A multi-channel cup holder and battery transmission device
Through the multi-channel cup and battery transmission device, the flexible chain plate transmission designed by the drive and driven components is used to solve the problems of low transmission efficiency and poor stability of traditional equipment, and the efficient multi-channel transmission of the battery production line is achieved, thereby improving the battery production efficiency and quality.
Patent Information
- Application Number
- CN202311191687.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-15
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2043-09-15
AI Technical Summary
Traditional conveyor belt logistics conveyor equipment has low transmission efficiency and poor stability on battery manufacturing production lines, which cannot meet battery production efficiency and quality requirements, especially in processes such as battery sorting and detection. Multi-channel transmission cannot be achieved.
The multi-channel cup and battery transmission device are adopted, including a bracket, transmission assembly, drive assembly and driven assembly. Multi-channel transmission is formed on the transmission frame through a flexible chain plate. The design of the drive assembly and driven assembly is used to make the flexible chain plate in a tight state to achieve multi-channel stable transmission of the cup and battery.
It significantly improves transmission efficiency, stability and transmission distance, meets the multi-channel transmission requirements of production processes such as battery sorting and detection, and improves battery production efficiency and quality.
Smart Images

Figure CN117184768B_ABST
Abstract
Description
Technical Field
[0001] This patent belongs to the technical field of battery production equipment, and specifically relates to a multi-channel cup holder and a battery transmission device. Background Art
[0002] In a battery manufacturing production line, batteries usually need to be placed in cup holders for transmission. However, traditional logistics conveying equipment using conveyor belts has problems such as low transmission efficiency and poor transmission stability, and cannot meet the current higher requirements for battery production efficiency and quality; moreover, it also cannot meet the requirements of some battery production processes. For example, for battery sorting, detection and other production processes, multi-channel transmission of cup holders and batteries is usually required, while traditional conveyor belt logistics conveying equipment cannot meet this requirement. In view of the above problems, there is an urgent need to develop a new type of multi-channel cup holder and battery transmission device. Summary of the Invention
[0003] The purpose of this patent is to overcome the deficiencies of the prior art and provide a multi-channel cup holder and a battery transmission device, which can achieve multi-channel transmission of cup holders and batteries, significantly improve transmission efficiency, transmission stability and transmission distance, meet the requirements of multi-channel transmission of cup holders and batteries for battery sorting, detection and other production processes, and significantly improve battery production efficiency and quality.
[0004] To achieve the above purpose, this patent adopts the following technical solutions: A multi-channel cup holder and a battery transmission device, comprising: a bracket, a transmission component provided on the bracket, and a driving component; the transmission component includes a number of transmission frames; the transmission frames are provided on the bracket; the driving component is provided between the transmission frames and / or at the ends of the transmission frames.
[0005] Specifically, the transmission component further includes a channel frame provided on the transmission frame through a connecting member; a flexible chain plate is provided on the transmission frame; the flexible chain plate includes: a chain plate conveying part and a chain plate clamping part; the transmission frame has a first card slot for clamping the chain plate clamping part of the flexible chain plate; the chain plate conveying part of the flexible chain plate is located outside the first card slot, and the chain plate conveying part and the channel frame form a transmission channel for placing and transmitting cup holders and batteries.
[0006] Specifically, the driving component includes a driving motor and a number of driving component frames; a driving shaft is passed through the driving component frames, and a driving wheel is provided on the driving shaft; preferably, the driving wheel is a toothed driving wheel; the upper surface of the driving component frame is parallel to the upper surface of the transmission frame, and the lower surface of the driving component frame is in an arc shape; the driving component frame has a second card slot, and the chain plate clamping part passes through between the driving wheel and the second card slot, and the chain plate conveying part is located outside the second card slot; the driving motor drives the driving shaft to drive the driving wheel to rotate, and further drives the flexible chain plate to perform a transmission movement along the driving component frame and the transmission frame.
[0007] Specifically, by adopting the above technical solution, the transmission component structure forms several transmission channels. At the same time, the driving component is used to drive the flexible chain plate to perform a transmission movement along the driving component frame body and the transmission frame body. The cup holder and the battery are placed on the flexible chain plate in the transmission channel, thereby realizing the multi-channel stable transmission of the cup holder and the battery, significantly improving the transmission efficiency and transmission stability. In addition, through the structure of the driving component and the design arranged between and / or at the ends of the transmission frame bodies in the above technical solution, and the design that the lower surface of the driving component frame body is arc-shaped, the flexible chain plate is in a tensioned state when performing the transmission movement, significantly improving the transmission stability and the transmission distance of this transmission device. Therefore, by adopting the above technical solution, the multi-channel cup holder and battery transmission device realizes the multi-channel transmission of the cup holder and the battery, significantly improving the transmission efficiency, transmission stability and transmission distance, meeting the requirements of multi-channel transmission of the cup holder and the battery in production processes such as battery sorting and detection, and significantly improving the battery production efficiency and quality.
[0008] Furthermore, the multi-channel cup holder and battery transmission device of the above technical solution further includes a driven component; the driven component is arranged at the ends and / or between the transmission frame bodies; the driven component includes at least one driven component frame body; a driven shaft is passed through the driven component frame body, and a driven wheel is arranged on the driven shaft; the upper surface of the driven component frame body is parallel to the upper surface of the transmission frame body, and the lower surface of the driven component frame body is arc-shaped; the driven component frame body has a third card slot, and the chain plate clamping portion is passed through between the driven wheel and the third card slot, and the chain plate conveying portion is located outside the third card slot. By adopting the structure of the above driven component and the design arranged at the ends and / or between the transmission frame bodies, and the design that the lower surface of the driven component frame body is arc-shaped, the flexible chain plate is further in a tensioned state when performing the transmission movement, significantly improving the transmission stability and transmission distance of the cup holder and the battery.
[0009] Furthermore, the multi-channel cup holder and battery transmission device of the above technical solution further includes an insulating member; the insulating member is arranged on at least one of the first card slot, the second card slot, the third card slot, and the channel frame body; through the arrangement of the insulating member, it is convenient for the transmission movement of the flexible chain plate and the cup holder and the battery thereon.
[0010] Furthermore, a guiding member is arranged inside the channel frame body; the guiding member is used for guiding the transmission of the cup holder and the battery in the transmission channel. Preferably, the guiding member is an inverted L shape; thereby, while guiding the transmission of the cup holder and the battery in the transmission channel, the cup holder is clamped, and the cup holder is kept stable by clamping the cup holder.
[0011] Furthermore, at least one detection sensor is arranged on the channel frame body, which is used for detecting the transmission condition of the transmission channel; preferably, the detection sensor is at least one of a diffuse reflection sensor and an opposed sensor.
[0012] Furthermore, a horizontal extension member along the transmission channel and a vertical guiding member along the channel frame are provided at the end of the transmission frame; thereby ensuring the guiding and stability of the input or output of the multi-channel cup holder and battery transmission device in this technical solution for the cup holder and battery.
[0013] The beneficial effects of the multi-channel cup holder and battery transmission device provided by this patent are as follows: By adopting the above technical solution, the transmission component structure forms several transmission channels. At the same time, the driving component is used to drive the flexible chain plate to perform transmission movement along the driving component frame and the transmission frame. Further, through the design of the driving component and the driven component structure, the cup holder and battery are placed on the flexible chain plate in the transmission channel, realizing the multi-channel transmission of the cup holder and battery, significantly improving the transmission efficiency, transmission stability and transmission distance, meeting the requirements of battery production processes such as battery sorting and detection for the multi-channel transmission of the cup holder and battery, and significantly improving the battery production efficiency and quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] In order to more clearly illustrate the technical solutions in the embodiments of this patent, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of this patent. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings, where:
[0015] Figure 1 is a front view structural schematic diagram of a multi-channel cup holder and battery transmission device disclosed in an embodiment of this patent;
[0016] Figure 2 is a side view cross-sectional structural schematic diagram of a multi-channel cup holder and battery transmission device disclosed in an embodiment of this patent;
[0017] Figure 3 is a side view cross-sectional structural schematic diagram of the transmission frame in a multi-channel cup holder and battery transmission device disclosed in an embodiment of this patent;
[0018] Reference numeral description in the drawings: 1 - support, 2 - transmission component, 3 - driving component, 4 - driven component, 5 - insulating part, 201 - transmission frame, 202 - connecting part, 203 - channel frame, 204 - flexible chain plate, 2041 - chain plate conveying part, 2042 - chain plate clamping part, 205 - first card slot, 206 - transmission channel, 207 - guiding part, 208 - detection sensor, 209 - horizontal extension member, 210 - vertical guiding member, 301 - driving motor, 302 - driving component frame, 303 - driving shaft, 304 - driving wheel, 305 - second card slot, 401 - driven component frame, 402 - driven shaft, 403 - driven wheel, 404 - third card slot. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The following will clearly and completely describe the technical solutions in the embodiments of this patent in conjunction with the accompanying drawings in the embodiments of this patent. Obviously, the described embodiments are only a part of the embodiments of this patent, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in this patent without creative efforts shall fall within the scope of protection of this patent.
[0020] See Figures 1-3 , the embodiments of this patent disclose a multi-channel cup holder and battery transmission device, including a bracket 1 and a transmission component 2 provided thereon, and further including a driving component 3; the transmission component 2 includes a plurality of transmission frames 201; the transmission frames 201 are arranged on the bracket 1; the driving component 3 is arranged between the transmission frames 201 and / or at the ends of the transmission frames 201.
[0021] Specifically, see Figures 1-3 , the transmission component 2 further includes a channel frame 203 arranged on the transmission frame 201 through a connecting member 202; a flexible chain plate 204 is arranged on the transmission frame 201; the flexible chain plate 204 includes: a chain plate conveying portion 2041 and a chain plate clamping portion 2042; the transmission frame 201 has a first card slot 205, and the first card slot 205 is used for clamping the chain plate clamping portion 2042 of the flexible chain plate 204; the chain plate conveying portion 2041 of the flexible chain plate 204 is located outside the first card slot 205, and the chain plate conveying portion 2041 and the channel frame 203 form a transmission channel 206, and the transmission channel 206 is used for placing and transmitting cup holders and batteries.
[0022] Specifically, see Figure 1 , the driving component 3 includes a driving motor 301 and a plurality of driving component frames 302; a driving shaft 303 is passed through the driving component frames 302, and a driving wheel 304 is arranged on the driving shaft 303; preferably, the driving wheel 304 is a toothed driving wheel; the upper surface of the driving component frame 302 is parallel to the upper surface of the transmission frame 201, and the lower surface of the driving component frame 302 is in an arc shape; the driving component frame 302 has a second card slot 305, and the chain plate clamping portion 2042 passes through between the driving wheel 304 and the second card slot 305, and the chain plate conveying portion 2041 is located outside the second card slot 305; the driving motor 301 drives the driving shaft 303 to drive the driving wheel 304 to rotate, and further drives the flexible chain plate 204 to perform a transmission movement along the driving component frame 302 and the transmission frame 201.
[0023] Specifically, as Figure 2As shown, through the structure of the above-mentioned transmission component 2 in this embodiment, a number of transmission channels 206 are formed. At the same time, the driving component 3 is used to drive the flexible chain plate 204 to perform a transmission movement along the driving component frame body 302 and the transmission frame body 201. The cup holder and the battery are placed on the flexible chain plate 204 in the transmission channel 206, thereby realizing the multi-channel stable transmission of the cup holder and the battery, significantly improving the transmission efficiency and transmission stability. In addition, as Figure 1 shown, through the structure of the above-mentioned driving component 3 in this embodiment and the design arranged between the transmission frame bodies 201 and / or at the ends of the transmission frame bodies 201, and the design that the lower surface of the driving component frame body 302 is arc-shaped, when the flexible chain plate 204 performs a transmission movement, it is in a tensioned state, significantly improving the transmission stability and the transmission distance of this transmission device. Therefore, the above-mentioned multi-channel cup holder and battery transmission device in the embodiment of this patent realizes the multi-channel transmission of the cup holder and the battery, significantly improving the transmission efficiency, transmission stability and transmission distance, meeting the requirements of battery sorting, detection and other production processes for multi-channel transmission of the cup holder and the battery, and significantly improving the battery production efficiency and quality.
[0024] Furthermore, referring to Figure 1 , the above-mentioned multi-channel cup holder and battery transmission device further includes a driven component 4; the driven component 4 is arranged at the ends of the transmission frame body 201 and / or between the transmission frame bodies 201; the driven component 4 includes at least one driven component frame body 401; a driven shaft 402 is penetrated through the driven component frame body 401, and a driven wheel 403 is arranged on the driven shaft 402; the upper surface of the driven component frame body 401 is parallel to the upper surface of the transmission frame body 201, and the lower surface of the driven component frame body 401 is arc-shaped; the driven component frame body 401 has a third card slot 404, and the chain plate clamping portion 2042 is penetrated between the driven wheel 403 and the third card slot 404, and the chain plate conveying portion 2041 is located outside the third card slot 404. Thus, through the structure of the above-mentioned driven component 4 and the design arranged at the ends of the transmission frame body 201 and / or between the transmission frame bodies 201, and the design that the lower surface of the driven component frame body 401 is arc-shaped, the flexible chain plate 204 is further in a tensioned state when performing a transmission movement, significantly improving the transmission stability and transmission distance.
[0025] Furthermore, referring to Figures 1-2 , the above-mentioned multi-channel cup holder and battery transmission device further includes an insulating member 5; the insulating member 5 is arranged on at least one of the first card slot 205, the second card slot 305, the third card slot 404, and the channel frame body 203; through the arrangement of the insulating member 5, it is convenient for the transmission movement of the flexible chain plate 204 and the cup holder and the battery thereon.
[0026] Furthermore, referring to Figure 2, in this embodiment, a guiding member 207 is provided inside the channel frame 203; the guiding member 207 is used for guiding the transmission of the cup holder and the battery in the transmission channel 206. Preferably, the guiding member 207 is an inverted L shape; thus, while guiding the transmission of the cup holder and the battery in the transmission channel 206, the cup holder is clamped, and by clamping the cup holder, the cup holder is kept stable, which is convenient for performing some operations on the battery in the cup holder, such as grasping the battery from the cup holder or placing the battery in the cup holder.
[0027] Further, referring to Figure 1 , in this embodiment, at least one detection sensor 208 is provided on the channel frame 203 for detecting the transmission condition of the transmission channel 206; preferably, the detection sensor 208 is at least one of a diffuse reflection sensor and an opposed sensor.
[0028] Further, referring to Figure 1 , in this embodiment, a horizontal extension member 209 along the transmission channel 206 and a vertical guiding member 210 along the channel frame 203 are provided at the end of the transmission frame 201; thus, the guiding property and stability of inputting or outputting the cup holder and the battery of the multi-channel cup holder and battery transmission device described in this embodiment are ensured.
[0029] The above is only the implementation manner of the patent, and does not limit the patent scope of this patent. Any equivalent structure or equivalent process transformation made by using the content of this patent specification and drawings, or directly or indirectly applied in other related technical fields, shall be included in the patent protection scope of this patent by the same token.
Claims
1. A multi-channel cup and battery transmission device, comprising a bracket (1) and a transmission assembly (2) arranged thereon; the transmission assembly (2) comprises a plurality of transmission frames (201); the transmission frames (201) are arranged on the bracket (1); and the characteristics are: It also includes a driving component (3); the driving component (3) is arranged between the plurality of transmission frames (201) or at the end of the transmission frame (201); The transmission assembly (2) further comprises a channel frame (203) arranged on the transmission frame (201) via a connecting member (202); a flexible chain plate (204) is arranged on the transmission frame (201); the flexible chain plate (204) comprises: a chain plate conveying portion (2041) and a chain plate clamping portion (2042); the transmission frame (201) has a first clamping groove (205), and the first clamping groove (205) is used to clamp the chain plate clamping portion (2042) of the flexible chain plate (204); the chain plate conveying portion (2041) of the flexible chain plate (204) is located outside the first clamping groove (205), and the chain plate conveying portion (2041) and the channel frame (203) form a transmission channel (206); The driving assembly (3) comprises a driving motor (301) and a plurality of driving assembly frames (302); a driving shaft (303) is provided through the driving assembly frame (302), and a driving wheel (304) is provided on the driving shaft (303); the upper surface of the driving assembly frame (302) is parallel to the upper surface of the transmission frame (201), and the lower surface of the driving assembly frame (302) is an arc surface; the driving assembly frame (302) has a second card slot (305), the chain plate clamping portion (2042) is provided between the driving wheel (304) and the second card slot (305), and the chain plate conveying portion (2041) is located outside the second card slot (305); the driving motor (301) drives the driving shaft (303) to drive the driving wheel (304) to rotate, thereby driving the flexible chain plate (204) to perform transmission motion along the driving assembly frame (302) and the transmission frame (201); The driven assembly (4) further comprises a driven assembly (4); the driven assembly (4) is arranged at the end of the transmission frame (201) or between a plurality of the transmission frames (201); the driven assembly (4) comprises at least one driven assembly frame (401); a driven shaft (402) is passed through the driven assembly frame (401), and a driven wheel (403) is provided on the driven shaft (402); the upper surface of the driven assembly frame (401) is parallel to the upper surface of the transmission frame (201), and the lower surface of the driven assembly frame (401) is an arc surface; the driven assembly frame (401) has a third card slot (404), the chain plate clamping portion (2042) is passed through between the driven wheel (403) and the third card slot (404), and the chain plate conveying portion (2041) is located outside the third card slot (404); A guide member (207) is provided inside the channel frame (203).
2. A multi-channel cup and battery transmission device according to claim 1, characterized in that: It also includes an insulating member (5); the insulating member (5) is arranged on at least one of the first card slot (205), the second card slot (305), the third card slot (404), and the channel frame (203).
3. The multi-channel cup and battery transmission device according to claim 1, characterized in that: The driving wheel (304) is a toothed driving wheel.
4. The multi-channel cup and battery transmission device according to claim 1, characterized in that: The guide member (207) is in an inverted L shape.
5. The multi-channel cup and battery transmission device according to claim 1, characterized in that: At least one detection sensor (208) is provided on the channel frame (203) for detecting the transmission status of the transmission channel (206).
6. The multi-channel cup and battery transmission device according to claim 5, characterized in that: The detection sensor (208) is at least one of a diffuse reflection sensor and a through-beam sensor.
7. The multi-channel cup and battery transmission device according to claim 1, characterized in that: The end of the transmission frame (201) is provided with a horizontal extension piece (209) along the transmission channel (206) and a vertical guide piece (210) along the channel frame (203).
Citation Information
Patent Citations
Multi-channel supporting cup and battery transmission device
CN220787056U