Bluetooth battery pitch changing structure

Through the Bluetooth battery variable distance structure, the cam notch and cylinder-driven cam follower realize synchronous variable distance of multiple sets of Bluetooth batteries, solving the problem of low production efficiency of lithium batteries in the electrolyte injection process and improving the grab and feeding efficiency.

CN223218327UActive Publication Date: 2025-08-12GUANGDONG DIREDA INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202421994855.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-08-12
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

Bluetooth lithium batteries are closely arranged in the electrolyte injection process due to their small size, making it difficult to grab multiple at once and vary the distance to the liquid injection seal, resulting in difficulty in improving production efficiency.

Method used

A Bluetooth battery variable distance structure is adopted, including mounting plate, adjustment components and cylinders. The synchronous variable distance of multiple groups of Bluetooth batteries is achieved through cam notches and cam followers driven by cylinders, adapting to different liquid injection space and sealing interval requirements.

Benefits of technology

The simultaneous distance variation of multiple sets of Bluetooth batteries is achieved, which improves the grabbing efficiency and the feeding efficiency of liquid injection equipment, which is highly adaptable and meets different processing needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of Bluetooth battery processing, and discloses a Bluetooth battery variable pitch structure which comprises a mounting plate, an adjusting assembly is arranged at the bottom end of the mounting plate, the adjusting assembly comprises a plane cam plate, the top end of the plane cam plate penetrates through and is provided with a cam notch, the bottom end of the mounting plate is fixedly connected with a second linear guide rail, and the second linear guide rail is fixedly connected with a third linear guide rail. A second linear guide rail sliding block is slidably connected to the bottom end of the second linear guide rail and fixedly installed at the top end of the plane cam plate, and an air cylinder installation base is fixedly connected to the middle of the bottom end of the installation plate. According to the device, the air cylinder is started to enable the cam follower to slide in the cam notch, the middle of the cam notch is arranged to be inclined, so that the cam follower can move left and right to be adjusted, the multiple sets of variable-pitch sliding blocks and the multiple sets of Bluetooth batteries are driven to change pitches at the same time, the whole Bluetooth batteries can change pitches at a time, and the grabbing efficiency is improved; and the feeding efficiency of the liquid injection equipment is improved, and the production efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the field of Bluetooth battery processing, in particular to a Bluetooth battery variable distance structure. Background Art

[0002] In today's highly digital and intelligent society, Bluetooth technology has been deeply integrated into people's daily lives and work scenes due to its convenient and efficient wireless connection characteristics. From wireless headphones and smart watches to smart home devices, the widespread use of Bluetooth devices has greatly improved people's quality of life and work efficiency. However, as the core power source of Bluetooth devices, the electrolyte injection process of Bluetooth lithium batteries faces a series of difficult problems.

[0003] In the electrolyte injection process, Bluetooth lithium batteries are closely arranged in the material box due to their small size. During the grabbing and loading process, it is difficult to grab multiple batteries at one time and change the distance to the interval required for liquid injection and sealing. Therefore, it is difficult to improve production efficiency. Therefore, a Bluetooth battery variable distance structure is proposed to solve the above problem. Utility Model Content

[0004] In order to make up for the above shortcomings, the utility model provides a Bluetooth battery variable distance structure, which aims to improve the problem in the existing technology that "in the electrolyte injection process, Bluetooth lithium batteries are arranged closely in the material box due to their small size, and it is difficult to grab multiple batteries at one time and change the distance to the interval required for liquid injection and sealing, which makes it difficult to improve production efficiency."

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical solutions: a Bluetooth battery variable distance structure, comprising a mounting plate, an adjustment component is provided at the bottom end of the mounting plate, the adjustment component comprises a planar cam plate, the top end of the planar cam plate passes through and is provided with a cam slot, the bottom end of the mounting plate is fixedly connected to a linear guide rail 2, the bottom end of the linear guide rail 2 is slidably connected to a linear guide rail slider 2, the linear guide rail slider 2 is fixedly installed on the top end of the planar cam plate, the middle part of the bottom end of the mounting plate is fixedly connected to a cylinder mounting seat, the top end of the mounting plate is provided with a support component, the support component comprises a variable distance slider, and the variable distance slider is provided at the top end of the mounting plate.

[0006] As a further description of the above technical solution:

[0007] The support assembly also includes a linear guide rail 1, which is fixedly mounted on the top of the mounting plate, and the top of the linear guide rail 1 is slidably connected to a linear guide rail slider 1.

[0008] As a further description of the above technical solution:

[0009] The rear surface of the cylinder mounting seat is fixedly mounted with a cylinder, and the rear surface of the output shaft of the cylinder is fixedly connected with a cylinder joint.

[0010] As a further description of the above technical solution:

[0011] A cylinder joint seat is fixedly mounted on the rear surface of the cylinder joint, and the cylinder joint seat is fixedly mounted on the bottom end of the plane cam plate.

[0012] As a further description of the above technical solution:

[0013] The middle portion of the cam slot is arranged in an inclined shape.

[0014] As a further description of the above technical solution:

[0015] The inner wall of the cam slot is slidably connected with a cam follower, the top end of the cam follower is fixedly mounted with a cam follower seat, and the cam follower seat is fixedly mounted on the bottom end of the variable pitch sliding block.

[0016] As a further description of the above technical solution:

[0017] The variable pitch slider is fixedly mounted on the top end of the linear guide slider 1, and a battery placement seat is fixedly mounted on the top end of the variable pitch slider.

[0018] As a further description of the above technical solution:

[0019] A battery support block is fixedly installed on the top of the battery placement seat and is provided with two groups. A Bluetooth battery is provided between the top of the battery placement seat near the two groups of battery support blocks. The cam follower, cam notch, cam follower seat, variable pitch slider, battery placement seat, and Bluetooth battery are provided in multiple groups, and multiple groups of the cam followers, cam notches, cam follower seats, variable pitch sliders, battery placement seats, and Bluetooth batteries are all arranged on the mounting plate.

[0020] The utility model has the following beneficial effects:

[0021] 1. In the present invention, by starting the air cylinder, the cam follower is slidably connected in the cam slot, and the middle part of the cam slot is set to an inclined shape, so that the cam follower can be moved left and right for adjustment, driving multiple groups of variable pitch sliders to move, thereby driving multiple groups of Bluetooth batteries to change pitch at the same time. By performing a whole-body pitch change on multiple Bluetooth batteries grabbed from the material box, the grabbing efficiency is improved, thereby improving the feeding efficiency of the liquid injection equipment and improving production efficiency.

[0022] 2. In the present invention, by setting the cam slot, the width of the cam slot can be designed as required to adapt to the injection space and sealing interval requirements of batteries of different sizes. In addition, by designing multiple cam slots, the number of cam slots can be freely designed, and multiple batteries can be distance-changed at one time to adapt to different processing requirements, with good applicability. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a right side schematic diagram of the three-dimensional structure of the overall device in the present utility model;

[0024] Figure 2 This is a schematic diagram of the bottom of the three-dimensional structure of the mounting plate in the present invention;

[0025] Figure 3 It is a schematic diagram of the three-dimensional structure of the overall device in the utility model.

[0026] Legend:

[0027] 1. Battery support block; 2. Battery placement seat; 3. Variable pitch slider; 4. Mounting plate; 5. Linear guide slider 1; 6. Linear guide 1; 7. Planar cam plate; 8. Linear guide 2; 9. Cylinder mounting seat; 10. Cylinder; 11. Cam follower seat; 12. Linear guide slider 2; 13. Cam follower; 14. Cylinder joint seat; 15. Cylinder joint; 16. Bluetooth battery. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] Reference Figure 1 、 Figure 2 and Figure 3, an embodiment provided by the utility model: a Bluetooth battery variable distance structure, including a mounting plate 4 that provides support, an adjusting component is provided at the bottom end of the mounting plate 4, the adjusting component includes a flat cam plate 7 that cooperates with the cam notch to play a guiding role, the top of the flat cam plate 7 passes through and is provided with a cam notch, multiple groups of cam notches are provided, and the number of cam notches can be freely designed, multiple batteries can be varied at a time, the width of the cam notches can be designed as needed, and it can adapt to the injection space and sealing interval requirements of batteries of different sizes. The number and interval of the cam notches can be designed as needed to adapt to different processing requirements, and the applicability is good. The bottom end of the mounting plate 4 is fixedly connected with a supporting straight line The linear guide rail 28 of the guide rail slider 212 is vertically arranged, which can make the linear guide rail slider 212 move forward and backward. The bottom end of the linear guide rail 28 is slidably connected to the linear guide rail slider 212 supporting the plane cam plate 7. The linear guide rail slider 212 is fixedly installed on the top of the plane cam plate 7. The middle part of the bottom end of the mounting plate 4 is fixedly connected to the cylinder mounting seat 9 supporting the cylinder 10. The top of the mounting plate 4 is provided with a support assembly, and the support assembly includes a variable distance slider 3 supporting multiple groups of battery placement seats 2. The variable distance slider 3 can be set in multiple groups as required to form a linkage to realize the variable distance of multiple groups of Bluetooth batteries 16. The variable distance slider 3 is set at the top of the mounting plate 4.

[0030] Reference Figure 1 、 Figure 2 and Figure 3 The support assembly also includes a linear guide rail 6 supporting a linear guide slider 5. The linear guide rail 6 is arranged horizontally, which can enable the linear guide slider 5 to move left and right. The linear guide rail 6 is fixedly installed on the top of the mounting plate 4. The top of the linear guide rail 6 is slidably connected to the linear guide slider 5 supporting the variable pitch slider 3.

[0031] Reference Figure 1 、 Figure 2 and Figure 3 The rear surface of the cylinder mounting seat 9 is fixedly installed with a cylinder 10 which can drive the cylinder joint 15 and the cylinder joint seat 14 to move through the output shaft of the cylinder 10 and drive the plane cam plate 7 to move at the same time. The rear surface of the output shaft of the cylinder 10 is fixedly connected with a cylinder joint 15 which drives the cylinder joint seat 14 to move. The rear surface of the cylinder joint 15 is fixedly installed with a cylinder joint seat 14 which drives the plane cam plate 7 to move. The cylinder joint seat 14 is fixedly installed on the bottom end of the plane cam plate 7. The middle part of the cam slot is set to an inclined shape. The middle part of the cam slot is set to an inclined shape, so that when the plane cam plate 7 moves, the cam slot is driven to squeeze the cam follower 13, and the cam follower 13 can only move left and right, so that multiple groups of cam followers 13 move obliquely along the inner walls of multiple groups of cam slots, thereby changing the pitch of multiple groups of Bluetooth batteries 16.

[0032] Reference Figure 1 、 Figure 2 and Figure 3 The inner wall of the cam groove is slidably connected with a cam follower 13 that drives the cam follower seat 11 to move. The top of the cam follower 13 is fixedly installed with a cam follower seat 11 that drives the variable pitch slider 3 to move. The cam follower seat 11 is fixedly installed on the bottom end of the variable pitch slider 3. The variable pitch slider 3 is fixedly installed on the top of the linear guide slider 5. The top of the variable pitch slider 3 is fixedly installed with a battery placement seat 2 that supports the Bluetooth battery 16. The top of the battery placement seat 2 is fixedly installed with a battery support block 1 and is set There are two groups, and a Bluetooth battery 16 is arranged between the top of the battery placement seat 2 near the two groups of battery support blocks 1. There are multiple groups of cam followers 13, cam slots, cam follower seats 11, variable pitch sliders 3, battery placement seats 2, and Bluetooth batteries 16, and multiple groups of cam followers 13, cam slots, cam follower seats 11, variable pitch sliders 3, battery placement seats 2, and Bluetooth batteries 16 are all arranged on the mounting plate 4. By setting up multiple groups, the distance of multiple groups of Bluetooth batteries 16 can be changed at the same time, thereby improving feeding efficiency.

[0033] Working principle: When in use, first, the Bluetooth battery 16 to be processed is placed on the battery placement seat 2.

[0034] When the pitch change operation is required, the cylinder 10 is started, and its output shaft drives the cylinder joint 15 and the cylinder joint seat 14 to move, thereby pushing the plane cam plate 7 to move. At the same time, the linear guide rail 2 8 and the linear guide slider 2 12 ensure that the plane cam plate 7 can move back and forth stably, providing accurate guidance and support for the pitch change operation. Since the middle part of the cam notch on the plane cam plate 7 is set to an inclined shape, when the plane cam plate 7 moves, the cam notch will squeeze the cam follower 13, and the cam follower 13 can only move left and right due to being restricted, thereby making Multiple groups of cam followers 13 move along the inclined inner walls of multiple groups of cam grooves. As the cam followers 13 move, the cam follower seat 11 at the top thereof will also move accordingly, thereby driving the variable pitch slider 3 to move left and right along the linear guide rail 6 under the support of the linear guide slider 5. The movement of the variable pitch slider 3 drives the battery placement seat 2 and the Bluetooth battery 16 thereon to change position, thereby achieving the purpose of variable pitch. Through such collaborative work, multiple groups of Bluetooth batteries 16 can achieve variable pitch at the same time, thereby improving the feeding efficiency and meeting different processing requirements.

[0035] When the originally closely arranged Bluetooth batteries 16 need to be adjusted to a larger spacing to accommodate the injection or sealing operation, this structure can quickly and accurately complete the distance change, thereby improving the efficiency and quality of the production process.

[0036] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A Bluetooth battery variable distance structure, comprising a mounting plate (4), characterized in that: The bottom end of the mounting plate (4) is provided with an adjustment assembly, the adjustment assembly includes a plane cam plate (7), the top end of the plane cam plate (7) is penetrated and provided with a cam slot, the bottom end of the mounting plate (4) is fixedly connected to a second linear guide rail (8), the bottom end of the second linear guide rail (8) is slidably connected to a second linear guide rail slider (12), the second linear guide rail slider (12) is fixedly mounted on the top end of the plane cam plate (7), the middle part of the bottom end of the mounting plate (4) is fixedly connected to a cylinder mounting seat (9), the top end of the mounting plate (4) is provided with a support assembly, the support assembly includes a variable distance slider (3), the variable distance slider (3) is arranged The top of the mounting plate (4) is fixedly mounted with a cylinder (10) on the rear surface of the cylinder mounting seat (9), the rear surface of the output shaft of the cylinder (10) is fixedly connected with a cylinder joint (15), the rear surface of the cylinder joint (15) is fixedly mounted with a cylinder joint seat (14), the cylinder joint seat (14) is fixedly mounted on the bottom end of the plane cam plate (7), the middle part of the cam slot is set to be inclined, the inner wall of the cam slot is slidably connected with a cam follower (13), the top of the cam follower (13) is fixedly mounted with a cam follower seat (11), and the cam follower seat (11) is fixedly mounted on the bottom end of the variable pitch slider (3).

2. The Bluetooth battery variable distance structure according to claim 1, characterized in that: The support assembly further comprises a linear guide rail (6), wherein the linear guide rail (6) is fixedly mounted on the top end of the mounting plate (4), and the top end of the linear guide rail (6) is slidably connected to a linear guide rail slider (5).

3. The Bluetooth battery variable distance structure according to claim 2, characterized in that: The variable pitch slider (3) is fixedly mounted on the top end of the linear guide slider (5), and a battery placement seat (2) is fixedly mounted on the top end of the variable pitch slider (3).

4. The Bluetooth battery variable distance structure according to claim 3, characterized in that: The top of the battery placement seat (2) is fixedly mounted with a battery support block (1) and is provided with two groups. The top of the battery placement seat (2) is provided with a Bluetooth battery (16) between the two groups of battery support blocks (1). The cam follower (13), cam notch, cam follower seat (11), variable pitch slider (3), battery placement seat (2), and Bluetooth battery (16) are provided in multiple groups, and the multiple groups of cam followers (13), cam notch, cam follower seat (11), variable pitch slider (3), battery placement seat (2), and Bluetooth battery (16) are all provided on the mounting plate (4).