Automatic cargo weighing conveying line for warehousing

By integrating weight sensors and an automated control system, combined with lifting and sorting rotation components, efficient sorting of goods is achieved. This solves the problems of damage and inaccurate sorting when handling high-precision goods in existing automatic weighing and conveying lines, thus improving the efficiency and accuracy of warehouse management.

CN223765470UActive Publication Date: 2026-01-06WUHU KEJIE INTELLIGENT WAREHOUSING EQUIP MFG CO LTD
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Patent Information

Application Number
CN202423217024.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-01-06
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing automated weighing and conveying lines for goods are prone to damage when handling high-precision goods due to the push-plate feeding method. Furthermore, non-conforming products are not effectively classified, requiring secondary processing and hindering the implementation of precise quality management and inventory control.

Method used

By employing weight sensors and an automated control system, combined with lifting and sorting rotation components, goods can be quickly classified into qualified products, overweight products, or underweight products. Through the coordination of lifting electric telescopic rods and drive telescopic rods, the weighing conveyor can be rotated and adjusted to transport the goods to different conveyors.

Benefits of technology

It improves the efficiency and accuracy of warehouse management, reduces manual intervention, lowers the risk of goods damage, and enables more refined quality management and inventory control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of storage conveying equipment, in particular to an automatic goods weighing conveying line for storage, which comprises an automatic weighing conveying line, a weight sensor, a lifting component, a classification rotating component and a controller, and the automatic weighing conveying line comprises an input machine, a qualified product output machine, a weighing conveyor, an overweight conveyor and an underweight conveyor. The weighing conveyor is located between the input machine and the qualified product output machine, the overweight conveyor and the underweight conveyor are symmetrically located on the two sides of the weighing conveyor, the bottoms of the input machine and the qualified product output machine are connected through a supporting frame, and the lifting assembly comprises a lifting electric telescopic rod and a supporting plate. The top output end of the lifting electric telescopic rod is connected with the bottom of the supporting plate. Through the integrated weight sensor and the automatic control system, goods can be quickly classified into qualified products, overweight products or underweight products after entering the system, the requirement for manual intervention is reduced through efficient classification treatment, and the warehouse management efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to warehousing conveying equipment technical field, concretely is a goods automatic weighing conveying line for warehousing. BACKGROUND

[0002] Warehouse is the process of using warehouse to store and keep goods and articles, and it is a comprehensive place that reflects the activity status of factory materials, and is a transfer station connecting production, supply and sales.

[0003] In order to improve logistics efficiency, optimize inventory management, improve quality control and other aspects, goods automatic weighing conveying line is needed for warehouse management, and the goods automatic weighing conveying line realizes rapid and accurate measurement of the weight of goods by integrating sensing technology and computer control system, which greatly shortens the time required for traditional manual weighing, thereby improving the efficiency of the entire logistics process, reducing the demand for manual operation and reducing labor costs.

[0004] The current goods automatic weighing conveying line is weighed by weighing sensor, and the qualified goods are conveyed out through the conveying belt line, and the unqualified goods are discharged through the push plate, and for high-precision goods, the push plate is easy to cause the goods to be damaged, and the unqualified products are divided into overweight products and insufficient weight products, and the goods discharged through the push plate are not classified, so that subsequent secondary classification processing is needed, and more precise quality management and inventory control are not realized. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a goods automatic weighing conveying line for warehousing to solve the problems in the above background technology.

[0006] To achieve the above object, the utility model provides the following technical scheme:

[0007] A goods automatic weighing conveying line for warehousing, comprising an automatic weighing conveying line, a weight sensor, a lifting assembly, a classification rotating assembly and a controller, the automatic weighing conveying line comprises an input machine, a qualified product output machine, a weighing conveyor, an overweight conveyor and an insufficient weight conveyor, the weighing conveyor is located between the input machine and the qualified product output machine, the overweight conveyor and the insufficient weight conveyor are symmetrically located on both sides of the weighing conveyor, the input machine and the qualified product output machine are connected through a support frame at the bottom, and the input machine, the qualified product output machine, the weighing conveyor, the overweight conveyor and the insufficient weight conveyor are electrically connected with the controller through wires.

[0008] As the preferred scheme of the utility model, the lifting assembly includes lifting electric telescopic rod and support plate, the lifting electric telescopic rod is located on the support frame, the lifting electric telescoptic rod top output end is connected with the support plate bottom.

[0009] As the preferred scheme of the utility model, the weight sensor is in rectangular structure and is located on the support plate near the four top parts, and the weight sensor top is connected with the weighing conveyor four bottom parts.

[0010] As the preferred scheme of the utility model, the classification rotating assembly includes driving part, fixed seat, shaft disc and shaft rod, the fixed seat middle part is through and is provided with through-hole, the fixed seat is installed on the support frame of the weighing conveyor bottom, the shaft rod lower outer circumferential wall is provided with bearing, the shaft rod is embedded and installed in the through-hole through the bearing, the shaft disc is installed on the shaft rod top, and the lifting electric telescopic rod bottom is installed on the shaft disc top.

[0011] As the preferred scheme of the utility model, the fixed seat one side outer wall is provided with notch, and the shaft rod in the through-hole of the notch is provided with gear.

[0012] As the preferred scheme of the utility model, the driving part includes driving telescopic rod and rack, the driving telescopic rod output end is connected with one end of the rack, the rack is connected with the gear in the notch, the rack is provided with sliding clamping base outside, and the sliding clamping base is connected with the fixed seat outer wall.

[0013] As the preferred scheme of the utility model, the weight sensor is electrically connected with the controller through wire.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] In view of the problems in the background art, the integrated weight sensor and automatic control system can quickly classify goods as qualified products, overweight products or underweight products after entering the system, the efficient classification processing reduces the need for manual intervention, and improves the overall warehouse management efficiency.

[0016] Through the integrated weight sensor and automatic control system, the goods can be quickly classified as qualified products, overweight products or underweight products after entering the system, and the efficient classification processing reduces the need for manual intervention, and improves the overall warehouse management efficiency.

[0017] For high-precision goods, the traditional push plate blanking method is prone to cause damage to goods, and the application adopts the design of lifting assembly and classification rotating assembly, which can process more finely according to the characteristics of goods, thereby reducing the risk of goods damage;

[0018] By monitoring the weight of goods in real time and classifying the goods, more fine quality management and inventory control can be realized, which not only helps to improve product quality, but also better meets the needs of customers;

[0019] When the goods are weighed by the weighing conveyor, the classification rotating assembly does not work when the goods are qualified, and the goods are conveyed out by the qualified product output machine; when the goods are overweight, the classification rotating assembly works, the lifting electric telescopic rod drives the weighing conveyor on the top of the support plate to move up, at this time the driving telescopic rod drives the weighing conveyor to rotate forward, at this time the conveying direction of the weighing conveyor is consistent with the movement direction of the overweight conveyor, and the goods are conveyed out through the overweight conveyor and reset; when the goods are underweight, the classification rotating assembly works, the lifting electric telescopic rod drives the weighing conveyor on the top of the support plate to move up, at this time the driving telescopic rod drives the weighing conveyor to rotate reversely, at this time the conveying direction of the weighing conveyor is consistent with the movement direction of the underweight conveyor, and the goods are conveyed out through the overweight conveyor and reset.

[0020] The application will be explained in detail below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a top view of the automatic weighing conveyor line of the application.

[0022] Figure 2 It is a schematic view of the conveying and weighing of the application.

[0023] Figure 3 It is a schematic view of the weight sensor on the top of the support plate of the application.

[0024] Figure 4 It is a side view of the classification rotating assembly of the application.

[0025] In the figure: 1, input machine; 2, qualified product output machine; 3, weighing conveyor; 4, overweight conveyor; 5, underweight conveyor; 6, support frame; 7, lifting electric telescopic rod; 71, support plate; 80, gear; 81, driving telescopic rod; 82, fixed seat; 83, shaft disc; 84, shaft rod; 85, rack; 851, sliding clamping seat; 86, notch. DETAILED DESCRIPTION

[0026] For the convenience of understanding the utility model, the utility model will be described more comprehensively below with reference to relevant drawings, and several embodiments of the utility model are given in the drawings, but the utility model can be realized through different forms and is not limited to the embodiments described in the text, on the contrary, these embodiments are provided to make the disclosed content of the utility model more thorough and comprehensive. Embodiments

[0027] The various devices in the present application file all adopt conventional models in the prior art, and the control mode is automatic control through a controller, and the control circuit of the controller can be realized through simple programming by a person skilled in the art and belongs to the common knowledge in the art, which will not be described in detail here.

[0028] Please refer to Figures 1-4 The utility model provides a kind of technical scheme: a kind of goods automatic weighing conveying line for warehousing, including automatic weighing conveying line, weight sensor, lifting assembly, classification rotating assembly and controller, automatic weighing conveying line includes input machine 1, qualified product output machine 2, weighing conveyor 3, overweight conveyor 4 and underweight conveyor 5, weighing conveyor 3 is located between input machine 1 and qualified product output machine 2, overweight conveyor 4 and underweight conveyor 5 are symmetrically located on the two sides of weighing conveyor 3, input machine 1 and qualified product output machine 2 are connected by support frame 6 at bottom between them, input machine 1, qualified product output machine 2, weighing conveyor 3, overweight conveyor 4 and underweight conveyor 5 are electrically connected with controller by wire.

[0029] It needs to be explained that, in the embodiment, the goods can be quickly classified as qualified product, overweight product or underweight product after entering the system by integrated weight sensor and automatic control system, and this efficient classification processing reduces the demand for manual intervention and improves the overall warehousing management efficiency;

[0030] Further, by integrated weight sensor and automatic control system, the goods can be quickly classified as qualified product, overweight product or underweight product after entering the system, and this efficient classification processing reduces the demand for manual intervention and improves the overall warehousing management efficiency;

[0031] Further, for high-precision goods, the traditional push plate discharging mode is easy to cause damage to goods, and the application adopts the design of lifting assembly and classification rotating assembly, which can perform more fine classification and conveying processing according to the characteristics of goods, thereby reducing the risk of damage to goods;

[0032] Input machine 1 and qualified product output machine 2 are connected by support frame 6, and this structural design ensures the stability of the system and facilitates the installation and distribution of weighing conveyor 3;

[0033] When the goods are weighed through the weighing conveyor 3, the classification rotating assembly does not work when the goods are qualified, and the goods are transported out through the qualified product output machine 2; when the goods are overweight, the classification rotating assembly works, the lifting electric telescopic rod 7 drives the weighing conveyor 3 on the top of the supporting plate 71 to move upwards, at this time the driving telescopic rod 81 drives the weighing conveyor 3 to rotate forward, at this time the conveying direction of the weighing conveyor 3 is consistent with the movement direction of the overweight conveyor 4, and the goods are transported out through the overweight conveyor 4 and reset; when the goods are underweight, the classification rotating assembly works, the lifting electric telescopic rod 7 drives the weighing conveyor 3 on the top of the supporting plate 71 to move upwards, at this time the driving telescopic rod 81 drives the weighing conveyor 3 to rotate reversely, at this time the conveying direction of the weighing conveyor 3 is consistent with the movement direction of the underweight conveyor 5, and the goods are transported out through the overweight conveyor 4 and reset.

[0034] Please refer to Figure 1 , 3 and 4, the lifting assembly comprises a lifting electric telescopic rod 7 and a supporting plate 71, the lifting electric telescopic rod 7 is located on the supporting frame 6, and the top output end of the lifting electric telescopic rod 7 is connected with the bottom of the supporting plate 71; the weight sensors are distributed in a rectangular structure on the top of the supporting plate 71 close to the four peripheries, the top of the weight sensors is connected with the bottom of the weighing conveyor 3 around, and the weight sensors are electrically connected with the controller through wires; the classification rotating assembly comprises a driving member, a fixed seat 82, a shaft disc 83 and a shaft rod 84, a through hole is formed in the middle of the fixed seat 82, the fixed seat 82 is installed on the supporting frame 6 at the bottom of the weighing conveyor 3, a bearing is sleeved on the outer circumferential wall below the shaft rod 84, the shaft rod 84 is embedded and installed in the through hole through the bearing, the shaft disc 83 is installed on the top of the shaft rod 84, and the bottom of the lifting electric telescopic rod 7 is installed on the top of the shaft disc 83; a notch 86 is formed in the outer wall of one side of the fixed seat 82, and a gear 80 is sleeved on the shaft rod 84 in the through hole at the notch 86; the driving member comprises a driving telescopic rod 81 and a rack 85, the output end of the driving telescopic rod 81 is connected with one end of the rack 85, the rack 85 is connected with the gear 80 at the notch 86 in meshing mode, and a sliding clamping seat 851 is arranged on the outside of the rack 85 and connected with the outer wall of the fixed seat 82.

[0035] It should be noted that in the embodiment, the weight sensors are electrically connected with the controller through wires, and this connection mode ensures that the weight data can be transmitted to the controller in real time, so that the weight of the goods can be accurately monitored and processed;

[0036] Further, the lifting electric telescopic rod 7 is located on the supporting frame 6, and the top output end thereof is connected with the bottom of the supporting plate 71, and this connection mode ensures that the lifting electric telescopic rod 7 can effectively lift or lower the supporting plate 71 and the weighing conveyor 3 thereon;

[0037] Further, the weight sensors are arranged in a rectangular structure and located near the top of the support plate 71 around the periphery, and the top of the weight sensors is connected to the bottom of the weighing conveyor 3 around the periphery. Such an arrangement helps to accurately detect the weight of the goods passing through the weighing conveyor;

[0038] Further, a through hole is formed in the middle of the fixing seat 82, which is installed on the support frame 6 at the bottom of the weighing conveyor 3. A bearing is sleeved on the outer circumferential wall below the shaft rod 84, which is embedded and installed in the through hole. This ensures smooth rotation of the shaft rod. The shaft disc 83 is installed at the top of the shaft rod 84, and the bottom of the lifting electric telescopic rod 7 is installed on the top of the shaft disc 83, realizing the linkage between the lifting electric telescopic rod and the classification rotating assembly.

[0039] A through hole is formed in the middle of the fixing seat 82, which is installed on the support frame 6 at the bottom of the weighing conveyor 3. A bearing is sleeved on the outer circumferential wall below the shaft rod 84, which is embedded and installed in the through hole. This ensures smooth rotation of the shaft rod;

[0040] The shaft disc 83 is installed at the top of the shaft rod 84, and the bottom of the lifting electric telescopic rod 7 is installed on the top of the shaft disc 83, realizing the linkage between the lifting electric telescopic rod and the classification rotating assembly.

[0041] A slot 86 is formed in the outer wall of one side of the fixing seat 82. A gear 80 is sleeved on the shaft rod 84 in the through hole at the slot. The output end of the driving telescopic rod 81 in the driving part is connected to one end of the rack 85. The rack is connected to the gear 80 at the slot. In addition, a sliding clamp seat 851 is provided outside the rack, which is connected to the outer wall of the fixing seat 82 to stabilize the movement of the rack 85.

[0042] When the rack 85 moves forward, the rack 85 drives the gear 80 to rotate forward, further driving the shaft rod 84 to rotate forward. When the shaft rod 84 rotates, it drives the weighing conveyor 3 to rotate forward. At this time, the conveying direction of the weighing conveyor 3 is consistent with the movement direction of the overweight conveyor 4, which is conveyed out through the overweight conveyor 4 and reset.

[0043] When the rack 85 moves backward, the rack 85 drives the gear 80 to rotate reversely, further driving the shaft rod 84 to rotate reversely. When the shaft rod 84 rotates, it drives the weighing conveyor 3 to rotate reversely. At this time, the conveying direction of the weighing conveyor 3 is consistent with the movement direction of the overweight conveyor 4, which is conveyed out through the overweight conveyor 4 and reset.

[0044] The weight sensor is electrically connected to the controller through a wire, so that the weight data can be transmitted to the controller in real time for processing.

[0045] In use, the goods first enter the automatic weighing conveyor line through the input machine 1, when the goods pass through the weighing conveyor 3, the weight sensors distributed on the support plate 71 measure the weight of the goods and transmit the data to the controller, if the weight of the goods is qualified, the classification rotating assembly is not started, and the goods are directly conveyed out through the qualified product output machine 2;

[0046] If the goods are overweight, the controller activates the classification rotating assembly and the lifting electric telescopic rod 7, the lifting electric telescopic rod lifts the support plate 71 and the weighing conveyor 3, at the same time, the telescopic rod 81 drives the rack 85 to move, so that the gear 80 rotates, thereby adjusting the direction of the weighing conveyor 3, so that it is aligned with the overweight conveyor 4, and then the goods are sent to the overweight conveyor 4;

[0047] If the goods are underweight, the process is similar, but at this time, the weighing conveyor 3 is adjusted to the direction aligned with the underweight conveyor 5, so as to sort the underweight goods onto the underweight conveyor 5;

[0048] After the classification is completed, the lifting electric telescopic rod 7 lowers the support plate 71, and the driving telescopic rod 81 also returns to the initial position, waiting for the arrival of the next goods, this design realizes efficient goods classification and processing through the integrated weight sensor and automatic control system, greatly improves the efficiency and accuracy of warehouse management.

[0049] The working process of the utility model:

[0050] In use, the goods first enter the automatic weighing conveyor line through the input machine 1, when the goods pass through the weighing conveyor 3, the weight sensors distributed on the support plate 71 measure the weight of the goods and transmit the data to the controller, if the weight of the goods is qualified, the classification rotating assembly is not started, and the goods are directly conveyed out through the qualified product output machine 2;

[0051] If the goods are overweight, the controller activates the classification rotating assembly and the lifting electric telescopic rod 7, the lifting electric telescopic rod lifts the support plate 71 and the weighing conveyor 3, at the same time, the telescopic rod 81 drives the rack 85 to move, so that the gear 80 rotates, thereby adjusting the direction of the weighing conveyor 3, so that it is aligned with the overweight conveyor 4, and then the goods are sent to the overweight conveyor 4;

[0052] If the goods are underweight, the process is similar, but at this time, the weighing conveyor 3 is adjusted to the direction aligned with the underweight conveyor 5, so as to sort the underweight goods onto the underweight conveyor 5;

[0053] After the classification is completed, the lifting electric telescopic rod 7 lowers the support plate 71, and the driving telescopic rod 81 also returns to the initial position, waiting for the arrival of the next goods, this design realizes efficient goods classification and processing through the integrated weight sensor and automatic control system, greatly improves the efficiency and accuracy of warehouse management.

[0054] The utility model has been described exemplarily in combination with the drawings, and obviously, the utility model is not limited by the above-mentioned mode in the specific implementation, as long as this kind of non-essential improvement that the method concept and technical scheme of the utility model are adopted or the concept and technical scheme of the utility model are directly applied to other occasions without improvement are within the protection scope of the utility model.

Claims

1. A goods automatic weighing conveying line for warehousing, comprising an automatic weighing conveying line, a weight sensor, a lifting assembly, a sorting rotating assembly and a controller, characterized in that: The automatic weighing conveying line comprises an input machine (1), a qualified product output machine (2), a weighing conveyor (3), an overweight conveyor (4) and an underweight conveyor (5), the weighing conveyor (3) is located between the input machine (1) and the qualified product output machine (2), the overweight conveyor (4) and the underweight conveyor (5) are symmetrically located on both sides of the weighing conveyor (3), the bottom of the input machine (1) and the qualified product output machine (2) is connected through a support frame (6), the input machine (1), the qualified product output machine (2), the weighing conveyor (3), the overweight conveyor (4) and the underweight conveyor (5) are electrically connected with the controller through wires.

2. The automatic goods weighing and conveying line for warehouse use according to claim 1, characterized in that: The lifting assembly comprises a lifting electric telescopic rod (7) and a support plate (71), the lifting electric telescopic rod (7) is located on the support frame (6), and the top output end of the lifting electric telescopic rod (7) is connected with the bottom of the support plate (71).

3. The automatic goods weighing and conveying line for warehouse use according to claim 2, characterized in that: The weight sensor is in a rectangular structure and is located near the top of the four peripheries of the support plate (71), and the top of the weight sensor is connected with the bottom of the four peripheries of the weighing conveyor (3).

4. The automatic goods weighing and conveying line for warehouse use according to claim 3, characterized in that: The classification rotating assembly comprises a driving member, a fixed seat (82), a shaft disc (83) and a shaft rod (84), a through hole is formed in the middle of the fixed seat (82), the fixed seat (82) is installed on the support frame (6) at the bottom of the weighing conveyor (3), a bearing is sleeved on the outer circumferential wall below the shaft rod (84), the shaft rod (84) is embedded and installed in the through hole through the bearing, the shaft disc (83) is installed on the top of the shaft rod (84), and the bottom of the lifting electric telescopic rod (7) is installed on the top of the shaft disc (83).

5. The automatic goods weighing and conveying line for warehouse use according to claim 4, characterized in that: A notch (86) is formed in the outer wall of one side of the fixed seat (82), and a gear (80) is sleeved on the shaft rod (84) in the through hole at the notch (86).

6. The automatic goods weighing and conveying line for warehouse use according to claim 5, characterized in that: The driving member comprises a driving telescopic rod (81) and a rack (85), the output end of the driving telescopic rod (81) is connected with one end of the rack (85), the rack (85) is connected with the gear (80) at the notch (86) in a meshing mode, a sliding clamping seat (851) is arranged on the outside of the rack (85), and the sliding clamping seat (851) is connected with the outer wall of the fixed seat (82).

7. The automatic goods weighing and conveying line for warehouse use according to claim 1, characterized in that: The weight sensor is electrically connected with the controller through wires.