Synchronous belt battery piece conveying mechanism with protrusion limiting structure of screen printing machine

By adopting a synchronous belt battery cell conveying mechanism with a raised limit structure in the screen printing machine, the problems of slippage and deviation of the battery cell conveying mechanism are solved, and high-precision and efficient battery cell conveying is achieved.

CN223327136UActive Publication Date: 2025-09-12LINTON KAYEX TECH CO LTD
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Patent Information

Application Number
CN202421915273.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-09-12
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

In the prior art, when the battery cell conveying mechanism of the screen printer adopts a flat belt for transmission, it is prone to slipping and deviation, which affects the transmission accuracy and speed and limits production efficiency.

Method used

A synchronous belt battery cell conveying mechanism with a raised limiting structure is adopted. By using a limited synchronous belt and active and passive synchronous wheels, the battery cells are stuck between the protrusions, ensuring transmission accuracy and increasing speed.

Benefits of technology

It achieves precise positioning and high-speed transmission of battery cells, improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223327136U_ABST
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Abstract

The utility model relates to a synchronous belt battery piece conveying mechanism with a bulge limiting structure of a screen printing machine, which is structurally characterized in that a transmission motor is arranged below a U-shaped bracket, one end of the U-shaped bracket is rotatably connected with a driving shaft in a penetrating manner, the middle part of the driving shaft is in transmission connection with the transmission motor, and driving synchronous wheels are respectively arranged at two ends of the driving shaft outside the U-shaped bracket; the two sides of the other end of the U-shaped support are rotationally connected with driven synchronous wheels respectively, limiting synchronous belts are installed between the corresponding driving synchronous wheels and the driven synchronous wheels, and the battery pieces are conveyed on the limiting synchronous belts on the two sides. An original flat belt and flat belt wheel structure is replaced by a synchronous belt and synchronous wheel structure, and slight slipping at the starting moment can be avoided. The mechanism has the advantages that the structural design is reasonable, a flat belt is replaced by the synchronous belt with the protrusions, the precision and the stability of the mechanism are improved, meanwhile, battery pieces can be clamped by the protrusions on the synchronous belt, the conveying speed can be increased after the battery pieces are limited, and the production efficiency can be effectively improved.
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Description

Technical Field

[0001] The utility model relates to a synchronous belt battery slice conveying mechanism with a raised limiting structure of a screen printing machine, belonging to the technical field of screen printing machines. Background Art

[0002] The existing screen printing machine battery cell conveying mechanism generally adopts flat belt transmission. Since the battery cells are light, they are prone to slipping and deviation when moving at high speed, affecting the transmission accuracy. The transmission speed is also limited, which is not conducive to improving production efficiency. Utility Model Content

[0003] The utility model provides a synchronous belt battery slice conveying mechanism with a raised limiting structure for a screen printing machine, which aims to overcome the above-mentioned shortcomings of the prior art and realize the limiting of the battery slices during conveyance.

[0004] The technical solution of this utility model is a synchronous belt battery cell conveying mechanism with a raised limiting structure for a screen printing machine. The structure includes a U-shaped bracket, a driving shaft, an active synchronous pulley, a passive synchronous pulley, and a limiting synchronous belt. A transmission motor is installed below the U-shaped bracket. One end of the U-shaped bracket is connected to the driving shaft through and rotatably. The middle of the driving shaft is connected to the transmission motor. Active synchronous pulleys are installed at both ends of the driving shaft on the outside of the U-shaped bracket. Passive synchronous pulleys are rotatably connected on both sides of the other end of the U-shaped bracket. A limiting synchronous belt is installed between the corresponding active and passive synchronous pulleys. The battery cells are conveyed on the limiting synchronous belts on both sides. Replacing the original flat belt and flat pulley structure with a synchronous belt and synchronous pulley structure can avoid slight slipping at the startup moment.

[0005] Preferably, the inner side of the position-limiting synchronous belt where it contacts the active and passive synchronous pulleys is smooth, and the outer side is provided with a plurality of protrusions. The spacing between adjacent protrusions on the position-limiting synchronous belt matches the size of the battery cells, so that the battery cells are stuck between the protrusions when conveyed on the position-limiting synchronous belt. Using a synchronous belt with protrusions allows the battery cells to be stuck between adjacent protrusions, ensuring conveying accuracy and improving conveying speed.

[0006] The advantages of this utility model are: reasonable structural design, replacing the flat belt with a synchronous belt with protrusions, while improving the accuracy and stability of the mechanism itself, the battery cells can be clamped by the protrusions on the synchronous belt, and after limiting the battery cells, the transmission speed can be increased, which can effectively improve production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1 The utility model is a structural diagram of a synchronous belt battery sheet conveying mechanism with a raised limiting structure of a screen printing machine.

[0008] Figure 2 yes Figure 1 Top view of .

[0009] Figure 3 yes Figure 1 、 2 Schematic diagram of the structure of the center limit synchronous belt.

[0010] In the figure, 1 is a U-shaped bracket, 2 is a driving shaft, 3 is a transmission motor, 4 is an active synchronous wheel, 5 is a passive synchronous wheel, 6 is a limiting synchronous belt, 7 is a protrusion, and 8 is a battery cell. DETAILED DESCRIPTION

[0011] The present invention will be further described in detail below with reference to the embodiments and specific implementation methods.

[0012] like Figure 1 、 2 As shown, a screen printing machine has a synchronous belt battery cell conveying mechanism with a raised limiting structure, whose structure includes a U-shaped bracket 1, a driving shaft 2, an active synchronous wheel 4, a passive synchronous wheel 5 and a limiting synchronous belt 6. A transmission motor 3 is installed under the U-shaped bracket 1, one end of the U-shaped bracket 1 is rotatably connected to the driving shaft 2, and the middle part of the driving shaft 2 is transmission-connected to the transmission motor 3. Active synchronous wheels 4 are respectively installed at both ends of the driving shaft 2 outside the U-shaped bracket 1, and passive synchronous wheels 5 are respectively rotatably connected on both sides of the other end of the U-shaped bracket 1. A limiting synchronous belt 6 is installed between the corresponding active synchronous wheels 4 and the passive synchronous wheels 5. The battery cell 8 is conveyed on the limiting synchronous belts 6 on both sides. The inner side of the limiting synchronous belt 6 in contact with the active synchronous wheel 4 and the passive synchronous wheel 5 is smooth, and a plurality of protrusions 7 are provided on the outer side. The spacing between two adjacent protrusions 7 on the limiting synchronous belt 6 matches the size of the battery cell 8. The battery cell 8 is stuck between the protrusions 7 when conveyed on the limiting synchronous belt 6.

[0013] Based on the above structure, the original flat belt and pulley structure (which suffers from slight slippage at startup) is replaced with a synchronous belt and pulley structure. The use of a synchronous belt with raised bumps allows the battery cells to be positioned between adjacent bumps, ensuring accurate transmission. Furthermore, because the battery cells are positioned at both ends, transmission speed is increased, reducing transmission CT.

[0014] The components described above are all prior art, and those skilled in the art can use any model and existing design that can achieve their corresponding functions.

[0015] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the creative concept of the present invention, which all fall within the scope of protection of the present invention.

Claims

1. A screen printing machine synchronous belt battery sheet conveying mechanism with a raised limiting structure, characterized in that: The invention comprises a U-shaped bracket (1), a driving shaft (2), a driving synchronous wheel (4), a passive synchronous wheel (5) and a limiting synchronous belt (6), wherein a transmission motor (3) is installed below the U-shaped bracket (1), one end of the U-shaped bracket (1) is connected to the driving shaft (2) in rotation, the middle of the driving shaft (2) is connected to the transmission motor (3), the two ends of the driving shaft (2) outside the U-shaped bracket (1) are respectively provided with driving synchronous wheels (4), and the two sides of the other end of the U-shaped bracket (1) are respectively connected to the passive synchronous wheels (5) in rotation. A limiting synchronous belt (6) is installed between the corresponding active synchronous wheel (4) and the passive synchronous wheel (5), and the battery cell (8) is transported on the limiting synchronous belt (6) on both sides; the inner side surface of the limiting synchronous belt (6) in contact with the active synchronous wheel (4) and the passive synchronous wheel (5) is smooth, and the outer side surface is provided with a plurality of protrusions (7), and the spacing between two adjacent protrusions (7) on the limiting synchronous belt (6) matches the size of the battery cell (8), and the battery cell (8) is stuck between the protrusions (7) when being transported on the limiting synchronous belt (6).