Conveying mesh belt outlet material guiding system

By designing a conveyor belt outlet guiding system, the material flow direction is changed by using rods, guide channels, and protrusions, combined with angle adjustment, which solves the problem of material accumulation and blockage in the guide channel, and achieves stable conveying and material adaptability adjustment.

CN223575520UActive Publication Date: 2025-11-21SHANDONG SHISHANG SHIXIAN FOOD CO LTD
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Patent Information

Application Number
CN202520011795.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-11-21
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing conveyor belt outlet guiding systems are ineffective at guiding poorly flowing blocky or granular materials, such as large-sized ores and irregularly shaped construction waste, which are prone to accumulating and clogging in the guiding chute.

Method used

A conveyor belt outlet guiding system was designed. By cooperating with rods, guide channels, through channels, first studs, plates, and protrusions, the material flow direction is changed. Furthermore, by cooperating with rods, clamps, slots, blocks, and second studs, the angle of the guide channels is adjusted to prevent material accumulation and blockage.

Benefits of technology

It effectively prevents materials from accumulating and clogging in the feed chute, ensures conveying stability, adapts to different material characteristics and flow requirements, reduces material flow rate, and reduces the risk of breakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a conveying mesh belt outlet material guiding system which comprises a conveying mesh belt, one end and the other end of the conveying mesh belt are both connected with rod bodies in a rotating mode, flow guiding grooves are connected between the multiple sets of rod bodies, and multiple sets of through grooves are formed in the flow guiding grooves. The plate body is driven by the first stud to enable the protruding block to extend into the flow guide groove, so that when materials flow along the material guide groove, the flow direction of the materials can be changed when the materials encounter the protruding block, and the materials which originally possibly flow linearly and are accumulated at one position can be dispersed. For example, for irregular blocky materials, the change of the flowing path can prevent the irregular blocky materials from being accumulated at the bottom or corners of the material guide groove, and meanwhile, the convex blocks can also play a role in buffering and speed reduction. And for the materials with too high flow speed, the speed of the materials is reduced when the materials collide with the convex blocks. Therefore, blockage at narrow positions or outlets of the guide grooves caused by mutual extrusion of the materials due to high-speed flowing can be prevented, and conveying stability is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to conveying equipment related technical field especially, it relates to a conveying mesh belt export material guiding system. BACKGROUND

[0002] Conveying mesh belt export material guiding system is mainly used in the orderly guidance to material after material exports from conveying mesh belt. It is a key part in automatic production assembly line and material conveying system, can improve the accuracy and efficiency of material conveying, it is mainly composed of material guiding groove, although the existing material guiding groove can carry out material guiding operation to conveying mesh belt export, but for poor fluidity blocky or granular material, such as large size ore, irregular shape construction waste etc., in the flow guiding groove, it can not rely on self gravity to flow smoothly. These materials are easy to accumulate and block. For example, blocky ore can be stuck with each other due to irregular shape, cannot continue to move forward, and further cause blockage. SUMMARY

[0003] The utility model provides a conveying mesh belt export material guiding system to solve the shortcoming of prior art.

[0004] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0005] A conveying mesh belt export material guiding system, including conveying mesh belt, the one end and the other end of conveying mesh belt are rotatably connected with rod body, a plurality of groups of rod bodies are connected with flow guiding groove, a plurality of groups of through grooves are arranged in flow guiding groove, a plurality of groups of first studs are rotatably connected in a plurality of groups of through grooves, first handle is connected at first stud, plate body is threadedly connected at first stud, a plurality of groups of protrusions are connected at plate body, a plurality of groups of protrusions are movably penetrated through corresponding through grooves respectively, a plurality of groups of clamping blocks are connected at a plurality of groups of rod bodies, the one end and the other end of conveying mesh belt are provided with block body, a plurality of groups of clamping grooves are arranged in a plurality of groups of block bodies respectively, and a plurality of groups of clamping grooves are in contact with corresponding clamping blocks respectively.

[0006] Preferably, the one end and the other end of the conveying mesh belt are rotatably connected with second studs, a plurality of groups of second studs are connected with second handles, and a plurality of groups of second studs are threadedly connected with corresponding block bodies.

[0007] Preferably, a plurality of groups of sliding rods are connected at flow guiding groove, and a plurality of groups of sliding rods are movably penetrated through plate body.

[0008] Preferably, a plurality of groups of sliding rails are connected at the one end and the other end of the conveying mesh belt, and a plurality of groups of sliding rails are slidably connected with corresponding block bodies respectively.

[0009] Preferably, a plurality of groups of protrusions are made of rubber material.

[0010] Preferably, the side plates are connected to the ends of the flow guide groove.

[0011] Preferably, the side plates are connected to the ends of the flow guide groove.

[0012] The utility model discloses the beneficial effects are:

[0013] 1. Through the cooperation between the rod body, the flow guide groove, the through groove, the first stud, the first handle, the plate body and the protruding block, the protruding block is explored into the flow guide groove by the first stud driving plate body, so when the material flows along the material guide groove, the flow direction is changed when meeting the protruding block, and the material that can originally flow in a straight line and accumulate in a place is dispersed. For example, for irregular block materials, the change of the flow path can prevent them from forming accumulation at the bottom or corner of the material guide groove, and the protruding block can also play a buffering and deceleration role. For materials with too fast flow rate, the speed is reduced when colliding with the protruding block. This helps to prevent materials from being squeezed by each other due to high-speed flow, causing blockage at narrow places or outlets of the material guide groove, and ensures the stability of conveying.

[0014] 2. Through the cooperation between the rod body, the clamping block, the clamping groove, the block body and the second stud, the transverse movement of the block body is driven by the second stud, and the clamping groove at the block body is connected with the multiple clamping blocks at the rod body, so that the placement angle of the flow guide groove can be controlled according to the specific material characteristics, flow and conveying requirements by adjusting the placement angle of the flow guide groove driven by the rod body and fixing it. For example, when conveying materials with high viscosity, the angle of the flow guide groove is adjusted to be larger, so that the material can flow more smoothly under the action of gravity; when conveying fragile materials, the angle can be appropriately adjusted to be smaller, so as to slow down the flow rate of the material and reduce the possibility of material breakage. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The utility model provides a kind of structural diagram of the outlet material guide system of conveying mesh belt for the utility model;

[0016] Figure 2 For Figure 1 The structural diagram of flow guide groove, through groove and protruding block in it;

[0017] Figure 3 For Figure 1 The structural diagram of flow guide groove, through groove and first stud in it;

[0018] Figure 4 For Figure 1 The structural diagram of first screw rod, protruding block and slide bar in it;

[0019] Figure 5 For Figure 1 The structural diagram of clamping block, second handle and block body in it.

[0020] In the figure: 1, conveying mesh belt; 2, rod body; 3, flow guide groove; 4, through groove; 5, first stud; 6, first handle; 7, plate body; 8, protrusion; 9, clamping block; 10, second stud; 11, second handle; 12, block body; 13, clamping groove; 14, sliding rail; 15, side plate; 16, sliding rod. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0022] Embodiment 1, refer to Figures 1 to 5 A conveying mesh belt outlet material guiding system, comprising a conveying mesh belt 1, the conveying mesh belt 1 has a rod body 2 rotatably connected at one end and the other end, a plurality of rod bodies 2 are connected with a flow guide groove 3, a plurality of through grooves 4 are arranged at the flow guide groove 3, a plurality of first studs 5 are rotatably connected at the plurality of through grooves 4, a first handle 6 is connected at the first stud 5, a plate body 7 is threadedly connected at the first stud 5, the rotation of the first handle 6 drives the first stud 5 to move, which can drive the plate body 7 to move up and down with a plurality of protrusions 8, so that the protrusions 8 can be placed in the flow guide groove 3 through the through grooves 4, or the protrusions 8 can be moved out of the flow guide groove 3 at the through grooves 4, which can block the through grooves 4 to a certain extent, and the position of the protrusions 8 can be adjusted according to the actual material conveying requirement, a plurality of protrusions 8 are connected at the plate body 7, the plurality of protrusions 8 are movably penetrated through the corresponding through grooves 4, a plurality of clamping blocks 9 are connected at the plurality of rod bodies 2, a block body 12 is arranged at one end and the other end of the conveying mesh belt 1, a plurality of clamping grooves 13 are arranged at the plurality of block bodies 12, the plurality of clamping grooves 13 are respectively in contact with the corresponding clamping blocks 9, the connection of the clamping blocks 9 and the clamping grooves 13 can limit the rotation of the rod body 2, thereby fixing the placement angle of the flow guide groove 3, but when each flow guide groove 3 guides the material, the material can contact the protrusions 8, the speed of the material is reduced by the protrusions 8, and the flow direction of the material is changed, which can avoid the mutual collision and blockage of the material, and ensure the stability of the conveying.

[0023] In the embodiment, the first end and the other end of the conveying mesh belt 1 are rotatably connected with the second studs 10, a plurality of groups of the second studs 10 are connected with the second handles 11, the second handles 11 are used to drive the second studs 10 to rotate, so that the second studs 10 can drive the blocks 12 to move, so that the clamping grooves 13 at the blocks 12 can be attached to or separated from the clamping blocks 9, a plurality of groups of the second studs 10 are respectively threadedly connected with the corresponding blocks 12, a plurality of groups of the slide rods 16 are connected at the flow guide grooves 3, the slide rods 16 are movably penetrated through the plate bodies 7, the slide rods 16 can guide the plate bodies 7 to move up and down, a plurality of groups of the slide rails 14 are connected at the first end and the other end of the conveying mesh belt 1, the slide rails 14 are respectively slidably connected with the corresponding blocks 12, the slide rails 14 can guide the blocks 12 to move, a plurality of groups of the protrusions 8 are made of rubber material, so as to avoid that the protrusions 8 damage the materials when the materials contact the protrusions 8, the side plates 15 are connected at the first end and the other end of the flow guide grooves 3, and the side plates 15 close to the first end of the conveying mesh belt 1 are machined with inclined surfaces, so as to reduce the probability that the materials conveyed on the conveying mesh belt 1 collide with the side plates 15 close to the first end of the conveying mesh belt 1.

[0024] The working principle of the embodiment is as follows: in use, if irregular objects need to be conveyed, the first handle 6 drives the first stud 5 to rotate, the first stud 5 drives the plate bodies 7 to move the plurality of groups of the protrusions 8 upward, so that the plurality of groups of the protrusions 8 can be placed in the flow guide grooves 3 at the corresponding through grooves 4, then according to the conveying requirements of the actual materials, the rod bodies 2 drive the flow guide grooves 3 to be angle-adjusted, the second handle 11 drives the blocks 12, the clamping grooves 13 at the blocks 12 are connected with the clamping blocks 9 at the rod bodies 2, the flow guide grooves 3 can be angle-fixed, when the conveying mesh belt 1 conveys the materials into the flow guide grooves 3, the materials will continuously contact the plurality of groups of the protrusions 8, not only the materials with too high flow rate can be slowed down, but also the flow direction of the materials can be changed, so as to avoid that the materials collide with each other and block the flow guide grooves 3.

[0025] The above is only a preferred specific implementation manner of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A conveying web belt outlet guide system comprising a conveying web belt (1), characterized in that, The conveying mesh belt (1) one end and the other end are rotatably connected with the rod body (2), a plurality of groups of the rod body (2) are connected with the flow guide groove (3), a plurality of groups of through grooves (4) are arranged at the flow guide groove (3), a plurality of groups of the first stud (5) are rotatably connected at the through groove (4), the first handle (6) is connected at the first stud (5), the plate body (7) is threadedly connected at the first stud (5), a plurality of groups of the protruding block (8) are connected at the plate body (7), a plurality of groups of the protruding block (8) are respectively movably penetrated through the corresponding through groove (4), a plurality of groups of the clamping block (9) are connected at the rod body (2), the conveying mesh belt (1) one end and the other end are provided with the block body (12), a plurality of groups of the clamping groove (13) are arranged at the block body (12), and a plurality of groups of the clamping groove (13) are respectively in contact with the corresponding clamping block (9).

2. A netting takeoff guide system according to claim 1, wherein, The conveying mesh belt (1) one end and the other end are rotatably connected with the second stud (10), a plurality of groups of the second handle (11) are connected at the second stud (10), and a plurality of groups of the second stud (10) are respectively threadedly connected with the corresponding block body (12).

3. The web belt exit guide system of claim 1, wherein, A plurality of groups of the sliding rod (16) are connected at the flow guide groove (3), and a plurality of groups of the sliding rod (16) are movably penetrated through the plate body (7).

4. The conveyor web outfeed guide system of claim 1, wherein, A plurality of groups of the sliding rail (14) are connected at the conveying mesh belt (1) one end and the other end, and a plurality of groups of the sliding rail (14) are respectively slidably connected with the corresponding block body (12).

5. The conveyor web outfeed guide system of claim 1, wherein, A plurality of groups of the protruding block (8) are made of rubber material.

6. The conveyor web outfeed guide system of claim 1, wherein, The flow guide groove (3) one end and the other end are connected with the side plate (15).

7. A netting take-off guide system according to claim 6, wherein, A plurality of groups of the side plate (15) are processed with inclined surfaces near the conveying mesh belt (1) one end.