Light steel keel gypsum board partition wall installation assembly

By designing light steel frame gypsum board partition wall installation components and utilizing technologies such as hydraulic cylinders, electric suction cups and laser calibration lights, the problems of difficult positioning, inconvenient angle adjustment and unstable clamping during installation were solved, achieving efficient and safe gypsum board installation.

CN120759449APending Publication Date: 2025-10-10HANGZHOU MINGCHENG DECORATION ENG
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Patent Information

Application Number
CN202511215910.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

During the installation of light steel frame gypsum board partition walls, there are problems such as difficulty in manual handling and positioning, inconvenient angle adjustment, unstable clamping, and insufficient auxiliary support, which lead to low installation efficiency and safety hazards.

Method used

The installation assembly consists of a base, a scissor lift, a feeding assembly, an inner support plate mechanism, a lower buffer assembly, etc., and uses hydraulic cylinders, electric suction cups, laser calibration lights, etc. to achieve precise positioning, multi-angle adjustment, safe adsorption and stable support, and combines with the scissor lift to achieve height adjustment.

Benefits of technology

It improves the accuracy of the installation position, reduces the labor intensity of workers, ensures the stability and safety of the gypsum board during movement, reduces the risk of board damage, and expands the scope of application of the equipment.

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Abstract

The invention discloses a light steel keel gypsum board partition wall mounting assembly which comprises a base, a built-in groove is formed in the top of the base, a shear type lifter is fixedly connected to the inner wall of the built-in groove, the top of the base is connected with an upper pedestal assembly through the shear type lifter, and a feeding assembly is arranged on the inner wall of the upper pedestal assembly. The outer wall of the base is fixedly connected with a lower buffering assembly. The feeding assembly comprises an outer side frame mechanism, the bottom of the outer side frame mechanism is fixedly connected with a transmission toothed plate, the inner wall of the outer side frame mechanism is connected with a side limiting mechanism, and the inner wall of the side limiting mechanism is fixedly connected with an inner supporting plate mechanism; according to the light steel keel gypsum board partition wall mounting assembly, accurate positioning and fixing can be achieved through the arranged feeding assembly, flexible adjustment can be achieved through a hydraulic cylinder and a limiting edge clamping frame in a side limiting mechanism so as to adapt to gypsum boards with different widths, accurate alignment is conducted in combination with a laser calibration lamp, and the accuracy of the mounting position is greatly improved.
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Description

Technical Field

[0001] The invention relates to the field of light steel frame gypsum board partition walls, in particular to a light steel frame gypsum board partition wall installation assembly. Background Art

[0002] Lightweight steel-framed gypsum board partitions are the mainstream choice for interior partitions in modern buildings, gaining widespread adoption due to their lightweight, fast, economical, and flexible construction. While inferior to traditional masonry in load-bearing capacity, sound insulation limits, and perceived solidity, they offer significant advantages. With appropriate structural design and material selection, they can meet most interior space separation requirements. Choosing the appropriate frame specifications, gypsum board type, and construction method should be tailored to the specific operating environment (dry / humid) and functional requirements (sound insulation, fire protection, and suspension).

[0003] However, the installation process, especially the installation of gypsum boards, has long relied mainly on manual operation, which has many technical difficulties and efficiency bottlenecks, specifically in the following aspects: Manual handling and positioning are difficult, resulting in low installation precision: Standard gypsum boards are large, heavy, and fragile. Manually handling and lifting the boards to the installation height is not only extremely labor-intensive, but also difficult to precisely control the position and angle of the boards. This makes alignment between the boards and the light steel keel difficult, resulting in low installation efficiency and poor installation quality due to repeated adjustments.

[0004] The difficulty in adjusting the panel angle poses a safety hazard: Precisely tilting and inserting large gypsum panels between the two lightweight steel trusses is a critical and challenging aspect of installation. Manual angle control relies entirely on experience, which is not only time-consuming and labor-intensive, but also highly susceptible to damage or slipping due to improper handling.

[0005] The lack of an effective clamping and stabilizing mechanism makes the panels vulnerable to damage: Existing auxiliary tools or methods struggle to provide comprehensive and flexible clamping of the panels. Rough mechanical clamping or manual gripping can easily crush the edges of the gypsum board, while simple supports cannot effectively prevent the panels from shaking, bending, or even breaking during lifting and movement.

[0006] Insufficient auxiliary support and cushioning, and corners are easily bumped: When the lower end of the board is inserted into the keel frame, its bottom corners are very likely to collide with the ground or the keel below, causing the gypsum board to collapse and chipped, affecting the quality of the project and requiring material replacement.

[0007] Therefore, it is necessary to provide a light steel keel gypsum board partition wall installation component with better performance. Summary of the Invention

[0008] In response to the problems in the related art, the present invention proposes a light steel keel gypsum board partition wall installation assembly to overcome the above-mentioned technical problems existing in the existing related art.

[0009] To this end, the specific technical solution adopted by the present invention is as follows: a light steel keel gypsum board partition wall installation assembly, comprising a base, the top of the base is provided with a built-in groove, the inner wall of the built-in groove is fixedly connected to a scissor lift, the top of the base is connected to an upper pedestal assembly via a scissor lift, the inner wall of the upper pedestal assembly is provided with a feeding assembly, and the outer wall of the base is fixedly connected to a lower buffer assembly; The feeding assembly includes an outer frame mechanism, the bottom of the outer frame mechanism is fixedly connected to a transmission gear plate, the inner wall of the outer frame mechanism is connected to a side limit mechanism, and the inner wall of the side limit mechanism is fixedly connected to an inner support plate mechanism; The inner supporting plate mechanism includes a middle supporting plate, both ends of the middle supporting plate are fixedly connected to the side fixing plates, the top of the middle supporting plate is fixedly connected to the upper fixed lifting hydraulic cylinder, one end of the upper fixed lifting hydraulic cylinder is fixedly connected to the second electric suction cup, the bottom of the middle supporting plate is fixedly connected to the hinge, the bottom of the middle supporting plate is movably connected to the upper positioning lifting hydraulic cylinder through the hinge, and one end of the upper positioning lifting hydraulic cylinder is fixedly connected to the first electric suction cup; The lower buffer assembly includes a lower fixed plate fixedly arranged on the base, the top of the lower fixed plate is fixedly connected to a lower lifting hydraulic cylinder, one end of the lower lifting hydraulic cylinder is fixedly connected to a lower lifting platform plate, the outer wall of the lower lifting platform plate is fixedly connected to a lower telescopic hydraulic cylinder, one end of the lower telescopic hydraulic cylinder is fixedly connected to a buffer platform, and the top of the buffer platform is fixedly connected to several rubber anti-slip strips.

[0010] Preferably, the side limiting mechanism comprises a side locking frame, the top of the side locking frame is provided with an upper matching inner groove, and the inner wall of the upper matching inner groove is fixedly connected with the matching limiting mechanism; The mating limiting mechanism includes an internal regulating hydraulic cylinder fixedly arranged on the inner wall of the upper mating inner groove, one end of the internal regulating hydraulic cylinder is fixedly connected to a limiting edge frame, the inner wall of the limiting edge frame is fixedly connected to a rubber pad, and one side of the limiting edge frame is fixedly connected to a laser calibration light.

[0011] Preferably, the outer frame mechanism includes an upper base frame, the outer walls on both sides of the upper base frame are fixedly connected to outer plates, the outer walls of the outer plates are fixedly connected to an upper adjustment motor, and the output shaft of the upper adjustment motor is fixedly connected to the upper rotating shaft through a coupling.

[0012] Preferably, there are two transmission gear plates, and the two transmission gear plates are symmetrically arranged on the front and rear sides of the upper chassis.

[0013] Preferably, the outer wall of the upper rotating shaft is fixedly connected to the inner wall of the side fixing frame.

[0014] Preferably, a slot is provided on the inner wall of the side fixing frame, the inner and outer walls of the slot are plugged into the outer wall of the middle support plate, and the outer wall of the side fixing plate is fixedly connected to the outer wall of the side fixing frame by bolts.

[0015] Preferably, the upper pedestal assembly includes an upper pedestal fixedly arranged on the top of the scissor lift, and an inner sliding groove is provided on the inner wall of the upper pedestal.

[0016] Preferably, the inner wall of the upper pedestal is fixedly connected to a plurality of transmission motors, the output shafts of the transmission motors are fixedly connected to a rotating rod via a coupling, and one end of the rotating rod is fixedly connected to a transmission gear; The inner wall of the inner sliding groove is fitted and slidably connected with the outer wall of the transmission tooth plate, and the outer wall of the transmission gear is engaged and connected with the outer wall of the transmission tooth plate.

[0017] Preferably, a plurality of lower drive rollers are fixedly connected to the bottom of the base, and the plurality of lower drive rollers are symmetrically arranged on the bottom of the base.

[0018] The beneficial effects of the present invention are: 1. The light steel keel gypsum board partition wall installation component can achieve precise positioning and fixation through the set feeding component: through the hydraulic cylinder and the limit clamping frame in the side limit mechanism, it can be flexibly adjusted to adapt to gypsum boards of different widths, and combined with the laser calibration light for precise alignment, which greatly improves the accuracy of the installation position.

[0019] Flexible adjustment at multiple angles: The upward adjustment motor on the outer frame mechanism can drive the entire clamping system to rotate, so that the gypsum board can be fed between the keels at the optimal tilt angle, solving the problem of difficult to accurately control the angle during manual handling.

[0020] Safe and reliable adsorption: The inner support plate mechanism adopts upper and lower two-stage electric suction cups and hydraulic cylinders for adsorption and fixation, providing a stable and damage-free clamping force, preventing the gypsum board from slipping or breaking during movement and adjustment.

[0021] Modularity and stability: The inner support plate mechanism is connected to the side limit mechanism by plug-in and bolt fixing, and the structure is stable. The upper positioning lifting hydraulic cylinder and the first electric suction cup can form a self-locking structure, further ensuring the overall rigidity during lifting and rotation.

[0022] 2. The light steel keel gypsum board partition wall installation component can achieve a large adjustment of the working height through the scissor lift: the feeding component can be smoothly raised and lowered from a low position to a high position, greatly reducing the labor intensity of workers in carrying and lifting; Smooth operation: The shear structure itself has good stability and carrying capacity, which can ensure the smoothness of the gypsum board during lifting and prevent positioning deviation or damage to the board caused by shaking; Expand the application range of the equipment: make the device adapt to different layer height or different installation height of the partition wall project, improve the versatility of the equipment.

[0023] 3、The light steel gypsum board partition wall installation assembly can realize precise horizontal feeding through the upper seat assembly: the transmission gear meshes with the transmission tooth plate on the feeding assembly driven by the transmission motor, which can accurately control the forward and backward movement of the gypsum board in the horizontal direction, realize fine adjustment, and make the board accurately align with the cavity of the keel; Provide stable sliding track: the combination design of the inner sliding groove and the transmission tooth plate provides high rigidity guidance and support for the horizontal movement of the feeding assembly, ensuring the stability and accuracy of the movement process.

[0024] 4、The light steel gypsum board partition wall installation assembly can realize effective auxiliary support and buffering through the lower buffering assembly: when the gypsum board is inclined and ready to be installed, the telescopic buffering platform can rise and extend below the board to provide reliable auxiliary support and prevent the board from folding down or bumping the ground due to its length; Protect the board from being bumped: the rubber anti-skid strip on the top of the buffering platform can increase friction to prevent sliding and effectively buffer the impact force when contacting, greatly reducing the risk of the gypsum board being damaged by bumping during installation; Flexible adjustment of support position: the height and extension distance of the buffering platform can be flexibly adjusted through the lower lifting hydraulic cylinder and the lower telescopic hydraulic cylinder to adapt to different installation situations and board sizes. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0026] Figure 1 It is the front view of the present application; Figure 2 It is the structure schematic view of the feeding assembly of the present application; Figure 3 It is the structure schematic view of the outer side frame mechanism of the present application; Figure 4 It is the structure schematic view of the inner supporting plate mechanism of the present application; Figure 5 It is the structure schematic view of the side limiting mechanism of the present application; Figure 6It is a structure schematic view of the cooperation limiting mechanism of the application. Figure 7 It is a structure schematic view of the lower buffer assembly of the application. Figure 8 It is a structure schematic view of the upper pedestal assembly of the application.

[0027] In the figure: 1, base; 2, feeding assembly; 201, outer side frame mechanism; 2011, upper chassis; 2012, outer side plate; 2013, upper rotating shaft; 2014, upper orientation motor; 202, transmission tooth plate; 203, inner support plate mechanism; 2031, middle support plate; 2032, side fixed plate; 2033, hinge; 2034, upper positioning lifting hydraulic cylinder; 2035, first electric suction cup; 2036, upper fixed lifting hydraulic cylinder; 2037, second electric suction cup; 204, side limiting mechanism; 2041, side clamping frame; 2042, cooperation limiting mechanism; 2042-a, inner control hydraulic cylinder; 2042-b, limiting clamping side frame; 2042-c, rubber pad; 2042-d, laser calibration lamp; 2043, upper cooperation inner groove; 3, lower buffer assembly; 301, lower fixed plate; 302, lower lifting hydraulic cylinder; 303, lower lifting platform; 304, lower telescopic hydraulic cylinder; 305, buffer platform; 306, rubber anti-skid strip; 4, upper pedestal assembly; 401, upper pedestal; 402, transmission gear; 403, inner sliding groove; 5, lower driving roller; 6, scissor lift. DETAILED DESCRIPTION

[0028] To further illustrate the embodiments, the application provides drawings, which are part of the disclosure of the application, mainly used to illustrate the embodiments, and can be explained in conjunction with the related description of the specification to understand the operating principle of the embodiments. With reference to these contents, those skilled in the art should understand other possible implementations and advantages of the application. The components in the figure are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0029] According to the embodiments of the application, a light steel keel gypsum board partition wall mounting assembly is provided.

[0030] Embodiment one; As Figures 1-8 shown, the light steel keel gypsum board partition wall mounting assembly according to the embodiments of the application includes a base 1, the top of the base 1 is provided with a built-in groove, the inner wall of the built-in groove is fixedly connected with a scissor lift 6, the top of the base 1 is connected with an upper pedestal assembly 4 through the scissor lift 6, the inner wall of the upper pedestal assembly 4 is provided with a feeding assembly 2, and the outer wall of the base 1 is fixedly connected with a lower buffer assembly 3. The feeding assembly 2 includes an outer frame mechanism 201, the bottom of the outer frame mechanism 201 is fixedly connected to a transmission gear plate 202, the inner wall of the outer frame mechanism 201 is connected to a side limit mechanism 204, and the inner wall of the side limit mechanism 204 is fixedly connected to an inner support plate mechanism 203; The inner support plate mechanism 203 includes a middle support plate 2031, with side fixing plates 2032 fixedly connected to both ends of the middle support plate 2031, an upper fixed lifting hydraulic cylinder 2036 fixedly connected to the top of the middle support plate 2031, one end of which is fixedly connected to a second electric suction cup 2037, and a hinge 2033 fixedly connected to the bottom of the middle support plate 2031. The bottom of the middle support plate 2031 is movably connected to an upper positioning lifting hydraulic cylinder 2034 via the hinge 2033, and one end of the upper positioning lifting hydraulic cylinder 2034 is fixedly connected to a first electric suction cup 2035. The lower buffer assembly 3 includes a lower fixed plate 301 fixedly set on the base 1, the top of the lower fixed plate 301 is fixedly connected to the lower lifting hydraulic cylinder 302, one end of the lower lifting hydraulic cylinder 302 is fixedly connected to the lower lifting platform 303, the outer wall of the lower lifting platform 303 is fixedly connected to the lower telescopic hydraulic cylinder 304, one end of the lower telescopic hydraulic cylinder 304 is fixedly connected to the buffer platform 305, and the top of the buffer platform 305 is fixedly connected to several rubber anti-slip strips 306.

[0031] The side limiting mechanism 204 includes a side locking frame 2041. An upper matching inner groove 2043 is formed on the top of the side locking frame 2041. The inner wall of the upper matching inner groove 2043 is fixedly connected to the matching limiting mechanism 2042. The cooperating limiting mechanism 2042 includes an internal regulating hydraulic cylinder 2042-a fixedly arranged on the inner wall of the upper cooperating inner groove 2043, one end of the internal regulating hydraulic cylinder 2042-a is fixedly connected to a limiting edge frame 2042-b, the inner wall of the limiting edge frame 2042-b is fixedly connected to a rubber pad 2042-c, and one side of the limiting edge frame 2042-b is fixedly connected to a laser calibration light 2042-d.

[0032] The outer frame mechanism 201 includes an upper base frame 2011, and the outer walls on both sides of the upper base frame 2011 are fixedly connected to the outer plates 2012. The outer walls of the outer plates 2012 are fixedly connected to the upper adjustment motor 2014, and the output shaft of the upper adjustment motor 2014 is fixedly connected to the upper rotating shaft 2013 through a coupling.

[0033] There are two transmission gear plates 202 , and the two transmission gear plates 202 are symmetrically arranged on the front and rear sides of the upper chassis 2011 .

[0034] The outer wall of the upper rotating shaft 2013 is fixedly connected to the inner wall of the side fixing frame 2041 .

[0035] The inner wall of the side clamping frame 2041 is provided with a slot, the inner wall and the outer wall of the slot are inserted with the outer wall of the middle support plate 2031, and the outer wall of the side fixing plate 2032 is fixedly connected with the outer wall of the side clamping frame 2041 through bolts.

[0036] The upper seat assembly 4 comprises an upper seat 401 fixedly arranged at the top of the scissor lift 6, and the inner wall of the upper seat 401 is provided with an inner sliding groove 403.

[0037] The inner wall of the upper seat 401 is fixedly connected with a plurality of transmission motors, the output shaft of the transmission motor is fixedly connected with a rotating rod through a shaft coupling, one end of the rotating rod is fixedly connected with a transmission gear 402. The inner wall of the inner sliding groove 403 is slidingly connected with the outer wall of the transmission tooth plate 202, and the outer wall of the transmission gear 402 is connected with the outer wall of the transmission tooth plate 202.

[0038] The bottom of the base 1 is fixedly connected with a plurality of lower drive rollers 5, and the plurality of lower drive rollers 5 are symmetrically arranged at the bottom of the base 1.

[0039] In the embodiment, the feeding assembly 2 can realize accurate positioning and fixing: the hydraulic cylinder 2042-a and the limiting clamping frame 2042-b in the side limiting mechanism 204 can be flexibly adjusted to adapt to gypsum boards of different widths, and the accurate alignment is realized by combining the laser calibration lamp 2042-d, which greatly improves the accuracy of the installation position; multi-angle flexible adjustment: the upper adjusting motor 2014 on the outer side frame mechanism 201 can drive the entire clamping system to rotate, so that the gypsum board can be fed into the keel at the best inclination angle, solving the problem that the angle cannot be accurately controlled during manual transportation; safe and reliable adsorption: the inner supporting plate mechanism 203 adopts upper and lower two-stage electric suction cups 2035, 2037 to cooperate with the hydraulic cylinder for adsorption and fixing, providing stable and non-damaging clamping force, avoiding the sliding or damage of the gypsum board during movement and adjustment; modularity and stability: the inner supporting plate mechanism is connected with the side limiting mechanism through plug-in and bolt fixing, the structure is stable, and the upper positioning lifting hydraulic cylinder 2034 and the first electric suction cup 2035 can form a self-locking structure, further ensuring the overall rigidity during lifting and rotation; In the embodiment, the scissor lift 6 can greatly adjust the working height: the feeding assembly can be conveniently lifted from the low position to the design height corresponding to the gypsum board installation height, greatly reducing the labor intensity of the workers during lifting; stable operation: the scissor structure itself has good stability and carrying capacity, which can ensure the stability of the gypsum board during lifting and prevent positioning deviation or damage to the board caused by shaking; expand the application range of the equipment: the device can adapt to different floor heights or different installation heights of the partition wall project, improving the universality of the equipment; In this embodiment, precise horizontal feeding can be achieved by setting up the upper pedestal assembly 4: the transmission motor drives the transmission gear 402 to engage with the transmission tooth plate 202 on the feeding assembly, which can accurately control the forward and backward movement of the gypsum board in the horizontal direction, and achieve fine-tuning to make the board accurately aligned with the keel cavity; provide a stable sliding track: the matching design of the inner slide groove 403 and the transmission tooth plate 202 provides high-rigidity guidance and support for the horizontal movement of the feeding assembly, ensuring the smoothness and precision of the movement process.

[0040] Embodiment 2; On the basis of the first embodiment, the preferred embodiment of the light steel keel gypsum board partition wall installation assembly provided by the present invention is as follows: Figures 1-8 As shown: In this embodiment, the lower buffer assembly 3 is provided to achieve effective auxiliary support and buffering: when the gypsum board is tilted for installation, the retractable buffer platform 305 can rise and extend under the board to provide reliable auxiliary support and prevent the board from bending down or hitting the ground due to being too long; Protect the board from bumps and collisions: The rubber anti-slip strip 306 on the top of the buffer table can not only increase friction to prevent sliding, but also effectively buffer the impact force during contact, greatly reducing the risk of the edges and corners of the gypsum board being bumped and damaged during installation; Flexible adjustment of the support position: Through the lower lifting hydraulic cylinder 302 and the lower telescopic hydraulic cylinder 304, the height and extension distance of the buffer table can be flexibly adjusted to adapt to different installation scenarios and plate sizes.

[0041] In order to facilitate understanding of the above technical solutions of the present invention, the working principle or operation mode of the present invention in actual process is described in detail below.

[0042] In actual application, after the light steel keel is fixed and installed, the gypsum board needs to be inserted into the light steel keel frame: start the scissor lift 6 to lower the height of the feeding assembly 2 and the upper pedestal assembly 4 to the lowest position, and then place the gypsum board to be installed in the middle, start and control the use of the internal regulating hydraulic cylinder 2042-a to adjust the distance between the limiting edge frames 2042-b on both sides according to the width of the gypsum board, and then insert the gypsum board into the limiting edge frames 2042-b to complete the preliminary limiting of the gypsum board, and then start the upper fixed lifting hydraulic cylinder 2036 to raise the height of the second electric suction cup 2037, and turn on the second electric suction cup 2037 to adsorb and position the bottom of the gypsum board to complete the position fixation; Then, move the device to the vicinity of the light steel keel frame, then turn on the laser calibration light 2042-d to generate a wiring harness, and use the wiring harness to compare the position of the limiting edge frame 2042-b on the side of the transmitting wiring harness with the position of the keel frame on the side of the gypsum board to be installed, and control the use of the transmission motor, and drive the transmission gear 402 to rotate by controlling the transmission motor, and the transmission gear 402 is engaged with the transmission gear plate 202, thereby sliding along the inner wall of the upper pedestal 401 to adjust the position of the outer frame mechanism 201, the side limiting mechanism 204, the inner support plate mechanism 203 and the gypsum board, so that the side limiting edge frame 2042-b is as close to the side keel frame as possible, and then slightly rotate the side to adjust the position of the device, so that the gypsum board can be easily inserted into the keel frame installation position at an angle; Then, the upward adjustment motor 2014 is started and controlled as needed to drive the upper rotating shaft 2013 to rotate, thereby slowly rotating the outer frame mechanism 201, the side limit mechanism 204, the inner supporting plate mechanism 203 and the gypsum board downward. When the gypsum board is rotated to a suitable angle for lowering, the upward adjustment motor 2014 is stopped. At this time, the upper positioning lifting hydraulic cylinder 2034 and the first electric suction cup 2035 are vertically arranged. The upper positioning lifting hydraulic cylinder 2034 is started and controlled to make the first electric suction cup 2035 contact with the upper base frame 2011, and the first electric suction cup 2035 is controlled to be tightly adsorbed with the upper base frame 2011, thereby improving the stability between the inner supporting plate mechanism 203 and the outer frame mechanism 201, thereby ensuring the stability of the gypsum board and preventing it from sliding automatically. According to the bottom position of the gypsum board, the lower lifting hydraulic cylinder 302 is started and controlled to adjust the use height of the buffer platform 305 and the rubber anti-slip strip 306, and then the lower telescopic hydraulic cylinder 304 is started and controlled to push the buffer platform 305 and the rubber anti-slip strip 306 downward. The setting of the push buffer platform 305 and the rubber anti-slip strip 306 can provide auxiliary support and buffering effect for the bottom of the gypsum board, thereby reducing vibration and damage to the gypsum board; Insert the bottom end of the gypsum board into the light steel frame to be installed, start and control the internal regulating hydraulic cylinder 2042-a to shrink the distance between the two side limit clamp frames 2042-b, and control the second electric suction cup 2037 to contact the gypsum board for adsorption, then control the upper fixed lifting hydraulic cylinder 2036 to descend and retract the second electric suction cup 2037, and manually assist in making the gypsum board slide smoothly into the light steel frame, and then fine-tune the position of the gypsum board inside the light steel frame to complete the operation of inserting the gypsum board into the light steel frame, and then fix the gypsum board and the light steel frame with pneumatic nails.

[0043] In summary, with the aid of the above-mentioned technical solution of the present invention, the light steel keel gypsum board partition wall installation component, the light steel keel gypsum board partition wall installation component, can achieve precise positioning and fixation through the set feeding component 2: through the hydraulic cylinder 2042-a and the limiting clamping frame 2042-b in the side limit mechanism 204, it can be flexibly adjusted to adapt to gypsum boards of different widths, and combined with the laser calibration light 2042-d for precise alignment, which greatly improves the accuracy of the installation position; flexible adjustment at multiple angles: the upward adjustment motor 2014 on the outer frame mechanism 201 can drive the entire clamping system to rotate, so that the gypsum board can be fed between the keels at the best inclination angle, solving the problem that it is difficult to accurately control the angle during manual handling; safe and reliable adsorption: the inner support The plate mechanism 203 adopts upper and lower two-stage electric suction cups 2035, 2037 in conjunction with the hydraulic cylinder for adsorption and fixation, providing a stable and non-damaging clamping force, and preventing the gypsum board from slipping or breaking during movement and adjustment; modularity and stability: the inner plate support mechanism is connected to the side limit mechanism by plug-in and bolt fixing, the structure is stable, and the upper positioning lifting hydraulic cylinder 2034 and the first electric suction cup 2035 can form a self-locking structure, further ensuring the overall rigidity during lifting and rotation; the scissor lift 6 is set up to achieve a large adjustment of the working height: the feeding assembly can be smoothly lifted from a low position to facilitate workers to load the gypsum board to a high position corresponding to the designed height for gypsum board installation, which greatly reduces the workers' handling and lifting labor intensity. ; Smooth operation: The scissor structure itself has good stability and load-bearing capacity, which can ensure that the gypsum board is smooth and without shaking during the lifting process, and prevent positioning deviation or board damage caused by shaking; Expand the scope of application of the equipment: The device can adapt to partition projects with different floor heights or different installation heights, which improves the versatility of the equipment; Through the set upper pedestal assembly 4, precise horizontal feeding can be achieved: The transmission motor drives the transmission gear 402 to engage with the transmission tooth plate 202 on the feeding assembly, which can accurately control the horizontal forward and backward movement of the gypsum board and achieve fine-tuning, so that the board is accurately aligned with the keel cavity; Provide a stable sliding track: The matching design of the inner slide groove 403 and the transmission tooth plate 202 provides high rigidity for the horizontal movement of the feeding assembly The guidance and support ensure the smooth and precise movement process; the lower buffer component 3 is set to achieve effective auxiliary support and buffering: when the gypsum board is tilted for installation, the retractable buffer platform 305 can rise and extend to the bottom of the board, providing reliable auxiliary support to prevent the board from bending down or hitting the ground due to being too long; protect the board from bumping: the rubber anti-slip strip 306 on the top of the buffer platform can not only increase the friction to prevent sliding, but also effectively buffer the impact force during contact, greatly reducing the risk of the corners of the gypsum board being bumped and damaged during installation; flexibly adjust the support position: through the lower lifting hydraulic cylinder 302 and the lower telescopic hydraulic cylinder 304, the height and extension distance of the buffer platform can be flexibly adjusted to adapt to different installation scenarios and board sizes.

[0044] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A light steel keel gypsum board partition wall installation assembly, comprising a base (1), characterized in that: The top of the base (1) is provided with a built-in groove, the inner wall of the built-in groove is fixedly connected to a scissor lift (6), the top of the base (1) is connected to an upper pedestal assembly (4) via the scissor lift (6), the inner wall of the upper pedestal assembly (4) is provided with a feeding assembly (2), and the outer wall of the base (1) is fixedly connected to a lower buffer assembly (3); The feeding assembly (2) comprises an outer frame mechanism (201), the bottom of the outer frame mechanism (201) is fixedly connected to a transmission tooth plate (202), the inner wall of the outer frame mechanism (201) is connected to a side limit mechanism (204), and the inner wall of the side limit mechanism (204) is fixedly connected to an inner support plate mechanism (203); The inner support plate mechanism (203) comprises a middle support plate (2031), both ends of the middle support plate (2031) are fixedly connected to side fixing plates (2032), the top of the middle support plate (2031) is fixedly connected to an upper fixed lifting hydraulic cylinder (2036), one end of the upper fixed lifting hydraulic cylinder (2036) is fixedly connected to a second electric suction cup (2037), the bottom of the middle support plate (2031) is fixedly connected to a hinge (2033), the bottom of the middle support plate (2031) is movably connected to an upper positioning lifting hydraulic cylinder (2034) via the hinge (2033), and one end of the upper positioning lifting hydraulic cylinder (2034) is fixedly connected to a first electric suction cup (2035); The lower buffer assembly (3) comprises a lower fixed plate (301) fixedly arranged on the base (1); the top of the lower fixed plate (301) is fixedly connected to a lower lifting hydraulic cylinder (302); one end of the lower lifting hydraulic cylinder (302) is fixedly connected to a lower lifting platform (303); the outer wall of the lower lifting platform (303) is fixedly connected to a lower telescopic hydraulic cylinder (304); one end of the lower telescopic hydraulic cylinder (304) is fixedly connected to a buffer platform (305); and the top of the buffer platform (305) is fixedly connected to a plurality of rubber anti-slip strips (306).

2. A light steel keel gypsum board partition wall installation assembly according to claim 1, characterized in that: The side limiting mechanism (204) comprises a side locking frame (2041), an upper matching inner groove (2043) is provided on the top of the side locking frame (2041), and a matching limiting mechanism (2042) is fixedly connected to the inner wall of the upper matching inner groove (2043); The matching limiting mechanism (2042) comprises an internal regulating hydraulic cylinder (2042-a) fixedly arranged on the inner wall of the upper matching inner groove (2043), one end of the internal regulating hydraulic cylinder (2042-a) is fixedly connected to a limiting edge frame (2042-b), the inner wall of the limiting edge frame (2042-b) is fixedly connected to a rubber pad (2042-c), and one side of the limiting edge frame (2042-b) is fixedly connected to a laser calibration light (2042-d).

3. The light steel keel gypsum board partition wall installation assembly according to claim 1, characterized in that: The outer frame mechanism (201) comprises an upper base frame (2011), outer plates (2012) are fixedly connected to outer walls on both sides of the upper base frame (2011), an upper direction adjustment motor (2014) is fixedly connected to the outer walls of the outer plates (2012), and an output shaft of the upper direction adjustment motor (2014) is fixedly connected to an upper rotating shaft (2013) via a coupling.

4. A light steel keel gypsum board partition wall installation assembly according to claim 3, characterized in that: There are two transmission tooth plates (202), and the two transmission tooth plates (202) are symmetrically arranged on the front and rear sides of the upper chassis (2011).

5. The light steel keel gypsum board partition wall installation assembly according to claim 3, characterized in that: The outer wall of the upper rotating shaft (2013) is fixedly connected to the inner wall of the side locking frame (2041).

6. The light steel keel gypsum board partition wall installation assembly according to claim 2, characterized in that: The inner wall of the side fixing frame (2041) is provided with a slot, the inner and outer walls of the slot are plugged into the outer wall of the middle support plate (2031), and the outer wall of the side fixing plate (2032) is fixedly connected to the outer wall of the side fixing frame (2041) by bolts.

7. The light steel keel gypsum board partition wall installation assembly according to claim 1, characterized in that: The upper pedestal assembly (4) comprises an upper pedestal (401) fixedly arranged on the top of the scissor lift (6), and an inner sliding groove (403) is provided on the inner wall of the upper pedestal (401).

8. The light steel keel gypsum board partition wall installation assembly according to claim 7, characterized in that: Several transmission motors are fixedly connected to the inner wall of the upper pedestal (401), and the output shafts of the transmission motors are fixedly connected to rotating rods via couplings, and one end of the rotating rods is fixedly connected to a transmission gear (402); The inner wall of the inner slide groove (403) is fitted and slidably connected to the outer wall of the transmission tooth plate (202), and the outer wall of the transmission gear (402) is engaged and connected to the outer wall of the transmission tooth plate (202).

9. The light steel keel gypsum board partition wall installation assembly according to claim 1, characterized in that: The bottom of the base (1) is fixedly connected to a plurality of lower drive rollers (5), and the plurality of lower drive rollers (5) are symmetrically arranged on the bottom of the base (1).