Milling device
Through the coordinated work of design positioning components and milling components, the milling device realizes efficient and comprehensive processing of the profile, solving the problem that existing devices cannot process all surfaces of the profile at the same time, and improving processing accuracy and stability.
Patent Information
- Application Number
- CN202421990170.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing milling device cannot process all sides of the profile at the same time, the processing efficiency is low, and the lack of effective positioning components leads to a poor user experience.
A milling device is designed, including a positioning assembly, a first milling assembly and a second milling assembly. By moving the positioning profile of the positioning assembly, the collaborative work of the first milling assembly and the second milling assembly can simultaneously process all faces of the profile and increase versatility by a laser etching assembly.
It realizes high-precision and all-round processing of profiles, improves processing efficiency and stability, reduces waste rate and rework rate, and adapts to the requirements of profiles of different specifications and shapes.
Smart Images

Figure CN223070503U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sawing machines, in particular to a profiling device. Background Art
[0002] A profiling device is a mechanical device that can be used to process profiles in an automated production line. For example, the profiling device can complete the processing of pin holes, glue injection holes, corner code holes, and lock box holes on profiles. However, the existing profiling devices cannot process all surfaces of the profile simultaneously, resulting in low processing efficiency and inability to meet the high-precision processing requirements of profiles. Moreover, the existing profiling devices generally do not have a positioning component for limiting the profile or the positioning effect of the positioning component is not good, thus the user experience is not high. Summary of the Utility Model
[0003] Based on this, in view of the problem that the existing profiling devices cannot process all surfaces of the profile simultaneously and have low processing efficiency, it is necessary to provide a profiling device.
[0004] A profiling device includes: a frame assembly; a positioning component, the positioning component is arranged on the frame assembly, at least part of the positioning component can move relative to the frame assembly, and the positioning component can abut against or separate from the profile; a first profiling component, the first profiling component is movably arranged on the frame assembly, and the first profiling component can move relative to the frame assembly; a second profiling component, the second profiling component is movably arranged on the frame assembly, the second profiling component can move relative to the frame assembly, the second profiling component can move closer to or away from the first profiling component, and when the relative distance between the second profiling component and the first profiling component is less than or equal to a preset distance, the second profiling component and the first profiling component respectively process the profile.
[0005] The present application discloses a profiling device. Through the arrangement of the positioning component, the profile can be accurately positioned, ensuring the accuracy during the profile processing. At least part of the positioning component can move relative to the frame assembly, so that profiles of different sizes and shapes can be limited, increasing the application range of the positioning component. Through the arrangement of the first profiling component and the second profiling component, the profile can be processed simultaneously and their respective functions are clearly defined. For example, the second profiling component is responsible for processing pin holes, glue injection holes, corner code holes, lock box holes, etc. on the profile, thus the processing efficiency is higher. Since the first profiling component and the second profiling component can move relative to the frame assembly, the first profiling component and the second profiling component can process all surfaces of the profile simultaneously, with strong practicability. The profiling device of the present application can adapt to profiles of different specifications and processing requirements. This flexibility enables the profiling device to be widely applied in various production environments and meet the processing requirements of different customers.
[0006] In one embodiment, the positioning assembly includes a support roller assembly, a first positioning member, and a second positioning member. The support roller assembly is disposed on the frame assembly. The first positioning member is disposed on the frame assembly and / or the support roller assembly, and a part of the first positioning member is movable relative to the frame assembly. The second positioning member is disposed on the frame assembly and / or the support roller assembly, and a part of the second positioning member is movable relative to the frame assembly. The first positioning member and the second positioning member are respectively used to abut against or separate from different sides of the profile. Through the coordinated work of the support roller assembly, the first positioning member, and the second positioning member, the degrees of freedom of the profile can be limited in all directions, and the positioning effect of the positioning assembly on the profile is better, thereby improving the stability and accuracy during profile processing. This design can limit profiles of different sizes and shapes, increasing the flexibility and applicability of the positioning assembly. Moreover, it helps to reduce the scrap rate and rework rate, thereby saving costs.
[0007] In one embodiment, the support roller assembly includes a support block, a first material roller, and a second material roller. The support block is disposed on the frame assembly. The first material roller and the second material roller are both disposed on the support block. The first material roller is used to support the profile, and the second material roller is used to limit the side portion of the profile. Through the arrangement of the first material roller and the second material roller, a stable limiting foundation is provided for the profile, ensuring the stability of the profile during processing, reducing vibration and movement of the profile. Moreover, the profile can be quickly positioned to the processing position, shortening the preparation time and improving the processing efficiency.
[0008] In one embodiment, the first positioning member includes a first slide rail, a first positioning cylinder, a first slide seat, and a third material roller. The first slide rail is disposed on the frame assembly and / or the support roller assembly. The first positioning cylinder is disposed on the first slide rail. The first slide seat is movably disposed on the first slide rail, and the first slide seat is connected to the output end of the first positioning cylinder. The first positioning cylinder can drive the first slide seat to slide in a direction approaching or departing from the support roller assembly. The third material roller is disposed on the first slide seat, and the third material roller is used to abut against or separate from the profile. Through the first positioning cylinder, the movement of the first slide seat can be precisely controlled, thereby realizing the precise abutting against or separation from the profile by the third material roller, ensuring the lateral positioning accuracy of the profile during processing. Moreover, the cylinder drive system usually has a relatively fast response speed, and the first positioning member can be quickly adjusted to the required position, shortening the preparation time before processing.
[0009] In one embodiment, the second positioning member includes a support column, a second slide rail, a second positioning cylinder, a second slide seat, and a fourth material roller. The support column is provided on the frame assembly and / or the support roller assembly. The second slide rail and the second positioning cylinder are both provided on the support column. The second slide seat is movably arranged on the second slide rail. The second slide seat is connected to the output end of the second positioning cylinder. The second positioning cylinder can drive the second slide seat to slide in a direction close to or away from the support roller assembly. The fourth material roller is provided on the second slide seat. The fourth material roller is used to abut against or separate from the profile. By providing the second positioning member, the top of the profile can be limited. By providing the support column, a stable support effect is provided for the second positioning cylinder. By providing the second positioning cylinder, it can be synchronously controlled with the first positioning cylinder to ensure the coordinated movement of the two side positioning members and improve the processing efficiency. By connecting the output end of the second positioning cylinder to the second slide seat, the power generated by the second positioning cylinder can be directly and accurately transmitted to the second slide seat, thereby reducing the kinetic energy loss of the second positioning cylinder.
[0010] In one embodiment, the first profile milling assembly includes a first movable support assembly, a first movable profile milling assembly, and a second movable profile milling assembly. The first movable support assembly is movably arranged on the frame assembly. The first movable support assembly can move relative to the frame assembly. The first movable profile milling assembly is provided on the first movable support assembly. A part of the first movable profile milling assembly can move relative to the first movable support assembly. The second movable profile milling assembly is provided on the first movable profile milling assembly. A part of the second movable profile milling assembly can move relative to the first movable profile milling assembly. By enabling the first movable profile milling assembly and the second movable profile milling assembly to move up and down and back and forth, the first profile milling assembly can process the profile at different positions and in different directions, increasing the flexibility and diversity of processing. This design enables the first movable profile milling assembly and the second movable profile milling assembly to accurately adjust their positions to achieve high-precision processing of the profile, ensuring that the processed profile meets the design standards, thereby improving the processing quality of the profile.
[0011] In one embodiment, the first movable support assembly includes a first motor screw rod assembly and a movable support plate. The movable support plate is movably arranged on the frame assembly, the first motor screw rod assembly is arranged on the frame assembly, the screw nut of the first motor screw rod assembly is connected to the movable support plate, and the first motor screw rod assembly can drive the movable support plate to slide in a direction close to or away from the second movable milling component. The first motor screw rod assembly can provide precise position control, ensuring the accurate movement of the movable support plate, with strong practicability. Moreover, the first motor screw rod assembly has a function of rapid response, which can effectively improve the processing efficiency. In addition, the first motor screw rod assembly usually has high stability and reliability, can withstand repeated load cycles, and is suitable for the production requirements of long-term operation.
[0012] In one embodiment, the first movable milling component includes a second motor screw rod assembly, a first slide plate assembly and a first milling body. The first slide plate assembly is movably arranged on the first movable support assembly, the second motor screw rod assembly is arranged on the first movable support assembly, the screw nut of the second motor screw rod assembly is connected to the first slide plate assembly, and the second motor screw rod assembly can drive the first slide plate assembly to slide up and down relative to the first movable support assembly. The arrangement of the second motor screw rod assembly provides precise vertical position control for the first slide plate assembly, ensuring that the first slide plate assembly and the first milling body can accurately reach the processing position and improving the processing accuracy. The up and down sliding of the first slide plate assembly enables the first milling body to process the profile in the vertical direction, increasing the processing space range and multi-dimensional processing ability.
[0013] In one embodiment, the second movable milling component includes a driving cylinder, a second slide plate assembly and a second milling body. The second slide plate assembly is movably arranged on the first movable milling component, the driving cylinder is arranged on the first movable milling component, the output end of the driving cylinder is connected to the second slide plate assembly, and the driving cylinder can drive the second slide plate assembly to slide in a direction close to or away from the second movable milling component. By connecting the output end of the driving cylinder to the second slide plate assembly, the degree of automation of the operation is improved, adapting to the rapidly changing processing requirements. The sliding of the second slide plate assembly enables the second milling body to process the profile in the horizontal direction, increasing the processing space range and flexibility.
[0014] In one embodiment, the second milling component includes a second movable support component, a third movable milling component, and a fourth movable milling component. The second movable support component is movably arranged on the frame component. The second movable support component can move relative to the frame component in a direction approaching or departing from the first milling component. The third movable milling component is arranged on the second movable support component. The part of the third movable milling component for processing profiles can move up and down relative to the second movable support component. The fourth movable milling component is arranged on the third movable milling component. The part of the fourth movable milling component for processing profiles can move in a direction approaching or departing from the first milling component relative to the third movable milling component. Through the arrangement of the second movable support component, the third movable milling component, and the fourth movable milling component, different sides of the profiles can be processed, increasing the flexibility of processing. The third movable milling component and the fourth movable milling component can move up and down and back and forth, so that the second milling component can process in the vertical and horizontal directions, increasing the processing ability for different orientations of the profiles.
[0015] In one embodiment, it further includes a laser scribing component. The laser scribing component includes a first scribing member and a second scribing member. One of the first scribing member and the second scribing member is arranged on the first milling component, and the other of the first scribing member and the second scribing member is arranged on the second milling component. Both the first scribing member and the second scribing member can move relative to the frame component. Through the arrangement of the laser scribing component, the milling device can not only perform milling operations but also perform scribing operations, increasing the versatility of the milling device. Moreover, the laser scribing component has high precision and can perform precise marking without contacting the profiles, avoiding errors that may be caused by physical contact. By arranging the first scribing member and the second scribing member on the first milling component and the second milling component respectively, the first scribing member and the second scribing member can move along with the movement of the first milling component and the second milling component, increasing the flexibility of movement.
[0016] In one embodiment, the frame component includes a third slide rail, a frame body, and a third motor screw rod component. The frame body is movably arranged on the third slide rail. The screw nut of the third motor screw rod component is connected to the frame body. The third motor screw rod component can drive the frame body to slide relative to the third slide rail. By enabling the frame body to slide along the third slide rail, the entire milling device can move within a certain range, increasing the flexibility and adaptability of the milling device. The automatic control of the third motor screw rod component reduces the need for manual adjustment and improves the degree of automation of the operation. Description of the Drawings
[0017] Figure 1 is the first three-dimensional view of the milling device;
[0018] Figure 2 is the second three-dimensional view of the milling device;
[0019] Figure 3 is the exploded view of the milling device;
[0020] Figure 4 is the three-dimensional view of the positioning component;
[0021] Figure 5 is the exploded view of the positioning component;
[0022] Figure 6 is the three-dimensional view of the first milling component;
[0023] Figure 7 is the first exploded view of the first milling component;
[0024] Figure 8 is the second exploded view of the first milling component;
[0025] Figure 9 is the three-dimensional view of the second milling component;
[0026] Figure 10 is the exploded view of the second milling component;
[0027] Figure 11 is the three-dimensional view of the laser scribing component;
[0028] Figure 12 is the three-dimensional view of the frame component.
[0029] Among them, the corresponding relationship between the reference numerals and the component names is as follows:
[0030] 1 frame component, 11 third slide rail, 12 frame body, 13 third motor screw rod assembly;
[0031] 2 positioning component, 21 support roller assembly, 211 support block, 212 first material roller, 213 second material roller, 22 first positioning member, 221 first slide rail, 222 first positioning cylinder, 223 first slide block, 224 third material roller, 23 second positioning member, 231 support column, 232 second slide rail, 233 second positioning cylinder, 234 second slide block, 235 fourth material roller;
[0032] 3 first milling component, 31 first movable support component, 311 first motor screw rod assembly, 312 movable support plate, 32 first movable milling component, 321 second motor screw rod assembly, 322 first slide plate assembly, 323 first milling body, 33 second movable milling component, 331 driving cylinder, 332 second slide plate assembly, 333 second milling body;
[0033] 4 The second milling material component, 41 the second movable support component, 42 the third movable milling material component, 43 the fourth movable milling material component;
[0034] 5 The laser scribing component, 51 the first scribing part, 52 the second scribing part. Detailed implementation manners
[0035] In order to more clearly understand the above-mentioned objects, features and advantages of the present utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific implementation manners. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0036] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the specific embodiments disclosed below.
[0037] As Figures 1 - 3 shown, this embodiment discloses a milling material device, including: a frame body component 1; a positioning component 2, the positioning component 2 is arranged on the frame body component 1, at least part of the positioning component 2 can move relative to the frame body component 1, and the positioning component 2 can abut against or separate from the profile; a first milling material component 3, the first milling material component 3 is movably arranged on the frame body component 1, and the first milling material component 3 can move relative to the frame body component 1; a second milling material component 4, the second milling material component 4 is movably arranged on the frame body component 1, the second milling material component 4 can move relative to the frame body component 1, the second milling material component 4 can approach or move away from the first milling material component 3, and when the relative distance between the second milling material component 4 and the first milling material component 3 is less than or equal to a preset distance, the second milling material component 4 and the first milling material component 3 respectively process the profile.
[0038] The present application discloses a profiling device. Through the arrangement of the positioning component 2, the profile can be accurately positioned, ensuring the accuracy during the processing of the profile. At least part of the positioning component 2 can move relative to the frame component 1, so as to limit profiles of different sizes and shapes, increasing the applicable range of the positioning component 2. Through the arrangement of the first profiling component 3 and the second profiling component 4, the profile can be processed simultaneously and each has a clear division of labor. For example, the second profiling component 4 is responsible for processing pin holes, glue injection holes, corner fitting holes, lock box holes, etc. of the profile, thus having higher processing efficiency. Since the first profiling component 3 and the second profiling component 4 can move relative to the frame component 1, the first profiling component 3 and the second profiling component 4 can process all surfaces of the profile simultaneously, with strong practicability. The profiling device of the present application can adapt to profiles of different specifications and processing requirements. This flexibility enables the profiling device to be widely applied to various production environments and meet the processing requirements of different customers.
[0039] As Figure 4 shown, in addition to the features of the above embodiments, this embodiment further defines that: the positioning component 2 includes a support roller assembly 21, a first positioning member 22 and a second positioning member 23. The support roller assembly 21 is arranged on the frame component 1. The first positioning member 22 is arranged on the frame component 1 and / or the support roller assembly 21. A part of the first positioning member 22 can move relative to the frame component 1. The second positioning member 23 is arranged on the frame component 1 and / or the support roller assembly 21. A part of the second positioning member 23 can move relative to the frame component 1. The first positioning member 22 and the second positioning member 23 are respectively used to abut against or separate from different sides of the profile. Through the coordinated work of the support roller assembly 21, the first positioning member 22 and the second positioning member 23, the degrees of freedom of the profile can be limited in all directions, and the positioning component 2 has a better limiting effect on the profile, thereby improving the stability and accuracy during profile processing. This design can limit profiles of different sizes and shapes, increasing the flexibility and applicability of the positioning component 2. Moreover, it helps to reduce the rejection rate and rework rate, thus saving costs.
[0040] As Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that: the support roller assembly 21 includes a support block 211, a first material roller 212 and a second material roller 213. The support block 211 is arranged on the frame component 1. The first material roller 212 and the second material roller 213 are both arranged on the support block 211. The first material roller 212 is used to support the profile, and the second material roller 213 is used to limit the side part of the profile. Through the arrangement of the first material roller 212 and the second material roller 213, a stable limiting basis is provided for the profile, ensuring the stability of the profile during the processing, so that the profile reduces vibration and movement. Moreover, the profile can be quickly positioned to the processing position, shortening the preparation time and improving the processing efficiency.
[0041] As Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that the first positioning member 22 includes a first slide rail 221, a first positioning cylinder 222, a first slide seat 223, and a third material roller 224. The first slide rail 221 is arranged on the frame assembly 1 and / or the support roller assembly 21. The first positioning cylinder 222 is arranged on the first slide rail 221. The first slide seat 223 is movably arranged on the first slide rail 221. The first slide seat 223 is connected to the output end of the first positioning cylinder 222. The first positioning cylinder 222 can drive the first slide seat 223 to slide in a direction close to or away from the support roller assembly 21. The third material roller 224 is arranged on the first slide seat 223. The third material roller 224 is used to abut against or separate from the profile. The movement of the first slide seat 223 can be precisely controlled by the first positioning cylinder 222, so as to realize the precise abutment or separation of the third material roller 224 from the profile, and ensure the lateral positioning accuracy of the profile during the processing. Moreover, the cylinder drive system usually has a relatively fast response speed, and the first positioning member 22 can be quickly adjusted to the required position, shortening the preparation time before processing.
[0042] As Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that the second positioning member 23 includes a support column 231, a second slide rail 232, a second positioning cylinder 233, a second slide seat 234, and a fourth material roller 235. The support column 231 is arranged on the frame assembly 1 and / or the support roller assembly 21. The second slide rail 232 and the second positioning cylinder 233 are both arranged on the support column 231. The second slide seat 234 is movably arranged on the second slide rail 232. The second slide seat 234 is connected to the output end of the second positioning cylinder 233. The second positioning cylinder 233 can drive the second slide seat 234 to slide in a direction close to or away from the support roller assembly 21. The fourth material roller 235 is arranged on the second slide seat 234. The fourth material roller 235 is used to abut against or separate from the profile. The top of the profile can be limited by the arrangement of the second positioning member 23. The stable support effect is provided for the second positioning cylinder 233 through the arrangement of the support column 231. By arranging the second positioning cylinder 233, it can be synchronously controlled with the first positioning cylinder 222 to ensure the coordinated movement of the two side positioning members and improve the processing efficiency. The power generated by the second positioning cylinder 233 is directly and precisely transmitted to the second slide seat 234 through the connection between the output end of the second positioning cylinder 233 and the second slide seat 234, thereby reducing the kinetic energy loss of the second positioning cylinder 233.
[0043] As Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines that the first milling material component 3 includes a first movable support component 31, a first movable milling material component 32, and a second movable milling material component 33. The first movable support component 31 is movably arranged on the frame component 1, and the first movable support component 31 can move relative to the frame component 1. The first movable milling material component 32 is arranged on the first movable support component 31, and a part of the first movable milling material component 32 can move relative to the first movable support component 31. The second movable milling material component 33 is arranged on the first movable milling material component 32, and a part of the second movable milling material component 33 can move relative to the first movable milling material component 32. By the first movable milling material component 32 and the second movable milling material component 33 being able to move up and down and back and forth, the first milling material component 3 can process profiles at different positions and in different directions, increasing the flexibility and diversity of processing. This design enables the first movable milling material component 32 and the second movable milling material component 33 to accurately adjust their positions to achieve high-precision processing of profiles, ensuring that the processed profiles meet the design standards, thereby improving the processing quality of profiles.
[0044] As Figure 7 shown, in addition to the features of the above embodiments, this embodiment further defines that the first movable support component 31 includes a first motor screw rod component 311 and a movable support plate 312. The movable support plate 312 is movably arranged on the frame component 1, the first motor screw rod component 311 is arranged on the frame component 1, the screw nut of the first motor screw rod component 311 is connected to the movable support plate 312, and the first motor screw rod component 311 can drive the movable support plate 312 to slide in a direction close to or away from the second movable milling material component 33. By the first motor screw rod component 311, precise position control can be provided to ensure the accurate movement of the movable support plate 312, with strong practicality. Moreover, the first motor screw rod component 311 has the function of fast response, which can effectively improve the processing efficiency. In addition, the first motor screw rod component 311 usually has high stability and reliability, can withstand repeated load cycles, and is suitable for long-term operation production requirements.
[0045] As Figure 7As shown, in addition to the features of the above embodiments, this embodiment further defines that the first movable milling material assembly 32 includes a second motor screw rod assembly 321, a first slide plate assembly 322, and a first milling material body 323. The first slide plate assembly 322 is movably arranged on the first movable support assembly 31. The second motor screw rod assembly 321 is arranged on the first movable support assembly 31. The screw nut of the second motor screw rod assembly 321 is connected to the first slide plate assembly 322. The second motor screw rod assembly 321 can drive the first slide plate assembly 322 to slide up and down relative to the first movable support assembly 31. The setting of the second motor screw rod assembly 321 provides precise vertical position control for the first slide plate assembly 322, ensuring that the first slide plate assembly 322 and the first milling material body 323 can accurately reach the processing position and improving the processing accuracy. The up and down sliding of the first slide plate assembly 322 enables the first milling material body 323 to process the profile in the vertical direction, increasing the processing space range and multi-dimensional processing ability.
[0046] As Figure 8 shown, in addition to the features of the above embodiments, this embodiment further defines that the second movable milling material assembly 33 includes a driving cylinder 331, a second slide plate assembly 332, and a second milling material body 333. The second slide plate assembly 332 is movably arranged on the first movable milling material assembly 32. The driving cylinder 331 is arranged on the first movable milling material assembly 32. The output end of the driving cylinder 331 is connected to the second slide plate assembly 332. The driving cylinder 331 can drive the second slide plate assembly 332 to slide in a direction approaching or departing from the second movable milling material assembly 33. By connecting the output end of the driving cylinder 331 to the second slide plate assembly 332, the degree of automation of the operation is improved, adapting to the rapidly changing processing requirements. The sliding of the second slide plate assembly 332 enables the second milling material body 333 to process the profile in the horizontal direction, increasing the processing space range and flexibility.
[0047] As Figure 9 and Figure 10As shown, in addition to the features of the above embodiments, this embodiment further defines that the second milling component 4 includes a second movable support component 41, a third movable milling component 42, and a fourth movable milling component 43. The second movable support component 41 is movably arranged on the frame component 1. The second movable support component 41 can move relative to the frame component 1 in a direction approaching or departing from the first milling component 3. The third movable milling component 42 is arranged on the second movable support component 41. The part of the third movable milling component 42 for processing the profile can move up and down relative to the second movable support component 41. The fourth movable milling component 43 is arranged on the third movable milling component 42. The part of the fourth movable milling component 43 for processing the profile can move in a direction approaching or departing from the first milling component 3 relative to the third movable milling component 42. By providing the second movable support component 41, the third movable milling component 42, and the fourth movable milling component 43, different sides of the profile can be processed, increasing the flexibility of processing. The third movable milling component 42 and the fourth movable milling component 43 can move up and down and back and forth, so that the second milling component 4 can process in the vertical and horizontal directions, increasing the processing ability of different orientations of the profile.
[0048] As Figure 11 As shown, in addition to the features of the above embodiments, this embodiment further defines that it further includes a laser scribing component 5. The laser scribing component 5 includes a first scribing member 51 and a second scribing member 52. One of the first scribing member 51 and the second scribing member 52 is arranged on the first milling component 3, and the other of the first scribing member 51 and the second scribing member 52 is arranged on the second milling component 4. Both the first scribing member 51 and the second scribing member 52 can move relative to the frame component 1. By providing the laser scribing component 5, the milling device can not only perform milling operations but also perform scribing operations, increasing the versatility of the milling device. Moreover, the laser scribing component 5 has high precision and can perform precise marking without contacting the profile, avoiding errors that may be caused by physical contact. By arranging the first scribing member 51 and the second scribing member 52 on the first milling component 3 and the second milling component 4 respectively, the first scribing member 51 and the second scribing member 52 can move with the movement of the first milling component 3 and the second milling component 4, increasing the flexibility of movement.
[0049] As Figure 12As shown, in addition to the features of the above embodiments, this embodiment further defines that the frame assembly 1 includes a third slide rail 11, a frame body 12, and a third motor screw assembly 13. The frame body 12 is movably arranged on the third slide rail 11. The screw nut of the third motor screw assembly 13 is connected to the frame body 12. The third motor screw assembly 13 can drive the frame body 12 to slide relative to the third slide rail 11. By enabling the frame body 12 to slide along the third slide rail 11, the entire milling device can move within a certain range, increasing the flexibility and adaptability of the milling device. The automated control of the third motor screw assembly 13 reduces the need for manual adjustment and improves the degree of automation of the operation.
[0050] The above embodiments only represent several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model patent shall be subject to the appended claims.
Claims
1. A milling device, characterized in that, Comprising: Frame assembly (1); Positioning assembly (2), the positioning assembly (2) is arranged on the frame assembly (1), at least part of the positioning assembly (2) can move relative to the frame assembly (1), and the positioning assembly (2) can abut against or separate from the profile; First profile milling assembly (3), the first profile milling assembly (3) is movably arranged on the frame assembly (1), and the first profile milling assembly (3) can move relative to the frame assembly (1); Second profile milling assembly (4), the second profile milling assembly (4) is movably arranged on the frame assembly (1), the second profile milling assembly (4) can move relative to the frame assembly (1), the second profile milling assembly (4) can move closer to or away from the first profile milling assembly (3), and when the relative distance between the second profile milling assembly (4) and the first profile milling assembly (3) is less than or equal to a preset distance, the second profile milling assembly (4) and the first profile milling assembly (3) respectively process the profile.
2. The milling device according to claim 1, characterized in that, The positioning assembly (2) includes a support roller assembly (21), a first positioning member (22) and a second positioning member (23), the support roller assembly (21) is arranged on the frame assembly (1), the first positioning member (22) is arranged on the frame assembly (1) and / or the support roller assembly (21), part of the first positioning member (22) can move relative to the frame assembly (1), the second positioning member (23) is arranged on the frame assembly (1) and / or the support roller assembly (21), part of the second positioning member (23) can move relative to the frame assembly (1), and the first positioning member (22) and the second positioning member (23) are respectively used to abut against or separate from different sides of the profile.
3. The profile milling device according to claim 2, wherein The support roller assembly (21) includes a support block (211), a first material roller (212) and a second material roller (213), the support block (211) is arranged on the frame assembly (1), the first material roller (212) and the second material roller (213) are both arranged on the support block (211), the first material roller (212) is used to support the profile, and the second material roller (213) is used to limit the side part of the profile; And / or the first positioning member (22) includes a first slide rail (221), a first positioning cylinder (222), a first slide block (223), and a third material roller (224). The first slide rail (221) is disposed on the frame assembly (1) and / or the support roller assembly (21). The first positioning cylinder (222) is disposed on the first slide rail (221). The first slide block (223) is movably disposed on the first slide rail (221). The first slide block (223) is connected to the output end of the first positioning cylinder (222). The first positioning cylinder (222) is capable of driving the first slide block (223) to slide in a direction approaching or departing from the support roller assembly (21). The third material roller (224) is disposed on the first slide block (223), and the third material roller (224) is used to abut against or separate from the profile.
4. The milling device according to claim 2, characterized in that, The second positioning member (23) includes a support column (231), a second slide rail (232), a second positioning cylinder (233), a second slide block (234), and a fourth material roller (235). The support column (231) is disposed on the frame assembly (1) and / or the support roller assembly (21). The second slide rail (232) and the second positioning cylinder (233) are both disposed on the support column (231). The second slide block (234) is movably disposed on the second slide rail (232). The second slide block (234) is connected to the output end of the second positioning cylinder (233). The second positioning cylinder (233) is capable of driving the second slide block (234) to slide in a direction approaching or departing from the support roller assembly (21). The fourth material roller (235) is disposed on the second slide block (234), and the fourth material roller (235) is used to abut against or separate from the profile.
5. The milling device according to claim 1, characterized in that, The first profile milling assembly (3) includes a first movable support assembly (31), a first movable profile milling assembly (32), and a second movable profile milling assembly (33). The first movable support assembly (31) is movably disposed on the frame assembly (1). The first movable support assembly (31) is capable of moving relative to the frame assembly (1). The first movable profile milling assembly (32) is disposed on the first movable support assembly (31). A part of the first movable profile milling assembly (32) is capable of moving relative to the first movable support assembly (31). The second movable profile milling assembly (33) is disposed on the first movable profile milling assembly (32). A part of the second movable profile milling assembly (33) is capable of moving relative to the first movable profile milling assembly (32).
6. The milling device according to claim 5, characterized in that, The first movable support assembly (31) includes a first motor screw rod assembly (311) and a movable support plate (312). The movable support plate (312) is movably arranged on the frame assembly (1). The first motor screw rod assembly (311) is arranged on the frame assembly (1). The screw nut of the first motor screw rod assembly (311) is connected to the movable support plate (312). The first motor screw rod assembly (311) can drive the movable support plate (312) to slide in a direction close to or away from the second movable milling material assembly (33).
7. The milling material device according to claim 5, wherein The first movable milling material assembly (32) includes a second motor screw rod assembly (321), a first slide plate assembly (322) and a first milling material body (323). The first slide plate assembly (322) is movably arranged on the first movable support assembly (31). The second motor screw rod assembly (321) is arranged on the first movable support assembly (31). The screw nut of the second motor screw rod assembly (321) is connected to the first slide plate assembly (322). The second motor screw rod assembly (321) can drive the first slide plate assembly (322) to slide up and down relative to the first movable support assembly (31); and / or the second movable milling material assembly (33) includes a driving air cylinder (331), a second slide plate assembly (332) and a second milling material body (333). The second slide plate assembly (332) is movably arranged on the first movable milling material assembly (32). The driving air cylinder (331) is arranged on the first movable milling material assembly (32). The output end of the driving air cylinder (331) is connected to the second slide plate assembly (332). The driving air cylinder (331) can drive the second slide plate assembly (332) to slide in a direction close to or away from the second movable milling material assembly (33).
8. The milling device according to claim 1, wherein The second milling material assembly (4) includes a second movable support assembly (41), a third movable milling material assembly (42) and a fourth movable milling material assembly (43). The second movable support assembly (41) is movably arranged on the frame assembly (1). The second movable support assembly (41) can move relative to the frame assembly (1) in a direction close to or away from the first milling material assembly (3). The third movable milling material assembly (42) is arranged on the second movable support assembly (41). The part of the third movable milling material assembly (42) for processing profiles can move up and down relative to the second movable support assembly (41). The fourth movable milling material assembly (43) is arranged on the third movable milling material assembly (42). The part of the fourth movable milling material assembly (43) for processing profiles can move in a direction close to or away from the first milling material assembly (3) relative to the third movable milling material assembly (42).
9. The milling device according to claim 1, characterized in that, It further includes a laser scribing component (5), and the laser scribing component (5) includes a first scribing member (51) and a second scribing member (52). One of the first scribing member (51) and the second scribing member (52) is arranged on the first milling component (3), and the other of the first scribing member (51) and the second scribing member (52) is arranged on the second milling component (4). Both the first scribing member (51) and the second scribing member (52) can move relative to the frame component (1).
10. The milling device according to claim 1, characterized in that, The frame component (1) includes a third slide rail (11), a frame body (12) and a third motor screw rod component (13). The frame body (12) is movably arranged on the third slide rail (11). The screw nut of the third motor screw rod component (13) is connected to the frame body (12), and the third motor screw rod component (13) can drive the frame body (12) to slide relative to the third slide rail (11).