Door and window frame machining and cutting equipment
The door and window frame processing and cutting equipment that integrates cutting and bevel cutting functions solves the problems of cumbersome operation and waste cleaning in the existing technology, and realizes efficient and precise profile cutting and cleaning processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-29
- Publication Date
- 2026-03-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the current door and window frame processing, the cutting operation is cumbersome and inefficient, requiring frequent adjustments to the profile position and fixation, and the waste generated during cutting needs to be cleaned up separately, affecting processing efficiency and environmental cleanliness.
Design a door and window frame processing and cutting equipment that integrates cutting and bevel cutting functions. It uses a tilting cutting mechanism and a fixing component to achieve integrated operation, and removes waste through an adsorption component and a guide plate to keep the profile surface clean.
It improves cutting efficiency, eliminates the need for profile position adjustment and fixing steps, ensures cutting accuracy and profile surface cleanliness, and improves the cleanliness of the working environment.
Smart Images

Figure CN121649467A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of cutting equipment, and more particularly to a door and window frame processing and cutting equipment. Background Technology
[0002] Aluminum alloy doors and windows, with their lightweight yet high strength, excellent corrosion resistance, and outstanding sealing performance, hold a popular position in the market, especially suitable for long-term outdoor applications. Among them, thermally broken aluminum profiles, with their significantly improved heat insulation and sound insulation, have become a favorite choice for many consumers.
[0003] Cutting door and window frames is a crucial step in the door and window manufacturing process, directly affecting dimensional accuracy, installation results, and performance. Precise frame cutting is a key step in ensuring accurate dimensions, smooth installation, and superior performance. Currently, door and window frame processing typically involves firmly clamping the profiles onto a cutting table, using an electric saw or high-efficiency saw to cut straight lines along pre-marked lines, and then quickly adjusting the profile angle to perform a 45-degree bevel cut on the end face to optimize assembly.
[0004] However, this method requires frequent adjustments to the profile position and fixing method, resulting in cumbersome operation and low efficiency. Furthermore, the waste generated during cutting easily adheres to the profile surface, requiring additional cleaning steps, further reducing the overall processing efficiency of the frame. Summary of the Invention
[0005] This application aims to at least partially address one of the technical problems in the related art.
[0006] Therefore, one objective of this application is to provide a door and window frame processing and cutting device that integrates cutting and beveling operations, avoiding the tedious steps of frequently adjusting the profile position and re-fixing, thereby improving cutting efficiency. Simultaneously, it can immediately remove waste generated during the cutting process, maintaining the cleanliness of the profile surface and further improving the processing efficiency of door and window frames.
[0007] To achieve the above objectives, the first aspect of this application provides a door and window frame processing and cutting device, including a cutting table, a support plate, two cutting mechanisms, two partition plates, two first fixing components, two second fixing components, two transmission components, and multiple adsorption components. The upper surface of the cutting table is provided with a first groove, within which multiple conveying rollers are rotatably connected. The support plate is mounted above the cutting table via a bracket. The lower surface of the support plate is provided with a sliding table module, and a mounting seat is provided on the sliding table module. The two cutting mechanisms are offset relative to each other on the mounting seat, and the cutting mechanisms are inclined. The two partition plates are oppositely arranged on the upper surface of the cutting table, and each partition plate is provided with multiple partition grooves, each partition groove containing... A profile is placed on the plate; two first fixing components are respectively disposed above the corresponding partition plates, and the first fixing components are connected to the support plate; two second fixing components are respectively connected to the corresponding partition plates; two transmission components are respectively disposed on the corresponding first fixing components, and the two transmission components are respectively connected to the corresponding second fixing components; a second groove is provided on the cutting table, the second groove is disposed between the two partition plates, and a guide plate is provided in the second groove; a plurality of adsorption components are symmetrically installed on the lower surface of the support plate; a first adsorption plate is provided on the inner wall of the second groove, and a second adsorption plate is provided on each of the two first fixing components, and the first adsorption plate and the second adsorption plate are respectively connected to the adsorption components.
[0008] The door and window frame processing and cutting equipment of this application embodiment realizes integrated operation of cutting and bevel cutting, avoiding the tedious steps of frequently adjusting the profile position and re-fixing, thereby improving cutting efficiency. At the same time, it can remove the waste generated during the cutting process in time, keeping the profile surface clean, further improving the processing efficiency of door and window frames, and also greatly improving the cleanliness of the working environment.
[0009] In addition, the door and window frame processing and cutting equipment proposed in this application may also have the following additional technical features: In one embodiment of this application, the first fixing component includes two first driving members, a connecting plate, and a plurality of pressing members, wherein the two first driving members are both mounted on the lower surface of the support plate; the connecting plate is disposed at the output end of the first driving members, and a second adsorption plate is mounted on the side wall of the connecting plate; the plurality of pressing members are evenly distributed on the lower surface of the connecting plate, and the pressing members are correspondingly disposed with the partition groove.
[0010] In one embodiment of this application, the second fixing component includes a ball screw, multiple sets of nut sliders, and multiple sets of fixing plates. The partition plate has a third groove, the ball screw is rotatably disposed within the third groove, and one end of the ball screw extends to the outside of the third groove. The multiple sets of nut sliders are all sleeved on the ball screw, and the nut sliders are slidably connected to the third groove. The multiple sets of fixing plates are respectively connected to the corresponding sets of nut sliders, and each set of fixing plates is disposed opposite to the corresponding partition groove.
[0011] In one embodiment of this application, the transmission assembly includes a first toothed plate and a first gear, wherein the first toothed plate is disposed at the end of the connecting plate and is slidably connected to the bracket; the first gear is disposed on the ball screw and is meshed with the first toothed plate.
[0012] In one embodiment of this application, the adsorption assembly includes a cylinder, a piston, a piston rod, a spring, and a push-pull plate. The cylinder is mounted on the lower surface of the support plate and is connected to the first adsorption plate and the second adsorption plate via conduits. The piston is slidably disposed inside the cylinder. The two ends of the piston rod are connected to the piston and the push-pull plate, respectively. The spring is disposed inside the cylinder, and the two ends of the spring are connected to the inner wall of the cylinder and the piston, respectively.
[0013] In one embodiment of this application, the guide plate has an inverted "V" shape and a collection groove is provided below the guide plate.
[0014] In one embodiment of this application, the door and window frame processing and cutting equipment further includes a limiting component, which includes a limiting plate, a flip shaft, a second driving member, a second toothed plate, and a second gear. The flip shaft is rotatably disposed above the cutting table; the limiting plate is disposed on the flip shaft; the upper surface of the cutting table has two sliding grooves, in which sliding plates are slidably connected, and the upper surface of the sliding plates has a support seat. The flip shaft is rotatably connected to the support seat; the second driving member is mounted on one of the sliding plates; the second toothed plate is disposed at the output end of the second driving member; and the second gear is disposed on the flip shaft, and the second gear meshes with the second toothed plate.
[0015] Compared with the prior art, the present invention has at least the following beneficial effects: (1) By using two inclined cutting mechanisms, the integrated operation of profile cutting and bevel cutting can be realized, avoiding the tedious steps of frequently adjusting the profile position and re-fixing, thereby improving the cutting efficiency. (2) During the cutting process, the waste generated during the cutting process can be removed in time through the cooperation between the adsorption component, the first adsorption plate and the second adsorption plate, keeping the surface of the profile clean and further improving the processing efficiency of the door and window frame.
[0016] (3) The first fixing component can fix the profile in the vertical direction and the second fixing component can fix the profile in the horizontal direction, thereby improving the fixing effect of the profile and ensuring the cutting accuracy; (4) The inverted “V” shaped guide plate can separate the triangular block waste and scrap, which is convenient for subsequent recycling.
[0017] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0018] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein: Figure 1 This is a schematic diagram of the structure of a door and window frame processing and cutting device according to an embodiment of this application. Figure 1 ; Figure 2 This is a cross-sectional view of a door and window frame processing and cutting device according to an embodiment of this application; Figure 3 This is a schematic diagram of the structure of the second fixing component in a door and window frame processing and cutting device according to an embodiment of this application; Figure 4 This is a schematic diagram of the structure of a door and window frame processing and cutting device according to an embodiment of this application. Figure 2 ; Figure 5 For this application Figure 4 Enlarged structural diagram of area A in the middle; Figure 6 This is a schematic diagram of the adsorption component in a door and window frame processing and cutting device according to an embodiment of this application.
[0019] As shown in the figure: 1. Cutting table; 2. Support plate; 3. Cutting mechanism; 4. Divider plate; 5. First fixing component; 6. Second fixing component; 7. Transmission component; 8. Adsorption component; 9. Limiting component; 10. First groove; 11. Conveying roller; 12. Bracket; 13. Slide module; 14. Mounting base; 15. Second groove; 16. Guide plate; 17. First adsorption plate; 18. Second adsorption plate; 19. Conduit; 20. Collection tank; 21. Slide groove; 22. 1. Slide plate; 23. Support base; 40. Divider groove; 41. Third groove; 50. First driving component; 51. Connecting plate; 52. Pressing component; 60. Ball screw; 61. Nut slider; 62. Fixing plate; 70. First toothed plate; 71. First gear; 80. Cylinder body; 81. Piston; 82. Piston rod; 83. Spring; 84. Push-pull plate; 90. Limiting plate; 91. Flipping shaft; 92. Second driving component; 93. Second toothed plate; 94. Second gear. Detailed Implementation
[0020] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.
[0021] The door and window frame processing and cutting equipment of this application embodiment will be described below with reference to the accompanying drawings.
[0022] like Figures 1 to 6 As shown, the door and window frame processing and cutting equipment of this application embodiment may include a cutting table 1, a support plate 2, two cutting mechanisms 3, two partition plates 4, two first fixing components 5, two second fixing components 6, two transmission components 7, and multiple adsorption components 8.
[0023] The upper surface of the cutting table 1 is provided with a first groove 10, and multiple conveying rollers 11 are rotatably connected in the first groove 10. The support plate 2 is installed above the cutting table 1 via a bracket 12.
[0024] It should be noted that the conveying roller 11 described in this embodiment is connected to an external drive mechanism. The drive mechanism can drive the conveying roller 11 to rotate in the same direction, thereby driving multiple profiles to move forward.
[0025] Furthermore, the bracket 12 described in the above embodiment is an L-shaped plate, and the bracket 12 supports the support plate 2 so that the support plate 2 can be suspended above the cutting table 1.
[0026] The lower surface of the support plate 2 is provided with a slide module 13, and a mounting base 14 is provided on the slide of the slide module 13. Two cutting mechanisms 3 are arranged on the mounting base 14 in a staggered manner, and the cutting mechanisms 3 are inclined.
[0027] It should be noted that the sliding table module 13 described in this embodiment is set to move in a vertical direction relative to the profile. The sliding table module 13 can drive the mounting base 14 to move back and forth, thereby driving the two cutting mechanisms 3 to move.
[0028] Furthermore, the cutting blades of the two cutting mechanisms 3 are inclined at 45 degrees, the two cutting mechanisms 3 are staggered, and the two cutting blades do not contact each other, so that there is no interference. When the slide module 13 drives the two cutting mechanisms 3 to move, it can cut the profile and form a 45-degree bevel at the end of the profile.
[0029] Two partition plates 4 are oppositely arranged on the upper surface of the cutting table 1, and the partition plates 4 are provided with multiple partition grooves 40. Each partition groove 40 contains a profile. Two first fixing components 5 are respectively arranged above the corresponding partition plates 4, and the first fixing components 5 are connected to the support plate 2. The first fixing components 5 are used to fix the profile in a first direction. Two second fixing components 6 are respectively connected to the corresponding partition plates 4, and the second fixing components 6 are used to fix the profile in a second direction. Two transmission components 7 are respectively arranged on the corresponding first fixing components 5, and the two transmission components 7 are respectively connected to the corresponding second fixing components 6.
[0030] It should be noted that the two partition plates 4 described in this embodiment are respectively arranged on the outside of the two cutting mechanisms 3. The two partition plates 4 can separate multiple profiles, so that there is a certain gap between adjacent profiles, avoiding mutual interference during cutting, thereby improving the cutting accuracy.
[0031] Furthermore, the first fixing component 5 can fix the profile in the vertical direction, and the second fixing component 6 can fix the profile in the horizontal direction, thereby improving the fixing effect of the profile.
[0032] In the embodiments of this application, the transmission component 7 is connected to the first fixing component 5 and the second fixing component 6 respectively. When the first fixing component 5 is started, it can drive the second fixing component 6 to start with the cooperation of the transmission component 7, so that the second fixing component 6 and the first fixing component 5 start or stop synchronously to quickly fix the profile.
[0033] The cutting table 1 is provided with a second groove 15, which is located between two partition plates 4, and a guide plate 16 is provided in the second groove 15.
[0034] It should be noted that the guide plate 16 described in this embodiment is located below the cutting mechanism 3. When the profile is cut, the cut triangular waste will fall on the guide plate 16 and slide down from the second groove 15 along the slope of the guide plate 16, so that it will not accumulate in the second groove 15.
[0035] Furthermore, to facilitate the unified collection of triangular block waste, waste troughs can be installed on both sides of the guide plate 16, and the triangular block waste will slide directly from the guide plate 16 into the waste troughs.
[0036] Multiple adsorption components 8 are symmetrically installed on the lower surface of the support plate 2. A first adsorption plate 17 is provided on the inner wall of the second groove 15. A second adsorption plate 18 is provided on each of the two first fixing components 5. The first adsorption plate 17 and the second adsorption plate 18 are respectively connected to the adsorption components 8.
[0037] It should be noted that the first adsorption plate 17 and the second adsorption plate 18 described in this embodiment have the same structure, and the first adsorption plate 17 and the second adsorption plate 18 are hollow cavity structures. The adsorption surfaces of the first adsorption plate 17 and the second adsorption plate 18 are inclined surfaces, and an inlet is provided on the adsorption surface. The inlet is connected to the cavity. The adsorption component 8 can generate suction on the first adsorption plate 17 and the second adsorption plate 18 to collect the waste on the profile.
[0038] Furthermore, the first adsorption plate 17 is installed on the inner wall of the second groove. The first adsorption plate 17 can adsorb the waste on the lower surface of the profile, and the second adsorption plate 18 can adsorb the waste on the upper surface of the profile, thereby improving the cleanliness of the profile after cutting.
[0039] In one embodiment of this application, such as Figure 2 As shown, the first fixing component 5 includes two first driving members 50, a connecting plate 51 and a plurality of pressing members 52. The two first driving members 50 are both installed on the lower surface of the support plate 2. The connecting plate 51 is disposed at the output end of the first driving member 50. A second adsorption plate 18 is installed on the side wall of the connecting plate 51. The plurality of pressing members 52 are evenly distributed on the lower surface of the connecting plate 51, and the pressing members 52 are correspondingly disposed with the partition groove 40.
[0040] It should be noted that the first driving member 50 described in this embodiment can be an electric push rod or a pneumatic rod, and the pressing member 52 has a certain elasticity. When the first driving member 50 drives the connecting plate 51 to move downward, multiple pressing members 52 can press multiple profiles at the same time to fix the profiles in the vertical direction.
[0041] Furthermore, such as Figure 3As shown, the second fixing component 6 includes a ball screw 60, multiple sets of nut sliders 61, and multiple sets of fixing plates 62. The partition plate 4 is provided with a third groove 41. The ball screw 60 is rotatably disposed in the third groove 41, and one end of the ball screw 60 extends to the outside of the third groove 41. The multiple sets of nut sliders 61 are all sleeved on the ball screw 60, and the nut sliders 61 are slidably connected to the third groove 41. The multiple sets of fixing plates 62 are respectively connected to the corresponding sets of nut sliders 61. Each set of fixing plates 62 is disposed opposite to the corresponding partition groove 40.
[0042] It should be noted that the ball screw 60 described in this embodiment is provided with multiple sets of threads, each set including two thread segments, and the two thread segments are in opposite directions. Multiple sets of nut sliders 61 are respectively arranged on the threads of the corresponding sets. When the ball screw 60 rotates, the two nut sliders 61 in each set move towards or away from each other to fix or release the profile.
[0043] Furthermore, such as Figure 2 As shown, the transmission assembly 7 includes a first toothed plate 70 and a first gear 71. The first toothed plate 70 is disposed at the end of the connecting plate 51 and is slidably connected to the bracket 12. The first gear 71 is disposed on the ball screw 60 and is meshed with the first toothed plate 70.
[0044] It should be noted that the bracket 12 is provided with a limiting groove (not shown in the figure), and a slider is slidably connected in the limiting groove. The first toothed plate 70 is connected to the slider. Through the cooperation of the limiting groove and the slider, the first toothed plate 70 moves more stably up and down.
[0045] In the embodiments of this application, when the connecting plate 51 moves downward, the ball screw 60 can be driven to rotate through the cooperation of the first toothed plate 70 and the first gear 71. With the cooperation of the nut slider 61, the two fixing plates 62 located in the same partition groove 40 are brought closer to each other, thereby fixing the profile in the horizontal direction.
[0046] In one embodiment of this application, such as Figure 6 As shown, the adsorption assembly 8 includes a cylinder 80, a piston 81, a piston rod 82, a spring 83, and a push-pull plate 84. The cylinder 80 is mounted on the lower surface of the support plate 2 and is connected to the first adsorption plate 17 and the second adsorption plate 18 via a conduit 19. The piston 81 is slidably disposed inside the cylinder 80. The two ends of the piston rod 82 are connected to the piston 81 and the push-pull plate 84, respectively. The spring 83 is disposed inside the cylinder 80 and its two ends are connected to the inner wall of the cylinder 80 and the piston 81, respectively.
[0047] It should be noted that the cylinder 80 described in this embodiment is provided with an exhaust pipe, and the exhaust pipe is provided with a one-way valve. The one-way valve allows the gas inside the cylinder 80 to be discharged from the exhaust pipe, but does not allow external gas to enter the interior of the cylinder 80 from the exhaust pipe.
[0048] Furthermore, the push-pull plate 84 is located on both sides of the mounting base 14. The slide module 13 drives the mounting base 14 to move. When the mounting base 14 moves to the position of the push-pull plate 84, because one end of the push-pull plate 84 extends to the position of the mounting base 14, the mounting base 14 pushes the push-pull plate 84 to move. Through the cooperation of the piston rod 82, the piston 81 is driven to move towards the opening of the cylinder 80. The spring 83 is stretched. At this time, the first adsorption plate 17 and the second adsorption plate 18 are adsorbed through the conduit 19 to uniformly adsorb the waste.
[0049] In one embodiment of this application, such as Figure 2 As shown, the guide plate 16 has an inverted "V" shaped structure, and a collection groove 20 is provided below the guide plate 16.
[0050] It should be noted that the guide plate 16 described in this embodiment is a "V" shaped plate with a high middle and low ends, and multiple through holes are provided on the upper part of the guide plate 16. The guide plate 16 can separate triangular waste and waste chips, and the waste chips enter the collection tank 20 through the through holes on the guide plate 16.
[0051] In one embodiment of this application, such as Figure 5 As shown, the door and window frame processing and cutting equipment of this embodiment also includes a limiting component 9. The limiting component 9 includes a limiting plate 90, a flip shaft 91, a second driving member 92, a second toothed plate 93, and a second gear 94. The flip shaft 91 is rotatably disposed above the cutting table 1, the limiting plate 90 is disposed on the flip shaft 91, the upper surface of the cutting table 1 is provided with two sliding grooves 21, a sliding plate 22 is slidably connected in the sliding grooves 21, the upper surface of the sliding plate 22 is provided with a support seat 23, the flip shaft 91 is rotatably connected to the support seat 23, the second driving member 92 is mounted on one of the sliding plates 22, the second toothed plate 93 is disposed at the output end of the second driving member 92, and the second gear 94 is disposed on the flip shaft 91 and meshes with the second toothed plate 93.
[0052] It should be noted that the second driving component 92 described in this embodiment can be an electric push rod or a pneumatic rod. The second driving component 92 can drive the second toothed plate 93 to move, and through the cooperation of the second gear 94, drive the flipping shaft 91 and the limiting plate 90 to rotate 90 degrees, so as to facilitate the cutting of the profile.
[0053] Furthermore, the position of the limiting plate 90 is adjustable, and the limiting plate 90 can limit the length of the cut profile to ensure that the cutting length of the profile remains consistent.
[0054] Understandably, to facilitate material unloading, one side wall of the cutting table 1 can be set as a slope, and the cut profile can slide directly down the slope.
[0055] Specifically, during the profile cutting process, the relevant personnel first need to determine the position of the limiting plate 90 based on the length of the door and window frame, ensuring that the limiting plate 90 remains upright. Then, the personnel place the profile to be cut on the conveying roller 11, and position multiple profiles in their respective dividing grooves 40. When one end of the profile is in contact with the limiting plate 90, the conveying roller 11 stops. Subsequently, the personnel control the first driving component 50 to start, which drives the connecting plate 51 and the pressing component 52 downwards. Simultaneously, with the cooperation of the transmission assembly 7, the ball screw 60 rotates, causing the two fixing plates 62 located in the same dividing groove 40 to move towards each other. Ultimately, the two fixing plates 62 fix the profile horizontally, and the pressing component 52 presses against the upper surface of the profile to fix it vertically.
[0056] Finally, the slide module 13 can be started. The slide module 13 drives the mounting base 14 and the cutting mechanism 3 to move. The high-speed rotating cutting blade cuts the profile into a 45-degree bevel. At the same time, during the movement of the mounting base 14, the piston 81 can also be driven to move outward, thereby evacuating the first adsorption plate 17 and the second adsorption plate 18, and then adsorbing the waste on the profile. The cut triangular waste falls on the guide plate 16 and slides into the waste trough. The waste chips enter the collection trough 20, realizing the separation of waste and waste chips.
[0057] After cutting is completed, the relevant personnel control the second drive component 92 to start. With the cooperation of the second toothed plate 93 and the second gear 94, the flipping shaft 91 and the limiting plate 90 are flipped 90 degrees. The limiting plate 90 is in a water state, and the height of the horizontally placed limiting plate 90 is lower than the minimum height of the profile. Then the conveying roller 11 pushes the profile to move and pushes the cut profile out of the cutting table 1, thus facilitating material unloading.
[0058] In summary, the door and window frame processing and cutting equipment of this application embodiment realizes integrated operation of cutting and bevel cutting, avoiding the tedious steps of frequently adjusting the profile position and re-fixing, thereby improving cutting efficiency. At the same time, it can remove the waste generated during the cutting process in real time, keeping the profile surface clean, further improving the processing efficiency of door and window frames, and also greatly improving the cleanliness of the working environment.
[0059] In the description of this specification, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0060] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
Claims
1. A door and window frame processing and cutting device, characterized in that, It includes a cutting table, a support plate, two cutting mechanisms, two partition plates, two first fixing components, two second fixing components, two transmission components, and multiple adsorption components, among which, The upper surface of the cutting table is provided with a first groove, and multiple conveying rollers are rotatably connected in the first groove; The support plate is mounted above the cutting table via a bracket; The lower surface of the support plate is provided with a slide module, and the slide module is provided with a mounting base. The two cutting mechanisms are arranged relatively staggered on the mounting base, and the cutting mechanisms are inclined. Two partition plates are disposed opposite each other on the upper surface of the cutting table, and the partition plates are provided with multiple partition grooves, each of which contains a profile. Two of the first fixing components are respectively disposed above the corresponding partition plates, and the first fixing components are connected to the support plate; The two second fixing components are respectively connected to the corresponding partition plates; The two transmission components are respectively mounted on the corresponding first fixed component, and the two transmission components are respectively connected to the corresponding second fixed component; The cutting table is provided with a second groove, which is disposed between the two partition plates, and a guide plate is provided in the second groove; Multiple adsorption components are symmetrically mounted on the lower surface of the support plate; The inner wall of the second groove is provided with a first adsorption plate, and each of the two first fixing components is provided with a second adsorption plate. The first adsorption plate and the second adsorption plate are respectively connected to the adsorption component.
2. The door and window frame processing and cutting equipment according to claim 1, characterized in that, The first fixing component includes two first driving members, a connecting plate, and multiple pressing members, wherein, Both of the first driving components are mounted on the lower surface of the support plate; The connecting plate is disposed at the output end of the first driving component, and the second adsorption plate is installed on the side wall of the connecting plate; Multiple pressing elements are evenly distributed on the lower surface of the connecting plate, and the pressing elements are arranged corresponding to the partition grooves.
3. The door and window frame processing and cutting equipment according to claim 2, characterized in that, The second fixing assembly includes a ball screw, multiple sets of nut sliders, and multiple sets of fixing plates, wherein, The partition plate is provided with a third groove, the ball screw is rotatably disposed in the third groove, and one end of the ball screw extends to the outside of the third groove; Multiple sets of the aforementioned nut sliders are all sleeved on the ball screw, and the nut sliders are slidably connected to the third groove; The multiple sets of fixing plates are respectively connected to the corresponding sets of nut sliders, and each set of fixing plates is arranged opposite to each other in the corresponding partition groove.
4. The door and window frame processing and cutting equipment according to claim 3, characterized in that, The transmission assembly includes a first gear plate and a first gear, wherein... The first toothed plate is disposed at the end of the connecting plate, and the first toothed plate is slidably connected to the bracket; The first gear is mounted on the ball screw and meshes with the first gear plate.
5. The door and window frame processing and cutting equipment according to claim 1, characterized in that, The adsorption assembly includes a cylinder, a piston, a piston rod, a spring, and a push-pull plate, wherein... The cylinder is mounted on the lower surface of the support plate, and the cylinder is connected to the first adsorption plate and the second adsorption plate respectively through conduits; The piston is slidably disposed inside the cylinder; The two ends of the piston rod are respectively connected to the piston and the push-pull plate; The spring is disposed inside the cylinder, and its two ends are connected to the inner wall of the cylinder and the piston, respectively.
6. The door and window frame processing and cutting equipment according to claim 1, characterized in that, The guide plate has an inverted "V" shape and a collection groove is provided below the guide plate.
7. The door and window frame processing and cutting equipment according to claim 1, characterized in that, It also includes a limiting assembly, which comprises a limiting plate, a flipping shaft, a second driving member, a second toothed plate, and a second gear, wherein... The flipping shaft is rotatably positioned above the cutting table; The limiting plate is disposed on the flipping shaft; The upper surface of the cutting table is provided with two sliding grooves, and a sliding plate is slidably connected in the sliding grooves. The upper surface of the sliding plate is provided with a support seat, and the flipping shaft is rotatably connected to the support seat. The second drive unit is mounted on one of the skateboards; The second toothed plate is disposed at the output end of the second driving member; The second gear is mounted on the flipping shaft and meshes with the second gear plate.