Pallet assembly
By introducing cantilever beam load cells and control modules into the pallet assembly, the problem of real-time weight monitoring of high-value goods during transportation is solved, ensuring safety and accuracy.
Patent Information
- Application Number
- CN202520165458.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-24
AI Technical Summary
During the transportation of high-value goods, it is difficult to monitor changes in the weight of the goods in real time to ensure safety and prevent loss or damage.
A cantilever beam load cell is introduced into the pallet assembly. The two ends of the cantilever beam load cell are fixed with bolts, and a partition is installed between its upper surface and the lower surface of the carrier plate. Combined with the control module and the weighing display module, real-time weight data analysis is realized.
It enables real-time weighing of goods, detects loss or damage, ensures the safe transportation of high-value goods, and improves weighing accuracy.
Smart Images

Figure CN223791971U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of packaging and transportation technology, and in particular to a pallet assembly. Background Technology
[0002] Pallets have a wide range of uses, generally for carrying goods to facilitate storage and relocation. They can be reused after the goods are moved. Pallets are a type of carrying tool that allows goods to be stacked and transported by forklift to the next workstation, truck, container, or warehouse. Therefore, goods are frequently stacked on pallets in warehousing and handling, often secured with strapping, allowing forklifts to move entire batches of goods and stack them high, thereby reducing storage or transportation space and lowering production costs. During transportation, pallets are usually placed in containers. For high-value industrial products, ensuring product safety during transportation is a crucial issue that needs to be addressed. Utility Model Content
[0003] The main purpose of this utility model is to provide a pallet assembly that facilitates the analysis of weight data during the transportation of goods to obtain information such as whether the goods are lost or damaged, thereby ensuring the safety of transporting high-value goods.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a pallet assembly, comprising a pallet body and support members spaced apart on the lower surface of the pallet body. A carrier plate is disposed above the pallet body, and the carrier plate is connected to the pallet body by at least two cantilever beam load cells. One end of each cantilever beam load cell is fixedly installed on the pallet body by a first bolt, such that the lower surface of the cantilever beam load cell is spaced apart from the upper surface of the pallet body. The other end of the cantilever beam load cell is connected to the carrier plate by a second bolt. A partition plate is fitted between the upper surface of the cantilever beam load cell and the lower surface of the carrier plate, and outside the second bolt. The head of the second bolt is located within the gap formed between the cantilever beam load cell and the pallet body.
[0005] The following are further improvements to the above technical solution:
[0006] 1. In the above scheme, a gasket is fitted between the lower surface of the cantilever beam load cell and the upper surface of the pallet body, and outside the first bolt.
[0007] 2. In the above scheme, each of the four cantilever beam load cells is connected to a control module installed on the lower surface of the carrier plate via a transmission line, and a weighing display module that is communicatively connected to the control module is set separately from the main body of the pallet.
[0008] 3. In the above scheme, the support member is set as a strip support member extending along the length direction of the pallet body.
[0009] 4. In the above scheme, the carrier plate further includes an outer shell and reinforcing ribs arranged perpendicularly to each other in the outer shell, and at least one support block is installed at the perpendicular intersection of any two reinforcing ribs.
[0010] 5. In the above scheme, two support blocks are provided at each vertical intersection of the reinforcing ribs.
[0011] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art:
[0012] This utility model relates to a pallet assembly, in which a carrier plate is disposed on the top of the pallet body. The carrier plate is connected to the pallet body by at least two cantilever beam load cells. One end of each cantilever beam load cell is fixedly installed on the pallet body by a first bolt, with the lower surface of the cantilever beam load cell spaced apart from the upper surface of the pallet body. The other end of the cantilever beam load cell is connected to the carrier plate by a second bolt. A partition plate is fitted between the upper surface of the cantilever beam load cell and the lower surface of the carrier plate, outside the second bolt. The head of the second bolt is located within the gap formed between the cantilever beam load cell and the pallet body. In addition to carrying and transporting goods, this assembly can also weigh the goods in real time. This allows for the analysis of weight data during transportation to obtain information on whether the goods are lost or damaged, ensuring the safety of transporting high-value goods. Furthermore, the protection of the load cells ensures the accuracy of the weighing. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of the pallet assembly of this utility model;
[0014] Figure 2 This is a schematic diagram of the workpiece structure of the pallet assembly of this utility model;
[0015] Figure 3 This is a partial structural cross-sectional view of the pallet assembly of this utility model;
[0016] Figure 4 This is a partial structural diagram of the pallet assembly of this utility model.
[0017] In the above attached diagram: 1. Pallet body; 2. Support component; 3. Carrier plate; 31. Outer shell; 32. Reinforcing rib; 33. Support block; 4. Cantilever beam load cell; 5. First bolt; 6. Second bolt; 7. Partition plate; 8. Gasket; 9. Transmission line; 10. Control module; 11. Weighing display module. Detailed Implementation
[0018] The present patent can be further understood through the specific embodiments given below, but they are not intended to limit the present patent.
[0019] Example 1: A pallet assembly includes a pallet body 1 and support members 2 spaced apart on the lower surface of the pallet body 1. A carrier plate 3 is disposed above the pallet body 1. The carrier plate 3 is connected to the pallet body 1 by at least two cantilever beam load cells 4. One end of each cantilever beam load cell 4 is fixedly installed on the pallet body 1 by a first bolt 5, such that the lower surface of the cantilever beam load cell 4 is spaced apart from the upper surface of the pallet body 1. The other end of the cantilever beam load cell 4 is connected to the carrier plate 3 by a second bolt 6. A partition plate 7 is fitted between the upper surface of the cantilever beam load cell 4 and the lower surface of the carrier plate 3, and outside the second bolt 6. The head of the second bolt 6 is located within the gap formed between the cantilever beam load cell 4 and the pallet body 1.
[0020] When in use, the goods are first placed on the carrier plate by hand. At this time, the cantilever beam load cell under the carrier plate is triggered, and the weighing display unit will display the weight of the goods.
[0021] The aforementioned support member 2 is configured as a strip support member extending along the length direction of the pallet body 1; a gasket 8 is fitted between the lower surface of the aforementioned cantilever beam load cell 4 and the upper surface of the pallet body 1 and outside the first bolt 5.
[0022] Each of the four cantilever beam load cells 4 is connected to a control module 10 mounted on the lower surface of the carrier plate 3 via a transmission line 9. A weighing display module 11, which is communicatively connected to the control module 10, is separately set from the pallet body 1.
[0023] The aforementioned control module and weighing display module were all obtained through selection and procurement, and fall within the scope of existing technology, so they will not be described in detail here.
[0024] Example 2: A pallet assembly includes a pallet body 1 and support members 2 spaced apart on the lower surface of the pallet body 1. A carrier plate 3 is disposed above the pallet body 1. The carrier plate 3 is connected to the pallet body 1 by at least two cantilever beam load cells 4. One end of each cantilever beam load cell 4 is fixedly installed on the pallet body 1 by a first bolt 5, such that the lower surface of the cantilever beam load cell 4 is spaced apart from the upper surface of the pallet body 1. The other end of the cantilever beam load cell 4 is connected to the carrier plate 3 by a second bolt 6. A partition plate 7 is fitted between the upper surface of the cantilever beam load cell 4 and the lower surface of the carrier plate 3, and outside the second bolt 6. The head of the second bolt 6 is located within the gap formed between the cantilever beam load cell 4 and the pallet body 1.
[0025] If the weight of the goods is too large during use, the cantilever beam load cell is easily damaged. Therefore, reinforcing ribs and support blocks are added to the main body of the pallet, which increases the load-bearing range of the pallet and extends the service life of the sensor.
[0026] The aforementioned carrier plate 3 further includes an outer shell 31 and reinforcing ribs 32 arranged perpendicularly within the outer shell 31. At least one support block 33 is installed at the perpendicular intersection of any two reinforcing ribs 32. Two support blocks 33 are provided at each perpendicular intersection formed by the aforementioned reinforcing ribs 32.
[0027] The pallet assembly of this utility model not only carries and transports goods, but also allows for real-time weighing of the goods. This facilitates the analysis of weight data during transportation to obtain information on whether the goods are lost or damaged, ensuring the safety of transporting high-value goods. Furthermore, the weighing accuracy is guaranteed through the protection of the weighing sensor.
[0028] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.
Claims
1. A pallet assembly comprising: The pallet body (1) and the support (2) arranged at the lower surface of the pallet body (1) are characterized in that: the upper surface of the pallet body (1) is provided with a loading plate (3), the loading plate (3) and the pallet body (1) are connected through at least two cantilever beam load sensors (4), one end of each cantilever beam load sensor (4) is fixedly installed on the pallet body (1) through a first bolt (5) and the lower surface of the cantilever beam load sensor (4) is arranged in a spaced manner with the upper surface of the pallet body (1), the other end of the cantilever beam load sensor (4) is connected with the loading plate (3) through a second bolt (6), a partition plate (7) is sleeved between the upper surface of the cantilever beam load sensor (4) and the lower surface of the loading plate (3) and located outside the second bolt (6), and the head of the second bolt (6) is located in the space between the cantilever beam load sensor (4) and the pallet body (1).
2. The pallet assembly of claim 1, wherein: A gasket (8) is sleeved between the lower surface of the cantilever beam load sensor (4) and the upper surface of the pallet body (1) and located outside the first bolt (5).
3. The pallet assembly of claim 1, wherein: The four cantilever beam load sensors (4) are respectively connected with a control module (10) arranged at the lower surface of the loading plate (3) through transmission lines (9), and a weighing display module (11) in communication connection with the control module (10) is arranged separately from the pallet body (1).
4. The pallet assembly of claim 1, wherein: The support (2) is arranged in a strip shape along the length direction of the pallet body (1).
5. The pallet assembly of claim 1, wherein: The loading plate (3) further comprises an outer shell (31) and reinforcing rib strips (32) arranged in a vertical intersecting manner in the outer shell (31), and at least one support block (33) is arranged at the vertical intersection of any two reinforcing rib strips (32).
6. The pallet assembly of claim 5, wherein: Two support blocks (33) are arranged at each vertical intersection of the reinforcing rib strips (32).