Replenishment station model matched with cargo-to-person system

By designing an inclined conveyor belt and an adjustable support structure in the replenishment station model, the problem of existing replenishment machines being unable to accommodate goods of different specifications has been solved, achieving stability and smoothness in goods replenishment, adapting to more specifications of goods, and ensuring the continuity and stability of production.

CN223792438UActive Publication Date: 2026-01-13ZHEJIANG DAMON TECH CO LTD
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Patent Information

Application Number
CN202520157493.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-13
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The existing replenishment machines are not compatible with goods of different specifications, which makes the goods easily obstructed and deviated during replenishment and transportation, affecting production continuity and quality.

Method used

Design a replenishment station model that includes a main conveyor line and a short conveyor line. The short conveyor line is equipped with an inclined first conveyor belt and a second conveyor belt with a smooth transition between them. The platform is equipped with a receiving groove and a support member. The support member adjusts the inclination angle of the platform through a screw and slider structure to accommodate goods of different specifications.

Benefits of technology

It improves the stability and smoothness of cargo replenishment and transportation, avoids stagnation and deviation, adapts to more specifications of goods, and ensures the continuity and stability of production.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223792438U_ABST
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Abstract

The utility model discloses a replenishment station model matched with a cargo-to-person system, which comprises a main conveying line, a short conveying line is arranged on the adjacent side of the main conveying line along the width direction, and the short conveying line comprises a rack and three first conveying belts which are arranged on the top surface of the rack in parallel and are arranged along the width direction of the main conveying line; the main conveying line is provided with three second conveying belts which correspond to the first conveying belts and are located among conveying rollers of the main conveying line, and one ends of the second conveying belts extend towards the ends of the first conveying belts to the outer side of the side edge of the main conveying line and are close to the ends of the first conveying belts. The top face of the first conveying belt and the top face of the second conveying belt are in smooth transition. The utility model has the characteristics that the stability and smoothness of goods supplement conveying are increased, stagnation and deviation during goods supplement are avoided, the stability of the position and the direction of the goods during goods supplement is ensured, and the goods supplement device can adapt to goods of more specifications, maintain the stability during goods conveying and the like.
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Description

Technical Field

[0001] This utility model relates to a replenishment station model that works in conjunction with a goods-to-person system, and belongs to the technical field. Background Technology

[0002] In existing production lines, most goods are transported via conveyor lines. However, during the transport of goods on long conveyor lines, when market demand for products suddenly increases and companies need to increase production, the consumption rate of materials on long conveyor lines will accelerate. This necessitates timely replenishment of goods to the conveyor line to ensure production continuity. Alternatively, if some goods have quality defects and are rejected, replenishment of goods to the conveyor line is also required.

[0003] Conventional replenishment machines are typically short conveyor lines perpendicular to the main conveyor line. Goods are manually placed on the short conveyor line and then automatically transported to the main conveyor line for replenishment. However, due to the different sizes and specifications of the goods, ordinary short conveyor lines cannot accommodate goods of different sizes. Some goods cannot be automatically transported to the main conveyor line, which has limitations. In addition, there is no transition phase between the short conveyor line and the main conveyor line. When the goods are transported to the main conveyor line, there is a gap between the edge of the main conveyor line and the short conveyor line. The goods are prone to stagnation for a period of time and are also prone to deviation, which affects the subsequent production processes. Utility Model Content

[0004] The purpose of this utility model is to provide a replenishment station model that works in conjunction with a goods-to-person system, which solves the problems of limitations in the replenishment and transportation of goods in the existing technology, and the ease with which goods can be obstructed and deviate.

[0005] The above-mentioned technical objective of this utility model is mainly achieved through the following technical solution: a replenishment station model for a goods-to-person system, including a main conveyor line, a short conveyor line provided on the side adjacent to the main conveyor line along the width direction, the short conveyor line including a frame and three first conveyor belts arranged parallel to the top surface of the frame and along the width direction of the main conveyor line, the main conveyor line having three second conveyor belts corresponding to the first conveyor belts and located between the conveyor rollers of the main conveyor line, one end of the second conveyor belt extending toward the end of the first conveyor belt to the outside of the side of the main conveyor line and close to the end of the first conveyor belt, the top surface of the first conveyor belt and the top surface of the second conveyor belt smoothly transitioning.

[0006] As a further preferred technical solution of this utility model; the platform is inclinedly arranged on the side adjacent to the main conveyor line, and the platform is provided with a plurality of receiving slots for accommodating each first conveyor belt, the first conveyor belt is inclined upward in the receiving slot, and the bottom of the outer side of the platform is provided with support legs.

[0007] As a further preferred technical solution of this utility model, the main conveyor line sidewall is provided with a support member for supporting the end of the platform, and the end of the platform is provided with a main shaft arranged in the width direction, and both ends of the main shaft are movably connected to the support member.

[0008] As a further preferred technical solution of this utility model, the support member includes a side plate that cooperates with the side wall of the frame, and an arc-shaped support plate that can move up and down is provided on the inner side of the side plate. The arc surface of the arc-shaped support plate can cooperate and abut with the bottom surface of the main shaft.

[0009] As a further preferred technical solution of this utility model, the inner side of the side plate is provided with two parallel and longitudinally arranged slide rails, and a slider that cooperates with the slide rails is provided between the two slide rails. The arc-shaped support plate is connected to the outer side of the slider.

[0010] As a further preferred technical solution of this utility model, the support member includes a base plate disposed at the bottom of the side plate, and the base plate is provided with a screw rod that passes upward through the slider and is threadedly connected to the slider, and the lower end of the screw rod is rotatably connected to the base plate.

[0011] As a further preferred technical solution of this utility model, a nut is fixed at the lower end of the screw, and an opening is provided on the side plate at the horizontal position corresponding to the nut.

[0012] Therefore, this utility model has the characteristics of increasing the stability and smoothness of replenishing and transporting goods, avoiding stagnation and deviation during replenishment, ensuring the stability of the position and orientation of goods during replenishment, and being able to adapt to more specifications of goods and maintain the smoothness of goods transportation. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 yes Figure 1 A schematic diagram of the structure of the platform;

[0015] Figure 3 yes Figure 1 A schematic diagram of the supporting components. Detailed Implementation

[0016] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0017] like Figure 1As shown, a replenishment station model for a goods-to-person system includes a main conveyor line 1 and short conveyor lines 2 adjacent to the main conveyor line 1 along its width. The main conveyor line transports goods in batches, while the short conveyor lines replenish missing goods, facilitating replenishment by workers. The short conveyor lines 2 include a frame 21 and three first conveyor belts 22 parallel to the top surface of the frame 21 and arranged along the width of the main conveyor line 1. The main conveyor line 1 has three second conveyor belts 11 corresponding to the first conveyor belts 22 and located between the conveyor rollers of the main conveyor line 1. Workers place goods on the first conveyor belts, which then transport the goods to the second conveyor belts, and finally, the main conveyor line directly transports the goods, achieving timely replenishment and increasing the efficiency of the first conveyor belts. The increased number of first conveyor belts increases the support area for goods, allowing for the smooth transport of larger or more sized goods and expanding the applicability. One end of the second conveyor belt 11 extends towards the end of the first conveyor belt 22 to the outside of the main conveyor line 1 and is close to the end of the first conveyor belt 22. The top surface of the first conveyor belt 22 and the top surface of the second conveyor belt 11 have a smooth transition. When goods are placed on the first conveyor belt, they are transported to the second conveyor belt. The goods are first transferred to the second conveyor belt along the connection between the first and second conveyor belts, and then arrive at the main conveyor line where they are reversed and transported. This effectively avoids the main conveyor line from obstructing the replenishment of goods, making replenishment smoother and more stable, and ensuring the stability of the orientation and position of the goods.

[0018] like Figure 1-2 As shown, the platform 21 is inclined and located adjacent to the main conveyor line 1. The platform 21 is provided with multiple receiving slots 211 for accommodating each first conveyor belt 22. The first conveyor belt 22 is inclined upward in the receiving slots 211. Each first conveyor belt is fixed in the receiving slot on the platform and operates to transport goods. The platform supports and stabilizes the first conveyor belt. Both the first conveyor belt and the platform are inclined so that workers of different heights and body types can more conveniently and comfortably transfer the goods that need to be replenished to the platform. The bottom of the outer side of the platform 21 is provided with support legs 212, which support the platform and keep it stable, while also adapting to the height of the main conveyor line. The side wall of the main conveyor line 1 is provided with support members 12 for supporting the end of the platform 21. The end of the platform 21 is provided with a main shaft 213 arranged in the width direction. Both ends of the main shaft 213 are movably connected to the support members 12. One side of the platform is fixed to the side of the main conveyor line through the connection between the support members and the main shaft, and the tilt angle of the platform can be adjusted to adapt to different heights or different specifications of the main conveyor line.

[0019] like Figure 3As shown, the support member 12 includes a side plate 121 that mates with the side wall of the frame 21. An arc-shaped support plate 13, movable vertically, is provided on the inner side of the side plate 121. The arc surface of the arc-shaped support plate 13 mates with the bottom surface of the main shaft 213. The arc surface of the arc-shaped support plate faces upwards and mates with the bottom surface of the main shaft, thus supporting the main shaft. Two parallel and longitudinally arranged slide rails 122 are provided on the inner side of the main shaft side plate 121. A slider 14 mates with the slide rails 122 between the two slide rails 122. The slider slides with the slide rails, allowing it to move vertically along the slide rails. The slide rails guide and limit the slider, maintaining stability and smoothness during movement. The arc-shaped support plate 13 is connected to the outer side of the slider 14, and the arc-shaped support plate is fixed to the outer side of the slider, allowing the movement of the slider to drive the arc-shaped support rod to move synchronously, thereby supporting the main shaft at different heights. The support member 12 also includes a base plate 123 located at the bottom of the side plate 121. The base plate 123 has an upward-passing slider on it. A screw 124 is threadedly connected to the slider 14. The lower end of the screw 124 is rotatably connected to the base plate 123. When the screw rotates, it can achieve a lead screw structure through the threaded connection with the slider, controlling the slider to move up and down along the slide rail, thereby driving the arc-shaped support plate to move up and down, and then realizing the up and down movement of the main shaft. The above structure adjusts the height of the arc-shaped support plate and the main shaft through the screw, thereby adjusting the tilt angle of the platform and the first conveyor belt, increasing the adjustability and applicability of the device. A nut 15 is fixed at the lower end of the screw 124. An opening 125 is provided on the side plate 121 at the horizontal position corresponding to the nut 15. The nut is fixedly connected to the lower end of the screw, which can be welded, glued, or integrally formed. When the nut is rotated, the nut can drive the screw to rotate synchronously, so that the worker can externally drive the screw to adjust the height of the upper end of the platform. The opening is set so that the worker can insert the tool to tighten the nut and rotate the nut to achieve the adjustment action.

[0020] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.

Claims

1. A replenishment station model matched with a goods-to-person system, comprising a main conveying line (1), a short conveying line (2) is arranged along the width direction on the side of the main conveying line (1), characterized in that: The short conveying line (2) comprises a rack (21) and three first conveying belts (22) arranged in parallel on the top surface of the rack (21) and along the width direction of the main conveying line (1), and the main conveying line (1) is provided with three second conveying belts (11) corresponding to the first conveying belts (22) and located between the conveying rollers of the main conveying line (1), one end of the second conveying belt (11) extends to the outside of the side edge of the main conveying line (1) and is close to the end of the first conveying belt (22), and the top surface of the first conveying belt (22) and the top surface of the second conveying belt (11) are smoothly connected.

2. The replenishment station model for a collaborative goods-to-person system of claim 1, wherein: The rack (21) is inclinedly arranged adjacent to the main conveying line (1), and a plurality of accommodating grooves (211) for accommodating the first conveying belts (22) are arranged on the rack (21), the first conveying belts (22) are arranged in the accommodating grooves (211) and inclinedly upward, and the bottom of the outer side of the rack (21) is provided with a supporting leg (212).

3. The replenishment station model for a collaborative goods-to-person system of claim 1, wherein: The side wall of the main conveying line (1) is provided with a support (12) for supporting the end of the rack (21), the end of the rack (21) is provided with a main shaft (213) arranged along the width direction, and the two ends of the main shaft (213) are movably connected with the support (12).

4. The replenishment station of claim 3, wherein: The support (12) comprises a side plate (121) matched with the side wall of the rack (21), the inner side of the side plate (121) is provided with an arc-shaped supporting plate (13) movable up and down, and the arc surface of the arc-shaped supporting plate (13) is matched with the bottom surface of the main shaft (213).

5. The replenishment station model for a collaborative goods-to-person system of claim 4, wherein: The inner side of the side plate (121) is provided with two slide rails (122) arranged in parallel and longitudinally, a sliding block (14) matched with the slide rails (122) is arranged between the two slide rails (122), and the arc-shaped supporting plate (13) is connected with the outer side of the sliding block (14).

6. The replenishment station model for a collaborative goods-to-person system of claim 5, wherein: The support (12) comprises a bottom plate (123) arranged at the bottom of the side plate (121), the bottom plate (123) is provided with a screw rod (124) upwardly penetrating the sliding block (14) and threadedly connected with the sliding block (14), and the lower end of the screw rod (124) is rotatably connected with the bottom plate (123).

7. The replenishment station of claim 6, wherein: The lower end of the screw rod (124) is fixedly provided with a nut (15), and the side plate (121) is provided with an opening (125) corresponding to the horizontal position of the nut (15).