Chip removal device and sawing machine

By designing efficient chip removal devices, the problems of chip removal devices are solved, and efficient and safe chip processing is achieved. It is suitable for different types of sawing machines, improving production efficiency and safety.

CN223070545UActive Publication Date: 2025-07-08GUANGDONG COMIMAN INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202421989903.2
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

Technical Problem

Existing chip removal devices are prone to clogging, chip splashing and chip removal efficiency during metal processing, which affects the operation and safety of the equipment.

Method used

A chip removal device including a support housing, a conveyor belt assembly, a baffle assembly and a moving mechanism is designed. By setting chip removal channels, a guide rail assembly and a motor drive assembly, efficient chip removal is achieved and chip splashing is prevented. A chip collector is equipped with a chip collector to collect chips.

Benefits of technology

Improve chip removal efficiency, reduce equipment failures and production interruptions, enhance safety and adaptability, and ensure stability and cleanliness of the sawing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a chip removal device and a sawing machine, and belongs to the technical field of sawing and milling equipment. A chip removal device comprises a supporting shell, a chip removal device, a chip removal device, a chip removal device, a chip removal device and a chip removal device, and the supporting shell is provided with a chip removal channel which is provided with a chip inlet and a chip removal port; the baffle assembly is arranged on the supporting shell, and a part of the baffle assembly and a part of the supporting shell form an enclosed area; the conveying belt assembly is arranged on the supporting shell and located in the chip removal channel, and the conveying belt assembly can conduct transmission relative to the supporting shell. And the moving mechanism is arranged on the supporting shell, and the moving mechanism can drive the supporting shell to move. And cuttings can be conveyed to the chip removal opening from the chip inlet to be discharged through the conveying belt assembly, the cuttings can be prevented from splashing in the conveying process through the arrangement of the baffle assembly, and the safety of the device is improved. And through the design of the moving mechanism, the supporting shell is allowed to move on the placing face, and the chip removal device can be independently maintained conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of sawing and milling equipment, in particular to a chip removal device and a sawing machine. Background Art

[0002] A chip removal device is a device used to collect and remove waste such as chips and dust generated during metal processing. It plays an important role in various metal processing industries, such as CNC machine tools, lathes, milling machines, grinding machines, etc. During the use of the chip removal device, it may become blocked due to chip accumulation, entanglement, or being stuck by oversized chips, which will lead to a reduction in the chip removal effect and even affect the normal operation of the equipment. In addition, there is a problem that chips are prone to splash during the process of transporting chips by the chip removal device. Content of the Utility Model

[0003] Based on this, it is necessary to provide a chip removal device and a sawing machine for the problems of low chip removal efficiency of the chip removal device and easy chip splashing during the chip removal process.

[0004] A chip removal device includes: a support housing, the support housing is provided with a chip removal channel, and the chip removal channel is provided with a chip inlet and a chip outlet; a baffle assembly, the baffle assembly is arranged on the support housing, and a part of the baffle assembly and a part of the support housing form an enclosing area; a conveyor belt assembly, the conveyor belt assembly is arranged on the support housing and located in the chip removal channel, and the conveyor belt assembly can drive relative to the support housing; a moving mechanism, the moving mechanism is arranged on the support housing, one end of the moving mechanism is connected to the support housing, the end of the moving mechanism far from the support housing contacts the placement surface, and the moving mechanism can drive the support housing to move.

[0005] In the first aspect of the present application, a chip removal device is disclosed. By setting a chip removal channel, chips generated during the processing can be effectively transported from the chip inlet to the chip outlet, realizing efficient chip removal. The conveyor belt assembly is arranged in the chip removal channel and can drive relative to the support housing, so that the conveyor belt assembly can convey chips from the chip inlet to the chip outlet for discharge. The setting of the baffle assembly can prevent chips from splashing during transportation. The baffle assembly and the support housing jointly form an enclosing area, so that chips and dust can avoid chip splashing and dust raising when passing through the enclosing area, improving the safety of the device. The design of the moving mechanism allows the support housing to move on the placement surface, increasing the wide applicability of the chip removal device, making it applicable to different models of sawing machines, and at the same time facilitating the separate repair and maintenance of the chip removal device. Through the chip removal device, chips can be effectively transported and discharged, reducing machine failures or production interruptions caused by chip accumulation, thereby improving the overall production efficiency. Using the chip removal device to effectively discharge chips from the working area reduces the risk of operators coming into contact with chips and improves the safety of the working environment.

[0006] In one embodiment, the support housing includes a housing assembly, a first guide rail assembly, and a second guide rail assembly. The housing assembly is provided with the chip discharge channel and the chip discharge port. The first guide rail assembly and the second guide rail assembly are disposed on the housing assembly and are respectively located on both sides of the chip discharge channel. One end of the first guide rail assembly and the second guide rail assembly extends along the length direction of the chip discharge channel to the chip discharge port, and the conveyor belt assembly can be driven along the trajectories of the first guide rail assembly and the second guide rail assembly. By respectively installing the first guide rail assembly and the second guide rail assembly on both sides of the chip discharge channel, and one end of the first guide rail assembly and the second guide rail assembly extends to the chip discharge port, the conveyor belt assembly can be driven along the trajectories of the first guide rail assembly and the second guide rail assembly, thereby effectively transporting the chips to the chip discharge port for discharge. In addition, the structural design of the double guide rails improves the running stability of the conveyor belt assembly and avoids possible deviation or jamming during the transmission process.

[0007] In one embodiment, the housing assembly includes a horizontal housing and a lifting housing. The lifting housing is disposed on the horizontal housing. The horizontal housing is parallel to the horizontal plane, and the length direction of the lifting housing is staggered with the horizontal plane. One end of the moving mechanism away from the placement surface is connected to the lifting housing. The horizontal housing and the lifting housing cooperate to form the chip discharge channel, and a part of the baffle assembly and the lifting housing enclose to form the enclosed area. Through the structural design of the horizontal housing and the lifting housing, the spatial optimization of the chip discharge channel is realized. The length direction of the lifting housing is staggered with the horizontal plane, and this design helps to change the movement direction of the chip discharge material, facilitates the effective discharge of the chips, reduces the accumulation and blockage of the chips during the chip discharge process, and thus improves the chip discharge efficiency. A part of the baffle assembly and the lifting housing enclose to form the enclosed area, which helps to prevent the chips from splashing or scattering during the chip discharge process, keeps the working environment clean, and at the same time reduces the safety risks to the operators and the equipment.

[0008] In one embodiment, the housing assembly further includes a faucet housing. The faucet housing is disposed on the lifting housing and is located at one end of the lifting housing away from the horizontal housing. The faucet housing is provided with the chip discharge port, and the chip discharge port is disposed opposite to the placement surface. By disposing the faucet housing at one end of the lifting housing away from the horizontal housing and the faucet housing is provided with the chip discharge port, the moving mechanism plays a supporting role for the lifting housing and the faucet housing, so that the chip discharge port is in a suspended position and is disposed opposite to the placement surface, optimizing the spatial setting of the chip discharge port, making the position of the chip discharge port easier to observe and operate, facilitating the user to clean the chips, improving the chip discharge efficiency, and reducing equipment failures and production efficiency reduction caused by poor chip discharge.

[0009] In one embodiment, the baffle assembly includes a first baffle and a second baffle. The first baffle is disposed on the horizontal housing, and the second baffle is disposed on the lifting housing and / or the faucet housing. The second baffle and the lifting housing enclose the enclosed area. By providing the first baffle and the second baffle, the scattering and splashing during the chip removal process can be more effectively reduced, thereby improving the chip removal efficiency. The second baffle is disposed on the lifting housing and / or the faucet housing, and the second baffle and the lifting housing enclose the enclosed area. This design can adjust the position and angle of the baffle according to different chip removal requirements, improving the adaptability and flexibility of the equipment. Through the design of the baffle assembly, the chips during the chip removal process can be prevented from splashing onto the operator or the equipment, thereby improving the safety of the operation.

[0010] In one embodiment, the moving mechanism includes a bracket and universal wheels. One end of the bracket is disposed on the support housing, and the universal wheels are disposed on the bracket and located at the end of the bracket away from the support housing. By providing the bracket and the universal wheels, higher flexibility is provided for the movement of the chip removal device. The universal wheels allow the device to move freely in different directions, enabling the adjustment of the device position or movement between different working areas. One end of the bracket is fixed to the support housing, ensuring the stability of the device. The setting of the universal wheels makes the device more portable when movement is required, reducing the manpower requirement and improving the operation efficiency.

[0011] In one embodiment, a motor drive assembly is further included. The motor drive assembly is disposed on the support housing and is electrically connected to the conveyor belt assembly. The introduction of the motor drive assembly provides an efficient and stable power source for the chip removal device, and improves the working efficiency and overall performance of the chip removal device. By applying motor control technology, the speed, steering, and force output of the conveyor belt assembly can be precisely controlled, making the chip removal process more accurate and controllable to meet different production requirements. The motor drive assembly is disposed on the support housing, making the structure of the entire chip removal device more compact and saving space.

[0012] In one embodiment, a chip collection cart is further included. The chip collection cart is used to collect chips. The chip collection cart is provided with a collection groove, and the opening of the collection groove is disposed opposite to the chip discharge port. By providing the chip collection cart, the chips generated during the processing can be effectively collected, avoiding the chips from scattering everywhere. The chips are centrally collected in the collection groove of the chip collection cart, facilitating subsequent chip processing and recycling. The setting of the chip collection cart can avoid the damage caused by the chips to the equipment or the operator during the chip removal process, improving the safety of the equipment. The chip collection cart can move freely. When collecting chips, the collection groove is disposed opposite to the chip discharge port, enabling the chip collection cart to accurately collect chips.

[0013] A sawing machine, comprising: a frame, the frame is provided with a chip removal device adapter slot; a sawing device, the sawing device is arranged on the frame; the above-mentioned chip removal device, the chip removal device is arranged on the frame, the chip removal device is adapted to the chip removal device adapter slot, the chip removal device is provided with a chip inlet, and the sawing device is arranged opposite to the chip inlet.

[0014] In the second aspect of the present application, a sawing machine is disclosed. By equipping the sawing machine with a chip removal device, the chip removal device is matched with the chip removal device adapter slot on the frame, and the chip inlet of the chip removal device is arranged opposite to the sawing device. This enables the waste generated during the sawing process to quickly fall into the chip inlet and be discharged by the chip removal device, avoiding the interference of waste on the sawing process, thereby ensuring the stability and accuracy of sawing. Due to the optimized design of the chip removal device, the cleaning and maintenance work are more convenient.

[0015] In one embodiment, it further includes a sawing sealing plate assembly. The sawing sealing plate assembly is provided with an installation cavity. The sawing sealing plate assembly covers the sawing device and / or the frame. The sawing device is located in the installation cavity. The installation cavity is communicated with the chip inlet. The sawing sealing plate assembly is provided with a dust collection port, and the dust collection port is sequentially communicated with the installation cavity and the chip inlet. By covering the sawing device and / or the frame with the sawing sealing plate assembly, it can prevent the chips, dust, etc. generated during the sawing process from causing harm to the equipment and operators. The sawing sealing plate assembly is provided with a dust collection port, and the dust collection port is sequentially communicated with the installation cavity and the chip inlet, enabling the dust in the working environment to be collected from the dust collection port into the installation cavity and enter the chip removal device through the chip inlet and be discharged. This helps to collect the dust in the working environment, keep the working environment clean and ensure the safety of the operators. In addition, the sawing sealing plate assembly also has a sound insulation effect, which can reduce the noise generated during the sawing process and improve the working environment. The design of the sawing sealing plate assembly can enhance the overall appearance of the sawing machine, making it more tidy and professional. Description of the Drawings

[0016] Figure 1 Is a three-dimensional view of the chip removal device;

[0017] Figure 2 Is a first structural schematic diagram of the support housing and the moving mechanism;

[0018] Figure 3 Is a second structural schematic diagram of the support housing and the moving mechanism;

[0019] Figure 4 Is a three-dimensional view of the support housing and the baffle assembly;

[0020] Figure 5 Is a three-dimensional view of the sawing machine.

[0021] Among them, the correspondence between the reference signs and the component names is as follows:

[0022] 1 support housing, 11 housing assembly, 111 horizontal housing, 112 lifting housing, 113 faucet housing, 12 first guide rail assembly, 13 second guide rail assembly, 101 chip removal channel, 102 chip inlet, 103 chip outlet;

[0023] 2 baffle assembly, 21 first baffle, 22 second baffle, 201 enclosed area;

[0024] 3 moving mechanism, 31 bracket, 32 universal wheel;

[0025] 4 chip collection cart, 401 collection trough;

[0026] 100 frame, 1001 chip removal device adapter slot;

[0027] 200 chip removal device;

[0028] 300 sawing sealing plate assembly, 3001 dust collection port. Detailed implementation manners

[0029] In order to be able to more clearly understand the above-mentioned objects, features and advantages of the present application, the present application will be further described in detail below with reference to the 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.

[0030] In the following description, many specific details are set forth in order to fully understand the present application. However, the present application can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0031] The following describes some embodiments of the chip removal device and the sawing machine of the present application with reference to the drawings.

[0032] Embodiment 1, as Figures 1 to 4 shown, this embodiment discloses a chip removal device, including: a support housing 1, the support housing 1 is provided with a chip removal channel 101, the chip removal channel 101 is provided with a chip inlet 102 and a chip outlet 103; a baffle assembly 2, the baffle assembly 2 is arranged on the support housing 1, and a part of the baffle assembly 2 and a part of the support housing 1 form an enclosed area 201; a conveyor belt assembly, the conveyor belt assembly is arranged on the support housing 1 and located in the chip removal channel 101, and the conveyor belt assembly can drive relative to the support housing 1; a moving mechanism 3, the moving mechanism 3 is arranged on the support housing 1, one end of the moving mechanism 3 is connected to the support housing 1, the end of the moving mechanism 3 away from the support housing 1 contacts the placement surface, and the moving mechanism 3 can drive the support housing 1 to move.

[0033] The first aspect of the present application discloses a chip removal device. By providing a chip removal channel 101, chips generated during the machining process can be effectively conveyed from the chip inlet 102 to the chip outlet 103, achieving efficient chip removal. The conveyor belt assembly is arranged inside the chip removal channel 101 and can drive relative to the support housing 1, enabling the conveyor belt assembly to convey chips from the chip inlet 102 to the chip outlet 103 for discharge. The arrangement of the baffle assembly 2 can prevent chips from splashing during transportation. The baffle assembly 2 and the support housing 1 jointly form an enclosed area 201, so that chips and dust can avoid chip splashing and dust raising when passing through the enclosed area 201, improving the safety of the device. The design of the moving mechanism 3 allows the support housing 1 to move on the placement surface, increasing the wide applicability of the chip removal device, enabling it to be applicable to different models of sawing machines, and facilitating the separate repair and maintenance of the chip removal device. Through the chip removal device, chips can be effectively transmitted and discharged, reducing machine failures or production interruptions caused by chip accumulation, thereby improving the overall production efficiency. By effectively discharging chips from the working area using the chip removal device, the risk of operators coming into contact with chips is reduced, improving the safety of the working environment.

[0034] As Figure 3 and Figure 4 shown, in addition to the features of the above embodiments, this embodiment further defines that: the support housing 1 includes a housing assembly 11, a first guide rail assembly 12, and a second guide rail assembly 13. The housing assembly 11 is provided with a chip removal channel 101 and a chip outlet 103. The first guide rail assembly 12 and the second guide rail assembly 13 are arranged on the housing assembly 11 and are respectively located on both sides of the chip removal channel 101. One end of the first guide rail assembly 12 and the second guide rail assembly 13 extends along the length direction of the chip removal channel 101 to the chip outlet 103, and the conveyor belt assembly can drive along the tracks of the first guide rail assembly 12 and the second guide rail assembly 13. By respectively installing the first guide rail assembly 12 and the second guide rail assembly 13 on both sides of the chip removal channel 101, and one end of the first guide rail assembly 12 and the second guide rail assembly 13 extends to the chip outlet 103, the conveyor belt assembly can drive along the tracks of the first guide rail assembly 12 and the second guide rail assembly 13, thereby effectively conveying chips to the chip outlet 103 for discharge. In addition, the structural design of the double guide rails improves the running stability of the conveyor belt assembly, avoiding possible deviation or jamming phenomena during transmission.

[0035] As Figure 4As shown, in addition to the features of the above embodiments, this embodiment further defines that: the housing assembly 11 includes a horizontal housing 111 and a lifting housing 112. The lifting housing 112 is disposed on the horizontal housing 111. The horizontal housing 111 is parallel to the horizontal plane, and the length direction of the lifting housing 112 is staggered with the horizontal plane. One end of the moving mechanism 3 away from the placement surface is connected to the lifting housing 112. The horizontal housing 111 and the lifting housing 112 cooperate to form a chip removal channel 101. A part of the baffle assembly 2 and the lifting housing 112 enclose an enclosed area 201. Through the structural design of the horizontal housing 111 and the lifting housing 112, the spatial optimization of the chip removal channel 101 is achieved. The length direction of the lifting housing 112 is staggered with the horizontal plane, and this design helps to change the movement direction of the chip removal material, facilitating the effective discharge of chips, reducing the accumulation and blockage of chips during the chip removal process, and thus improving the chip removal efficiency. A part of the baffle assembly 2 and the lifting housing 112 enclose an enclosed area 201, which helps to prevent chips from splashing or scattering during the chip removal process, keeps the working environment clean, and at the same time reduces the safety risks to the operator and the equipment.

[0036] As Figure 3 and Figure 4 shown, in addition to the features of the above embodiments, this embodiment further defines that: the housing assembly 11 further includes a faucet housing 113. The faucet housing 113 is disposed on the lifting housing 112 and is located at one end of the lifting housing 112 away from the horizontal housing 111. The faucet housing 113 is provided with a chip discharge port 103, and the chip discharge port 103 is disposed opposite to the placement surface. By disposing the faucet housing 113 at one end of the lifting housing 112 away from the horizontal housing 111 and the faucet housing 113 is provided with a chip discharge port 103, the moving mechanism 3 plays a supporting role for the lifting housing 112 and the faucet housing 113, so that the chip discharge port 103 is in a suspended position and is disposed opposite to the placement surface, optimizing the spatial setting of the chip discharge port 103, making the position of the chip discharge port 103 easier to observe and operate, facilitating the user to carry out the chip cleaning work, improving the chip removal efficiency, and reducing equipment failures and production efficiency reduction caused by poor chip removal.

[0037] As Figure 2 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further defines that the baffle assembly 2 includes a first baffle 21 and a second baffle 22. The first baffle 21 is arranged on the horizontal housing 111, and the second baffle 22 is arranged on the lifting housing 112 and / or the faucet housing 113. The second baffle 22 and the lifting housing 112 enclose an enclosed area 201. By providing the first baffle 21 and the second baffle 22, the scattering and splashing during the chip removal process can be more effectively reduced, thereby improving the chip removal efficiency. The second baffle 22 is arranged on the lifting housing 112 and / or the faucet housing 113, and the second baffle 22 and the lifting housing 112 enclose an enclosed area 201. This design can adjust the position and angle of the baffle according to different chip removal requirements, improving the adaptability and flexibility of the equipment. Through the design of the baffle assembly 2, the chips during the chip removal process can be prevented from splashing onto the operator or the equipment, thereby improving the safety of the operation.

[0038] As Figure 1 and Figure 2 shown, in addition to the features of the above embodiments, this embodiment further defines that the moving mechanism 3 includes a bracket 31 and universal wheels 32. One end of the bracket 31 is arranged on the support housing 1, and the universal wheels 32 are arranged on the bracket 31 and are located at the end of the bracket 31 away from the support housing 1. By providing the bracket 31 and the universal wheels 32, higher flexibility is provided for the movement of the chip removal device. The universal wheels 32 allow the equipment to move freely in different directions, and the equipment position can be adjusted or it can move between different working areas. One end of the bracket 31 is fixed to the support housing 1, ensuring the stability of the equipment. The setting of the universal wheels 32 makes the equipment more portable when it needs to be moved, reducing the manpower requirement and improving the operation efficiency.

[0039] In addition to the features of the above embodiments, this embodiment further defines that it further includes a motor drive assembly. The motor drive assembly is arranged on the support housing 1, and the motor drive assembly is electrically connected to the conveyor belt assembly. The introduction of the motor drive assembly provides an efficient and stable power source for the chip removal device, and improves the working efficiency and overall performance of the chip removal device. Through the application of motor control technology, the speed, steering, and force output of the conveyor belt assembly can be precisely controlled, making the chip removal process more accurate and controllable to meet different production requirements. The motor drive assembly is arranged on the support housing, making the structure of the entire chip removal device more compact and saving space.

[0040] As Figure 1As shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a chip collector 4, which is used to collect chips. The chip collector 4 is provided with a collection tank 401, and the opening of the collection tank 401 is arranged opposite to the chip discharge port 103. By providing the chip collector 4, chips generated during the processing can be effectively collected, avoiding chips from scattering everywhere. The chips are centrally collected in the collection tank 401 of the chip collector 4, facilitating subsequent chip processing and recycling. The provision of the chip collector 4 can avoid the damage caused by chips to the equipment or operators during the chip discharge process, improving the safety of the equipment. The chip collector 4 can move freely. When collecting chips, the collection tank 401 is arranged opposite to the chip discharge port 103, enabling the chip collector to accurately collect chips.

[0041] Embodiment 2, as Figures 1 to 5 As shown, this embodiment discloses a sawing machine, including: a frame 100, and the frame 100 is provided with a chip discharge device adaptation slot 1001; a sawing device, which is arranged on the frame 100; the above chip discharge device 200, the chip discharge device 200 is arranged on the frame 100, the chip discharge device 200 is adapted to the chip discharge device adaptation slot 1001, and the chip discharge device 200 is provided with a chip inlet 102, and the sawing device is arranged opposite to the chip inlet 102.

[0042] The second aspect of this application discloses a sawing machine. By equipping this sawing machine with a chip discharge device 200, the chip discharge device 200 is matched with the chip discharge device adaptation slot 1001 on the frame 100, and the chip inlet 102 of the chip discharge device 200 is arranged opposite to the sawing device. This enables the waste generated during the sawing process to quickly fall into the chip inlet 102 and thus be discharged by the chip discharge device 200, avoiding the interference of waste to the sawing process, thereby ensuring the stability and accuracy of sawing. Due to the optimized design of the chip discharge device 200, the cleaning and maintenance work is more convenient.

[0043] As Figure 5As shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a sawing seal plate assembly 300. The sawing seal plate assembly 300 is provided with an installation cavity. The sawing seal plate assembly 300 covers the sawing device and / or the frame 100. The sawing device is located in the installation cavity. The installation cavity is communicated with the chip inlet 102. The sawing seal plate assembly 300 is provided with a dust collection port 3001. The dust collection port 3001 is sequentially communicated with the installation cavity and the chip inlet 102. By covering the sawing device and / or the frame 100 with the sawing seal plate assembly 300, it is possible to prevent debris, dust, etc. generated during the sawing process from causing harm to the equipment and operators. The sawing seal plate assembly 300 is provided with a dust collection port 3001, and the dust collection port 3001 is sequentially communicated with the installation cavity and the chip inlet 102, so that the dust in the working environment can be collected from the dust collection port 3001 into the installation cavity and discharged from the chip inlet 102 into the chip removal device 200. This helps to collect the dust in the working environment and keep the working environment clean and the operators safe. In addition, the sawing seal plate assembly 300 also has a sound insulation effect, which can reduce the noise generated during the sawing process and improve the working environment. The design of the sawing seal plate assembly 300 can enhance the overall appearance of the sawing machine, making it more tidy and professional.

[0044] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.

[0045] The above-described embodiments only represent several implementation manners of the present invention. 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 invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.

Claims

1. A chip removal device, characterized in that, Comprising: A support housing (1), the support housing (1) being provided with a chip discharge channel (101), the chip discharge channel (101) being provided with a chip inlet (102) and a chip discharge outlet (103); A baffle assembly (2), the baffle assembly (2) being disposed on the support housing (1), a part of the baffle assembly (2) and a part of the support housing (1) forming an enclosed area (201); A conveyor belt assembly, the conveyor belt assembly being disposed on the support housing (1) and within the chip discharge channel (101), the conveyor belt assembly being capable of driving relative to the support housing (1); A moving mechanism (3), the moving mechanism (3) being disposed on the support housing (1), one end of the moving mechanism (3) being connected to the support housing (1), the end of the moving mechanism (3) remote from the support housing (1) being in contact with a placement surface, the moving mechanism (3) being capable of driving the support housing (1) to move.

2. The chip removal device according to claim 1, wherein, The support housing (1) includes a housing assembly (11), a first guide rail assembly (12) and a second guide rail assembly (13), the housing assembly (11) being provided with the chip discharge channel (101) and the chip discharge outlet (103), the first guide rail assembly (12) and the second guide rail assembly (13) being disposed on the housing assembly (11) and respectively located on both sides of the chip discharge channel (101), one ends of the first guide rail assembly (12) and the second guide rail assembly (13) extending along the length direction of the chip discharge channel (101) to the chip discharge outlet (103), the conveyor belt assembly being capable of driving along the tracks of the first guide rail assembly (12) and the second guide rail assembly (13).

3. The chip removal device according to claim 2, characterized in that, The housing assembly (11) includes a horizontal housing (111) and a lifting housing (112), the lifting housing (112) being disposed on the horizontal housing (111), the horizontal housing (111) being parallel to the horizontal plane, the length direction of the lifting housing (112) being staggered with the horizontal plane, the end of the moving mechanism (3) remote from the placement surface being connected to the lifting housing (112), the horizontal housing (111) and the lifting housing (112) cooperating to form the chip discharge channel (101), a part of the baffle assembly (2) and the lifting housing (112) enclosing to form the enclosed area (201).

4. The chip removal device according to claim 3, characterized in that, The housing assembly (11) further includes a faucet housing (113), the faucet housing (113) being disposed on the lifting housing (112) and located at the end of the lifting housing (112) remote from the horizontal housing (111), the faucet housing (113) being provided with the chip discharge outlet (103), the chip discharge outlet (103) being disposed opposite to the placement surface.

5. The chip removal device according to claim 4, characterized in that, The baffle assembly (2) includes a first baffle (21) and a second baffle (22). The first baffle (21) is arranged on the horizontal housing (111), and the second baffle (22) is arranged on the lifting housing (112) and / or the faucet housing (113). The second baffle (22) and the lifting housing (112) enclose the enclosed area (201).

6. The chip removal device according to claim 1, characterized in that, The moving mechanism (3) includes a bracket (31) and a universal wheel (32). One end of the bracket (31) is arranged on the support housing (1), and the universal wheel (32) is arranged on the bracket (31) and is located at the end of the bracket (31) far from the support housing (1).

7. The chip removal device according to claim 1, wherein It further includes a motor drive assembly. The motor drive assembly is arranged on the support housing (1), and the motor drive assembly is electrically connected to the conveyor belt assembly.

8. The chip removal device according to claim 1, characterized in that, It further includes a chip collecting cart (4). The chip collecting cart (4) is used for collecting chips. The chip collecting cart (4) is provided with a collecting groove (401), and the notch of the collecting groove (401) is arranged opposite to the chip discharging port (103).

9. A sawing machine, characterized in that, Comprising: A frame (100), and the frame (100) is provided with a chip discharging device fitting groove (1001); A sawing device, and the sawing device is arranged on the frame (100); The chip discharging device (200) according to any one of claims 1 to 8. The chip discharging device (200) is arranged on the frame (100), the chip discharging device (200) is fitted with the chip discharging device fitting groove (1001), the chip discharging device (200) is provided with a chip inlet (102), and the sawing device is arranged opposite to the chip inlet (102).

10. The sawing machine according to claim 9, wherein, It further includes a sawing sealing plate assembly (300). The sawing sealing plate assembly (300) is provided with an installation cavity. The sawing sealing plate assembly (300) covers the sawing device and / or the frame (100). The sawing device is located in the installation cavity. The installation cavity is communicated with the chip inlet (102). The sawing sealing plate assembly (300) is provided with a dust collecting port (3001), and the dust collecting port (3001) is sequentially communicated with the installation cavity and the chip inlet (102).