A curtain wall profile drilling and milling device and processing host

By designing three sets of drilling and milling components with automatic tool changing and a movable structure, the problem of low efficiency in traditional curtain wall drilling and milling equipment has been solved, achieving efficient and precise multi-faceted machining.

CN224310056UActive Publication Date: 2026-06-02JINAN TIANCHEN ALUMINUM MASCH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINAN TIANCHEN ALUMINUM MASCH CO LTD
Filing Date
2025-04-23
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional curtain wall drilling and milling equipment requires increasing the degree of freedom of movement in the drilling and milling space or flipping the profile when processing different surfaces, resulting in low processing efficiency, and changing tools also affects efficiency.

Method used

Design a drilling and milling device for curtain wall profiles, comprising three sets of drilling and milling components, each set of which is equipped with a tool assembly of different sizes, and the tool assembly is automatically changed by a drive component. Combined with the movable structural design, the tool assembly is allowed to move along the X, Y and Z directions, avoiding the need for manual tool replacement during machine downtime.

Benefits of technology

It improves processing efficiency, simplifies the structure, reduces clamping distance, enhances clamping rigidity, adapts to various processing requirements, and ensures processing accuracy and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a drilling and milling device and processing host for curtain wall profiles, relating to the field of curtain wall profile processing. The solution includes a base with a movable frame movably mounted on it, and drilling and milling components one, two, and three. These components are movably mounted on the movable frame and / or the base. Components one, two, and three are used to process different surfaces of the curtain wall profile. Each component includes a feed plate with at least two tool assemblies. Each tool assembly includes a tool with different diameters on the same feed plate. Each tool assembly is connected to a driving component, which drives the tool assembly to move along the tool axis. This utility model allows for automatic tool changing, and the drilling and milling components in each position can cover a wider range of hole and groove processing, improving processing efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of curtain wall profiles, and in particular to a drilling and milling device and processing host for curtain wall profiles. Background Technology

[0002] Drilling and milling is an essential process in the processing of curtain wall profiles. Traditional curtain wall drilling and milling equipment can usually only drill and mill one surface at a time. When different surfaces need to be processed, it is necessary to increase the freedom of movement in the drilling and milling space or flip the curtain wall profile to complete the drilling and milling of multiple surfaces, which seriously restricts the processing efficiency of curtain wall profiles.

[0003] In the prior art, Chinese utility model patent with authorization announcement number CN 216828726 U discloses a multi-functional drilling and milling machine for curtain walls, including a frame, a slide rail and a rack on the frame, a gantry frame on the slide rail, a servo motor on the gantry frame, the servo motor meshing with the rack via gears, a positioning and clamping mechanism for positioning and clamping profiles on the frame below the gantry frame, a side drilling and milling mechanism for drilling and milling the sides of the profiles on the gantry frame, an upper drilling and milling mechanism A for drilling and milling the top of the profiles on one side of the gantry frame, and an upper drilling and milling mechanism B for drilling and milling the top of the profiles on the other side; the drilling and milling side drilling and milling mechanism, the upper drilling and milling mechanism, and the upper drilling and milling mechanism perform drilling and milling on multiple surfaces of the curtain wall profiles, improving the drilling and milling efficiency of the curtain wall profiles.

[0004] However, with the above technical solutions, as the structure of the curtain wall profile changes, holes and slots of different sizes often appear on one side of the same curtain wall profile. In order to improve processing efficiency and protect the cutting tools, it is necessary to avoid using cutting tools with smaller diameters to process larger holes and slots. This requires stopping the machine and manually replacing the drilling and milling tools with the corresponding diameter, which seriously affects processing efficiency. Utility Model Content

[0005] To address the technical problem in the prior art where tool replacement is required for machining holes and grooves in curtain walls, thus affecting machining efficiency, this utility model provides a curtain wall profile drilling and milling device and machining host that can automatically replace tools, enabling the drilling and milling components at each position to cover a more comprehensive range of holes and grooves, avoiding downtime for manual tool replacement, and improving machining efficiency.

[0006] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: a curtain wall profile drilling and milling device, including a base, on which a movable frame is movably arranged, and further including a drilling and milling component one, a drilling and milling component two, and a drilling and milling component three. The drilling and milling component one, the drilling and milling component two, and the drilling and milling component three are movably arranged on the movable frame and / or the base. The drilling and milling component one, the drilling and milling component two, and the drilling and milling component three are respectively used to process different surfaces of the curtain wall profile. The drilling and milling component one, the drilling and milling component two, and the drilling and milling component three all include a feed plate. At least two tool assemblies are arranged on the feed plate. The tool assembly includes a tool. The diameters of the tools on the same feed plate are different. The tool assembly is connected to a driving member. The driving member can drive the tool assembly to move along the tool axis.

[0007] This invention features three sets of drilling and milling components, each equipped with a tool assembly containing tools of different sizes. Each tool assembly can move independently, avoiding interference from tools not involved in machining. This enables automatic tool changing, allowing a single drilling and milling component to cover more comprehensive hole and groove machining, eliminating the need for manual tool changes and improving machining efficiency.

[0008] Furthermore, the movable frame includes a crossbeam and two vertical beams. The bottom ends of the vertical beams are movably mounted on the base. The first drilling and milling assembly is movably mounted on the crossbeam along the Y direction, and the cutting tool of the first drilling and milling assembly is mounted along the Z direction. The second drilling and milling assembly is movably mounted on the vertical beam along the Z direction, and the cutting tool of the second drilling and milling assembly is mounted along the Y direction. A movable seat is also movably mounted on the base along the X direction. The third drilling and milling assembly is movably mounted on the movable seat along the Y direction, and the cutting tool of the third drilling and milling assembly is mounted along the Z direction.

[0009] This utility model sets the third drilling and milling component on the base, and sets the first and second drilling and milling components on the movable frame, so that the third drilling and milling component can move relative to the first and second drilling and milling components in the X, Y and Z directions, and can process curtain wall profiles simultaneously with the first or second drilling and milling component, thereby further improving processing efficiency while simplifying the structure.

[0010] Furthermore, the driving component is a driving cylinder, and the tool assembly is movably mounted on the corresponding feed plate via a guide rail.

[0011] This invention achieves rapid extension and retraction of the corresponding tool components by driving a cylinder, thereby improving processing efficiency.

[0012] Furthermore, the drilling and milling assembly one, the drilling and milling assembly two, and the drilling and milling assembly three all include a slide plate, a feed motor, and a lead screw. The feed motor and the lead screw are connected. Multiple feed plates are respectively mounted on the corresponding slide plate via guide rails. Multiple feed plates are respectively connected to the corresponding lead screws. The feed motor can drive the corresponding feed plate to move along the axial direction of its own tool. The slide plate is movably mounted on the crossbeam, the vertical beam, or the moving seat.

[0013] Furthermore, along the X-axis, side clamping components are respectively provided on both sides of the movable seat, and an upper clamping component is also provided on the movable seat.

[0014] This invention reduces the clamping distance and enhances clamping rigidity by placing the side clamping components on both sides of the movable seat. This prevents the profile from elastically deforming due to a long distance between the two clamping points during processing, thus avoiding affecting the processing accuracy.

[0015] Furthermore, the side clamping assembly includes a vertically arranged fixed roller and a movable roller, the movable roller being movably disposed on one side of the movable seat.

[0016] Furthermore, the upper clamping assembly includes a pressure plate, which is movably disposed on the movable seat along the Z direction. Guide rails and clamping cylinders are respectively disposed at both ends of the pressure plate, and the clamping cylinders are vertically disposed on the movable seat.

[0017] Secondly, this utility model also provides a curtain wall profile processing host, including the above-mentioned curtain wall profile drilling and milling device, and also includes a curtain wall profile sawing device. The curtain wall profile sawing device includes a sawing platform one and a sawing platform two, both of which can move along the X direction. A positioning component is provided on the sawing platform one, and a material discharge component is provided on the sawing platform two. The curtain wall profile sawing device also includes a column, which is set on the base, and a sawing component is movably arranged on the column along the Z direction.

[0018] This utility model makes the sawing platform one and sawing platform two movable. On the one hand, it can move the sawed end profiles away from the saw blade when discharging material, so as to avoid the saw blade sweeping the material when it rises and affecting the processing quality. On the other hand, both sawing platform one and sawing platform two are movable, which can form a larger material dropping space, which is suitable for dropping large-structure profiles such as curtain wall profiles.

[0019] Furthermore, the sawing assembly includes a mounting base, which is movably mounted on the column along the Z-direction. An adjustment motor is mounted on the mounting base, and the adjustment motor is connected to a rotating base. A saw blade motor and a saw blade are mounted on the rotating base.

[0020] This invention allows for adjustment of the saw blade's cutting angle by adjusting the motor, enabling sawing at any angle and meeting various processing requirements.

[0021] Furthermore, the discharge assembly includes a discharge arm, which is connected to the second sawing platform, and a clamping assembly is movably provided on the discharge arm along the X direction.

[0022] This utility model achieves clamping of the profile through the discharge component. On the one hand, it can have a positioning function during sawing, and on the other hand, it can pull the profile out, so that the discharge component has the dual functions of positioning and discharge, which simplifies the structure, saves space, and is suitable for the discharge of shorter curtain wall profiles.

[0023] As can be seen from the above technical solutions, this utility model has the following advantages:

[0024] This utility model provides a drilling and milling device and processing host for curtain wall profiles. By setting three sets of drilling and milling components, each set is equipped with a tool assembly containing tools of different sizes. Each tool assembly can move independently and automatically under the action of a drive component, achieving automatic tool changing. This allows a single drilling and milling component to cover a wider range of holes and grooves, avoiding downtime for manual tool changes and improving processing efficiency. By placing the third drilling and milling component on the base, and the first and second drilling and milling components on the moving frame, the third drilling and milling component can move relative to the first and second drilling and milling components in the X, Y, and Z directions. It can process curtain wall profiles simultaneously with either the first or second drilling and milling component, further improving processing efficiency while simplifying the structure. By placing the side clamping components on both sides of the moving base, the clamping distance is reduced, enhancing clamping strength. Rigidity prevents elastic deformation of the profile due to a long distance between the two clamping points during processing, which would affect processing accuracy. By making sawing platform one and sawing platform two movable, on the one hand, the sawed ends of the profile can be moved away from the saw blade before discharge, avoiding material sweeping when the saw blade rises, which would affect processing quality. On the other hand, the movable sawing platform one and sawing platform two can form a larger unloading space, which is suitable for unloading profiles with larger structures such as curtain wall profiles. The sawing angle of the saw blade can be adjusted by adjusting the motor, enabling sawing at any angle to meet various processing requirements. The clamping of the profile is achieved through the discharge component, which has a positioning function during sawing and can pull the profile out of the machine. This gives the discharge component a dual function of positioning and discharge, simplifying the structure, saving space, and making it suitable for discharge of shorter curtain wall profiles. Attached Figure Description

[0025] To more clearly illustrate the technical solution of this utility model, the drawings used in the description will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0026] Figure 1 This is a structural diagram of a specific embodiment of the present invention. Figure 1 .

[0027] Figure 2 This is a structural diagram of a specific embodiment of the present invention. Figure 2 .

[0028] Figure 3 This is a structural diagram of a specific embodiment of the present invention. Figure 3 .

[0029] Figure 4 This is a structural schematic diagram of the second specific embodiment of the present utility model. Figure 1 .

[0030] Figure 5 This is a structural schematic diagram of the second specific embodiment of the present utility model. Figure 2 .

[0031] In the diagram, 1. Moving frame; 101. Crossbeam; 102. Vertical beam; 2. Drilling and milling assembly one; 3. Drilling and milling assembly two; 4. Base; 5. Moving seat; 6. Drilling and milling assembly three; 7. Slide plate; 8. Feed plate; 9. Feed motor; 10. Drive component; 11. Tool assembly; 12. Pressure plate; 13. Moving roller; 14. Fixed roller; 15. Mounting seat; 16. Adjustment motor; 17. Saw blade; 18. Discharge arm; 19. Discharge assembly; 20. Sawing platform two; 21. Positioning assembly; 22. Sawing platform one; 23. Support roller; 24. Lower pressure roller; 25. Support frame. Detailed Implementation

[0032] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments. Obviously, the embodiments described below are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this patent, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this patent. Specific Implementation Method 1

[0034] like Figures 1 to 3As shown in the figure, this specific embodiment provides a curtain wall profile drilling and milling device, including a base 4, a movable frame 1, a drilling and milling assembly 2, a drilling and milling assembly 3, and a drilling and milling assembly 3 6. The movable frame 1 is movably mounted on the base 4. The drilling and milling assembly 2, the drilling and milling assembly 3, and the drilling and milling assembly 3 6 are movably mounted on the movable frame 1 and / or the base 4. The drilling and milling assembly 2, the drilling and milling assembly 3, and the drilling and milling assembly 3 6 are respectively used to process different surfaces of the curtain wall profile. Each of the drilling and milling assembly 2, the drilling and milling assembly 3, and the drilling and milling assembly 3 6 includes a feed plate 8, which can feed along the corresponding drilling and milling direction. At least two tool assemblies 11 are provided on the feed plate 8. Each tool assembly 11 includes an electric spindle and a tool connected to each other. The tools on the same feed plate 8 have different diameters, which can process holes and grooves of different sizes. Each tool assembly 11 is connected to a drive unit 10. The drive unit 10 can drive the tool assembly 11 to move along the tool axis. Automatic tool changing can be achieved by controlling the action of the corresponding drive unit 10. In this specific embodiment, two sets of tool assemblies 11 are provided on each feed plate 8. To improve the response speed, the drive unit 10 adopts a drive cylinder. The tool assembly 11 is movably mounted on the corresponding feed plate 8 via a guide rail.

[0035] This specific embodiment sets up three sets of drilling and milling components, and each set of drilling and milling components is equipped with a tool assembly 11 containing tools of different sizes. Each tool assembly 11 can move independently and autonomously, realizing automatic tool replacement. This allows the drilling and milling components in each position to cover a more comprehensive hole and groove machining, avoiding downtime for manual tool replacement and improving machining efficiency.

[0036] like Figures 1 to 3As shown, in order to improve processing efficiency without increasing the structural complexity of the device, in this specific embodiment, the movable frame 1 includes a horizontal beam 101 and two vertical beams 102. The bottom ends of the vertical beams 102 are movably mounted on the base 4. The first drilling and milling assembly 2 is movably mounted on the horizontal beam 101 along the Y direction. The cutting tool of the first drilling and milling assembly 2 is positioned downward along the Z direction for processing the upper surface of the curtain wall profile. The second drilling and milling assembly 3 is movably mounted on the vertical beams 102 along the Z direction. The cutting tool of the second drilling and milling assembly 3 is positioned along the Y direction for processing one vertical surface of the curtain wall profile. A movable seat 5 is also movably mounted on the base 4 along the X direction. The third drilling and milling assembly 6 is movably mounted on the movable seat 5 along the Y direction. The milling component 3 6 has its cutting tool facing upwards along the Z-axis for machining the bottom surface of the curtain wall profile. This arrangement allows the milling component 3 6 to move relative to the milling components 1 2 and 2 3 along the X, Y, and Z axes. The machining position of the milling component 3 6 can be adjusted independently, and it can machine the curtain wall profile simultaneously with the milling components 1 2 or 2 3, further improving machining efficiency while simplifying the structure. Specifically, the base 4 has a mounting groove in the middle, with two guide rails and a rack at the bottom. The moving seat 5 has a motor facing downwards, connected to a gear that meshes with the rack. The upper surface of the base 4 has multiple guide rails and a rack. The bottom end of the vertical beam 102 has a motor with a gear that meshes with the rack. The moving seat 5 can move independently along the X-axis from the moving frame 1.

[0037] like Figure 1 and Figure 2 As shown in this specific embodiment, drilling and milling assembly 1 2, drilling and milling assembly 2 3 and drilling and milling assembly 3 6 all further include a slide plate 7, a feed motor 9 and a lead screw. The feed motor 9 and the lead screw are connected and are both mounted on the slide plate 7. Multiple feed plates 8 are respectively mounted on the corresponding slide plate 7 via guide rails. Multiple feed plates 8 are respectively connected to the corresponding lead screws. The feed motor 9 can drive the corresponding feed plate 8 to move along the axial direction of its own tool. The slide plate 7 is movably mounted on the crossbeam 101, the vertical beam 102 or the movable seat 5.

[0038] like Figure 3As shown, in order to shorten the distance between the clamping points on both sides of the processing position and improve the clamping rigidity, in this specific embodiment, side clamping components are respectively provided on both sides of the movable seat 5 along the X-axis direction, and an upper clamping component is also provided on the movable seat 5; preferably, the side clamping component includes a vertically arranged fixed roller 14 and a movable roller 13. The movable roller 13 is movably arranged on one side of the movable seat 5 through a cylinder and a guide rail. The movable roller 13 moves along the Y direction. Both the fixed roller 14 and the movable roller 13 can be rotated. In this way, the curtain wall profile can be moved without releasing the corresponding cylinder, saving the time required for cylinder execution and improving processing efficiency. The upper clamping component includes a pressure plate 12. The pressure plate 12 is movably arranged on the movable seat 5 along the Z direction. Guide rails and clamping cylinders are respectively provided at both ends of the pressure plate 12. The clamping cylinders are vertically arranged on the movable seat 5. Specific Implementation Method Two

[0040] like Figure 4 and Figure 5 As shown, this specific embodiment provides a curtain wall profile processing host, including the curtain wall profile drilling and milling device of embodiment one, and also a curtain wall profile sawing device. The curtain wall profile sawing device and the curtain wall profile drilling and milling device share a base 4. The curtain wall profile sawing device includes a first sawing platform 22 and a second sawing platform 20. Both the first sawing platform 22 and the second sawing platform 20 can move along the X direction. The first sawing platform 22 is provided with a positioning component 21, and the second sawing platform 20 is provided with a discharge component 19. The curtain wall profile sawing device also includes a column, which is set on the base 4. A sawing component is movably arranged on the column along the Z direction. By making sawing platform 1 22 and sawing platform 20 movable, on the one hand, the sawed end profiles can be moved away from the saw blade 17 when unloading, avoiding material sweeping when the saw blade 17 rises, which would affect the processing quality. On the other hand, both sawing platform 1 22 and sawing platform 20 are movable, which can form a larger unloading space, suitable for unloading profiles with larger structures such as curtain wall profiles. Specifically, sawing platform 1 22 and sawing platform 20 are equipped with a motor with gears at the bottom. The gears mesh with the racks set at the corresponding positions on the base 4. Driven by the corresponding motors, sawing platform 1 22 and sawing platform 20 can move along the guide rails at the corresponding positions on the base 4 to open and close.

[0041] like Figure 4As shown, to improve processing flexibility, in this specific embodiment, the sawing assembly includes a mounting base 15, which is movably mounted on the column along the Z direction. An adjustment motor 16 is mounted on the mounting base 15 and connected to a rotating base. A saw blade 17 motor and a saw blade 17 are mounted on the rotating base. The sawing angle of the saw blade 17 can be adjusted by adjusting the motor 16, enabling sawing at any angle and meeting various processing requirements.

[0042] like Figure 4 and Figure 5 As shown, in this specific embodiment, the discharge assembly 19 includes a discharge arm 18, which is connected to the sawing platform 20. A clamping assembly is movably mounted on the discharge arm 18 along the X-axis. The clamping assembly achieves high-precision reciprocating movement via a motor gear and rack mechanism. The clamping assembly includes a rear positioning plate, an upper positioning plate that moves in the Z-axis, and a side positioning plate that moves in a 45° direction. The sawing platform 20 is also equipped with conveying rollers to reduce the friction of the profile discharge. The upper positioning plate cooperates with the sawing platform 20 to achieve vertical clamping, and the rear positioning plate cooperates with the side positioning plate to achieve Y-axis clamping. During sawing... The clamping assembly moves to the set position, and the upper positioning plate and the side positioning plate move into place to clamp, cooperating with the positioning assembly 21 to achieve clamping and positioning on both sides of the saw blade 17; when it is necessary to discharge the material, the upper positioning plate moves upward to release, while the side positioning plate remains clamped, and the motor drives the profile to be discharged from the sawing platform 20; in this specific embodiment, the discharge assembly 19 is used to clamp the profile. On the one hand, it can have a positioning function during sawing, and on the other hand, it can pull the profile to discharge, so that the discharge assembly 19 has the dual functions of positioning and discharge, which simplifies the structure, saves space, and is suitable for the discharge of shorter curtain wall profiles.

[0043] In this specific embodiment, the positioning component 21 includes a fixed plate, a movable plate, and an upper clamping plate. The movable plate moves back and forth on the sawing platform 22 in a 135° direction under the action of the cylinder and the guide rail, and cooperates with the fixed plate to achieve Y-axis positioning of the curtain wall profile. The upper clamping plate and the sawing platform 22 cooperate to achieve Z-axis positioning and clamping of the curtain wall profile.

[0044] like Figure 4 and Figure 5 As shown, to enhance the support strength of the curtain wall profile, a support roller 23 is horizontally installed on the end of the sawing platform 22 near the curtain wall profile milling device. A support frame 25 is installed on the sawing platform 22, and a downward pressure roller 24 that can move along the Z direction is installed on the support frame 25 via a cylinder. At the same time, both the support roller 23 and the downward pressure roller 24 can rotate. By setting the rotatable support roller 23 and the downward pressure roller 24, the curtain wall profile can be moved to the curtain wall profile sawing device without disengaging the cylinder, saving the time of waiting for the cylinder to act and improving processing efficiency.

[0045] The working process of this curtain wall profile processing main unit is as follows:

[0046] After the curtain wall profile is fed into the curtain wall profile drilling and milling device, it is clamped by two side clamping components and an upper clamping component. At the same time, the moving frame 1 moves into position. The control system selects the tool assembly 11 according to the profile processing content, which extends under the action of the drive component 10, and the corresponding slide 7 moves into position. The feed plate 8 moves into position under the action of the corresponding feed motor 9. Drilling and milling assembly 1 2 and drilling and milling assembly 3 6 process the upper and lower surfaces of the curtain wall profile at the same time, while drilling and milling assembly 2 3 processes the vertical surface separately. After drilling and milling is completed, the curtain wall profile moves along the X direction to a set length to reach below the saw blade 17. After clamping, the saw blade 17 rotates to the set position and then descends to cut. After cutting is completed, both sawing platform 1 22 and sawing platform 2 20 move away from the saw blade 17, and the saw blade 17 rises to reset. After the upper positioning plate of the discharge assembly 19 is released from clamping, it moves along the discharge arm 18 to discharge the material.

[0047] As can be seen from the above specific embodiments, this utility model has the following beneficial effects:

[0048] 1. By setting up three sets of drilling and milling components, and setting up tool components 11 containing tools of different sizes on each set of drilling and milling components, each tool component 11 can move independently and autonomously, avoiding interference caused by tools that do not participate in the machining, realizing automatic tool changing, so that the drilling and milling components in one position can cover a more comprehensive hole and groove machining, avoiding machine downtime for manual tool changing, and improving machining efficiency.

[0049] 2. By setting the drilling and milling assembly 36 on the base 4 and the drilling and milling assembly 12 and drilling and milling assembly 23 on the moving frame 1, the drilling and milling assembly 36 can move relative to the drilling and milling assembly 12 and drilling and milling assembly 23 in the X, Y and Z directions, and can process the curtain wall profiles simultaneously with the drilling and milling assembly 12 or the drilling and milling assembly 23, thereby further improving the processing efficiency on the basis of simplifying the structure.

[0050] 3. By setting two sets of side clamping components on both sides of the moving seat 5, the clamping distance can be reduced, the clamping rigidity can be enhanced, and the elastic deformation of the profile caused by the long distance between the two clamping points during processing can be avoided, which would affect the processing accuracy.

[0051] 4. By making sawing platform 1 22 and sawing platform 20 movable, on the one hand, the sawed end profiles can be moved away from saw blade 17 when the material is discharged, so as to avoid the saw blade 17 sweeping the material when it rises and affecting the processing quality. On the other hand, both sawing platform 1 22 and sawing platform 20 can be moved, which can form a larger material dropping space, which is suitable for dropping large-structure profiles such as curtain wall profiles.

[0052] 5. The sawing angle of the saw blade 17 can be adjusted by adjusting the motor 16, enabling sawing at any angle to meet various processing requirements;

[0053] 6. The material discharge assembly 19 clamps the profile, which on the one hand provides positioning during sawing, and on the other hand pulls the profile out of the box. This gives the material discharge assembly 19 the dual functions of positioning and discharge, which simplifies the structure, saves space, and is suitable for shorter curtain wall profiles.

[0054] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general deviations defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the deviations and novel features disclosed herein.

Claims

1. A drilling and milling device for curtain wall profiles, comprising a base (4), wherein a movable frame (1) is movably disposed on the base (4), characterized in that, It also includes a drilling and milling assembly 1 (2), a drilling and milling assembly 2 (3), and a drilling and milling assembly 3 (6). The drilling and milling assembly 1 (2), the drilling and milling assembly 2 (3), and the drilling and milling assembly 3 (6) are movably mounted on the moving frame (1) and / or the base (4). The drilling and milling assembly 1 (2), the drilling and milling assembly 2 (3), and the drilling and milling assembly 3 (6) are respectively used to process different surfaces of the curtain wall profile. The drilling and milling assembly 1 (2), the drilling and milling assembly 2 (3), and the drilling and milling assembly 3 (6) all include a feed plate (8). At least two tool assemblies (11) are provided on the feed plate (8). The tool assembly (11) includes a tool. The diameters of the tools on the same feed plate (8) are different. The tool assemblies (11) are respectively connected to a driving member (10). The driving member (10) can drive the tool assembly (11) to move along the tool axis.

2. The curtain wall profile drilling and milling device as described in claim 1, characterized in that, The movable frame (1) includes a crossbeam (101) and two vertical beams (102). The bottom end of the vertical beams (102) is movably mounted on the base (4). The first drilling and milling assembly (2) is movably mounted on the crossbeam (101) along the Y direction. The cutting tool of the first drilling and milling assembly (2) is mounted along the Z direction. The second drilling and milling assembly (3) is movably mounted on the vertical beam (102) along the Z direction. The cutting tool of the second drilling and milling assembly (3) is mounted along the Y direction. A movable seat (5) is also movably mounted on the base (4) along the X direction. The third drilling and milling assembly (6) is movably mounted on the movable seat (5) along the Y direction. The cutting tool of the third drilling and milling assembly (6) is mounted along the Z direction.

3. The curtain wall profile drilling and milling device as described in claim 2, characterized in that, The drive unit (10) is a drive cylinder, and the tool assembly (11) is movably mounted on the corresponding feed plate (8) via a guide rail.

4. The curtain wall profile drilling and milling device as described in claim 3, characterized in that, The drilling and milling assembly one (2), the drilling and milling assembly two (3), and the drilling and milling assembly three (6) all include a slide plate (7), a feed motor (9), and a lead screw. The feed motor (9) and the lead screw are connected. Multiple feed plates (8) are respectively mounted on the corresponding slide plate (7) via guide rails. Multiple feed plates (8) are respectively connected to the corresponding lead screw. The feed motor (9) can drive the corresponding feed plate (8) to move along the axial direction of its own tool. The slide plate (7) is movably mounted on the crossbeam (101), the vertical beam (102), or the moving seat (5).

5. The curtain wall profile drilling and milling device as described in any one of claims 2-4, characterized in that, Along the X-axis, the movable seat (5) is provided with side clamping components on both sides, and the movable seat (5) is also provided with upper clamping components.

6. The curtain wall profile drilling and milling device as described in claim 5, characterized in that, The side clamping assembly includes a vertically arranged fixed roller (14) and a movable roller (13), the movable roller (13) being movably arranged on one side of the movable seat (5).

7. The curtain wall profile drilling and milling device as described in claim 6, characterized in that, The upper clamping assembly includes a pressure plate (12), which is movably disposed on the movable seat (5) along the Z direction. The two ends of the pressure plate (12) are respectively provided with guide rails and clamping cylinders, and the clamping cylinders are vertically disposed on the movable seat (5).

8. A curtain wall profile processing main unit, characterized in that, The device includes the curtain wall profile drilling and milling device as described in claim 7, and also includes a curtain wall profile sawing device. The curtain wall profile sawing device includes a sawing platform one (22) and a sawing platform two (20). Both the sawing platform one (22) and the sawing platform two (20) can move along the X direction. A positioning component (21) is provided on the sawing platform one (22), and a material discharge component (19) is provided on the sawing platform two (20). The curtain wall profile sawing device also includes a column. The column is provided on the base (4), and a sawing component is movably provided on the column along the Z direction.

9. The curtain wall profile processing main unit as described in claim 8, characterized in that, The sawing assembly includes a mounting base (15), which is movably mounted on the column along the Z direction. An adjustment motor (16) is mounted on the mounting base (15), and the adjustment motor (16) is connected to a rotating base. A saw blade (17) motor and a saw blade (17) are mounted on the rotating base.

10. The curtain wall profile processing main unit as described in claim 9, characterized in that, The discharge assembly (19) includes a discharge arm (18), which is connected to the sawing platform (20). A clamping assembly is movably provided on the discharge arm (18) along the X direction.