Intelligent door and window processing equipment
By introducing automatic chip collection and cutting blade cooling functions into door and window processing equipment, the problems of flying chip pollution and blade wear in the processing of PVC doors and windows have been solved, improving the working environment and cutting accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DINGBEI GLASS TECH CO LTD
- Filing Date
- 2025-07-03
- Publication Date
- 2026-07-21
AI Technical Summary
Existing PVC window and door processing equipment generates a large amount of flying debris during cutting, and lacks an effective collection device, resulting in a harsh working environment. At the same time, the cutting blades lack cooling function, leading to accelerated wear and reduced cutting accuracy.
An intelligent door and window processing equipment was designed, equipped with an automatic dust collection system for collecting cutting debris and a cutting blade cooling device. The debris is collected by a dust pump and a dust collection plate, and the cutting blade is cooled by fresh air flow.
It enables automatic collection of cutting debris, protects the working environment, extends the life of cutting blades, and improves cutting accuracy.
Smart Images

Figure CN224527350U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of door and window processing technology, and specifically discloses an intelligent door and window processing equipment. Background Technology
[0002] PVC windows and doors are made primarily from polyvinyl chloride (UPVC) resin, along with a certain proportion of stabilizers, colorants, fillers, and UV absorbers. The resin is extruded into profiles, which are then cut, welded, or screwed together to form window and door frames. Sealing strips, weatherstripping, and hardware are then added. To enhance the rigidity of the profiles, steel reinforcement (stiffening ribs) is added to the cavities of profiles exceeding a certain length. Windows and doors made in this way are called PVC windows and doors. When using the raw materials, they must first be cut using a cutting device to ensure the desired shape is achieved.
[0003] Most existing cutting equipment used in the processing and production of PVC windows and doors generates a large amount of shavings when cutting the raw materials. These cutting devices lack effective collection and protection mechanisms, resulting in a harsh working environment for workers. Furthermore, existing cutting equipment lacks a function to cool the cutting blades. During high-speed cutting, the friction between the cutting blades and the window / door generates heat, which accelerates blade wear, reduces its lifespan, and may cause material expansion or deformation, reducing cutting accuracy. Therefore, this paper proposes an intelligent window and door processing equipment to solve these problems. Utility Model Content
[0004] This utility model proposes an intelligent door and window processing equipment, which can automatically collect cutting debris and is easy to clean. At the same time, it can cool the cutting blades to improve their service life and cutting accuracy.
[0005] This utility model is implemented as follows: an intelligent door and window processing equipment includes a support platform, clamping mechanisms on both sides of the top of the support platform, a cutting device above the support platform, a movable, frame-shaped slide, a sliding seat slidably disposed within the slide and slidable along its length, and a circular rotating seat; the top of the sliding seat has a through groove, and the rotating seat is rotatably disposed within the through groove; the cutting device is disposed below the rotating seat and can be raised and lowered; vertical suction devices are provided on both sides of the cutting device and are fixedly connected to the bottom of the rotating seat. The dust plate has a dust suction chamber in the interlayer of the two dust suction plates, and dust suction holes communicating with the dust suction chamber are opened on the opposite sides of the two dust suction plates; a dust suction pump and a collection box are provided on the top of the rotating seat; the input end of the dust suction pump is connected to the collection box through a pipe; a pull-out filter plate and a collection groove are provided on the lower side of the collection box away from the pipe along the first direction; a dust suction pipe communicating with the collection box and the dust suction chamber is provided below the filter plate; a baffle that is rotatably connected to the outer wall of the collection box is provided on the side of the filter plate and the collection groove away from the collection box.
[0006] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, the top two sides of the support platform are provided with sliding grooves along the width direction, and a sliding strip is slidably provided in the sliding groove. The top of the sliding strip is provided with two first lifting devices fixedly connected to the bottom of the slide frame, and one side of the support platform is provided with a first telescopic device fixedly connected to one of the sliding strips.
[0007] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, the inner wall of the slide is provided with a second telescopic device that is fixedly connected to the slide seat.
[0008] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, the top of the slide is provided with a gantry frame, the top of the gantry frame is provided with a motor, and the output shaft of the motor passes through the gantry frame and is located on the top of the rotating seat.
[0009] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, the cutting equipment includes a cutting machine and a rotatable cutting blade mounted on the cutting machine; the cutting machine is provided with a lifting seat, and the bottom of the rotating seat is provided with a second lifting device fixedly connected to the top of the lifting seat.
[0010] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, rotatable pressing rollers are respectively provided on the opposite sides of the two dust collection plates.
[0011] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, the clamping mechanism includes a bracket, a third lifting device, and a clamping plate; the bracket is located on the top of the support platform, the clamping plate is located on the side of the bracket facing the center of the support platform, the third lifting device is located on the other side of the bracket, and the output end of the third lifting device is located on the clamping plate.
[0012] As a preferred embodiment of the intelligent door and window processing equipment of this utility model, a rubber pad is provided on the other side of the clamping plate.
[0013] The beneficial effects of this utility model are:
[0014] This invention, when the dust pump is activated, generates suction within the dust-collecting plates on both sides of the cutting equipment. The debris generated during the cutting process enters the collection box through the dust-collecting holes and chamber. The filter plate filters the incoming debris, preventing it from entering the dust pump. This enables the processing equipment to automatically collect cutting debris, preventing leakage and potential harm to workers' health, thus protecting their working environment. Furthermore, when the dust pump is activated, fresh air enters from both sides of the two dust-collecting plates. This fresh air flow helps cool the cutting blade, preventing overheating and wear, and extending its lifespan and cutting accuracy.
[0015] After cutting, the vacuum pump is powered off, and the debris filtered under the vacuum plate loses suction and falls downwards. The collection trough under the vacuum plate easily collects the fallen debris. By rotating the baffle, the filter plate and collection trough can be pulled out of the collection box, making it easy to clean the filter plate and collection trough separately. Attached Figure Description
[0016] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the structure of the collection box and cutting equipment of this utility model.
[0019] Figure 3 for Figure 2 A schematic diagram of the rear view structure.
[0020] Figure 4 This is a schematic diagram of the main structure of the collection box of this utility model.
[0021] Figure 5 This is a top view of the slide and slide base of this utility model.
[0022] The markings in the diagram are: 1. Support platform; 2. Carriage; 3. Slide seat; 4. Rotary seat; 5. Through groove; 6. Dust suction plate; 7. Dust suction chamber; 8. Dust suction hole; 9. Dust suction pump; 10. Collection box; 11. Filter plate; 12. Collection trough; 13. Dust suction pipe; 14. Baffle strip; 15. Slide groove; 16. Slide bar; 17. First lifting device; 18. First telescopic device; 19. Second telescopic device; 20. Gantry frame; 21. Motor; 22. Cutting machine; 23. Cutting blade; 24. Lifting seat; 25. Second lifting device; 26. Pressing roller; 27. Support; 28. Third lifting device; 29. Clamping plate; 30. Rubber pad. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings and specific embodiments to aid in understanding its content. Unless otherwise specified, the methods used in this invention are conventional methods; the raw materials and apparatus used, unless otherwise specified, are conventional commercially available products.
[0024] Please see Figure 1-5 An intelligent door and window processing equipment includes a support platform 1, clamping mechanisms on both sides of the top of the support platform 1, a cutting device above the support platform 1, a movable frame-shaped slide 2, a slide seat 3 slidably disposed within the slide 2 and slidable along its length, and a circular rotating seat 4; the top of the slide seat 3 has a through groove 5, and the rotating seat 4 is rotatably disposed within the through groove 5; the cutting device is disposed below the rotating seat 4 and can be raised and lowered; dust collection plates 6 are vertically disposed on both sides of the cutting device and fixedly connected to the bottom of the rotating seat 4, and the sandwiched space between the two dust collection plates 6 is respectively opened There is a suction chamber 7, and suction holes 8 connected to the suction chamber 7 are opened on both sides of the two suction plates 6 facing each other; a suction pump 9 and a collection box 10 are provided on the top of the rotating base 4; the input end of the suction pump 9 is connected to the collection box 10 through a pipe; a pull-out filter plate 11 and a collection groove 12 are provided on the lower side of the collection box 10 away from the pipe along the first direction; a suction pipe 13 connected to the collection box 10 and the suction chamber 7 is provided below the filter plate 11; a baffle 14 that is rotatably connected to the outer wall of the collection box 10 is provided on the side of the filter plate 11 and the collection groove 12 away from the collection box 10.
[0025] In this embodiment: the door or window to be cut is placed on top of the support platform 1, and clamped and fixed by the clamping mechanisms on both sides. The slide 3 inside the slide 2 can move to adjust the position of the cutting equipment, and the slide 2 can move back and forth, making it easy for the cutting equipment to move back and forth or left and right for cutting operations. During the cutting process, the dust pump 9 is started, and suction is generated in the dust suction plates 6 on both sides of the cutting equipment. The debris generated during the cutting process enters the collection box 10 through the dust suction holes 8 and the dust suction chamber 7. The filter plate 11 filters the incoming debris to prevent it from entering the dust pump 9. After cutting, the dust pump 9 is de-energized, and the debris filtered below the dust suction plate 6 loses suction and falls downwards. The collection groove 12 below the dust suction plate 6 easily collects the debris. The system collects fallen debris; when the dust pump 9 is started, fresh air enters from the front and rear sides of the two dust suction plates 6. The flow of fresh air helps to cool the cutting blade 23, preventing it from overheating and wearing, thus extending its service life and cutting accuracy. By rotating the baffle 14, the filter plate 11 and the collection groove 12 can be pulled out from the collection box 10, making it easy to clean them separately. After cleaning, the filter plate 11 and the collection groove 12 are inserted back into the collection box 10, and the baffle 14 is rotated to be perpendicular to the rotating seat 4, which helps to restrict the filter plate 11 and the collection groove 12. This enables the processing equipment to automatically collect cutting debris, preventing debris leakage from harming the health of workers and protecting their working environment.
[0026] Motor 21 is a worm gear self-locking motor, and the first lifting device 17, the first telescopic device 18, the second telescopic device 19, the second lifting device 25, and the third lifting device 28 are electric telescopic rods, pneumatic telescopic rods, or hydraulic telescopic rods.
[0027] This utility model aims to improve the stability of the slide block 3 moving within the slide frame 2. Guide grooves are provided on both sides along the length direction inside the slide frame 2, and guide blocks adapted to the guide grooves are provided on the slide block 3. The guide blocks are located in the guide grooves and are slidably connected to them.
[0028] As a technical optimization of this utility model, the top two sides of the support platform 1 are provided with sliding grooves 15 along the width direction, and sliding strips 16 are slidably arranged in the sliding grooves 15. The top of the sliding strips 16 is provided with two first lifting devices 17 that are fixedly connected to the bottom of the slide frame 2. The side of the support platform 1 is provided with a first telescopic device 18 that is fixedly connected to one of the sliding strips 16.
[0029] In this embodiment: the first lifting device 17 enables the height of the slide 2 to be adjustable, thereby facilitating the adjustment of the height of the dust collection plate 6 and making it easier to cut doors and windows of different thicknesses; and the first telescopic device 18 is activated to enable the slide 16 to move back and forth, making it easier for the cutting equipment to move back and forth for cutting operations.
[0030] As a technical optimization of this utility model, the inner wall of the slide 2 is provided with a second telescopic device 19 that is fixedly connected to the slide block 3.
[0031] In this embodiment: the second lifting device 25 is activated, so that the slide 3 can slide left and right, making it easy to adjust the position of the cutting equipment and to move the cutting equipment left and right to perform cutting operations.
[0032] As a technical optimization of this utility model, the top of the slide 3 is provided with a gantry 20, the top of the gantry 20 is provided with a motor 21, and the output shaft of the motor 21 passes through the gantry 20 and is located on the top of the rotary seat 4.
[0033] In this embodiment: the motor 21 is started, so that the rotating seat 4 can rotate. The rotation of the rotating seat 4 synchronously drives the cutting equipment and the dust suction plate 6 to rotate, making it easy to adjust the direction of the cutting blade 23 and to cut the doors and windows at different angles.
[0034] As a technical optimization of this utility model, the cutting equipment includes a cutting machine 22 and a rotatable cutting blade 23 mounted on the cutting machine 22; the cutting machine 22 is provided with a lifting seat 24, and the bottom of the rotating seat 4 is provided with a second lifting device 25 fixedly connected to the top of the lifting seat 24.
[0035] In this embodiment: the cutting machine 22 is started, the cutting blade 23 rotates, making it easy to cut doors and windows, and the second lifting device 25 is started to adjust the height of the cutting blade 23.
[0036] As a technical optimization of this utility model, rotatable pressing rollers 26 are provided on the opposite sides of the two dust suction plates 6.
[0037] In this embodiment: the pressing roller 26 presses on the top of the door and window being cut, which helps to fix the door and window when the cutting equipment cuts the door and window, thus improving the stability of the door and window cutting.
[0038] As a technical optimization of this utility model, the clamping mechanism includes a bracket 27, a third lifting device 28, and a clamping plate 29; the bracket 27 is located on the top of the support platform 1, the clamping plate 29 is located on the side of the bracket 27 facing the center of the support platform 1, the third lifting device 28 is located on the other side of the bracket 27, and the output end of the third lifting device 28 is located on the clamping plate 29.
[0039] In this embodiment: the second telescopic device 19 is activated to move the clamping plate 29, making it easier for the clamping plate 29 to clamp and fix doors and windows of different sizes.
[0040] As a technical optimization of this utility model, a rubber pad 30 is provided on the other side of the clamping plate 29.
[0041] In this embodiment: the rubber pad 30 has good elasticity and friction, which prevents shaking or sliding during the processing of doors and windows and improves the stability of clamping; and reduces the direct pressure of the clamping plate 29 on the doors and windows, thereby reducing the risk of the door and window surface being crushed.
[0042] Working principle and usage process of this utility model:
[0043] When the cutting equipment is in operation, the dust pump 9 is activated, generating suction within the dust suction plates 6 on both sides of the cutting equipment. Debris generated during the cutting process enters the collection box 10 through the dust suction holes 8 and the dust suction chamber 7. The filter plate 11 filters the incoming debris, preventing it from entering the dust pump 9. After cutting, the dust pump 9 is de-energized, and the debris filtered below the dust suction plates 6 loses suction and falls downwards. The collection groove 12 below the dust suction plates 6 easily collects the fallen debris. Furthermore, when the dust pump 9 is activated, fresh air enters from the front and rear sides of the two dust suction plates 6. This fresh air flow facilitates the cleaning of the cutting blade 23. Cooling prevents the cutting blade 23 from overheating and wearing, thus extending its service life and cutting accuracy. By rotating the baffle 14, the filter plate 11 and the collection groove 12 can be pulled out from the collection box 10, making it easy to clean the filter plate 11 and the collection groove 12 separately. After cleaning, the filter plate 11 and the collection groove 12 are inserted into the collection box 10, and the baffle 14 is rotated to be perpendicular to the rotating seat 4, which easily restricts the filter plate 11 and the collection groove 12. This enables the processing equipment to automatically collect cutting debris, preventing debris leakage from harming the health of workers and protecting their working environment.
[0044] In the description of this utility model, it should be understood that the terms "left", "right", "up", "down", "top", "bottom", "front", "back", "inner", "outer", "back", "middle", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0045] However, the above are merely specific embodiments of this utility model and should not be construed as limiting the scope of implementation of this utility model. Therefore, any substitution of equivalent components or equivalent changes and modifications made in accordance with the scope of protection of this utility model should still fall within the scope of the claims of this utility model.
Claims
1. An intelligent door and window processing equipment, comprising a support platform (1), clamping mechanisms disposed on both sides of the top of the support platform (1), and a cutting device disposed above the support platform (1), characterized in that: It also includes a movable, frame-shaped carriage (2), a sliding seat (3) that is slidably disposed within the carriage (2) and can slide along its length, and a circular rotating seat (4); the top of the sliding seat (3) has a through groove (5), and the rotating seat (4) is rotatably disposed within the through groove (5); the cutting device is disposed below the rotating seat (4) and can be raised and lowered; the two sides of the cutting device are vertically provided with dust-collecting plates (6) that are fixedly connected to the bottom of the rotating seat (4), and dust-collecting chambers (7) are respectively opened in the interlayer of the two dust-collecting plates (6), and the two opposite sides of the two dust-collecting plates (6) have openings that communicate with the dust-collecting chambers (7). The vacuum hole (8) is provided; the top of the rotating seat (4) is provided with a vacuum pump (9) and a collection box (10); the input end of the vacuum pump (9) is connected to the collection box (10) through a pipe; the collection box (10) is provided with a pull-out filter plate (11) and a collection groove (12) along the first direction on the side away from the pipe; the filter plate (11) is provided with a vacuum pipe (13) connected to the collection box (10) and the vacuum chamber (7) below it; the filter plate (11) and the collection groove (12) are both provided with a baffle (14) that is rotatably connected to the outer wall of the collection box (10) on the side away from the collection box (10).
2. The intelligent door and window processing equipment according to claim 1, characterized in that: The top of the support platform (1) has grooves (15) on both sides along the width direction. Slide strips (16) are slidably arranged in the grooves (15). The top of the slide strips (16) is provided with two first lifting devices (17) that are fixed to the bottom of the slide frame (2). The support platform (1) is provided with a first telescopic device (18) that is fixed to one of the slide strips (16) on one side.
3. The intelligent door and window processing equipment according to claim 1, characterized in that: The inner wall of the slide (2) is provided with a second telescopic device (19) that is fixedly connected to the slide (3).
4. The intelligent door and window processing equipment according to claim 1, characterized in that: The top of the slide (3) is provided with a gantry frame (20), and the top of the gantry frame (20) is provided with a motor (21). The output shaft of the motor (21) passes through the gantry frame (20) and is located on the top of the rotating seat (4).
5. The intelligent door and window processing equipment according to claim 1, characterized in that: The cutting equipment includes a cutting machine (22) and a rotatable cutting blade (23) mounted on the cutting machine (22); the cutting machine (22) is provided with a lifting seat (24), and the bottom of the rotating seat (4) is provided with a second lifting device (25) fixedly connected to the top of the lifting seat (24).
6. The intelligent door and window processing equipment according to claim 1, characterized in that: The two suction plates (6) are provided with rotatable pressing rollers (26) on opposite sides.
7. The intelligent door and window processing equipment according to claim 1, characterized in that: The clamping mechanism includes a bracket (27), a third lifting device (28), and a clamping plate (29); the bracket (27) is located on the top of the support platform (1), the clamping plate (29) is located on one side of the bracket (27) facing the center of the support platform (1), the third lifting device (28) is located on the other side of the bracket (27), and the output end of the third lifting device (28) is located on the clamping plate (29).
8. The intelligent door and window processing equipment according to claim 7, characterized in that: A rubber pad (30) is provided on the other side of the clamping plate (29).