Graphene conveying device capable of preventing material breakage

By introducing scraping and connecting mechanisms into the graphene conveying device, the problem of material interruption caused by gaps in the conveying mechanism is solved, achieving seamless material transition and efficient transmission, and improving processing efficiency.

CN223575444UActive Publication Date: 2025-11-21HANGZHOU HONGKE INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202423223184.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-11-21
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

During graphene processing, gaps between conveying mechanisms can cause material breakage and material drop, affecting processing efficiency.

Method used

A graphene conveying device designed to prevent material breakage includes a scraping mechanism and a connecting mechanism. The scraping mechanism rolls and scrapes the material through a scraper assembly and a pressure roller assembly. The connecting mechanism achieves seamless material transfer through a gear set and a synchronous wheel set, and utilizes the power of the existing conveying mechanism for transmission.

Benefits of technology

It effectively reduces material breakage and drop during the conveying process, improves processing efficiency and practicality, and has a scientific and reasonable structural design with strong practical value.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-material-breaking graphene conveying device which comprises a first conveying mechanism, a roller and a second conveying mechanism, the roller is installed at the input end of the first conveying mechanism, the second conveying mechanism and the first conveying mechanism are both used for conveying graphene materials, and the anti-material-breaking graphene conveying device further comprises a scraping and pressing mechanism and a connecting mechanism. Through the implementation of the auxiliary rolling device, auxiliary rolling treatment is carried out on materials on the first conveying mechanism, meanwhile, the materials attached to the surfaces of the rollers are scraped off, and the materials on the surfaces of the rollers are scraped off. And the joining mechanism is arranged between the first conveying mechanism and the second conveying mechanism, the effect of joining and transitioning the graphene materials is perfectly achieved, the problems of material falling and material breakage caused by joining of the two conveying mechanisms are reduced to a large extent, and certain use value and popularization value are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to conveying device technical field especially relates to a kind of anti-breaking material's graphene conveying device. BACKGROUND

[0002] Graphene is usually needed to use no less than one conveying mechanism to cooperate transmission in the processing conveying process due to the difference of processing link, but there is usually a gap between two conveying mechanisms, and the gap causes the problems of material breaking and material falling during transmission, which greatly affects the processing efficiency.

[0003] In view of the above, an anti-breaking material's graphene conveying device is needed to solve the deficiencies in the prior art. SUMMARY

[0004] In view of the deficiencies in the prior art, the utility model provides an anti-breaking material's graphene conveying device, aiming at solving the above problems.

[0005] To achieve the above object, the utility model provides the following technical scheme: an anti-breaking material's graphene conveying device, comprising a first conveying mechanism, a roller and a second conveying mechanism, the roller is installed at the input end of the first conveying mechanism, the second conveying mechanism and the first conveying mechanism are used for conveying graphene material, further comprising a scraping mechanism and a connecting mechanism, the scraping mechanism is installed on the first conveying mechanism, the scraping mechanism comprises a scraper assembly, a pressure roller assembly and a optical axis support, the scraper assembly and the pressure roller assembly are both installed on the optical axis support, the scraper assembly is used for scraping graphene material attached to the surface of the roller, the pressure roller assembly is used for pressing and flattening graphene material on the first conveying mechanism, the connecting mechanism is connected with the second conveying mechanism, and the connecting mechanism is used for connecting the first conveying mechanism and the second conveying mechanism to avoid material breaking during graphene material conveying. Through the scraping mechanism, the material on the first conveying mechanism can be assisted by roller pressing, and the material attached to the surface of the roller can be scraped off. The connecting mechanism is arranged between the first conveying mechanism and the second conveying mechanism to perfectly play the effect of connecting and transitioning graphene material, greatly reducing the occurrence of material falling and breaking due to the connection between the two conveying mechanisms. The structure design is scientific and reasonable, and the practicability is relatively strong.

[0006] Further, the connecting mechanism comprises a supporting assembly, a gear set, a roller shaft set, a synchronous wheel set, a front scraper, a rear supporting plate and a protective cover, the supporting assembly is connected with the second conveying mechanism, the gear set, the synchronous wheel set, the roller shaft set, the front scraper, the rear supporting plate and the protective cover are all installed on the supporting assembly, the gear set and the synchronous wheel set are respectively arranged at the front and rear ends of the roller shaft set and are used for driving the rotation of the roller shaft set to feed materials, the front scraper is used for scraping the graphene materials adhered on the conveying surface of the first conveying mechanism, the rear supporting plate is used for transferring the graphene materials conveyed on the roller shaft set to the second conveying mechanism, and the protective cover is used for protecting the gear set and the synchronous wheel set.

[0007] Further, the gear set comprises a driving gear, a first driven gear, a transition gear, a second driven gear, a first spur gear, a second spur gear, a third spur gear and a fourth spur gear, the driving gear is sleeved on the driving shaft of the second conveying mechanism, the driving gear is engaged with the first driven gear, the first driven gear is in transmission connection with the second driven gear through the transition gear, the first spur gear and the second spur gear are both engaged with the first driven gear, and the third spur gear and the fourth spur gear are both engaged with the second driven gear.

[0008] Further, the roller shaft set comprises a transition roller shaft, a first positive roller shaft, a second positive roller shaft, a third positive roller shaft, a fourth positive roller shaft, a first synchronous roller shaft, a second synchronous roller shaft and a third synchronous roller shaft, the transition roller shaft is connected with the transition gear, the first positive roller shaft, the second positive roller shaft, the third positive roller shaft and the fourth positive roller shaft are respectively connected with the first spur gear, the second spur gear, the third spur gear and the fourth spur gear, and the first synchronous roller shaft, the second synchronous roller shaft and the third synchronous roller shaft are all connected with the synchronous wheel set.

[0009] Further, the synchronous wheel set comprises a first synchronous wheel, a second synchronous wheel, a third synchronous wheel, a fourth synchronous wheel, a synchronous belt, a first tensioning wheel, a second tensioning wheel and a tensioning seat, the first synchronous wheel, the second synchronous wheel and the third synchronous wheel are respectively connected with the first synchronous roller shaft, the second synchronous roller shaft and the third synchronous roller shaft, the fourth synchronous wheel is connected with the transition roller shaft, the synchronous belt is used for rotationally connecting a plurality of synchronous wheels, the first tensioning wheel and the second tensioning wheel are used for pressing the synchronous belt, and the first tensioning wheel and the second tensioning wheel are both installed on the tensioning seat.

[0010] Further, the scraper assembly is installed on one side close to the roller through an optical axis support.

[0011] Further, the scraper assembly comprises a connecting shaft, a fixing clamp, a mounting plate and a scraper, the connecting shaft is installed at one end of the optical axis support, a plurality of fixing clamps are horizontally arranged and installed on the connecting shaft, the mounting plate is installed on the connecting shaft through the fixing clamps, and the scraper is connected with the mounting plate.

[0012] Further, the compression roller assembly comprises a compression roller frame connected with the optical axis support and a carrier roller mounted on the first conveying mechanism through the compression roller frame.

[0013] The utility model discloses beneficial effect has:

[0014] 1. In the utility model, through setting up ground scraping mechanism can carry out auxiliary roll -in processing to the material on first conveying mechanism, scrape the material adhered on the surface of roller drum simultaneously, and the effect of perfect transition of graphene material is played between first conveying mechanism and second conveying mechanism through the setting of link mechanism, the occurrence of material drop, material breakage problem between two conveying mechanisms is reduced to a great extent, and the structure design is scientific and reasonable, and the practicality is relatively stronger.

[0015] 2. In the utility model, through setting up gear set, the gear set is composed of driving gear, first driven gear, transition gear, second driven gear, first spur gear, second spur gear, third spur gear and fourth spur gear, and the driving gear is sleeved on the drive shaft of second conveying mechanism, so that the gear set of link mechanism does not need to set power source separately, and is adapted to drive through the power of conveying mechanism.

[0016] 3. In the utility model, through setting up front scraper, the gap between link mechanism and first conveying mechanism can be transitioned, and the material adhered on the conveying surface of the right end of first conveying mechanism can be scraped, and the gap between link mechanism and second conveying mechanism is simply transitioned through rear backplate, so that the utility model has certain use value and popularization value. DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained without creative labor under the premise of the drawings.

[0018] Figure 1 It is the structure three-dimensional schematic view of the utility model.

[0019] Figure 2 It is the structure installation schematic view of the link mechanism, first conveying mechanism and second conveying mechanism of the utility model.

[0020] Figure 3 It is the structure installation schematic view of the link mechanism without protective cover and second conveying mechanism of the utility model.

[0021] Figure 4 It is Figure 3Structure schematic view of middle A part.

[0022] Figure 5 Structure main view schematic diagram of the connecting mechanism and the second conveying mechanism.

[0023] Figure 6 Partial structure three-dimensional schematic diagram of the connecting mechanism.

[0024] Figure 7 Three-dimensional schematic diagram of the installation structure of the gear set, roller shaft set and synchronous wheel set.

[0025] Figure 8 Three-dimensional schematic diagram of the structure of the scraping mechanism.

[0026] Figure 9 Three-dimensional schematic diagram of the structure of the scraper assembly.

[0027] Figure 10 Three-dimensional schematic diagram of the structure position of the scraper assembly and the roller.

[0028] In the figure: 1-first conveying mechanism, 2-roller, 3-second conveying mechanism, 4-scraping mechanism, 41-scraper assembly, 411-connecting shaft, 412-fixed clamp, 413-mounting plate, 414-scraper, 42-press roller assembly, 421-press roller frame, 422-roller, 43-optical axis support, 5-connecting mechanism, 51-support assembly, 52-gear set, 521-driving gear, 522-first driven gear, 523-transition gear, 524-second driven gear, 525-first spur gear, 526-second spur gear, 527-third spur gear, 528-fourth spur gear, 53-roller shaft set, 531-transition roller shaft, 532-first positive roller shaft, 533-second positive roller shaft, 534-third positive roller shaft, 535-fourth positive roller shaft, 536-first synchronous roller shaft, 537-second synchronous roller shaft, 538-third synchronous roller shaft, 54-synchronous wheel set, 541-first synchronous wheel, 542-second synchronous wheel, 543-third synchronous wheel, 544-fourth synchronous wheel, 545-synchronous belt, 546-first tensioning wheel, 547-second tensioning wheel, 548-tensioning seat, 55-front scraper, 56-back supporting plate, 57-protective cover. DETAILED DESCRIPTION

[0029] For the convenience of understanding the utility model, the utility model will be explained in more detail below in conjunction with the drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element or one or more intervening elements can be present therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element or one or more intervening elements can be present therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in the specification are for illustrative purposes only.

[0030] Unless otherwise defined, all technical and scientific terms used in the specification are intended to have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used in the specification includes any and all combinations of one or more related listed items.

[0031] As shown in Figures 1-10 A kind of anti-breaking graphene conveying device, including first conveying mechanism 1, roller 2 and second conveying mechanism 3, roller 2 is installed at the input end of first conveying mechanism 1, second conveying mechanism 3 and first conveying mechanism 1 are all used to convey graphene material, it further includes scraping mechanism 4 and link mechanism 5, scraping mechanism 4 is installed on first conveying mechanism 1, scraping mechanism 4 includes scraper assembly 41, press roller assembly 42 and optical axis support 43, scraper assembly 41 and press roller assembly 42 are all installed on optical axis support 43, scraper assembly 41 is used to scrape the graphene material attached to the surface of roller 2, press roller assembly 42 is used to flatten the graphene material on first conveying mechanism 1, link mechanism 5 is connected with second conveying mechanism 3, link mechanism 5 is used to link first conveying mechanism 1 and second conveying mechanism 3 to avoid breaking material in graphene material conveying process.

[0032] As an implementation manner, link mechanism 5 includes support assembly 51, gear set 52, roller shaft set 53, synchronous wheel set 54, front scraper 55, rear backplate 56 and protective cover 57, support assembly 51 is connected with second conveying mechanism 3, gear set 52, synchronous wheel set 54, roller shaft set 53, front scraper 55, rear backplate 56 and protective cover 57 are all installed on support assembly 51, gear set 52 and synchronous wheel set 54 are respectively arranged at the front and rear ends of roller shaft set 53 and are used to drive its rotation feeding, front scraper 55 is used to scrape the graphene material attached to the conveying surface of first conveying mechanism 1, rear backplate 56 is used to transition the graphene material driven on roller shaft set 53 to second conveying mechanism 3, protective cover 57 is used to protect gear set 52 and synchronous wheel set 54.

[0033] As an embodiment, the gear set 52 comprises a driving gear 521, a first driven gear 522, a transition gear 523, a second driven gear 524, a first spur gear 525, a second spur gear 526, a third spur gear 527, and a fourth spur gear 528, the driving gear 521 is sleeved on the driving shaft of the second conveying mechanism 3, the driving gear 521 is engaged with the first driven gear 522, the first driven gear 522 is drivingly connected with the second driven gear 524 through the transition gear 523, the first spur gear 525 and the second spur gear 526 are engaged with the first driven gear 522, and the third spur gear 527 and the fourth spur gear 528 are engaged with the second driven gear 524.

[0034] As an embodiment, the roller set 53 comprises a transition roller 531, a first spur roller 532, a second spur roller 533, a third spur roller 534, a fourth spur roller 535, a first synchronous roller 536, a second synchronous roller 537, and a third synchronous roller 538, the transition roller 531 is connected with the transition gear 523, the first spur roller 532, the second spur roller 533, the third spur roller 534, and the fourth spur roller 535 are connected with the first spur gear 525, the second spur gear 526, the third spur gear 527, and the fourth spur gear 528 respectively, and the first synchronous roller 536, the second synchronous roller 537, and the third synchronous roller 538 are connected with the synchronous wheel set 54.

[0035] As an embodiment, the synchronous wheel set 54 comprises a first synchronous wheel 541, a second synchronous wheel 542, a third synchronous wheel 543, a fourth synchronous wheel 544, a synchronous belt 545, a first tension wheel 546, a second tension wheel 547, and a tension seat 548, the first synchronous wheel 541, the second synchronous wheel 542, and the third synchronous wheel 543 are connected with the first synchronous roller 536, the second synchronous roller 537, and the third synchronous roller 538 respectively, the fourth synchronous wheel 544 is connected with the transition roller 531, the synchronous belt 545 is used for rotationally connecting the synchronous wheels, the first tension wheel 546 and the second tension wheel 547 are used for pressing the synchronous belt 545, and the first tension wheel 546 and the second tension wheel 547 are mounted on the tension seat 548.

[0036] As an embodiment, the scraper assembly 41 is mounted on one side close to the roller 2 through the optical axis support 43.

[0037] As an embodiment, the scraper assembly 41 comprises a connecting shaft 411, a fixing clamp 412, a mounting plate 413, and a scraper 414, the connecting shaft 411 is mounted on one end of the optical axis support 43, a plurality of fixing clamps 412 are horizontally arranged and mounted on the connecting shaft 411, the mounting plate 413 is mounted on the connecting shaft 411 through the fixing clamps 412, and the scraper 414 is connected with the mounting plate 413.

[0038] As an implementation form, the front scraper 55 and the scraper plate 414 are made of PC resistant plate.

[0039] As an implementation form, the compression roller assembly 42 comprises a compression roller frame 421 and a supporting roller 422, the compression roller frame 421 is connected with the optical shaft support 43, and the supporting roller 422 is installed on the first conveying mechanism 1 through the compression roller frame 421.

[0040] The working principle of the utility model is: when in use, the graphene material on the conveying surface of the first conveying mechanism 1 is rolled into continuous mud cake material by the roller 2, at the same time, the material attached to the surface of the roller is scraped off by the scraper plate 414 of the scraper assembly 41, then the compression roller assembly 42 installed on the optical shaft support 43 carries out secondary auxiliary compression roller processing, the graphene material is then conveyed to the conveying surface of the second conveying mechanism 3 through the transition mechanism 4, this process specifically first carries out transition between the gap between the transition mechanism 4 and the first conveying mechanism 1 through the front scraper 55, at the same time, the material attached to the conveying surface on the right end of the first conveying mechanism 1 is scraped off, then the driving shaft of the second conveying mechanism 3 is driven through the adaptive transmission gear set 52, the gear set 52 drives the roller shaft set 53 and the first conveying mechanism 1 and the second conveying mechanism 3 through the transition gear 523 and the synchronous gear set 54 in the same direction, finally, the gap between the transition mechanism 4 and the second conveying mechanism 3 is simply transitioned through the rear supporting plate 56, so that the graphene conveying work of preventing material breakage is completed.

[0041] It should be noted that the specification and drawings of the utility model give the preferred implementation form of the utility model, however, the utility model can be realized through many different forms, and is not limited to the implementation form described in the specification, these implementation forms are not as additional limitation to the content of the utility model, the purpose of providing these implementation forms is to make the understanding of the disclosed content of the utility model more thorough and comprehensive. Furthermore, the above technical features continue to combine, form various implementation forms not listed above, and are regarded as the range of the specification of the utility model; further, for the ordinary skilled person in the art, the above description can be improved or changed, and all these improvements and changes should belong to the protection range of the attached claims of the utility model.

Claims

1. A graphene conveying device for preventing material breakage, comprising a first conveying mechanism (1), a roller (2), and a second conveying mechanism (3), wherein the roller (2) is installed at the input end of the first conveying mechanism (1), and both the second conveying mechanism (3) and the first conveying mechanism (1) are used to convey graphene materials, characterized in that, It also includes a scraping mechanism (4) and a connecting mechanism (5). The scraping mechanism (4) is installed on the first conveying mechanism (1). The scraping mechanism (4) includes a scraper assembly (41), a pressure roller assembly (42), and an optical axis support (43). The scraper assembly (41) and the pressure roller assembly (42) are both installed on the optical axis support (43). The scraper assembly (41) is used to scrape off the graphene material attached to the surface of the roller (2). The pressure roller assembly (42) is used to press down and flatten the graphene material on the first conveying mechanism (1). The connecting mechanism (5) is connected to the second conveying mechanism (3). The connecting mechanism (5) is used to connect the first conveying mechanism (1) and the second conveying mechanism (3) to avoid material interruption during the conveying of graphene material.

2. The graphene conveying device for preventing material breakage according to claim 1, characterized in that, The connecting mechanism (5) includes a support assembly (51), a gear set (52), a roller set (53), a synchronous pulley set (54), a front scraper (55), a rear support plate (56), and a protective cover (57). The support assembly (51) is connected to the second conveying mechanism (3). The gear set (52), synchronous pulley set (54), roller set (53), front scraper (55), rear support plate (56), and protective cover (57) are all mounted on the support assembly (51). The gear set (52) and synchronous pulley set (54) are respectively located at the front and rear ends of the roller set (53) and are used to drive it to rotate and feed material. The front scraper (55) is used to scrape off the graphene material attached to the conveying surface of the first conveying mechanism (1). The rear support plate (56) is used to transfer the graphene material transmitted on the roller set (53) to the second conveying mechanism (3). The protective cover (57) is used to protect the gear set (52) and synchronous pulley set (54).

3. The graphene conveying device for preventing material breakage according to claim 2, characterized in that, The gear set (52) includes a driving gear (521), a first driven gear (522), a transition gear (523), a second driven gear (524), a first spur gear (525), a second spur gear (526), ​​a third spur gear (527), and a fourth spur gear (528). The driving gear (521) is sleeved on the drive shaft of the second conveying mechanism (3). The driving gear (521) meshes with the first driven gear (522). The first driven gear (522) is connected to the second driven gear (524) through the transition gear (523). The first spur gear (525) and the second spur gear (526) both mesh with the first driven gear (522). The third spur gear (527) and the fourth spur gear (528) both mesh with the second driven gear (524).

4. The graphene conveying device for preventing material breakage according to claim 3, characterized in that, The roller assembly (53) includes a transition roller (531), a first positive roller (532), a second positive roller (533), a third positive roller (534), a fourth positive roller (535), a first synchronous roller (536), a second synchronous roller (537), and a third synchronous roller (538). The transition roller (531) is connected to a transition gear (523). The first positive roller (532), the second positive roller (533), the third positive roller (534), and the fourth positive roller (535) are respectively connected to the first spur gear (525), the second spur gear (526), ​​the third spur gear (527), and the fourth spur gear (528). The first synchronous roller (536), the second synchronous roller (537), and the third synchronous roller (538) are all connected to the synchronous wheel assembly (54).

5. The graphene conveying device for preventing material breakage according to claim 4, characterized in that, The synchronous pulley assembly (54) includes a first synchronous pulley (541), a second synchronous pulley (542), a third synchronous pulley (543), a fourth synchronous pulley (544), a synchronous belt (545), a first tensioning pulley (546), a second tensioning pulley (547), and a tensioning seat (548). The first synchronous pulley (541), the second synchronous pulley (542), and the third synchronous pulley (543) are respectively connected to the first synchronous roller shaft (536), the second synchronous roller shaft (537), and the third synchronous roller shaft (538). The fourth synchronous pulley (544) is connected to the transition roller shaft (531). The synchronous belt (545) is used to rotatably connect several synchronous pulleys. The first tensioning pulley (546) and the second tensioning pulley (547) are used to press down and tension the synchronous belt (545). The first tensioning pulley (546) and the second tensioning pulley (547) are both mounted on the tensioning seat (548).

6. The graphene conveying device for preventing material breakage according to claim 1, characterized in that, The scraper assembly (41) is mounted on the side near the roller (2) via an optical axis bracket (43).

7. The graphene conveying device for preventing material breakage according to claim 6, characterized in that, The scraper assembly (41) includes a connecting shaft (411), a fixing clip (412), a mounting plate (413), and a scraper (414). The connecting shaft (411) is installed at one end of the optical axis bracket (43). Several fixing clips (412) are horizontally arranged on the connecting shaft (411). The mounting plate (413) is installed on the connecting shaft (411) through the fixing clips (412). The scraper (414) is connected to the mounting plate (413).

8. The graphene conveying device for preventing material breakage according to claim 1, characterized in that, The pressure roller assembly (42) includes a pressure roller frame (421) and a support roller (422). The pressure roller frame (421) is connected to the optical axis support (43), and the support roller (422) is mounted on the first conveying mechanism (1) through the pressure roller frame (421).