Sawing machine
By designing a sawing machine that integrates feed, milling, sawing and discharge components, the problem of existing sawing machines being able to cut in one piece is solved, and the completion of a variety of processing tasks and space saving effects are achieved.
Patent Information
- Application Number
- CN202421989889.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing sawing machines can only perform a single cutting operation and cannot complete other processing tasks such as milling at the same time. The overall layout is not compact, resulting in a large volume and taking up more space.
A sawing machine integrating feed assembly, milling assembly, sawing assembly and discharge assembly is designed to realize the continuous workflow of profiles through the linear layout of these components, supporting dual sawing and milling machining.
It realizes automatic loading and unloading, reduces manual operation and improves production efficiency; can complete multiple processing tasks on one machine, improving utilization; the overall design is compact, with a small footprint, and is suitable for production environments with limited space.
Smart Images

Figure CN223029036U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sawing equipment, in particular to a sawing machine. Background Art
[0002] A sawing machine is a machine used in the manufacturing field to precisely cut and process metal or non-metal profiles. However, there are still some limitations in the existing sawing machines during use: the sawing machine can only perform a single cutting operation and cannot simultaneously complete other processing tasks such as milling. In addition, the overall layout and design of the sawing machine are not compact enough, resulting in a larger volume of the sawing machine and thus occupying more placement space. Summary of the Utility Model
[0003] Based on this, in view of the problem that the sawing machine can only perform a single cutting operation, it is necessary to provide a sawing machine.
[0004] A sawing machine includes: a main machine base; a feeding assembly connected to the main machine base; a discharging assembly connected to the main machine base, with the discharging assembly and the feeding assembly located at both ends of the main machine base respectively; a milling assembly arranged on the main machine base, the milling assembly being located in the length direction of the feeding assembly, the feeding assembly being capable of conveying the profile to the milling assembly, and the milling assembly being used for milling the profile; a sawing assembly arranged on the main machine base, the sawing assembly being located between the milling assembly and the discharging assembly, the sawing assembly being located in the length direction of the discharging assembly, the sawing assembly being used for sawing the profile, and the profile located at the sawing assembly being capable of being conveyed to the discharging assembly.
[0005] The present application discloses a sawing machine. Through the arrangement of the feeding assembly and the discharging assembly, simple and easy automatic feeding and discharging can be realized, manual operation is reduced, and production efficiency is improved. Through the arrangement of the milling assembly and the sawing assembly, the product not only has the traditional sawing function but also can perform milling processing, so that multiple processing tasks can be completed on one sawing machine, the time for replacing processing machines and adjusting the production line is reduced, and the utilization rate of the sawing machine is improved. By integrating the milling assembly and the sawing assembly on the main machine base, the entire sawing machine occupies a small area and is suitable for a production environment with limited space. The sawing machine of the present application forms a continuous working process through the linear layout of the feeding assembly, the milling assembly, the sawing assembly and the discharging assembly, making the processes of feeding, processing and discharging the profile more smooth, reducing the pause time in the intermediate links, and improving the processing efficiency of the product.
[0006] In one embodiment, the feeding assembly includes a first frame assembly, a first conveyor belt assembly, and a first clamping assembly. The first frame assembly is connected to the main seat body. The first conveyor belt assembly is disposed on the first frame assembly. The first conveyor belt assembly can convey profiles to the first frame assembly. The first clamping assembly is movably disposed on the first frame assembly. The first clamping assembly can move along the length direction of the first frame assembly. The first clamping assembly can convey the profiles located on the first frame assembly to the profile milling assembly. Through the arrangement of the first conveyor belt assembly, profiles can be continuously conveyed from the feeding end to the first frame assembly, ensuring a stable supply of profiles and avoiding production interruptions caused by material shortages. Since the first clamping assembly can move along the length direction of the first frame assembly, the first clamping assembly can quickly and accurately locate and clamp profiles, improving the conveying efficiency of the profiles.
[0007] In one embodiment, the first frame assembly includes a fixed frame and a movable frame. The fixed frame is connected to the main seat body. The movable frame is movably disposed on the fixed frame. The movable frame is located between the fixed frame and the first conveyor belt assembly. The movable frame can move in the height direction of the fixed frame. When the movable frame moves relative to the fixed frame, the movable frame can pick up the profiles located on the first conveyor belt assembly. Since the movable frame can move up and down relative to the fixed frame, the movable frame can flexibly and stably pick up the profiles located on the first conveyor belt assembly. Since the movable frame is located between the fixed frame and the first conveyor belt assembly, it is more convenient for the movable frame to pick up the profiles located on the first conveyor belt assembly.
[0008] In one embodiment, the first clamping assembly includes a first moving plate assembly, a support member, and a clamping member. The first moving plate assembly is movably disposed on the first frame assembly. The first moving plate assembly can move along the length direction of the first frame assembly. The support member is disposed on the first moving plate assembly. The clamping member is disposed on the support member. The clamping member can convey the profiles located on the first frame assembly to the profile milling assembly. Since the first clamping assembly can move along the length direction of the first frame assembly, the first clamping assembly can adapt to the clamping requirements of profiles at different positions, increasing the flexibility and accuracy of the first clamping assembly. Moreover, the movement trajectory and speed of the first clamping assembly are controllable, and the degree of automation is high.
[0009] In one embodiment, the milling material assembly includes a support frame body, a first material pressing assembly, and milling members. The support frame body is movably arranged on the main machine base body, and the support frame body can move relative to the main machine base body. The first material pressing assembly is arranged on the support frame body, and a part of the first material pressing assembly can move relative to the support frame body. The first material pressing assembly can clamp or release the profile. The number of the milling members is multiple, and multiple milling members are all arranged on the support frame body. Multiple milling members are respectively located on both sides of the support frame body, and one or more of the multiple milling members can move relative to the support frame body. The profile can be clamped or released through the first material pressing assembly, ensuring the stability of the profile during the milling process. This design helps to reduce the vibration and displacement of the profile, thereby improving the milling accuracy. Since multiple milling members are respectively located on both sides of the support frame body, multiple milling members can process both sides of the profile simultaneously, thus significantly improving the processing efficiency and reducing the processing cycle of the profile. Since one or more of the multiple milling members can move relative to the support frame body, it can adapt to different milling material requirements and has a wide application range.
[0010] In one embodiment, the first material pressing assembly includes a first limiting frame, a first material pressing member, and a second material pressing member. The first limiting frame is arranged on the support frame body. The first material pressing member and the second material pressing member are both arranged on the first limiting frame. The part of the first material pressing member for pressing the material can move relative to the first limiting frame and can move in the height direction of the first limiting frame. The part of the second material pressing member for pressing the material can move relative to the first limiting frame and can move along the width direction of the first limiting frame. Since the parts of the first material pressing member and the second material pressing member for pressing the material move in the height direction and the width direction of the first limiting frame respectively, the first material pressing assembly can clamp profiles of different sizes and shapes. This design improves the flexibility and adaptability of the first material pressing assembly. Moreover, the first material pressing member and the second material pressing member can accurately press the profile, ensuring the stability and processing accuracy of the profile during the processing.
[0011] In one embodiment, the milling member includes a first support column, a first sliding plate assembly, and a milling member body. The first support column is movably disposed on the support frame body, and the first support column can slide along the length direction of the support frame body. The first sliding plate assembly is movably disposed on the first support column, and the first sliding plate assembly can slide along the height direction of the first support column. The number of the milling member bodies is multiple, and the multiple milling member bodies are disposed on the first sliding plate assembly. By enabling the first support column to slide along the length direction of the support frame body and the first sliding plate assembly to slide along the height direction of the first support column, this multi-dimensional adjustment ability enables the milling member body to process profiles at different positions and angles. By disposing the multiple milling member bodies on the first sliding plate assembly, the milling member body can process all surfaces of the profile, thereby improving the processing efficiency.
[0012] In one embodiment, the sawing component includes a second material pressing component and a sawing member. The second material pressing component is disposed on the main machine base body, and a part of the second material pressing component can move relative to the main machine base body. The second material pressing component can clamp or loosen the profile. The sawing member is disposed on the main machine base body, and a part of the sawing member can move relative to the second material pressing component. By enabling a part of the second material pressing component to move relative to the main machine base body, the second material pressing component can clamp profiles of different sizes and shapes. This design improves the flexibility and adaptability of the material pressing component. Moreover, the second material pressing component can automatically and easily adjust the material pressing position, thereby improving the working efficiency. By enabling a part of the sawing member to move relative to the second material pressing component, the sawing member can quickly and accurately complete the sawing task.
[0013] In one embodiment, the second material pressing component includes a second limiting frame, a third material pressing member, and a fourth material pressing member. The second limiting frame is disposed on the main machine base body, and both the third material pressing member and the fourth material pressing member are disposed on the second limiting frame. The part of the third material pressing member for pressing the material can move relative to the second limiting frame and can move in the height direction of the second limiting frame. The part of the fourth material pressing member for pressing the material can move relative to the second limiting frame and can move along the width direction of the second limiting frame. By enabling the parts of the third material pressing member and the fourth material pressing member for pressing the material to move in the height direction and the width direction of the second limiting frame respectively, the second material pressing component can clamp profiles of different sizes and shapes. Moreover, it can ensure the stability and processing accuracy of the profile during the sawing process.
[0014] In one embodiment, the sawing member includes a second support column, a second slide plate assembly, and a sawing member body. The second support column is disposed on the support frame body. The second slide plate assembly is movably disposed on the second support column. The second slide plate assembly can slide along the height direction of the second support column. The sawing member body is movably disposed on the second slide plate assembly. The sawing member body can move along the length direction of the second slide plate assembly. The provision of the second support column can provide stable support for the second slide plate assembly. The sawing member body can be adjusted in multiple dimensions in the height direction and the length direction, so that the flexibility of the movement of the sawing member is better, and the use range of the sawing member is broadened.
[0015] In one embodiment, the discharging assembly includes a second frame assembly, a second clamping assembly, and a second conveyor belt assembly. The second conveyor belt assembly is connected to the main seat body. The second frame assembly is movably disposed on the main seat body. The second frame assembly extends in the direction of the second conveyor belt assembly. The second frame assembly is located between the sawing assembly and the second conveyor belt assembly. The second frame assembly can move relative to the main seat body. The second clamping assembly is movably disposed on the second frame assembly. The second clamping assembly can move relative to the second frame assembly. The second clamping assembly can convey the profile located at the sawing assembly to the second conveyor belt assembly. The second clamping assembly can convey the profile located at the sawing assembly to the second conveyor belt assembly, which can significantly improve the conveying efficiency of the profile, reduce manual handling, and save production costs. Moreover, it can realize the continuous conveying of the profile, ensure the smoothness and high efficiency of the production process, and improve the overall production efficiency. The second conveyor belt assembly is provided for outputting the processed profile.
[0016] In one embodiment, the second clamping assembly includes a second moving plate assembly, a first clamping member, and a second clamping member. The second moving plate assembly is movably disposed on the second frame assembly. The second moving plate assembly can move along the length direction of the second frame assembly. Both the first clamping member and the second clamping member are disposed on the second moving plate assembly. The part of the first clamping member for clamping the profile can move in the width direction of the second moving plate assembly. The part of the second clamping member for clamping the profile can move in the height direction of the second moving plate assembly. Through the coordinated work of the moving plate assembly, the first clamping member, and the second clamping member, the four sides of the profile can be stably clamped, so as to meet the clamping requirements of various profiles and enhance the adaptability of the second clamping assembly. Moreover, it can reduce the shaking and displacement of the profile during the conveying process, prevent the profile from falling off the second clamping assembly, and improve the overall conveying efficiency at the same time.
[0017] In one embodiment, a laser scribing assembly is further included. The number of the laser scribing assemblies is multiple, and the multiple laser scribing assemblies are all arranged on the milling component. The laser scribing assembly is used for scribing the profiles. By using the laser scribing assembly to scribe the profiles, the accuracy and consistency of the scribing are ensured, which facilitates the operation of the sawing component and meets the requirements of fine processing. Moreover, one or multiple laser scribing assemblies can be enabled to work according to requirements, adapting to the scribing requirements at different positions and increasing the flexibility of processing.
[0018] In one embodiment, a marking assembly is further included. The marking assembly is arranged on the discharging component, and the marking assembly is used for marking the profiles located on the discharging component. Through the arrangement of the marking assembly, the profiles located on the discharging component can be automatically marked, improving the production efficiency and the ability to trace the product quality. Moreover, the automatic marking can reduce the need for manual marking, lowering the labor intensity and the risk of human errors.
[0019] In one embodiment, a chip removal assembly is further included. The chip removal assembly includes a waste pipe and a hopper. The hopper is arranged adjacent to the waste pipe. One end of the waste pipe is open and communicated with the main machine base body, and the other end of the waste pipe is open towards the hopper. Through the arrangement of the waste pipe and the hopper, the waste generated during the processing can be effectively collected and transferred, keeping the working environment clean. Moreover, automatic chip removal can be realized, reducing the production interruption caused by cleaning the waste and improving the production continuity and efficiency.
[0020] In one embodiment, the main machine base body includes a support base body and a housing. The housing is arranged on the support base body. The housing and the support base body enclose an installation space, and the milling component and the sawing component are located in the installation space. Through the arrangement of the support base body, a stable structural foundation is provided, ensuring the stable operation of the product. Through the arrangement of the housing, the waste generated during the milling and sawing processes can be prevented from splashing outside the housing, reducing the difficulty of cleaning the waste and increasing the safety at the same time. Description of the Drawings
[0021] Figure 1 is a perspective view of the sawing machine;
[0022] Figure 2 is a perspective view of the sawing machine except for the housing;
[0023] Figure 3 is a perspective view of the first frame assembly and the first conveyor belt assembly;
[0024] Figure 4 is an exploded view of the first frame assembly and the first conveyor belt assembly;
[0025] Figure 5 Is a perspective view of the first clamping assembly;
[0026] Figure 6 Is a perspective view of the milling component and the laser scribing component;
[0027] Figure 7 Is an exploded view of the milling component and the laser scribing component;
[0028] Figure 8 Is an exploded view of the first material pressing assembly;
[0029] Figure 9 Is an exploded view of the milling part;
[0030] Figure 10 Is a perspective view of the sawing component;
[0031] Figure 11 Is an exploded view of the sawing component;
[0032] Figure 12 Is an exploded view of the sawing part;
[0033] Figure 13 Is an exploded view of the second material pressing assembly;
[0034] Figure 14 Is a perspective view of the second frame assembly and the second clamping assembly;
[0035] Figure 15 Is an exploded view of the second frame assembly and the second clamping assembly;
[0036] Figure 16 Is a perspective view of the second conveyor belt assembly and the marking assembly;
[0037] Figure 17 Is a perspective view of the main frame body and the chip removal assembly.
[0038] Among them, the correspondence between the reference numerals and the component names is as follows:
[0039] 1 Main frame body, 11 Support base body, 12 Housing;
[0040] 2 Feeding assembly, 21 First frame assembly, 211 Fixed frame body, 212 Movable frame body, 22 First conveyor belt assembly, 23 First clamping assembly, 231 First moving plate assembly, 232 Support member, 233 Clamping member;
[0041] 3 Discharging assembly, 31 Second frame assembly, 32 Second clamping assembly, 321 Second moving plate assembly, 322 First clamping piece, 323 Second clamping piece, 33 Second conveyor belt assembly;
[0042] 4 Milling material assembly, 41 Support frame body, 42 First material pressing assembly, 421 First limiting frame, 422 First material pressing piece, 423 Second material pressing piece, 43 Milling material piece, 431 First support column, 432 First slide plate assembly, 433 Milling material piece body;
[0043] 5 Sawing material assembly, 51 Second material pressing assembly, 511 Second limiting frame, 512 Third material pressing piece, 513 Fourth material pressing piece, 52 Sawing material piece, 521 Second support column, 522 Second slide plate assembly, 523 Sawing material piece body;
[0044] 6 Laser scribing assembly;
[0045] 7 Marking assembly;
[0046] 8 Chip removal assembly, 81 Scrap pipe, 82 Hopper. Detailed implementation manner
[0047] In order to be able 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 in conjunction with 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.
[0048] 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.
[0049] As Figure 1-2 shown, this embodiment discloses a sawing machine, including: main machine base body 1; feeding assembly 2, the feeding assembly 2 is connected to the main machine base body 1; discharging assembly 3, the discharging assembly 3 is connected to the main machine base body 1, the discharging assembly 3 and the feeding assembly 2 are respectively located at both ends of the main machine base body 1; milling material assembly 4, the milling material assembly 4 is arranged on the main machine base body 1, the milling material assembly 4 is located in the length direction of the feeding assembly 2, the feeding assembly 2 can convey the profile to the milling material assembly 4, and the milling material assembly 4 is used for milling the profile; sawing material assembly 5, the sawing material assembly 5 is arranged on the main machine base body 1, the sawing material assembly 5 is located between the milling material assembly 4 and the discharging assembly 3, the sawing material assembly 5 is located in the length direction of the discharging assembly 3, the sawing material assembly 5 is used for sawing the profile, and the profile located at the sawing material assembly 5 can be conveyed to the discharging assembly 3.
[0050] The present application discloses a sawing machine. Through the arrangement of the feeding assembly 2 and the discharging assembly 3, simple and easy automatic feeding and discharging can be achieved, reducing manual operation and improving production efficiency. Through the arrangement of the milling component 4 and the sawing component 5, the product not only has the traditional sawing function but also can perform milling processing, so that multiple processing tasks can be completed on one sawing machine, reducing the time for replacing processing machines and adjusting the production line, and improving the utilization rate of the sawing machine. By integrating the milling component 4 and the sawing component 5 on the main machine base 1, the whole sawing machine occupies a small area and is suitable for a production environment with limited space. The sawing machine of the present application forms a continuous work process through the linear layout of the feeding assembly 2, the milling component 4, the sawing component 5 and the discharging assembly 3, making the processes of feeding, processing and discharging of profiles more smooth, reducing the pause time in the intermediate links, and improving the processing efficiency of products.
[0051] As Figure 2 shown, in addition to the features of the above embodiments, this embodiment further defines that: the feeding assembly 2 includes a first frame assembly 21, a first conveyor belt assembly 22 and a first clamping assembly 23. The first frame assembly 21 is connected to the main machine base 1. The first conveyor belt assembly 22 is arranged on the first frame assembly 21. The first conveyor belt assembly 22 can convey profiles to the first frame assembly 21. The first clamping assembly 23 is movably arranged on the first frame assembly 21. The first clamping assembly 23 can move along the length direction of the first frame assembly 21. The first clamping assembly 23 can convey the profiles located on the first frame assembly 21 to the milling component 4. Through the arrangement of the first conveyor belt assembly 22, profiles can be continuously conveyed from the feeding end to the first frame assembly 21, ensuring the stable supply of profiles and avoiding production interruption caused by material shortage. Through the first clamping assembly 23 being able to move along the length direction of the first frame assembly 21, the first clamping assembly 23 can quickly and accurately position and clamp the profiles, improving the conveying efficiency of the profiles.
[0052] As Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further defines that: the first frame assembly 21 includes a fixed frame 211 and a movable frame 212. The fixed frame 211 is connected to the main seat body 1. The movable frame 212 is movably arranged on the fixed frame 211. The movable frame 212 is located between the fixed frame 211 and the first conveyor belt assembly 22. The movable frame 212 can move in the height direction of the fixed frame 211. When the movable frame 212 moves relative to the fixed frame 211, the movable frame 212 can pick up the profiles located on the first conveyor belt assembly 22. Since the movable frame 212 can move up and down relative to the fixed frame 211, the movable frame 212 can pick up the profiles located on the first conveyor belt assembly 22 flexibly and stably. Since the movable frame 212 is located between the fixed frame 211 and the first conveyor belt assembly 22, it is more convenient for the movable frame 212 to pick up the profiles located on the first conveyor belt assembly 22.
[0053] As Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that: the first clamping assembly 23 includes a first moving plate assembly 231, a support member 232, and a clamping member 233. The first moving plate assembly 231 is movably arranged on the first frame assembly 21. The first moving plate assembly 231 can move along the length direction of the first frame assembly 21. The support member 232 is arranged on the first moving plate assembly 231. The clamping member 233 is arranged on the support member 232. The clamping member 233 can convey the profiles located on the first frame assembly 21 to the profiling component 4. Since the first clamping assembly 23 can move along the length direction of the first frame assembly 21, the first clamping assembly 23 can adapt to the clamping requirements of profiles at different positions, increasing the flexibility and accuracy of the first clamping assembly 23. Moreover, the movement trajectory and speed of the first clamping assembly 23 are controllable, and the degree of automation is high.
[0054] As Figure 6 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment further defines that the milling material assembly 4 includes a support frame body 41, a first material pressing assembly 42, and a milling material member 43. The support frame body 41 is movably arranged on the main machine base body 1, and the support frame body 41 can move relative to the main machine base body 1. The first material pressing assembly 42 is arranged on the support frame body 41, and a part of the first material pressing assembly 42 can move relative to the support frame body 41. The first material pressing assembly 42 can clamp or loosen the profile. The number of the milling material members 43 is multiple, and multiple milling material members 43 are all arranged on the support frame body 41. Multiple milling material members 43 are respectively located on both sides of the support frame body 41, and one or more of multiple milling material members 43 can move relative to the support frame body 41. The first material pressing assembly 42 can clamp or loosen the profile to ensure the stability of the profile during the milling process. This design helps to reduce the vibration and displacement of the profile, thereby improving the milling accuracy. By having multiple milling material members 43 respectively located on both sides of the support frame body 41, multiple milling material members 43 can process both sides of the profile simultaneously, thereby significantly improving the processing efficiency and reducing the processing cycle of the profile. By enabling one or more of multiple milling material members 43 to move relative to the support frame body 41, different milling material requirements can be adapted, and the applicable range is wide.
[0055] As Figure 8 shown, in addition to the features of the above embodiments, this embodiment further defines that the first material pressing assembly 42 includes a first limiting frame 421, a first material pressing member 422, and a second material pressing member 423. The first limiting frame 421 is arranged on the support frame body 41. The first material pressing member 422 and the second material pressing member 423 are both arranged on the first limiting frame 421. The part of the first material pressing member 422 for pressing the material can move relative to the first limiting frame 421 and can move in the height direction of the first limiting frame 421. The part of the second material pressing member 423 for pressing the material can move relative to the first limiting frame 421 and can move along the width direction of the first limiting frame 421. By the parts of the first material pressing member 422 and the second material pressing member 423 for pressing the material moving in the height direction and the width direction of the first limiting frame 421 respectively, the first material pressing assembly 42 can clamp profiles of different sizes and shapes. This design improves the flexibility and adaptability of the first material pressing assembly 42. Moreover, the first material pressing member 422 and the second material pressing member 423 can accurately press the profile to ensure the stability and processing accuracy of the profile during the processing.
[0056] As Figure 9As shown, in addition to the features of the above embodiments, this embodiment further defines that the milling member 43 includes a first support column 431, a first slide plate assembly 432, and a milling member body 433. The first support column 431 is movably arranged on the support frame 41, and the first support column 431 can slide along the length direction of the support frame 41. The first slide plate assembly 432 is movably arranged on the first support column 431, and the first slide plate assembly 432 can slide along the height direction of the first support column 431. The number of the milling member bodies 433 is multiple, and the multiple milling member bodies 433 are arranged on the first slide plate assembly 432. By enabling the first support column 431 to slide along the length direction of the support frame 41 and the first slide plate assembly 432 to slide along the height direction of the first support column 431, this multi-dimensional adjustment ability enables the milling member body 433 to process profiles at different positions and angles. By arranging the multiple milling member bodies 433 on the first slide plate assembly 432, the milling member body 433 can process all surfaces of the profile, improving the processing efficiency.
[0057] As Figure 10 and Figure 11 shown, in addition to the features of the above embodiments, this embodiment further defines that the sawing component 5 includes a second material pressing component 51 and a sawing member 52. The second material pressing component 51 is arranged on the main machine base 1, and a part of the second material pressing component 51 can move relative to the main machine base 1. The second material pressing component 51 can clamp or loosen the profile. The sawing member 52 is arranged on the main machine base 1, and a part of the sawing member 52 can move relative to the second material pressing component 51. By enabling a part of the second material pressing component 51 to move relative to the main machine base 1, the second material pressing component 51 can clamp profiles of different sizes and shapes. This design improves the flexibility and adaptability of the material pressing component. Moreover, the second material pressing component 51 can automatically and easily adjust the material pressing position, thereby improving the working efficiency. By enabling a part of the sawing member 52 to move relative to the second material pressing component 51, the sawing member 52 can quickly and accurately complete the sawing task.
[0058] As Figure 13As shown, in addition to the features of the above embodiments, this embodiment further defines that the second material pressing assembly 51 includes a second limiting frame 511, a third material pressing member 512, and a fourth material pressing member 513. The second limiting frame 511 is provided on the main machine base 1. The third material pressing member 512 and the fourth material pressing member 513 are both provided on the second limiting frame 511. The part of the third material pressing member 512 for pressing the material can move relative to the second limiting frame 511 and can move in the height direction of the second limiting frame 511. The part of the fourth material pressing member 513 for pressing the material can move relative to the second limiting frame 511 and can move along the width direction of the second limiting frame 511. By the parts of the third material pressing member 512 and the fourth material pressing member 513 for pressing the material moving in the height direction and the width direction of the second limiting frame 511 respectively, the second material pressing assembly 51 can clamp profiles of different sizes and shapes. Moreover, it can ensure the stability and processing accuracy of the profile during the sawing process.
[0059] As Figure 12 shown, in addition to the features of the above embodiments, this embodiment further defines that the sawing member 52 includes a second support column 521, a second slide plate assembly 522, and a sawing member body 523. The second support column 521 is provided on the support frame body 41. The second slide plate assembly 522 is movably provided on the second support column 521. The second slide plate assembly 522 can slide along the height direction of the second support column 521. The sawing member body 523 is movably provided on the second slide plate assembly 522. The sawing member body 523 can move along the length direction of the second slide plate assembly 522. The setting of the second support column 521 can provide stable support for the second slide plate assembly 522. The sawing member body 523 can be adjusted in multiple dimensions in the height direction and the length direction, so that the flexibility of the movement of the sawing member 52 is better, and the use range of the sawing member 52 is broadened.
[0060] As Figure 14 and Figure 16As shown, in addition to the features of the above embodiments, this embodiment further defines that the discharging assembly 3 includes a second frame assembly 31, a second clamping assembly 32, and a second conveyor belt assembly 33. The second conveyor belt assembly 33 is connected to the main seat body 1. The second frame assembly 31 is movably arranged on the main seat body 1 and extends towards the second conveyor belt assembly 33. The second frame assembly 31 is located between the sawing assembly 5 and the second conveyor belt assembly 33. The second frame assembly 31 can move relative to the main seat body 1. The second clamping assembly 32 is movably arranged on the second frame assembly 31 and can move relative to the second frame assembly 31. The second clamping assembly 32 can convey the profile located at the sawing assembly 5 to the second conveyor belt assembly 33. By means of the second clamping assembly 32, the profile located at the sawing assembly 5 can be conveyed to the second conveyor belt assembly 33, which can significantly improve the conveying efficiency of the profile, reduce manual handling, and save production costs. Moreover, continuous conveying of the profile can be achieved, ensuring the smoothness and high efficiency of the production process and improving the overall production efficiency. The second conveyor belt assembly 33 is provided for outputting the processed profile.
[0061] As Figure 15 shown, in addition to the features of the above embodiments, this embodiment further defines that the second clamping assembly 32 includes a second moving plate assembly 321, a first clamping member 322, and a second clamping member 323. The second moving plate assembly 321 is movably arranged on the second frame assembly 31 and can move along the length direction of the second frame assembly 31. Both the first clamping member 322 and the second clamping member 323 are arranged on the second moving plate assembly 321. The part of the first clamping member 322 for clamping the profile can move in the width direction of the second moving plate assembly 321, and the part of the second clamping member 323 for clamping the profile can move in the height direction of the second moving plate assembly 321. Through the coordinated work of the moving plate assembly, the first clamping member 322, and the second clamping member 323, the four sides of the profile can be stably clamped, thus meeting the clamping requirements of various profiles and enhancing the adaptability of the second clamping assembly 32. Moreover, it can reduce the shaking and displacement of the profile during conveying, prevent the profile from falling off the second clamping assembly 32, and at the same time improve the overall conveying efficiency.
[0062] As Figure 7As shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a laser scribing assembly 6. The number of the laser scribing assemblies 6 is multiple. A plurality of the laser scribing assemblies 6 are all arranged on the milling material assembly 4. The laser scribing assembly 6 is used for scribing the profiles. By using the laser scribing assembly 6 to scribe the profiles, the accuracy and consistency of the scribing are ensured, facilitating the operation of the sawing assembly 5 and meeting the requirements of fine processing. Moreover, one or more of the laser scribing assemblies 6 can be enabled to work according to needs, adapting to the scribing requirements at different positions and increasing the flexibility of processing.
[0063] As Figure 16 shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a marking assembly 7. The marking assembly 7 is arranged on the discharging assembly 3. The marking assembly 7 is used for marking the profiles located on the discharging assembly 3. By providing the marking assembly 7, the profiles located on the discharging assembly 3 can be automatically marked, improving the production efficiency and the ability to trace the product quality. Moreover, the automated marking can reduce the need for manual marking, lowering the labor intensity and the risk of human errors.
[0064] As Figure 17 shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a chip removal assembly 8. The chip removal assembly 8 includes a waste pipe 81 and a hopper 82. The hopper 82 is arranged adjacent to the waste pipe 81. One opening at one end of the waste pipe 81 is communicated with the main machine base 1, and the other opening at the other end of the waste pipe 81 is arranged facing the hopper 82. By providing the waste pipe 81 and the hopper 82, the waste generated during the processing can be effectively collected and transferred, keeping the working environment clean. Moreover, automated chip removal can be realized, reducing the production interruption caused by cleaning the waste and improving the production continuity and efficiency.
[0065] As Figure 17 shown, in addition to the features of the above embodiments, this embodiment further defines that: the main machine base 1 includes a support base 11 and a housing 12. The housing 12 is arranged on the support base 11. The housing 12 and the support base 11 enclose an installation space. The milling material assembly 4 and the sawing assembly 5 are located in the installation space. By providing the support base 11, a stable structural foundation is provided, ensuring the stable operation of the product. By providing the housing 12, the waste generated during the milling and sawing processes can be prevented from splashing outside the housing 12, reducing the difficulty of cleaning the waste and increasing the safety at the same time.
[0066] The above embodiments only illustrate several implementation manners of the present utility model. The description thereof 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 sawing machine, characterized in that: include: Mainframe body (1); A feed assembly (2), the feed assembly (2) being connected to the main body (1); A discharge assembly (3), the discharge assembly (3) being connected to the main engine base (1), the discharge assembly (3) and the feed assembly (2) being respectively located at two ends of the main engine base (1); A milling component (4), the milling component (4) being arranged on the main machine base (1), the milling component (4) being located in the length direction of the feeding component (2), the feeding component (2) being capable of conveying the profile to the milling component (4), and the milling component (4) being used for milling the profile; A sawing component (5), wherein the sawing component (5) is arranged on the main body (1), the sawing component (5) is located between the milling component (4) and the discharge component (3), the sawing component (5) is located in the length direction of the discharge component (3), the sawing component (5) is used for sawing profiles, and the profiles located at the sawing component (5) can be transported to the discharge component (3).
2. The sawing machine according to claim 1, characterized in that The feeding assembly (2) comprises a first frame assembly (21), a first conveyor belt assembly (22) and a first clamping assembly (23); the first frame assembly (21) is connected to the main body base (1); the first conveyor belt assembly (22) is arranged on the first frame assembly (21); the first conveyor belt assembly (22) can convey the profile to the first frame assembly (21); the first clamping assembly (23) is movably arranged on the first frame assembly (21); the first clamping assembly (23) can move along the length direction of the first frame assembly (21); the first clamping assembly (23) can convey the profile located on the first frame assembly (21) to the milling assembly (4).
3. The sawing machine according to claim 2, characterized in that , The first frame assembly (21) comprises a fixed frame (211) and a movable frame (212); the fixed frame (211) is connected to the main frame (1); the movable frame (212) is movably arranged on the fixed frame (211); the movable frame (212) is located between the fixed frame (211) and the first conveyor belt assembly (22); the movable frame (212) is movable in a height direction of the fixed frame (211); when the movable frame (212) moves relative to the fixed frame (211), the movable frame (212) is able to receive a profile located on the first conveyor belt assembly (22); And / or the first clamping component (23) comprises a first movable plate component (231), a support component (232) and a clamping component (233); the first movable plate component (231) is movably arranged on the first frame component (21); the first movable plate component (231) can move along the length direction of the first frame component (21); the support component (232) is arranged on the first movable plate component (231); the clamping component (233) is arranged on the support component (232); and the clamping component (233) can transport the profile located on the first frame component (21) to the milling component (4).
4. The sawing machine according to claim 1, characterized in that The milling component (4) comprises a support frame (41), a first pressing component (42) and a milling piece (43); the support frame (41) is movably arranged on the main frame (1); the support frame (41) can move relative to the main frame (1); the first pressing component (42) is arranged on the support frame (41); a part of the first pressing component (42) can move relative to the support frame (41); the first pressing component (42) can clamp or release the profile; there are multiple milling pieces (43); the multiple milling pieces (43) are all arranged on the support frame (41); the multiple milling pieces (43) are respectively located on both sides of the support frame (41); one or more of the multiple milling pieces (43) can move relative to the support frame (41).
5. The sawing machine according to claim 4, characterized in that: The first material pressing assembly (42) comprises a first limiting frame (421), a first material pressing piece (422) and a second material pressing piece (423); the first limiting frame (421) is arranged on the supporting frame body (41); the first material pressing piece (422) and the second material pressing piece (423) are both arranged on the first limiting frame (421); a part of the first material pressing piece (422) used for pressing materials can move relative to the first limiting frame (421) and can move in a height direction of the first limiting frame (421); a part of the second material pressing piece (423) used for pressing materials can move relative to the first limiting frame (421) and can move along a width direction of the first limiting frame (421); And / or the milling part (43) includes a first support column (431), a first slide plate assembly (432) and a milling part body (433), the first support column (431) is movably arranged on the support frame (41), the first support column (431) can slide along the length direction of the support frame (41), the first slide plate assembly (432) is movably arranged on the first support column (431), the first slide plate assembly (432) can slide along the height direction of the first support column (431), the number of the milling part bodies (433) is multiple, and multiple milling part bodies (433) are arranged on the first slide plate assembly (432).
6. The sawing machine according to claim 1, characterized in that: The sawing component (5) comprises a second pressing component (51) and a sawing piece (52); the second pressing component (51) is arranged on the main machine base (1); a part of the second pressing component (51) can move relative to the main machine base (1); the second pressing component (51) can clamp or release the profile; the sawing piece (52) is arranged on the main machine base (1); a part of the sawing piece (52) can move relative to the second pressing component (51).
7. The sawing machine according to claim 6, characterized in that: The second material pressing component (51) comprises a second limiting frame (511), a third material pressing piece (512) and a fourth material pressing piece (513); the second limiting frame (511) is arranged on the main frame body (1); the third material pressing piece (512) and the fourth material pressing piece (513) are both arranged on the second limiting frame (511); a part of the third material pressing piece (512) used for pressing materials can move relative to the second limiting frame (511) and can move in the height direction of the second limiting frame (511); a part of the fourth material pressing piece (513) used for pressing materials can move relative to the second limiting frame (511) and can move along the width direction of the second limiting frame (511); And / or the milling component (4) includes a support frame (41), the sawing piece (52) includes a second support column (521), a second slide plate component (522) and a sawing piece body (523), the second support column (521) is arranged on the support frame (41), the second slide plate component (522) is movably arranged on the second support column (521), the second slide plate component (522) can slide along the height direction of the second support column (521), the sawing piece body (523) is movably arranged on the second slide plate component (522), and the sawing piece body (523) can move along the length direction of the second slide plate component (522).
8. The sawing machine according to claim 1, characterized in that: The discharging assembly (3) comprises a second frame assembly (31), a second clamping assembly (32) and a second conveyor belt assembly (33); the second conveyor belt assembly (33) is connected to the main body base (1); the second frame assembly (31) is movably arranged on the main body base (1); the second frame assembly (31) extends in the direction of the second conveyor belt assembly (33); the second frame assembly (31) is located between the sawing material assembly (5) and the second conveyor belt assembly (33); the second frame assembly (31) can move relative to the main body base (1); the second clamping assembly (32) is movably arranged on the second frame assembly (31); the second clamping assembly (32) can move relative to the second frame assembly (31); the second clamping assembly (32) can transport the profile located at the sawing material assembly (5) to the second conveyor belt assembly (33).
9. The sawing machine according to claim 8, characterized in that The second clamping assembly (32) comprises a second movable plate assembly (321), a first clamping member (322) and a second clamping member (323); the second movable plate assembly (321) is movably arranged on the second frame assembly (31); the second movable plate assembly (321) can move along the length direction of the second frame assembly (31); the first clamping member (322) and the second clamping member (323) are both arranged on the second movable plate assembly (321); the portion of the first clamping member (322) used for clamping the profile can move in the width direction of the second movable plate assembly (321); and the portion of the second clamping member (323) used for clamping the profile can move in the height direction of the second movable plate assembly (321).
10. The sawing machine according to claim 1, characterized in that It also comprises a laser engraving assembly (6), the number of the laser engraving assemblies (6) is multiple, the multiple laser engraving assemblies (6) are all arranged on the milling assembly (4), and the laser engraving assembly (6) is used to perform engraving processing on the profile; And / or further comprising a marking component (7), wherein the marking component (7) is arranged on the discharge component (3), and the marking component (7) is used to perform marking processing on the profile located on the discharge component (3); And / or further comprises a chip removal assembly (8), the chip removal assembly (8) comprising a waste pipe (81) and a hopper (82), the hopper (82) being arranged adjacent to the waste pipe (81), the opening at one end of the waste pipe (81) being connected to the main base body (1), and the opening at the other end of the waste pipe (81) being arranged toward the hopper (82); And / or the main body (1) comprises a supporting body (11) and a cover shell (12), wherein the cover shell (12) is arranged on the supporting body (11), and the cover shell (12) and the supporting body (11) enclose an installation space, and the milling component (4) and the sawing component (5) are located in the installation space.