual production situation.
[0026] The lower end of each group of sub-pump heads 170 is provided with a group of food containers for filling the food raw materials, and every four food containers form a group and are placed on the upper end of the guide frame belt 210, and the guide frame belt 210 is provided with several groups.
[0027] Each two groups of guide frame belts 210 are made by rotating shaft splicing, and a group of inner movable grooves 250 for facilitating the angle change of the guide frame belts 210 are arranged at the connection positions of the two groups of guide frame belts 210.
[0028] A group of weight sensors 230 for detecting the weight of the food containers are arranged at the middle positions of each two groups of guide frame belts 210, and a group of lower support bases 140 for supporting the guide frame belts 210 are arranged at the lower ends of the guide frame belts 210.
[0029] Please refer to Figures 1-4 , as a second embodiment of the present application: based on the above embodiment, further, when the staff places the food container in the middle position of the guide frame belt 210, the weight sensor 230 can measure the weight of the food container, and after the food filling is completed, the weight of the food container can be directly read by the corresponding weight sensor 230, so as to determine the uniformity of the food filling, thereby ensuring the food production quality.
[0030] A group of side guide rails 220 for guiding and limiting the support of the food containers are arranged at the outer sides of the front and rear ends of the support base 200, and a plurality of groups of positioning frames 190 for fixing the side guide rails 220 are arranged at the outer sides of each group of side guide rails 220.
[0031] The positioning frames 190, the support base 200 and the side guide rails 220 are fixed by bolt connection, and a group of support tables 240 for supporting the support base 200 are arranged at the lower ends of the support base 200.
[0032] The above is only a preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application, should be included in the protection scope of the present application.
Claims
1. A food packaging device and weighing structure, comprising: The main body (100), the guide frame belt (210), and the inner movable groove (250) are characterized in that: the main body (100) is provided with two sets of guide pumps for pumping in food raw materials, and the main body (100) is provided with a set of external pump pipes (110) on the left and right sides for introducing external food raw materials, and the lower ends of the two sets of external pump pipes (110) are provided with a set of external pipe ports (120) for sealing and connecting the external food raw material pipes. The lower end of the external pump pipe (110) is provided with a set of piston pressure pumps for introducing external food raw materials into the interior of the external pump pipe (110). The lower end of the piston pressure pump is provided with a set of electric rods (130) for pushing the internal piston up and down. The lower end of the electric rods (130) is provided with a set of lower support seats (140) for supporting its lower end. The external pipe port (120) is a flange structure. The front side of the output end of the guide pump is provided with a set of front pump material pipes (150) for discharging food raw materials. The front side of the front pump material pipes (150) is provided with a set of diversion pipes (160) for connecting and fixing with four sets of filling pipes (180).
2. The food packaging equipment and weighing structure according to claim 1, characterized in that: The diversion pipe (160) is internally connected to the front pump material pipe (150) and the four sets of filling pipes (180). Each set of filling pipes (180) is provided with a set of pump heads (170) for pumping food raw materials into the upper end. Each set of pump heads (170) is sealed to a set of filling pipes (180).
3. The food packaging equipment and weighing structure according to claim 2, characterized in that: Each set of pump heads (170) has a set of food containers for filling food raw materials at the lower end. The food containers are in groups of four and are placed on the upper end of the guide belt (210). The guide belt (210) has several sets.
4. The food packaging equipment and weighing structure according to claim 3, characterized in that: Each pair of the guide belts (210) are spliced together by a rotating shaft, and each pair of the guide belts (210) is provided with an inner movable groove (250) to facilitate the angle change of the guide belts (210). The guide belts (210) are elliptical in front view, and are provided with several sets of linearly distributed inner power shafts inside.
5. The food packaging equipment and weighing structure according to claim 4, characterized in that: A weight sensor (230) for detecting the weight of food containers is provided at the middle position of every two sets of the guide belts (210), and a support base (200) for supporting them is provided at the lower end of several sets of the guide belts (210).
6. The food packaging equipment and weighing structure according to claim 5, characterized in that: The support base (200) has a set of side guide rails (220) on the outer sides of its front and rear ends for guiding and limiting the food container. Each set of side guide rails (220) has several sets of positioning frames (190) on the outer side for fixing it.
7. The food packaging equipment and weighing structure according to claim 6, characterized in that: The positioning frame (190) is fixed to the lower support base (140) and the side guide rail (220) by bolts. The lower end of the support base (200) is provided with a set of support platforms (240) for supporting it.