A Bluetooth headset shell processing device

By designing a Bluetooth headphone shell processing device with multiple structures that cooperate with each other, the problem of cooling and shaping of traditional devices is solved, efficient processing and automatic unloading are achieved, and the function and convenience of the device are enhanced.

CN119172716BActive Publication Date: 2025-05-20GUANGDONG XIN QIAN CHAO INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202411456469.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-05-20
Estimated Expiration
2044-10-18

AI Technical Summary

Technical Problem

The traditional Bluetooth headphone case processing device takes a long time during the cooling and setting process, resulting in low processing efficiency.

Method used

A Bluetooth headphone housing processing device including a first anti-tilt bearing plate and a first deformable processing mechanism is designed. The device realizes two-stage unloading of first and then ejecting of materials through mutual cooperation of multiple structures, quickly cooling and automatic lossless unloading.

Benefits of technology

It improves the processing efficiency of the processing device, realizes rapid cooling and automated lossless unloading, and has anti-slip and warning functions, which is easy to carry and enhances the functions of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a Bluetooth headset shell processing device, which belongs to the technical field of Bluetooth headset production and processing. The device comprises a first anti-dumping load plate, and a plurality of elastic anti-slip fixing parts for anti-slip and shock-absorbing are arranged at both ends of the lower surface of the first anti-dumping load plate, and the first anti-dumping load plate is fixedly connected to the elastic anti-slip fixing parts. A second deformable processing mechanism is arranged above the first anti-dumping load plate, and a first deformable processing mechanism corresponding to the second deformable processing mechanism is arranged on the upper surface of the first anti-dumping load plate. The first deformable processing mechanism comprises an anti-dumping metal box, and the anti-dumping metal box is fixedly connected to the first anti-dumping load plate. Through the mutual cooperation of multiple structures, the Bluetooth headset shell is unloaded in two stages of first stripping and then pushing, thereby realizing rapid cooling and automatic non-destructive unloading of the Bluetooth headset shell, and improving the processing efficiency of the processing device.
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Description

Technical Field

[0001] The present invention belongs to the technical field of production and processing of Bluetooth headsets, and particularly relates to a processing device for the shell of a Bluetooth headset. Background Art

[0002] A Bluetooth headset applies Bluetooth technology to a hands-free headset, allowing users to be free from the bondage of wires and use it in various ways. During the production and processing of Bluetooth headsets, corresponding processing devices are required to process the shell.

[0003] Traditional processing devices include structures such as an upper mold, a lower mold, a bottom plate, a slider, a guide rod, a top plate, a compression spring, a top block, a support rod, a support plate, a hydraulic cylinder, a connecting block, a limiting rod, and a limiting block. The advantage of this processing device is that it can eject the formed Bluetooth headset shell.

[0004] However, during the use of traditional processing devices, it takes a relatively long time to cool and shape the workpiece located between the upper mold and the lower mold (during the cooling and shaping process, the upper mold is in the stamping position, otherwise the upward movement of the upper mold will drive the top block to move upward, causing the workpiece to deform), resulting in low processing efficiency of the processing device, which urgently needs improvement. Summary of the Invention

[0005] The purpose of the present invention is to provide a processing device for the shell of a Bluetooth headset to solve the problems raised in the above background art.

[0006] To achieve the above object, the present invention provides the following technical solution: A processing device for a Bluetooth headset housing, including a first anti-tipping bearing plate. At both ends of the lower surface of the first anti-tipping bearing plate, there are provided a number of elastic anti-slip fixing members for anti-slip and shock absorption. The first anti-tipping bearing plate is fixedly connected to the elastic anti-slip fixing members. Above the first anti-tipping bearing plate, there is provided a second deformable processing mechanism. On the upper surface of the first anti-tipping bearing plate, there is provided a first deformable processing mechanism corresponding to the second deformable processing mechanism. The first deformable processing mechanism includes an anti-tipping metal box. The anti-tipping metal box is fixedly connected to the first anti-tipping bearing plate. A movable lower mold is slidably connected to the top of the anti-tipping metal box. The movable lower mold penetrates through the top wall of the anti-tipping metal box. On both sides of the movable lower mold, there are provided a number of hollow limit transmission tubes. The hollow limit transmission tubes penetrate through the top wall of the anti-tipping metal box. The hollow limit transmission tubes are fixedly connected to the anti-tipping metal box. At both ends of the movable lower mold, there are provided a number of second braking metal parts corresponding to the hollow limit transmission tubes. The second braking metal parts are fixedly connected to the movable lower mold. The second braking metal parts are slidably connected to the hollow limit transmission tubes. On the inner wall of the anti-tipping metal box, there are provided a number of first braking metal parts for supporting the second braking metal parts. The first braking metal parts are fixedly connected to the anti-tipping metal box. At both ends of the movable lower mold, there is a movable ejector part in sealed sliding connection. The movable ejector part penetrates through the bottom wall of the movable lower mold. At both ends of the lower surface of the movable lower mold, there are provided a number of limit support metal frames for supporting the movable ejector part. The limit support metal frames are fixedly connected to the movable lower mold. At the bottom of the hollow limit transmission tubes, there are provided a number of first deformable transmission parts for height adjustment of the movable ejector part. The first deformable transmission parts are fixedly connected to the limit support metal frames.

[0007] As a further solution of the present invention: Inside the anti-tipping metal box, there is provided a lockable mounting plate. At both ends of the lockable mounting plate, there are provided a number of first material-passing holes corresponding to the limit support metal frames. On the upper surface of the lockable mounting plate, there are provided a number of movable knocking blocks for knocking the movable lower mold. On the lower surface of the lockable mounting plate, there are provided a number of first deformable driving parts for driving the lockable mounting plate to move towards the movable lower mold.

[0008] As a still further solution of the present invention: One end of the first deformable driving part is fixedly connected to the lockable mounting plate, and the other end of the first deformable driving part is fixedly connected to the anti-tipping metal box. At both ends of the lockable mounting plate, there are provided a number of anti-tilting protection tubes corresponding to the hollow limit transmission tubes.

[0009] As a further solution of the present invention: The anti-tilt protection tube penetrates through the lockable mounting plate and is fixedly connected to the lockable mounting plate. The movable knocking block is fixedly connected to the lockable mounting plate. A plurality of movable locking plates for fixing the lockable mounting plate are slidably connected to both ends of the anti-tipping metal box. On the side wall of the anti-tipping metal box, a plurality of second deformable driving members for driving the movable locking plate to move towards the movable lower die are provided.

[0010] As a further solution of the present invention: On the side wall of the anti-tipping metal box, a plurality of anti-deformation protection plates corresponding to the movable locking plates are further provided. The anti-deformation protection plates are slidably connected to the movable locking plates. A plurality of second material-passing holes corresponding to the anti-deformation protection plates are formed on the movable locking plates. The anti-deformation protection plates are fixedly connected to the anti-tipping metal box. One end of the second deformable driving member is fixedly connected to the movable locking plate, and the other end of the second deformable driving member is fixedly connected to the anti-tipping metal box.

[0011] As a further solution of the present invention: The second deformable processing mechanism includes a second anti-tipping bearing plate, which is fixedly connected to the hollow limit transmission tube. Below the second anti-tipping bearing plate, a movable unlocking plate for adjusting the position of the movable locking plate is provided. On the lower surface of the movable unlocking plate, a movable upper die corresponding to the movable lower die is provided. The movable upper die is fixedly connected to the movable unlocking plate. Above the movable upper die, a plurality of fourth deformable driving members for adjusting the height of the movable unlocking plate are provided.

[0012] As a further solution of the present invention: The fourth deformable driving member is fixedly connected to the second anti-tipping bearing plate and the movable unlocking plate. At both ends of the lower surface of the movable unlocking plate, a plurality of first movable pressing plates for adjusting the height of the lockable mounting plate are provided. The first movable pressing plates are fixedly connected to the movable unlocking plate, slidably connected to the anti-tipping metal box, and slidably connected to the second braking metal member.

[0013] As a further solution of the present invention: At both ends of the lower surface of the second anti-tipping bearing plate, a plurality of second deformable transmission members for cooperating with the hollow limit transmission tube to adjust the attitude of the first deformable transmission member are provided. At the bottom of the second deformable transmission member, a second movable pressing plate is provided. Below the second anti-tipping bearing plate, a plurality of third deformable driving members for driving the second movable pressing plate to move away from the second anti-tipping bearing plate are provided.

[0014] As a further solution of the present invention: A number of movable radiators are provided at both ends of the movable unlocking plate. The movable radiators penetrate through the movable unlocking plate and are fixedly connected to the movable unlocking plate. A number of anti-collision protection plates are provided at both ends of the lower surface of the second anti-tipping bearing plate.

[0015] As a further solution of the present invention: The anti-collision protection plate is fixedly connected to the second anti-tipping bearing plate. A number of detachable warning pieces for information display are provided on the side surface of the anti-collision protection plate. The detachable warning pieces are arranged at the bottom of the side surface of the anti-collision protection plate, and the anti-collision protection plate is fixedly connected to the detachable warning pieces.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is simple and easy to use. During use, through the mutual cooperation of multiple structures, a two-stage unloading of first stripping and then ejecting the Bluetooth headset shell is carried out, so as to realize the rapid cooling and automatic non-destructive unloading of the Bluetooth headset shell, improve the processing efficiency of the processing device. Secondly, the present invention has anti-slip and warning functions, and is convenient for handling, making the functions of the processing device more diverse, and is worthy of popularization and use. Brief Description of the Drawings

[0017] Figure 1 It is a structural schematic diagram of a processing device for a Bluetooth headset shell;

[0018] Figure 2 It is a structural schematic diagram of a first deformable processing mechanism in a processing device for a Bluetooth headset shell;

[0019] Figure 3 It is a structural schematic diagram of a movable locking plate in a processing device for a Bluetooth headset shell;

[0020] Figure 4 It is a structural schematic diagram of a movable lower mold in a processing device for a Bluetooth headset shell;

[0021] Figure 5 It is a structural schematic diagram of a second deformable processing mechanism in a processing device for a Bluetooth headset shell;

[0022] In the figure: 1 - First anti-tipping bearing plate, 2 - First deformable processing mechanism, 3 - Second deformable processing mechanism, 4 - Elastic anti-slip fixing piece, 20 - Anti-tipping metal box, 21 - First deformable driving piece, 22 - Lockable mounting plate, 23 - First material-passing hole, 24 - Anti-tilting protection tube, 25 - Second material-passing hole, 26 - Second deformable driving piece, 27 - Movable locking plate, 281 - Movable lower die, 282 - Hollow limiting transmission tube, 283 - Anti-deformation protection plate, 284 - First braking metal piece, 285 - Movable knocking block, 286 - First deformable transmission piece, 287 - Movable ejector, 288 - Second braking metal piece, 289 - Limiting support metal frame, 30 - First movable pressing plate, 31 - Second movable pressing plate, 32 - Second anti-tipping bearing plate, 33 - Third deformable driving piece, 34 - Fourth deformable driving piece, 35 - Second deformable transmission piece, 36 - Anti-collision protection plate, 37 - Detachable warning piece, 381 - Movable unlocking plate, 382 - Movable upper die, 383 - Movable radiator. Detailed implementation manner

[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0024] In the description of the present application, it should be noted that unless otherwise clearly defined and limited, the terms "installation", "connection", "connection", and "setting" should be understood in a broad sense. For example, it can be fixedly connected and set, or detachably connected and set, or integrally connected and set.

[0025] For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0026] Please refer to Figure 1 , this embodiment provides a processing device for a Bluetooth headset housing, including a first anti-tipping bearing plate 1. A plurality of elastic anti-slip fixing pieces 4 for anti-slip and shock absorption are arranged at both ends of the lower surface of the first anti-tipping bearing plate 1. The elastic anti-slip fixing pieces 4 are rubber plates or silicone plates. The first anti-tipping bearing plate 1 is fixedly connected to the elastic anti-slip fixing pieces 4. A second deformable processing mechanism 3 is arranged above the first anti-tipping bearing plate 1, and a first deformable processing mechanism 2 corresponding to the second deformable processing mechanism 3 is arranged on the upper surface of the first anti-tipping bearing plate 1.

[0027] Please refer to Figure 1 ,Figure 2 , Figure 3 and Figure 4 , in one embodiment, to make the use of the first deformable processing mechanism 2 more reliable, in this embodiment, preferably, the first deformable processing mechanism 2 includes an anti-tipping metal box 20, the anti-tipping metal box 20 is fixedly connected to the first anti-tipping bearing plate 1, a movable lower die 281 is slidably connected to the top of the anti-tipping metal box 20, the movable lower die 281 penetrates through the top wall of the anti-tipping metal box 20, several hollow limiting transmission tubes 282 are arranged on both sides of the movable lower die 281, the hollow limiting transmission tubes 282 penetrate through the top wall of the anti-tipping metal box 20, the hollow limiting transmission tubes 282 are fixedly connected to the anti-tipping metal box 20, several second braking metal parts 288 corresponding to the hollow limiting transmission tubes 282 are arranged at both ends of the movable lower die 281, the second braking metal parts 288 are steel plates, the second braking metal parts 288 are fixedly connected to the movable lower die 281, the second braking metal parts 288 are slidably connected to the hollow limiting transmission tubes 282, several first braking metal parts 284 for supporting the second braking metal parts 288 are arranged on the inner wall of the anti-tipping metal box 20, the first braking metal parts 284 are steel plates, the first braking metal parts 284 are fixedly connected to the anti-tipping metal box 20, movable ejecting parts 287 are hermetically slidably connected to both ends of the movable lower die 281, the movable ejecting parts 287 are steel plates, the movable ejecting parts 287 penetrate through the bottom wall of the movable lower die 281, several limiting support metal frames 289 for supporting the movable ejecting parts 287 are arranged at both ends of the lower surface of the movable lower die 281, the limiting support metal frames 289 are fixedly connected to the movable lower die 281, several first deformable transmission parts 286 for adjusting the height of the movable ejecting parts 287 are arranged at the bottom of the hollow limiting transmission tubes 282, the first deformable transmission parts 286 are piston hydraulic cylinders, and the first deformable transmission parts 286 are fixedly connected to the limiting support metal frames 289;

[0028] Please refer to Figure 2 , Figure 3 and Figure 4, in one embodiment, to make the functions of the first deformable processing mechanism 2 more diverse, in this embodiment, preferably, a lockable mounting plate 22 is provided inside the anti-tipping metal box 20. A number of first material-passing holes 23 corresponding to the limit support metal frame 289 are formed at both ends of the lockable mounting plate 22. A number of movable knocking blocks 285 for knocking the movable lower die 281 are arranged on the upper surface of the lockable mounting plate 22. The movable knocking blocks 285 are made of stainless steel. A number of first deformable driving members 21 for driving the lockable mounting plate 22 to move towards the movable lower die 281 are arranged on the lower surface of the lockable mounting plate 22. The first deformable driving members 21 are springs. One end of the first deformable driving member 21 is fixedly connected to the lockable mounting plate 22, and the other end of the first deformable driving member 21 is fixedly connected to the anti-tipping metal box 20. A number of anti-tilting protection tubes 24 corresponding to the hollow limit transmission tubes 282 are arranged at both ends of the lockable mounting plate 22. The anti-tilting protection tubes 24 penetrate through the lockable mounting plate 22;

[0029] Please refer to Figure 2 , Figure 3 and Figure 4 , in one embodiment, to make the functions of the first deformable processing mechanism 2 more diverse, in this embodiment, preferably, the anti-tilting protection tubes 24 are fixedly connected to the lockable mounting plate 22, the movable knocking blocks 285 are fixedly connected to the lockable mounting plate 22. A number of movable locking plates 27 for fixing the lockable mounting plate 22 are slidably connected to both ends of the anti-tipping metal box 20. A number of second deformable driving members 26 for driving the movable locking plates 27 to move towards the movable lower die 281 are arranged on the side wall of the anti-tipping metal box 20. The second deformable driving members 26 are springs. A number of anti-deformation protection plates 283 corresponding to the movable locking plates 27 are also arranged on the side wall of the anti-tipping metal box 20. The anti-deformation protection plates 283 are slidably connected to the movable locking plates 27. A number of second material-passing holes 25 corresponding to the anti-deformation protection plates 283 are formed on the movable locking plates 27. The anti-deformation protection plates 283 are fixedly connected to the anti-tipping metal box 20. One end of the second deformable driving member 26 is fixedly connected to the movable locking plate 27, and the other end of the second deformable driving member 26 is fixedly connected to the anti-tipping metal box 20.

[0030] In another embodiment, in order to make the use of the first deformable processing mechanism 2 more reliable, in this embodiment, preferably, the first deformable processing mechanism 2 includes an anti-tipping metal box 20. The anti-tipping metal box 20 is fixedly connected to the first anti-tipping bearing plate 1. A movable lower die 281 is slidably connected to the top of the anti-tipping metal box 20. The movable lower die 281 penetrates through the top wall of the anti-tipping metal box 20. A number of hollow limit transmission tubes 282 are arranged on both sides of the movable lower die 281. The hollow limit transmission tubes 282 penetrate through the top wall of the anti-tipping metal box 20. The hollow limit transmission tubes 282 are fixedly connected to the anti-tipping metal box 20. A number of second braking metal parts 288 corresponding to the hollow limit transmission tubes 282 are arranged at both ends of the movable lower die 281. The second braking metal parts 288 are iron plates. The second braking metal parts 288 are fixedly connected to the movable lower die 281. The second braking metal parts 288 are slidably connected to the hollow limit transmission tubes 282. A number of first braking metal parts 284 for supporting the second braking metal parts 288 are arranged on the inner wall of the anti-tipping metal box 20. The first braking metal parts 284 are iron plates. The first braking metal parts 284 are fixedly connected to the anti-tipping metal box 20. Movable ejecting parts 287 are hermetically and slidably connected to both ends of the movable lower die 281. The movable ejecting parts 287 are iron plates. The movable ejecting parts 287 penetrate through the bottom wall of the movable lower die 281. A number of limit support metal frames 289 for supporting the movable ejecting parts 287 are arranged at both ends of the lower surface of the movable lower die 281. The limit support metal frames 289 are fixedly connected to the movable lower die 281. A number of first deformable transmission parts 286 for adjusting the height of the movable ejecting parts 287 are arranged at the bottom of the hollow limit transmission tubes 282. The first deformable transmission parts 286 are piston cylinders. The first deformable transmission parts 286 are fixedly connected to the limit support metal frames 289;

[0031] Please refer to Figure 2 、 Figure 3 and Figure 4, in another embodiment, in order to make the functions of the first deformable processing mechanism 2 more abundant, in this embodiment, preferably, a lockable mounting plate 22 is arranged inside the anti-tipping metal box 20. A number of first material-passing holes 23 corresponding to the limit support metal frame 289 are formed at both ends of the lockable mounting plate 22. A number of movable knocking blocks 285 for knocking on the movable lower die 281 are arranged on the upper surface of the lockable mounting plate 22. The material of the movable knocking block 285 is iron. A number of first deformable driving members 21 for driving the lockable mounting plate 22 to move towards the movable lower die 281 are arranged on the lower surface of the lockable mounting plate 22. The first deformable driving member 21 is a metal spring piece. One end of the first deformable driving member 21 is fixedly connected to the lockable mounting plate 22, and the other end of the first deformable driving member 21 is fixedly connected to the anti-tipping metal box 20. A number of anti-tilting protection tubes 24 corresponding to the hollow limit transmission tube 282 are arranged at both ends of the lockable mounting plate 22. The anti-tilting protection tube 24 penetrates through the lockable mounting plate 22 and is fixedly connected to the lockable mounting plate 22. The movable knocking block 285 is fixedly connected to the lockable mounting plate 22. A number of movable locking plates 27 for fixing the lockable mounting plate 22 are slidably connected to both ends of the anti-tipping metal box 20. A number of second deformable driving members 26 for driving the movable locking plate 27 to move towards the movable lower die 281 are arranged on the side wall of the anti-tipping metal box 20. The second deformable driving member 26 is a metal spring piece. A number of anti-deformation protection plates 283 corresponding to the movable locking plate 27 are also arranged on the side wall of the anti-tipping metal box 20. The anti-deformation protection plate 283 is slidably connected to the movable locking plate 27. A number of second material-passing holes 25 corresponding to the anti-deformation protection plate 283 are formed on the movable locking plate 27. The anti-deformation protection plate 283 is fixedly connected to the anti-tipping metal box 20. One end of the second deformable driving member 26 is fixedly connected to the movable locking plate 27, and the other end of the second deformable driving member 26 is fixedly connected to the anti-tipping metal box 20.

[0032] Please refer to Figure 1 and Figure 5, in one embodiment, to make the use of the second deformable processing mechanism 3 more reliable, in this embodiment, preferably, the second deformable processing mechanism 3 includes a second anti-tipping bearing plate 32. The second anti-tipping bearing plate 32 is fixedly connected to the hollow limit transmission tube 282. Below the second anti-tipping bearing plate 32, there is a movable unlocking plate 381 for adjusting the position of the movable locking plate 27. The lower surface of the movable unlocking plate 381 is provided with a movable upper die 382 corresponding to the movable lower die 281. The movable upper die 382 is fixedly connected to the movable unlocking plate 381. Above the movable upper die 382, there are several fourth deformable driving members 34 for adjusting the height of the movable unlocking plate 381. The fourth deformable driving member 34 is a hydraulic cylinder. The fourth deformable driving member 34 is fixedly connected to the second anti-tipping bearing plate 32 and is fixedly connected to the movable unlocking plate 381. At both ends of the lower surface of the movable unlocking plate 381, there are several first movable pressing plates 30 for adjusting the height of the lockable mounting plate 22. The first movable pressing plates 30 are fixedly connected to the movable unlocking plate 381. The first movable pressing plates 30 are slidably connected to the anti-tipping metal box 20 and are slidably connected to the second braking metal member 288;

[0033] Please refer to Figure 5 , in one embodiment, to make the functions of the second deformable processing mechanism 3 more diverse, in this embodiment, preferably, at both ends of the lower surface of the second anti-tipping bearing plate 32, there are several second deformable transmission members 35 for cooperating with the hollow limit transmission tube 282 to adjust the attitude of the first deformable transmission member 286. The second deformable transmission member 35 is a piston hydraulic cylinder. The bottom of the second deformable transmission member 35 is provided with a second movable pressing plate 31. Below the second anti-tipping bearing plate 32, there are several third deformable driving members 33 for driving the second movable pressing plate 31 to move away from the second anti-tipping bearing plate 32. The third deformable driving member 33 is a spring. At both ends of the movable unlocking plate 381, there are several movable radiators 383. The movable radiators 383 are fans. The movable radiators 383 penetrate through the movable unlocking plate 381 and are fixedly connected to the movable unlocking plate 381. At both ends of the lower surface of the second anti-tipping bearing plate 32, there are several anti-collision protection plates 36. The anti-collision protection plates 36 are fixedly connected to the second anti-tipping bearing plate 32. On the side of the anti-collision protection plate 36, there are several detachable warning members 37 for information display. The detachable warning member 37 is a handwritten fluorescent board. The detachable warning member 37 is arranged at the bottom of the side of the anti-collision protection plate 36. The anti-collision protection plate 36 is fixedly connected to the detachable warning member 37.

[0034] In another embodiment, in order to make the use of the second deformable processing mechanism 3 more reliable, in this embodiment, preferably, the second deformable processing mechanism 3 includes a second anti-tipping bearing plate 32. The second anti-tipping bearing plate 32 is fixedly connected to the hollow limit transmission pipe 282. Below the second anti-tipping bearing plate 32, there is a movable unlocking plate 381 for adjusting the position of the movable locking plate 27. On the lower surface of the movable unlocking plate 381, there is a movable upper die 382 corresponding to the movable lower die 281. The movable upper die 382 is fixedly connected to the movable unlocking plate 381. Above the movable upper die 382, there are several fourth deformable driving members 34 for adjusting the height of the movable unlocking plate 381. The fourth deformable driving member 34 is a cylinder. The fourth deformable driving member 34 is fixedly connected to the second anti-tipping bearing plate 32 and the movable unlocking plate 381. At both ends of the lower surface of the movable unlocking plate 381, there are several first movable pressing plates 30 for adjusting the height of the lockable mounting plate 22. The first movable pressing plate 30 is fixedly connected to the movable unlocking plate 381. The first movable pressing plate 30 is slidably connected to the anti-tipping metal box 20 and the second braking metal member 288.

[0035] Please refer to Figure 5 , in one embodiment, in order to make the functions of the second deformable processing mechanism 3 more abundant, in this embodiment, preferably, at both ends of the lower surface of the second anti-tipping bearing plate 32, there are several second deformable transmission members 35 for cooperating with the hollow limit transmission pipe 282 to adjust the attitude of the first deformable transmission member 286. The second deformable transmission member 35 is a piston cylinder. At the bottom of the second deformable transmission member 35, there is a second movable pressing plate 31. Below the second anti-tipping bearing plate 32, there are several third deformable driving members 33 for driving the second movable pressing plate 31 to move away from the second anti-tipping bearing plate 32. The third deformable driving member 33 is a metal spring piece. At both ends of the movable unlocking plate 381, there are several movable radiators 383. The movable radiator 383 is a cooling fan. The movable radiator 383 penetrates through the movable unlocking plate 381 and is fixedly connected to the movable unlocking plate 381. At both ends of the lower surface of the second anti-tipping bearing plate 32, there are several anti-collision protection plates 36. The anti-collision protection plate 36 is fixedly connected to the second anti-tipping bearing plate 32. On the side of the anti-collision protection plate 36, there are several detachable warning members 37 for information display. The detachable warning member 37 is an LCD screen. The detachable warning member 37 is arranged at the bottom of the side of the anti-collision protection plate 36. The anti-collision protection plate 36 is fixedly connected to the detachable warning member 37.

[0036] Working principle and usage process of the present invention: In the state shown in the attached drawings, place the workpiece inside the movable lower mold 281, and then control the fourth deformable driving member 34 to extend, so that the movable unlocking plate 381 drives the movable upper mold 382 to move downward. Through the mutual cooperation of the movable upper mold 382 and the movable lower mold 281, the workpiece is processed and shaped to obtain a preliminarily processed Bluetooth headset shell;

[0037] During the downward movement of the movable upper mold 382, the first movable pressing plate 30 moves downward. The downward movement of the first movable pressing plate 30 drives the lockable mounting plate 22 to move downward. At this time, the first deformable driving member 21 is squeezed and stores energy. When the lockable mounting plate 22 moves downward through the movable locking plate 27, the movable locking plate 27 limits and locks the lockable mounting plate 22 to prevent the lockable mounting plate 22 from resetting;

[0038] When the workpiece processing is completed, control the fourth deformable driving member 34 to contract to make the movable upper mold 382 move upward, so that the movable upper mold 382 disengages from the contact with the movable lower mold 281. At this time, the workpiece is cooled by the movable radiator 383, so that the workpiece is quickly formed;

[0039] Then further control the fourth deformable driving member 34 to contract to make the movable unlocking plate 381 move upward. The upward movement of the movable unlocking plate 381 drives the movable locking plate 27 to move horizontally, so as to release the locking of the movable locking plate 27 on the lockable mounting plate 22. At this time, the lockable mounting plate 22 instantaneously moves upward under the driving action of the first deformable driving member 21, so as to strike the movable lower mold 281 through the movable striking block 285. At this time, the movable lower mold 281 instantaneously. When the upward movement of the movable lower mold 281 drives the second braking metal part 288 to contact the anti-tipping metal box 20, the movable lower mold 281 is instantaneously braked. At this time, the workpiece continues to move upward under the action of inertia, so as to realize the demoulding of the workpiece;

[0040] Then further control the fourth deformable driving member 34 to contract to make the movable unlocking plate 381 move upward. The upward movement of the movable unlocking plate 381 squeezes the second deformable transmission member 35, so that the second deformable transmission member 35 contracts. At this time, the first deformable transmission member 286 correspondingly extends. The extension of the first deformable transmission member 286 drives the movable ejector member 287 to move upward. The upward movement of the movable ejector member 287 jacks up the demoulded workpiece, so as to facilitate the user to take the workpiece without damage;

[0041] Thus, through the mutual cooperation of multiple structures, a two-stage unloading process of first stripping and then ejecting the shell of the Bluetooth headset is carried out, so as to achieve rapid cooling and automatic non-destructive unloading of the shell of the Bluetooth headset, improving the processing efficiency of the processing device. Secondly, the present invention has anti-slip and warning functions, and is convenient for handling, making the functions of the processing device more abundant. In addition, the structure of the present invention is simple and easy to use, and is worthy of popularization and use.

[0042] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0043] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A Bluetooth headset shell processing device, comprising a first anti-dumping load plate, a plurality of elastic anti-slip fixing members for anti-slip and shock-absorbing functions are arranged at both ends of the lower surface of the first anti-dumping load plate, and the first anti-dumping load plate is fixedly connected to the elastic anti-slip fixing members, characterized in that: A second deformable processing mechanism is arranged above the first anti-dumping carrying plate, a first deformable processing mechanism corresponding to the second deformable processing mechanism is arranged on the upper surface of the first anti-dumping carrying plate, the first deformable processing mechanism comprises an anti-dumping metal box, the anti-dumping metal box is fixedly connected to the first anti-dumping carrying plate, a movable lower mold is slidably connected to the top of the anti-dumping metal box, the movable lower mold penetrates the top wall of the anti-dumping metal box, a plurality of hollow limit transmission pipes are arranged on both sides of the movable lower mold, and the hollow limit transmission pipes penetrate the top wall of the anti-dumping metal box. The hollow limit transmission tube is fixedly connected to the anti-dumping metal box, and a plurality of second brake metal parts corresponding to the hollow limit transmission tube are arranged at both ends of the movable lower mold, and the second brake metal part is fixedly connected to the movable lower mold, and the second brake metal part is slidably connected to the hollow limit transmission tube. A plurality of first brake metal parts for supporting the second brake metal parts are arranged on the inner wall of the anti-dumping metal box, and the first brake metal part is fixedly connected to the anti-dumping metal box. The two ends of the movable lower mold are sealed and slidably connected with movable top material parts, and the movable top material parts penetrate the movable The bottom wall of the movable lower mold is provided, and a plurality of limit support metal frames for supporting the movable top material piece are provided at both ends of the lower surface of the movable lower mold, and the limit support metal frame is fixedly connected to the movable lower mold. A plurality of first deformable transmission members for adjusting the height of the movable top material piece are provided at the bottom of the hollow limit transmission tube, and the first deformable transmission member is fixedly connected to the limit support metal frame. A lockable mounting plate is provided inside the anti-dumping metal box, and a plurality of first through holes corresponding to the limit support metal frames are provided at both ends of the lockable mounting plate. The material holes are provided, and a plurality of movable knocking blocks for knocking the movable lower mold are arranged on the upper surface of the lockable mounting plate, and a plurality of first deformable driving members for driving the lockable mounting plate to move toward the movable lower mold are arranged on the lower surface of the lockable mounting plate, and a plurality of movable locking plates for fixing the lockable mounting plate are slidably connected at both ends of the anti-dumping metal box, and a plurality of second deformable driving members for driving the movable locking plate to move toward the movable lower mold are arranged on the side walls of the anti-dumping metal box.

2. The Bluetooth headset shell processing device according to claim 1, characterized in that: One end of the first deformable driving member is fixedly connected to the lockable mounting plate, and the other end of the first deformable driving member is fixedly connected to the anti-dumping metal box. Both ends of the lockable mounting plate are provided with a plurality of anti-tilt protection tubes corresponding to the hollow limiting transmission tube.

3. The Bluetooth headset shell processing device according to claim 2, characterized in that: The anti-tilt protection tube is arranged through the lockable mounting plate, the anti-tilt protection tube is fixedly connected to the lockable mounting plate, and the movable knocking block is fixedly connected to the lockable mounting plate.

4. The Bluetooth headset shell processing device according to claim 3, characterized in that: A plurality of anti-deformation protection plates corresponding to the movable locking plate are also arranged on the side wall of the anti-dumping metal box, the anti-deformation protection plate is slidably connected to the movable locking plate, a plurality of second penetration holes corresponding to the anti-deformation protection plate are opened on the movable locking plate, the anti-deformation protection plate is fixedly connected to the anti-dumping metal box, one end of the second deformable driving member is fixedly connected to the movable locking plate, and the other end of the second deformable driving member is fixedly connected to the anti-dumping metal box.

5. The Bluetooth headset shell processing device according to any one of claims 1 to 4, characterized in that: The second deformable processing mechanism includes a second anti-dumping bearing plate, which is fixedly connected to the hollow limit transmission tube, and a movable unlocking plate for adjusting the position of the movable locking plate is arranged below the second anti-dumping bearing plate, and a movable upper mold corresponding to the movable lower mold is arranged on the lower surface of the movable unlocking plate, and the movable upper mold is fixedly connected to the movable unlocking plate, and a plurality of fourth deformable driving parts for adjusting the height of the movable unlocking plate are arranged above the movable upper mold.

6. The Bluetooth headset shell processing device according to claim 5, characterized in that: The fourth deformable driving member is fixedly connected to the second anti-dumping bearing plate, the fourth deformable driving member is fixedly connected to the movable unlocking plate, and a plurality of first movable pressing plates for adjusting the height of the lockable mounting plate are arranged at both ends of the lower surface of the movable unlocking plate, the first movable pressing plate is fixedly connected to the movable unlocking plate, the first movable pressing plate is slidably connected to the anti-dumping metal box, and the first movable pressing plate is slidably connected to the second braking metal member.

7. The Bluetooth headset shell processing device according to claim 6, characterized in that: A plurality of second deformable transmission members for cooperating with the hollow limiting transmission tube to adjust the posture of the first deformable transmission member are arranged at both ends of the lower surface of the second anti-dumping load plate; a second movable pressing plate is arranged at the bottom of the second deformable transmission member; and a plurality of third deformable driving members for driving the second movable pressing plate to move away from the second anti-dumping load plate are arranged below the second anti-dumping load plate.

8. The Bluetooth headset shell processing device according to claim 7, characterized in that: A plurality of movable radiators are arranged at both ends of the movable unlocking plate, the movable radiators penetrate the movable unlocking plate, the movable radiators are fixedly connected to the movable unlocking plate, and a plurality of anti-collision protection plates are arranged at both ends of the lower surface of the second anti-dumping bearing plate.

9. The Bluetooth headset shell processing device according to claim 8, characterized in that: The anti-collision protection plate is fixedly connected to the second anti-dumping load-bearing plate. The side of the anti-collision protection plate is provided with a plurality of detachable warning parts for displaying information. The detachable warning parts are arranged at the bottom of the side of the anti-collision protection plate. The anti-collision protection plate is fixedly connected to the detachable warning parts.

Citation Information

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