Building sound insulation wallboard mounting equipment

By designing a building sound insulation wall panel installation equipment that combines sliding tables, beams, transmission frames, lifting components and limit composite components, the problem of low installation efficiency in the prior art is solved, and efficient grasping, rotation and translation installation of sound insulation wall panels is achieved, and the overall installation efficiency and accuracy are improved.

CN120100172AInactive Publication Date: 2025-06-06GUANGZHOU SHANDI ACOUSTIC ENGINEERING CO LTD
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Patent Information

Application Number
CN202510291501.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing soundproof wall panel installation equipment is less efficient during the installation process, and it is necessary to plan the moving path and pick up and deliver materials one by one, resulting in low installation efficiency.

Method used

A building sound insulation wall panel installation equipment is designed, using structures such as sliding tables, beams, transmission frames, lifting components and limit composite components. The sound insulation wall panels are grasped, rotated and translated to avoid shaking and unclipping of the plates, and realize the carrying and moving of the multi-plate parts.

Benefits of technology

It improves the efficiency of sound-insulating wall panel installation, avoids the shaking and unclip of the plate parts during rotation and translation, and achieves more accurate sound-insulating wall panel fitting installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The building sound insulation wallboard installation equipment comprises a sliding table and a cross beam, the cross beam is fixed to the top of the sliding table through bolts, and a transmission frame is fixedly installed at the top of the sliding table; according to the sound insulation wallboard grabbing, rotating and translation installation device, a composite motion mode is adopted for grabbing, rotating and translation installation of the sound insulation wallboard, meanwhile, the situation that the wallboard shakes and is disengaged during rotation and translation is avoided, and a limiting plate installed in the box shell and a first limiting groove and a second limiting groove formed in the limiting plate conduct angle limiting during grabbing and moving of the sound insulation wallboard; the installation stability of the soundproof wallboards is improved, the corresponding attaching installation effect is improved, meanwhile, the transmission frame on the sliding table carries and moves multiple boards, and compared with a board obtaining mode placed in a fixed area, the installation efficiency of the whole building soundproof wallboards is improved through a straight clamping and straight placing installation mode.
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Description

Technical Field

[0001] The invention relates to the technical field of sound insulation wallboard installation, in particular to a building sound insulation wallboard installation device. Background Art

[0002] Soundproof wallboard is a building material used to reduce sound transmission and noise interference. It is usually divided into gypsum board, rock wool board, glass wool board, wooden sound-absorbing board and polyester fiber sound-absorbing board. Before installing the soundproof wallboard, it is necessary to ensure that the wall base is flat, dry, clean, without obvious unevenness and cracks and other defects. According to the type and material of the soundproof wallboard, different installation methods can be used, such as pasting, nailing, hanging, etc.

[0003] Patents with publication numbers CN116201378A and CN114658198A involve the use of mechanical equipment to grab and install wall panels. The former uses a simple mechanical arm and a clamp structure to obtain and fit the panels, while the latter uses a rotating claw arm structure to automatically grab the wall panels and rotate them, and then push and place the panels through the support feet. Both are suitable for auxiliary installation of wall panels of different sizes, but the installation process is relatively limited. The moving path must be planned in advance according to the placement of the remaining wall panels to be installed. The installation method of clamping and feeding the materials one by one also greatly affects the overall installation efficiency. For this reason, we propose a building sound insulation wall panel installation device. Summary of the invention

[0004] The object of the present invention is to provide a building sound insulation wall panel installation device to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a building sound insulation wall panel installation device, comprising a slide and a beam, the top of the slide is fixed with the beam by bolts, the top of the slide is fixed with a transmission frame, the top of the transmission frame is installed with a conveyor belt, the top of the beam is installed with a lifting component, the lifting component comprises a slide, the track on the side of the beam is slidably connected with the slide, and the side of the slide is fixed with a limited position composite component by bolts;

[0006] The limiting composite component includes a box shell and a screw slide rod component, a screw slide rod component is installed on the side of the box shell, a threaded limiting sleeve is sleeved on the screw slide rod component, a full turntable is movably connected to the inner wall of the limiting sleeve, the central axis of the full turntable passes through the limiting sleeve and is fixed with a rotating sleeve by bolts, a clamping plate is symmetrically slidably connected to the bottom track of the rotating sleeve, and the opposite surfaces of the two clamping plates are rotatably connected to a connecting rod through bearings.

[0007] Furthermore, the limiting composite component also includes a semi-turntable and a limiting plate. The semi-turntable is movably connected in the box shell, and a groove is provided on the opposite side of the semi-turntable and the full turntable. The limiting plate is fixed to the side of the box shell by bolts. Two limiting grooves are symmetrically provided on the limiting plate, and a limiting groove one is provided on the limiting plate and located between the two limiting grooves.

[0008] Furthermore, the diameter of the two protruding columns on the full turntable side is the same as the height of the first limiting groove and the second limiting groove, and the center of the two protruding columns on the full turntable side is flush with the axis of the half turntable.

[0009] Furthermore, the lifting assembly also includes a reduction motor and a toothed chain. The reduction motor is fixed to the top of the crossbeam by bolts. The gears on the transmission shafts on both sides of the reduction motor are meshed with toothed chains. One end of the toothed chain is connected to a slide, and the other end of the toothed chain is connected and fixed to a counterweight.

[0010] Furthermore, a driving motor is fixed to the side wall of the slide by bolts, and the output end of the driving motor passes through the slide and the box shell respectively and is fixed to the semi-turntable.

[0011] Furthermore, a cylinder 1 is fixed to the rotating sleeve on the box shell side by bolts, a slider is slidably connected in the through groove on the rotating sleeve, and one end of the cylinder 1 is connected to the slider.

[0012] Furthermore, the top of the slider is fixedly connected to a second cylinder, and the second end of the cylinder passes through the slider and is fixed with a push block, and the bottom of the slider is movably connected to one end of the connecting rod on the clamping plate.

[0013] The use method of the building sound insulation wall panel installation equipment is:

[0014] Deflection limitation prevents deflection movement when the subsequent sound insulation board is clamped and lifted. The lifting assembly is used to control the downward movement of the rotating sleeve so that the clamping plate contacts the top of the transmission frame. At this time, the rotating sleeve is in a horizontal state. The driving mechanism on the box shell side drives the screw rod and the sliding rod to rotate. While rotating, the entire limit sleeve is pushed to move, so that the convex column on the full turntable side is stuck in the second limit groove, limiting the rotation of the entire rotating sleeve;

[0015] Push the plate to load the material, move the slide to the sound insulation wall panel installation area, use the level to level the slide and the wall, the side wall of the beam on the slide is parallel to the wall, push the single sound insulation wall panel to move onto the transmission belt, and cooperate with the downward clamping plate to wrap both sides of the panel. At the same time, the cylinder pushes the slider to slide, so that the connecting rod pulls the clamping plates on both sides to clamp the wall panel;

[0016] Lift and flip, the lifting assembly is used to raise the plywood sound insulation wall panel. When it reaches the installation height, first use the screw slide rod to rotate the rotating sleeve to the center side of the box shell. At the same time, the convex column on the full turntable contacts the groove on the half turntable, and the drive motor is used to rotate the half turntable to complete the rotation. While the full turntable rotates, the 90° flip of the plywood side sound insulation wall panel is completed, and under the drive of the screw slide rod, the entire limit sleeve side rotating sleeve is pushed toward the wall. A gap of 1-2 cm is left between the sound insulation wall panel and the wall, and the second cylinder works to push the plywood side sound insulation wall panel away to complete the installation of the sound insulation wall panel.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. In the present invention, the lifting assembly on the beam and the limiting composite assembly are combined to adopt a composite motion mode to grab, rotate and translate the sound insulation wallboard for installation, and at the same time, avoid the shaking and unclamping of the panels during rotation and translation. The limiting plate installed in the box shell and the limiting grooves 1 and 2 provided on the limiting plate itself are used to limit the angle of the sound insulation wallboard when grabbing and moving. At the same time, the transmission frame on the slide table carries and moves multiple panels. Compared with the acquisition form of panels placed in a fixed area, the installation mode of direct clamping and direct placement improves the installation efficiency of the overall building sound insulation wallboard;

[0019] 2. In the present invention, the combined movement of cylinder one and cylinder two is utilized to control the sliding of the slider on the rotating sleeve while realizing the contact between the connecting rod and the clamping plates on both sides, thereby realizing the adjustment of the spacing between the clamping plates on both sides, thereby clamping and fixing the sound insulation wall panels of different lengths, and facilitating the subsequent detachment of the entire sound insulation wall panel. When the clamping plate is moved to the fixed installation area, the pushing and pressing of cylinder two and the reverse withdrawal of the entire limiting sleeve can realize the automatic detachment of the entire sound insulation wall panel and the clamping plate, thereby improving the overall installation effect of the sound insulation wall panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the overall structure of the building sound insulation wallboard installation equipment of the present invention;

[0021] Figure 2 This is a schematic diagram of the installation structure of the side rotation sleeve of the position-limiting composite assembly of the present invention;

[0022] Figure 3 This is a schematic diagram of the installation structure of the side limit plate of the box shell of the present invention;

[0023] Figure 4 It is a schematic diagram of the abutment structure between the side convex column of the full turntable and the upper groove of the half turntable of the present invention;

[0024] Figure 5 It is a schematic diagram of the abutment structure between the convex column on the side of the full turntable and the limiting groove of the present invention;

[0025] Figure 6It is a schematic diagram of the abutment structure between the side convex column of the full transmission disk and the second limiting groove of the present invention;

[0026] Figure 7 This is a structural diagram of the installation process of the building sound insulation wall panel of the present invention.

[0027] In the figure: 1. slide; 2. transmission frame; 3. conveyor belt; 4. crossbeam; 5. lifting assembly; 501. reduction motor; 502. tooth chain; 503. slide; 504. counterweight; 6. drive motor; 7. limit composite assembly; 701. box shell; 702. half turntable; 703. limit plate; 704. limit slot one; 705. limit slot two; 706. screw rod slide bar; 8. limit sleeve; 9. full turntable; 10. rotating sleeve; 11. cylinder one; 12. slider; 13. cylinder two; 14. splint; 15. connecting rod. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.

[0029] See also Figure 1-7 , the present invention provides a technical solution:

[0030] Example 1: Regarding the mechanical installation of the sound insulation wall panel, such as Figure 1 As shown, the clamping, flipping and translation working methods are adopted, and the installation angle is changed at the same time, from the original face-to-face vertical installation method to parallel placement, and the transmission frame 2 is installed on the slide 1 to carry and move multiple sound insulation wall panels, simplifying the overall moving path of the sound insulation wall panel installation equipment and improving the overall installation efficiency;

[0031] according to Figure 7 The installation path of the sound insulation wall panel shown in the figure requires the relevant fixture to be controlled to be flipped and then translated. For this purpose, a slide 503 is installed on one side of the top crossbeam 4 of the slide table 1. The slide 503 is used to lift the height to provide sufficient space for the subsequent fixture to flip the sound insulation wall panel.

[0032] The side of the slide 503 is equipped with a limited position composite component 7 for grabbing the sound insulation wallboard and adjusting the relevant position, such as Figure 2 As shown, the box shell 701 is fixedly connected to the limiting plate 703 on one side, and the limiting plate 703 is provided with a limiting groove 1 704 and a limiting groove 2 705, as shown in FIG. Figure 3As shown, the limiting groove 1 704 is located in the middle of the limiting plate 703, and the limiting groove 2 705 is located on both sides of the limiting plate 703. At the same time, the limiting plate 703 is also slidably connected to the limiting sleeve 8. The installation of the limiting sleeve 8 is used to constrain the horizontal position of the rotating sleeve 10 and adjust the position of the limiting sleeve 8;

[0033] like Figure 4 As shown, a screw rod slide bar 706, that is, a combination of a screw rod and a slide bar, is installed on the side of the limit plate 703. The two columns penetrate the limit sleeve 8, wherein the screw rod is threadedly connected to the limit sleeve 8, and the slide bar is used to stabilize the limit sleeve 8 when it moves. With the rotation of the screw rod by the driving mechanism, the limit sleeve 8 can be controlled to move on the side of the limit plate 703, and the horizontal position of the sound insulation wallboard on the fixture can be changed, so that the sound insulation wallboard can be attached to the wall surface conveniently;

[0034] The middle of the limiting sleeve 8 is movably connected with a full turntable 9, and the outer side of the full turntable 9 is fixed to the rotating sleeve 10. The limiting sleeve 8 is used to constrain the position of the rotating sleeve 10, and the full turntable 9 controls the rotation angle of the rotating sleeve 10. Since the central axis of the full turntable 9 is movably connected to the limiting sleeve 8, the side clamp of the rotating sleeve 10 is used to clamp the sound insulation wall panel under normal conditions. The gravity causes the panel surface to face downward and shake left and right continuously when moving. Therefore, a semi-turntable 702 is required to control the rotation angle of the rotating sleeve 10.

[0035] Combination Figure 3 and Figure 4 It can be understood that a half turntable 702 is movably connected in the box shell 701. Here, the half turntable 702 is not only half, but an arc-shaped plate member arranged to cooperate with the diameter of the convex column on the side of the full turntable 9. Since the convex columns on the side of the full turntable 9 extend into the box shell 701, the rotation axis of the half turntable 702 is flush with the axis of the convex columns on both sides. At the same time, a convex block is arranged on the side of the half turntable 702 to abut against the convex column on one side. Therefore, the rotation of the entire full turntable 9 can be realized by rotating the half turntable 702.

[0036] However, considering that the subsequent limiting sleeve 8 will drive the entire full turntable 9 to move left and right, the setting of the protrusion on the half turntable 702 causes the entire limiting sleeve 8 to move unidirectionally toward the side without the protrusion, and at the same time, it is free from the position restriction of the protrusion on the half turntable 702, and the full turntable 9 can rotate freely, affecting the subsequent placement position of the sound insulation wallboard clamped on the rotating sleeve 10, so the movement of the protrusion on the full turntable 9 is limited;

[0037] like Figure 5 As shown, the limiting plate 703 has a limiting groove 1 704 and a limiting groove 2 705. When the rotating sleeve 10 is facing downward, the corresponding convex columns on both sides of the full rotating disk 9 are vertical. At this time, the screw rod slide bar 706 rotates to control the limiting sleeve 8 to move left and right, driving the convex columns on both sides of the full rotating disk 9 to move and snap into the limiting groove 2 705.

[0038] like Figure 6As shown, when the half turntable 702 drives the full turntable 9 to rotate 90° so that the clamping surface of the rotating sleeve 10 faces the wall, the two convex columns on the full turntable 9 are horizontal, and the limiting sleeve 8 moves left and right to realize the clamping of the convex columns on the full turntable 9 and the limiting groove 1 704, so as to limit the rotation of the entire full turntable 9, thereby avoiding the deflection of the sound insulation wallboard obtained by the rotating sleeve 10 side, and facilitating more accurate sound insulation wallboard fitting installation;

[0039] For obtaining the sound insulation wallboard on the transmission frame 2, the clamping plate 14 is symmetrically slidably connected on the side of the rotating sleeve 10, and the clamping plate 14 is driven at the same time. The cylinder 11 is fixed on the top side of the rotating sleeve 10 by bolts. At the same time, the top of the rotating sleeve 10 is also slidably connected with a slider 12. The slider 12 is symmetrically movably connected with a connecting rod 15 at the bottom of the rotating sleeve 10. The two ends of the connecting rod 15 are respectively movably connected with the clamping plate 14, and the cylinder 11 is connected to the slider 12. The entire slider 12 is pushed to slide on the top of the rotating sleeve 10 by the cylinder 11, so as to realize the angle control of the connecting rod 15 at the bottom of the slider 12, thereby pushing the clamping plates 14 on both sides to move;

[0040] like Figure 2 As shown, when the entire slider 12 slides to one side, the distance between the two side clamps 14 is continuously expanded, and after the connecting rod 15 overlaps, it is pushed to the same side. At this time, the connecting rod 15 rotates to pull the two side clamps 14 closer to each other, and the two sides of the sound insulation wall panel are clamped by the two side clamps 14 moving toward each other;

[0041] Since the positions for clamping the sound insulation wall panels belong to the upper and lower sides, when the sound insulation wall panels are sent to the corresponding wall surface, the sound insulation wall panels need to be actively pushed out. For this purpose, a cylinder 2 13 is also installed on the entire slider 12. The cylinder 2 13 is used to push the clamping plate 14 to separate the sound insulation wall panels from the clamping plate 14, so that the sound insulation wall panels are accurately fitted to the wall surface. Through the composite movement of flipping up and down and translating left and right, the sound insulation wall panels obtained by the entire clamping plate 14 are controlled to be positioned and fitted. At the same time, during the movement, the groove on the limit plate 703 is used to stabilize the rotating sleeve 10, thereby further improving the installation accuracy of the sound insulation wall panels.

[0042] Example 2: Figure 1 As shown, in order to provide sufficient space for the sound insulation wallboard on the side of the clamping plate 14 to rotate 90 degrees, the lifting component 5 is installed on the beam 4 located at the top of the slide 1, wherein a reduction motor 501 is fixed to the top of the beam 4 by bolts, and a gear chain 502 is meshed with gears on the output shaft of the reduction motor 501, one end of the gear chain 502 is connected to the slide 503, and the other side is connected to the counterweight 504, and the output shaft is controlled by the reduction motor 501 to rotate, so that the slide 503 on the side of the beam 4 can be lifted or lowered;

[0043] At the same time, it is convenient for the entire clamping plate 14 to obtain the sound insulation wallboard, and the transmission frame 2 is installed on the top of the slide 1. The transmission frame 2 is also equipped with a conveyor belt 3, which is responsible for actively transporting the sound insulation wallboard stored on the side of the slide 1 to the side of the clamping plate 14. Compared with the loading method of actively positioning and clamping at a fixed position, the loading method of carrying the sound insulation wallboard for movement has an obvious difference in loading speed. The latter is simple and efficient in loading, which improves the overall sound insulation wallboard installation efficiency. At the same time, the board loading process requires manual supervision to avoid stuck boards or deformation of the sound insulation wallboards.

[0044] like Figure 1 As shown, since the rotation of the entire half turntable 702 relies on the rear drive motor 6 of the slide 503, considering that when lifting the plate, the side convex column of the full turntable 9 needs to rely on the entire half turntable 702 for angle constraint to prevent the full turntable 9 from rotating, causing the clamping plate 14 to tilt and unable to clamp the sound insulation wallboard normally, long-term work has a greater impact on the drive motor 6 connected to the half turntable 702, and it is necessary not only to control the static limit of the half turntable 702, but also to assist the rotation of the full turntable 9;

[0045] Therefore, when the sound insulation wallboard is clamped and loaded, the side convex column of the entire turntable 9 is first pushed into the second limit groove 705 through the screw rod slide bar 706. At this time, the lifting component 5 is used to drive the rotating sleeve 10 to move up and down, and the sound insulation wallboard is clamped. When the sound insulation wallboard moves, it acts on the limit plate 703 instead of the half turntable 702, thus avoiding the problem of damage to the drive motor 6 caused by long-term work. When the entire turntable 10 needs to rotate, it is moved to the center position of the limit plate 703 through the limit sleeve 8, and the turntable 10 is driven to rotate by the rotation of the half turntable 702, and the overall power consumption of the drive motor 6 is reduced;

[0046] Since the position of the entire rotating sleeve 10 on the feeding side changes, the placement position of the sound insulation wallboard on the corresponding transmission frame 2 also needs to be changed accordingly, such as Figure 1 As shown, the sound insulation wall panel is placed on the transmission frame 2 to the right, and the length of the sound insulation wall panel needs to be greater than the transmission frame 2, so that the clamping plate 14 can be used to clamp and adjust the edge of the sound insulation wall panel.

[0047] The working principle of the present invention is as follows: the lifting assembly 5 is used to control the downward movement of the rotating sleeve 10, so that the clamping plate 14 contacts the top of the transmission frame 2. At this time, the rotating sleeve 10 is in a horizontal state, and the driving mechanism on the side of the box shell 701 drives the screw rod slide bar 706 to rotate, and at the same time, the entire limiting sleeve 8 is pushed to move, so that the side convex column of the full turntable 9 is stuck in the second limiting groove 705, thereby limiting the rotation of the entire rotating sleeve 10;

[0048] Move the slide 1 to the sound insulation wall panel installation area, use a level to level the slide 1 and the wall, make the side wall of the cross beam 4 on the slide 1 parallel to the wall, push the single sound insulation wall panel to the transmission belt, and cooperate with the downward clamping plate 14 to wrap both sides of the panel. At the same time, the cylinder 11 pushes the slider 12 to slide, so that the connecting rod 15 pulls the clamping plates 14 on both sides to clamp the wall panel, and the lifting component 5 raises the sound insulation wall panel on the clamping plate 14;

[0049] When the installation height is reached at the same time, the screw slide bar 706 is first used to rotate the rotating sleeve 10 to the center side of the box shell 701. At the same time, the convex column on the full turntable 9 contacts the groove on the half turntable 702. The drive motor 6 is used to rotate to complete the rotation of the half turntable 702. While the full turntable 9 rotates, the 90° flipping of the sound insulation wall panel on the side of the splint 14 is completed, and under the drive of the screw slide bar, the entire limiting sleeve 8 side rotating sleeve 10 is pushed toward the wall. A gap of 1-2 cm is left between the sound insulation wall panel and the wall, and the cylinder 2 13 works to push the sound insulation wall panel on the side of the splint 14 away to complete the installation of the sound insulation wall panel.

[0050] The preferred embodiments of the present invention disclosed above are only used to help explain the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to only specific implementation methods. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can understand and use the present invention well. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A building sound insulation wallboard installation device, comprising a slide (1) and a crossbeam (4), wherein the top of the slide (1) is fixed with the crossbeam (4) by bolts, characterized in that: A transmission frame (2) is fixedly mounted on the top of the slide (1), a conveyor belt (3) is mounted on the top of the transmission frame (2), a lifting assembly (5) is mounted on the top of the crossbeam (4), the lifting assembly (5) comprises a slide (503), a slide (503) is slidably connected to a track on the side of the crossbeam (4), and a limited position composite assembly (7) is fixed to the side of the slide (503) by bolts; The position limiting composite component (7) comprises a box shell (701) and a screw rod slide member (706), the box shell (701) side is installed with a screw rod slide member (706), a threaded position limiting sleeve (8) is sleeved on the screw rod slide member (706), the inner wall of the position limiting sleeve (8) is movably connected with a full turntable (9), the central axis of the full turntable (9) passes through the position limiting sleeve (8) and is fixed with a rotating sleeve (10) by bolts, the bottom track of the rotating sleeve (10) is symmetrically slidably connected with a clamping plate (14), and the opposite surfaces of the two clamping plates (14) are rotatably connected with a connecting rod (15) through a bearing.

2. A building sound insulation wall panel installation device according to claim 1, characterized in that: The limiting composite component (7) also includes a semi-rotating disc (702) and a limiting plate (703); the semi-rotating disc (702) is movably connected inside the box shell (701), and a groove is provided on the surface opposite to the full rotating disc (9); the limiting plate (703) is fixed to the side of the box shell (701) by bolts; the limiting plate (703) is symmetrically provided with a second limiting groove (705); and the limiting plate (703) is provided with a first limiting groove (704) located between the second limiting groove (705).

3. A building sound insulation wallboard installation device according to claim 2, characterized in that: The diameters of the two convex columns on the side of the full turntable (9) are the same as the heights of the first limiting groove (704) and the second limiting groove (705), and the centers of the two convex columns on the side of the full turntable (9) are flush with the axis of the half turntable (702).

4. A building sound insulation wall panel installation device according to claim 3, characterized in that: The lifting assembly (5) also includes a reduction motor (501) and a toothed chain (502); the reduction motor (501) is fixed to the top of the crossbeam (4) by bolts; the gears on the transmission shafts on both sides of the reduction motor (501) are meshedly connected with the toothed chain (502); one end of the toothed chain (502) is connected to a slide (503); and the other end of the toothed chain (502) is connected and fixed with a counterweight block (504).

5. A building sound insulation wallboard installation device according to claim 4, characterized in that: A driving motor (6) is fixed to the side wall of the slide (503) by means of bolts, and the output end of the driving motor (6) respectively passes through the slide (503) and the box shell (701) and is fixed to the semi-rotating disk (702).

6. A building sound insulation wallboard installation device according to claim 5, characterized in that: A cylinder 1 (11) is fixed to the rotating sleeve (10) on the side of the housing (701) by bolts, a slider (12) is slidably connected in a through groove on the rotating sleeve (10), and one end of the cylinder 1 (11) is connected to the slider (12).

7. A building sound insulation wallboard installation device according to claim 6, characterized in that: The top of the slider (12) is fixedly connected to the second cylinder (13), and the end of the second cylinder (13) passes through the slider (12) and is fixed with a push block. The bottom of the slider (12) is movably connected to one end of the connecting rod (15) on the clamping plate (14).

8. The building sound insulation wallboard installation device according to claim 7, characterized in that: The use method of the building sound insulation wall panel installation equipment is: Deflection limitation is used to prevent deflection movement when the subsequent sound insulation board is clamped and lifted. The lifting assembly (5) is used to control the rotating sleeve (10) to move downward, so that the clamping plate (14) contacts the top of the transmission frame (2). At this time, the rotating sleeve (10) is in a horizontal state, and the driving mechanism on the side of the box shell (701) drives the screw rod and slide bar (706) to rotate, and at the same time, the entire limiting sleeve (8) is pushed to move, so that the side convex column of the full turntable (9) is stuck in the second limiting groove (705), thereby limiting the rotation of the entire rotating sleeve (10); Push the plate to load the material, move the slide (1) to the sound insulation wall panel installation area, use a level to level the slide (1) and the wall, make the side wall of the upper beam (4) of the slide (1) parallel to the wall, push the single sound insulation wall panel to move onto the transmission belt, cooperate with the downward clamping plate (14) to wrap both sides of the panel, and at the same time, the cylinder (11) pushes the slider (12) to slide, so that the connecting rod (15) pulls the clamping plates (14) on both sides to clamp the wall panel; Lift and flip, the lifting assembly (5) is used to raise the sound insulation wall panel of the clamping plate (14). When the installation height is reached, the rotating sleeve (10) is first moved to the center side of the box shell (701) by rotating the screw slide rod (706). At the same time, the upper protrusion of the full turntable (9) contacts the upper groove of the half turntable (702). The driving motor (6) is used to rotate to complete the rotation of the half turntable (702). While the full turntable (9) rotates, the 90° flipping of the sound insulation wall panel on the clamping plate (14) side is completed. Under the drive of the screw slide rod, the rotating sleeve (10) on the side of the entire limiting sleeve (8) is pushed toward the wall. A gap of 1-2 cm is left between the sound insulation wall panel and the wall. The second cylinder (13) works to push the sound insulation wall panel on the side of the clamping plate (14) away, and the installation of the sound insulation wall panel is completed.

Citation Information

Patent Citations

  • Grabbing device, wallboard mounting equipment and wallboard grabbing control method

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