Weighing device for processing and transferring charging basket
By designing a weighing device with a frame, weighing cylinder, and guide components, the limitations and safety hazards of using material bucket weighing devices in food production workshops have been solved, achieving simple, safe, and efficient weighing operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2026-04-14
AI Technical Summary
Existing weighing devices have limitations and safety hazards in food production workshops, especially since the material buckets are inconvenient to push and pull on slopes and pose a risk of slipping.
Design a weighing device including a frame, a weighing cylinder, a weighing support, and a guide assembly. The weighing cylinder drives the weighing support to move up and down, and the support strips cooperate with the frame to stably weigh the material bucket. The guide assembly ensures the stability and safety of the weighing process.
It achieves simplicity and safety in hopper weighing, improves weighing efficiency, reduces safety hazards of manual operation, and adapts to flexible use in different locations.
Smart Images

Figure CN224122031U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food production equipment technology, and more specifically to a weighing device for processing and transferring material barrels. Background Technology
[0002] In the daily food production process, material transfer drums are indispensable for holding materials and need to be transferred. To facilitate transfer, the drums are generally formed into a movable transfer cart. In the workshop, the cart is pulled to its original position by manual labor or a trolley conveyor line. However, after the drums are filled with materials, the materials generally need to be weighed again. There are two main types of existing weighing devices: (1) To facilitate weighing during the trolley's movement, a floor scale is used, and the weighing equipment is buried in the groove of the floor. Floor scales can only be conveniently installed on the ground floor (first floor), which limits their use; (2) To overcome the problem in (1), a raised area can be set up in the workshop, and a floor scale can be installed in the raised area. This requires pushing and pulling the material transfer drum to the raised area, which requires pushing and pulling the drum on a slope to reach the raised area. Since the drum is heavy, it is inconvenient to push the cart up and down the slope, which is time-consuming and labor-intensive. In addition, there will be oil stains on the workshop floor, which will make the floor slippery. Manual pushing back and forth also poses certain safety hazards. Utility Model Content
[0003] The purpose of this utility model is to provide a weighing device for processing and transferring material barrels. It has a simple structure, can easily weigh the material barrels, is easy to operate, has high efficiency and good safety.
[0004] To achieve the above objectives, the solution of this utility model is:
[0005] A weighing device for processing and transferring material barrels includes a frame, a weighing cylinder, a weighing bracket, and a guide assembly. The weighing cylinder is installed on both sides of the frame, and the output end of the weighing cylinder is connected to the weighing bracket. The weighing cylinder drives the weighing bracket to reciprocate up and down in the guide assembly. Support strips are respectively provided on both sides of the processing and transferring material barrel. Each weighing bracket is provided with a mounting part, and a weighing sensor is provided below the mounting part. The processing and transferring material barrel is pushed into the frame and located between two weighing brackets. The support strips are parallel and located above the mounting parts. When the weighing brackets rise, the support strips are mounted on the mounting parts for weighing.
[0006] Furthermore, a limiting block is provided at the front end of the support strip, and a limiting groove is provided at the end of the mounting part. The limiting block is located on the limiting groove when the support strip is mounted on the mounting part, and falls into the limiting groove for limiting when the weighing bracket rises.
[0007] Furthermore, the height of the support strips and the limiting blocks is higher than the height of the frame before it is raised.
[0008] Furthermore, the bottom of the processing and transfer barrel is equipped with multiple rollers, the rear of the barrel is equipped with a handle, and the support strips are located on both sides of the barrel.
[0009] Furthermore, the output end of the weighing cylinder is a piston rod, and the weighing bracket includes a housing connected to the movable end of the piston rod. The cylinder body of the weighing cylinder is located inside the housing, and the mounting part is arranged on the side of the housing.
[0010] Furthermore, guide components are provided on both sides of the frame. Each guide component includes two parallel guide frames installed on both sides of the frame. The weighing bracket is located between the two guide frames of the same guide component. A vertical guide groove is provided along the length direction on the side of the guide frame facing the weighing bracket. The two sides of the weighing bracket extend outward to form insert plates that can be inserted into the guide grooves. The insert plates move up and down in the guide grooves when the weighing cylinder drives the weighing bracket.
[0011] Furthermore, the frame includes two side supports and a connecting frame connected between the back sides of the two side supports. The front end of the two side supports is also provided with a guide plate. The guide plate forms an inclined guide surface that is inclined from the front end of the side support to the mounting part of the weighing support. The height of the guide plate is lower than the height of the support strips on both sides of the processing and transfer hopper. The processing and transfer hopper passes through the front end of the two side supports and enters and exits between the guide plates of the two side supports.
[0012] With the above structure, the weighing device for processing and transferring material buckets of this utility model has a simple overall structure, which makes it convenient to weigh the material buckets. The weighing operation is simple, and the weighing device can be added in the workshop according to the needs of use. It can be placed wherever it is needed. It is flexible in use, and there is no need for manual pushing and moving of the processing and transferring material buckets up and down during weighing. It has good safety in workshop operation, improves weighing efficiency, and effectively improves overall production efficiency. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0014] Figure 2 This is a structural schematic diagram of one side of the frame of this utility model (guide plate omitted);
[0015] Figure 3 This is a top view of the present invention;
[0016] Figure 4 This is a schematic diagram of the processing and transfer bucket of this utility model.
[0017] Label Explanation:
[0018] 1. Frame; 11. Side supports; 12. Connectors; 13. Guide plates;
[0019] 14 Vertical support; 15 Control components; 2 Weighing cylinder; 3 Weighing support; 31 Mounting unit;
[0020] 32 Housing; 33 Insert plate; 311 Limiting groove; 4 Guide assembly;
[0021] 41 Guide frame; 411 Guide groove; 5 Processing and transfer bucket; 51 Support strip;
[0022] 52 Limit block; 53 Roller; 54 Handle. Detailed Implementation
[0023] To further explain the technical solution of this utility model, the following detailed description is provided through specific embodiments.
[0024] Combination Figures 1 to 4 As shown, this utility model discloses a weighing device for processing and transferring material barrels, including a frame 1, a weighing cylinder 2, a weighing bracket 3, and a guide assembly 4. The weighing cylinder 2 is installed on both sides of the frame 1, and the output end of the weighing cylinder 3 is connected to the weighing bracket 3. The weighing cylinder 2 can drive the weighing bracket 3 to reciprocate up and down within the guide assembly 4. In this utility model, support strips 51 protrude from both sides of the processing and transferring material barrel 5. Each weighing bracket 3 has a mounting part 31, and a weighing sensor (not shown in the figure) is located below the mounting part. The processing and transferring material barrel 5 is pushed into the frame 2 and positioned between two weighing brackets 3. The support strip 51 is positioned parallel above the mounting section 31. When the weighing bracket 3 rises, the support strip 51 can be mounted on the mounting section 31. After the weighing bracket 3 rises, it drives the mounting section 31 to support the processing transfer bucket 5, thereby allowing the processing transfer bucket to be mounted on the two mounting sections 31 for weighing (detecting the change in physical quantity caused by the gravity of the processing transfer bucket and converting it into an electrical signal output, which is the prior art).
[0025] A limiting block 52 is provided at the front end of the support strip 51. In this embodiment, the limiting block 52 is formed as a cylindrical insert and is located at the bottom surface of the front end of the support strip 51. A limiting groove 311 is provided at the end of the mounting part 31. In this embodiment, the limiting groove 311 is a U-shaped groove. When the support strip 51 is mounted on the mounting part 31, the limiting block 52 is located above the limiting groove 311 and can fall into the limiting groove 311 for limiting when the weighing bracket 3 rises, thereby ensuring the stability of the processing and transfer bucket 5 when it is mounted on the weighing bracket 3 for weighing or during the lifting process. Therefore, the height of the support strip 51 is higher than the height of the mounting part 31 before it rises. When the weighing is completed, the weighing bracket 3 descends, and the processing transfer bucket 5 supported on the bracket 31 descends simultaneously. After the processing transfer bucket 5 touches the ground, the weighing bracket 3 continues to descend a short distance so that the limiting block 52 on the processing transfer bucket 5 is not restricted, and the processing transfer bucket 5 can be smoothly pulled out after the weighing is completed.
[0026] In this example, the processing transfer bucket 5 is a square bucket with rounded chamfers at each corner of the bucket body. Multiple rollers 53 are provided at the bottom of the bucket body, and a handle 54 is provided at the rear of the bucket body for easy pushing and pulling. Support strips 51 are located on both sides of the bucket body.
[0027] The output end of the weighing cylinder 2 is a piston rod (not shown in the figure). The weighing bracket 3 includes a housing 32 connected to the movable end of the piston rod. The cylinder body of the weighing cylinder 2 is located inside the housing 32, and the mounting part 31 is disposed on the side of the housing 32. In this embodiment, the mounting part 31 can form a support base, and the upper surface of the mounting part 31 forms a mounting plate. The weighing sensor can be located at the bottom of the mounting plate.
[0028] Guide components 4 are provided on both sides of the frame 1. Each guide component 4 includes two parallel guide frames 41 installed on both sides of the frame 1. The weighing bracket 3 is located between the two guide frames 41 of the same guide component. A vertical guide groove 411 is provided along the length direction on the side of the guide frame 41 facing the weighing bracket 3. The two sides of the weighing bracket 3 extend outward to form insert plates 33 that can be inserted into the guide grooves 411. The insert plates 33 are located on both sides of the mounting part 31. When the weighing cylinder 2 drives the weighing bracket 3, the insert plates 33 move up and down in the guide grooves 411. Through the guide components 4, the weighing bracket 3 can be stably raised and lowered, ensuring the stability of the weighing process and reducing the impact of the lateral force generated by the weighing cylinder on the weighing accuracy.
[0029] The frame 1 includes two side supports 11 and a connecting frame 12 connecting the back sides of the two side supports 11. The processing transfer bucket 5 passes through the front end of the two side supports 11 and moves in and out between the two side supports 11. The connecting frame 12 can be designed as a telescopic structure with variable length to accommodate processing transfer buckets of different widths. A guide plate 13 can also be provided at the front end of the two side supports 11. The guide plate 13 forms an inclined guide surface that is inclined from the front end of the side support towards the mounting part of the weighing frame. The height of the guide plate 13 is lower than the height of the support strips 51 and the limiting blocks 52 on both sides of the processing transfer bucket 5. The processing transfer bucket 5 moves in and out between the guide plates 13 of the two side supports. The guide plates 13 can guide or direct the processing transfer bucket 5 when it is pushed forward, so that the processing transfer bucket 5 can be smoothly pushed between the two side supports 11. On the frame 1, a vertical support 14 protrudes from the rear end of one of the side supports. A control component 15 can be installed on the vertical support 14 to facilitate the weighing operation.
[0030] With the above structure, when using this utility model, the weighing device can be placed directly in the workshop. When the processing transfer barrel 5 needs to be weighed, the processing transfer barrel 5 is pushed into the frame 1. After being pushed in, the support strips 51 on both sides of the processing transfer barrel 5 are located above the mounting part 31 in the weighing bracket 3. After the weighing cylinder 2 is started, the weighing bracket 3 is lifted, so that the processing transfer barrel 5 is lifted. The weighing data is collected by the weighing sensor and the collected results are output to obtain the weighing result. After the weight data is collected, the weighing cylinder 2 retracts, and the weighing bracket 3 together with the mounting part 31 descends back to the initial position. After the processing transfer barrel 5 returns to its original position, it can be pushed out of the frame 2 to complete the weighing.
[0031] The above embodiments and figures are not intended to limit the product form and style of this utility model. Any appropriate changes or modifications made by those skilled in the art should be considered as not departing from the patent scope of this utility model.
Claims
1. A weighing device for processing and transferring material buckets, characterized in that: The system includes a frame, weighing cylinders, weighing supports, and a guide assembly. The weighing cylinders are installed on both sides of the frame, and the output ends of the weighing cylinders are connected to the weighing supports. The weighing cylinders drive the weighing supports to reciprocate up and down in the guide assembly. Support strips are protruding from both sides of the processing and transfer hopper. Each weighing support has a mounting part, and a weighing sensor is located below the mounting part. The processing and transfer hopper is pushed into the frame and positioned between two weighing supports. The support strips are parallel to each other and positioned above the mounting parts. The support strips are mounted on the mounting parts for weighing when the weighing supports rise.
2. The weighing device for processing and transferring material buckets as described in claim 1, characterized in that: The front end of the support strip is provided with a limiting block, and the end of the mounting part is provided with a limiting groove. When the support strip is mounted on the mounting part, the limiting block is located on the limiting groove, and when the weighing bracket rises, it falls into the limiting groove to limit the position.
3. The weighing device for processing and transferring material buckets as described in claim 2, characterized in that: The height of the support strips and the limiting blocks is higher than the height of the frame before it is raised.
4. A weighing device for processing and transferring material buckets as described in claim 1 or 3, characterized in that: The bottom of the processing and transfer bucket is equipped with multiple rollers, the rear of the bucket is equipped with a handle, and the support strips are located on both sides of the bucket.
5. A weighing device for processing and transferring material buckets as described in claim 1 or 2, characterized in that: The output end of the weighing cylinder is a piston rod, and the weighing bracket includes a housing connected to the movable end of the piston rod. The cylinder body of the weighing cylinder is located inside the housing, and the mounting part is set on the side of the housing.
6. A weighing device for processing and transferring material buckets as described in claim 1 or 5, characterized in that: Guide components are provided on both sides of the frame. Each guide component includes two parallel guide frames installed on both sides of the frame. The weighing bracket is located between the two guide frames of the same guide component. A vertical guide groove is provided along the length direction on the side of the guide frame facing the weighing bracket. The two sides of the weighing bracket extend outward to form insert plates that can be inserted into the guide grooves. The insert plates move up and down in the guide grooves when the weighing cylinder drives the weighing bracket.
7. A weighing device for processing and transferring material buckets as described in claim 1 or 2, characterized in that: The frame includes two side supports and a connecting frame between the back sides of the two side supports. The front end of the two side supports is also provided with a guide plate. The guide plate forms an inclined guide surface that is inclined from the front end of the side support to the mounting part of the weighing support. The height of the guide plate is lower than the height of the support strips on both sides of the processing and transfer hopper. The processing and transfer hopper passes through the front end of the two side supports and enters and exits between the guide plates of the two side supports.