Correcting device for mounting plastic-steel doors and windows
By designing an automated correction device for the installation of plastic-steel doors and windows, the problems of low precision and poor adaptability in traditional installation methods are solved, efficient and accurate door and window installation is achieved, and installation quality and performance are ensured.
Patent Information
- Application Number
- CN202510867703.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2025-09-12
AI Technical Summary
During the installation of traditional plastic-steel doors and windows, there is a lack of high-precision detection equipment and adjustment mechanisms, which leads to large installation errors and low efficiency. It is difficult to adapt to the needs of doors and windows of different sizes and shapes, affecting the installation quality and performance.
A correction device including sliding, adjusting, clamping, fixing and positioning mechanisms was designed. Electric slide rails, laser positioning pens and controllers were used to achieve automated and precise horizontal positioning and correction. Combined with the precise adjustment of telescopic rods and clamping plates, it can adapt to doors and windows of different sizes and materials.
It improves the installation accuracy and efficiency of plastic-steel doors and windows, reduces installation errors, ensures sealing and performance, and enhances construction flexibility and adaptability.
Smart Images

Figure CN120625833A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building construction, in particular to a correction device used for installing plastic-steel doors and windows. Background Art
[0002] In the construction industry, plastic-steel doors and windows are increasingly being used due to their excellent properties, such as thermal insulation, sound insulation, aesthetics, and durability. However, during their installation, there are still a series of problems that need to be solved.
[0003] On the one hand, the installation and correction of traditional plastic-steel doors and windows mainly rely on the experience and simple tools of construction workers, such as using a spirit level and plumb line to make rough measurements and then make manual adjustments. In addition, manual measurement and adjustment make it difficult to accurately control the horizontality, verticality and flatness of doors and windows, resulting in uneven gaps and poor sealing after installation. This not only affects the aesthetics of the doors and windows, but also reduces their waterproof, windproof and soundproof performance. In severe cases, it may even affect the normal use of the doors and windows.
[0004] On the other hand, with the diversification of architectural designs, the sizes and specifications of plastic-steel doors and windows are becoming increasingly diverse. Traditional straightening methods lack effective adjustment mechanisms, making it difficult to quickly and accurately adapt to the correction needs of doors and windows of varying sizes. For doors and windows of unusual sizes or shapes, construction workers often need to spend more time adjusting them. Ineffective straightening can even affect the installation quality, reducing construction flexibility and adaptability.
[0005] In addition, in the existing installation process, the detection of door and window positions and angles mostly relies on simple tools, and there is a lack of high-precision detection equipment and systems. This makes it difficult for construction workers to accurately judge the degree of deviation of doors and windows, and unable to provide accurate data support for correction work, making it difficult to achieve precise correction, which further affects the installation quality and performance of doors and windows.
[0006] In view of this, an object of the present invention is to provide a correction device for installing plastic-steel doors and windows to solve the deficiencies in the prior art. Summary of the Invention
[0007] In view of the deficiencies in the prior art, the present invention provides a correction device for installing plastic-steel doors and windows, which solves the problem that traditional devices lack an effective adjustment mechanism.
[0008] To achieve the above objectives, the present invention is implemented through the following technical solutions: A correction device for installing plastic-steel doors and windows, comprising a base, a sliding mechanism fixedly installed on the upper part of the base, which is used to slide the device to change its position, an adjustment mechanism fixedly installed on the upper part of the sliding mechanism, the adjustment mechanism including an adjustment component, a lifting component and an auxiliary component, which is used to slide and adjust according to the size of the doors and windows, a clamping mechanism fixedly installed on one side of the adjustment mechanism, which is used to clamp and fix the frame of the doors and windows, a fixing mechanism is provided on the upper part of the sliding mechanism, the fixing mechanism including a driving component and a fixing component, which is used to fix the bottom of the doors and windows, and a positioning mechanism is provided on one side of the sliding mechanism for positioning and detecting the horizontal direction of the doors and windows.
[0009] Preferably, the sliding mechanism includes fixed blocks fixedly mounted on both sides of the upper portion of the base, one side of each of the two fixed blocks is provided with a slide groove 1, and a bottom plate is slidably connected between the two fixed blocks via the slide groove 1.
[0010] Preferably, the adjustment component in the adjustment mechanism includes a base fixedly mounted on the upper portion of the bottom plate, a slide groove 2 is provided on the upper portion of the base, U-shaped frames are fixedly mounted on both sides of the outside of the base, a telescopic rod 1 is fixedly mounted on the inner side of the two U-shaped frames, the output ends of the two telescopic rods 1 are fixedly connected to a slider 1, and the two sliders 1 are slidably connected to the inside of the base.
[0011] Preferably, the lifting assembly includes a motor 1 fixedly mounted on the upper portion of two sliders 1, the output ends of the two motors 1 are fixedly connected to threaded rods, and the outer sides of the two threaded rods are threadedly connected to sliders 2.
[0012] Preferably, the auxiliary component includes top plates each provided at the top end of the two threaded rods, the two top plates are respectively threadedly connected to the top end of the two threaded rods, and bubble tubes are vertically provided at the bottom of the two top plates.
[0013] Preferably, the clamping mechanism includes a U-shaped plate fixedly installed on one side of two sliders, and telescopic rods are fixedly installed on both sides of the inside of the U-shaped plate. The output ends of the two telescopic rods are fixedly connected to the clamping plates, the front ends of the two clamping plates are provided with rubber pads, and the rear ends of the two clamping plates are fixedly installed with pressure sensors.
[0014] Preferably, the driving component in the fixing mechanism includes an electric slide rail 1 fixedly mounted on the upper part of the base plate, a support plate fixedly mounted on the upper part of the moving seat of the electric slide rail 1, fixed plates fixedly mounted on both sides of the upper part of the support plate, a motor 2 fixedly mounted on the inner side of one of the fixed plates, a rotating rod fixedly connected to the output end of the motor 2, and a rotating rod rotatably connected to one end of the rotating rod on the inner side of the other fixed plate.
[0015] Preferably, the fixing assembly includes a connecting plate fixedly mounted on one side of the rotating rod, one end of the connecting plate is fixedly connected to a circular plate, and a non-slip pad is provided at the front end of the circular plate.
[0016] Preferably, the positioning mechanism includes an electric slide rail 2 fixedly mounted on one side of the base plate, a telescopic rod 3 fixedly mounted on the upper part of the moving seat of the electric slide rail 2, an output end of the telescopic rod 3 fixedly connected to a support seat, a fixed seat fixedly mounted on the upper part of the support seat, and a laser positioning pen is provided on one side of the fixed seat.
[0017] Preferably, a controller is provided at one end outside the base plate.
[0018] The present invention provides a correction device for installing plastic-steel doors and windows. It has the following beneficial effects: 1. The present invention drives the telescopic rod 3, the support seat, the fixed seat and the laser positioning pen to the appropriate position through the electric slide rail 2, and at the same time adjusts the height of the laser positioning pen and emits a laser beam. If there is a horizontal deviation in the doors and windows, the reflection position of the laser beam changes, and the positioning mechanism transmits the deviation data to the controller. The controller controls the adjustment of the sliding mechanism, the adjustment mechanism and other components accordingly. The whole process realizes automated horizontal positioning detection and correction adjustment. Compared with traditional manual detection and correction, the detection accuracy and correction efficiency are improved, and the problems of large errors and low efficiency of manual correction in the traditional installation process are effectively solved, providing a strong guarantee for the precise installation of plastic-steel doors and windows.
[0019] 2. The present invention pushes the clamping plate to move by the telescopic rods on both sides of the U-shaped plate, and the rubber pad at the front end of the clamping plate increases the friction to prevent damage to the door and window frames. The pressure sensor at the rear end monitors the clamping force in real time and transmits the data to the controller. When the pressure reaches an appropriate value, the telescopic rod stops extending, which not only ensures the firm clamping of the door and window frames and avoids the shaking of doors and windows during the correction process to affect the correction accuracy, but also can accurately control the clamping force according to doors and windows of different materials and thicknesses, thereby improving the accuracy of correction, ensuring the quality of plastic steel doors and windows after installation, and reducing problems such as poor sealing, air leakage and water leakage caused by improper installation.
[0020] 3. The present invention cooperates with the fixed block and slide groove of the sliding mechanism to make the bottom plate slide flexibly, and can quickly adjust the overall position of the device to align with the plastic-steel doors and windows. The adjustment component can use the telescopic rod to push the slider to slide in the slide groove of the base to adapt to different door and window widths; the lifting component drives the threaded rod to rotate through the motor to accurately adjust the height of the slider to adapt to the height of the door and window frame, so that the device can quickly adapt to the correction needs of plastic-steel doors and windows of different sizes, improve the versatility of the correction device, reduce the adjustment time caused by the difference in door and window sizes, and effectively improve construction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the left front side of the present invention; Figure 2 It is a schematic diagram of the right front side of the present invention; Figure 3 It is a schematic diagram of the sliding mechanism of the present invention; Figure 4 is a schematic diagram of the adjustment component of the present invention; Figure 5 A schematic diagram of the lifting assembly and auxiliary assembly of the present invention; Figure 6 is a schematic diagram of the clamping mechanism of the present invention; Figure 7 It is a schematic diagram of the fixing mechanism of the present invention; Figure 8 Schematic diagram of the positioning mechanism of the present invention.
[0022] Among them, 1. Base; 2. Sliding mechanism; 201. Fixed block; 202. Slide 1; 203. Bottom plate; 3. Adjustment mechanism; 301. Base; 302. Slide 2; 303. U-shaped frame; 304. Telescopic rod 1; 305. Slider 1; 306. Motor 1; 307. Threaded rod; 308. Slider 2; 309. Top plate; 310. Bubble tube; 4. Clamping mechanism; 401. U-shaped plate; 402. Telescopic rod 2; 403 , clamping plate; 404, rubber pad; 405, pressure sensor; 5. fixing mechanism; 501, electric slide rail 1; 502, support plate; 503, fixing plate; 504, motor 2; 505, rotating rod; 506, connecting plate; 507, circular plate; 508, anti-slip pad; 6. positioning mechanism; 601, electric slide rail 2; 602, telescopic rod 3; 603, support seat; 604, fixing seat; 605, laser positioning pen; 7. controller. DETAILED DESCRIPTION
[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] Please see the attached Figure 1 -Attached Figure 8An embodiment of the present invention provides a correction device for installing plastic-steel doors and windows, comprising a base 1, a sliding mechanism 2 fixedly mounted on the upper portion of the base 1, which is used to slide the device to change its position, an adjustment mechanism 3 fixedly mounted on the upper portion of the sliding mechanism 2, the adjustment mechanism 3 including an adjustment component, a lifting component and an auxiliary component, which is used to slide and adjust according to the size of the door and window, a clamping mechanism 4 fixedly mounted on one side of the adjustment mechanism 3, which is used to clamp and fix the frame of the door and window, a fixing mechanism 5 is provided on the upper portion of the sliding mechanism 2, the fixing mechanism 5 including a driving component and a fixing component, which is used to fix the bottom of the door and window, a positioning mechanism 6 is provided on one side of the sliding mechanism 2, which is used to perform positioning detection on the horizontal direction of the door and window.
[0025] The sliding mechanism 2 includes fixed blocks 201 fixedly mounted on both sides of the upper portion of the base 1. A slide groove 202 is provided on one side of each of the two fixed blocks 201. A bottom plate 203 is slidably connected between the two fixed blocks 201 via the slide groove 202. Specifically, the sliding mechanism 2 includes fixed blocks 201 fixedly mounted on both sides of the upper portion of the base 1, which provide stable support and guidance for subsequent sliding components. A chute 1 202 is provided on one side of each of the two fixed blocks 201, which provides a track for the movement of the bottom plate 203. The bottom plate 203 is slidably connected between the two fixed blocks 201 via the chute 1 202. The sliding of the bottom plate 203 in the chute 1 202 enables the entire device to move flexibly in the horizontal direction. In actual operation, construction workers can easily push the bottom plate 203 to slide in the chute 1 202 of the fixed block 201 according to the position of the doors and windows, quickly adjust the position of the device, and improve construction efficiency.
[0026] The adjustment assembly in the adjustment mechanism 3 includes a base 301 fixedly mounted on the upper portion of the bottom plate 203. A second slide groove 302 is provided on the upper portion of the base 301. U-shaped frames 303 are fixedly mounted on both sides of the exterior of the base 301. Telescopic rods 1 304 are fixedly mounted on the inner sides of the two U-shaped frames 303. The output ends of the two telescopic rods 1 304 are fixedly connected to sliders 1 305. The two sliders 1 305 are slidably connected to the interior of the base 301. Specifically, the adjustment assembly in the adjustment mechanism 3 includes a base 301 fixedly mounted on the upper portion of the base plate 203. A second chute 302 is defined on the upper portion of the base 301, providing a track for the movement of a slider 305. U-shaped brackets 303 are fixedly mounted on both sides of the base 301. These brackets support and secure a telescopic rod 304, ensuring its stability during operation. A telescopic rod 304 is fixedly mounted on the inner side of each U-shaped bracket 303, allowing it to extend or retract according to the width of the door or window. Sliders 305 are fixedly connected to the output ends of each telescopic rod 304. The extension and retraction of the telescopic rod 304 drive the sliders 305 to slide within the second chute 302 of the base 301. Both sliders 305 are slidably connected to the interior of the base 301. This sliding connection allows the distance between the two sliders 305 to be precisely adjusted according to the width of the door or window, making the device adaptable to plastic-steel doors and windows of varying sizes and enhancing its versatility.
[0027] The lifting assembly includes a motor 1 306 fixedly mounted on the upper portion of two sliders 1 305 , the output ends of the two motors 1 306 are fixedly connected to a threaded rod 307 , and the outer sides of the two threaded rods 307 are threadedly connected to a slider 2 308 ; Specifically, the lifting assembly includes a motor 1 306 fixedly mounted on the upper portions of two sliders 1 305 . Motor 1 306 provides power for the rotation of threaded rod 307 . The output ends of both motors 1 306 are fixedly connected to threaded rod 307 . When motor 1 306 is activated, it drives threaded rod 307 to rotate. Slider 2 308 is threadedly connected to the outer sides of both threaded rods 307 . Due to the threaded connection between threaded rod 307 and slider 2 308 , the rotation of threaded rod 307 causes slider 2 308 to move up and down on the threaded rod 307 . During the actual correction process, the height of slider 2 308 can be precisely adjusted by controlling the forward and reverse rotation and number of revolutions of motor 1 306 . This, in turn, adjusts the height of clamping mechanism 4 to match the height of the door and window frame, ensuring that clamping mechanism 4 can securely clamp the door and window frame and improving the accuracy of the correction.
[0028] The auxiliary components include top plates 309 disposed at the top of the two threaded rods 307. The two top plates 309 are respectively threadedly connected to the top of the two threaded rods 307. A bubble tube 310 is vertically disposed at the bottom of each of the two top plates 309. Specifically, the auxiliary components include top plates 309, each of which is provided at the top of two threaded rods 307. The top plates 309 are threadedly connected to the top of the threaded rods 307, which not only enables the top plates 309 to move as the slider 2 308 rises and falls, but also allows the height of the top plates 309 to be fine-tuned by rotating the top plates 309. A bubble tube 310 is vertically provided at the bottom of each of the two top plates 309. During the adjustment process, when the slider 2 308 drives the top plates 309 to rise or fall, the bubble tube 310 vertically provided at the bottom of the top plates 309 is observed. If the bubble is not in the middle position, it means that the device is tilted. At this time, the bubble can be placed in the middle position of the bubble tube 310 by fine-tuning the rotation of the motor 1 306, ensuring that the entire adjustment mechanism 3 is in a horizontal state, ensuring the accuracy of the correction, and avoiding correction errors caused by the tilt of the device.
[0029] The clamping mechanism 4 includes a U-shaped plate 401 fixedly mounted on one side of each of the two second sliders 308. A second telescopic rod 402 is fixedly mounted on both sides of the U-shaped plate 401. The output ends of the two second telescopic rods 402 are fixedly connected to a clamping plate 403. The front ends of the two clamping plates 403 are each provided with a rubber pad 404. The rear ends of the two clamping plates 403 are each fixedly mounted with a pressure sensor 405. Specifically, the clamping mechanism 4 includes a U-shaped plate 401 fixedly mounted on either side of two sliders 308. A second telescopic rod 402 is fixedly mounted on either side of the U-shaped plate 401. The extension or contraction of the second telescopic rod 402 pushes the clamping plate 403 toward or away from the door or window frame. The output ends of the two second telescopic rods 402 are fixedly connected to the clamping plate 403. The front ends of the two clamping plates 403 are each provided with a rubber pad 404. This rubber pad 404 increases the friction between the clamping plate 403 and the door or window frame, preventing damage to the door or window frame during the clamping process. A pressure sensor 405 is fixedly mounted on the rear end of each clamping plate 403. The pressure sensor 405 monitors the clamping force in real time and transmits the data to the controller 7. When the pressure reaches an appropriate value, the second telescopic rod 402 stops extending, achieving a secure clamping of the door or window frame and ensuring the stability of the door or window during the correction process. Furthermore, the clamping force can be precisely controlled for doors and windows of different materials and thicknesses, improving the accuracy of the correction.
[0030] The driving assembly in the fixing mechanism 5 includes an electric slide rail 1 501 fixedly mounted on the upper portion of the base plate 203. A support plate 502 is fixedly mounted on the upper portion of the moving base of the electric slide rail 1 501. Fixed plates 503 are fixedly mounted on both sides of the upper portion of the support plate 502. A motor 2 504 is fixedly mounted on the inner side of one of the fixed plates 503. The output end of the motor 2 504 is fixedly connected to a rotating rod 505. The inner side of the other fixed plate 503 is rotatably connected to one end of the rotating rod 505. Specifically, the drive assembly of the fixing mechanism 5 includes an electric slide 501 fixedly mounted on the upper portion of the base plate 203. A support plate 502 is fixedly mounted on the upper portion of the movable base of the electric slide 501. Fixed plates 503 are fixedly mounted on both sides of the upper portion of the support plate 502. A second motor 504 is fixedly mounted on the inner side of one of the fixed plates 503. This motor 504 provides power for the rotation of the rotating rod 505. The output end of the second motor 504 is fixedly connected to the rotating rod 505. When the second motor 504 is activated, it drives the rotating rod 505 to rotate. The inner side of the other fixed plate 503 is rotatably connected to one end of the rotating rod 505, ensuring the stability of the rotating rod 505 during rotation.
[0031] The fixing assembly includes a connecting plate 506 fixedly mounted on one side of the rotating rod 505, one end of the connecting plate 506 is fixedly connected to a circular plate 507, and a non-slip pad 508 is provided at the front end of the circular plate 507; Specifically, the fixing assembly includes a connecting plate 506 fixedly mounted on one side of a rotating rod 505. A circular plate 507 is fixedly connected to one end of the connecting plate 506. The circular plate 507 is a fixed component that directly contacts the bottom of the door or window. A non-slip pad 508 is provided at the front end of the circular plate 507. The non-slip pad 508 increases the friction between the circular plate 507 and the bottom of the door or window. When the circular plate 507 is in contact with the bottom of the door or window, the motor 2 504 stops rotating, and the non-slip pad 508 at the front end of the circular plate 507 presses tightly against the bottom of the door or window, thereby fixing the bottom of the door or window, preventing the door or window from shifting during the correction process, and ensuring the stability of the correction process.
[0032] The positioning mechanism 6 includes an electric slide rail 2 601 fixedly mounted on one side of the base plate 203. A telescopic rod 3 602 is fixedly mounted on the upper portion of the movable base of the electric slide rail 2 601. The output end of the telescopic rod 3 602 is fixedly connected to a support base 603. A fixed base 604 is fixedly mounted on the upper portion of the support base 603. A laser positioning pen 605 is provided on one side of the fixed base 604. Specifically, the positioning mechanism 6 includes an electric slide rail 2 601 fixedly mounted on one side of the base plate 203. The electric slide rail 2 601 can drive its movable base to move horizontally. A telescopic rod 3 602 is fixedly mounted on the upper portion of the movable base of the electric slide rail 2 601. The telescopic rod 3 602 can be extended or shortened according to the height of the door and window to adjust the height of the laser positioning pen 605. The output end of the telescopic rod 3 602 is fixedly connected to a support base 603, which provides stable support for the fixed base 604 and the laser positioning pen 605. A fixed base 604 is fixedly mounted on the upper portion of the support base 603. The fixed base 604 is used to fix the laser positioning pen 605 and ensure the stability of the laser positioning pen 605 during operation. A laser positioning pen 605 is provided on one side of the fixed base 604. The laser positioning pen 605 emits a laser beam that illuminates the door and window frames. If there is a horizontal deviation in the doors and windows, the reflection position of the laser beam on the door and window frames will change. The positioning mechanism 6 transmits the detected deviation data to the controller 7. Based on this data, the controller 7 controls the sliding mechanism 2, the adjustment mechanism 3 and other corresponding components to make adjustments, so that the doors and windows gradually reach a horizontal state, thereby realizing accurate positioning detection and correction adjustment of the doors and windows in the horizontal direction.
[0033] A controller 7 is provided at one end of the outer portion of the bottom plate 203; Specifically, a controller 7 is mounted on one end of the base plate 203. Throughout the correction process, the operator uses this controller to centrally control various mechanisms. When the laser positioning pen 605 detects a significant horizontal deviation from the door or window, the controller 7 rapidly moves the sliding mechanism 2, bringing the device closer to the correct position. The adjustment mechanism 3 then performs fine adjustments. When the pressure sensor 405 detects excessive or insufficient clamping force, the controller 7 promptly adjusts the extension and retraction of the telescopic rod 2 402 to ensure the appropriate clamping force. This automated and precise control of the entire correction process effectively improves the efficiency and accuracy of plastic-steel door and window installation.
[0034] Working Principle: First, place the device in the desired position using base 1. Using the slide groove 1 202 on the fixed block 201 of the sliding mechanism 2, the bottom plate 203 slides flexibly, allowing for easy adjustment of the device's overall position to align with the plastic-steel door or window in question. Once the position is adjusted, extend or contract the telescopic rod 1 304, pushing the slider 1 305 within the slide groove 2 302 of the base 301. This allows the distance between the two sliders 1 305 to be adjusted based on the width of the door or window, allowing the device to accommodate doors and windows of varying sizes.
[0035] Subsequently, the threaded rod 307 is driven to rotate by the motor 1 306. Since the slider 2 308 is threadedly connected to the threaded rod 307, the slider 2 308 will move up and down on the threaded rod 307 as the threaded rod 307 rotates. By controlling the forward and reverse rotation and the number of revolutions of the motor 1 306, the height of the slider 2 308 can be accurately adjusted, and then the height of the clamping mechanism 4 can be adjusted to match the height of the door and window frame. During the adjustment process, the top plate 309 is threadedly connected to the top of the threaded rod 307. When the slider 2 308 drives the top plate 309 to rise or fall, the bubble tube 310 vertically arranged at the bottom of the top plate 309 is observed. If the bubble is not in the middle position, it means that the device is tilted. At this time, the rotation of the motor 1 306 can be fine-tuned to make the bubble in the middle position of the bubble tube 310, ensuring that the entire adjustment mechanism 3 is in a horizontal state and the accuracy of the correction is guaranteed.
[0036] Next, the telescopic rods 402 on either side of the U-shaped plate 401 extend, pushing the clamping plate 403 toward the door or window frame. Simultaneously, the rubber pads 404 at the front of the clamping plate 403 increase friction, preventing damage to the door or window frame during the clamping process. A pressure sensor 405 at the rear end of the clamping plate 403 monitors the clamping force in real time and transmits the data to the controller 7. When the pressure reaches an appropriate value, the telescopic rods 402 stop extending, achieving a secure clamping of the door or window frame.
[0037] The movable base on the electric slide rail 1 501 drives the support plate 502, fixed plate 503, motor 2 504, and rotating rod 505 to the appropriate position at the bottom of the door or window. Simultaneously, motor 2 504 drives rotating rod 505. When the circular plate 507 rotates to fit the bottom of the door or window, motor 2 504 stops rotating. The anti-slip pad 508 at the front end of the circular plate 507 firmly presses against the bottom of the door or window, securing the bottom of the door or window and preventing it from shifting during the correction process.
[0038] Electric slide rail 2 601 moves telescopic rod 3 602, support base 603, fixed base 604, and laser positioning pen 605 to the appropriate position. Telescopic rod 3 602 extends or contracts, adjusting the height of laser positioning pen 605. Laser positioning pen 605 then emits a laser beam, illuminating the door or window frame. If the door or window deviates from the horizontal direction, the position of the laser beam reflected on the door or window frame will change. Positioning mechanism 6 transmits the detected deviation data to controller 7, which, based on this data, controls the sliding mechanism 2, adjustment mechanism 3, and other corresponding components to gradually adjust the door or window to a horizontal position.
[0039] Throughout the correction process, the operator centrally controls each mechanism through controller 7. Controller 7 receives data from components such as pressure sensor 405 and laser positioning pen 605, enabling automated and precise control of the entire correction process. If laser positioning pen 605 detects a significant horizontal deviation from the door or window, controller 7 controls sliding mechanism 2 to rapidly move the device closer to the correct position, and then fine-tunes it using adjustment mechanism 3. If pressure sensor 405 detects excessive or insufficient clamping force, controller 7 promptly adjusts the extension and retraction of telescopic rod 2 402 to ensure the appropriate clamping force.
[0040] In summary, through the close cooperation between various mechanisms, the correction device realizes the automated operation of the entire process of plastic-steel doors and windows from position adjustment, clamping and fixation to horizontal positioning detection and precise correction, effectively improving the correction efficiency and accuracy of plastic-steel door and window installation, solving the problems of large errors and low efficiency of manual correction in the traditional installation process, and providing reliable technical support for the installation of plastic-steel doors and windows.
[0041] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A correction device for installing plastic-steel doors and windows, characterized in that: The invention comprises a base (1), a sliding mechanism (2) fixedly mounted on the upper part of the base (1), which is used for sliding the device to change its position; an adjusting mechanism (3) fixedly mounted on the upper part of the sliding mechanism (2), which comprises an adjusting component, a lifting component and an auxiliary component, and is used for sliding adjustment according to the size of the door and window; a clamping mechanism (4) fixedly mounted on one side of the adjusting mechanism (3), which is used for clamping and fixing the frame of the door and window; a fixing mechanism (5) is provided on the upper part of the sliding mechanism (2), which comprises a driving component and a fixing component, and is used for fixing the bottom of the door and window; a positioning mechanism (6) is provided on one side of the sliding mechanism (2), which is used for positioning and detecting the horizontal direction of the door and window.
2. A correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The sliding mechanism (2) comprises fixed blocks (201) fixedly mounted on both sides of the upper portion of the base (1), a sliding groove (202) being provided on one side of each of the two fixed blocks (201), and a bottom plate (203) being slidably connected between the two fixed blocks (201) via the sliding groove (202).
3. A correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The adjustment assembly in the adjustment mechanism (3) includes a base (301) fixedly mounted on the upper portion of the bottom plate (203), a second slide groove (302) being provided on the upper portion of the base (301), U-shaped frames (303) being fixedly mounted on both sides of the exterior of the base (301), a telescopic rod (304) being fixedly mounted on the inner sides of the two U-shaped frames (303), and a slider (305) being fixedly connected to the output ends of the two telescopic rods (304), and the two sliders (305) being slidably connected to the interior of the base (301).
4. A correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The lifting assembly includes a motor 1 (306) fixedly mounted on the upper portion of two sliders 1 (305), the output ends of the two motors 1 (306) are fixedly connected to a threaded rod (307), and the outer sides of the two threaded rods (307) are threadedly connected to a slider 2 (308).
5. The correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The auxiliary component comprises top plates (309) each provided at the top of two threaded rods (307), the two top plates (309) being threadedly connected to the tops of the two threaded rods (307), respectively, and a bubble tube (310) being vertically provided at the bottom of the two top plates (309).
6. The correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The clamping mechanism (4) comprises a U-shaped plate (401) fixedly mounted on one side of two sliders (308), a telescopic rod (402) fixedly mounted on both sides of the U-shaped plate (401), the output ends of the two telescopic rods (402) are fixedly connected to a clamping plate (403), the front ends of the two clamping plates (403) are provided with a rubber pad (404), and the rear ends of the two clamping plates (403) are fixedly mounted with a pressure sensor (405).
7. The correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The driving assembly in the fixing mechanism (5) includes an electric slide rail 1 (501) fixedly mounted on the upper part of the base plate (203), a support plate (502) fixedly mounted on the upper part of the moving seat of the electric slide rail 1 (501), fixed plates (503) fixedly mounted on both sides of the upper part of the support plate (502), a motor 2 (504) fixedly mounted on the inner side of one of the fixing plates (503), an output end of the motor 2 (504) fixedly connected to a rotating rod (505), and the inner side of the other fixing plate (503) is rotatably connected to one end of the rotating rod (505).
8. The correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The fixing assembly comprises a connecting plate (506) fixedly mounted on one side of the rotating rod (505), one end of the connecting plate (506) is fixedly connected to a circular plate (507), and a front end of the circular plate (507) is provided with an anti-slip pad (508).
9. The correction device for installing plastic-steel doors and windows according to claim 1, characterized in that: The positioning mechanism (6) comprises an electric slide rail 2 (601) fixedly mounted on one side of the base plate (203); a telescopic rod 3 (602) is fixedly mounted on the upper portion of the movable seat of the electric slide rail 2 (601); an output end of the telescopic rod 3 (602) is fixedly connected to a support seat (603); a fixed seat (604) is fixedly mounted on the upper portion of the support seat (603); and a laser positioning pen (605) is provided on one side of the fixed seat (604).
10. The correction device for installing plastic-steel doors and windows according to claim 2, characterized in that: A controller (7) is provided at one end outside the bottom plate (203).