Grooving device for aluminum profile machining
By designing a groove cutting device for processing aluminum profiles including adjustment devices, the problem that existing equipment cannot realize the reciprocating position adjustment of aluminum profiles is solved, and the groove cutting processing of aluminum profiles at different positions is realized, which improves processing efficiency.
Patent Information
- Application Number
- CN202421805387.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-29
AI Technical Summary
Existing aluminum profile groove cutting processing equipment cannot realize the reciprocating and moving position adjustment of aluminum profiles, which makes it inconvenient to perform groove cutting processing at different positions.
A groove cutting device for processing aluminum profiles is designed, including a cutting table, a mounting frame, a cutting machine, a lifting device and an adjustment device. The adjustment device consists of a fixed plate, a mounting plate, a drive wheel, a mounting shaft and a drive assembly. The bevel gear drives the drive wheel to move back and forth along the fixed plate, thereby realizing the reciprocating position adjustment of the aluminum profile.
The reciprocating and moving position adjustment of aluminum profiles is realized, making the aluminum profile convenient for groove cutting at different positions and improving processing efficiency.
Smart Images

Figure CN222902742U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum profile processing, in particular to a grooving device for aluminum profile processing. Background Art
[0002] Aluminum profiles are aluminum rods that are melted and extruded to obtain aluminum materials with different cross-sectional shapes. During the processing of aluminum profiles, grooving is required to facilitate bending of the aluminum profiles at the grooved parts.
[0003] The existing patent CN 221134893 U, an aluminum profile grooving processing device, places the aluminum profile on the workbench. The third cylinder pushes the aluminum profile to contact the side plate. The second cylinder pushes the aluminum profile. The length of the movement of the second cylinder pushing the aluminum profile is the positioning and grooving position of the aluminum profile. The first cylinder presses the aluminum profile on the workbench. The lifting mechanism lowers the rotary cutting machine to groove the aluminum profile, solving the problems of manual fixing of the cutting position of the aluminum profile and manual operation of the rotary cutting machine during use, resulting in low processing efficiency.
[0004] However, during the use of the existing patent aluminum profile grooving processing device, the device realizes the position adjustment and fixation of the aluminum profile through the mutual cooperation of three groups of cylinders. However, the position adjustment of the device for the aluminum profile is only a one-way push and cannot be adjusted in a reciprocating manner, making it inconvenient to perform grooving processing at different positions on the aluminum profile. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a grooving device for aluminum profile processing, which solves the problem that the aforementioned device realizes the position adjustment and fixation of the aluminum profile through the mutual cooperation of three groups of cylinders. However, the position adjustment of the device for the aluminum profile is only a one-way push and cannot be adjusted in a reciprocating manner, making it inconvenient to perform grooving processing at different positions on the aluminum profile.
[0006] To achieve the above purpose, the utility model provides a grooving device for aluminum profile processing, including a cutting table, a mounting frame, a cutting machine, and a lifting device. The mounting frame is fixedly installed on the cutting table. The cutting machine is installed on the mounting frame through the lifting device. It further includes an adjustment device. The adjustment device includes a fixing plate, a mounting plate, a driving wheel, a mounting shaft, and a driving component. The fixing plate is fixedly installed on the cutting table. One side of the fixing plate is provided with multiple groups of rollers. The side of the fixing plate away from the rollers is provided with a mounting groove. The mounting plate is fixedly installed on the fixing plate and penetrates through the mounting groove. The mounting shaft is rotatably installed on the mounting plate through the driving component. The driving wheel is fixedly installed on the mounting shaft.
[0007] Among them, the driving component includes a first bevel gear, a second bevel gear and a motor. The first bevel gear is fixedly installed on the installation shaft; the motor is fixedly installed on the installation plate; the second bevel gear is fixedly installed on the output shaft of the motor and meshes with the first bevel gear.
[0008] Among them, the adjusting device further includes an anti-slip layer, and the anti-slip layer is sleeved on the driving wheel.
[0009] Among them, a waste slot is further provided on the cutting table, and the waste slot is located on one side of the cutting table close to the fixing plate.
[0010] Among them, the lifting device includes a lifting cylinder, a guide rod and a guide plate. The lifting cylinder is fixedly installed on the installation frame, and the cutting machine is fixedly connected to the output end of the lifting cylinder; the guide plate is fixedly installed on the cutting machine; the guide rod is fixedly installed on the installation frame and is slidably matched with the guide plate.
[0011] When a grooving device for aluminum profile processing of the present utility model is in use, the aluminum profile is slid into the fixing plate along the side surface of the fixing plate. Both sides of the aluminum profile are respectively in contact with the roller and the driving wheel. After the aluminum profile is installed, the cutting machine is driven by the lifting device to move downward, and the cutting machine can perform grooving processing on the aluminum profile. When the position of the aluminum profile needs to be adjusted, the motor is started to drive the second bevel gear to rotate. The second bevel gear drives the first bevel gear to rotate through meshing with the first bevel gear. The first bevel gear drives the installation shaft to rotate through the fixed connection with the installation shaft. The installation shaft further drives the driving wheel to rotate. Through the forward or reverse rotation of the driving wheel, the driving wheel can drive the aluminum profile to reciprocate along the fixing plate through the friction with the aluminum profile, thereby realizing the reciprocating movement adjustment of the aluminum profile and facilitating the grooving processing of the aluminum profile at different positions. Description of the Drawings
[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art.
[0013] Figure 1 It is a schematic diagram of the overall structure of a grooving device for aluminum profile processing according to the first embodiment of the present utility model.
[0014] Figure 2 It is a schematic diagram of the structure of the adjusting device according to the first embodiment of the present utility model.
[0015] Figure 3 It is a schematic diagram of the connection between the driving wheel and the anti-slip layer according to the first embodiment of the present utility model.
[0016] Figure 4 It is a schematic diagram of the overall structure of a grooving device for aluminum profile processing according to the second embodiment of the present utility model.
[0017] In the figure: 101 - cutting table, 102 - mounting frame, 103 - cutting machine, 104 - fixing plate, 105 - mounting plate, 106 - driving wheel, 107 - mounting shaft, 108 - roller, 109 - mounting groove, 110 - first bevel gear, 111 - second bevel gear, 112 - motor, 113 - anti-slip layer, 114 - waste material groove, 201 - lifting cylinder, 202 - guiding rod, 203 - guiding plate. Specific embodiments
[0018] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model and should not be construed as limiting the present utility model.
[0019] The first embodiment of the present application is as follows:
[0020] Please refer to Figures 1-3 , Figure 1 It is a schematic diagram of the overall structure of a grooving device for aluminum profile processing according to the first embodiment of the present utility model, Figure 2 It is a schematic diagram of the structure of the adjustment device according to the first embodiment of the present utility model, Figure 3 It is a schematic diagram of the connection between the driving wheel and the anti-slip layer according to the first embodiment of the present utility model.
[0021] The present utility model provides a grooving device for aluminum profile processing: including a cutting table 101, a mounting frame 102, a cutting machine 103 and a lifting device, and further including an adjustment device. The adjustment device includes a fixing plate 104, a mounting plate 105, a driving wheel 106, a mounting shaft 107 and a driving component. The driving component includes a first bevel gear 110, a second bevel gear 111 and a motor 112. The adjustment device further includes an anti-slip layer 113. A waste material groove 114 is further provided on the cutting table 101. Through the foregoing solution, the foregoing device realizes the position adjustment and fixation of the aluminum profile through the mutual cooperation of three cylinders. However, the position adjustment of the aluminum profile by this device is only a one-way push and cannot be adjusted in a reciprocating manner, making it inconvenient to perform grooving processing at different positions on the aluminum profile. It can be understood that this solution can also be used to solve the problem of lifting the cutting machine.
[0022] In this embodiment, the driving wheel 106 can drive the aluminum profile to move reciprocally along the fixing plate 104 through the friction with the aluminum profile, thereby realizing the reciprocating adjustment of the aluminum profile and making it convenient to perform grooving processing at different positions on the aluminum profile.
[0023] Among them, the fixed plate 104 is fixedly installed on the cutting table 101. On one side of the fixed plate 104, there are multiple groups of rollers 108. On the side of the fixed plate 104 away from the rollers 108, there is an installation groove 109. The installation plate 105 is fixedly installed on the fixed plate 104 and penetrates through the installation groove 109. The installation shaft 107 is rotatably installed on the installation plate 105 through the driving assembly. The driving wheel 106 is fixedly installed on the installation shaft 107. The cutting machine 103 is composed of a machine body, a driving source, and a cutting wheel. The cross-section of the fixed plate 104 is U-shaped. The installation plate 105 is a laterally U-shaped structure. The installation shaft 107 is rotationally matched with the installation plate 105 through a bearing. At the same time, the installation shaft 107 penetrates through the driving wheel 106. When the position of the aluminum profile needs to be adjusted, the driving assembly drives the installation shaft 107 to rotate forward or backward. The installation shaft 107 drives the driving wheel 106 to rotate forward or backward. Through the friction between the driving wheel 106 and the aluminum profile, the aluminum profile can be driven to reciprocate along the fixed plate 104, thus realizing the reciprocating adjustment of the aluminum profile and making it convenient to perform grooving processing at different positions.
[0024] Secondly, the first bevel gear 110 is fixedly installed on the installation shaft 107; the motor 112 is fixedly installed on the installation plate 105; the second bevel gear 111 is fixedly installed on the output shaft of the motor 112 and meshes with the first bevel gear 110. The first bevel gear 110 is fixed to the installation shaft 107 by means of key connection. The axes of the second bevel gear 111 and the first bevel gear 110 are perpendicular. The motor 112 drives the second bevel gear 111 to rotate. The second bevel gear 111 drives the first bevel gear 110 to rotate through meshing transmission with the first bevel gear 110. The first bevel gear 110 further drives the installation shaft 107 to rotate, thus realizing the driving of the installation shaft 107.
[0025] Thirdly, the anti-slip layer 113 is sleeved on the driving wheel 106. The anti-slip layer 113 is fixed on the driving wheel 106 by means of adhesion. The anti-slip layer 113 is made of rubber material. Through the setting of the anti-slip layer 113, the friction between the driving wheel 106 and the aluminum profile can be increased.
[0026] Finally, the waste material groove 114 is located on the side of the cutting table 101 close to the fixed plate 104. The cross-section of the waste material groove 114 is circular. Through the setting of the waste material groove 114, the waste materials cut from the aluminum profile can fall into the waste material groove 114, so that the waste materials can be collected uniformly.
[0027] In this embodiment, when in use, the aluminum profile is slid into the fixing plate 104 along the side surface of the fixing plate 104. Both sides of the aluminum profile are respectively in contact with the roller 108 and the driving wheel 106. After the aluminum profile is installed, the lifting device drives the cutting machine 103 to move downward, and the cutting machine 103 can perform grooving processing on the aluminum profile. When the position of the aluminum profile needs to be adjusted, the motor 112 is started to drive the second bevel gear 111 to rotate. The second bevel gear 111 drives the first bevel gear 110 to rotate through meshing with the first bevel gear 110. The first bevel gear 110 drives the mounting shaft 107 to rotate through fixed connection with the mounting shaft 107. The mounting shaft 107 further drives the driving wheel 106 to rotate. Through the forward or reverse rotation of the driving wheel 106, the driving wheel 106 can drive the aluminum profile to reciprocate along the fixing plate 104 through the friction with the aluminum profile, thereby realizing the reciprocating movement adjustment of the aluminum profile and making it convenient to perform grooving processing at different positions.
[0028] The second embodiment of this application is as follows:
[0029] Please refer to Figure 4 , where Figure 4 is the overall structural schematic diagram of a grooving device for processing aluminum profiles according to the second embodiment of the present invention. On the basis of the first embodiment, the grooving device for processing aluminum profiles in this embodiment further includes a lifting device, and the lifting device includes a lifting cylinder 201, a guide rod 202 and a guide plate 203.
[0030] In this embodiment, through the cooperation of the lifting cylinder 201, the guide rod 202 and the guide plate 203, the lifting effect of the cutting machine 103 is realized.
[0031] Among them, the lifting cylinder 201 is fixedly installed on the mounting frame 102, and the cutting machine 103 is fixedly connected to the output end of the lifting cylinder 201; the guide plate 203 is fixedly installed on the cutting machine 103; the guide rod 202 is fixedly installed on the mounting frame 102 and is slidably matched with the guide plate 203. The lifting cylinder 201 is fixed to the mounting frame 102 by screws, the guide rod 202 is vertically welded to the mounting frame 102, and the guide plate 203 is welded to the cutting machine 103. When in use, the lifting cylinder 201 pushes the cutting machine 103 to move up and down. While the cutting machine 103 is moving, the guide plate 203 will move along the guide rod 202, thereby realizing the lifting effect of the cutting machine 103.
[0032] In this embodiment, during use, the lifting cylinder 201 pushes the cutting machine 103 to move up and down. While the cutting machine 103 is moving, the guide plate 203 will move along the guide rod 202, thereby achieving the lifting effect of the cutting machine 103.
[0033] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A grooving device for aluminum profile processing, comprising a cutting table, a mounting frame, a cutting machine and a lifting device, wherein the mounting frame is fixedly mounted on the cutting table, and the cutting machine is mounted on the mounting frame through the lifting device, characterized in that: Also includes an adjustment device; The adjustment device includes a fixed plate, a mounting plate, a driving wheel, a mounting shaft and a driving assembly. The fixed plate is fixedly mounted on the cutting table. One side of the fixed plate is provided with multiple groups of rollers. A mounting groove is provided on the side of the fixed plate away from the rollers. The mounting plate is fixedly mounted on the fixed plate and passes through the mounting groove. The mounting shaft is rotatably mounted on the mounting plate through the driving assembly, and the driving wheel is fixedly mounted on the mounting shaft.
2. The grooving device for aluminum profile processing according to claim 1, characterized in that: The driving assembly includes a first bevel gear, a second bevel gear and a motor. The first bevel gear is fixedly mounted on the mounting shaft; the motor is fixedly mounted on the mounting plate; the second bevel gear is fixedly mounted on the output shaft of the motor and meshes with the first bevel gear.
3. The grooving device for aluminum profile processing according to claim 1, characterized in that: The adjustment device also includes an anti-skid layer, and the anti-skid layer is sleeved on the driving wheel.
4. The grooving device for aluminum profile processing according to claim 1, characterized in that: The cutting table is also provided with a waste trough, and the waste trough is located on a side of the cutting table close to the fixing plate.
5. The grooving device for aluminum profile processing according to claim 1, characterized in that: The lifting device includes a lifting cylinder, a guide rod and a guide plate. The lifting cylinder is fixedly installed on the mounting frame, and the cutting machine is fixedly connected to the output end of the lifting cylinder; the guide plate is fixedly installed on the cutting machine; the guide rod is fixedly installed on the mounting frame and slidably cooperates with the guide plate.
Citation Information
Patent Citations
Aluminum profile grooving machining equipment
CN221134893U