Building door and window installation device with air tightness detection

By designing a building door and window installation device with automatic positioning and airtight inspection, the problem of difficulty in seal detection and insufficient accuracy in door and window installation is solved, and an efficient and accurate door and window installation process is achieved, ensuring sealing and installation quality.

CN116411690BActive Publication Date: 2025-08-08TAICANG SUSHENG DOOR & WINDOW CO LTD
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Patent Information

Application Number
CN202310403674.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-17
Publication Date
2025-08-08
Estimated Expiration
2043-04-17

AI Technical Summary

Technical Problem

During the installation of existing building doors and windows, seal detection is difficult, and traditional mechanical equipment is difficult to ensure installation accuracy and sealing, resulting in manual adjustment and secondary sealing, which affects the construction period and quality.

Method used

A building door and window installation device with airtightness detection is designed, including a mounting frame, positioning frame, stabilizing claw, sealing gun and detection components. Through automatic positioning, feedback adjustment and airtight detection, the accuracy and sealing of door and window installation are ensured.

Benefits of technology

It realizes accurate positioning of doors and windows installations, reduces manual adjustment errors, avoids sealing problems, simplifies the secondary inspection process, and improves installation efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a building door and window installation device with air tightness detection, which relates to the technical field of building auxiliary equipment. The installation device includes a mounting frame, a universal wheel is provided at the bottom end of the mounting frame, a door and window fixing position is provided on the mounting frame, the door and window fixing position is slidably connected to the mounting frame, a pushing plate is provided on the door and window fixing position, feedback components are respectively provided on both sides of the pushing plate, a positioning frame is provided on the mounting frame, an installation hydraulic rod is provided on the mounting frame, the positioning frame and the door and window fixing position are connected by a wire, the feedback component and the installation hydraulic rod are connected by a wire, a stabilizing claw is provided at the bottom end of the mounting frame, the stabilizing claw is slidably connected to the mounting frame, a stabilizing hydraulic rod is provided on the mounting frame, the stabilizing claw is provided on the output end of the stabilizing hydraulic rod, a sealing gun is provided on the pushing plate, the sealing gun is connected to the glue injection tank through a conduit, and a detection component is provided on the mounting frame. The installation equipment has the function of automatic positioning and installation of building doors and windows.
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Description

Technical Field

[0001] The present invention relates to the technical field of building auxiliary equipment, in particular to a building door and window installation device with air tightness detection function. Background Art

[0002] In the construction industry, door and window structures are very common. Doors and windows are divided into enclosure components or partition components according to their location, and have different design requirements. They have functions such as thermal insulation, heat insulation, sound insulation, waterproofing, and fire prevention. At the same time, the heat loss due to the gaps in doors and windows in cold areas must also be taken into account. Therefore, when installing doors and windows, the things that need to be considered also increase. The installation angle of doors and windows, the stress conditions of doors and windows, and the sealing status of doors and windows are all issues that construction personnel need to consider during installation. Therefore, the work of installing doors and windows is also very complicated, and the manpower and time required will greatly affect the time limit for building completion.

[0003] In order to speed up the construction period, clever construction workers designed many auxiliary tools to provide a lot of convenience for the installation of building doors and windows. However, as time goes by, and as people's requirements for the installation of doors and windows gradually increase, some traditional installation methods can no longer meet people's needs. Therefore, modern mechanical equipment has gradually come into people's field of vision. This kind of mechanical equipment is more suitable for a large number of door and window installation work, which can save a lot of manpower, material resources and time. Due to the use of mechanical means, it is often necessary to manually adjust the installation direction of the installation equipment. At the same time, when performing sealing treatment, it is easy to miss problems, which greatly reduces the sealing of doors and windows, and requires secondary sealing and other operations, which wastes a lot of time. Summary of the Invention

[0004] The object of the present invention is to provide a building door and window installation device with air tightness detection function to solve the problems raised in the above background technology.

[0005] In order to solve the above technical problems, the present invention provides the following technical solution: a building door and window installation device with air tightness detection.

[0006] The mounting device includes a mounting frame, a universal wheel is provided at the bottom end of the mounting frame, a door and window fixing position is provided on the mounting frame, the door and window fixing position is slidably connected to the mounting frame, a push plate is provided on the door and window fixing position, feedback components are provided on both sides of the push plate, a positioning frame is provided on the mounting frame, a mounting hydraulic rod is provided on the mounting frame, the positioning frame and the door and window fixing position are connected by a wire, the feedback component and the mounting hydraulic rod are connected by a wire, a stabilizing claw is provided at the bottom end of the mounting frame, the stabilizing claw is slidably connected to the mounting frame, a stabilizing hydraulic rod is provided on the mounting frame, the stabilizing claw is provided on the output end of the stabilizing hydraulic rod, the sealing gun is connected to the glue injection tank through a conduit, and a detection component is provided on the mounting frame. During the installation of doors and windows, first place the doors and windows to be installed on the door and window fixing positions and correct them. The positioning frame will be close to the position where it needs to be installed. Then, under the action of the positioning frame, the door and window fixing positions will be adjusted. Then the stabilizing hydraulic rod will work, and the stabilizing hydraulic rod will drive the stabilizing claws to move. The stabilizing claws will stabilize the mounting frame. Then the installation hydraulic rod will drive the push plate to move, and the push plate will drive the doors and windows into the installation position. Then the sealing gun will perform the sealing process. After sealing, the detection component will perform an airtightness test on the sealing area. After the test is completed, the door and window fixing positions will be pulled out to complete the installation of the doors and windows.

[0007] The door and window fixing position includes a placement slot and an anti-falling strip, a sealing gun is provided on the placement slot, the anti-falling strip is slidably connected to the placement slot, a trigger plate is provided on the placement slot, the trigger plate is slidably connected to the placement slot, a rotating connecting rod is provided in the placement slot, two ends of the rotating connecting rod are respectively rotatably connected to the anti-falling strip and the trigger plate, an anti-falling spring is provided in the placement slot, and two ends of the anti-falling spring respectively resist the trigger plate and the placement slot, a sliding rod is provided on the placement slot, the placement slot is slidably connected to the push plate through the sliding rod, and a plurality of fixed suction cups are provided in the placement slot. During installation, the door and window are placed on the placement slot, and the falling strip will block the door and window frame. When the door and window are sent to the installation position, the trigger plate will connect with the inner wall of the installation position and move in the direction of the placement slot, driving the rotating connecting rod to rotate during the movement, and after the rotating connecting rod rotates, it will drive the falling strip to slide, and the falling strip is retracted into the placement slot. At this time, the door and window will no longer be hindered and can be installed, and the pushing plate pushes the placement slot to move through the sliding rod.

[0008] The cam is provided with a first positioning motor and a second positioning motor, and a tightening gear is provided on the output end of the first positioning motor and the output end of the second positioning motor. The positioning plates in the same direction are connected to the corresponding tightening gears through steel cables, and each tightening gear is rotatably connected to the positioning frame. When installing, the positioning frame will approach the installation position, and the positioning plate will move in the outer direction of the positioning frame and rest on the installation position, so that the positioning frame will move according to the position of the positioning plate, and a spring for resetting is provided in the positioning frame. When the first positioning motor and the second positioning motor drive the tightening gear to rotate, the positioning plate expands or contracts under the action of the spring, thereby achieving the effect of fast and automatic positioning.

[0009] The cam is provided with an adjusting device and a toothed rod, and the toothed rod is engaged with the toothed rod and the toothed rod is engaged with the toothed rod. When the cam is moved, the cam is moved along with the toothed rod, and the toothed rod is engaged with the toothed rod. When the cam is moved, the cam is engaged with the toothed rod and the toothed rod is engaged with the toothed rod.

[0010] The feedback component includes a plurality of buffer tubes, which are slidably connected to the push plate, and an embedded tube is provided on the placement groove. The embedded tube is embedded in the buffer tube and slidably connected to the buffer tube, and the embedded tube is rotatably connected to the placement groove. A buffer spring is provided in the buffer tube, and the two ends of the buffer spring respectively press against the embedded tube and the buffer tube. A buffer resistor is provided on the embedded tube, and an energized ring is provided in the buffer tube. The buffer resistor passes through the energized ring and slidably contacts the energized ring. The buffer resistor and the energized ring are connected to the installation hydraulic rod through a wire. During the installation process, the placement groove will move synchronously with the door and window frame. When the resistance on the door and window frame increases, the placement groove will vibrate and deflect due to the influence of resistance and friction. These vibrations and deflections will be transmitted to the buffer tube, and the buffer resistor on the embedded tube will move in the direction of the energized ring, so that the current passing through the buffer resistor and the energized ring changes. When the frequency of the current change increases, the installation hydraulic rod will slow down the movement speed to avoid deformation of the doors and windows.

[0011] The push plate is provided with a correction ring, and a correction spring and a correction rod are provided in the correction ring. The correction rod is slidingly connected to the correction ring, and a correction roller is provided at the end of the correction rod away from the correction ring. The correction roller is rotatably connected to the correction rod, and the correction roller presses against the side of the placement slot away from the fixed suction cup. A rectifier is provided in the correction ring, and the rectifier is electrically connected to the power-on ring and the buffer resistor through a wire. The correction spring is connected to the rectifier through a wire. When the placement slot is deflected, the effective current transmitted from the buffer tubes on the upper and lower sides or the left and right sides will be different. The current difference is transmitted into the rectifier, analyzed by the rectifier, and power is supplied to the correction spring. The correction spring has the ability to expand after being energized, and at this time it presses against the correction rod. The correction rod will press against the placement slot, so that the distance between the placement slot and the push plate is more balanced, thereby ensuring that the position of the placement slot is more stable, avoiding the problem of door and window frame installation position offset during installation.

[0012] The sealing gun includes a glue injection gun, which is connected to the glue injection tank through a conduit, a glue injection row is provided on the glue injection gun, a movable track is provided on the placement groove, teeth are provided in the movable track, a movable motor is provided on the movable track, and a movable gear is provided on the output end of the movable motor. The teeth on the movable gear are engaged with the teeth on the movable track. The glue injection gun body is provided on the body of the movable motor, and the glue injection gun is rotationally connected to the movable motor. Under the action of the glue injection tank, the glue injection gun supplies sealant to the glue injection row, and the glue injection row disperses the sealant and delivers the sealant to the joint. Then the movable motor is started, and the movement of the movable motor drives the movable gear to rotate. The rotation of the movable gear is engaged with the teeth on the movable track, thereby driving the movable motor to move. After the movable motor moves, it indirectly drives the glue injection gun to move in the direction of the movable track, thereby completing the operation of joint glue injection.

[0013] The glue injection row includes a glue injection soft shell, which is equipped with a glue injection tube. Each glue injection tube is connected to a glue injection gun respectively. An anti-blocking plate is provided on the glue injection tube, and an anti-blocking ball is provided on the anti-blocking plate. The anti-blocking ball is hinged to the anti-blocking plate. An anti-blocking spring is provided in the glue injection tube, and both ends of the anti-blocking spring are respectively against the anti-blocking plate and the glue injection tube. Detection components are provided at both ends of the glue injection soft shell. When glue injection is being carried out, the glue injection tube will receive the sealant from the glue injection gun and deliver the sealant to the gap between the doors and windows and the installation position. During the glue injection process, the sealant will push open the anti-blocking plate and enter the gap. The sealant will solidify when it encounters air, and then the sealing glue injection operation is completed. When the anti-blocking plate is sealed with the glue injection tube, the sealant will be blocked to prevent the sealant in the glue injection tube from contacting with air, causing drying and blockage.

[0014] The detection component includes an airtight row, which is respectively arranged on both sides of the injection soft shell, and a detection air gun is provided on the airtight row, which is connected to the air pump through a conduit, and a detection nozzle is provided on the detection air gun, which is rotatably connected to the detection air gun, and a fitting piece is provided at the end of the detection nozzle away from the detection air gun, and the detection nozzle is connected to the return air pipe through a conduit, and a rotating turbine is provided in the return air pipe, which is rotatably connected to the return air pipe, and a rotating spring is provided on the rotating turbine, and a trigger block is provided on the rotating spring, and a trigger ring is provided in the return air pipe, and the trigger block is in intermittent sliding contact with the trigger ring. After the sealing is completed, the detection is carried out Testing, scrapers can be added on both sides of the testing air gun, the scrapers will remove the excess sealant, and then start the testing spray gun, the testing spray gun will spray gas, the sprayed gas will hit the sealant, and the testing nozzle will block the sealant. When the sealant is well sealed, the gas sprayed from the testing nozzle will pass through the conduit into the return air pipe, causing the rotating turbine in the return air pipe to rotate, and the rotation drives the trigger block to slide in contact with the trigger circle, thereby continuously energized. When the sealant is not well sealed, the rotation speed of the rotating turbine decreases, and the trigger circle and the trigger block are out of contact, which proves that the air tightness at this location is not good.

[0015] Compared with the prior art, the beneficial effects achieved by the present invention are: 1. The present invention adopts an automatic positioning structural component, which can locate the position of the door and window installation position, and thereby adjust the starting point of the installation, so that the doors and windows are installed more accurately, and can fully avoid the problem of door and window structural parts colliding with the building wall or excessive friction causing damage to the building doors and windows during installation.

[0016] 2. The present invention adopts automatic feedback during installation, which can automatically adjust the installation speed and installation angle of building doors and windows according to the feedback results during installation. It can fully avoid the problem of misalignment of doors and windows caused by angle deviation during installation, and can also avoid the problem of excessive friction between door and window components and door and window installation positions due to too fast movement speed.

[0017] 3. The present invention adopts a structural component for airtight detection, which can perform sealing detection on the installed door and window structural parts. After the doors and windows are installed, they need to be sealed, injected with sealant, and then a sealing detection is performed. During the detection process, the sealing state of the sealing installation can be determined by the rotation state of the turbine during the detection process, thereby reducing the need for manual secondary detection after the installation is completed. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0020] Figure 2 It is a front view structural schematic diagram of the present invention;

[0021] Figure 3 This is a schematic diagram of the door and window fixing structure of the present invention;

[0022] Figure 4 It is a schematic diagram of the push plate structure of the present invention;

[0023] Figure 5 It is a schematic diagram of the positioning frame structure of the present invention;

[0024] Figure 6 It is a schematic diagram of the internal structure of the correction ring of the present invention;

[0025] Figure 7 It is a schematic diagram of the feedback component structure of the present invention;

[0026] Figure 8 It is a structural schematic diagram of the sealing gun of the present invention;

[0027] Figure 9 yes Figure 8 The structural diagram of the partially enlarged A in the middle;

[0028] Figure: 1. Mounting frame; 101. Moving frame; 102. Mounting sub-frame; 103. Recovering motor; 2. Door and window fixing position; 201. Placement slot; 202. Anti-fall bar; 203. Trigger plate; 204. Rotating connecting rod; 205. Anti-fall spring; 206. Sliding rod; 207. Fixed suction cup; 3. Push plate; 301. Correction ring; 302. Correction spring; 303. Correction rod; 304. Correction roller; 4. Feedback assembly; 401. Buffer tube; 402. Embedded tube; 403. Buffer spring; 404. Buffer resistor; 405. Energizing ring; 5. Installing hydraulic rod; 6. Positioning frame; 601. Positioning frame; 602. Positioning plate; 603 , positioning wheel; 604, first positioning motor; 605, second positioning motor; 606, tightening gear; 7, stabilizing claw; 8, stabilizing hydraulic rod; 9, sealing gun; 901, glue gun; 902, glue injection row; 903, moving motor; 904, moving gear; 905, glue injection tube; 906, anti-blocking plate; 907, anti-blocking ball; 908, anti-blocking spring; 909, glue injection soft shell; 10, detection component; 1001, airtight row; 1002, detection air gun; 1003, detection nozzle; 1004, bonding sheet; 1005, return air pipe; 1006, rotating turbine; 1007, rotating spring; 1008, trigger block; 1009, trigger ring. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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.

[0030] The mounting device includes a mounting frame 1, a universal wheel is provided at the bottom end of the mounting frame 1, a door and window fixing position 2 is provided on the mounting frame 1, the door and window fixing position 2 is slidably connected to the mounting frame 1, a push plate 3 is provided on the door and window fixing position 2, feedback components 4 are respectively provided on both sides of the push plate 3, a positioning frame 6 is provided on the mounting frame 1, a mounting hydraulic rod 5 is provided on the mounting frame 1, the positioning frame 6 is connected to the door and window fixing position 2 by a wire, the feedback component 4 is connected to the mounting hydraulic rod 5 by a wire, a stabilizing claw 7 is provided at the bottom end of the mounting frame 1, the stabilizing claw 7 is slidably connected to the mounting frame 1, a stabilizing hydraulic rod 8 is provided on the mounting frame 1, and the stabilizing claw 7 is provided on the output end of the stabilizing hydraulic rod 8, a sealing gun 9 is connected to the glue injection tank through a conduit, and a mounting frame 1 is provided. There is a detection component 10. During the installation of doors and windows, the doors and windows to be installed are first placed on the door and window fixing position 2 and corrected. The positioning frame 6 will be close to the position to be installed. Then, under the action of the positioning frame 6, the door and window fixing position 2 will be adjusted, and then the stabilizing hydraulic rod 8 will work, and the stabilizing hydraulic rod 8 will drive the stabilizing claw 7 to move. The stabilizing claw 7 will stabilize the mounting frame 1, and then the installation hydraulic rod 5 will drive the push plate 3 to move, and the push plate 3 will drive the doors and windows into the installation position, and then the sealing gun 9 will perform the sealing process. After sealing, the detection component 10 will perform an airtightness test on the sealing part. After the test is completed, the door and window fixing position 2 is pulled out to complete the installation of the doors and windows.

[0031] The door and window fixing position 2 includes a placement groove 201 and an anti-falling strip 202, a sealing gun 9 is provided on the placement groove 201, the anti-falling strip 202 is slidably connected to the placement groove 201, a trigger plate 203 is provided on the placement groove 201, the trigger plate 203 is slidably connected to the placement groove 201, a rotating connecting rod 204 is provided in the placement groove 201, and the two ends of the rotating connecting rod 204 are respectively rotatably connected to the anti-falling strip 202 and the trigger plate 203, an anti-falling spring 205 is provided in the placement groove 201, and the two ends of the anti-falling spring 205 respectively press against the trigger plate 203 and the placement groove 201, a sliding rod 206 is provided on the placement groove 201, and the placement groove 201 is connected by the sliding rod 206 is slidably connected to the pushing plate 3, and a plurality of fixed suction cups 207 are provided in the placement groove 201. During installation, the door and window are placed on the placement groove 201, and the tilting bar will block the door and window frame. When the door and window are sent to the installation position, the trigger plate 203 will be in contact with the inner wall of the installation position and move toward the placement groove 201. During the movement, the rotating connecting rod 204 is driven to rotate. After the rotating connecting rod 204 rotates, it will drive the tilting bar to slide, and the tilting bar is retracted into the placement groove 201. At this time, the door and window will no longer be hindered and can be installed. The pushing plate 3 pushes the placement groove 201 to move through the sliding rod 206.

[0032] The positioning frame 6 includes a positioning frame 601, a plurality of positioning plates 602 are provided in the positioning frame 601, each positioning plate 602 is respectively connected to the positioning frame 601 in a sliding manner, and each positioning plate 602 is provided with a positioning wheel 603 at one end away from the positioning frame 601, and the positioning wheel 603 is rotatably connected to the positioning plate 602. A first positioning motor 604 and a second positioning motor 605 are provided in the positioning frame 601, and a tightening gear 606 is respectively provided on the output end of the first positioning motor 604 and the output end of the second positioning motor 605. The positioning plates 602 in the same direction are respectively connected to the corresponding tightening gears 606 through steel cables. 6 connection, each tightening gear 606 is rotationally connected to the positioning frame 601. During installation, the positioning frame 601 will approach the installation position, and the positioning plate 602 will move toward the outside of the positioning frame 601 and abut against the installation position, so that the positioning frame 601 will move according to the position of the positioning plate 602. A spring for reset is provided in the positioning frame 601. When the first positioning motor 604 and the second positioning motor 605 drive the tightening gear 606 to rotate, the positioning plate 602 expands or contracts under the action of the spring, thereby achieving a fast and automatic positioning effect.

[0033] The mounting frame 1 includes a moving frame 101 and a mounting sub-frame 102, the moving frame 101 is slidably connected to the mounting sub-frame 102, the positioning frame 601 is slidably connected to the mounting sub-frame 102, the stabilizing claw 7 is provided on the moving frame 101, the positioning frame 601 is provided with an adjusting connecting rod, the positioning frame 601 is slidably connected to the placement slot 201 through the adjusting connecting rod, the placement slot 201 is slidably connected to the moving frame 101, a recycling motor 103 is provided on the moving frame 101, and the positioning frame 601 is provided with teeth. The output end of the recycling motor 103 is engaged with the teeth on the positioning frame 601. When the positioning frame 601 moves, the moving frame 101 will also move with the positioning frame 601. It moves, thereby providing a more accurate starting point for pushing the door and window frames. When the moving frame 101 has completed its movement, the stabilizing hydraulic rod 8 will drive the stabilizing claw 7 to move until the stabilizing claw 7 completely grasps the ground. When the positioning frame 6 is positioned, the recovery motor 103 will drive the finding frame to move, thereby reducing the error caused by manual operation and the problem of shaking in positioning. At the same time, through the action of the adjusting connecting rod, the placement slot 201 will also move accordingly. The adjusting connecting rod adopts a telescopic connecting rod, which is slidably connected to the finding frame 601 through a limiting card strip. Therefore, the placement slot 201 can pass through the finding frame 601.

[0034] The feedback assembly 4 includes a plurality of buffer tubes 401, which are slidably connected to the push plate 3. An embedded tube 402 is provided on the placement groove 201. The embedded tube 402 is embedded in the buffer tube 401 and slidably connected to the buffer tube 401. The embedded tube 402 is rotatably connected to the placement groove 201. A buffer spring 403 is provided in the buffer tube 401. The two ends of the buffer spring 403 respectively press against the embedded tube 402 and the buffer tube 401. A buffer resistor 404 is provided on the embedded tube 402. A power ring 405 is provided in the buffer tube 401. The buffer resistor 404 passes through the power ring 405 and is in sliding contact with the power ring 405. The buffer resistor 404 4. The power ring 405 is connected to the installation hydraulic rod 5 through a wire. During the installation process, the placement groove 201 will move synchronously with the door and window frame. When the resistance on the door and window frame increases, the placement groove 201 will vibrate and deflect due to the influence of resistance and friction. These vibrations and deflections will be transmitted to the buffer tube 401, and the buffer resistor 404 on the embedded tube 402 will move in the direction of the power ring 405, causing the current passing through the buffer resistor 404 and the power ring 405 to change. When the frequency of the current change increases, the installation hydraulic rod 5 will slow down the movement speed to avoid deformation of the doors and windows.

[0035] A correction ring 301 is provided on the push plate 3, and a correction spring 302 and a correction rod 303 are provided in the correction ring 301. The correction rod 303 is slidably connected to the correction ring 301. A correction roller 304 is provided at the end of the correction rod 303 away from the correction ring 301. The correction roller 304 is rotatably connected to the correction rod 303. The correction roller 304 is against the side of the placement slot 201 away from the fixed suction cup 207. A rectifier 305 is provided in the correction ring 301. The rectifier 305 is electrically connected to the power ring 405 and the buffer resistor 404 through a wire. The correction spring 302 is connected to the rectifier 30 5 connection. When the placement slot 201 is deflected, the effective current transmitted from the buffer tubes 401 on the upper and lower sides or the left and right sides will differ. This current difference is transmitted to the rectifier, which analyzes it and supplies power to the correction spring 302. The correction spring 302 has the ability to expand after being energized, and at this time it presses against the correction rod 303. The correction rod 303 will press against the placement slot 201, making the distance between the placement slot 201 and the push plate 3 more balanced, thereby ensuring the position of the placement slot 201 more stable and avoiding the problem of door and window frame installation position deviation during installation.

[0036] The sealing gun 9 includes a glue injection gun 901, which is connected to the glue injection tank through a conduit. The glue injection gun 901 is provided with a glue injection row 902, and the placement slot 201 is provided with a moving track. The moving track is provided with teeth, and a moving motor 903 is provided on the moving track. A moving gear 904 is provided on the output end of the moving motor 903. The teeth on the moving gear 904 are engaged with the teeth on the moving track. The gun body of the glue injection gun 901 is provided on the body part of the moving motor 903. The glue injection gun 901 is rotated in conjunction with the moving motor 903. Next, the glue gun 901, under the action of the glue injection tank, supplies sealant to the glue injection row 902, and the glue injection row 902 disperses the sealant and delivers the sealant to the joint. Then, the moving motor 903 is started, and the movement of the moving motor 903 drives the moving gear 904 to rotate. The rotation of the moving gear 904 engages with the teeth on the moving track, thereby driving the moving motor 903 to move. After the moving motor 903 moves, it indirectly drives the glue injection gun 901 to move in the direction of the moving track, thereby completing the operation of glue injection in the joint.

[0037] The glue injection row 902 includes a glue injection soft shell 909, a glue injection tube 905 is provided in the glue injection soft shell 909, each glue injection tube 905 is connected to the glue injection gun 901, an anti-blocking plate 906 is provided on the glue injection tube 905, an anti-blocking ball 907 is provided on the anti-blocking plate 906, the anti-blocking ball 907 is hinged to the anti-blocking plate 906, an anti-blocking spring 908 is provided in the glue injection tube 905, and the two ends of the anti-blocking spring 908 respectively resist the anti-blocking plate 906 and the glue injection tube 905, and the two ends of the glue injection soft shell 909 are provided with Detection component 10, when injecting glue, the glue injection tube 905 will receive the sealant from the glue injection gun 901, and deliver the sealant to the gap between the door and window and the installation position. During the glue injection process, the sealant will push away the anti-blocking plate 906 and enter the gap. The sealant solidifies when it encounters air, and then the sealing glue injection operation is completed. When the anti-blocking plate 906 is sealed with the glue injection tube 905, it will block the sealant to prevent the sealant in the glue injection tube 905 from contacting with the air, causing drying and clogging problems.

[0038] The detection component 10 includes an airtight row 1001, which is respectively arranged on both sides of the injection soft shell 909. A detection air gun 1002 is provided on the airtight row 1001, and the detection air gun 1002 is connected to the air pump through a conduit. A detection nozzle 1003 is provided on the detection air gun 1002, and the detection nozzle 1003 is rotatably connected to the detection air gun 1002. A bonding piece 1004 is provided at one end of the detection nozzle 1003 away from the detection air gun 1002, and the detection nozzle 1003 is connected to the return air pipe 1005 through a conduit. A rotating turbine 1006 is provided in the return air pipe 1005, and the rotating turbine 1006 is rotatably connected to the return air pipe 1005. A rotating spring 1007 is provided on the rotating turbine 1006, and a trigger block 1008 is provided on the rotating spring 1007. A trigger ring 1009 is provided in the return air pipe 1005. , the trigger block 1008 and the trigger ring 1009 are in intermittent sliding contact. After the sealing is completed, inspection is carried out. Scraping pieces can be added on both sides of the inspection air gun 1002. The scraping pieces will remove the excess sealant, and then the inspection spray gun is started. The inspection spray gun will spray gas, and the sprayed gas will hit the sealant, and the inspection nozzle 1003 will block the sealant. When the sealant is well sealed, the gas sprayed by the inspection nozzle 1003 will pass through the conduit into the return air pipe 1005, causing the rotating turbine 1006 in the return air pipe 1005 to rotate, and the rotation drives the trigger block 1008 to slide in the trigger ring 1009, thereby continuously energized. When the sealant is not well sealed, the rotation speed of the rotating turbine 1006 decreases, and the trigger ring 1009 does not contact the trigger block 1008, which proves that the airtightness at this location is not good.

[0039] The working principle of the present invention is as follows: during the installation of doors and windows, first, the doors and windows to be installed are placed on the door and window fixing position 2 and corrected. The positioning frame 6 will be close to the position to be installed, and the positioning frame 601 will be close to the installation position. The positioning plate 602 will move in the direction outside the positioning frame 601 and rest on the installation position, so that the positioning frame 601 will move according to the position of the positioning plate 602, and a spring that can be reset is provided in the positioning frame 601. The positioning plate fits the door and window installation position, and then the door and window fixing position 2 is adjusted. The stabilizing hydraulic rod 8 drives the stabilizing claw 7 to move, and the stabilizing claw 7 will stabilize the installation frame 1. Then the installation hydraulic rod 5 will drive the pushing plate 3 to move, and the pushing plate 3 drives the door and window into the installation position. During installation, the feedback component is placed in the slot for detection, and When the seal is good, the rotating turbine 1006 in the return pipe 1005 rotates, and the trigger block 1008 is in continuous contact with the trigger ring 1009, thereby continuously energized. When the seal is not good, the rotation speed of the rotating turbine 1006 decreases, and the trigger ring 1009 is not in contact with the trigger block 1008, thereby proving that the airtightness at this location is not good. After the inspection is completed, the poorly sealed areas on the installation position and the areas where the placement groove 201 is responsible for installation are repaired with glue, and then the door and window fixing position 2 is pulled out to complete the door and window installation.

[0040] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0041] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A building door and window installation device with air tightness detection, characterized by: The mounting device comprises a mounting frame (1), a universal wheel is provided at the bottom end of the mounting frame (1), a door and window fixing position (2) is provided on the mounting frame (1), the door and window fixing position (2) is slidably connected to the mounting frame (1), a push plate (3) is provided on the door and window fixing position (2), feedback components (4) are respectively provided on both sides of the push plate (3), a positioning frame (6) is provided on the mounting frame (1), a mounting hydraulic rod (5) is provided on the mounting frame (1), the positioning frame (6) is connected to the door and window fixing position (2) through a wire, the feedback component (4) is connected to the mounting hydraulic rod (5) through a wire, a stabilizing claw (7) is provided at the bottom end of the mounting frame (1), the stabilizing claw (7) is slidably connected to the mounting frame (1), a stabilizing hydraulic rod (8) is provided on the mounting frame (1), the stabilizing claw (7) is provided on the output end of the stabilizing hydraulic rod (8), a sealing gun (9) is connected to the glue injection tank through a conduit, and a detection component (10) is provided on the mounting frame (1); The door and window fixing position (2) includes a placement groove (201) and an anti-falling strip (202), a sealing gun (9) is provided on the placement groove (201), the anti-falling strip (202) is slidably connected to the placement groove (201), a trigger plate (203) is provided on the placement groove (201), the trigger plate (203) is slidably connected to the placement groove (201), a rotating connecting rod (204) is provided in the placement groove (201), and the two ends of the rotating connecting rod (204) are respectively The anti-falling strip (202) and the trigger plate (203) are rotatably connected, and an anti-falling spring (205) is provided in the placement groove (201). The two ends of the anti-falling spring (205) respectively abut against the trigger plate (203) and the placement groove (201). A sliding rod (206) is provided on the placement groove (201). The placement groove (201) is slidably connected to the push plate (3) through the sliding rod (206). A plurality of fixed suction cups (207) are provided in the placement groove (201).

2. The building door and window installation device with air tightness detection according to claim 1, characterized in that: The positioning frame (6) includes a positioning frame (601), a plurality of positioning plates (602) are provided in the positioning frame (601), each of the positioning plates (602) is slidably connected to the positioning frame (601), a positioning wheel (603) is provided at one end of each positioning plate (602) away from the positioning frame (601), the positioning wheel (603) is rotationally connected to the positioning plate (602), a first positioning motor (604) and a second positioning motor (605) are provided in the positioning frame (601), a tightening gear (606) is provided on the output end of the first positioning motor (604) and the output end of the second positioning motor (605), the positioning plates (602) in the same direction are connected to the corresponding tightening gear (606) via a steel cable, and each tightening gear (606) is rotationally connected to the positioning frame (601).

3. The building door and window installation device with air tightness detection according to claim 2, characterized in that: The mounting frame (1) comprises a moving frame (101) and a mounting sub-frame (102), the moving frame (101) and the mounting sub-frame (102) are slidably connected, the positioning frame (601) and the mounting sub-frame (102) are slidably connected, the stabilizing claw (7) is arranged on the moving frame (101), the positioning frame (601) is provided with an adjusting connecting rod, the positioning frame (601) is slidably connected to the placement slot (201) via the adjusting connecting rod, the placement slot (201) is slidably connected to the moving frame (101), the moving frame (101) is provided with a recovery motor (103), the positioning frame (601) is provided with teeth, and the output end of the recovery motor (103) is engaged with the teeth on the positioning frame (601).

4. The building door and window installation device with air tightness detection according to claim 1, characterized in that: The feedback assembly (4) includes a plurality of buffer tubes (401), the buffer tubes (401) are slidably connected to the push plate (3), an embedded tube (402) is provided on the placement groove (201), the embedded tube (402) is embedded in the buffer tube (401) and is slidably connected to the buffer tube (401), the embedded tube (402) is rotatably connected to the placement groove (201), a buffer spring (403) is provided in the buffer tube (401), the two ends of the buffer spring (403) respectively press against the embedded tube (402) and the buffer tube (401), a buffer resistor (404) is provided on the embedded tube (402), an electrified ring (405) is provided in the buffer tube (401), the buffer resistor (404) passes through the electrified ring (405) and is in sliding contact with the electrified ring (405), and the buffer resistor (404) and the electrified ring (405) are connected to the installation hydraulic rod (5) through a wire.

5. The building door and window installation device with air tightness detection according to claim 4, characterized in that: A correction ring (301) is provided on the push plate (3), a correction spring (302) and a correction rod (303) are provided in the correction ring (301), the correction rod (303) is slidably connected to the correction ring (301), a correction roller (304) is provided at one end of the correction rod (303) away from the correction ring (301), the correction roller (304) is rotatably connected to the correction rod (303), the correction roller (304) is against the side of the placement groove (201) away from the fixed suction cup (207), a rectifier is provided in the correction ring (301), the rectifier is electrically connected to the power ring (405) and the buffer resistor (404) through a wire, and the correction spring (302) is connected to the rectifier through a wire.

6. The building door and window installation device with air tightness detection according to claim 5, characterized in that: The sealing glue gun (9) comprises a glue injection gun (901), the glue injection gun (901) is connected to the glue injection tank through a conduit, a glue injection row (902) is provided on the glue injection gun (901), a movable track is provided on the placement groove (201), teeth are provided in the movable track, a movable motor (903) is provided on the movable track, a movable gear (904) is provided on the output end of the movable motor (903), the teeth on the movable gear (904) are engaged with the teeth on the movable track, the gun body of the glue injection gun (901) is provided on the body part of the movable motor (903), and the glue injection gun (901) is rotationally connected to the movable motor (903).

7. The building door and window installation device with air tightness detection according to claim 6, characterized in that: The glue injection row (902) includes a glue injection soft shell (909), a glue injection tube (905) is arranged in the glue injection soft shell (909), each of the glue injection tubes (905) is connected to the glue injection gun (901), an anti-blocking plate (906) is arranged on the glue injection tube (905), an anti-blocking ball (907) is arranged on the anti-blocking plate (906), the anti-blocking ball (907) is hinged to the anti-blocking plate (906), an anti-blocking spring (908) is arranged in the glue injection tube (905), and the two ends of the anti-blocking spring (908) respectively press against the anti-blocking plate (906) and the glue injection tube (905), and a detection component (10) is arranged at both ends of the glue injection soft shell (909).

8. The building door and window installation device with air tightness detection according to claim 7, characterized in that: The detection assembly (10) includes an airtight row (1001), the airtight rows (1001) are respectively arranged on both sides of the injection soft shell (909), the airtight row (1001) is provided with a detection air gun (1002), the detection air gun (1002) is connected to the air pump through a conduit, the detection air gun (1002) is provided with a detection nozzle (1003), the detection nozzle (1003) is rotatably connected to the detection air gun (1002), and the detection nozzle (1003) is provided with a bonding sheet (1004) at one end away from the detection air gun (1002). The detection nozzle (1003) is connected to the return air pipe (1005) through a conduit, a follow-up turbine (1006) is provided in the return air pipe (1005), the follow-up turbine (1006) is rotatably connected to the return air pipe (1005), a follow-up spring (1007) is provided on the follow-up turbine (1006), a trigger block (1008) is provided on the follow-up spring (1007), a trigger ring (1009) is provided in the return air pipe (1005), and the trigger block (1008) is in intermittent sliding contact with the trigger ring (1009).

Citation Information

Patent Citations

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