An intelligent scanning device

CN224794019UActive Publication Date: 2026-09-25HENAN CHUANGWEI TECH CO LTD
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Patent Information

Application Number
CN202521940274.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-09-25
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

[0003]货物分拣作为物流的主要环节,在进行货物分拣时,通常需要对商品的重量、体积、信息等数据进行分拣,目前的分拣都是由人工进行信息录入和人工分拣,无法实现自动的扫描识别,并且进行智能分拣,需要消耗大量人力资源,效率低下,因此,本实用新型提出了一种智能扫描设备,可以自动对货物的重量、体积、信息等数据进行扫描,然后更加扫描信息进行自动分拣,十分智能,有效提高了工作效率

Benefits of technology

[0023]1、设置了除尘装置,产生气流,对运输来的货物进行除尘,防止有废屑影响后续检测结果的准确性,使货物可以被充分吹净,检测结果更准确;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent scanning equipment, scanning equipment includes support frame, dust collector, conveying device, telescopic device, scanning device and sorting device, and support frame is used as the installation foundation for connecting and fixed other components, realizes the transportation of goods simultaneously, dust collector is used for dust removal to the goods of transportation, prevents the accuracy of subsequent detection result from the influence of the scrap, and conveying device is used for controlling the transportation of goods, when goods are detected scanning, stop transportation, when goods scanning result comes out, conveying goods to the next link, telescopic device is used for controlling the height of conveying device, and it is convenient to scan the goods of different volume, and the detection of goods weight is carried out simultaneously, and scanning device is used for scanning the volume and pasted information of goods, and records the detection information, and sorting device is used for sorting the goods of different weight, volume, information, and is convenient for subsequent transportation, improves work efficiency.
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Description

Technical Field

[0001] This utility model relates to scanning equipment, specifically an intelligent scanning device. Background Technology

[0002] With the rapid development of the economy, logistics has played an indispensable role in modern economic and social life, greatly facilitating people's lives. It enables people to easily purchase goods from all over the world and have them delivered quickly to their hands. Whether it is daily necessities or special products, it also plays a vital role in promoting economic prosperity and improving the quality of life.

[0003] As a key link in logistics, cargo sorting typically involves sorting goods based on data such as weight, volume, and information. Currently, sorting is done manually, with data entry and sorting done manually, making automatic scanning and identification impossible. Furthermore, intelligent sorting consumes a large amount of manpower and is inefficient. Therefore, this invention proposes an intelligent scanning device that can automatically scan the weight, volume, and information of goods, and then automatically sort them based on the scanned information. This highly intelligent device effectively improves work efficiency. Utility Model Content

[0004] The purpose of this invention is to provide an intelligent scanning device to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution:

[0006] A smart scanning device includes a support frame, a dust removal device, a conveying device, a telescopic device, a scanning device, and a sorting device. The dust removal device, the conveying device, and the sorting device are arranged sequentially according to the material inlet direction. The dust removal device and the sorting device are both fixedly connected to the support frame. The telescopic device is connected to the conveying device. The conveying device, the telescopic device, and the sorting device are all electrically connected to the scanning device. The telescopic device is located below the conveying device, and the scanning device is located on one side of the conveying device.

[0007] The support frame serves as the installation base, connecting and securing other components while also facilitating cargo transportation. The dust removal device generates airflow to remove dust from the transported goods, preventing debris from affecting the accuracy of subsequent inspection results and causing sorting errors. The conveyor system controls cargo transportation; it stops transporting goods during inspection and scans, and moves them to the next stage once the scan results are available. The telescopic device controls the height of the conveyor system, facilitating the scanning of goods of varying sizes and weights. The scanning device scans the volume and attached information of the goods, recording the information for subsequent transportation and sorting. The sorting device separates goods of different weights, volumes, and information, facilitating subsequent transportation, improving efficiency, and providing convenience for later work.

[0008] Furthermore, the dust removal device includes a blower and ventilation ducts, with the fixed end of the blower securely connected to the support frame. The output end of the blower is also securely connected to the ventilation ducts, which are provided in several ducts, evenly distributed on one side of the blower, with the ventilation ducts facing the direction of incoming material.

[0009] The blower, as a power unit, is used to generate negative pressure and produce airflow to the ventilation duct. The ventilation duct blows the airflow toward the goods, removing debris from the goods and preventing debris from affecting the accuracy of subsequent test results and causing sorting errors. Several ventilation ducts are evenly distributed on one side of the blower so that the goods can be thoroughly cleaned, resulting in more accurate test results.

[0010] Furthermore, the conveying device includes a motor and a rolling shaft. The fixed end of the motor is fastened to the telescopic device, the output end of the motor is fastened to one end of the rolling shaft, and the end of the rolling shaft away from the motor is rotatably connected to the telescopic device. There are two motors and two rolling shafts.

[0011] The motor serves as a power source, outputting torque to the rolling shaft to make it rotate. Simultaneously, the motor can be combined with a scanning device to achieve automated start-up, stop, and speed adjustment, improving production efficiency and ease of operation. Furthermore, the use of two motors and rolling shafts ensures smoother and more accurate movement.

[0012] Furthermore, the conveying device also includes a conveyor belt, which is fitted around the outer ring of two rolling shafts located on both sides of the conveyor belt.

[0013] The conveyor belt is fitted around the outer ring of two rolling shafts, which drive the conveyor belt to rotate and transport goods. The two rolling shafts are located on both sides of the conveyor belt to ensure that the conveyor belt is subjected to even force, making the transportation of goods more stable and reliable.

[0014] Furthermore, the telescopic device includes a first telescopic pump and a pressure sensor. The output end of the first telescopic pump is rotatably connected to the rolling shaft, the fixed end of the pressure sensor is fastened to the first telescopic pump, and the input end of the pressure sensor is fastened to the rolling shaft.

[0015] The first telescopic pump, as a power unit, is used to control the height of the conveyor belt and can adjust the height of the goods to facilitate the scanning device's information input. When the goods are too large and the scanning device cannot scan the entire goods, the first telescopic pump shortens. When the goods are too small and the scanning device cannot clearly identify the goods information, the first telescopic pump extends to make the scanning results more accurate. The pressure sensor is used to detect the weight of the goods. The pressure sensor in this device is a CYYZ11 model sensor.

[0016] Furthermore, there are four first telescopic pumps located at the four corners of the conveyor belt, and two pressure sensors located on the side of the two rolling shafts away from the motor.

[0017] Four first telescopic pumps are installed at the four corners of the conveyor belt to ensure even force distribution. This allows for smoother movement of goods during vertical horizontal motion. Two pressure sensors are located on the side of the two rolling shafts furthest from the motor to more accurately detect the weight of the goods, resulting in more accurate detection results.

[0018] Furthermore, the scanning device includes a first mounting frame, a display processing center, and a scanner. The display processing center and the scanner are both securely connected to the first mounting frame. The motor, the first telescopic pump, the pressure sensor, the scanner, and the sorting device are all electrically connected to the display processing center. The display processing center is displaced to one side of the first mounting frame, and the scanner is located above the first mounting frame, facing the conveyor belt.

[0019] The first mounting frame serves as the mounting base, used to connect and fix the display processing center and the scanner. The display processing center acts as the control center, receiving signals from various components, processing and displaying the data from each component, and providing real-time feedback to the staff. The scanner is used to input information about the goods and scan their volume. The information obtained through scanning is transmitted to the sorting device for classifying and processing the goods, saving manpower and improving work efficiency.

[0020] Furthermore, the sorting device includes a second mounting frame, a second telescopic pump, and a push plate. The second mounting frame and the support frame are fastened together. The fixed end of the second telescopic pump is fastened together with the second mounting frame. The output end of the second telescopic pump is fastened together with the push plate, and the push plate faces the material infeed direction.

[0021] The second mounting bracket serves as the mounting base for connecting and fixing the second telescopic pump. The second telescopic pump acts as a power source to drive the push plate to move in a horizontal linear motion. It classifies goods according to the set classification rules. For example, when the scanner detects that the goods are too large, the second telescopic pump extends to separate the larger and smaller goods for transport.

[0022] Compared with the prior art, the beneficial effects achieved by this utility model are:

[0023] 1. A dust removal device is installed to generate airflow and remove dust from the transported goods, preventing debris from affecting the accuracy of subsequent test results. This ensures that the goods are thoroughly cleaned, resulting in more accurate test results.

[0024] 2. A first telescopic pump is installed to control the height of the conveyor belt, which can adjust the height of the goods to facilitate the input of information by the scanning device. When the goods are too large and the scanning device cannot scan the entire goods, the first telescopic pump shortens. When the goods are too small and the scanning device cannot clearly identify the goods information, the first telescopic pump extends, making the scanning results more accurate.

[0025] 3. A sorting device was installed to sort goods of different weights, volumes, and information, facilitating subsequent transportation, providing convenience for follow-up work, and improving work efficiency. Attached Figure Description

[0026] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0027] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0028] Figure 2 This is a schematic diagram of the dust removal device of this utility model;

[0029] Figure 3 This is a schematic diagram of the conveying device structure of this utility model;

[0030] Figure 4 This is a schematic diagram of the scanning device structure of this utility model;

[0031] Figure 5 This is a schematic diagram of the sorting device of this utility model.

[0032] In the diagram: 1-Support frame, 2-Dust removal device, 3-Conveying device, 4-Telescopic device, 5-Scanning device, 6-Sorting device, 21-Blower, 22-Ventilation duct, 31-Motor, 32-Rolling shaft, 33-Conveyor belt, 41-First telescopic pump, 42-Pressure sensor, 51-First mounting frame, 52-Display processing center, 53-Scanner, 61-Second mounting frame, 62-Second telescopic pump, 63-Push plate. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Please see Figures 1-4 The present invention provides the following technical solution:

[0035] like Figure 1 As shown, an intelligent scanning device includes a support frame 1, a dust removal device 2, a conveying device 3, a telescopic device 4, a scanning device 5, and a sorting device 6. The dust removal device 2, the conveying device 3, and the sorting device 6 are arranged sequentially according to the material receiving direction. The dust removal device 2 and the sorting device 6 are both fixedly connected to the support frame 1. The telescopic device 4 is connected to the conveying device 3. The conveying device 3, the telescopic device 4, and the sorting device 6 are all electrically connected to the scanning device 5. The telescopic device 4 is located below the conveying device 3, and the scanning device 5 is located on one side of the conveying device 3.

[0036] Support frame 1 serves as the installation base, connecting and fixing other components while also facilitating cargo transportation. Dust removal device 2 generates airflow to remove dust from the transported goods, preventing debris from affecting the accuracy of subsequent inspection results and causing sorting errors. Conveying device 3 controls cargo transportation; it stops transporting goods during inspection and scanning, and transports them to the next stage once the scanning results are available. Telescopic device 4 controls the height of conveying device 3, facilitating the scanning of goods of different volumes and simultaneously detecting their weight. Scanning device 5 scans the volume and attached information of the goods and records the inspection information for subsequent transportation and sorting. Sorting device 6 sorts goods of different weights, volumes, and information, facilitating subsequent transportation, providing convenience for subsequent work, and improving work efficiency.

[0037] like Figure 2As shown, the dust removal device 2 includes a blower 21 and a ventilation duct 22. The fixed end of the blower 21 is fastened to the support frame 1. The output end of the blower 21 is fastened to the ventilation duct 22. Several ventilation ducts 22 are provided, and the several ventilation ducts 22 are evenly distributed on one side of the blower 21, with the ventilation ducts 22 facing the material inlet direction.

[0038] The blower 21 serves as a power unit to generate negative pressure and produce airflow to the ventilation duct 22. The ventilation duct 22 blows the airflow toward the goods to remove debris from the goods, preventing debris from affecting the accuracy of subsequent test results and causing sorting errors. Several ventilation ducts 22 are evenly distributed on one side of the blower 21 so that the goods can be thoroughly cleaned, resulting in more accurate test results.

[0039] like Figure 3 As shown, the conveying device 3 includes a motor 31 and a rolling shaft 32. The fixed end of the motor 31 is fastened to the telescopic device 4. The output end of the motor 31 is fastened to one end of the rolling shaft 32. The end of the rolling shaft 32 away from the motor 31 is rotatably connected to the telescopic device 4. There are two motors 31 and two rolling shafts 32.

[0040] The motor 31 serves as a power source, outputting torque to the rolling shaft 32 to make the rolling shaft 32 rotate. At the same time, the motor 31 can be combined with the scanning device 5 to realize automated start-up, stop and speed adjustment, improving production efficiency and ease of operation. Furthermore, the setting of two motors 31 and rolling shafts 32 makes the movement more stable and accurate.

[0041] like Figure 3 As shown, the conveying device 3 also includes a conveyor belt 33, which is fitted around the outer ring of two rolling shafts 32, with the two rolling shafts 32 located on both sides of the conveyor belt 33.

[0042] The conveyor belt 33 is fitted around the outer ring of the two rolling shafts 32, so that the rolling shafts 32 drive the conveyor belt 33 to rotate, thereby realizing the transportation of goods. The two rolling shafts 32 are located on both sides of the conveyor belt 33, so that the conveyor belt 33 is subjected to uniform force, making the transportation of goods more stable and reliable.

[0043] like Figure 3 As shown, the telescopic device 4 includes a first telescopic pump 41 and a pressure sensor 42. The output end of the first telescopic pump 41 is rotatably connected to the rolling shaft 32, the fixed end of the pressure sensor 42 is fastened to the first telescopic pump 41, and the input end of the pressure sensor 42 is fastened to the rolling shaft 32.

[0044] The first telescopic pump 41 serves as a power unit to control the height of the conveyor belt 33, allowing for adjustment of the cargo height. This facilitates information input by the scanning device 5. When the cargo is too large and the scanning device 5 cannot scan the entire cargo, the first telescopic pump 41 shortens. When the cargo is too small and the scanning device 5 cannot clearly identify the cargo information, the first telescopic pump 41 extends, making the scanning results more accurate. The pressure sensor 42 is used to detect the weight of the cargo. The pressure sensor 42 in this device uses a CYYZ11 model sensor.

[0045] like Figure 3 As shown, there are four first telescopic pumps 41, which are located at the four corners of the conveyor belt 33. There are two pressure sensors 42, which are located on the side of the two rolling shafts 32 away from the motor 31.

[0046] Four first telescopic pumps 41 are set at the four corners of the conveyor belt 33 so that the conveyor belt 33 can be evenly stressed. When moving horizontally in the vertical direction, it can drive the goods to move more smoothly. Two pressure sensors 42 are set on the side of the two rolling shafts 32 away from the motor 31, so that the weight of the goods can be detected more accurately and the detection results can be more accurate.

[0047] like Figure 4 As shown, the scanning device 5 includes a first mounting frame 51, a display processing center 52, and a scanner 53. The display processing center 52 and the scanner 53 are both fixedly connected to the first mounting frame 51. The motor 31, the first telescopic pump 41, the pressure sensor 42, the scanner 53, and the sorting device 6 are all electrically connected to the display processing center 52. The display processing center 52 is displaced to one side of the first mounting frame 51, and the scanner 53 is located above the first mounting frame 51, facing the conveyor belt 33.

[0048] The first mounting bracket 51 serves as the mounting base, used to connect and fix the display processing center 52 and the scanner 53. The display processing center 52 serves as the control center, used to receive signals from various components, process and display the data of each component, and provide real-time feedback to the staff. The scanner 53 is used to input information about the goods and scan the volume of the goods. The information obtained through scanning is transmitted to the sorting device 6 for sorting and processing of the goods, saving manpower and improving work efficiency.

[0049] like Figure 5 As shown, the sorting device 6 includes a second mounting frame 61, a second telescopic pump 62, and a push plate 63. The second mounting frame 61 and the support frame 1 are fastened together. The fixed end of the second telescopic pump 62 is fastened together with the second mounting frame 61. The output end of the second telescopic pump 62 is fastened together with the push plate 63. The push plate 63 faces the material inlet direction.

[0050] The second mounting bracket 61 serves as the mounting base for connecting and fixing the second telescopic pump 62. The second telescopic pump 62 serves as the power source for driving the push plate 63 to perform linear motion in the horizontal direction and classify goods according to the set classification rules. For example, when the scanner 53 scans that the volume of the goods is too large, the second telescopic pump 62 extends to separate the larger and smaller goods for transportation.

[0051] The working principle of this utility model is as follows: Goods are transported onto the conveyor belt 33 via the support frame 1. The motor 31 outputs torque to the rolling shaft 32, transporting the goods to below the scanner 53. The scanner 53 scans the goods. If the goods are too large, the first telescopic pump 41 shortens, causing the rolling shaft 32 to move the goods downwards, allowing the scanner 53 to scan the entire goods. If the goods are too small, the first telescopic pump 41 extends, causing the goods to move upwards. At the same time, the pressure sensor 42 measures the weight of the goods by measuring the pressure on the rolling shaft 32. These measured data are fed back to the display processing center 52. After scanning, the motor 31 outputs torque, causing the rolling shaft 32 to rotate, and the goods are transported to the sorting device 6 via the conveyor belt 33. The goods are sorted by the electrical signals transmitted by the display processing center 52. For example, when it is necessary to distinguish the weight of the goods, if the weight of the goods is too large, the second telescopic pump 62 extends, driving the push plate 63 to move towards the goods and push the goods to another conveying link. If the weight does not exceed the limit value, the second telescopic pump 62 shortens, and the goods can be transported directly downwards.

[0052] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0053] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An intelligent scanning device, characterized in that: The scanning device includes a support frame (1), a dust removal device (2), a conveying device (3), a telescopic device (4), a scanning device (5), and a sorting device (6). The dust removal device (2), the conveying device (3), and the sorting device (6) are arranged in sequence according to the material inlet direction. The dust removal device (2) and the sorting device (6) are both tightly connected to the support frame (1). The telescopic device (4) is connected to the conveying device (3). The conveying device (3), the telescopic device (4), and the sorting device (6) are all electrically connected to the scanning device (5). The telescopic device (4) is located below the conveying device (3), and the scanning device (5) is located on one side of the conveying device (3).

2. The intelligent scanning device according to claim 1, characterized in that: The dust removal device (2) includes a blower (21) and a ventilation duct (22). The fixed end of the blower (21) is fastened to the support frame (1), and the output end of the blower (21) is fastened to the ventilation duct (22). There are several ventilation ducts (22), which are evenly distributed on one side of the blower (21) and face the material inlet direction.

3. The intelligent scanning device according to claim 1, characterized in that: The conveying device (3) includes a motor (31) and a rolling shaft (32). The fixed end of the motor (31) is fastened to the telescopic device (4). The output end of the motor (31) is fastened to one end of the rolling shaft (32). The end of the rolling shaft (32) away from the motor (31) is rotatably connected to the telescopic device (4). There are two motors (31) and two rolling shafts (32).

4. The intelligent scanning device according to claim 3, characterized in that: The conveying device (3) further includes a conveyor belt (33), which is fitted around the outer ring of two rolling shafts (32), and the two rolling shafts (32) are located on both sides of the conveyor belt (33).

5. The intelligent scanning device according to claim 4, characterized in that: The telescopic device (4) includes a first telescopic pump (41) and a pressure sensor (42). The output end of the first telescopic pump (41) is rotatably connected to the rolling shaft (32). The fixed end of the pressure sensor (42) is fastened to the first telescopic pump (41). The input end of the pressure sensor (42) is fastened to the rolling shaft (32).

6. The intelligent scanning device according to claim 5, characterized in that: There are four first telescopic pumps (41), which are located at the four corners of the conveyor belt (33). There are two pressure sensors (42), which are located on the side of the two rolling shafts (32) away from the motor (31).

7. The intelligent scanning device according to claim 6, characterized in that: The scanning device (5) includes a first mounting frame (51), a display processing center (52), and a scanner (53). The display processing center (52) and the scanner (53) are both fastened to the first mounting frame (51). The motor (31), the first telescopic pump (41), the pressure sensor (42), the scanner (53), and the sorting device (6) are all electrically connected to the display processing center (52). The display processing center (52) is displaced to one side of the first mounting frame (51). The scanner (53) is located above the first mounting frame (51) and faces the conveyor belt (33).

8. The intelligent scanning device according to claim 1, characterized in that: The sorting device (6) includes a second mounting frame (61), a second telescopic pump (62), and a push plate (63). The second mounting frame (61) and the support frame (1) are fastened together. The fixed end of the second telescopic pump (62) is fastened together with the second mounting frame (61). The output end of the second telescopic pump (62) is fastened together with the push plate (63). The push plate (63) faces the material inlet direction.