A kind of building decoration suspended ceiling auxiliary equipment
By designing auxiliary equipment for building decoration and ceiling installation with automatic feeding, guiding, and lifting mechanisms, the problem of low automation level of existing equipment has been solved, and efficient and precise installation of ceiling construction has been achieved.
Patent Information
- Application Number
- CN202310280986.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-22
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2043-03-22
AI Technical Summary
Existing ceiling construction equipment has a low degree of automation, requires multiple people to work together, is slow to construct and is inaccurate to install, and is time-consuming and labor-intensive.
An auxiliary equipment for building decoration ceilings was designed, which includes an automatic feeding mechanism, an automatic installation mechanism, a platform lifting auxiliary mechanism, and a controller. The equipment achieves precise installation of aluminum ceiling panels through automated feeding, guiding, and lifting mechanisms.
It improved construction efficiency, reduced labor intensity, and ensured accurate positioning and rapid installation of aluminum ceiling panels.
Smart Images

Figure CN116397855B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ceiling auxiliary equipment technology, and in particular to an auxiliary equipment for building decoration ceilings. Background Technology
[0002] A suspended ceiling is a type of decoration applied to the top of a living space and is an important part of interior decoration. Suspended ceilings provide insulation, heat insulation, sound insulation, and sound absorption. They also serve as a concealed layer for electrical, ventilation, air conditioning, communication, and fire alarm piping and equipment. Materials used in suspended ceiling construction include hangers, joists, and aluminum panels. Installing the joists typically requires the cooperation of multiple people, which wastes labor and slows down the construction process, resulting in low efficiency. Therefore, auxiliary equipment for suspended ceiling construction is needed.
[0003] For example, patent number CN 215484465 discloses a movable auxiliary ceiling installation device, including a movable base, a lifting mechanism, and a positioning mechanism. The lifting mechanism is set on the movable base 1, and the positioning mechanism 3 is set above the lifting mechanism 2. The ceiling is positioned by the positioning mechanism 3, and the ceiling is raised and lowered by the lifting mechanism 2 to achieve the lifting of the ceiling. However, this patented device requires manual reloading after each ceiling installation, which is time-consuming and labor-intensive. Furthermore, the device needs to be moved to align with the desired installation position during ceiling installation, and due to the height, it will sway, making it difficult to quickly and accurately position.
[0004] Therefore, inventing a highly automated, time-saving, and labor-saving auxiliary equipment for building decoration and ceiling installation has become an urgent task. Summary of the Invention
[0005] To address the problems in the background art, the present invention provides an auxiliary device for architectural decoration ceiling installation, the specific technical solution of which is as follows:
[0006] An auxiliary device for suspended ceiling decoration in building construction is characterized by comprising: an automatic feeding mechanism, an automatic installation mechanism, a platform lifting auxiliary mechanism, and a controller; the automatic feeding mechanism includes a conveying device and a power device; the automatic installation mechanism includes a guiding mechanism and a lifting mechanism; the platform lifting auxiliary mechanism has an annular upper support at its top; the conveying device is fixedly connected to the annular upper support via a feeding slide support, and has a conveying platform at its top; the power device is located at the lower end of the conveying device; the lifting mechanism is fixedly connected to the annular upper support via a base support, and cooperates with the conveying platform when the lifting mechanism is in its lowest position, for conveying aluminum ceiling panels on the conveying device to the top of the lifting mechanism via the conveying platform; the guiding mechanism is located at the upper end of the lifting mechanism for guiding the aluminum ceiling panels during the lifting process; and the controller controls the operation of the entire auxiliary device for suspended ceiling decoration in building construction.
[0007] Furthermore, the feeding device includes a feeding riser, a tilting lever, an electric cylinder, a buckle, a spring, a feeding slide, and a slide support. The feeding riser is hollow inside, with a feeding port at the lower end and mounting frames on both sides of the upper end of the feeding port. A feeding platform is located at the upper end of the feeding riser, with one end of the feeding platform entering the automatic installation mechanism. The slide support is fixedly connected to the base support at both ends and to the feeding slide in the middle. The lower opening of the feeding slide is fixedly connected to the feeding port of the feeding riser. The buckle is slidably connected to the mounting frame of the feeding riser. The spring is located between the buckle and the inner wall of the mounting frame of the feeding riser. The feeding slide support is fixedly connected to both sides of the feeding riser. The electric cylinder is fixedly connected to the upper end of the feeding slide support, and a push block is installed at the output end of the electric cylinder. The tilting lever is bent at the upper end and fixedly connected to the feeding riser at the lower end. The power unit has a top plate that enters the feeding riser from the lower end.
[0008] Furthermore, the power unit also includes an eccentric shaft and a motor; the motor is fixedly mounted on the bracket; one end of the eccentric shaft is fixed to the output shaft of the motor; the top plate has an opening in the middle, and the opening is movably connected to the other end of the eccentric shaft; both ends of the top plate are slidably connected to the bracket.
[0009] Furthermore, the surface of the feeding riser is hollowed out to facilitate observation of the position of the aluminum panel inside the feeding riser.
[0010] Furthermore, the upper opening of the feeding riser is extended upwards on both sides to prevent the aluminum ceiling panel from tilting.
[0011] Furthermore, the automatic installation mechanism also includes an installation mechanism; the lifting mechanism also includes an electric cylinder bracket, a rotating base, a tray, and an electric cylinder; the guiding mechanism is fixedly installed to the rotating base via the installation mechanism; the rotating base is fixedly installed on the base bracket, the electric cylinder bracket is fixedly installed at the lower end of the rotating base, and the electric cylinder is fixedly installed on the electric cylinder bracket; the tray slides through the rotating base from top to bottom, and its bottom is fixedly connected to the output end of the electric cylinder.
[0012] Furthermore, the guiding mechanism includes a limiting bracket, a lead screw, a motor, a belt assembly, lateral limiting plates, a forward limiting plate, and a gear set. The forward limiting plates are fixedly installed at both ends of the lateral limiting plates, and the two forward limiting plates and the two lateral limiting plates form a limiting frame with a larger lower opening and a smaller upper opening. The lateral limiting plates are slidably installed at both ends of the limiting bracket, and the lower end is fixedly connected to the mounting mechanism. The lead screw is rotatably installed inside the limiting bracket and is threadedly connected to the lateral limiting plates, and drives the lateral limiting plates to move up and down through rotation. The motor is fixedly installed on the limiting bracket, and its output end is fixedly connected to one of the gears in the gear set. The other gears in the gear set are each fixedly connected to a lead screw, and synchronous rotation is achieved through belt assembly.
[0013] Furthermore, the installation mechanism includes a base plate, a sliding rod, a spring, and mounting blocks; the base plate is fixedly installed on the rotating base; at least one mounting block is fixedly installed on each side of the base plate; the sliding rod is slidably installed on the mounting blocks, and each end is fixedly connected to the lower side of a limiting bracket; the spring is disposed between the mounting block and the limiting bracket.
[0014] Furthermore, the platform lifting auxiliary mechanism is also equipped with casters, an electric lead screw device, a handle, a ring-shaped lower support, a cross lifting rod, and a second base plate; the upper and lower ends of the cross lifting rod are respectively connected to the ring-shaped upper support and the ring-shaped lower support; the ring-shaped lower support is installed on the second base plate; casters are installed at the lower end of the second base plate, and a handle is installed on one side.
[0015] Furthermore, the handle is equipped with a human-machine interface screen and control buttons; at least one camera is installed on each of the positive limiting plates.
[0016] Compared with the prior art, the advantages of the present invention are as follows:
[0017] This invention enables the automatic feeding mechanism to complete the feeding process automatically, avoiding repetitive manual feeding, effectively reducing labor intensity and increasing work efficiency.
[0018] This invention uses a lateral limiting piece in the guide mechanism to extend into the keel, and two lateral limiting pieces and two forward limiting pieces to form a limiting frame with a larger lower opening and a smaller upper opening, which limits the aluminum ceiling panel and increases the accuracy of installation.
[0019] This invention has an anti-deviation function. The rotating base and the base plate are rotatably connected. The lower end of the base plate is slidably mounted on the slide rod between the limiting brackets. There are two springs at both ends of the slide rod. The two springs at both ends exert a force on the base plate to press towards the center, so that the base plate always tends to move towards the center, thereby reducing the relative positional change of the rotating chassis and the guide mechanism, and achieving the anti-deviation function. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0021] Figure 2 This is a schematic diagram of the material conveying device of the present invention;
[0022] Figure 3 This is a schematic diagram of the power unit structure of the present invention;
[0023] Figure 4 This is a schematic diagram of the guiding mechanism and the mounting mechanism of the present invention;
[0024] Figure 5 This is a schematic diagram of the lifting mechanism of the present invention;
[0025] Figure 6 This is a schematic diagram of the platform lifting auxiliary mechanism of the present invention;
[0026] Figure 7 This is a schematic diagram of the overall structure of the automatic feeding mechanism and the automatic installation mechanism of the present invention;
[0027] Figure 8 This is a schematic diagram of the eccentric shaft structure and a cross-sectional schematic diagram of the installation of the buckle and spring.
[0028] Figure 9 for Figure 8 A magnified schematic diagram of the partial structure at point A in the middle;
[0029] Figure 10 This is a schematic diagram of the material conveying device of the present invention from another angle;
[0030] Figure 11 for Figure 10 A magnified schematic diagram of the local structure at point B;
[0031] Figure 12 A schematic diagram showing the installation of the human-computer interaction screen and control buttons;
[0032] In the figure: automatic feeding mechanism 1, conveying device 11, feeding riser 1101, feeding slide 1102, slide support 1103, feeding slide support 1104, electric cylinder 1105, tilting lever 1106, buckle 1107, spring 1108, power unit 12, support 1201, top plate 1202, eccentric shaft 1203, motor 1204;
[0033] Automatic installation mechanism 2, guide mechanism 21, limit bracket 2101, lead screw 2102, motor 1 2103, belt assembly 2104, lateral limit plate 2105, forward limit plate 2106, gear assembly 2110; installation mechanism 23, base plate 1 2107, slide rod 2108, spring 2 2109, installation block 2111; lifting mechanism 22, base bracket 2201, electric cylinder bracket 2202, rotating base 2203, tray 2204, electric cylinder 1 2205;
[0034] Platform lifting auxiliary mechanism 3, casters 301, electric screw device 302, handle 303, annular lower bracket 304, annular upper bracket 305, cross lifting rod 306, base plate 2 307. Detailed Implementation
[0035] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention. Example
[0036] like Figure 1-12 As shown, an auxiliary device for building decoration ceiling installation includes: an automatic feeding mechanism 1, an automatic installation mechanism 2, a platform lifting auxiliary mechanism 3, and a controller; the automatic feeding mechanism 1 includes a conveying device 11 and a power device 12; the automatic installation mechanism 2 includes a guiding mechanism 21 and a lifting mechanism 22; the platform lifting auxiliary mechanism 3 has an annular upper support 305 at its top; the conveying device 11 is fixedly connected to the annular upper support 305 through a feeding slide bracket 1104, and has a conveying platform at its top; the power device 12 is located at the lower end of the conveying device 11; the lifting mechanism 22 is fixedly connected to the annular upper support 305 through a base bracket 2201, and cooperates with the conveying platform when the lifting mechanism 22 is in its lowest position, for conveying the aluminum ceiling panels on the conveying device 11 to the top of the lifting mechanism 22 through the conveying platform; the guiding mechanism 21 is located at the upper end of the lifting mechanism 22 for guiding the aluminum ceiling panels during the lifting process; the controller controls the operation of the entire auxiliary device for building decoration ceiling installation.
[0037] In one optional embodiment of the present invention, such as Figure 2-3 As shown, the conveying device 11 includes a feeding riser 1101, a tilting lever 1106, an electric cylinder 1105, a buckle 1107, a spring 1108, a feeding slide 1102, and a slide support 1103. The feeding riser 1101 is hollow inside, with a feeding port at the lower end, and mounting frames on both sides of the upper end of the feeding port. The feeding riser 1101 has a conveying platform at its upper end, and one end of the conveying platform enters the automatic installation mechanism 2. The slide support 1103 is fixedly connected to the base support 2201 at both ends and to the feeding slide 1102 in the middle. The lower opening of the feeding slide 1102 is fixedly connected to the feeding port of the feeding riser 1101. In this embodiment, the feeding chute 1102 has an inclination angle of 10-30 degrees, allowing the aluminum ceiling panel to automatically slide from the feeding chute 1102 into the feeding riser 1101; the buckle 1107 is slidably connected to the mounting frame of the feeding riser 1101; the spring 1108 is disposed between the buckle 1107 and the inner wall of the mounting frame of the feeding riser 1101; the feeding chute bracket 1104 is fixedly connected to both sides of the feeding riser 1101; the electric cylinder 1105 is a servo electric cylinder, fixedly connected to the upper end of the feeding chute bracket 1104, and a push block is installed at the output end of the electric cylinder 1105; the tilting lever 1106 has a bent upper end and a fixed lower end connected to the feeding riser 1101;
[0038] Specifically, the power unit 12 is equipped with a top plate 1202, which enters the interior of the feeding riser 1101 from its lower end. The power unit 12 also includes an eccentric shaft 1203 and a motor 1204; the motor 1204 is a servo motor and is fixedly mounted on the bracket 1201; one end of the eccentric shaft 1203 is fixed to the output shaft of the motor 1204; the top plate 1202 has an opening in the middle, and the opening is movably connected to the other end of the eccentric shaft 1203; both ends of the top plate 1202 are slidably connected to the bracket 1201.
[0039] Specifically, the surface of the feeding riser 1101 is hollowed out to facilitate workers' observation of the position of the aluminum ceiling panel inside the feeding riser 1101.
[0040] Specifically, the upper opening of the feeding riser 1101 is extended upwards on both sides to prevent the aluminum ceiling panel from tilting.
[0041] The aluminum ceiling panel is placed into the feeding hopper 1102. Due to the inclined angle of the feeding hopper 1102, the aluminum ceiling panel will automatically slide down and enter the feeding riser 1101 through the feeding port. During feeding, the motor 1204 drives the eccentric shaft 1203 to rotate one revolution. The eccentric shaft 1203 drives the top plate 1202 to slide from the bottom up and back to the bottom, completing one reciprocating motion. This pushes the innermost aluminum ceiling panel into the feeding riser 1101. When the top plate 1202 pushes the feeding hopper 1102... When the bottom aluminum ceiling panel is pushed up, the buckle 1107 in the feeding riser 1101 holds the aluminum ceiling panel in place to prevent it from falling. At the beginning of filling, the top plate pushes up multiple aluminum ceiling panels until the feeding riser 1101 is full. When the top aluminum ceiling panel is pushed out of the feeding riser 1101, it is deflected by the tilting lever 1106 and falls onto the flat plate. Next, the electric cylinder 1105 is activated to push the aluminum ceiling panel into the automatic installation mechanism 2 and fall onto the tray 2204.
[0042] Specifically, the automatic installation mechanism 2 is further provided with an installation mechanism 23; the lifting mechanism 22 is further provided with an electric cylinder bracket 2202, a rotating base 2203, a tray 2204, and an electric cylinder 2205; the guide mechanism 21 is fixedly installed to the rotating base 2203 through the installation mechanism 23; the rotating base 2203 is fixedly installed on the base bracket 2201, the electric cylinder bracket 2202 is fixedly installed at the lower end of the rotating base 2203, and the electric cylinder 2205 is a servo electric cylinder, which is fixedly installed on the electric cylinder bracket 2202; the tray 2204 slides through the rotating base 2203 from top to bottom, and its bottom is fixedly connected to the output end of the electric cylinder 2205.
[0043] Specifically, the guide mechanism 21 includes a limiting bracket 2101, a lead screw 2102, a motor 2103, a belt assembly 2104, a lateral limiting plate 2105, a forward limiting plate 2106, and a gear set 2110. The forward limiting plate 2106 is fixedly installed at both ends of the lateral limiting plate 2105, and the two forward limiting plates 2106 and the two lateral limiting plates 2105 form a limiting frame with a larger lower opening and a smaller upper opening. The lateral limiting plates 2105 are slidably installed at the left and right ends of the limiting bracket 2101, and the lower end is connected to the mounting bracket. Mechanism 23 is fixedly connected; the lead screw 2102 is rotatably installed inside the limiting bracket 2101 and is threadedly connected to the lateral limiting plate 2105, and drives the lateral limiting plate 2105 to move up and down by rotation; the motor 2103 is a servo motor, fixedly installed on the limiting bracket 2101, and its output end is fixedly connected to one of the gears in the gear set 2110; the other gears in the gear set 2110 are each fixedly connected to a lead screw 2102, and are synchronously rotated by a belt set 2104.
[0044] Specifically, the mounting mechanism 23 includes a base plate 2107, a slide rod 2108, a spring 2109, and a mounting block 2111. The base plate 2107 is fixedly mounted on the rotating base 2203. At least one mounting block 2111 is fixedly mounted on each side of the base plate 2107. The slide rod 2108 is slidably mounted on the mounting block 2111, and each end is fixedly connected to the lower side of a limiting bracket 2101. The spring 2109 is disposed between the mounting block 2111 and the limiting bracket 2101.
[0045] When the aluminum ceiling panel is pushed onto the tray 2204, the operator pushes the equipment to the bottom of the keel. The electric screw device 302 rotates, driving the cross lifting rod 306 to lift the equipment to the appropriate position. Then, the motor 2103 drives the gear set 2110 to rotate, which in turn drives the screw 2102 to rotate. The screw 2102, through the belt set 2104, drives the four screws 2102 to rotate synchronously, thereby causing the lateral limiting piece 2105 to move upward, so that the upper end of the lateral limiting piece 2105 is inserted into the slot of the keel. Then, the electric cylinder 2205 drives the tray 2204 to move upward, thereby moving the aluminum ceiling panel upward. During the upward movement, the lateral limiting piece 2105 and the front limiting piece 2106 become narrower as they move upward, thus guiding the aluminum ceiling panel to move towards the center position, so that the aluminum ceiling panel is accurately inserted into the slot of the keel.
[0046] Specifically, such as Figure 4 As shown, the mounting mechanism 23 includes a base plate 2107, a slide rod 2108, a spring 2109, and a mounting block 2111. The mechanism also has an anti-deviation function. The rotating base 2203 is fixedly connected to the base plate 2107, and the base plate 2107 is fixedly connected to the mounting block 2111. The mounting block 2111 is slidably mounted on the slide rod 2108 between the limiting brackets 2101. There are springs 2109 at both ends of the slide rod 2108. The springs 2109 at both ends exert a force on the base plate 2107 to press towards the center, so that the base plate 2107 always tends to move towards the center.
[0047] Specifically, the platform lifting auxiliary mechanism 3 is also equipped with casters 301, electric screw device 302, handle 303, annular lower support 304, cross lifting rod 306, and base plate 307; the upper and lower ends of the cross lifting rod 306 are respectively connected to the annular upper support 305 and the annular lower support 304; the annular lower support 304 is installed on the base plate 307; the casters 301 are installed at the lower end of the base plate 307, and the handle 303 is installed on one side.
[0048] Specifically, such as Figure 12As shown, the handle 303 is equipped with a human-machine interface screen and control buttons; at the same time, in order to facilitate the staff to observe the process of the upper end of the lateral limiting piece 2105 being inserted into the keel slot more conveniently, improve work efficiency, and reduce fatigue from looking up for a long time, in this embodiment, two cameras are installed on each forward limiting piece 2106; the human-machine interface screen can display the images captured by the cameras.
[0049] Specifically, such as Figure 12 As shown, there are 7 control buttons on the handle 303: button A controls the electric lead screw device 302, button B controls the electric cylinder 1105, button C controls the motor 1204, button D controls the electric cylinder 2205, button E controls the motor 2103, button F controls the emergency stop, and button G controls the reset.
[0050] The controller and control buttons, camera, electric lead screw device 302, electric cylinder 1105, motor 1204, electric cylinder 2205, motor 2103 and the above 7 control buttons are electrically connected.
[0051] Working principle:
[0052] First, when using this invention, press button G to reset the device, that is, the top plate 1202 in the power unit 12 is in the lowest position, the guide mechanism 21 is in the lowest position, and the tray 2204 in the mounting mechanism 23 is in the lowest position.
[0053] The second step is to arrange the aluminum ceiling panels neatly and place them into the feeding hopper 1102, then press button C until the aluminum ceiling panels are conveyed to the feeding platform.
[0054] Third step, press button B to push the aluminum buckle plate on the material conveying platform onto the tray 2204, and then control the electric cylinder 1105 to automatically reset.
[0055] Fourth, the staff pushes the equipment under the keel and presses button A to raise the equipment to the appropriate position;
[0056] Fifth step, open the human-computer interaction screen, press button E according to the image captured by the camera, align it with the keel, and insert the upper end of the lateral limiting piece 2105 into the slot of the keel.
[0057] Step 6: Press button D to insert the aluminum ceiling panel into the slot of the keel. The installation of one aluminum ceiling panel is now complete.
[0058] Step 7: The staff pushes the equipment to the next aluminum ceiling panel installation position, and then repeats steps 2 to 6 until all aluminum ceiling panels are installed.
[0059] In case of an emergency, press button F to stop the device from operating.
[0060] The above description is only a preferred embodiment of this practice, but the scope of protection of this embodiment is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the scope of the technology disclosed in this embodiment, based on the technical solution and inventive concept of this embodiment, should be covered within the scope of protection of this embodiment.
Claims
1. An auxiliary device for suspended ceiling installation in building decoration, characterized in that, include: The system includes an automatic feeding mechanism (1), an automatic installation mechanism (2), a platform lifting auxiliary mechanism (3), and a controller; the automatic feeding mechanism (1) includes a conveying device (11) and a power device (12); the automatic installation mechanism (2) includes a guiding mechanism (21) and a lifting mechanism (22); the platform lifting auxiliary mechanism (3) has an annular upper support (305) at its top; the conveying device (11) is fixedly connected to the annular upper support (305) through a feeding slide support (1104), and has a conveying platform at its top; the power device (12) is a control unit. The device (12) is located at the lower end of the conveying device (11); the lifting mechanism (22) is fixedly connected to the annular upper support (305) through the base bracket (2201), and cooperates with the conveying platform when the lifting mechanism (22) is at its lowest position, for conveying the aluminum ceiling panels on the conveying device (11) to the top of the lifting mechanism (22) through the conveying platform; the guiding mechanism (21) is located at the upper end of the lifting mechanism (22) for guiding the aluminum ceiling panels during the lifting process; the controller controls the operation of the entire building decoration ceiling auxiliary equipment; The feeding device (11) is equipped with a feeding riser (1101), a tilting lever (1106), an electric cylinder (1105), a buckle (1107), a spring (1108), a feeding slide (1102), and a slide bracket (1103). The feeding riser (1101) is hollow inside, with a feeding port at the lower end, and mounting frames are provided on both sides of the upper end of the feeding port. The feeding riser (1101) is equipped with a feeding platform at the upper end, and one end of the feeding platform enters the automatic installation mechanism (2). The two ends of the slide bracket (1103) are fixedly connected to the base bracket (2201), and the middle part is fixedly connected to the feeding slide (1102). The lower opening of the feeding slide (1102) is connected to the feeding port of the feeding riser (1101). Fixed connection; the buckle (1107) and the mounting frame of the feeding riser (1101) are slidably connected; the spring (1108) is disposed between the buckle (1107) and the inner wall of the mounting frame of the feeding riser (1101); the feeding slide bracket (1104) and the two sides of the feeding riser (1101) are fixedly connected; the electric cylinder (1105) and the upper end of the feeding slide bracket (1104) are fixedly connected, and a push block is installed at the output end of the electric cylinder (1105); the upper end of the tilting lever (1106) is bent, and the lower end is fixedly connected to the feeding riser (1101); the power device (12) is provided with a top plate (1202), and the top plate (1202) enters the interior of the feeding riser (1101) from the lower end; The automatic installation mechanism (2) is further provided with an installation mechanism (23); the lifting mechanism (22) is further provided with an electric cylinder bracket (2202), a rotating base (2203), a tray (2204) and an electric cylinder (2205); the guide mechanism (21) is fixedly installed on the rotating base (2203) through the installation mechanism (23); the rotating base (2203) is fixedly installed on the base bracket (2201), the electric cylinder bracket (2202) is fixedly installed on the lower end of the rotating base (2203), and the electric cylinder (2205) is fixedly installed on the electric cylinder bracket (2202); the tray (2204) slides through the rotating base (2203) from top to bottom, and its bottom is fixedly connected to the output end of the electric cylinder (2205).
2. The auxiliary equipment for suspended ceiling decoration according to claim 1, characterized in that, The power unit (12) also includes an eccentric shaft (1203) and a motor (1204); the motor (1204) is fixedly mounted on the bracket (1201); one end of the eccentric shaft (1203) is fixed to the output shaft of the motor (1204); the top plate (1202) has an opening in the middle, and the opening is movably connected to the other end of the eccentric shaft (1203); both ends of the top plate (1202) are slidably connected to the bracket (1201).
3. The auxiliary equipment for suspended ceiling decoration according to claim 1, characterized in that, The surface of the feeding riser (1101) is hollowed out to facilitate observation of the position of the aluminum buckle plate inside the feeding riser (1101).
4. The auxiliary equipment for suspended ceiling decoration according to claim 1, characterized in that, The upper opening of the feeding riser (1101) extends upward on both sides to prevent the aluminum ceiling panel from tilting.
5. The auxiliary equipment for suspended ceiling decoration according to claim 1, characterized in that, The guiding mechanism (21) includes a limiting bracket (2101), a lead screw (2102), a motor (2103), a belt assembly (2104), a lateral limiting plate (2105), a forward limiting plate (2106), and a gear assembly (2110). The forward limiting plate (2106) is fixedly installed at both ends of the lateral limiting plate (2105), and the two forward limiting plates (2106) and the two lateral limiting plates (2105) form a limiting frame with a larger lower opening and a smaller upper opening. The lateral limiting plates (2105) are slidably installed on both the left and right ends of the limiting bracket (2101). The end and the mounting mechanism (23) are fixedly connected; the lead screw (2102) is rotatably installed inside the limiting bracket (2101) and is threadedly connected to the lateral limiting piece (2105), and drives the lateral limiting piece (2105) to move up and down by rotation; the motor (2103) is fixedly installed on the limiting bracket (2101), and its output end is fixedly connected to one of the gears in the gear set (2110); the other gears in the gear set (2110) are each fixedly connected to a lead screw (2102), and synchronous rotation is achieved by sleeve connection through the belt set (2104).
6. The auxiliary equipment for building decoration ceiling according to claim 1, characterized in that the installation mechanism (23) is provided with a base plate (2107), a slide rod (2108), a spring (2109) and an installation block (2111); the base plate (2107) is fixedly installed on the rotating base (2203); at least one installation block (2111) is fixedly installed on each side of the base plate (2107); the slide rod (2108) is slidably installed on the installation block (2111), and each end is fixedly connected to the lower side of a limiting bracket (2101); the spring (2109) is disposed between the installation block (2111) and the limiting bracket (2101).
7. The auxiliary equipment for suspended ceiling decoration according to claim 5, characterized in that, The platform lifting auxiliary mechanism (3) is also equipped with casters (301), electric screw device (302), handle (303), ring lower bracket (304), cross lifting rod (306) and base plate two (307); the upper and lower ends of the cross lifting rod (306) are respectively connected to the ring upper bracket (305) and the ring lower bracket (304); the ring lower bracket (304) is installed on the base plate two (307); the casters (301) are installed at the lower end of the base plate two (307), and the handle (303) is installed on one side.
8. The auxiliary equipment for suspended ceiling decoration according to claim 7, characterized in that, The handle (303) is equipped with a human-machine interaction screen and control buttons; at least one camera is installed on each of the positive limiting plates (2106).
Citation Information
Patent Citations
Building decoration suspended ceiling construction auxiliary device
CN208981797U
Movable suspended ceiling mounting assisting device
CN215484465U
Cited By
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