Material belt conveying mechanism and transmission equipment
By introducing flattening conveyor rollers, bending conveyor rollers, and guide components into the belt conveyor system, the problem of belt deviation during conveying was solved, achieving stable belt conveying and normal equipment operation.
Patent Information
- Application Number
- CN202422894813.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing belt conveyor systems are prone to belt deviation due to vibration and tension changes during automated transportation, leading to decreased product quality and abnormal equipment operation.
The material conveying mechanism adopts a material belt conveying mechanism including flattening conveyor rollers, bending conveyor rollers and guide components. The guide components and the conveying support form a material guiding gap, which stabilizes the conveying process of the material belt and prevents deviation.
It effectively prevents the material belt from shifting due to external forces and vibrations during the conveying process, ensuring normal operation of the equipment and improving the stability and accuracy of the material belt conveying.
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Figure CN223823000U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of automated transportation, and particularly relates to a material belt conveying mechanism and a conveying device. BACKGROUND
[0002] At present, with the rapid development of new energy, the production of batteries has also entered the process of automation. In the production of battery material belts, the material belts are usually transported by automated conveying devices, so as to be transported to the equipment of the next process.
[0003] However, it is crucial to ensure that the battery material belt can be accurately and stably conveyed. In particular, during the automated transportation of the material belt by the equipment, the deviation of the material belt may cause a significant decrease in product quality, and even affect the normal operation of the equipment. Although the traditional conveying system can provide a certain accuracy and stability, it still faces the problem of material belt deviation, which is mainly due to factors such as shaking, vibration and tension change of the material itself during the conveying process.
[0004] In the existing technology, during the production and transportation of the material belt, the battery material belt deviates due to external force or equipment shaking, so that the material belt is wound together during the conveying process due to the deviation of the material belt, thereby affecting the normal operation of the equipment. CONTENT OF THE INVENTION
[0005] The purpose of the present disclosure is to overcome the deficiencies in the prior art, and to provide a material belt conveying mechanism and a conveying device for preventing deviation of the material belt during conveying.
[0006] The purpose of the present disclosure is achieved by the following technical solutions:
[0007] A material belt conveying mechanism, comprising a conveying support, a flattening conveying roller and a bending conveying roller, the flattening conveying roller and the bending conveying roller being sequentially arranged on the conveying support in the conveying direction of the material belt, the flattening conveying roller being used to compact the material belt, and the bending conveying roller being used to bend the material belt.
[0008] The material belt conveying mechanism further comprises a guide piece, the guide piece being arranged on the conveying support, a material guiding gap being formed between the guide piece and the conveying support, the material guiding gap being used to pass and convey the material belt, and the guide piece being located between the flattening conveying roller and the bending conveying roller.
[0009] In one embodiment, the guide piece is detachably connected to the conveying support.
[0010] In one of the embodiments, the guide comprises a guide body, a first fastener and a second fastener, the guide body is provided with a first through hole and a second through hole, the conveying bracket is provided with a first connecting hole and a second connecting hole, the first fastener is screwed to the first connecting hole through the first through hole, and the second fastener is screwed to the second connecting hole through the second through hole.
[0011] In one of the embodiments, the material guiding gap is located between the first fastener and the second fastener.
[0012] In one of the embodiments, the guide body is provided with a notch adjacent to one side of the conveying bracket to form the material guiding gap.
[0013] In one of the embodiments, the notch is located at the middle position of the guide body, and the width of the notch is greater than the width of the material belt.
[0014] In one of the embodiments, the end of the material belt conveying mechanism is provided with a mounting opening, the bending conveying roller is arranged in the mounting opening, and the two ends of the bending conveying roller are connected to the side wall of the conveying bracket.
[0015] In one of the embodiments, the material belt conveying mechanism further comprises a first tension spring and a second tension spring, the conveying bracket further comprises a first connecting part and a second connecting part, the first connecting part and the second connecting part are arranged on the conveying bracket, and the first connecting part and the second connecting part are arranged opposite to each other, one end of the first tension spring is connected to one end of the flattening conveying roller, the other end of the first tension spring is connected to the first connecting part, one end of the second tension spring is connected to the other end of the flattening conveying roller, and the other end of the second tension spring is connected to the second connecting part.
[0016] In one of the embodiments, the first connecting part comprises a first threaded stud and a first fixing block, the first fixing block is fixed below the conveying bracket, the first threaded stud is screwed into a first threaded hole of the first fixing block, and the first tension spring is hung on the first threaded stud; the second connecting part comprises a second threaded stud and a second fixing block, the second fixing block is fixed below the conveying bracket, the second threaded stud is screwed into a second threaded hole of the second fixing block, and the second tension spring is hung on the first threaded stud.
[0017] A conveying device comprising the material belt conveying mechanism according to any one of the above embodiments.
[0018] Compared with the prior art, the present disclosure has at least the following advantages:
[0019] The material belt is placed on the material belt conveying mechanism, and the material belt is transmitted to the flattening conveying roller through the conveying support. Since the guide is arranged on the end surface of the conveying support and located between the flattening conveying roller and the bending conveying roller, when the material belt passes through the flattening conveying roller, the guide is arranged on the conveying support, and a material guiding gap is formed between the guide and the conveying support, so that the material belt enters the material guiding gap after passing through the flattening conveying roller, thereby stabilizing the entire conveying process of the material belt at the middle position of the conveying support. Subsequently, the material belt moves to the next device after passing through the bending conveying roller. By arranging the guide on both ends of the conveying support, and the material belt needs to pass through the material guiding gap formed by the guide, the left and right deviation of the material belt of the conveying line caused by the external force acting on the material belt and the shaking in the conveying process is prevented, and the deviation of the material belt is avoided to cause the normal work of the overall device. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the present disclosure, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0021] Figure 1 The structure schematic view of the material belt conveying mechanism of an embodiment of the present disclosure is shown in the figure.
[0022] Figure 2 The structure schematic view of the material belt conveying mechanism of an embodiment of the present disclosure is shown in the figure. Figure 1 The sectional view of the material belt conveying mechanism shown in the figure.
[0023] Figure 3 The structure schematic view of the guide is shown in the figure. Figure 1 The structure schematic view of the guide is shown in the figure.
[0024] Figure 4 The structure schematic view of the material belt conveying mechanism of an embodiment of the present disclosure is shown in the figure.
[0025] Reference signs: 10, material belt conveying mechanism; 100, flattening conveying roller; 200, bending conveying roller; 300, material belt; 400, conveying support; 410, first connecting hole; 420, second connecting hole; 430, first connecting part; 4310, first stud; 440, second connecting part; 4410, second stud; 450, material guiding gap; 500, guide; 510, guide body; 5110, first through hole; 5120, second through hole; 5130, notch; 520, first fastener; 530, second fastener; 600, mounting port; 700, first tension spring; 800, second tension spring. DETAILED DESCRIPTION
[0026] To facilitate understanding of this disclosure, a more complete description will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the present disclosure. However, this disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure.
[0027] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0029] To better understand the technical solutions and beneficial effects of this disclosure, the following detailed description is provided in conjunction with specific embodiments:
[0030] like Figure 1 As shown, a material conveying mechanism 10 of one embodiment includes a conveying support 400, a flattening conveying roller 100, and a bending conveying roller 200. The flattening conveying roller 100 and the bending conveying roller 200 are sequentially arranged on the conveying support 400 along the conveying direction of the material belt 300. The flattening conveying roller 100 is used to compact the material belt 300, and the bending conveying roller 200 is used to bend the material belt 300. The material conveying mechanism 10 also includes a guide member 500, which is disposed on the conveying support 400. A guide gap 450 is formed between the guide member 500 and the conveying support 400. The guide gap 450 is used to pass through and convey the material belt 300, and the guide member 500 is located between the flattening conveying roller 100 and the bending conveying roller 200.
[0031] It is understandable that the material belt 300 is placed on the material belt conveyor mechanism 10, such as... Figure 1As shown by the arrows, the material belt 300 is transmitted to the flattening conveying roller 100 through the conveying support 400, and because the guide 500 is arranged on the end face of the conveying support 400 and is located between the flattening conveying roller 100 and the bending conveying roller 200, when the material belt 300 passes through the flattening conveying roller 100, because the guide 500 is arranged on the conveying support 400 and the material guiding gap 450 is formed between the guide 500 and the conveying support 400, the material belt 300 will enter the material guiding gap 450 after passing through the flattening conveying roller 100, thereby stabilizing the entire conveying process of the material belt 300 at the middle position of the conveying support 400, and then the material belt 300 moves to the next equipment after passing through the bending conveying roller 200. By arranging the guide 500 on both ends of the conveying support 400, and the material belt 300 needs to pass through the material guiding gap 450 formed by the guide 500, it is prevented that the material belt 300 of the conveying line deviates left and right due to the action of external force and shaking in the conveying process, and it is avoided that the material belt 300 deviates to cause the normal work of the entire equipment.
[0032] In combination Figure 1 As shown in one of the embodiments, the guide 500 is detachably connected to the conveying support 400. It can be understood that by designing the guide 500 to be detachably connected to the conveying support 400, it is convenient to replace the guide 500 in time due to wear caused by long-time use of the guide 500, which is beneficial to maintain the material belt conveying mechanism 10, and the guide 500 meeting the specifications of the material belt 300 can be replaced synchronously according to the specifications of the material belt 300.
[0033] In combination Figure 1 With Figure 2 As shown in one of the embodiments, the guide 500 includes a guide 500 body, a first fastener 520 and a second fastener 530, the guide 500 body is provided with a first through hole 5110 and a second through hole 5120, the conveying support 400 is provided with a first connecting hole 410 and a second connecting hole 420, the first fastener 520 is screwed to the first connecting hole 410 through the first through hole 5110, and the second fastener 530 is screwed to the second connecting hole 420 through the second through hole 5120. It can be understood that by providing the first through hole 5110 and the second through hole 5120 in the guide 500 body, and screwing the first fastener 520 and the second fastener 530 to the first through hole 5110 and the second through hole 5120 respectively, the guide 500 body is stably installed on the end face of the conveying support 400, thereby stabilizing the installation of the guide 500; further, the first fastener 520 is screwed to the first connecting hole 410 through the first through hole 5110, and the second fastener 530 is screwed to the second connecting hole 420 through the second through hole 5120, so that the fastener can be stably fixed to the conveying support 400.
[0034] In combination Figure 1 With Figure 2 As shown in one embodiment, the material guiding gap 450 is located between the first fastener 520 and the second fastener 530. It can be understood that the material guiding gap 450 is located between the first fastener 520 and the second fastener 530 bracket, when the first fastener 520 and the second fastener 530 lock the guide 500 body, the guide 500 body forms a material guiding gap 450 with the conveying bracket 400, and the material guiding gap 450 enables the material belt 300 to move to the bending conveying roller 200 when the material belt 300 passes through the guide 500 body, so that the material belt 300 can smoothly move to the bending conveying roller 200 due to the material guiding gap 450.
[0035] In combination Figure 1 With Figure 3 As shown, further, the guide 500 body is provided with a notch 5130 adjacent to one side of the conveying bracket 400 to form the material guiding gap 450. It can be understood that the notch 5130 is provided on the side of the guide 500 body adjacent to the conveying bracket 400. The notch 5130 and the side of the conveying bracket 400 form the material guiding gap 450, and the material belt 300 passes through the material guiding gap 450 formed by the notch 5130, thereby stabilizing the smoothness of the material belt 300 conveying and preventing the material belt 300 from deviating during conveying.
[0036] In combination Figure 1 With Figure 3 As shown in one embodiment, the notch 5130 is located at the middle position of the guide 500 body, and the width of the notch 5130 is greater than the width of the material belt 300. It can be understood that the width of the notch 5130 is designed to be greater than the width of the material belt 300, which ensures that the width of the material guiding gap 450 formed after the material belt 300 passes through the flattening conveying roller 100 is greater than the width of the material belt 300, and the material belt 300 can pass through the notch 5130 to enter the guide 500 body, and further move to the bending conveying roller 200.
[0037] As Figure 1As shown, the end of the tape conveying mechanism 10 is provided with a mounting port 600, the bending conveying roller 200 is arranged in the mounting port 600, and the two ends of the bending conveying roller 200 are connected to the side wall of the conveying support 400. It can be understood that the end of the tape conveying mechanism 10 is provided with a mounting port 600, and the two ends of the bending conveying roller 200 are connected to the side wall of the mounting port 600 through the bolt connection. When it is necessary to replace the bending conveying roller 200, the bolt connection connected to the bending conveying roller 200 is disassembled to replace the bending conveying roller 200. By providing the mounting port 600, the bending conveying roller 200 can be conveniently installed and disassembled.
[0038] In combination Figure 1 With Figure 4 As shown, the tape conveying mechanism 10 further comprises a first tension spring 700 and a second tension spring 800, and the conveying support 400 further comprises a first connecting portion 430 and a second connecting portion 440, the first connecting portion 430 and the second connecting portion 440 are arranged on the conveying support 400, and the first connecting portion 430 and the second connecting portion 440 are arranged opposite to each other, one end of the first tension spring 700 is connected to one end of the flattening conveying roller 100, the other end of the first tension spring 700 is connected to the first connecting portion 430, one end of the second tension spring 800 is connected to the other end of the flattening conveying roller 100, and the other end of the second tension spring 800 is connected to the second connecting portion 440. It can be understood that by arranging the first connecting portion 430 and the second connecting portion 440 on the conveying support 400, and connecting the first tension spring 700 and the second tension spring 800 to the first connecting portion 430 and the second connecting portion 440 respectively, the flattening conveying roller 100 can be more stably kept in position on the conveying support 400 when conveying the tape 300, because the first tension spring 700 and the second tension spring 800 increase the tension on the flattening conveying roller 100, ensuring that the tape 300 will not be damaged or the conveying resistance will not be increased due to excessive compression during the conveying process.
[0039] As Figure 4As shown, the first connecting part 430 includes a first stud 4310 and a first fixing block fixed to the lower side of the conveying bracket 400, the first stud 4310 is screwed into the first threaded hole of the first fixing block, and the first tension spring 700 is hung on the first stud 4310; the second connecting part 440 includes a second stud 4410 and a second fixing block fixed to the lower side of the conveying bracket 400, the second stud 4410 is screwed into the second threaded hole of the second fixing block, and the second tension spring 800 is hung on the first stud 4310. It can be understood that by screwing the first stud 4310 into the first fixing block, and hanging the first tension spring 700 on the first stud 4310, and hanging the other end of the first tension spring 700 on the flattening conveying roller 100, the tension of the first tension spring 700 is provided to one end of the flattening conveying roller 100. Similarly, the second tension spring 800 is hung on the second stud 4410, and the other end of the second tension spring 800 is hung on the flattening conveying roller 100; because of the traction of the first tension spring 700 and the second tension spring 800, the flattening conveying roller 100 can provide stable pressure to compact the material belt 300.
[0040] A conveying device includes the material belt conveying mechanism 10 of any of the above embodiments. It can be understood that because the guide 500 is arranged on the conveying bracket 400, and the guide 500 and the conveying bracket 400 form a material guiding gap 450, the material belt 300 will enter the material guiding gap 450 after passing through the flattening conveying roller 100, thereby stabilizing the entire conveying process of the material belt 300 at the middle position of the conveying bracket 400, and then the material belt 300 moves to the next device after passing through the bending conveying roller 200. By arranging the guide 500 at both ends of the conveying bracket 400, and the material belt 300 needs to pass through the material guiding gap 450 formed by the guide 500, it is prevented that the material belt 300 on the conveying line deviates left and right due to external force and shaking during conveying, and the deviation of the material belt 300 is avoided to cause the normal work of the entire device.
[0041] Compared with the prior art, the present disclosure has at least the following advantages:
[0042] The material belt 300 is placed in the material belt conveying mechanism 10, such as Figure 1As shown by the arrows, the material belt 300 is transmitted to the flattening conveying roller 100 through the conveying support 400, and because the guide 500 is arranged on the end face of the conveying support 400 and is located between the flattening conveying roller 100 and the bending conveying roller 200, when the material belt 300 passes through the flattening conveying roller 100, because the guide 500 is arranged on the conveying support 400 and a material guiding gap 450 is formed between the guide 500 and the conveying support 400, the material belt 300 will enter the material guiding gap 450 after passing through the flattening conveying roller 100, thereby stabilizing the whole conveying process of the material belt 300 at the middle position of the conveying support 400, and then the material belt 300 moves to the next equipment after passing through the bending conveying roller 200. By arranging the guide 500 on both ends of the conveying support 400 and making the material belt 300 pass through the material guiding gap 450 formed by the guide 500, the left and right deviation of the material belt 300 of the conveying line caused by the external force acting on the material belt 300 and the shaking in the conveying process is prevented, and the deviation of the material belt 300 to cause the normal work of the whole equipment is avoided.
[0043] The above-described embodiments only express several implementation manners of the present disclosure, and the description is relatively specific and detailed, but it should not be understood as a limitation on the scope of the utility model patent. It should be noted that, for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present disclosure, and these all belong to the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure patent should be subject to the appended claims.
Claims
1. A material belt conveying mechanism, comprising a conveying support, a flattening conveying roller, and a bending conveying roller, wherein the flattening conveying roller and the bending conveying roller are sequentially arranged on the conveying support along the conveying direction of the material belt, the flattening conveying roller is used to compact the material belt, and the bending conveying roller is used to bend the material belt; Its features are, The material conveying mechanism further includes a guide member, which is disposed on the conveying support. A material guiding gap is formed between the guide member and the conveying support. The material guiding gap is used to pass through and convey the material belt, and the guide member is located between the flattening conveying roller and the bending conveying roller.
2. The material conveyor mechanism according to claim 1, characterized in that, The guide member is detachably connected to the conveying bracket.
3. The material conveyor mechanism according to claim 2, characterized in that, The guide includes a guide body, a first fastener, and a second fastener. The guide body has a first through hole and a second through hole, and the conveying bracket has a first connecting hole and a second connecting hole. The first fastener is screwed into the first connecting hole through the first through hole, and the second fastener is screwed into the second connecting hole through the second through hole.
4. The material conveyor mechanism according to claim 2, characterized in that, The material guide gap is located between the first fastener and the second fastener.
5. The material conveyor mechanism according to claim 1, characterized in that, The guide body has a notch on one side adjacent to the conveying bracket to form the material guiding gap.
6. The material conveyor mechanism according to claim 5, characterized in that, The notch is located in the middle of the guide body, and the width of the notch is greater than the width of the material strip.
7. The material conveyor mechanism according to claim 1, characterized in that, The material conveyor mechanism has an installation port at its end, the bending conveyor roller is disposed in the installation port, and both ends of the bending conveyor roller are connected to the side wall of the conveyor bracket.
8. The material conveyor mechanism according to claim 1, characterized in that, The material conveying mechanism further includes a first tension spring and a second tension spring, and the conveying bracket further includes a first connecting part and a second connecting part. The first connecting part and the second connecting part are disposed on the conveying bracket and are disposed opposite to each other. One end of the first tension spring is connected to one end of the flattening conveying roller, and the other end of the first tension spring is connected to the first connecting part. One end of the second tension spring is connected to the other end of the flattening conveying roller, and the other end of the second tension spring is connected to the second connecting part.
9. The material conveyor mechanism according to claim 8, characterized in that, The first connecting part includes a first stud and a first fixing block. The first fixing block is fixed to the lower part of the conveying bracket. The first stud is screwed into the first screw hole of the first fixing block. The first tension spring is hung on the first stud. The second connecting part includes a second stud and a second fixing block. The second fixing block is fixed to the lower part of the conveying bracket. The second stud is screwed into the second screw hole of the second fixing block. The second tension spring is hung on the first stud.
10. A transmission device, characterized in that, Includes the belt conveyor mechanism according to any one of claims 1 to 9.