Automatic discharging mechanism for material rack

By using the movable design of the second frame and the mechanical linkage of the inclined slider, combined with the roller-type conveyor and rollers, the problems of complex design and high labor costs of existing material racks are solved, realizing efficient automatic transfer of materials and reducing operational complexity.

CN223851634UActive Publication Date: 2026-01-30SICHUAN JIACHUANG XUNER AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202520613433.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-01-30
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

Existing automated material rack designs suffer from complex structures, require additional power sources, or are not well-suited to the operating height, resulting in low efficiency and high labor costs.

Method used

The design incorporates a movable second frame and a first frame, combined with the mechanical linkage between the inclined slider and the moving part, to achieve unpowered self-unlocking material feeding. The inclined slider automatically lifts the stop section, and the roller-type line and roller design reduce friction and movement resistance.

Benefits of technology

It enables efficient and automated material transfer, reduces labor intensity and time costs, avoids the risk of positioning misalignment, simplifies the operation process, and reduces manufacturing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic discharging mechanism for a material rack. The automatic discharging mechanism comprises a second rack body, the second wire bodies are arranged in at least one group, and the at least one group of second wire bodies are vertically arranged on the second frame body; the material blocking part is arranged on the discharging end side of the second line body; the moving part is mounted at the end part of the material blocking part; the first frame body is fixed at a preset position; the first wire body is arranged on the first frame body corresponding to the second wire body; and the inclined plane sliding block is correspondingly and movably arranged on the side, close to the feeding end of the first line body, of the first frame body. The movable design of the second frame body is matched with the fixed positioning of the first frame body, and the mechanical linkage of the inclined plane sliding block and the moving part is matched, so that when the second frame body moves to a preset position, the moving part automatically lifts the material blocking part along the inclined track of the inclined plane sliding block, the unpowered self-unlocking discharging of materials is completed, the labor intensity is reduced, and the working efficiency is improved. And time and labor cost are saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to product transportation technical field especially relates to a material frame automatic material discharging mechanism. BACKGROUND

[0002] Traditional material transfer operation adopts manual carrying or semi-automatic equipment, and there are problems of low efficiency and high labor cost. Although there are some automatic material frame designs in the prior art, there are defects such as complex structure, need for additional power source or operation height mismatch. For example, the conventional gravity sliding device adopts fixed stop block or electromagnetic locking mechanism, the former needs manual intervention to unlock and affects operation continuity, and the latter relies on power supply and has high failure rate. SUMMARY

[0003] Therefore, in order to solve the above problems, the utility model provides a material frame automatic material discharging mechanism, which comprises:

[0004] The second frame body is pushed to move on the ground.

[0005] The second wire body is provided with at least one group, and the at least one group of second wire bodies are vertically arranged on the second frame body.

[0006] The material blocking part is arranged on the material discharging end side of the second wire body.

[0007] The movement part is installed at the end of the material blocking part.

[0008] The first frame body is fixed at a preset position.

[0009] The first wire body is arranged on the first frame body corresponding to the second wire body.

[0010] The inclined surface sliding block is arranged on the first frame body close to the material feeding end side of the first wire body.

[0011] When the second frame body moves to the preset side of the first frame body, the movement part moves from the bottom of the inclined surface sliding block to the top of the inclined surface sliding block along the inclined surface sliding block, so that the material blocking part is lifted.

[0012] The utility model cooperates with the mechanical linkage of the inclined surface sliding block and the movement part through the movable design of the second frame body and the fixed positioning cooperation of the first frame body, when the second frame body moves to the preset position, the movement part automatically lifts the material blocking part along the inclined trajectory of the inclined surface sliding block, completes the power-free unlocking of the material, reduces the labor intensity, and the slope design of the inclined surface sliding block has the buffering function in the lifting process, effectively reduces the positioning deviation risk caused by material impact.

[0013] Further, the first line body and the second line body are both arranged obliquely, and the feeding end of the first line body and the second line body is higher than the discharging end.

[0014] When the blocking part is lifted, the material can slide down to the first line body through the second line body due to gravity, so that the automatic transfer process of the material is realized, the whole process is efficient and time-saving, and the time and labor cost are saved.

[0015] Further, the first line body and the second line body are drum type line bodies.

[0016] The first line body and the second line body are drum type, so that the sliding friction of the material is reduced, and the material cannot slide or slide too slowly due to too large friction, so that the transfer efficiency is difficult to reduce.

[0017] Further, the second frame body is provided with a second roller at the bottom.

[0018] The second roller is arranged at the bottom of the second frame body, so that the movement friction between the second frame body and the ground is reduced, the second frame body is easily pushed, and the turnover of the material is facilitated.

[0019] Further, the movement part is a first roller.

[0020] The first roller is arranged on the surface of the inclined surface sliding block, so that the movement friction between the movement part and the inclined surface sliding block is reduced, and the movement resistance of the second frame body is reduced.

[0021] Further, the automatic material discharging mechanism further comprises a connecting part which is arranged perpendicularly to the blocking part, one end of the connecting part is fixedly connected with the blocking part, and the other end of the connecting part is pivotally connected with the second frame body.

[0022] The utility model has the following advantages:

[0023] The movable design of the second frame body and the fixed positioning cooperation of the first frame body are matched with the mechanical linkage of the inclined surface sliding block and the movement part, when the second frame body moves to the preset position, the movement part automatically lifts the blocking part along the inclined trajectory of the inclined surface sliding block, the material is discharged without power and unlocked, the labor intensity is reduced, the slope design of the inclined surface sliding block has the buffering function in the lifting process, and the positioning deviation risk caused by the material impact is effectively reduced. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a structure diagram of an automatic material discharging mechanism;

[0025] Figure 2 is Figure 1 is a partial structure diagram of the automatic material discharging mechanism shown in the figure;

[0026] Figure 3 is Figure 2The contact schematic diagram of the first roller and the inclined slide block in the automatic material feeding mechanism;

[0027] Figure 4 is Figure 3 The schematic diagram of the first roller moving to the top of the inclined slide block after contacting the inclined slide block;

[0028] Figure 5 is the movement schematic diagram of the connecting part when the first roller moves from Figure 3 state to Figure 4 state.

[0029] In the figure:

[0030] 1, first frame body; 2, first wire body; 3, material; 4, connecting part; 5, inclined slide block; 6, second frame body; 7, second wire body; 8, material blocking part; 9, first roller; 10, second roller. DETAILED DESCRIPTION

[0031] The embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application.

[0032] In this document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0033] As described in the background, although there are some automatic material rack designs in the prior art, there are defects such as complex structure, need for additional power source or operation height not suitable, etc. For example, the conventional gravity sliding device usually adopts fixed stop block or electromagnetic locking mechanism, the former needs manual intervention to unlock and affects the continuity of operation, and the latter relies on power supply and has high failure rate.

[0034] Embodiment 1:

[0035] Therefore, in order to solve the above technical problems of the prior art, the present embodiment provides an automatic material feeding mechanism of a material rack, as shown in Figure 1 , 2 The automatic material feeding mechanism comprises:

[0036] Second frame 6, push the second frame to make it move on the ground;

[0037] Second line body 7, the second line body is provided with at least one group, at least one group of the second line body is vertically arranged on the second frame;

[0038] Material blocking part 8, the material blocking part is provided at the material outlet end side of the second line body;

[0039] Movement part, the movement part is installed at the end of the material blocking part;

[0040] First frame 1, the first frame is fixed at a preset position;

[0041] First line body 2, the first line body 2 is provided on the first frame corresponding to the second line body;

[0042] Inclined slide 5, the inclined slide is provided near the first line body on the first frame corresponding to the movement;

[0043] When the second frame moves to the preset side of the first frame, the movement part moves from the bottom of the inclined slide to the top of the inclined slide along the inclined slide to lift the material blocking part.

[0044] The embodiment sets a sliding combination component (which includes a movement part and an inclined slide) on each layer of the rack (the space for temporarily storing materials between adjacent first line bodies or adjacent second line bodies is a layer of the rack). In the initial state, the materials are placed on the inclined rack, and the material blocking part blocks the materials to prevent them from sliding. During the movement of the entire second frame, the movement part moves from the bottom end of the inclined slide to the top end of the inclined slide, thereby lifting the material blocking part, and the materials can slide onto the first line body, completing the material transfer process.

[0045] The embodiment cooperates the movable design of the second frame 6 with the fixed positioning of the first frame 1, cooperates the mechanical linkage of the inclined slide 5 and the movement part, and automatically lifts the material blocking part 8 along the inclined track of the inclined slide when the second frame moves to the preset position, completing the power-free self-unlocking of the materials, reducing the labor intensity. The slope design of the inclined slide 5 makes the lifting process have a buffering function, effectively reducing the risk of positioning deviation caused by material impact. The embodiment does not need to use an additional power mechanism, reducing the manufacturing cost and the use degree.

[0046] As shown in the examples of FIGS. 1-3, Figure 1 , 2 The first line body and the second line body are both inclined, and the feeding end of the first line body and the second line body is higher than the discharging end.

[0047] When the blocking part is lifted, the material can slide down to the first line body under the second line body due to gravity, realizing the automatic transfer process of the material, which is efficient and time-saving, saving time and labor cost.

[0048] Illustratively, the first line body and the second line body are drum line bodies, for example, a flow bar.

[0049] The drum design of the first line body and the second line body can reduce the sliding friction of the material, avoiding the situation that the material cannot slide or slides too slowly due to excessive friction, which reduces the transfer efficiency.

[0050] Illustratively, as shown in Figure 2 The second roller 10 is installed at the bottom of the second frame body.

[0051] By installing the second roller at the bottom of the second frame body, the movement friction between the second frame body and the ground can be reduced, so that the second frame body is easy to push and the turnover of the material is facilitated.

[0052] Illustratively, the movement part is the first roller 9.

[0053] By rolling the first roller on the surface of the inclined slide block, the movement friction between the movement part and the inclined slide block can be reduced, thereby reducing the movement resistance of the second frame body.

[0054] Illustratively, the automatic material placing mechanism further comprises a connecting part 4, which is vertically arranged with the blocking part, one end of which is fixedly connected with the blocking part, and the other end of which is pivotally connected with the second frame body.

[0055] In this embodiment, the first line body and the second line body are at a height most suitable for manual observation and operation. Specifically, in the normal state, the blocking part is in the blocking state under the action of its own gravity, i.e. the height of the blocking part is lower than the height of the material, as shown in Figure 1 The material 3 is placed on the second line body, which slides to the discharge end of the second line body under the action of its own gravity. When it moves to the discharge end of the second line body, the material contacts the blocking part, which blocks the material and prevents it from continuing to slide down. At this time, the second frame body is pushed to move to the preset side of the first frame body (the preset side is the side of the first line body at the first frame body position), and when it moves to the first preset position, the first roller is at the bottom of the inclined slide block. By continuing to push the second frame body, the first roller will move upward along the surface of the inclined slide block. In the process of rolling the first roller along the inclined slide block, the blocking part will be lifted, and the connecting part will be rotated around the pivot shaft with the second frame body (as shown in Figure 5 When the second frame body is pushed to the preset side of the first frame body, the first roller rolls to the top of the inclined slide block (as shown in Figure 4As shown in the figure, the baffle also rises to its maximum height. At this time, the height of the baffle is greater than the height of the material. The material loses the obstruction of the baffle and slides down to another first frame due to gravity through the flow strip with reduced friction, thus completing the automatic transfer process of the material through the material rack. The whole process is efficient and time-saving, saving time and labor costs.

[0056] In this embodiment, as Figure 2 As shown, the material stop can be composed of a connecting rod and a stop block. Specifically, a connecting rod perpendicular to the connecting part is fixed at the end of the connecting part, first rollers are installed at both ends of the connecting rod, and multiple stop blocks arranged linearly along the axis of the connecting rod are fixed below the connecting rod.

[0057] In this embodiment, a guide structure, such as a guide groove, can also be provided on the ground to guide the movement direction of the second roller.

[0058] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An automatic feeding mechanism for a material rack, characterized in that, The application relates to an automatic material discharging mechanism. The second frame is pushed to move on the ground; The second wire body is provided with at least one group of second wire bodies which are vertically arranged on the second frame; A material blocking part is arranged on the material discharging end side of the second wire body; A moving part is arranged on the end of the material blocking part; A first frame is fixed at a preset position; A first wire body is arranged on the first frame corresponding to the second wire body; An inclined slide is arranged on the first frame close to the material feeding end side of the first wire body; When the second frame moves to the preset side of the first frame, the moving part moves from the bottom of the inclined slide to the top of the inclined slide along the inclined slide, so that the material blocking part is lifted.

2. The automatic material placing mechanism of a stock shelf according to claim 1, wherein The first wire body and the second wire body are both arranged to be inclined, and the material feeding end of the first wire body and the second wire body is higher than the material discharging end.

3. The automatic material placing mechanism of a stock shelf according to claim 1, characterized in that, The first wire body and the second wire body are drum type wire bodies.

4. The automatic material placing mechanism of a stock shelf according to claim 1, characterized in that, Second rollers are arranged on the bottom of the second frame.

5. The automatic stocker stock placing mechanism according to claim 1, wherein The moving part is a first roller.

6. The automatic stocker stock placing mechanism according to claim 1, wherein The automatic material discharging mechanism further comprises a connecting part which is arranged perpendicularly to the material blocking part, one end of the connecting part is fixedly connected with the material blocking part, and the other end of the connecting part is pivotally connected with the second frame.