Logistics sorting device with double-sided overturning and weighing functions
By integrating the flip mechanism and weighing module on the logistics sorting device, the problem that existing equipment cannot be sorted in two-way and needs to be weighed separately is solved, and an efficient and integrated logistics sorting process is achieved.
Patent Information
- Application Number
- CN202422424491.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing logistics sorting equipment cannot achieve two-way sorting and requires separate weighing equipment, resulting in cumbersome sorting process and increased cost.
A logistics sorting device with double-sided flip and weighing functions is designed, including a flip mechanism, a weighing module, a drive mechanism, a power supply module and a control module, which is integrated on the conveyor trolley to realize the double-sided flip and weighing functions of the material bearing tray and simplify the sorting process.
The integration of double-sided flip and weighing is realized, the sorting process is simplified, the maintenance cost is reduced, and the logistics sorting efficiency is improved.
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Figure CN223249915U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of logistics sorting, in particular to a logistics sorting device with double-sided turning and weighing functions. Background Art
[0002] With the development of society, more and more users prefer to trade goods online, which has also driven the rapid development of the logistics industry. Automatic sorting systems are essential hardware for large and medium-sized logistics centers. After cooperating with industrial high-speed barcode reading equipment to identify the barcode on the package, the logistics package is transported to the shipping port corresponding to the barcode through a guided transmission mechanism, achieving efficient and fast automatic sorting.
[0003] The working method of existing logistics sorting equipment is to transport the goods to the corresponding sorting area and then unload the goods. During the entire logistics transportation and sorting process, each sorting device is an independent individual and can only sort and unload goods in a fixed direction. If there are multiple goods and the sorting areas corresponding to these goods are located on both sides of the sorting device, the existing sorting equipment cannot complete the sorting and unloading work in different directions with a single individual.
[0004] CN116198926A discloses a bidirectional flip-plate express logistics sorting device, which includes a vehicle body, a reversing assembly, a pallet mounting plate, and a transport assembly; the pallet mounting plate is provided on the reversing assembly, and the pallet mounting plate is used to install the pallet; the reversing assembly is provided on the vehicle body, and the reversing assembly is used to change the tilt direction of the pallet mounting plate; the transport assembly is provided on both sides of the vehicle body, and the transport assembly is used to assist the movement of the vehicle body; the reversing assembly includes two sets of symmetrically arranged magnetic drive devices, lifting devices, and sliding devices; the lifting device passes through the vehicle body, and the lifting device is located between the magnetic drive device and the sliding device, one end of the lifting device is connected to the magnetic drive device, and the other end of the lifting device is connected to the sliding device, and the magnetic drive device can drive the sliding device to move through the lifting device. Although the above application document can realize bidirectional sorting work, it requires the linkage and cooperation of multiple devices such as the magnetic drive device, the lifting device, and the sliding device, and the implementation process is relatively cumbersome and occupies a large space, which is not conducive to fast sorting work.
[0005] Most existing logistics sorting equipment only has sorting functions, and for goods that need to be weighed, a separate weighing device is required. This undoubtedly increases sorting costs and adds to the tedious sorting and weighing processes. Therefore, this utility model proposes a logistics sorting device with double-sided flipping and weighing functions. Utility Model Content
[0006] In order to solve the above problems, the utility model proposes a logistics sorting device with double-sided flipping and weighing functions and an actively disconnecting stabilizer bar.
[0007] In order to achieve the above-mentioned purpose, the technical solution adopted by the present invention is as follows: a logistics sorting device with double-sided flipping and weighing functions, comprising a conveying track and a plurality of conveying trolleys mounted on the conveying track, wherein the conveying trolleys are equipped with a receiving tray, and further comprising:
[0008] A turning mechanism, which is mounted on the conveying trolley and cooperates with the material receiving tray; the turning mechanism can control the material receiving tray to achieve a double-sided turning function;
[0009] A weighing module is installed between the turning mechanism and the receiving tray, and the weighing module can independently weigh the goods placed in the receiving tray;
[0010] A driving mechanism, wherein the driving mechanism is installed on the conveying track and drives the conveying trolley to move on the conveying track;
[0011] A power supply module, which is installed between the conveying trolley and the conveying track and is used to supply power to the turning mechanism and the weighing module;
[0012] The control module, the flip mechanism, the weighing module, and the power supply module are electrically connected to the control module respectively.
[0013] Furthermore, the flipping mechanism includes a flipping motor, a connecting blind plate, and a connecting bracket; the flipping motor is installed on the conveying trolley, and the connecting bracket is installed above the conveying trolley through the connecting blind plate, and the flipping motor drives the connecting bracket to swing in both directions through the connecting blind plate.
[0014] Furthermore, the weighing module is installed between the connecting bracket and the receiving tray.
[0015] Furthermore, a position detection mechanism is installed on the conveying trolley, and the position detection mechanism is used to detect the flipping position of the flipping mechanism.
[0016] Furthermore, the position detection mechanism includes a photoelectric switch and a detection ear; the photoelectric switch is electrically connected to the control module and installed on the conveying trolley, and the detection ear is installed on the connection blind plate.
[0017] Furthermore, the power supply module includes a power transmission conductor installed on the conveying trolley and a power supply track installed on the conveying track.
[0018] Furthermore, two adjacent conveying trolleys are connected by a connecting mechanism, and the connecting mechanism is used to connect and adjust the distance between the two adjacent conveying trolleys.
[0019] Furthermore, the connecting mechanism includes a first connecting member having a threaded segment, a second connecting member having a threaded segment, and an adjusting prism threadedly connected to the threaded segments of the first and second connecting members; the threaded segments of the first connecting member and the second connecting member are arranged in opposite directions, and the internal threads at both ends of the adjusting prism are respectively adapted to the first and second connecting members;
[0020] The first connecting member and the second connecting member are respectively rotatably mounted on two adjacent conveying carts.
[0021] Furthermore, the conveying trolley includes a load-bearing guide wheel group and a position-limiting guide wheel group; the load-bearing guide wheel group is arranged at the four corners of the lower end of the conveying trolley, and the position-limiting guide wheel group is arranged at the bottom of the conveying trolley.
[0022] Furthermore, the transport trolley further includes a guide plate longitudinally arranged at the bottom thereof, and the guide plate cooperates with the driving mechanism.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] 1. The flipping mechanism provided on the conveying trolley in this application document controls the rotation angle and rotation direction of the receiving tray in cooperation with the control module, thereby realizing the double-sided flipping function of the receiving tray; compared with the traditional structure, the flipping mechanism of this application document has a simple structure, high integration, low maintenance cost, and is adaptable to different working environments.
[0025] 2. This application document integrates a weighing module between the tilting mechanism and the receiving tray. When powered on, the weighing module can weigh the goods placed in the receiving tray, replacing traditional separate weighing equipment. The integrated weighing module eliminates the cumbersome traditional weighing steps and helps improve the efficiency of modern logistics sorting.
[0026] 3. In this application document, a connecting mechanism is provided between two adjacent conveying trolleys, and the connecting mechanism is used to connect and adjust the distance between the two adjacent conveying trolleys, thereby adjusting the distance between the material receiving plates installed on the two adjacent conveying trolleys. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a schematic diagram of the structure of this application document;
[0028] Figure 2 It is the right view of this application document;
[0029] Figure 3 This is a schematic diagram of the structure of the conveying track, conveying trolley, and receiving tray in this application document;
[0030] Figure 4This is the main view of the conveyor track, conveyor trolley, and material receiving tray in this application document;
[0031] Figure 5 This is a right side view of the conveyor track, conveyor trolley, and material receiving tray in this application document;
[0032] Figure 6 It is a schematic diagram of the coordination between two adjacent conveyor trolleys in this application document.
[0033] In the figure: 1. Conveying track; 2. Conveying trolley; 21. Load-bearing guide wheel group; 22. Limiting guide wheel group; 23. Guide plate; 3. Material receiving tray; 4. Turning mechanism; 41. Turning motor; 42. Connecting blind plate; 43. Connecting bracket; 5. Weighing module; 6. Driving mechanism; 7. Power supply module; 71. Power transmission conductor; 72. Power supply track; 8. Control module; 9. Position detection mechanism; 91. Photoelectric switch; 92. Detection ear; 10. Connecting mechanism; 101. First connecting member; 102. Second connecting member; 103. Adjusting rib tube. DETAILED DESCRIPTION
[0034] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] like Figures 1-6 As shown, the technical solution adopted by the present invention is as follows: This embodiment provides a logistics sorting device with double-sided flipping and weighing functions, comprising a conveyor track 1 and multiple conveyor trolleys 2 mounted on the conveyor track 1. Each adjacent conveyor trolley 2 is connected by a connecting mechanism 10 to form a closed conveyor body for conveying goods. Each conveyor trolley 2 is mounted with a receiving tray 3 for carrying goods. The device also includes a flipping mechanism 4, a weighing mechanism, a drive mechanism 6, a power supply module 7, and a control module 8.
[0036] In this embodiment, the flipping mechanism 4 is installed at the top position of the conveying trolley 2 and cooperates with the receiving tray 3. The receiving tray 3 can be flipped left and right through the flipping mechanism 4. Then, according to actual needs, the goods on the receiving tray 3 are sorted by the flipping mechanism 4, thereby realizing the double-sided flipping function of the receiving tray 3.
[0037] It should be added that the flip mechanism 4 includes a flip motor 41, a connecting blind plate 42 and a connecting bracket 43. The flip motor 41 is electrically connected to the control module 8 and is installed on the top of the conveying trolley 2. The flip motor 41 adopts a servo motor and a reducer structure, wherein the servo motor and reducer structure are prior art and their working principles are well known to those skilled in the art. In order to improve the connection strength between the flip motor 41 and the receiving tray 3, a connecting blind plate 42 and a connecting bracket 43 are matched. Among them, there are two connecting blind plates 42 and they are longitudinally welded to the two ends of the output shaft of the flip motor 41 to form two swing arm structures. The connecting bracket 43 is located above the flip motor 41 and is fixed on the two connecting blind plates 42 by welding, riveting or bolting. The connecting bracket 43 cooperates with the receiving tray 3 and supports the receiving tray 3. The selection of the servo motor and reducer structure can accurately and in real time control the rotation angle of the flip motor 41, thereby controlling the flip direction and flip angle of the receiving tray 3, thereby realizing the double-sided flip function.
[0038] In this embodiment, the weighing module 5 is installed between the tilting mechanism 4 and the receiving tray 3. The weighing module 5 is electrically connected to the control module 8. When powered on, the weighing module 5 can weigh the goods placed on the receiving tray 3. The goods placed on the receiving tray 3 are first weighed by the weighing module 5. After being weighed, the goods are tilted and sorted by the tilting mechanism 4. This process eliminates the need to place the goods on a separate weighing device for weighing. Instead, the weighing module 5 is modularly installed on the conveyor trolley 2. This high level of integration eliminates the cumbersome traditional weighing process and helps improve the efficiency of modern logistics sorting.
[0039] It should be noted that the weighing module 5 is fixed between the receiving tray 3 and the connecting bracket 43 by bolts. When powered on, the weighing module 5 can weigh the receiving tray 3 using a function similar to an electronic scale, and after weighing, the weighing module 5 can subtract the weight of the receiving tray 3 from the weight of the receiving tray 3 using a data conversion method to obtain the weight of the goods in the receiving tray 3.
[0040] In this embodiment, the transport trolley 2 is equipped with a position detection mechanism 9, which is used to detect the flipping position of the flipping mechanism 4. When the flipping motor 41 rotates to a specific angle, the position detection mechanism 9 can detect this position and provide a secondary confirmation of the specific angle of the flipping motor 41, ensuring the accuracy of the flipping angle of the flipping motor 41. When the flipping mechanism 4 drives the receiving tray 3 to reset, maintenance personnel can use the position detection mechanism 9 to check the reset effect.
[0041] It should be noted that the position detection mechanism 9 includes a photoelectric switch 91 and a detection ear 92. The photoelectric switch 91 is electrically connected to the control module 8 and is bolted to the conveyor trolley 2. The detection ear 92 is welded or integrally formed on the connection blind plate 42. When the detection ear 92 extends into the detection range of the photoelectric switch 91, the photoelectric switch 91 sends a feedback signal to the control module 8, and the flip position is then compared with the flip motor 41 for a second time.
[0042] In this embodiment, the power supply module 7 includes a power transmission conductor 71 and a power supply track 72. The power transmission conductor 71 is mounted on the conveyor trolley 2 and is electrically connected to the weighing module 5, the tilting motor 41, and the control module 8. The power supply track 72 is mounted on the conveyor track 1 and is connected to an external power source. The power transmission conductor 71 and the power supply track 72 are compatible. The power transmission conductor 71 serves as a guide rail collector arm. Both the power transmission conductor 71 and the power supply track 72 are conventional.
[0043] In this embodiment, two adjacent conveying trolleys 2 are connected by a connecting mechanism 10, and the connecting mechanism 10 is used to connect and adjust the distance between the two adjacent conveying trolleys 2, thereby adjusting the distance between the receiving plates 3 installed on the two adjacent conveying trolleys 2.
[0044] It should be noted that the connecting mechanism 10 includes a first connecting member 101 having a threaded segment, a second connecting member 102 having a threaded segment, and an adjustment prism 103 threadedly connected to the threaded segments of the first and second connecting members 101, 102. The threads of the threaded segments of the first and second connecting members 101, 102 are arranged with opposite rotation directions. The adjustment prism 103 includes two internally threaded holes with opposite rotation directions. The two internally threaded holes of the adjustment prism 103 respectively mate with the threaded segments of the first and second connecting members 101, 102. Rotating the adjustment prism 103 changes the distance between the first and second connecting members 101, 102, thereby changing the distance between two adjacent conveyor carts 2.
[0045] The first connecting member 101 and the second connecting member 102 are rotatably mounted on two adjacent conveying carriages 2 respectively.
[0046] In this embodiment, the conveyor trolley 2 includes a load-bearing guide wheel assembly 21 and a position-limiting guide wheel assembly 22. The load-bearing guide wheel assembly 21 includes four load-bearing guide wheels rotatably mounted at the four corners of the lower end of the conveyor trolley 2. The position-limiting guide wheel assembly 22 includes at least two position-limiting guide wheels rotatably mounted at the bottom of the conveyor trolley 2. The four load-bearing guide wheels are placed on the conveyor track 1 to support the conveyor trolley 2. The position-limiting guide wheels extend into the position-limiting grooves in the lower section of the conveyor track 1. The position-limiting guide wheels fit into the position-limiting grooves, ensuring stable operation of the conveyor trolley 2.
[0047] In this embodiment, the transport trolley 2 further includes a guide plate 23 mounted longitudinally at its bottom. The guide plate 23 cooperates with the drive mechanism 6. The drive mechanism 6 includes two sets of belt drive components, which are symmetrically arranged. The guide plate 23 is positioned between the two sets of belt drive components. The two sets of belt drive components move synchronously, driving the guide plate 23 forward, thereby driving the transport trolley along the conveyor track 1.
[0048] When using this device:
[0049] In the loading area, the goods to be sorted are first placed on the corresponding receiving trays 3 in turn. The weighing module 5 weighs the goods on each conveyor trolley 2 and feeds back to the system through the control module 8; then the driving mechanism 6 drives the conveyor trolley 2 to move along the conveying track 1 through the guide plate 23. When the conveyor trolley 2 moves to a certain position, the flipping motor 41 drives the receiving tray 3 to rotate to a specific sorting area through the connecting blind plate 42 and the connecting bracket 43 to complete the sorting action; after the goods in the receiving tray 3 are sorted, the flipping motor 41 drives the receiving tray 3 to reset, and then continues to move forward through the driving mechanism 6, moving one by one to the loading area to realize cyclic sorting.
[0050] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A logistics sorting device with double-sided flipping and weighing functions, comprising a conveying track (1) and a plurality of conveying trolleys (2) mounted on the conveying track (1), wherein a receiving tray (3) is mounted on the conveying trolleys (2), characterized in that: Also includes: A turning mechanism (4), the turning mechanism (4) is installed on the conveying trolley (2) and cooperates with the receiving tray (3); the turning mechanism (4) can control the receiving tray (3) to achieve a double-sided turning function; a weighing module (5), the weighing module (5) being installed between the turning mechanism (4) and the receiving tray (3), the weighing module (5) being capable of independently weighing goods placed in the receiving tray (3); A driving mechanism (6), wherein the driving mechanism (6) is installed on the conveying track (1), and the driving mechanism (6) drives the conveying trolley (2) to move on the conveying track (1); a power supply module (7), the power supply module (7) being installed between the conveying trolley (2) and the conveying track (1) and being used to supply power to the turning mechanism (4) and the weighing module (5); The control module (8), the turning mechanism (4), the weighing module (5), and the power supply module (7) are electrically connected to the control module (8) respectively.
2. The logistics sorting device with double-sided flipping and weighing functions according to claim 1, characterized in that: The flip mechanism (4) comprises a flip motor (41), a connecting blind plate (42), and a connecting bracket (43); the flip motor (41) is mounted on the conveying trolley (2), the connecting bracket (43) is mounted above the conveying trolley (2) through the connecting blind plate (42), and the flip motor (41) drives the connecting bracket (43) to swing in both directions through the connecting blind plate (42).
3. The logistics sorting device with double-sided flipping and weighing functions according to claim 2, characterized in that: The weighing module (5) is installed between the connecting bracket (43) and the receiving tray (3).
4. The logistics sorting device with double-sided flipping and weighing functions according to claim 2, characterized in that: A position detection mechanism (9) is installed on the transport trolley (2), and the position detection mechanism (9) is used to detect the turning position of the turning mechanism (4).
5. The logistics sorting device with double-sided flipping and weighing functions according to claim 4, characterized in that: The position detection mechanism (9) includes a photoelectric switch (91) and a detection ear (92); the photoelectric switch (91) is electrically connected to the control module (8) and is installed on the transport trolley (2); and the detection ear (92) is installed on the connection blind plate (42).
6. The logistics sorting device with double-sided flipping and weighing functions according to claim 1, characterized in that: The power supply module (7) comprises a power transmission conductor (71) installed on the conveying trolley (2) and a power supply track (72) installed on the conveying track (1).
7. The logistics sorting device with double-sided flipping and weighing functions according to claim 1, characterized in that: Two adjacent conveying trolleys (2) are connected via a connecting mechanism (10), and the connecting mechanism (10) is used to connect and adjust the distance between the two adjacent conveying trolleys (2).
8. The logistics sorting device with double-sided flipping and weighing functions according to claim 7, characterized in that: The connecting mechanism (10) comprises a first connecting member (101) having a threaded section, a second connecting member (102) having a threaded section, and an adjusting prism (103) threadedly connected to the threaded sections of the first connecting member (101) and the second connecting member (102); the threaded sections of the first connecting member (101) and the threaded sections of the second connecting member (102) are arranged in opposite directions, and the internal threads at both ends of the adjusting prism (103) are respectively adapted to the first connecting member (101) and the second connecting member (102); The first connecting member (101) and the second connecting member (102) are respectively rotatably mounted on two adjacent conveying trolleys (2).
9. The logistics sorting device with double-sided flipping and weighing functions according to claim 1, characterized in that: The transport trolley (2) comprises a load-bearing guide wheel group (21) and a position-limiting guide wheel group (22); the load-bearing guide wheel group (21) is arranged at the four corners of the lower end of the transport trolley (2), and the position-limiting guide wheel group (22) is arranged at the bottom of the transport trolley (2).
10. The logistics sorting device with double-sided flipping and weighing functions according to claim 1, characterized in that: The transport trolley (2) further comprises a guide plate (23) longitudinally arranged at the bottom thereof, and the guide plate (23) cooperates with the drive mechanism (6).