Brush hair treatment device and treatment process

By using hot-press shaping and synchronously moving clamping and cutting technology in the brush bristle processing device of the sweeper, the problem of inconsistent bristle length during the brush trimming and shaping process is solved, achieving accuracy and consistency in bristle length and improving the applicability of the device.

CN121754010APending Publication Date: 2026-03-31HAINING JIAZHE BRUSH CO LTD
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Patent Information

Application Number
CN202610225483.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-25
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The bristles of existing sweeping machines are of inconsistent length during the trimming and shaping process, resulting in inaccurate trimming length.

Method used

A brush bristle processing device including a shaping section, an input section, and an output section is adopted. The brush bristles are heat-pressed and shaped by an openable hot press plate. Combined with the synchronous movement of the clamping component and the cutter, the initial and secondary concentration of the bristle orientation is achieved, ensuring the accuracy of the cut.

Benefits of technology

It improves the accuracy and consistency of bristle length during the trimming and shaping process, enhances the applicability of the device, and ensures the accuracy of bristle extension direction.

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Abstract

The invention discloses a bristle treatment device and process, and relates to the technical field of bristle production. The bristle processing device comprises a placing table used for placing bristles; the shaping section is arranged on the placing table; the input section is arranged at one end of the shaping section, and the input section is used for conveying the bristles to the shaping section; the output section is arranged at the other end of the shaping section, and the output section comprises a cutting assembly and a pull-out assembly; the cutting assembly comprises a first moving assembly, a first clamping assembly and a cutter, the first moving assembly is arranged on the containing table, the first clamping assembly and the cutter are both arranged on the first moving assembly, the first clamping assembly is used for clamping the two sides of a brush, and the moving direction of the first moving assembly is the same as the conveying direction of bristles; the pull-out assembly is used for pulling the bristles. The accuracy of the bristle stretching direction can be improved, so that the consistency of the finishing length is ensured, and the accuracy of the length of the bristles in the finishing and shaping process is improved.
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Description

Technical Field

[0001] This invention relates to the field of brush bristle production technology, and in particular to a brush bristle processing device and processing technology. Background Technology

[0002] A robotic vacuum cleaner, also known as a sweeping robot, automatic cleaning machine, intelligent vacuum cleaner, or robot vacuum, is a type of smart home appliance that uses artificial intelligence to avoid obstacles and automatically clean floors in a room. More powerful robotic vacuum cleaners typically include a walking mechanism, a roller brush mechanism, and a suction mechanism. The walking mechanism, such as a set of wheels on the bottom of the vacuum cleaner, moves it around. The roller brush mechanism uses one or more rows of bristles to sweep the floor directly in front of the vacuum cleaner's body, stirring up dirt and dust. The suction mechanism then uses a vacuum suction method to collect the stirred-up dirt and dust into its own dustbin, thus completing the floor cleaning function.

[0003] In the current production process of sweeper bristles, the bristles are initially produced with a messy shape and length. Therefore, it is necessary to trim and shape the bristles. However, the trimming and shaping processes are currently carried out separately. As a result, the trimmed length is inconsistent due to the different extension directions of the bristles. Even if the shaping process is carried out first and then the trimming is done, the uniformity of the trimmed length will be reduced due to the unfolding of the bristles, making it impossible to accurately achieve the required length. Summary of the Invention

[0004] In view of the deficiencies in the existing technology, the technical problem solved by the present invention is: how to improve the accuracy of the length of the bristles during the trimming and shaping process.

[0005] To achieve the above objectives, in a first aspect, the present invention provides a bristle processing apparatus comprising: A shelf for holding brush bristles; The shaping section is set on the placement table and includes two openable and closable hot press plates. The shaping section is used to shape the bristles. An input section, located at one end of the shaping section, is used to feed the bristles to the shaping section. The output section is located at the other end of the shaping section. The output section includes a cutting component and a pull-out component. The cutting component includes a first moving component, a first clamping component, and a cutter. The first moving component is located on the placement table. The first clamping component and the cutter are both located on the first moving component. The first clamping component is used to clamp both sides of the brush. The moving direction of the first moving component is the same as the conveying direction of the brush bristles. The pull-out component is used to pull the brush bristles.

[0006] By adopting the above technical solution, the untrimmed bristles are first fed from the input section to the placement table for trimming and shaping. The trimming and shaping process begins with two openable hot press plates to heat-press and shape the bristles, initially concentrating the orientation of the bristles. After heat-pressing and shaping, the first clamping component clamps the heat-pressed bristles, and the two hot press plates are in the open state. The first moving component drives the first clamping component to move, thus allowing the first clamping component to pull the heat-pressed bristles out from between the two hot press plates. When the two hot press plates are closed, the cutter begins to cut the top of the bristles, and the first moving component also drives the cutter to move, thereby cutting a section of bristles. During the cutting process, the first clamping assembly and the cutter move synchronously. Because the two hot pressure plates are closed, the first clamping assembly does not carry out the next section of bristles. Instead, it further compresses the bristles inward before the cutter makes the cut, thereby achieving a secondary concentration of the bristle orientation and further improving the accuracy of the bristle extension direction. After the cutting is completed, the trimmed bristles are pulled out from the placement table by the pull-out assembly, providing a position for the trimming and shaping of the next section of bristles. Therefore, this bristle processing device makes the bristle processing continuous and improves the accuracy of the bristle extension direction, thus ensuring the consistency of the trimmed length and improving the accuracy of the bristle length during the trimming and shaping process.

[0007] In one embodiment, the first moving component includes a first driving member, a first moving track, and a first moving stage. The first moving track is disposed on the placement platform, and the first moving stage is movably disposed on the first moving track. The first clamping component and the cutter are both disposed on the first moving stage, and the first clamping component is located at one end of the first moving stage near the shaping section. The first driving member is used to drive the first moving stage to move.

[0008] By adopting the above technical solution, the synchronicity of the movement of the first clamping component and the cutter is ensured, so that the orientation of the bristles is concentrated twice before the bristles are cut, thereby further improving the accuracy of the bristle length during the trimming and shaping process.

[0009] In one embodiment, the cutter includes a support frame, a cutting blade, a rotary drive motor, and a lifting assembly. The support frame is mounted on a first movable platform, the cutting blade is mounted on the support frame and located directly above the bristles, the rotary drive motor and the lifting assembly are mounted on the support frame, the rotary drive motor is used to drive the cutting blade to rotate horizontally, and the lifting assembly is used to adjust the distance between the cutting blade and the bristles.

[0010] By adopting the above technical solution, the consistency of bristle length trimming is ensured, and the trimming requirements for different bristle lengths can be adjusted, thereby improving applicability.

[0011] In one embodiment, the lifting assembly includes a lifting rail and a lifting drive motor, with the cutting blade movably mounted on the lifting rail, and the lifting drive motor used to drive the cutting blade to move vertically.

[0012] By adopting the above technical solution, the applicability of the bristle processing device is improved.

[0013] In one embodiment, the lifting assembly includes a lifting roller and a lifting drive motor. The lifting roller is mounted on a support frame and is located at the bottom of the brush bristles. The lifting drive motor is used to drive the lifting roller to move vertically.

[0014] By adopting the above technical solution, the applicability of the bristle processing device is improved while ensuring the consistency of bristle length trimming, thereby further improving the accuracy of bristle length during the trimming and shaping process.

[0015] In one embodiment, the pull-out assembly includes a second moving assembly and a second clamping assembly. The second moving assembly includes a second driving member, a second moving track, and a second moving stage. The second moving track is disposed on the placement platform, and the second moving stage is movably disposed on the second moving track. The second clamping assembly is disposed on the second moving stage and is used to clamp both sides of the brush. The second driving member is used to drive the second moving stage to move.

[0016] By adopting the above technical solution, the trimmed and shaped bristles can be removed from the placement table without affecting the shape of the bristles.

[0017] In one embodiment, the placement platform is provided with a guide groove, and the brush bristles are movably disposed inside the guide groove.

[0018] By adopting the above technical solution, the brush bristles are prevented from shifting during movement, thus avoiding adverse effects on the brush bristle trimming and customization process.

[0019] Secondly, the bristle processing technology provided by the present invention includes the following steps: Provide the aforementioned bristle processing device; The raw bristles are conveyed from the input section to the placement table; The unprocessed bristles are shaped by hot pressing on both sides using two hot press plates to form shaped bristles. The first clamping component clamps the two sides of the shaping brush bristles, and the two hot press plates are in the open state. The first moving component drives the first clamping component to move, so that the shaping brush bristles move from between the two hot press plates to the cutting section. The cutter is driven by the first moving component, and the cutter cuts the top surface of the bristles to form the finished bristles. The processed brush bristles are pulled out by pulling out the component until they leave the cutting section.

[0020] By adopting the above technical solution, the untrimmed bristles are first fed from the input section to the placement table for trimming and shaping. The trimming and shaping process begins with two openable hot press plates to heat-press and shape the bristles, initially concentrating the orientation of the bristles. After heat-pressing and shaping, the first clamping component clamps the heat-pressed bristles, and the two hot press plates are in the open state. The first moving component drives the first clamping component to move, thus allowing the first clamping component to pull the heat-pressed bristles out from between the two hot press plates. When the two hot press plates are closed, the cutter begins to cut the top of the bristles, and the first moving component also drives the cutter to move, thereby cutting a section of bristles. During the cutting process, the first clamping assembly and the cutter move synchronously. Because the two hot pressure plates are closed, the first clamping assembly does not carry out the next section of bristles. Instead, it further compresses the bristles inward before the cutter makes the cut, thereby achieving a secondary concentration of the bristle orientation and further improving the accuracy of the bristle extension direction. After the cutting is completed, the trimmed bristles are pulled out from the placement table by the pull-out assembly, providing a position for the trimming and shaping of the next section of bristles. Therefore, this bristle processing device makes the bristle processing continuous and improves the accuracy of the bristle extension direction, thus ensuring the consistency of the trimmed length and improving the accuracy of the bristle length during the trimming and shaping process.

[0021] In one embodiment, the cutting segment includes a region to be cut and a cutting region, wherein the region to be cut is located between the shaping segment and the cutting region.

[0022] By adopting the above technical solution, the gap between the first clamping component and the cutter is avoided, which would prevent some bristles from being squeezed but not cut.

[0023] In one embodiment, a cutter is driven by a first moving component to cut the top surface of the bristles, specifically including: Open the two hot press plates and move the shaping brush to the area to be cut using the first clamping assembly; When the two hot press plates are closed, the first clamping component moves back and forth in the area to be cut through the first moving component to form a squeezed bristle. Open the two hot press plates and move the squeezed bristles to the cutting area through the first clamping assembly; The cutter moves back and forth within the cutting area via a first moving component; Adjust the distance between the cutter and the bristles using the lifting assembly until the bristles are cut to the preset length.

[0024] By adopting the above technical solution, based on the above area design, the bristles after shaping are first squeezed in the area to be cut, and then moved to the cutting area to trim the length.

[0025] In summary, the present invention has at least one of the following beneficial technical effects: 1. The untrimmed bristles are first fed from the input section to the placement table for trimming and shaping. The trimming and shaping process begins with two openable hot press plates to heat-press and shape the bristles, initially concentrating their orientation. After heat-pressing and shaping, the first clamping component clamps the heat-pressed bristles, and the two hot press plates are open. The first moving component moves the first clamping component, allowing it to pull the heat-pressed bristles out from between the two hot press plates. When the two hot press plates are closed, the cutter begins cutting the top of the bristles, and the first moving component also moves the cutter, thus cutting a section of bristles. During operation, the first clamping assembly and the cutter move synchronously. Because the two hot press plates are closed, the first clamping assembly does not carry out the next section of bristles. Instead, it further compresses the bristles inward before the cutter cuts them, thereby achieving a secondary concentration of the bristle orientation and further improving the accuracy of the bristle extension direction. After cutting is completed, the trimmed bristles are pulled out from the placement table by the pull-out assembly, providing a position for the trimming and shaping of the next section of bristles. Therefore, this bristle processing device makes the bristle processing continuous and improves the accuracy of the bristle extension direction, thus ensuring the consistency of the trimmed length and improving the accuracy of the bristle length during the trimming and shaping process. 2. Through the specific design structure of the cutter, the top surface of the bristles can be cut horizontally, which can ensure the consistency of bristle length trimming. At the same time, it can be adjusted to meet the trimming needs of different bristle lengths, thereby improving applicability. 3. By dividing the cutting section into a cutting area and a cutting area, the bristles after shaping are first squeezed in the cutting area and then moved to the cutting area to adjust their length. This avoids the situation where some bristles can only be squeezed but cannot be cut due to the gap between the first clamping component and the cutter. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of the bristle processing device according to an embodiment of the present invention; Figure 2 This is a schematic diagram of the structure of the first moving component according to an embodiment of the present invention; Figure 3 This is a schematic diagram of the structure of the first clamping component according to an embodiment of the present invention; Figure 4 This is a schematic diagram of the structure of the cutter according to an embodiment of the present invention; Figure 5 This is a flowchart of the bristle processing procedure according to an embodiment of the present invention.

[0027] In the diagram: 1-Placement platform, 2-Hot press plate, 3-Roller, 4-Cleaning box, 5-Cutting assembly, 501-First moving assembly, 5011-First moving stage, 502-First clamping assembly, 5021-Base plate, 5022-Motor, 5023-Clamping component, 503-Cutter, 5031-Support frame, 5032-Cutter blade, 5033-Lifting roller, 5034-Gutter, 6-Pull-out assembly, 7-First moving track, 8-Second moving track, 9-Bristle receiving space, 10-Bristle. Detailed Implementation

[0028] The embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.

[0029] The bristle processing device in this embodiment of the invention is described in [reference needed]. Figure 1 As shown, the bristle processing device includes a placement table 1 for placing bristles 10; The shaping section is set on the placement table 1. The shaping section includes two openable and closable hot press plates 2. The shaping section is used to shape the bristles 10. An input section is located at one end of the shaping section. The input section is used to convey the bristles 10 to the shaping section. The input section includes a roller 3 and a cleaning box 4. The unprocessed bristles 10 are wound onto the roller 3. One end of the bristles 10 passes through the cleaning box 4. The cleaning box 4 is used to remove dust from the bristles 10 to prevent dust from being heat-pressed together with the bristles 10. The output section is located at the other end of the shaping section. The output section includes a cutting component 5 and a pull-out component 6. The cutting component 5 includes a first moving component 501, a first clamping component 502, and a cutter 503. The first moving component 501 is located on the placement table 1. The first clamping component 502 and the cutter 503 are both located on the first moving component 501. The first clamping component 502 is used to clamp both sides of the brush. The moving direction of the first moving component 501 is the same as the conveying direction of the brush bristles 10. The pull-out component 6 is used to pull the brush bristles 10.

[0030] Therefore, this invention first transports the untrimmed bristles 10, starting from the input section, to the placement table 1 for trimming and shaping. The trimming and shaping process begins with two openable hot press plates 2 to heat-press and shape the bristles 10, initially concentrating the orientation of the bristles. After heat-pressing and shaping, the first clamping component 502 clamps the heat-pressed bristles 10, and the two hot press plates 2 are in the open state. The first moving component 501 drives the first clamping component 502 to move, thus allowing the first clamping component 502 to pull the heat-pressed bristles 10 out between the two hot press plates 2. When the two hot press plates 2 are closed, the cutter 503 begins to cut the top of the bristles 10, and the first moving component 501 also drives the cutter 503 to move, thereby achieving the trimming of a section of bristles 10. During the cutting process, the first clamping assembly 502 and the cutter 503 move synchronously. Because the two hot press plates 2 are closed, the first clamping assembly 502 will not pull out the next section of bristles 10. Instead, it will further compress the bristles 10 inward before the cutter 503 cuts them, thereby achieving a secondary concentration of the orientation of the bristles 10 and further improving the accuracy of the extension direction of the bristles 10. After the cutting is completed, the trimmed and shaped bristles 10 are pulled out from the placement table 1 by the pull-out assembly 6, providing a position for the trimming and shaping of the next section of bristles 10. Therefore, this bristle processing device makes the operation of the bristles 10 continuous and can improve the accuracy of the extension direction of the bristles 10, thereby ensuring the consistency of the trimmed length and improving the accuracy of the length of the bristles 10 during the trimming and shaping process.

[0031] Preferred, see Figure 1 , Figure 2 As shown, a specific structure of a first moving component 501 is provided: The first moving component 501 includes a first driving member, a first moving track 7, and a first moving stage 5011. The first moving track 7 is disposed on the placement platform 1, and the first moving stage 5011 is movably disposed on the first moving track 7. The first clamping component 502 and the cutter 503 are both disposed on the first moving stage 5011, and the first clamping component 502 is located at one end of the first moving stage 5011 near the shaping section. The first driving member is used to drive the first moving stage 5011 to move.

[0032] Specifically, the first clamping assembly 502 and the cutter 503 are both fixed to the top surface of the first moving table 5011. The first moving table 5011 can move along the first moving track 7. The first clamping assembly 502 is closer to the hot press plate 2 than the cutter 503. Therefore, the above design ensures the synchronicity of the movement of the first clamping assembly 502 and the cutter 503, so that the orientation of the bristles 10 is concentrated twice before cutting the bristles 10, thereby further improving the accuracy of the length of the bristles 10 during the trimming and shaping process.

[0033] Further, see Figure 3 As shown, the first clamping assembly 502 is fixed to the top surface of the first moving platform 5011 via the base plate 5021. The top surface of the first clamping assembly 502 has a motor 5022, and the bottom surface of the first clamping assembly 502 has two openable clamping parts 5023. The motor 5022 is used to drive the two clamping parts 5023 to move closer and further apart, so as to clamp and release the bristles 10.

[0034] Preferred, see Figure 2 , Figure 4 As shown, a specific structure of a cutter 503 is provided: The cutter 503 includes a support frame 5031, a cutting blade 5032, a rotary drive motor 5022, and a lifting assembly. The support frame 5031 is mounted on the first moving platform 5011. The cutting blade 5032 is mounted on the support frame 5031 and is located directly above the bristles 10. The rotary drive motor 5022 and the lifting assembly are mounted on the support frame 5031. The rotary drive motor 5022 is used to drive the cutting blade 5032 to rotate horizontally, and the lifting assembly is used to adjust the distance between the cutting blade 5032 and the bristles 10.

[0035] Specifically, the support frame 5031 can move synchronously with the first moving platform 5011 and the first clamping assembly 502. The cutting blade 5032 rotates horizontally via the rotary drive motor 5022. Therefore, the distance between the cutting blade 5032 and the top of the bristles 10 can be adjusted by the lifting assembly. At the same time, the first moving platform 5011 moves back and forth, allowing the cutting blade 5032 to cut a section of bristles 10 multiple times, avoiding incomplete cutting in some areas and ensuring the consistency of bristle length trimming. Furthermore, by adjusting the parameters of the lifting assembly, the trimming requirements for different bristle lengths can be adjusted, thereby improving applicability.

[0036] Furthermore, the specific structure of the first lifting component is provided: The lifting assembly includes a lifting rail and a lifting drive motor 5022. The cutting blade 5032 is movably mounted on the lifting rail, and the lifting drive motor 5022 is used to drive the cutting blade 5032 to move vertically.

[0037] The specific structure of the second type of lifting assembly is provided: The lifting assembly includes a lifting roller 5033 and a lifting drive motor 5022. The lifting roller 5033 is mounted on a support frame 5031 and is located at the bottom of the brush bristles 10. The lifting drive motor 5022 is used to drive the lifting roller 5033 to move vertically.

[0038] Specifically, both of the above structures can achieve the effect of adjusting the distance between the cutting blade 5032 and the bristles 10. Compared with the two structures, the second structure and cutting effect are better because it does not require changing the position of the cutting blade 5032. While improving the applicability of the bristle processing device, it ensures the consistency of the bristle length trimming, thereby further improving the accuracy of the bristle length during the trimming and shaping process. It should be noted that since the bristles 10 need to be lifted by the lifting roller 5033, when cutting the first section of bristles 10, it is necessary to manually move the bristles 10 over the top of the lifting roller 5033. In addition, a slot 5034 needs to be opened at the bottom of the support frame 5031 to facilitate the bristles 10 entering the support frame 5031.

[0039] Preferably, the pull-out component 6 includes a second moving component and a second clamping component. The second moving component includes a second driving member, a second moving track 8, and a second moving stage. The second moving track 8 is disposed on the placement platform 1, and the second moving stage is movably disposed on the second moving track 8. The second clamping component is disposed on the second moving stage and is used to clamp both sides of the brush. The second driving member is used to drive the second moving stage to move.

[0040] Specifically, the structure of the second moving component can be the same as or different from that of the first moving component 501. It is only necessary to enable the movement of the second clamping component. The structure of the second clamping component can be the same as or different from that of the first moving component 501. It is only necessary to clamp both sides of the bristles 10, so that the bristles 10 that have been trimmed and shaped can be removed from the placement table 1 without affecting the shape of the bristles 10.

[0041] Further, see Figure 1 As shown, there is a bristle receiving space 9 between the first moving component 501 and the second moving component. The cut bristles 10 can be brought into the bristle receiving space 9 through the first clamping component 502, so that the next cutting work will not affect the pulling out work of the pull-out component 6. Even if the two are not synchronized, they can work independently, thereby improving work efficiency and reducing errors.

[0042] Preferably, the placement platform 1 is provided with a guide groove, and the brush bristles 10 are movably disposed inside the guide groove.

[0043] Specifically, the bottom of the bristles 10 is located inside the guide groove and can move along the guide groove to prevent the bristles 10 from shifting during movement, which would cause adverse effects on the trimming and customization process of the bristles 10.

[0044] The bristle processing technology in this embodiment of the invention is described in [reference needed]. Figure 5 As shown, it includes the following steps: Provide the aforementioned bristle processing device; 101: Unprocessed brush bristles 10 are conveyed from the input section to the placement table 1; 102: The two sides of the unprocessed bristles 10 are hot-pressed and shaped by two hot press plates 2 to form shaped bristles 10; 103: The first clamping component 502 clamps both sides of the shaping brush bristles 10, and the two hot press plates 2 are in the open state. The first moving component 501 drives the first clamping component 502 to move, so that the shaping brush bristles 10 moves from between the two hot press plates 2 to the cutting section. 104: The first moving component 501 drives the cutter 503 to cut the top surface of the bristles 10 to form the processed bristles 10. 105: Pull out the processed brush bristles 10 by pulling out component 6 until they leave the cutting section.

[0045] Therefore, this invention first transports the untrimmed bristles 10, starting from the input section, to the placement table 1 for trimming and shaping. The trimming and shaping process begins with two openable hot press plates 2 to heat-press and shape the bristles 10, initially concentrating the orientation of the bristles. After heat-pressing and shaping, the first clamping component 502 clamps the heat-pressed bristles 10, and the two hot press plates 2 are in the open state. The first moving component 501 drives the first clamping component 502 to move, thus allowing the first clamping component 502 to pull the heat-pressed bristles 10 out between the two hot press plates 2. When the two hot press plates 2 are closed, the cutter 503 begins to cut the top of the bristles 10, and the first moving component 501 also drives the cutter 503 to move, thereby achieving the trimming of a section of bristles 10. During the cutting process, the first clamping assembly 502 and the cutter 503 move synchronously. Because the two hot press plates 2 are closed, the first clamping assembly 502 will not pull out the next section of bristles 10. Instead, it will further compress the bristles 10 inward before the cutter 503 cuts them, thereby achieving a secondary concentration of the orientation of the bristles 10 and further improving the accuracy of the extension direction of the bristles 10. After the cutting is completed, the trimmed and shaped bristles 10 are pulled out from the placement table 1 by the pull-out assembly 6, providing a position for the trimming and shaping of the next section of bristles 10. Therefore, this bristle processing device makes the operation of the bristles 10 continuous and can improve the accuracy of the extension direction of the bristles 10, thereby ensuring the consistency of the trimmed length and improving the accuracy of the length of the bristles 10 during the trimming and shaping process.

[0046] Preferably, the cutting segment includes a region to be cut and a cutting region, with the region to be cut located between the shaping segment and the cutting region.

[0047] Furthermore, the cutter 503 is driven by the first moving component 501, and the cutter 503 cuts the top surface of the bristles 10, specifically including: Open the two hot press plates 2, and move the shaping brush 10 to the area to be cut using the first clamping assembly 502; When the two hot press plates 2 are closed, the first clamping component 502 moves back and forth in the area to be cut through the first moving component 501 to form the extruded bristles 10. Open the two hot press plates 2 and move the extruded bristles 10 to the cutting area through the first clamping assembly 502; The cutter 503 moves back and forth in the cutting area via the first moving component 501; The distance between the cutter 503 and the bristles 10 is adjusted by the lifting assembly until the bristles 10 are cut to the preset length.

[0048] Specifically, by dividing the cutting segment into a region to be cut and a cutting region, the shaped bristles 10 are first squeezed in the region to be cut and then moved to the cutting region to adjust their length. This avoids the situation where some bristles 10 can only be squeezed but cannot be cut due to the gap between the first clamping component 502 and the cutter 503.

[0049] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.

Claims

1. A bristle treatment device, characterized in that, It includes: A placing table (1) for placing the bristles (10); A shaping section, the shaping section is provided on the placing table (1), the shaping section includes two heat-pressing plates (2) which can be opened and closed, and the shaping section is used for shaping the bristles (10); An input section provided at one end of the shaping section, the input section is used for conveying the bristles (10) to the shaping section; An output section provided at the other end of the shaping section, the output section includes a cutting assembly (5) and a pulling-out assembly (6); the cutting assembly (5) includes a first moving assembly (501), a first clamping assembly (502) and a cutter (503), the first moving assembly (501) is provided on the placing table (1), the first clamping assembly (502) and the cutter (503) are both provided on the first moving assembly (501), the first clamping assembly (502) is used for clamping both sides of the brush, and the moving direction of the first moving assembly (501) is the same as the conveying direction of the bristles (10); the pulling-out assembly (6) is used for pulling the bristles (10).

2. The bristle treatment apparatus of claim 1, wherein: The first moving assembly (501) includes a first driving member, a first moving track (7) and a first moving table (5011), the first moving track (7) is provided on the placing table (1), the first moving table (5011) is movably provided on the first moving track (7), the first clamping assembly (502) and the cutter (503) are both provided on the first moving table (5011), and the first clamping assembly (502) is located at one end of the first moving table (5011) close to the shaping section, and the first driving member is used for driving the first moving table (5011) to move.

3. The bristle treatment apparatus of claim 2, wherein: The cutter (503) includes a support frame (5031), a cutting knife (5032), a rotary driving motor (5022) and a lifting assembly, the support frame (5031) is erected on the first moving table (5011), the cutting knife (5032) is provided on the support frame (5031) and located directly above the bristles (10), the rotary driving motor (5022) and the lifting assembly are provided on the support frame (5031), the rotary driving motor (5022) is used for driving the cutting knife (5032) to rotate horizontally, and the lifting assembly is used for adjusting the distance between the cutting knife (5032) and the bristles (10).

4. The bristle treatment apparatus of claim 3, wherein: The lifting assembly includes a lifting track and a lifting driving motor (5022), the cutting knife (5032) is movably provided on the lifting track, and the lifting driving motor (5022) is used for driving the cutting knife (5032) to move vertically.

5. The bristle treatment apparatus of claim 3, wherein: The lifting assembly includes a lifting roller (5033) and a lifting driving motor (5022), the lifting roller (5033) is provided on the support frame (5031), and the lifting roller (5033) is located at the bottom of the bristles (10), and the lifting driving motor (5022) is used for driving the lifting roller (5033) to move vertically.

6. The bristle treatment apparatus of claim 1, wherein: The pulling-out assembly (6) comprises a second moving assembly and a second clamping assembly, the second moving assembly comprises a second driving member, a second moving track (8) and a second moving table, the second moving track (8) is arranged on the placing table (1), the second moving table is movably arranged on the second moving track (8), the second clamping assembly is arranged on the second moving table, the second clamping assembly is used for clamping two sides of the brush, and the second driving member is used for driving the second moving table to move.

7. The bristle treatment apparatus of claim 1, wherein: The placing table (1) is provided with a guide groove, and the brush (10) is movably arranged in the guide groove.

8. A bristle treatment process characterized by, It comprises the following steps: Providing the brush processing device according to any one of claims 1-7; Unprocessed brush (10) is transported from the input section to the placing table (1); The two sides of the unprocessed brush (10) are heat-pressed and shaped by the two heat-pressing plates (2), forming the shaped brush (10); The two sides of the shaped brush (10) are clamped by the first clamping assembly (502), and the two heat-pressing plates (2) are in an open state, the first moving assembly (501) drives the first clamping assembly (502) to move, so that the shaped brush (10) moves from between the two heat-pressing plates (2) to the cutting section; The cutting device (503) is driven by the first moving assembly (501), and the top surface of the brush (10) is cut by the cutting device (503), forming the processed brush (10); The processed brush (10) is pulled out by the pulling-out assembly (6) until it leaves the cutting section.

9. The bristle treatment process of claim 8, wherein: The cutting section comprises a cutting area and a cutting area, and the cutting area is located between the shaping section and the cutting area.

10. The bristle treatment process of claim 9, wherein, The cutting device (503) is driven by the first moving assembly (501), and the top surface of the brush (10) is cut by the cutting device (503), specifically including: Open the two heat-pressing plates (2), and move the shaped brush (10) to the cutting area by the first clamping assembly (502); Close the two heat-pressing plates (2), and the first clamping assembly (502) moves back and forth in the cutting area by the first moving assembly (501), forming the extruded brush (10); Open the two heat-pressing plates (2), and move the extruded brush (10) to the cutting area by the first clamping assembly (502); The cutting device (503) moves back and forth in the cutting area by the first moving assembly (501); Adjust the distance between the cutting device (503) and the brush (10) by the lifting assembly until the brush (10) is cut to the preset length.