Construction device and construction method for building partition wall

Through the clamping, flipping and jacking functions of the building partition construction device, the risks of manual collaboration and fitting accuracy in the installation of lightweight partition boards are solved, the automated installation of lightweight partition boards is realized, and the installation safety and project quality are improved.

CN115822281BActive Publication Date: 2025-09-09SHANGHAI JILI CONSTRUCTION DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202211581594.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-08
Publication Date
2025-09-09
Estimated Expiration
2042-12-08

AI Technical Summary

Technical Problem

The installation of lightweight partition boards requires the collaboration of two workers, which poses a risk of overturning and causing injuries. After erection, the fitting accuracy and gap control are difficult, affecting the quality and progress of the project.

Method used

A construction device for building partition walls is used, including a frame, a support plate, a turning device, a jacking and sliding device, and a clamping device. The automatic installation of lightweight partition boards is achieved through the clamping, turning, positioning, and jacking functions.

Benefits of technology

It avoids the risk of overturning during manual installation, ensures the precise fit and uniform gaps between the lightweight partition boards and the installed boards, and improves installation efficiency and project quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of partition wall construction, and more specifically, to a construction device and method for building partition walls, comprising a vehicle frame, a support plate, a turning device, a lifting and sliding device, and a clamping device. The vehicle frame is provided with traveling wheels for movement at the bottom, a support plate is fixedly mounted on the upper side of the vehicle frame, a turning device is mounted on the support plate, a lifting and sliding device is mounted on the upper side of the turning device, and a clamping device is fixedly mounted on the upper side of the lifting and sliding device. The present invention can fix and clamp lightweight partition wall panels, flip and erect the partition wall panels, adjust them up and down, and push them laterally, thereby avoiding the danger of overturning during manual installation of the partition wall panels. Furthermore, the lightweight partition wall panels can be accurately and tightly fitted with already installed lightweight partition wall panels during installation, ensuring uniform gap widths.
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Description

Technical Field

[0001] The present invention relates to the technical field of partition wall construction, in particular to a construction device and a construction method for a building partition wall. Background Art

[0002] Lightweight partition boards, also known as autoclaved aerated lightweight concrete boards, are a new type of energy-saving building product. They have the advantages of light weight, good sound insulation and thermal insulation effects, low cost, simple installation process, short construction period, industrialized production, and industrialized installation. At present, lightweight partition boards are widely used in the construction of interior and exterior walls of high-rise frame buildings and industrial plants.

[0003] Lightweight partition boards are generally installed and constructed manually. During the installation process, workers will first clean the construction site and plan and draw the positioning baseline, and then move the lightweight partition boards from the temporary placement site to the installation site. Before installation, workers will clean the installation surface of the lightweight partition boards and hammer in pipe clamps, and apply bonding mortar on the installation surface of the lightweight partition boards after cleaning. During installation, two workers are required to move the lightweight partition boards at the same time to make the lightweight partition boards stand upright in front of the installation position, and gradually move them so that the convex surface of the lightweight partition boards is attached to the concave surface of the installed lightweight partition boards, and then Wooden wedges are inserted into the bottom of the lightweight partition board for support, and nails are used to nail the top pipe clamps of the lightweight partition board to the top of the wall with a nail gun. Finally, mortar is filled in the gap between the bottom of the lightweight partition board and the ground to complete the installation. The above lightweight partition board construction process has the following problems: 1. The erection operation of the lightweight partition board requires two workers at the same time. There is a risk of overturning and injuring workers during erection. Moreover, after erection, the lightweight partition board needs to be pushed manually to fit the lightweight partition board to the wall or the installed lightweight partition board. The fitting position accuracy and fitting gap of the lightweight partition board cannot be controlled, which affects the quality of the project.

[0004] 2. After the convex surface of the lightweight partition board is fitted with the concave surface of the installed lightweight partition board, workers need to continue to support it before it is completely fixed. In addition, when wood chips are stuffed into the bottom of the lightweight partition board, workers need to lift the erected lightweight partition board. When lifting it, the convex surface of the lightweight partition board is easy to separate from the concave surface of the installed lightweight partition board. The lightweight partition board needs to be aligned with the installed lightweight partition board again, which affects the progress of the project. Summary of the Invention

[0005] The technical solution adopted by the present invention to solve the above technical problems is: a building partition wall construction device, including a frame and a support plate, the bottom of the frame is equipped with walking wheels for movement, the support plate is fixedly installed on the side of the frame, the side of the support plate is equipped with a turning device, the turning device is equipped with a jacking sliding device, and the side of the jacking sliding device is fixedly installed with a clamping device.

[0006] A rectangular groove is provided on the left side of the support plate, a guide assembly is installed on the left end of the support plate, and positioning assemblies are respectively provided on the front side wall and the rear side wall of the rectangular groove of the support plate. A sliding groove cooperating with the guide assembly and a telescopic groove cooperating with the positioning assembly are provided on the support plate.

[0007] The jacking sliding device includes a jacking sliding assembly, which is arranged on the lower side of the flap. The jacking sliding assembly passes through the flap and is connected to the jacking sliding plate through a rectangular groove. A limiting assembly is fixed on the right end of the jacking sliding plate. The jacking sliding assembly is pushed by the pushing force of the pushing cylinder to slide on the flap sliding groove, and the fixed end of the pushing cylinder is fixed on the left side of the lower side of the flap.

[0008] The clamping device includes a clamping seat plate, which is fixedly mounted on the side surface of the lifting sliding plate. A rectangular groove is opened in the middle of the clamping seat plate and an intermediate block is fixed in the rectangular groove. The bidirectional screw passes through the intermediate block and is mounted in the rectangular groove of the clamping seat plate. The front and rear ends of the bidirectional screw extend out of the clamping seat plate respectively. A rotating disk is installed at the front end of the bidirectional screw. A clamping block is installed on the bidirectional screw. A connecting portion that cooperates with the thread of the bidirectional screw is provided on the lower side of the clamping block. The inner side of the clamping block is connected to the clamping plate by screw locking. A support assembly is installed on the clamping plate on the left side.

[0009] The transmission gear is connected to the driving motor through a chain, and a transmission block is installed on the transmission block through a threaded joint on the lead screw. The transmission block is located in the convex groove of the slide rail, and a hinged protrusion is provided on the upper end of the transmission block and extends out of the upper side of the slide rail. The transmission block is hinged to the left end of the flip plate, and a sliding groove and a rectangular through groove are provided on the flip plate. The flip plate is hinged to the left end of the flip frame at the middle position between the front side and the rear side, and the right end of the flip frame is hinged to the fixed block. The fixed block is fixedly mounted on the right side of the support plate, and a pulley plate is provided on the upper side of the fixed block. The left side of the pulley plate is slidably connected to the flip frame, and the right side of the pulley plate is hinged to the inner side of the fixed block.

[0010] Furthermore, the guide assembly includes a guide wheel, which is rotatably mounted on a sliding block, and the sliding block is slidably mounted in a sliding groove at the left end of the support plate. A return spring is connected between the sliding block and the side wall of the sliding groove of the support plate.

[0011] Furthermore, the positioning assembly includes a shell, which is slidably installed in the telescopic slot on the left side of the support plate, a push spring is connected between the shell and the lower wall of the telescopic slot of the support plate, the outer end face of the shell is an inclined surface, and rolling wheels are distributed on the inclined surface of the shell, a positioning block is provided on the inclined surface of the shell, the positioning block is rotatably connected to the shell, and a tension spring is fixed between the positioning block and the shell.

[0012] Furthermore, the jacking sliding assembly includes a driven connecting rod, the right end of the driven connecting rod is hinged to the jacking sliding plate, the left end of the driven connecting rod is hinged to the fixed plate, the fixed plate is a frame structure and sliding grooves are respectively provided on the front and rear side walls inside, the driven connecting rod crosses and is hinged to the active connecting rod, the left end of the active connecting rod is hinged to the jacking sliding plate, the right end of the active connecting rod is hinged to the push rod, both ends of the push rod are slidably installed in the sliding grooves on the front and rear side walls inside the fixed plate, the push rod is connected to the jacking end of the jacking cylinder, the fixed end of the jacking cylinder is fixed on the right side wall of the fixed plate, and the right side of the fixed plate is connected to the jacking end of the push cylinder.

[0013] Furthermore, the limit assembly includes a shell, the shell is fixed at the right end of the lifting sliding plate, a limit block is installed on the shell, the upper end of the limit block extends out of the upper side of the shell, a support spring is connected between the limit block and the shell, the upper end of the limit block is a slope structure and a roller is installed on the slope.

[0014] Furthermore, the support assembly includes a guide rod, a threaded structure is provided on the right side of the guide rod, the right end of the guide rod passes through the clamping plate and a nut is locked at the threaded structure, the left end of the guide rod is fixedly connected to the guard plate, a damping spring is provided between the guard plate and the clamping plate, and the damping spring is sleeved and installed on the left side of the guide rod.

[0015] A construction device and method for building partition walls are used to install partition wall panels, including the following steps:

[0016] Step 1: Site cleaning: First, clean and level the wall, floor, and top of the wall where the lightweight partition board will be installed, and position and lay out the installation location of the partition board;

[0017] Step 2: Clamping and fixing: Place the lightweight partition board on the clamping base plate, and clamp and fix the lightweight partition board by shaking the rotating disk. After fixing, clean the convex surface of the lightweight partition board and apply bonding mortar;

[0018] Step 3: Flip the vertical plate: start the drive motor to drive the transmission gear, the transmission gear drives the lead screw to rotate, the rotating lead screw drives the transmission slider to move to the right, and the transmission slider drives the left end of the flap to move to the right, so that the flap is flipped up when driven;

[0019] Step 4: Positioning and installation: Under the guidance of the guide wheel, push the present invention so that the rectangular groove on the left side of the support plate is aligned with the installed lightweight partition board and moves. After moving a certain distance, the present invention is blocked by the positioning block, and the pushing of the present invention is stopped and the first cylinder is started so that the upper end of the lightweight partition board is pressed against the top of the wall. The lifting cylinder is started to drive the lifting sliding plate to be ejected, and then the convex surface of the erected lightweight partition board is pressed against the concave surface of the installed lightweight partition board. The lightweight partition board is fixed with nails using a nail gun, and wooden wedges are hammered into the bottom of the lightweight partition board.

[0020] Step 5, filling and finishing: flatten the bonding mortar squeezed out of the installation gap of the lightweight partition board, fill the bonding mortar at the bottom of the lightweight partition board, rotate the rotating disk to loosen the clamping device on the lightweight partition board, and withdraw the present invention to complete the installation.

[0021] The beneficial effects of the present invention are:

[0022] First, the present invention can fix and clamp the lightweight partition board, and can flip and erect the clamped lightweight partition board. In addition, the erected lightweight partition board can be adjusted up and down and pushed laterally, thereby avoiding the danger of overturning when manually installing the partition board. In addition, the lightweight partition board can be accurately and tightly fitted with the installed lightweight partition board during installation, and the width of the joint gap can be uniform.

[0023] Second, the clamping device of the present invention can fix and clamp the lightweight partition wall panels. The lightweight partition wall panels are placed on the clamping base plate and clamped by the clamping plate. The support assembly will move inward with the clamping plate to support the lightweight partition wall panels and prevent the lightweight partition wall panels from tilting or collapsing and injuring people during subsequent installation operations.

[0024] Third, the flipping device of the present invention can flip and erect the lightweight partition wall board. Driven by the driving motor, the transmission slider moves to the right and drives the flip plate to flip up, thereby flipping and erecting the lightweight partition wall board fixed by the clamping device, making the vertical board easier to install and adjust later.

[0025] Fourth, the lifting and sliding device of the present invention can adjust the vertical position and push the erected lightweight partition board laterally. The fixed plate can slide in the sliding groove on the lower side of the flap under the push of the first cylinder, thereby realizing the vertical position adjustment of the lightweight partition board. The lifting cylinder can drive the active connecting rod and, with the cooperation of the driven connecting rod, push the lifting and sliding plate out to push the lightweight partition board outward, thereby pressing the convex surface of the erected lightweight partition board against the concave surface of the installed lightweight partition board.

[0026] Fifth, the positioning assembly of the present invention can play a positioning role when installing lightweight partition boards. The guide wheel can guide the present invention to fit with the installed lightweight partition board. When the concave surface of the installed partition board contacts the positioning block, the positioning block will block the present invention so that the present invention cannot be pushed further, thereby determining the installation position and ensuring uniform installation gaps.

[0027] 6. The limiting assembly of the present invention can limit the lightweight partition board when it is placed. The lightweight partition board is pushed from the right pulley plate into the clamping device of the present invention. When the right end of the lightweight partition board is pushed away to the left side of the limiting block, the limiting block is pushed up by the fourth spring. At this time, the pushing of the lightweight partition board is stopped to complete the placement. The rollers on the pulley plate and the inclined surface of the limiting block can make the lightweight partition board pushed smoother. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] The present invention will be further described below with reference to the accompanying drawings and examples.

[0029] Figure 1 It is a schematic diagram of the three-dimensional structure of the building partition wall construction device of the present invention in a state of clamping a lightweight partition wall panel.

[0030] Figure 2 It is a schematic diagram of the three-dimensional structure of the slide rail of the present invention in a half-section state.

[0031] Figure 3 It is a schematic diagram of the three-dimensional structure of the clamping device of the present invention.

[0032] Figure 4 It is a schematic diagram of the cross-section structure of the limiting component of the present invention.

[0033] Figure 5 It is a schematic diagram of the structure of the push cylinder, housing and push spring of the present invention.

[0034] Figure 6 It is a schematic diagram of the cutaway structure of the positioning component of the present invention.

[0035] Figure 7 It is a structural schematic diagram of the jacking sliding device of the present invention when the flap and the jacking sliding plate are in a half-section state.

[0036] Figure 8 It is a structural schematic diagram of the jacking sliding device of the present invention when the flip plate, the jacking sliding plate and the fixed plate are in a half-section state.

[0037] Figure 9 It is a three-dimensional structural diagram of the fixing plate, the lifting cylinder, the driven connecting rod, the active connecting rod and the push rod of the present invention.

[0038] Figure 10 It is a schematic diagram of the three-dimensional structure of the flap part of the present invention.

[0039] Figure 11 It is a three-dimensional structural diagram of a lightweight partition board.

[0040] In the figure: 1. Frame; 2. Support plate; 21. Guide assembly; 211. Guide wheel; 212. Slide block; 213. Return spring; 22. Positioning assembly; 221. Housing; 222. Push spring; 223. Rolling wheel; 224. Positioning block; 225. Tension spring; 3. Turning device; 31. Slide rail; 32. Lead screw; 33. Transmission gear; 34. Transmission slider; 35. Flip plate; 36. Turning frame; 37. Fixed block; 38. Pulley plate; 4. Lifting slide device; 41. Lifting slide assembly ; 411. Driven connecting rod; 412. Fixed plate; 413. Active connecting rod; 414. Push rod; 415. Lifting cylinder; 42. Lifting sliding plate; 43. Limiting assembly; 431. Shell; 432. Limiting block; 433. Support spring; 44. Pushing cylinder; 5. Clamping device; 51. Clamping seat plate; 53. Intermediate block; 54. Bidirectional screw; 55. Rotating disk; 56. Clamping block; 57. Clamping plate; 58. Support assembly; 581. Guide rod; 582. Guard plate; 583. Damping spring. DETAILED DESCRIPTION

[0041] Embodiments of the present invention will be described with reference to the accompanying drawings. To ensure clarity and convenience, the width of lines or the size of elements in the illustrations may be exaggerated. Furthermore, the terms used below are defined based on their functions within the present invention and may vary depending on the user's or operator's intent or customary practices. Therefore, these terms are defined throughout this specification.

[0042] See Figure 1 and Figure 11 A construction device and method for building partition walls include a vehicle frame 1, a support plate 2, a turning device 3, a lifting and sliding device 4, and a clamping device 5. The bottom of the vehicle frame 1 is equipped with walking wheels for movement, the upper side of the vehicle frame 1 is fixedly equipped with a support plate 2, the upper side of the support plate 2 is equipped with a turning device 3, the lifting and sliding device 4 is installed on the turning device 3, and the upper side of the lifting and sliding device 4 is fixedly equipped with a clamping device 5.

[0043] See Figure 1 and Figure 11 The building partition wall construction device of the present invention can center and clamp the lightweight partition wall board and then erect it, and can position and fit the erected lightweight partition wall board installation convex surface with the installed lightweight partition wall board installation concave surface. Specifically, the lightweight partition wall board is placed on the present invention and clamped and fixed by the clamping device 5. The walking wheels at the bottom of the frame 1 can facilitate the transportation of the lightweight partition wall. Starting the flipping device 3 of the present invention can flip and erect the clamped lightweight partition wall board, and can adjust the erected lightweight partition wall board up and down and push and move it laterally, so that the lightweight partition wall board can be tightly fitted with the installed lightweight partition wall board during installation, and the width of the fitting gap of the lightweight partition wall board is guaranteed to be uniform.

[0044] It should be noted that the installation surface of the lightweight partition board is divided into convex and concave surfaces. The protruding part of the convex surface of the lightweight partition board is smaller than the groove of the concave surface. Before installation, mortar or special adhesive needs to be applied on the convex surface of the lightweight partition board.

[0045] See Figure 2 and Figure 3 The clamping device 5 includes a clamping seat plate 51, which is symmetrically fixed on the upper side of the jacking sliding plate 42. A rectangular groove is opened in the middle of the clamping seat plate 51 and an intermediate block 53 is fixed in the rectangular groove. The bidirectional screw 54 passes through the intermediate block 53 and is installed in the rectangular groove of the clamping seat plate 51. The front and rear ends of the bidirectional screw 54 extend out of the clamping seat plate 51 respectively. A rotating disk 55 is installed at the front end of the bidirectional screw 54. A clamping block 56 is installed on the bidirectional screw 54. The lower side of the clamping block 56 has a connecting part that is threadedly matched with the bidirectional screw 54. The inner side of the clamping block 56 is connected to a clamping plate 57 by screw locking. A support assembly 58 is installed on the clamping plate 57 on the left.

[0046] See Figure 2 and Figure 3 The clamping device 5 of the building partition wall construction device of the present invention can clamp and fix the lightweight partition wall board to prevent the lightweight partition wall board from tilting and falling when erected. Specifically, the lightweight partition wall board is placed on the clamping seat plate 51, and the bidirectional screw 54 is driven to rotate clockwise by shaking the rotating disk 55, and then the clamping block 56 is driven and moved inward, and the clamping plate 57 is pushed by the clamping block 56 to fix and clamp the lightweight partition wall board, and the support component 58 will move inward with the clamping plate 57 to support the lightweight partition wall board.

[0047] See Figure 2 The support assembly 58 includes a guide rod 581, a threaded structure is provided on the right side of the guide rod 581, the right end of the guide rod 581 passes through the clamping plate 57 and a nut is locked at the threaded structure, the left end of the guide rod 581 is fixedly connected to a guard plate 582, a damping spring 583 is provided between the guard plate 582 and the clamping plate 57, and the damping spring 583 is sleeved on the left side of the guide rod 581.

[0048] See Figure 2 The support assembly 58 of the building partition wall construction device of the present invention can prevent the lightweight partition wall board from slipping after being erected. Specifically, the clamping plate 57 moves inward under the drive of the clamping block 56, and the guide rod 581 moves inward with the clamping plate 57, thereby driving the guard plate 582 to move inward, and the left side extension length of the guide rod 581 can be adjusted by adjusting the degree of screwing of the nut, so that the guard plate 582 can always fit the left end of the lightweight partition wall board and play a supporting role.

[0049] See Figure 2 and Figure 10 The flip device 3 includes a slide rail 31, which is fixedly mounted on the upper side of the support plate 2. A convex groove is provided inside the slide rail 31. A lead screw 32 is installed in the convex groove of the slide rail 31. The right end of the lead screw 32 extends out of the right side of the slide rail 31 and is connected to a transmission gear 33 at the right end. The transmission gear 33 is connected to the drive motor through a chain. A transmission slider 34 is installed on the lead screw 32 in a threaded manner. The transmission slider 34 is located inside the convex groove of the slide rail 31. A hinged protrusion is provided on the upper end of the transmission slider 34 and The hinged protrusion extends out from the upper side of the slide rail 31, and the hinged protrusion of the transmission slider 34 is hinged to the left end of the flap 35. A sliding groove and a rectangular through groove are respectively provided in the middle of the flap 35. The flap 35 is hinged to the left end of the flip frame 36 at the middle position between the front side and the rear side. The right end of the flip frame 36 is hinged to the fixed block 37. The fixed block 37 is fixedly installed on the right side of the upper plate surface of the support plate 2. A pulley plate 38 is provided on the upper side of the fixed block 37. The left side of the pulley plate 38 is slidably connected to the flip frame 36, and the right side of the pulley plate 38 is hinged to the inner side of the fixed block 37.

[0050] See Figure 2 and Figure 10 The flipping device 3 of the building partition wall construction device of the present invention can flip and erect the lightweight partition wall board that has been clamped and fixed by the clamping device 5. Specifically, the driving motor drives the transmission gear 33 through the chain transmission, and the transmission gear 33 drives the lead screw 32 to rotate. The rotating lead screw 32 drives the transmission slider 34 to move to the right, and the transmission slider 34 drives the left end of the flap 35 to move to the right, so that the flap 35 is flipped up when it is driven, and the flip frame 36 rotates upward when the flap 35 is flipped up.

[0051] See Figure 2 、 Figure 7 、 Figure 8 and Figure 9The lifting sliding device 4 includes a lifting sliding component 41, which is arranged on the lower side of the flap 35. The lifting sliding component 41 passes through the rectangular through groove of the flap 35 and is connected to the lifting sliding plate 42. The right end of the lifting sliding plate 42 is fixed with a limiting component 43. The lifting sliding component 41 is pushed by the pushing force of the pushing cylinder 44 to slide on the rectangular groove for sliding the flap 35. The fixed end of the pushing cylinder 44 is fixed to the left side of the lower side of the flap 35. The lifting sliding component 41 includes a driven connecting rod 411. The right end of the driven connecting rod 411 is hinged to the lifting sliding plate 42, and the right end of the driven connecting rod 411 and the hinged end of the lifting sliding plate 42 can The left end of the driven connecting rod 411 is hinged to the fixed plate 412. The fixed plate 412 is a frame structure and has sliding grooves on the front and rear side walls. The driven connecting rod 411 crosses and is hinged to the active connecting rod 413. The left end of the active connecting rod 413 is hinged to the lifting sliding plate 42. The right end of the active connecting rod 413 is hinged to the push rod 414. Both ends of the push rod 414 are slidably installed in the sliding grooves on the front and rear side walls inside the fixed plate 412. The push rod 414 is connected to the lifting end of the lifting cylinder 415. The fixed end of the lifting cylinder 415 is fixed on the right outer wall of the fixed plate 412. The right side of the fixed plate 412 is connected to the lifting end of the pushing cylinder 44.

[0052] See Figure 2 、 Figure 7 、 Figure 8 and Figure 9 The lifting sliding device 4 of the building partition wall construction device of the present invention can adjust the vertical position of the erected lightweight partition board and push it toward the concave surface of the installed lightweight partition board. Specifically, the fixed plate 412 can slide on the lower side of the flip plate 35 under the push of the jacking cylinder 44, thereby realizing the up and down adjustment of the clamped and erected lightweight partition board. The jacking cylinder 415 can pull the push rod 414 to slide in the front and rear side wall slide grooves inside the frame structure of the fixed plate 412. The push rod 414 moving toward the jacking cylinder 415 will drive the right end of the active connecting rod 413 to move, and then with the cooperation of the driven connecting rod 411, the lifting sliding plate 42 can be pushed out, and then the horizontal convex surface of the erected lightweight partition board is pressed against the concave surface of the installed lightweight partition board.

[0053] See Figure 2 、 Figure 5 and Figure 6, the support plate 2 is provided with a rectangular groove on the left side, a guide assembly 21 is provided at the left end of the support plate 2, and a positioning assembly 22 is provided on the front side wall and the rear side wall of the rectangular groove of the support plate 2, respectively. The support plate 2 is provided with a sliding groove that cooperates with the guide assembly 21 and a telescopic groove that cooperates with the positioning assembly 22. The guide assembly 21 includes a guide wheel 211, which is rotatably mounted on a sliding block 212. The sliding block 212 is slidably mounted in the sliding groove at the left end of the support plate 2, and the sliding block 212 slides with the support plate 2 A return spring 213 is connected between the side walls of the groove. The positioning assembly 22 includes a shell 221, which is slidably installed in the telescopic groove on the left side of the support plate 2. A push spring 222 is connected between the shell 221 and the lower wall of the telescopic groove of the support plate 2. The outer end face of the shell 221 is a slope, and rolling wheels 223 are distributed on the slope of the shell 221. A positioning block 224 is provided on the slope of the shell 221. The positioning block 224 is rotatably connected to the shell 221, and a tension spring 225 is fixed between the positioning block 224 and the shell 221.

[0054] See Figure 2 、 Figure 5 and Figure 6 The guide assembly 21 of the construction device for building partition walls of the present invention can play a positioning role when the convex surface of the erected lightweight partition wall panel is aligned with the concave surface of the installed lightweight partition wall panel. Specifically, after the lightweight partition wall panel is erected, the present invention is pushed to align the rectangular groove on the left side of the support plate 2 with the installed lightweight partition wall panel and move it. The installed partition wall panel contacts and rubs with the guide wheel 211, causing the guide wheel 211 to rotate, and continues to push the present invention under the guidance of the guide wheel 211. The installed lightweight partition wall panel contacts the positioning assembly 22, causing the shell 221 to move toward the support plate 2. The left telescopic groove slides inside and compresses the push spring 222. When the installed partition board contacts the positioning block 224, the positioning block 224 will block the present invention so that it can no longer be pushed, stop pushing the present invention, and adjust and install the erected lightweight partition board. It should be noted that the present invention uses the positioning block 224 to block between the installed lightweight partition board and the lightweight partition board to be installed, so that the joints between the lightweight partition boards are equal, increasing the overall aesthetics of the construction, and by coating the reserved joints with mud and other adhesive materials, the integrity of the lightweight partition wall in the later stage can be increased.

[0055] See Figure 1 and Figure 4 The limiting assembly 43 includes a shell 431, a limiting block 432 is installed on the shell 431, the upper end of the limiting block 432 extends out of the upper side of the shell 431, a support spring 433 is connected between the limiting block 432 and the shell 431, and the upper end of the limiting block 432 is a slope structure and a roller is installed on the slope.

[0056] See Figure 1 and Figure 4 The limiting component 43 of the building partition wall construction device of the present invention can be used to position the lightweight partition wall board when it is placed on the clamping seat plate 51. Specifically, when the lightweight partition wall board is pushed from the right pulley plate 38 into the clamping device 5 of the present invention, the lightweight partition wall board squeezes the limiting block 432 and moves into the shell 431. The limiting block 432 will compress the support spring 433. When the right end of the lightweight partition wall board is pushed away to the left side of the limiting block 432, the limiting block 432 is pushed up by the support spring 433. At this time, the pushing of the lightweight partition wall board is stopped to complete the placement. The roller on the inclined surface of the limiting block 432 can make the lightweight partition wall board push smoother.

[0057] A lightweight partition wall panel is installed using a building partition wall construction device and construction method, comprising the following steps:

[0058] Step 1: Site cleaning: First, clean and level the wall, floor, and top of the wall where the lightweight partition board will be installed, and position and lay out the installation location of the partition board;

[0059] Step 2: Place and fix: Place the lightweight partition board on the clamping base plate 51, and drive the clamping block 56 to move inward by shaking the rotating disk 55. The clamping plate 57 clamps and fixes the lightweight partition board under the push of the clamping block 56. The supporting assembly 58 will move inward with the clamping plate 57 to support the lightweight partition board. After fixing, clean the convex surface of the lightweight partition board and apply bonding mortar.

[0060] Step 3: Flip the vertical plate: Start the drive motor to drive the transmission gear 33, which drives the lead screw 32 to rotate. The rotating lead screw 32 drives the transmission slider 34 to move to the right. The transmission slider 34 drives the left end of the flap 35 to move to the right, thereby flipping the flap 35 upright.

[0061] Step 4: Positioning and installation: Under the guidance of the guide wheel 211, push the present invention so that the rectangular groove on the left side of the support plate 2 is aligned with the installed lightweight partition board and move. After moving a certain distance, the present invention is blocked by the positioning block 224, and the pushing of the present invention is stopped and the pushing cylinder 44 is started so that the upper end of the lightweight partition board is pressed against the top of the wall. The lifting cylinder 415 is started to drive the lifting sliding plate 42 to be pushed out, and then the convex surface of the erected lightweight partition board is pressed against the concave surface of the installed lightweight partition board. The lightweight partition board is fixed with nails using a nail gun, and wooden wedges are hammered into the bottom of the lightweight partition board.

[0062] Step 5: Fill and finish: Smooth out the bonding mortar squeezed out of the installation gap of the lightweight partition board, fill the bonding mortar at the bottom of the lightweight partition board, rotate the rotating disk 55 to loosen the clamping device 5 on the lightweight partition board, and withdraw the present invention to complete the installation.

[0063] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Persons skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or 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 construction device for building partition walls, comprising a frame and a support plate, wherein the frame bottom is provided with running wheels for movement, and the support plate is fixedly provided on the side surface of the frame, characterized in that: The support plate is provided with a flipping device installed on the side surface, a lifting and sliding device is installed on the flipping device, and a clamping device is fixedly installed on the side surface of the lifting and sliding device, wherein; A rectangular groove is provided on the left side of the support plate, a guide assembly is installed on the left end of the support plate, a positioning assembly is provided on the front side wall and the rear side wall of the rectangular groove of the support plate, and a sliding groove cooperating with the guide assembly and a telescopic groove cooperating with the positioning assembly are provided on the support plate; The lifting sliding device includes a lifting sliding assembly, which is arranged on the lower side of the flap, the lifting sliding assembly passes through the flip device and is connected to the lifting sliding plate, the right end of the lifting sliding plate is fixed with a limit assembly, and the fixed end of the pushing cylinder is fixed to the left side of the lower side of the flap; The clamping device includes a clamping seat plate, which is fixedly mounted on the side surface of the jacking sliding plate, a rectangular groove is opened in the middle of the clamping seat plate and an intermediate block is fixed in the rectangular groove, a bidirectional lead screw passes through the intermediate block and is mounted in the rectangular groove of the clamping seat plate, the front and rear ends of the bidirectional lead screw respectively extend out of the clamping seat plate, a rotating disk is mounted on the front end of the bidirectional lead screw, a clamping block is mounted on the bidirectional lead screw, a connecting portion is provided on the lower side of the clamping block that cooperates with the thread of the bidirectional lead screw, a clamping plate is connected to the inner side of the clamping block by a screw lock, and a support assembly is mounted on the clamping plate on the left side; The upper end of the lead screw is connected to the transmission gear of the driving motor through the chain.

2. A construction device for building partition walls according to claim 1, characterized in that: The guide assembly includes a guide wheel, which is rotatably mounted on a sliding block. The sliding block is slidably mounted in a sliding groove at the left end of the support plate. A return spring is connected between the sliding block and the side wall of the sliding groove of the support plate.

3. A construction device for building partition walls according to claim 1, characterized in that: The positioning assembly includes a shell, which is slidably installed in the telescopic slot on the left side of the support plate. A push spring is connected between the shell and the lower wall of the telescopic slot of the support plate. The outer end face of the shell is an inclined surface, and rolling wheels are distributed on the inclined surface of the shell. A positioning block is provided on the inclined surface of the shell, and the positioning block is rotatably connected to the shell. A tension spring is fixed between the positioning block and the shell.

4. A construction device for building partition walls according to claim 1, characterized in that: The jacking sliding assembly includes a driven connecting rod, the right end of the driven connecting rod is hinged to the jacking sliding plate, the left end of the driven connecting rod is hinged to the fixed plate, the fixed plate is a frame structure and sliding grooves are respectively provided on the front and rear side walls inside, the driven connecting rod crosses and is hinged to the active connecting rod, the left end of the active connecting rod is hinged to the jacking sliding plate, the right end of the active connecting rod is hinged to the push rod, both ends of the push rod are slidably installed in the sliding grooves of the side walls of the fixed plate, the push rod is connected to the jacking end of the jacking cylinder, the fixed end of the jacking cylinder is fixed on the right outer wall of the fixed plate, and the right side of the fixed plate is connected to the jacking end of the jacking cylinder.

5. A construction device for building partition walls according to claim 1, characterized in that: The limit assembly includes a shell, which is fixed to the right end of the lifting sliding plate, a limit block is installed on the shell, the upper end of the limit block extends out of the upper side of the shell, a support spring is connected between the limit block and the shell, the upper end of the limit block is a slope structure and a roller is installed on the slope.

6. A construction device for building partition walls according to claim 1, characterized in that: The support assembly includes a guide rod, a threaded structure is provided on the right side of the guide rod, the right end of the guide rod passes through the clamping plate and a nut is locked at the threaded structure, the left end of the guide rod is fixedly connected to the guard plate, a damping spring is provided between the guard plate and the clamping plate, and the damping spring is sleeved and installed on the left side of the guide rod.

Citation Information

Patent Citations

  • Light partition wall batten mounting device

    CN217400396U