Logistics tray

By integrating a weighing platform and main control circuit board into a logistics pallet, combined with photoelectric sensors and buffer devices, the problem of cumbersome existing logistics pallet structures is solved. This enables real-time weight acquisition, automated detection, and impact absorption, improving the efficiency and accuracy of logistics management, protecting equipment and goods, and simplifying operational processes.

CN223703402UActive Publication Date: 2025-12-23ANHUI JIAJIAXING SUPPLY CHAIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520194448.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2025-12-23
Estimated Expiration
2035-02-07

AI Technical Summary

Technical Problem

The existing logistics pallet structure suffers from cumbersome steps and low efficiency in modern logistics, especially when the volume of goods is huge. It is necessary to simplify the pre-shipment steps to improve work efficiency.

Method used

A logistics pallet was designed, which combines multiple functions such as a weighing platform, main control circuit board, photoelectric sensor, and buffer device to achieve real-time acquisition of cargo weight information, automated detection and identification, and adds a buffer device to absorb impact force. The detachable structure facilitates maintenance and adapts to different needs.

Benefits of technology

It improves the efficiency and accuracy of logistics and warehousing management, simplifies the weighing process, reduces manual intervention, enhances the reliability and adaptability of the system, protects internal electronic components and goods, reduces damage caused by vibration or impact, and improves automation and operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a logistics tray in the technical field of logistics, which comprises a supporting platform and a base, a main control circuit board is arranged between the supporting platform and the base, a weighing platform is mounted in the supporting platform, and one end of the main control circuit board is electrically connected with a photoelectric sensor; according to the structure, multiple functions and technologies are combined, the efficiency and accuracy of logistics and warehouse management are improved through the mode, the weighing process is simplified, manual intervention is reduced, the data accuracy is improved, the processing speed is increased, the photoelectric sensor and the photoelectric sensing area are used in a matched mode, goods can be detected and recognized, and the goods quality is improved. And meanwhile, through the combination of multiple functions and technologies, the tray is matched with an operator to complete the procedures of weighing, classifying and loading during distribution, and the preorder steps of the distribution procedures of medium and small batches are reduced, so that the effects of improving the working efficiency and shortening the working time are facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of logistics, especially a logistics pallet. BACKGROUND

[0002] Logistics refers to the process of planning, implementing and controlling the efficiency and effectiveness of raw materials, work-in-process inventory, finished products and related information from the supply to the consumption. Logistics covers the entire supply chain management from production to the end user, including transportation, warehousing, packaging, handling, processing, distribution and related information processing activities.

[0003] The logistics pallet is an indispensable tool in modern logistics and warehouse management, mainly used for carrying, storing, handling and transporting goods. It provides a solid and flat platform for goods, facilitating the operation of mechanical equipment such as forklifts, stackers and automatic guided vehicles.

[0004] Most existing logistics pallets are made of wooden structures and are assembled into bases. This structure only provides a solid and flat platform for goods. With the development of modern logistics, in the context of complex processes and large amounts of goods flow, it is necessary to reduce the complexity of logistics to reduce the pre-delivery steps and improve work efficiency. Therefore, the present inventors have proposed a logistics pallet to solve the above technical problems. SUMMARY

[0005] The utility model aims to provide a technical solution to solve the above problems.

[0006] A logistics pallet includes a pallet and a base, a main control circuit board is provided between the pallet and the base, a scale platform is installed inside the pallet, the scale platform is electrically connected to the main control circuit board, one end of the pallet is an installation area, one end of the scale platform is higher than the surface of the installation area, a non-slip mat is provided on the surface of the installation area to protect the scale platform and increase the friction of the scale platform, one end of the main control circuit board is electrically connected to a photoelectric sensor, one end of the pallet is provided with a photoelectric sensing area paired with the photoelectric sensor, the base is located at one end of the pallet close to the photoelectric sensing area, a light transmission mirror is provided on the surface of the base, the base is located directly below the photoelectric sensing area, a buffer device is installed between the pallet and the base to reduce the acting force.

[0007] The structure combines multiple functions and technologies to improve the efficiency and accuracy of logistics and warehouse management. The scale platform is electrically connected to the main control circuit board, allowing the scale platform to be directly integrated into the support table and connected to the main control circuit board. Real-time weight information of the goods can be obtained, simplifying the weighing process, reducing manual intervention, and improving data accuracy and processing speed. The anti-slip pads on the installation area surface not only protect the scale platform from damage caused by direct contact, but also increase friction to ensure that the goods are placed more stably and reduce the risk of sliding or shifting.

[0008] The photoelectric sensor and the photoelectric sensing area are used in pairs to detect and identify the goods. When the goods block the light, the system can immediately respond and record relevant information such as the presence and size of the goods, improving the degree of automation and operational efficiency. The base surface is provided with a light-transmitting mirror, and the light-transmitting mirror is located directly below the photoelectric sensing area to ensure that the light can smoothly penetrate to the outside of the base. Even in a relatively dark environment, the photoelectric sensing system can still work normally, enhancing the reliability and adaptability of the system.

[0009] In addition, the structure is provided with a buffer device that reduces the force. The buffer device is located between the support table and the base and can absorb impact force during the loading and unloading of goods, protecting the internal electronic components from damage and extending the service life of the equipment. At the same time, this also provides additional safety for the goods placed on the tray, reducing the potential damage caused by vibration or impact.

[0010] Further, the buffer device includes a rubber soft rod and a buffer spring. The buffer spring is installed on the outer side of the rubber soft rod, and the rubber soft rod is located inside the buffer spring. The buffer spring and the rubber soft rod are coaxially arranged. One end of the rubber soft rod penetrates the inside of the support table and is attached to one end of the scale platform. The other end of the rubber soft rod is attached to the surface of the base.

[0011] The rubber soft rod and the buffer spring work together to provide double buffering effect. The rubber material itself has good elasticity and can absorb and disperse impact energy. The buffer spring further reduces vibration and impact force through compression and reset. This combination can effectively reduce the impact of impact force on the structure, protecting the electronic components inside the tray and the goods placed on the tray.

[0012] When subjected to external impact, the buffer spring can quickly compress and recover to its original state, ensuring that it can quickly recover to normal working condition after receiving the impact force. In the case of frequent loading and unloading of goods, it helps to maintain the stability and reliability of the system.

[0013] In addition, the coaxial arrangement of the rubber soft rod and the buffer spring ensures more uniform force transmission between the two, avoids local stress concentration, reduces the risk of fatigue or damage of components due to uneven stress, and the coaxial arrangement limits the excessive deformation of the rubber soft rod to a certain extent, ensuring that it does not exceed the safety range when subjected to a larger impact, thereby ensuring the accuracy and safety of the system operation. The design can be adjusted according to different load conditions and is suitable for goods of various weights and sizes.

[0014] Further, the support platform and the base are detachable, and the base is provided with a protective crash barrier at both ends, and the crash barrier and the support platform are spaced apart by a buffer gap.

[0015] The detachable structure allows the support platform and the base to be maintained or replaced independently, reducing the downtime of the entire system due to a single component failure. When a component of the support platform or the base is damaged, only that part needs to be replaced, without the need to replace the entire structure. The design allows quick adjustment and configuration according to different application scenarios or requirements, replacing different types of support platforms or bases, increasing the versatility and adaptability of the structure.

[0016] The crash barrier prevents external objects from directly impacting the base and the support platform, protecting the internal main control circuit board and the scale platform from damage, reducing the risk of damage caused by accidental collisions. The buffer gap can absorb part of the impact energy, providing additional space when a collision occurs, acting as a buffer to absorb and disperse impact energy, further reducing the impact on the support platform and internal components, preventing direct contact and avoiding possible scratches or indentations, maintaining the integrity of the support platform surface. In addition, the buffer gap also serves as a heat dissipation channel, helping to dissipate heat generated by the weight of the goods, improving the thermal stability of the structure and reducing the impact on the built-in weighing and photoelectric sensing function modules.

[0017] Further, the base is connected to the support platform by a mounting screw, and the bottom of the base is connected to a buffer washer. The mounting screw passes through the buffer washer and the surface of the base in sequence and extends into the interior of the support platform.

[0018] The base and the pedestal are directly connected together by mounting screws, ensuring close fit between the two, improving structural stability, and maintaining the reliability of the connection when bearing a large weight or impact, while the buffer washer is located between the base and the mounting screw, which can effectively absorb and disperse the vibration from the ground or contact surface, reducing the influence of the vibration force on the pedestal and its internal components, protecting the built-in weighing and photoelectric sensing function modules, in addition, the buffer washer as a soft protective layer can prevent the mounting screw from directly contacting and scratching the surface of the base, reducing surface damage caused by friction or impact, while also increasing the friction between the base and the placement surface, reducing the risk of accidental sliding of the tray, providing additional safety when used on inclined or uneven ground.

[0019] Further, one end of the main control circuit board is electrically connected with a pin, the surface of the scale platform is provided with a display screen for displaying weight values, the display screen extends to the surface of the non-slip pad, the pin is used to connect with the scale platform, and the surface of the main control circuit board is provided with a Bluetooth module for receiving wireless signals;

[0020] The main control circuit board and the scale platform are directly electrically connected through the pin, ensuring stable and reliable data transmission between the two, reducing the possibility of signal interference and loss, and the structure is used to reduce the number of internal wires, making the internal structure of the tray more simple, and reducing the risk of problems caused by wire winding or breakage;

[0021] And the display screen is arranged on the surface of the scale platform and extends to the surface of the non-slip pad, so that the user can directly view the weight value at the position where the goods are placed, improving the convenience and accuracy of operation, and the operator can obtain weight information immediately while placing goods, realizing instant feedback and improving work efficiency;

[0022] And the Bluetooth module is added for use with wireless data transmission, such as handheld terminals, computers, servers for wireless communication, eliminating the limitations of traditional cable connection, increasing the flexibility and convenience of use, and management personnel can monitor the status of multiple trays in real time within a certain range, collect and analyze weighing data, improve the intelligent level of logistics and warehouse management, realize automatic uploading and processing of data, reduce manual intervention, and improve the automation degree and efficiency of the overall system.

[0023] Further, the surface of the mounting area is provided with a plurality of protective pads, the protective pads are arranged in a rectangular shape on the surface of the mounting area, the protective pads are in a convex structure, and the highest point of the protective pads is higher than the surface of the non-slip pad.

[0024] The convex structure of the protective pad can provide additional physical isolation for the goods placed on the tray, prevent the goods from directly contacting the tray surface, reduce the risk of scratches, indentations or other physical damage, and absorb and distribute part of the impact force from the goods when the goods are directly pressed onto the tray, effectively protecting the goods from vibration and collision during handling or loading and unloading, in addition, the convex structure of the protective pad increases the contact area and friction with the bottom of the goods, making the goods more stable, reducing the possibility of sliding or displacement, and the protective pad is arranged according to the rectangular rule, which can maximize the protection effect in limited space, while keeping the installation area clean and orderly, facilitating management and operation.

[0025] Compared with the prior art, the utility model has the beneficial effects that:

[0026] 1、The structure combines multiple functions and technologies to improve the efficiency and accuracy of logistics and warehouse management, the scale table is electrically connected with the main control circuit board, the scale table is directly integrated into the tray, and is connected with the main control circuit board, so that the weight information of the goods can be obtained in real time, the weighing process is simplified, manual intervention is reduced, and the data accuracy and processing speed are improved, and the anti-skid pads provided on the surface of the installation area not only protect the scale table from damage caused by direct contact, but also increase the friction to ensure that the goods are placed more stably and reduce the risk of sliding or displacement;

[0027] 2、The photoelectric sensor and the photoelectric sensing area are used in pairs, so that the photoelectric sensor provided at one end of the tray and the photoelectric sensing area used in pairs can detect and identify the goods, when the goods block the light, the system can immediately respond and record relevant information, such as the existence and size of the goods, improve the degree of automation and operation efficiency, the bottom surface is provided with a light transmission lens, and the light transmission lens is located directly below the photoelectric sensing area, so that the light can smoothly penetrate to the outside of the base, ensuring that the photoelectric sensing system can work normally even in a relatively dark environment, enhancing the reliability and adaptability of the system;

[0028] 3、The structure additionally provides a buffer device for reducing impact force, which is located between the tray and the base, and can absorb impact force during loading and unloading of the goods, protecting internal electronic components from damage and prolonging the service life of the equipment, at the same time, it also provides additional safety protection for the goods placed on the tray, reducing potential damage caused by vibration or impact;

[0029] 4、The structure combines multiple functions and technologies, so that the tray can complete the weighing, classification and loading process when the operator distributes, reducing the pre-step of the small batch distribution process, so as to improve the work efficiency and shorten the working time. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 is a front view of a logistics tray;

[0031] Figure 2 is a perspective view of a logistics tray;

[0032] Figure 3 is another perspective view of a logistics tray;

[0033] Figure 4 is an exploded view of a logistics tray;

[0034] Figure 5 is another exploded view of a logistics tray;

[0035] Figure 6 is a front view of a main control circuit board in a logistics tray;

[0036] Figure 7 is a rear view of a main control circuit board in a logistics tray;

[0037] Figure 8 is a perspective view of a main control circuit board in a logistics tray;

[0038] Figure 9 is another perspective view of a main control circuit board in a logistics tray;

[0039] In the figure: tray 1, base 2, main control circuit board 3, scale platform 4, mounting area 5, non-slip pad 6, photoelectric sensor 7, photoelectric sensing area 8, light transmission mirror 9, rubber soft rod 10, buffer spring 11, mounting screw 12, buffer washer 13, pin 14, display screen 15, Bluetooth module 16, protective pad 17, anti-collision guardrail 18. DETAILED DESCRIPTION

[0040] The utility model will be described in further detail below in combination with the drawings and specific embodiments.

[0041] In this embodiment, please refer to Figures 1-9 , a specific implementation of a logistics tray, including tray 1 and base 2, the tray 1 and base 2 between the main control circuit board 3 is equipped, the inside of tray 1 is installed with scale platform 4, and the scale platform 4 is electrically connected with the main control circuit board 3, and one end of tray 1 is mounting area 5, and one end of scale platform 4 is higher than the surface of mounting area 5, and the surface of mounting area 5 is equipped with non-slip pad 6 for protecting scale platform 4 and increasing the friction of scale platform 4, and one end of main control circuit board 3 is electrically connected with photoelectric sensor 7, and one end of tray 1 is equipped with photoelectric sensing area 8 used in pair with photoelectric sensor 7, and base 2 is located at one end of tray 1 close to photoelectric sensing area 8, and the surface of base 2 is equipped with light transmission mirror 9, and base 2 is located directly below photoelectric sensing area 8, and buffer device for reducing force is installed between tray 1 and base 2.

[0042] The structure combines multiple functions and technologies in this way to improve the efficiency and accuracy of logistics and warehouse management. The scale platform 4 is electrically connected to the main control circuit board 3, allowing the scale platform 4 to be directly integrated into the support platform 1 and connected to the main control circuit board 3. This allows real-time acquisition of cargo weight information, simplifies the weighing process, reduces manual intervention, and improves data accuracy and processing speed. The anti-slip pads 6 on the surface of the installation area 5 not only protect the scale platform 4 from damage caused by direct contact, but also increase friction to ensure that the goods are more stable when placed, reducing the risk of sliding or shifting.

[0043] The photoelectric sensor 7 and the photoelectric sensing area 8 are used in pairs to detect and identify the goods. When the goods block the light, the system can immediately respond and record relevant information such as the presence and size of the goods, improving the degree of automation and operational efficiency. The base 2 is provided with a light-transmitting mirror 9 located directly below the photoelectric sensing area 8, ensuring that light can pass smoothly to the outside of the base 2, even in low-light environments, ensuring the normal operation of the photoelectric sensing system and enhancing the reliability and adaptability of the system.

[0044] In addition, the structure is provided with a buffer device that reduces the impact force. The buffer device is located between the support platform 1 and the base 2 and can absorb impact force during the loading and unloading of goods, protecting internal electronic components from damage and extending the service life of the equipment. At the same time, this also provides additional safety for goods placed on the tray, reducing potential damage caused by vibration or impact.

[0045] The buffer device includes a rubber soft rod 10 and a buffer spring 11. The buffer spring 11 is installed on the outer side of the rubber soft rod 10, and the rubber soft rod 10 is located inside the buffer spring 11. The buffer spring 11 and the rubber soft rod 10 are coaxially arranged. One end of the rubber soft rod 10 penetrates the inside of the support platform 1 and is attached to one end of the scale platform 4. The other end of the rubber soft rod 10 is attached to the surface of the base 2.

[0046] The rubber soft rod 10 and the buffer spring 11 work together to provide double buffering effect. The rubber material itself has good elasticity and can absorb and disperse impact energy. The buffer spring 11 further reduces vibration and impact force through compression and reset. This combination can effectively reduce the impact of impact force on the structure, protecting the electronic components inside the tray and the goods placed on the tray.

[0047] When subjected to external impact, the buffer spring 11 can quickly compress and recover, ensuring that it can quickly recover to normal working state after receiving the impact force, and in the case of frequent loading and unloading of goods, it helps to maintain the stability and reliability of the system;

[0048] In addition, the coaxial arrangement of the rubber soft rod 10 and the buffer spring 11 ensures more uniform force transmission between them, avoiding local stress concentration and reducing the risk of fatigue or damage of components due to uneven stress. The coaxial arrangement limits the excessive deformation of the rubber soft rod 10 to some extent, ensuring that it does not exceed the safety range when subjected to a larger impact, thereby ensuring the accuracy and safety of the system operation. This design can be adjusted according to different load conditions and is suitable for goods of various weights and sizes.

[0049] The support table 1 and the base 2 are detachable, and the base 2 is provided with a crash barrier 18 at both ends for protection. The crash barrier 18 is spaced apart from the support table 1 by a buffer gap. The size of the base 2 is smaller than that of the support table 1, and the reserved area at both ends of the base 2 is a reserved area that is left empty to facilitate the insertion and removal of a forklift;

[0050] The detachable structure allows the support table 1 and the base 2 to be maintained or replaced independently, reducing the downtime of the entire system due to a single component failure. When a component of the support table 1 or the base 2 is damaged, only that part needs to be replaced, without the need to replace the entire structure. This design allows quick adjustment and replacement of different types of support tables 1 or bases 2 according to different application scenarios or requirements, increasing the versatility and adaptability of the structure;

[0051] The crash barrier 18 can prevent external objects from directly impacting the base 2 and the support table 1, protecting the internal main control circuit board 3 and the scale table 4 from damage, reducing the risk of damage caused by accidental collisions. The buffer gap can absorb part of the impact energy, providing additional space when a collision occurs, acting as a buffer to absorb and disperse impact energy, further reducing the impact on the support table 1 and internal components, preventing direct contact and avoiding possible scratches or indentations, maintaining the integrity of the surface of the support table 1. In addition, the buffer gap can also serve as a heat dissipation channel to help dissipate heat generated by the weight of the goods, improving the thermal stability of the structure and reducing the impact on the built-in weighing and photoelectric sensing function modules.

[0052] The base 2 is connected to the support table 1 by a mounting screw 12, and the bottom of the base 2 is connected to a buffer washer 13. The mounting screw 12 penetrates the buffer washer 13 and the surface of the base 2 in sequence and extends into the interior of the support table 1;

[0053] The base 2 and the table 1 are directly connected together by the mounting screw 12, which ensures the close fit between the two and improves the structural stability, and can also maintain the reliability of the connection when a large weight or impact is borne, while the buffer washer 13 is located between the base 2 and the mounting screw 12 and can effectively absorb and disperse the vibration from the ground or contact surface, reducing the influence of the vibration force on the table 1 and its internal components, protecting the built-in weighing and photoelectric sensing function modules, in addition, the buffer washer 13 serves as a soft protective layer that can prevent the mounting screw 12 from directly contacting and scratching the surface of the base 2, reducing surface damage caused by friction or impact, while also increasing the friction between the base 2 and the placement surface, reducing the risk of accidental sliding of the tray, providing additional safety when used on inclined or uneven ground.

[0054] One end of the main control circuit board 3 is electrically connected with a pin 14, and the surface of the scale platform 4 is provided with a display screen 15 for displaying weight values, the display screen 15 extends to the surface of the non-slip pad 6, the pin 14 is used to connect with the scale platform 4, and the surface of the main control circuit board 3 is provided with a Bluetooth module 16 for receiving wireless signals;

[0055] The main control circuit board 3 and the scale platform 4 are directly electrically connected through the pin 14, which ensures stable and reliable data transmission between the two and reduces the possibility of signal interference and loss, and this structure is used to reduce the number of internal wires, making the internal structure of the tray more simple, and reducing the risk of problems caused by wire entanglement or breakage;

[0056] The display screen 15 is arranged on the surface of the scale platform 4 and extends to the surface of the non-slip pad 6, so that the user can directly view the weight value at the location where the goods are placed, improving the convenience and accuracy of operation, and the operator can immediately obtain weight information while placing goods, achieving instant feedback and improving work efficiency;

[0057] The Bluetooth module 16 is additionally provided and used in cooperation with wireless data transmission, such as handheld terminals, computers, and servers for wireless communication, eliminating the limitations brought by traditional cable connection and increasing the flexibility and convenience of use, and the manager can real-time monitor the status of multiple trays within a certain range, collect and analyze weighing data, improve the intelligent level of logistics and warehouse management, realize automatic uploading and processing of data, reduce manual intervention, and improve the automation degree and efficiency of the overall system.

[0058] The surface of the mounting area 5 is provided with a plurality of protective pads 17, the protective pads 17 are arranged in a rectangular shape on the surface of the mounting area 5, the protective pads 17 are in a convex structure, and the highest point of the protective pads 17 is higher than the surface of the non-slip pad 6;

[0059] The convex structure of the protective pad 17 can provide additional physical isolation for the goods placed on the tray, preventing direct contact with the tray surface, reducing the risk of scratches, indentations or other physical damage. When the goods are directly pressed onto the tray, the convex protective pad 17 can absorb and distribute part of the impact force from the goods, effectively protecting the goods from vibration and impact during handling or loading and unloading. In addition, the convex structure of the protective pad 17 increases the contact area and friction with the bottom of the goods, making the goods more stable and reducing the possibility of sliding or shifting. The protective pad 17 is arranged in a rectangular pattern, which can maximize the protection effect in a limited space while maintaining the cleanliness and order of the installation area 5, facilitating management and operation.

[0060] The design points of the utility model are: combined with multiple functions and technologies, the efficiency and accuracy of logistics and warehouse management are improved through this way, the scale table 4 is electrically connected with the main control circuit board 3, the scale table 4 is directly integrated into the supporting table 1 and connected with the main control circuit board 3, the weight information of goods can be obtained in real time, the weighing process is simplified, manual intervention is reduced, data accuracy and processing speed are improved, and the anti-slip pad 6 is arranged on the surface of the installation area 5, which not only protects the scale table 4 from damage caused by direct contact, but also increases the friction, ensures that the goods are placed more stably, and reduces the risk of sliding or shifting.

[0061] The photoelectric sensor 7 and the photoelectric sensing area 8 are matched and used, the photoelectric sensor 7 arranged at one end of the supporting table 1 and the photoelectric sensing area 8 matched and used can realize detection and identification of goods, when the goods block the light, the system can immediately respond and record relevant information such as the existence and size of the goods, improve the degree of automation and operation efficiency, the bottom surface of the base 2 is provided with a light transmission lens 9, and the light transmission lens 9 is located directly below the photoelectric sensing area 8, so that the light can smoothly penetrate to the outside of the base 2, ensuring that the photoelectric sensing system can work normally even in a relatively dark environment, enhancing the reliability and adaptability of the system.

[0062] In addition, the buffer device for reducing impact force is additionally arranged in the structure, which is located between the supporting table 1 and the base 2. The buffer device can absorb the impact force during the loading and unloading of goods, protect the internal electronic elements from being damaged, and prolong the service life of the equipment. At the same time, it also provides additional safety protection for the goods placed on the tray, reducing the potential damage caused by vibration or impact.

[0063] The above is a further detailed description of the utility model in combination with specific preferred embodiments, which cannot be regarded as the specific implementation of the utility model being limited to these descriptions. For ordinary skilled persons in the technical field to which the utility model belongs, without departing from the concept of the utility model, a number of simple deductions or substitutions can be made, which should be regarded as the protection scope of the utility model.

Claims

1. A logistics pallet, comprising a platform and a base, characterized in that: A main control circuit board is provided between the support platform and the base. A weighing platform is installed inside the support platform. The weighing platform and the main control circuit board are electrically connected. One end of the support platform is the installation area. One end of the weighing platform is higher than the surface of the installation area. The surface of the installation area is provided with an anti-slip pad for protecting the weighing platform and increasing its friction. One end of the main control circuit board is electrically connected to a photoelectric sensor. One end of the support platform is provided with a photoelectric sensing area for use with the photoelectric sensor. The base is located at the end of the support platform near the photoelectric sensing area. The surface of the base is provided with a light-transmitting mirror. The base is located directly below the photoelectric sensing area. A buffer device for reducing the force is installed between the support platform and the base.

2. A logistics pallet according to claim 1, characterized in that: The buffer device includes a rubber flexible rod and a buffer spring. The buffer spring is installed on the outer side of the rubber flexible rod, and the rubber flexible rod is located inside the buffer spring. The buffer spring and the rubber flexible rod are coaxially arranged. One end of the rubber flexible rod passes through the interior of the support platform and is in contact with one end of the weighing platform. The other end of the rubber flexible rod is in contact with the surface of the base.

3. A logistics pallet according to claim 1, characterized in that: The support platform and the base are detachable. Both ends of the base are equipped with anti-collision guardrails for protection, and there is a buffer gap between the anti-collision guardrails and the support platform.

4. A logistics pallet according to any one of claims 1-3, characterized in that: The base is connected to the support platform by mounting screws. A buffer washer is connected to the bottom of the base. The mounting screws pass through the surface of the buffer washer and the base in sequence, and extend into the interior of the support platform.

5. A logistics pallet according to any one of claims 1-3, characterized in that: One end of the main control circuit board is electrically connected to a pin. The surface of the weighing platform is provided with a display screen for displaying weight values. The display screen extends to the surface of the anti-slip mat. The pin is used to connect to the weighing platform. The surface of the main control circuit board is provided with a Bluetooth module for receiving wireless signals.

6. A logistics pallet according to any one of claims 1-3, characterized in that: The surface of the installation area is provided with several protective pads. The protective pads are arranged in a rectangular pattern on the surface of the installation area. The protective pads have a raised structure, and the highest point of the protective pads is higher than the surface of the anti-slip pads.