Anti-adhesion structure of metal powder processing conveying belt

By installing scraping blocks and agitation components on the conveyor belt, the problem of metal powder adhesion and accumulation during the conveying process was solved, enabling smooth powder transport and cleaning.

CN223606433UActive Publication Date: 2025-11-28CHENGDU N857 NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202423016404.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-11-28
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Metal powder tends to adhere to the surface of the conveyor belt during the conveying process, making cleaning difficult and potentially causing it to mix with other types of powder.

Method used

An anti-adhesion structure for a metal powder processing conveyor belt was designed, including a conveyor belt, side plates, racks, scraping blocks, and agitation components. The inclined surface of the scraping blocks and the agitation components work together to scoop up and agitate the powder, preventing adhesion and accumulation.

Benefits of technology

It effectively prevents metal powder from adhering and accumulating on the conveyor belt, ensuring smooth powder transport and avoiding subsequent cleaning difficulties and powder mixing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of metal powder conveying, and particularly discloses a metal powder processing conveying belt anti-adhesion structure which comprises a conveying belt, side plates are arranged on the two sides of the conveying belt, racks are arranged on the two sides of the top of the conveying belt, a cleaning and scraping block is connected between the side plates, and an inclined face is arranged on one side of the cleaning and scraping block. A disturbance assembly is connected to the middle of the cleaning and scraping block and is driven by the rack. Through the scraping blocks and the disturbance assembly arranged in the device, in the conveying process of the conveying belt, metal powder can be shoveled and loosened through attachment of the scraping blocks, so that the metal powder cannot be stuck when being conveyed to the tail end of the conveying belt; and meanwhile, in the conveying process of the conveying belt, the disturbance assembly can be driven to rotate so as to further actively apply force to the surface of the conveying belt for scraping, the powder attached to the surface of the conveying belt can be cleaned, meanwhile, the shoveled metal powder is further disturbed, and accumulation and caking are prevented.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of metal powder transmission, in particular to a metal powder processing transmission belt anti-adhesion structure BACKGROUND

[0002] Metal powder transmission refers to the transportation of processed metal powder for collection and entering the next step.

[0003] However, the existing metal powder is relatively small in particle size, so that when passing through the conveyor belt, part of the powder will adhere to the surface of the conveyor belt and cannot fall off, making it difficult to clean in the later stage, and if other types of metal powder need to be conveyed, it is easy to mix. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at providing a metal powder processing transmission belt anti-adhesion structure, which solves the problem that part of the particles will adhere to the surface of the conveyor belt and cannot fall off due to the small size of the powder particles during the transmission process of the metal powder through the conveyor belt.

[0005] The utility model is implemented by the following technical solutions:

[0006] The utility model provides a metal powder processing transmission belt anti-adhesion structure, which comprises a conveyor belt, side plates arranged on both sides of the conveyor belt, a rack arranged on the top of both sides of the conveyor belt, a cleaning scraper block connected between the side plates, an inclined surface arranged on one side of the cleaning scraper block, a disturbance assembly connected to the middle part of the cleaning scraper block, and the disturbance assembly is driven by the rack.

[0007] Preferably, the inclined surface is an inclined surface arranged on one side of the cleaning scraper block, and the bottom end of the inclined surface is provided with a counterweight.

[0008] Preferably, the disturbance assembly comprises a disturbance roller, a disturbance block, a connecting rod and a toothed rod, the disturbance roller is connected to the middle part of the cleaning scraper block, the disturbance block is arranged on the side wall of the disturbance roller, the connecting rod is arranged at both ends of the disturbance roller, and the toothed rod is arranged on the side wall part of the connecting rod.

[0009] Preferably, the disturbance block is a plurality of long strips arranged in circular arc on the side wall of the disturbance roller.

[0010] Preferably, the connecting rod is a protruding rod penetrating through the two ends of the cleaning scraper block and embeddedly connected with the side plates, and the cleaning scraper block is connected between the side plates through the connecting rod.

[0011] Preferably, the bottom end point of the disturbance block is in contact with the top of the conveyor belt.

[0012] Preferably, the toothed rod is arranged only on the part of the connecting rod close to the cleaning scraper block, and the toothed rod is engaged with the rack.

[0013] The technical scheme of the utility model has at least the following advantages and beneficial effects:

[0014] 1. Through the setting of the cleaning scraping block and the disturbance assembly in the device, the metal powder can be loosened by the adhesion of the cleaning scraping block during the transmission of the conveying belt, so that the metal powder will not stick when being transmitted to the end of the conveying belt, and the disturbance assembly will also be driven to rotate during the transmission of the conveying belt to further actively force the surface of the conveying belt to be scraped, so that the powder adhering to the surface of the conveying belt is cleaned, and the loosened metal powder is further disturbed to prevent accumulation and caking. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a whole structure schematic view of the utility model.

[0016] Figure 2 It is an enlarged structure schematic view of position A in the utility model. Figure 1

[0017] Figure 3 It is a top view structure schematic view of the cleaning scraping block of the utility model.

[0018] The drawings show that: 1 is a conveying belt, 101 is a rack, 2 is a side plate, 201 is a cleaning scraping block, 2011 is an inclined surface, 202 is a disturbance roller, 2021 is a disturbance block, 2022 is a connecting rod, and 2023 is a toothed rod. DETAILED DESCRIPTION

[0019] The utility model will be described in detail below. Figures 1 to 3 The utility model has the advantages of the following.

[0020] A metal powder processing transmission belt anti-adhesion structure, including conveying belt 1, the both sides of conveying belt 1 are provided with side plate 2, the top of conveying belt 1 both sides is provided with rack 101, and the side plate 2 is connected with cleaning scraping block 201, one side of cleaning scraping block 201 is provided with inclined surface 2011, the middle part of cleaning scraping block 201 is connected with disturbance assembly, and the disturbance assembly is driven by rack 101, the inclined surface 2011 is the inclined surface of the one side of cleaning scraping block 201, and the bottom end part of inclined surface 2011 is provided with counterweight.

[0021] ​First, when the metal powder is conveyed by the conveying belt 1, the conveying belt 1 passes through the cleaning scraper 201, and the cleaning scraper 201 is connected between the side plates 2 through the connecting rods 2022 at both ends of the disturbance roller 202, so that when the conveying belt 1 is conveying, the surface of the conveying belt 1 moves along the inclined surface 2011 of one side of the cleaning scraper 201, and the metal powder on the surface is scooped up by the inclined surface 2011 and pushed to move along the inclined surface 2011, so that the metal powder is loosened once when it is adjacent to the end of the conveying belt 1, avoiding sticking, and the end of the inclined surface 2011 is made of heavy material, so that the end surface of the inclined surface 2011 can always adhere to the surface of the conveying belt 1 and cannot be driven by the connecting rod 2022.

[0022] Further, the disturbance assembly includes the disturbance roller 202, the disturbance block 2021, the connecting rod 2022 and the gear rod 2023, the disturbance roller 202 is connected in the middle of the cleaning scraper 201, the disturbance block 2021 is arranged on the side wall of the disturbance roller 202, the connecting rod 2022 is arranged at both ends of the disturbance roller 202, and the gear rod 2023 is arranged on the side wall part of the connecting rod 2022. The disturbance block 2021 is a plurality of long strips arranged in circular arc on the side wall of the disturbance roller 202, the connecting rod 2022 is a protruding rod penetrating through both ends of the cleaning scraper 201 and embeddedly connected with the side plates 2, and the cleaning scraper 201 is connected between the side plates 2 through the connecting rod 2022. The bottom end point of the disturbance block 2021 is in contact with the top of the conveying belt 1, the gear rod 2023 is arranged only on the part of the connecting rod 2022 close to the cleaning scraper 201, and the gear rod 2023 is engaged with the gear rack 101.

[0023] At the same time, in the conveying process of the conveying belt 1, the gear rack 101 moves together, and when the gear rack 101 moves, the gear rod 2023 on the part of the connecting rod 2022 is engaged, so that the disturbance roller 202 rotates, and when the disturbance roller 202 rotates, the disturbance block 2021 on the side wall also moves, and because the end point of the disturbance block 2021 at the bottom of the disturbance roller 202 adheres to the surface of the conveying belt 1, the metal powder adhering to the surface of the conveying belt 1 is actively cleaned by the disturbance block 2021, avoiding that the metal powder is too small and adheres to the surface through the cleaning scraper 201. At the same time, when the metal powder is scooped up by the cleaning scraper 201, it also passes through the top of the disturbance roller 202, and the rotation of the disturbance roller 202 further disturbs the scooped-up metal powder, so that it does not accumulate into a block, so that the metal powder can be fully conveyed from the conveying belt 1 and does not stick, and does not block during conveying.

[0024] The following is the specific process of the utility model, first of all when conveying metal powder through the conveyor belt 1, the conveyor belt 1 will pass through the cleaning scraper block 201, and the cleaning scraper block 201 is connected between the side plates 2 through the connecting rod 2022 at both ends of the disturbance roller 202, so that when the conveyor belt 1 is conveying, the surface will move along the inclined surface 2011 of one side of the cleaning scraper block 201, and the metal powder on the surface will be scooped up along the inclined surface 2011, so that when the end of the conveyor belt 1 is adjacent, it is loosened once, avoiding sticking, and at one end of the inclined surface 2011, the material is set to be weighted, so that the end surface of the inclined surface 2011 can always adhere to the surface of the conveyor belt 1 and cannot be driven by the connecting rod 2022, and in the process of conveying the conveyor belt 1, the rack 101 will move together, and when the rack 101 moves, the toothed rod 2023 of the connecting rod 2022 will be engaged, so that the disturbance roller 202 will be driven to rotate, and when the disturbance roller 202 rotates, the disturbance block 2021 on the side wall will also move, and because the disturbance block 2021 is at the bottom of the disturbance roller 202, the end point will adhere to the surface of the conveyor belt 1, so that the metal powder adhering to the surface of the conveyor belt 1 will be actively cleaned, avoiding that the metal powder is too small and adheres to the surface through the cleaning scraper block 201, and when the metal powder is scooped up by the cleaning scraper block 201, it will also pass through the top of the disturbance roller 202, and the rotation of the disturbance roller 202 will further disturb the scooped metal powder, so that it will not be accumulated into a block, so that the metal powder can be fully conveyed from the conveyor belt 1 and will not stick, and will not be blocked during conveying.

Claims

1. A metal powder processing conveyor belt anti-adhesion structure comprising a conveyor belt (1), both sides of the conveyor belt (1) are provided with side plates (2), characterized in that, The top of the conveying belt (1) is provided with a rack (101) on both sides, the side plates (2) are connected with a cleaning block (201), one side of the cleaning block (201) is provided with an inclined surface (2011), the middle of the cleaning block (201) is connected with a disturbance assembly, and the disturbance assembly is driven by the rack (101).

2. A metal powder processing conveyor belt anti-adhesion structure according to claim 1, wherein The inclined surface (2011) is an inclined surface provided on one side of the cleaning block (201), and the bottom end of the inclined surface (2011) is provided with a counterweight.

3. A metal powder processing conveyor belt anti-adhesion structure according to claim 1, wherein The disturbance assembly comprises a disturbance roller (202), a disturbance block (2021), a connecting rod (2022) and a toothed rod (2023), the disturbance roller (202) is connected in the middle of the cleaning block (201), the disturbance block (2021) is arranged on the side wall of the disturbance roller (202), the connecting rod (2022) is arranged at both ends of the disturbance roller (202), and the toothed rod (2023) is arranged on the side wall of the connecting rod (2022).

4. A metal powder processing conveyor belt anti-adhesion structure according to claim 3, wherein The disturbance block (2021) is a plurality of long strips arranged on the side wall of the disturbance roller (202) and curved in an arc shape.

5. A metal powder processing conveyor belt anti-adhesion structure according to claim 3, wherein The connecting rod (2022) is a protruding rod penetrating through the cleaning block (201) and embeddedly connected with the side plates (2), and the cleaning block (201) is connected between the side plates (2) through the connecting rod (2022).

6. A metal powder processing conveyor belt anti-adhesion structure according to claim 3, wherein The bottom end of the disturbance block (2021) is in contact with the top of the conveying belt (1).

7. A metal powder processing conveyor belt anti-adhesion structure according to claim 3, wherein The toothed rod (2023) is arranged only on the part of the connecting rod (2022) close to the cleaning block (201), and the toothed rod (2023) is engaged with the rack (101).