Accumulated and paid line material separating device
By designing the accumulation components, transfer components, and limiting components, the problem of large footprint during material output is solved, enabling individual material output and reducing the footprint.
Patent Information
- Application Number
- CN202520226361.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-13
AI Technical Summary
In the prior art, the material separation device of the accumulation line occupies a large area and cannot be effectively utilized. In the prior art, the material needs to be output individually, which results in the accumulation line being able to hold less material, thus leading to a large footprint.
By designing the combination of the accumulation component, the transfer component, and the limiting component, and by utilizing the cooperation between the first driving component and the first conveying component, the material to be conveyed can be detached from the accumulation component and the material to be conveyed can be transferred. Through the cooperation between the second driving component and the limiting plate, a specified number of materials can be placed on the first conveying component, thereby completing the output of a specified number of materials, reducing the distance requirement between materials, and thus reducing the overall footprint of the accumulation line.
It enables the separate output of materials, reduces the number of accumulation lines, and lowers the overall footprint.
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Figure CN223722070U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material separation technical field especially, relate to a kind of material separation device of accumulation and release line. BACKGROUND
[0002] Accumulation and release line is a kind of commonly used material conveying device, mainly applied in logistics industry and storage industry, for realizing the temporary storage and buffer of material in the material conveying process. Since the material on accumulation and release line needs to be output individually, the current way of keeping a certain distance between adjacent materials enables the material to be output individually when output. This way makes the material that can be accommodated by a single accumulation and release line less, resulting in a larger number of accumulation and release lines required, and further resulting in a larger overall floor area. SUMMARY
[0003] Therefore, the technical problem to be solved by the utility model is to provide a material separation device for accumulation and release line, which can reduce the overall floor area of the accumulation and release line.
[0004] To solve the above technical problems, the utility model provides a material separation device for accumulation and release line, comprising: an accumulation and release member, the accumulation and release member comprising a plurality of conveying rollers; a transfer assembly comprising a first drive member and a first conveying member, the first conveying member being located between adjacent two conveying rollers, the output end of the first drive member being connected with the first conveying member, and the driving path of the first drive member being perpendicular to the conveying path of the accumulation and release member; a limiting assembly comprising a limiting plate and a second drive member, the limiting plate being located between adjacent two conveying rollers, and the limiting plate being located between the first conveying member and the input end of the accumulation and release member, the output end of the second drive member being connected with the limiting plate, and the driving path of the second drive member being perpendicular to the conveying path of the accumulation and release member.
[0005] In an embodiment of the utility model, the accumulation and release member comprises a transition portion and at least two conveying portions, the transition portion being located between the conveying portions, the first conveying member being located in the transition portion, and the limiting plate being located between the conveying portion and the transition portion.
[0006] In an embodiment of the utility model, the number of limiting assemblies is the same as that of conveying portions, and a limiting plate is provided between each conveying portion and the transition portion.
[0007] In an embodiment of the utility model, it further comprises a second conveying member, the conveying path of the second conveying member being communicated with the conveying path of the accumulation and release member, and the conveying path of the first conveying member being able to be communicated with the conveying path of the second conveying member.
[0008] In one embodiment of the utility model, one end of second conveying piece is connected with blocking piece away from the accumulation piece, and the blocking piece is located at the end of the conveying path of the second conveying piece.
[0009] In one embodiment of the utility model, the limiting assembly further comprises a connecting frame, the connecting frame is connected with the accumulation piece, and the second driving piece is connected with the connecting frame.
[0010] In one embodiment of the utility model, the output end of the first driving piece is connected with a connecting plate, the connecting plate is connected with a first mounting plate, and the first conveying piece is connected between the two first mounting plates.
[0011] In one embodiment of the utility model, the accumulation piece further comprises a second mounting plate, the conveying rollers are connected between the two second mounting plates, and a transmission belt is sleeved on the adjacent two conveying rollers.
[0012] In one embodiment of the utility model, the second mounting plate is provided with a bayonet, the end of the conveying roller is connected with a clamping block, and the clamping block is clamped with the bayonet.
[0013] In one embodiment of the utility model, the conveying roller is provided with anti-skid lines, and the transmission belt is abutted with the anti-skid lines.
[0014] The above technical scheme of the utility model has the following advantages compared with the prior art.
[0015] The accumulation line material separation device has the advantages that the first driving piece and the first conveying piece cooperate to make the material to be conveyed separate from the accumulation piece and drive the material to be conveyed to complete the transfer, the second driving piece and the limiting plate cooperate to make the specified number of materials on the first conveying piece, thereby completing the output of the specified number of materials, the material to be conveyed on the accumulation piece does not need to be a certain distance apart, thereby reducing the number of accumulation pieces required, and further reducing the overall floor area of the accumulation line. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to make the content of the utility model more easily understood, the utility model will be further described in detail in the following according to the specific embodiments of the utility model and in conjunction with the drawings.
[0017] Figure 1 is a structural schematic view of the accumulation line material separation device of the utility model;
[0018] Figure 2 is Figure 1 partial structural schematic view;
[0019] Figure 3 is a structural schematic view of the transfer assembly;
[0020] Figure 4 is a partial structure diagram of the accumulation and placing part;
[0021] Figure 5 is a structure diagram of the second mounting plate;
[0022] Figure 6 is a structure diagram of the conveying roller.
[0023] The description of the drawings is as follows: 1, accumulation and placing part; 2, second conveying part; 3, transfer assembly; 4, limiting assembly; 11, second mounting plate; 12, conveying roller; 13, transmission belt; 14, bayonet; 15, clamping block; 16, connecting shaft; 17, anti-skid pattern; 21, blocking piece; 31, first driving part; 32, connecting plate; 33, first mounting plate; 34, first conveying part; 41, connecting frame; 42, limiting plate. DETAILED DESCRIPTION
[0024] The utility model will be further explained in combination with the drawings and specific embodiments, so that the person skilled in the art can better understand the utility model and can be implemented, but the embodiment is not as the limitation of the utility model.
[0025] Referring to Figures 1 to 3 The utility model discloses an accumulation and placing line material separation device, including: accumulation and placing part 1, accumulation and placing part 1 includes a plurality of conveying rollers 12;Transfer assembly 3, including first driving part 31 and first conveying part 34, first conveying part 34 is located between two adjacent conveying rollers 12, and the output of first driving part 31 is connected with first conveying part 34, and the drive path of first driving part 31 is perpendicular to the conveying path of accumulation and placing part 1;Limiting assembly 4, including limiting plate 42 and second driving part (not shown in the drawing), limiting plate 42 is located between two adjacent conveying rollers 12, and limiting plate 42 is located between first conveying part 34 and the input end of accumulation and placing part 1, and the output of second driving part is connected with limiting plate 42, and the drive path of second driving part is perpendicular to the conveying path of accumulation and placing part 1.
[0026] The material separation device of the embodiment is used for separating materials on the accumulation and placing part 1. The material to be conveyed is placed on the conveying roller 12 of the accumulation and placing part 1, and the conveying roller 12 is used for conveying the material to be conveyed. The second driving part drives the limiting plate 42 to ascend, so that the limiting plate 42 is located on the conveying path of the accumulation and placing part 1. The material to be conveyed is in contact with the limiting plate 42 during the movement on the accumulation and placing part 1. At this time, the material to be conveyed is located close to the first conveying part 34. When it is needed to output the material to be conveyed, the second driving part drives the limiting plate 42 to descend, and the accumulation and placing part 1 drives the material to be conveyed to move above the first conveying part 34. The first driving part 31 drives the first conveying part 34 to ascend, so that there is a gap between the material to be conveyed and the conveying roller 12. The first conveying part 34 drives the material to be conveyed to move, so as to complete the output of the material to be conveyed. Through the cooperation of the first driving part 31 and the first conveying part 34, the material to be conveyed can be separated from the accumulation and placing part 1 and the material to be conveyed is moved. Through the cooperation of the second driving part and the limiting plate 42, a single material can be located on the first conveying part 34, so as to complete the output of the single material. The materials to be conveyed on the accumulation and placing part 1 do not need to be separated by a certain distance, so as to reduce the number of accumulation and placing parts 1 required, and further reduce the overall floor area of the accumulation and placing line.
[0027] The accumulation and placing part 1 is used for conveying the material to be conveyed, and the accumulation and placing part 1 comprises a plurality of conveying rollers 12. Specifically, the accumulation and placing part 1 comprises a transition part and at least two conveying parts. The transition part is located between the conveying parts, and the conveying parts can convey the material to be conveyed to the transition part. In the embodiment, two conveying parts are provided. The conveying paths of the two conveying parts and the transition part are located on the same straight line, and the conveying directions of the two conveying parts are opposite, so as to convey materials at different positions. According to the different types and positions of the materials, different positions, directions and numbers of conveying parts can be set, and the transition part can also be provided with a plurality of transition parts. According to the requirements, the plurality of conveying parts can convey the material to be conveyed to the transition part, and the conveying parts can also convey a plurality of materials to be conveyed to the transition part, so as to complete the conveying of the plurality of materials.
[0028] Reference Figures 4 to 6As shown, the accumulation part 1 further comprises a second mounting plate 11, the conveying rollers 12 are connected between two second mounting plates 11, and a transmission belt 13 is sleeved on the adjacent two conveying rollers 12. Specifically, the second mounting plates 11 are oppositely arranged, and the opposite sides of the second mounting plates 11 are provided with bayonets 14, and the two ends of the conveying rollers 12 are connected with clamping blocks 15, the end faces of the bayonets 14 and the clamping blocks 15 are polygonal, and in the embodiment, the end faces of the bayonets 14 and the clamping blocks 15 are regular hexagons, the clamping blocks 15 can penetrate through the bayonets 14 and be clamped with the bayonets 14, so as to prevent the clamping blocks 15 from rotating. The conveying roller 12 comprises a connecting shaft 16 and a rotating sleeve, the clamping block 15 is connected with the connecting shaft 16, the rotating sleeve is sleeved on the connecting shaft 16, and the connecting shaft 16 is fixed in position through the clamping of the clamping block 15 and the bayonet 14, and the rotating sleeve can rotate on the connecting shaft 16. The cooperation of the clamping block 15 and the bayonet 14 enables the conveying roller 12 to be quickly fixed in position with the second mounting plate 11.
[0029] The conveying roller 12 is provided with anti-skid lines 17 near one end in the circumferential direction, and the anti-skid lines 17 are located on the rotating sleeve and arranged in a circle along the circumferential direction of the rotating sleeve. The transmission belt 13 is sleeved on the adjacent two conveying rollers 12 and abuts against the anti-skid lines 17, and the transmission belt 13 is sleeved on each adjacent two conveying rollers 12, and a single rotating sleeve is driven to rotate by the motor, so as to drive multiple rotating sleeves to rotate together. The conveying part and the transition part are controlled by different motors, so as to realize independent conveying of materials.
[0030] Referring to Figure 3 As shown, the transfer assembly 3 comprises a first driving part 31 and a first conveying part 34, the first conveying part 34 can be regarded as a conveying belt device, and the first conveying part 34 is located between the adjacent two conveying rollers 12 and is arranged in parallel with the conveying rollers 12. The first driving part 31 is a linear driving part, the output end of the first driving part 31 is connected with the first conveying part 34, and the driving path of the first driving part 31 is perpendicular to the conveying path of the accumulation part 1, so that the first driving part 31 can drive the first conveying part 34 to ascend and descend. Specifically, the first conveying part 34 is located in the transition part, the first driving part 31 is provided with two and is fixedly connected with the outside, the output end of the first driving part 31 is connected with a connecting plate 32, the side of the connecting plate 32 away from the first driving part 31 is connected with a first mounting plate 33, the end face of the first mounting plate 33 is L-shaped, and the bending position of the first mounting plate 33 is arc-shaped, and the first conveying part 34 is connected between two first mounting plates 33. In the embodiment, the transfer assembly 3 comprises two first conveying parts 34, and different numbers of first conveying parts 34 can be arranged according to the size of the material.
[0031] Referring to Figure 2As shown, the limiting assembly 4 comprises a limiting plate 42 and a second driving member, the second driving member is a linear driving member, the limiting plate 42 is located between two adjacent conveying rollers 12, and the limiting plate 42 is located between the first conveying member 34 and the input end of the accumulation member 1, specifically, the limiting plate 42 is located between the conveying part and the transition part. The output end of the second driving member is connected with the limiting plate 42, the driving path of the second driving member is perpendicular to the conveying path of the accumulation member 1, so that the second driving member can drive the limiting plate 42 to rise and fall. The limiting assembly 4 is the same as the number of conveying parts, that is, the limiting plate 42 is arranged between each conveying part and the transition part, so as to limit the material conveyed by each conveying part, and make the transition part output a single or specified number of materials. The limiting assembly 4 further comprises a connecting frame 41 connected to the bottom of the edge of the accumulation member 1, that is, the connecting frame 41 is connected with the second mounting plate 11, and the second driving member is connected with the connecting frame 41, so as to fix the position of the second driving member and avoid occupying the ground position.
[0032] Referring to Figure 1 As shown, the limiting assembly 4 comprises a limiting plate 42 and a second driving member, the second driving member is a linear driving member, the limiting plate 42 is located between two adjacent conveying rollers 12, and the limiting plate 42 is located between the first conveying member 34 and the input end of the accumulation member 1, specifically, the limiting plate 42 is located between the conveying part and the transition part. The output end of the second driving member is connected with the limiting plate 42, the driving path of the second driving member is perpendicular to the conveying path of the accumulation member 1, so that the second driving member can drive the limiting plate 42 to rise and fall. The limiting assembly 4 is the same as the number of conveying parts, that is, the limiting plate 42 is arranged between each conveying part and the transition part, so as to limit the material conveyed by each conveying part, and make the transition part output a single or specified number of materials. The limiting assembly 4 further comprises a connecting frame 41 connected to the bottom of the edge of the accumulation member 1, that is, the connecting frame 41 is connected with the second mounting plate 11, and the second driving member is connected with the connecting frame 41, so as to fix the position of the second driving member and avoid occupying the ground position.
[0033] In use, the material to be conveyed is placed on the conveying roller 12 of the conveying part of the accumulation member 1, and the material to be conveyed is conveyed by the conveying roller 12, and a plurality of materials can be placed on the conveying part and contact each other. The second driving member drives the limiting plate 42 to rise, so that the limiting plate 42 is located on the conveying path of the accumulation member 1, and the material to be conveyed abuts against the limiting plate 42 during movement on the accumulation member 1. At this time, the material to be conveyed is located close to the first conveying member 34. When it is necessary to output the material to be conveyed, the second driving member drives the limiting plate 42 to descend, and the conveying roller 12 drives the material to be conveyed to move to the transition part. After the material to be conveyed is completely moved to the transition part, the second driving member drives the limiting plate 42 to rise, thereby blocking the subsequent material to be conveyed and preventing a plurality of materials to be conveyed from moving to the transition part. The transition part drives the material to be conveyed to move above the first conveying member 34, the first driving member 31 drives the first conveying member 34 to rise, so that there is a gap between the material to be conveyed and the conveying roller 12. The first conveying member 34 drives the material to be conveyed to move to the second conveying member 2, thereby completing the output of the material to be conveyed, and the second conveying member 2 drives the material to continue to move.
[0034] The utility model discloses a kind of accumulated and placed line material separation devices, by the cooperation of first driving element 31 and first conveying element 34, make the material to be conveyed can be separated from accumulated and placed piece 1 and drive the material to be conveyed complete transfer, by the cooperation of second driving element and limit plate 42, specified number of material can be located on first conveying element 34, to complete the output of specified number material, the material to be conveyed on accumulated and placed piece 1 does not need certain distance, to reduce the number of required accumulated and placed piece 1, to further reduce the overall floor area of accumulated and placed line.
[0035] Obviously, the above embodiments are only examples for clearly illustrating, not limiting the embodiments. For those skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, all the embodiments need not and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.
Claims
1. A coil material separating device characterized by comprising: The application relates to a conveying device for conveying a plurality of articles, comprising: a storage part comprising a plurality of conveying rollers; a transfer assembly comprising a first driving part and a first conveying part, the first conveying part being located between two adjacent conveying rollers, the output end of the first driving part being connected with the first conveying part, and the driving path of the first driving part being perpendicular to the conveying path of the storage part; a limiting assembly comprising a limiting plate and a second driving part, the limiting plate being located between two adjacent conveying rollers and between the first conveying part and the input end of the storage part, the output end of the second driving part being connected with the limiting plate, and the driving path of the second driving part being perpendicular to the conveying path of the storage part.
2. The accumulator line material separation device of claim 1, wherein: The storage part comprises a transition part and at least two conveying parts, the transition part being located between the conveying parts, the first conveying part being located in the transition part, and the limiting plate being located between the conveying part and the transition part.
3. The accumulator line material separation device of claim 2, wherein: The number of limiting assemblies is the same as that of the conveying parts, and a limiting plate is arranged between each conveying part and the transition part.
4. The accumulator line material separation device of claim 1, wherein: The conveying device further comprises a second conveying part, the conveying path of the second conveying part being communicated with the conveying path of the storage part, and the conveying path of the first conveying part being capable of being communicated with the conveying path of the second conveying part.
5. The accumulator line material separation device of claim 4, wherein: The second conveying part is connected with a blocking part at the end far away from the storage part, and the blocking part is located at the end of the conveying path of the second conveying part.
6. The accumulator line material separation device of claim 1, wherein: The limiting assembly further comprises a connecting frame, the connecting frame being connected with the storage part, and the second driving part being connected with the connecting frame.
7. The accumulator line material separation device of claim 1, wherein: The output end of the first driving part is connected with a connecting plate, the connecting plate is connected with a first mounting plate, and the first conveying part is connected between two first mounting plates.
8. The accumulator line material separation device of claim 1, wherein: The storage part further comprises a second mounting plate, the conveying rollers are connected between two second mounting plates, and a transmission belt is sleeved on two adjacent conveying rollers.
9. The accumulator line material separation device of claim 8, wherein: The second mounting plate is provided with a bayonet, the end of the conveying roller is connected with a clamping block, and the clamping block is clamped with the bayonet.
10. The accumulator line material separation device of claim 8, wherein: The conveying roller is provided with an anti-skid pattern, and the transmission belt is abutted with the anti-skid pattern.