Processing equipment for battery box

By designing a battery box processing equipment including a frame, tooling, a drive mechanism and a laser, the problems of low battery box processing efficiency, high cost and environmental pollution in the existing technology are solved, and an efficient, low-cost processing process and environmental protection are achieved.

CN223338626UActive Publication Date: 2025-09-16GUANGDONG ZHONGSEN IND DEV CO LTD
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Patent Information

Application Number
CN202422744024.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-09-16
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

The existing technology has low efficiency, frequent component damage, high maintenance costs and poor environmental cleanliness in battery box processing.

Method used

A battery box processing equipment is designed, which adopts a frame, a first tooling, a second tooling, a drive mechanism and a three-axis drive mechanism, and combines a laser to cut the battery box, and uses a dust removal mechanism to process the waste dust generated by cutting.

Benefits of technology

It improves the working efficiency of battery box processing, reduces component wear and maintenance costs, and maintains the cleanliness and safety of the environment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223338626U_ABST
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Abstract

The utility model discloses a battery box processing equipment, including frame, first frock, second frock, first drive mechanism, second drive mechanism, triaxial drive mechanism, laser, be equipped with in the frame along its length direction distributed first guide rail and second guide rail, first frock and second frock are arranged side by side, the first frock is equipped on the first guide rail, the second frock is equipped on the second guide rail, the second frock is equipped on the second guide rail. The second tool is arranged on the second guide rail, the first driving mechanism is arranged on the left side of the rack, the first driving mechanism is connected with the first tool and used for driving the first tool to reciprocate along the first guide rail, the second driving mechanism is arranged on the right side of the rack, and the second driving mechanism is connected with the second tool and used for driving the second tool to reciprocate along the second guide rail. The three-axis driving mechanism is used for driving the second tool to reciprocate along the second guide rail and arranged on the top of the rack, and the laser is arranged on the three-axis driving mechanism. According to the utility model, the working efficiency can be improved, the cost is reduced and the environment cleanliness is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of battery box processing, in particular to a battery box processing device. Background Art

[0002] Battery boxes are used to secure and enclose the battery system, protecting the batteries from physical damage such as collisions and crushing, thereby increasing their lifespan and safety. During the battery box production process, cutting operations are required. Existing CNC lathes are used to process battery boxes, which is relatively inefficient, prone to component damage, and requires frequent replacement of damaged parts, resulting in high maintenance costs. Utility Model Content

[0003] The purpose of the present invention is to overcome the shortcomings of the prior art and provide a battery box processing device that improves work efficiency, reduces costs, and improves environmental cleanliness.

[0004] The utility model is realized by the following technical solutions: a battery box processing device, including a frame, a first tooling, a second tooling, a first driving mechanism, a second driving mechanism, a three-axis driving mechanism, and a laser;

[0005] The frame is provided with a first guide rail and a second guide rail distributed along the length direction thereof;

[0006] The first tooling and the second tooling are arranged side by side, and the first tooling is arranged on the first guide rail, and the second tooling is arranged on the second guide rail;

[0007] The first driving mechanism is disposed on the left side of the frame and is connected to the first tooling, and is used to drive the first tooling to reciprocate along the first guide rail;

[0008] The second driving mechanism is arranged on the right side of the frame, and the second driving mechanism is connected to the second tooling, and is used to drive the second tooling to reciprocate along the second guide rail;

[0009] The three-axis driving mechanism is arranged on the top of the frame, and the laser is arranged on the three-axis driving mechanism.

[0010] Furthermore: the first drive mechanism and the second drive mechanism have the same structure, respectively including a motor, a drive gear, a transmission gear, and a transmission chain. The motor is arranged on the outer wall of the frame, the drive gear and the transmission gear are rotatably arranged on the inner wall of the frame, the transmission chain is sleeved on the drive gear and the transmission gear, the motor is connected to the drive gear, the transmission chain of the first drive mechanism is connected to the first tooling, and the transmission chain of the second drive mechanism is connected to the second tooling.

[0011] Furthermore: the three-axis drive mechanism includes an X-axis electric cylinder, a Y-axis electric cylinder, and a Z-axis electric cylinder. There are two X-axis electric cylinders, which are respectively arranged on the left and right sides of the top of the frame. The Y-axis electric cylinder spans the length direction of the frame, and the two ends of the Y-axis electric cylinder are respectively connected to the output ends of the two X-axis electric cylinders, the Z-axis electric cylinder is connected to the output end of the Y-axis electric cylinder, and the laser is connected to the output end of the Z-axis electric cylinder.

[0012] Furthermore: it also includes a first waste storage bin and a second waste storage bin, the first waste storage bin and the second waste storage bin are arranged side by side in the frame, and the first waste storage bin is located on the movement track of the first tooling, the second waste storage bin is located on the movement track of the second tooling, and the first waste storage bin and the second waste storage bin are respectively connected to the dust removal mechanism.

[0013] Furthermore: the dust removal mechanism includes a dust removal pipe and a dust removal fan connected to each other, and the dust removal pipe is connected to the first waste storage bin and the second waste storage bin respectively.

[0014] Furthermore: the dust removal fan is arranged beside the outer side of the frame.

[0015] Furthermore: protective nets are provided on the left and right sides of the frame.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. A first tooling and a second tooling are arranged in a frame, the first tooling is driven to move by a first driving mechanism, and the second tooling is driven to move by a second driving mechanism. A laser is arranged on a three-axis driving mechanism, and battery boxes are placed on the first tooling and the second tooling respectively. The first tooling and the second tooling are used to move the battery boxes into place, and the three-axis driving mechanism drives the laser to cut the battery boxes on the first tooling and the second tooling in turn, thereby realizing cutting of the battery boxes by laser, and the first tooling and the second tooling are used to load and unload materials in turn, thereby improving work efficiency, reducing component wear, and reducing costs.

[0018] 2. By setting up a first waste storage bin and a second waste storage bin connected to the dust removal pipe, the dust removal pipe is connected to the dust removal fan, and the waste residue dust generated by cutting the battery box on the first tooling falls into the first waste storage bin, and the waste residue dust generated by cutting the battery box on the second tooling falls into the second waste storage bin. The dust removal fan and the dust removal fan are used to remove the waste residue dust in the first waste storage bin and the second waste storage bin to prevent dust from flying and polluting the environment.

[0019] 3. By setting up protective nets on both sides of the frame, production safety can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of the present utility model.

[0021] Explanation of the accompanying drawings: 1-frame, 2-first tooling, 3-second tooling, 4-first driving mechanism, 5-second driving mechanism, 6-three-axis driving mechanism, 7-laser, 8-first guide rail, 9-second guide rail, 10-motor, 11-transmission gear, 12-transmission chain, 13-X-axis electric cylinder, 14-Y-axis electric cylinder, 15-Z-axis electric cylinder, 16-first waste storage bin, 17-second waste storage bin, 18-dust removal duct, 19-dust removal fan, 20-protective net. DETAILED DESCRIPTION

[0022] Figure 1 This is a schematic structural diagram of an embodiment of a battery box processing equipment provided by the present invention, which includes a frame 1, a first tooling 2, a second tooling 3, a first drive mechanism 4, a second drive mechanism 5, a three-axis drive mechanism 6, and a laser 7.

[0023] The frame 1 is provided with a first guide rail 8 and a second guide rail 9 distributed along the length direction thereof.

[0024] The first tooling 2 and the second tooling 3 are arranged side by side, and the first tooling 2 is arranged on the first guide rail 8 , and the second tooling 3 is arranged on the second guide rail 9 .

[0025] The first driving mechanism 4 is disposed on the left side of the frame 1 , and is connected to the first tooling 2 , for driving the first tooling 2 to reciprocate along the first guide rail 8 .

[0026] The second driving mechanism 5 is disposed on the right side of the frame 1 , and is connected to the second tooling 3 , for driving the second tooling 3 to reciprocate along the second guide rail 9 .

[0027] The three-axis driving mechanism 6 is arranged on the top of the frame 1 , and the laser 7 is arranged on the three-axis driving mechanism 6 .

[0028] The dimensions of the rack 1 are 6600×4400×2600 mm.

[0029] The first driving mechanism 4 and the second driving mechanism 5 have the same structure, and respectively include a motor 10, a driving gear, a transmission gear 11, and a transmission chain 12. The motor 10 is arranged on the outer wall of the frame 1, and the driving gear and the transmission gear 11 are rotatably arranged on the inner wall of the frame 1. The transmission chain 12 is sleeved on the driving gear and the transmission gear 11. The motor 10 is connected to the driving gear. The transmission chain 12 of the first driving mechanism 4 is connected to the first tooling 2, and the transmission chain 12 of the second driving mechanism 5 is connected to the second tooling 3.

[0030] The three-axis drive mechanism 6 includes an X-axis electric cylinder 13, a Y-axis electric cylinder 14, and a Z-axis electric cylinder 15. Two X-axis electric cylinders 13 are provided, and the two X-axis electric cylinders 13 are respectively arranged on the left and right sides of the top of the frame 1. The Y-axis electric cylinder 14 spans the length direction of the frame 1, and the two ends of the Y-axis electric cylinder 14 are respectively connected to the output ends of the two X-axis electric cylinders 13, the Z-axis electric cylinder 15 is connected to the output end of the Y-axis electric cylinder 14, and the laser 7 is connected to the output end of the Z-axis electric cylinder 15.

[0031] It also includes a first waste storage bin 16 and a second waste storage bin 17. The first waste storage bin 16 and the second waste storage bin 17 are arranged side by side in the frame 1, and the first waste storage bin 16 is located on the movement track of the first tooling 2, and the second waste storage bin 17 is located on the movement track of the second tooling 3. The first waste storage bin 16 and the second waste storage bin 17 are respectively connected to the dust removal mechanism.

[0032] The dust removal mechanism includes a dust removal duct 18 and a dust removal fan 19 that are connected to each other. The dust removal duct 18 is connected to the first waste storage bin 16 and the second waste storage bin 17 respectively.

[0033] The dust removal fan 19 is arranged beside the outer side of the frame 1.

[0034] Protection nets 20 are provided on the left and right sides of the frame 1 .

[0035] Working principle: The battery box is manually placed on the first tooling 2, and the motor 10 of the first drive mechanism 4 drives the transmission chain 12 to rotate through the drive gear. The transmission chain 12 drives the first tooling 2 to move along the first guide rail 8 toward the direction close to the laser 7, and the first tooling 2 drives the battery box to move to the top of the first waste storage bin 16. Under the joint action of the X-axis electric cylinder 13, the Y-axis electric cylinder 14 and the Z-axis electric cylinder 15, the laser 7 is driven to cut the battery box on the first tooling 2. The battery box is manually placed on the second tooling 3. After the laser 7 finishes cutting the battery box on the first tooling 2, the first drive mechanism 4 drives the first tooling 2 to move to the direction close to the laser 7. The tool 2 moves back to the front end of the frame 1, and after the battery box that has been cut on the first tool 2 is unloaded, the battery box to be cut is placed on the first tool 2; at the same time, the motor 10 of the second drive mechanism 5 drives the transmission chain 12 to rotate through the driving gear, and the transmission chain 12 drives the second tool 3 to move along the second guide rail 9 toward the direction close to the laser 7, and makes the second tool 3 drive the battery box to move to the top of the second waste storage bin 17, and under the joint action of the X-axis electric cylinder 13, the Y-axis electric cylinder 14 and the Z-axis electric cylinder 15, the laser 7 is driven to cut the battery box on the second tool 3, and this reciprocating motion is used to achieve cutting of the battery box.

[0036] The dust removal fan 19 and the dust removal duct 18 are used to remove the debris and dust that falls into the first waste storage bin 16 and the second waste storage bin 17 during cutting, thereby preventing dust from flying and causing pollution to the environment.

[0037] The above detailed description is a specific description of a feasible embodiment of the present invention. The embodiment is not intended to limit the patent scope of the present invention. Any equivalent implementation or modification that does not depart from the present invention should be included in the patent scope of this case.

Claims

1. A battery box processing equipment, characterized by: It includes a frame, a first tooling, a second tooling, a first driving mechanism, a second driving mechanism, a three-axis driving mechanism, and a laser; The frame is provided with a first guide rail and a second guide rail distributed along the length direction thereof; The first tooling and the second tooling are arranged side by side, and the first tooling is arranged on the first guide rail, and the second tooling is arranged on the second guide rail; The first driving mechanism is disposed on the left side of the frame and is connected to the first tooling, and is used to drive the first tooling to reciprocate along the first guide rail; The second driving mechanism is arranged on the right side of the frame, and the second driving mechanism is connected to the second tooling, and is used to drive the second tooling to reciprocate along the second guide rail; The three-axis driving mechanism is arranged on the top of the frame, and the laser is arranged on the three-axis driving mechanism.

2. The battery box processing equipment according to claim 1, characterized in that: The first driving mechanism and the second driving mechanism have the same structure and respectively include a motor, a driving gear, a transmission gear, and a transmission chain. The motor is arranged on the outer side wall of the frame, the driving gear and the transmission gear are rotatably arranged on the inner side wall of the frame, the transmission chain is sleeved on the driving gear and the transmission gear, the motor is connected to the driving gear, the transmission chain of the first driving mechanism is connected to the first tooling, and the transmission chain of the second driving mechanism is connected to the second tooling.

3. The battery box processing equipment according to claim 2, characterized in that: The three-axis drive mechanism includes an X-axis electric cylinder, a Y-axis electric cylinder, and a Z-axis electric cylinder. Two X-axis electric cylinders are provided, and the two X-axis electric cylinders are respectively arranged on the left and right sides of the top of the frame. The Y-axis electric cylinder spans the length direction of the frame, and the two ends of the Y-axis electric cylinder are respectively connected to the output ends of the two X-axis electric cylinders, the Z-axis electric cylinder is connected to the output end of the Y-axis electric cylinder, and the laser is connected to the output end of the Z-axis electric cylinder.

4. The battery box processing equipment according to claim 3, characterized in that: It also includes a first waste storage bin and a second waste storage bin, the first waste storage bin and the second waste storage bin are arranged side by side in the frame, and the first waste storage bin is located on the movement track of the first tooling, and the second waste storage bin is located on the movement track of the second tooling, and the first waste storage bin and the second waste storage bin are respectively connected to the dust removal mechanism.

5. The battery box processing equipment according to claim 4, characterized in that: The dust removal mechanism includes a dust removal pipe and a dust removal fan connected to each other, and the dust removal pipe is connected to the first waste storage bin and the second waste storage bin respectively.

6. The battery box processing equipment according to claim 5, characterized in that: The dust removal fan is arranged beside the outer side of the frame.

7. The battery box processing equipment according to claim 5, characterized in that: Protective nets are provided on the left and right sides of the frame.