Moving mechanism for reinforcing construction in factory building
By designing a moving mechanism for the hoisting ropes and suspended platform, the problem of insufficient construction space on the factory roof was solved, achieving convenience and safety in high-altitude construction and saving ground construction space.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HENAN MINGGU CONSTRUCTION ENGINEERING CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-04-14
AI Technical Summary
During the reinforcement construction of the roof of the aluminum can workshop, scaffolding and aerial work platforms could not be used due to the presence of equipment production lines on the ground, resulting in insufficient construction access and space. Existing technology could not meet the reinforcement construction requirements.
Design a mobile mechanism including a hoisting rope, a suspended platform, a traction component, and a safety rope. The hoisting rope and an electric winch enable the suspended platform to move at high altitudes. Combined with pulleys and sliding installation, it avoids the need to build climbing equipment on the ground and provides high-altitude construction space.
The design of the ropes and baskets allows workers to work directly at heights, saving ground space, avoiding overcrowding, and providing a sufficient working environment.
Smart Images

Figure CN224119973U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of factory construction technology, and in particular to a mobile mechanism for reinforcement construction in factory buildings. Background Technology
[0002] During the reinforcement construction of the roof of the beverage can workshop, the presence of equipment production lines on the workshop floor prevented the use of scaffolding and aerial work platforms, resulting in a severe shortage of construction access and space. This made it difficult for large construction machinery such as scissor lifts and articulated boom lifts to enter the workshop for reinforcement work, and it was also inconvenient to erect full-span scaffolding from the ground as a construction support structure. Existing technologies are insufficient to meet the needs of roof reinforcement construction in such special working environments. Therefore, in order to facilitate roof reinforcement construction, this application designs a mobile mechanism suitable for the complex spatial environment inside the workshop. Utility Model Content
[0003] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a mobile mechanism for reinforcement construction in factory buildings.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A mobile mechanism for reinforcement construction inside a factory building, including a hoisting rope;
[0006] The mounting component is disposed at the end of the suspension rope and is used to fix the end of the suspension rope to the column;
[0007] A suspended platform, the top of which is equipped with pulleys that are slidably mounted on a suspension rope;
[0008] A traction assembly, one side of which is mounted on a tie rod and the other side is connected to the basket, is used to pull the basket to move.
[0009] The above technical solution further includes: the installation assembly includes a snap-fit steel plate a, a snap-fit steel plate b, a threaded locking rod, a nut, a retaining ring, and two clamping blocks.
[0010] Both the snap-fit steel plate a and the snap-fit steel plate b are provided with pin holes. When the snap-fit steel plate a and the snap-fit steel plate b are respectively snapped onto both sides of the column, the two pin holes are positioned on the same axis.
[0011] The two clamping blocks are respectively fixedly installed on the two end walls of the retaining ring, and the two clamping blocks are respectively clamped on the outer walls of the retaining steel plate a and the retaining steel plate b.
[0012] The threaded locking rod moves through the clamping block and the pin hole and is locked in place by a nut.
[0013] Woodworking clamps are installed on the outer wall of the column below the clamping steel plate a and the clamping steel plate b, respectively.
[0014] A turnbuckle a is also installed between the suspension rope and the mounting assembly. The two ends of the turnbuckle a are fixedly connected to the end wall of the suspension rope and the end wall of the retaining ring, respectively.
[0015] The traction assembly includes at least two electric winches. The side walls of the suspended basket are symmetrically equipped with mounting brackets. The two electric winches are respectively mounted on the mounting brackets on both sides. A traction rope is installed on the winch of each electric winch. The end of the traction rope away from the electric winch is fixedly connected to a tie rod.
[0016] It also includes a safety rope a, with turnbuckles b installed at both ends of the safety rope a. An installation component is also provided on the side of the turnbuckle b away from the safety rope a. The turnbuckle b is connected to the column through the installation component. Multiple limiting rings are fixedly installed on the bottom wall of the suspended platform, and the safety rope a moves through the inside of the limiting rings.
[0017] It also includes a safety rope b, with turnbuckles c installed at both ends of the safety rope b, and the end of the turnbuckle c away from the safety rope b is installed on a tie rod.
[0018] A turnbuckle d is also installed on the hoisting rope, and the end of the turnbuckle d away from the hoisting rope is connected to the roof wall of the factory building.
[0019] The suspended platform is equipped with a pull ring, and a hand-operated hoist is installed on the pull ring. The top of the hand-operated hoist is installed on the roof wall of the factory building.
[0020] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0021] This invention includes a hoisting rope, a suspended basket, and a traction component. The suspended basket is mounted on the roof of the factory building, allowing the mobile mechanism to be suspended above the ground construction environment. With this design, workers can directly carry out operations at high altitudes without the need to build scaffolding or other climbing equipment from the construction ground, as is the case with traditional construction methods. This saves ground space and effectively avoids the space congestion problems that may result from building climbing equipment, leaving ample space for other construction processes or equipment placement within the factory building. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the working state of a mobile mechanism for reinforcement construction in a factory building, as proposed in this utility model.
[0023] Figure 2 This is a top view of the structure in its operational state;
[0024] Figure 3 This is a structural diagram of the installed components;
[0025] Figure 4 This is a structural diagram of the suspended platform;
[0026] Figure 5 for Figure 1 Enlarged structural diagram at point A;
[0027] Figure 6 for Figure 3 A magnified structural diagram at point B in the middle.
[0028] In the picture:
[0029] 10. Suspended platform; 11. Pulley; 12. Mounting bracket; 13. Limit ring; 20. Suspension rope; 21. Turnbuckle a; 30. Traction rope; 31. Electric winch; 40. Safety rope a; 41. Turnbuckle b; 50. Safety rope b; 51. Turnbuckle c; 61. Clamping steel plate a; 62. Clamping steel plate b; 63. Pin hole; 64. Threaded locking rod; 65. Nut; 66. Snap ring; 67. Clamping block; 68. Woodworking clamp; 70. Turnbuckle d; 80. Hand chain hoist. Detailed Implementation
[0030] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0031] Example 1
[0032] See attached document Figure 1-5 The system includes a suspension rope 20, with mounting components at both ends to fix the ends of the suspension rope 20 to the uprights. A pulley 11 is mounted on the top of the suspended basket 10, and the pulley 11 is slidably mounted on the suspension rope 20. The suspension rope 20 provides guidance for the movement of the suspended basket 10. When the suspension rope 20 moves, the pulley 11 on the top of the suspended basket 10 slides on the suspension rope 20. In addition, to improve the stability of the pulley 11 moving on the suspension rope 20, an anti-slip guard plate can be installed on the pulley 11, so that the suspension rope 20 can move between the anti-slip guard plate and the pulley 11, thereby preventing the pulley 11 from slipping off the suspension rope 20.
[0033] The mounting components include a snap-fit steel plate a61, a snap-fit steel plate b62, a threaded locking rod 64, a nut 65, a retaining ring 66, and two clamping blocks 67. The snap-fit steel plates a61 and b62 have the same structure and are provided with grooves for snapping onto the side edge of the column.
[0034] Both the snap-fit steel plates a61 and b62 have pin holes 63. When the snap-fit steel plates a61 and b62 are snapped onto the two sides of the column, the two pin holes 63 are positioned on the same axis. Two clamping blocks 67 are fixedly installed on the end walls of the retaining ring 66, respectively, and clamp the outer walls of the snap-fit steel plates a61 and b62. The threaded locking rod 64 moves through the clamping blocks 67 and the pin holes 63 and is locked in place by the nut 65. Here, in order to connect the end of the turnbuckle a21 without damaging the column structure, an installation assembly is provided. When installing the installation assembly (refer to...), Figure 3 and Figure 6 First, clamping steel plates a61 and b62 are respectively clamped onto the two sides of the column, with clamping steel plates a61 and b62 overlapping so that the pin holes 63 on clamping steel plates a61 and b62 overlap. Then, the two clamping blocks 67 on the retaining ring 66 are respectively clamped onto the outer wall of clamping steel plate a61 and the outer wall of clamping steel plate b62. At this time, the through hole on the clamping block 67 and the through hole of the pin hole 63 are on the same axis. Then, the threaded locking rod 64 is inserted from the clamping block 67 and the pin hole 63. Finally, the threaded locking rod 64 is locked and fixed on the other side with a nut 65.
[0035] Woodworking clamps 68 are installed on the outer wall of the column below the clamping steel plates a61 and b62, respectively. These clamps are used to prevent the clamping steel plates a61 and b62 from sliding downwards on the column, thus limiting their movement. Specifically, the two clamps 68 are installed below the clamping steel plates a61 and b62, respectively. The installation diagram is shown below. Figure 6 As shown, during installation, the woodworking clamp 68 is snapped onto the side edge of the column, and then the screw on the woodworking clamp 68 is rotated so that the end of the screw is pressed against the outer wall of the column.
[0036] A turnbuckle a21 is also installed between the suspension rope 20 and the installation assembly. The two ends of the turnbuckle a21 are fixedly connected to the end wall of the suspension rope 20 and the end wall of the retaining ring 66, respectively. The turnbuckle a21 is provided to tighten the suspension rope 20. The suspension rope 20 connected to the screw is tightened by rotating the screw on the turnbuckle a21. The turnbuckle is existing technology and serves to tighten the rope. Its installation diagram can be found in conjunction with... Figure 5 As shown.
[0037] The traction assembly is mounted on a tie rod on one side and connected to the suspended platform 10 on the other side. It is used to pull the suspended platform 10 for movement. The traction assembly includes at least two electric winches 31. Mounting brackets 12 are symmetrically installed on the side walls of the suspended platform 10. The two electric winches 31 are respectively installed on the mounting brackets 12 on both sides. A traction rope 30 is installed on the winch of the electric winch 31 (the connection point of the traction rope 30 on the suspended platform 10 can be set as close as possible to the edge of the side wall of the suspended platform 10). Mounting brackets 12 are symmetrically installed on the side walls of the suspended platform 10. The end of the traction rope 30 away from the electric winch 31 is fixedly connected to the tie rod. When the suspended platform 10 is moving, the electric winches 31 on both sides can be activated simultaneously. For example, when it is necessary to move to the left, the electric winch 31 on the left is activated and winds up the rope, while the electric winch 31 on the right is activated and releases the rope. The electric winch 31 on the left pulls the suspended platform 10, thereby moving the suspended platform 10 to the left.
[0038] It also includes a safety rope a40, with turnbuckles b41 installed at both ends of the safety rope a40. An installation component is also provided on the side of the turnbuckle b41 away from the safety rope a40. The turnbuckle b41 is connected to the column via the installation component. Multiple limiting rings 13 are fixedly installed on the bottom wall of the suspended platform 10, and the safety rope a40 moves through the inside of the limiting rings 13. To improve the safety of the suspended platform 10, a safety rope a40 is provided. At least two sets of safety ropes a40 are provided, positioned on both sides of the bottom wall of the suspended platform 10. When the suspended platform 10 moves, the limiting rings 13 slide on the safety rope a40. Additionally, turnbuckles b41 are also provided on the safety rope a40, which can be used to adjust the tension of the safety rope a40. The installation of the turnbuckle b41 to the column is also connected via the installation component, and its principle is the same as that of the turnbuckle a21 described above, so it will not be repeated here.
[0039] It also includes a safety rope b50, with turnbuckles c51 installed at both ends of the safety rope b50. The end of the turnbuckle c51 away from the safety rope b50 is installed on a tie rod. The safety rope b50 is used for personnel safety protection, that is, the worker can hang his safety rope on the safety rope b50. In addition, the turnbuckle c51 is also installed on the safety rope b50. The turnbuckle c51 can be used to adjust the tension of the safety rope b50. In addition, the end of the turnbuckle c51 can be connected to the tie rod through a hanging ring.
[0040] A turnbuckle d70 is also installed on the hoisting rope 20. The end of the turnbuckle d70 away from the hoisting rope 20 is connected to the roof of the factory building. In order to reduce the slump of the hoisting rope 20, turnbuckles d70 are installed at intervals on the hoisting rope 20. The turnbuckles d70 can be used to lift the hoisting rope 20. When the suspended platform 10 moves to the position of the turnbuckle d70 during construction, a new turnbuckle d70 should be re-suspended behind the suspended platform 10, and then the turnbuckle d70 in the direction of movement should be removed to avoid the turnbuckle d70 in the direction of movement from obstructing the movement of the suspended platform 10. In addition, multiple hanging rings can be installed on the roof of the factory building for connecting the turnbuckles d70 and the hooks on the hand chain hoist 80.
[0041] The suspended platform 10 is equipped with a pull ring, and a hand-operated hoist 80 is installed on the pull ring. The top of the hand-operated hoist 80 is installed on the roof wall of the factory building. The hand-operated hoist 80 is installed here to temporarily raise the height of the suspended platform 10, so that workers can approach the roof for maintenance.
[0042] In this embodiment, the working principle of the device is as follows: When the reinforcement construction in the factory building is carried out, when it is necessary to move the suspended basket 10, the traction component is activated and the electric winches 31 on both sides of the tie rod work together. For example, if the suspended basket 10 is to be moved to the left, the left electric winch 31 winds up the traction rope 30 and the right electric winch 31 releases the traction rope 30, thereby pulling the suspended basket 10 to move along the suspension rope 20.
[0043] Safety rope a40 is fixed to the column at both ends by the mounting components and passes through the limiting ring 13 on the bottom wall of the suspended platform 10. During the movement of the suspended platform 10, the limiting ring 13 slides on the safety rope a40, which improves the safety of the movement of the suspended platform 10. Safety rope b50 is installed on the tie rod at both ends. Workers can hang their own safety ropes on safety rope b50 to ensure personnel safety. Turnbuckle b41 and turnbuckle c51 are used to adjust the tension of safety rope a40 and safety rope b50, respectively.
[0044] The turnbuckle d70 connects the suspension rope 20 to the factory roof wall. The spaced turnbuckles d70 can lift the suspension rope 20, reducing the risk of it falling. During the movement of the suspended platform 10, if it moves to the position of the turnbuckle d70, a new turnbuckle d70 must be re-suspended behind the suspended platform 10 before removing the turnbuckle d70 in the direction of movement to avoid obstructing the movement of the suspended platform 10.
[0045] In addition, the pull ring on the suspended platform 10 is connected to the hand chain hoist 80. When workers need to approach the roof for maintenance, the height of the suspended platform 10 can be temporarily raised by the hand chain hoist 80 to facilitate construction operations.
[0046] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A mobile mechanism for reinforcement construction within a factory building, characterized in that, Sling (20); The mounting component is disposed at the end of the suspension rope (20) and is used to fix the end of the suspension rope (20) to the column; A suspended basket (10) is provided with a pulley (11) on its top, and the pulley (11) is slidably mounted on a suspension rope (20); The traction assembly is mounted on a tie rod on one side and connected to the basket (10) on the other side, and is used to pull the basket (10) to move.
2. The mobile mechanism for reinforcement construction inside a factory building according to claim 1, characterized in that, The mounting assembly includes a snap-fit steel plate a (61), a snap-fit steel plate b (62), a threaded locking rod (64), a nut (65), a retaining ring (66), and two clamping blocks (67). Both the snap-fit steel plate a (61) and the snap-fit steel plate b (62) are provided with pin holes (63). When the snap-fit steel plate a (61) and the snap-fit steel plate b (62) are snapped onto the two sides of the column respectively, the two pin holes (63) are set at the same axial position. The two clamping blocks (67) are respectively fixedly installed on the two end walls of the retaining ring (66), and the two clamping blocks (67) are respectively clamped on the outer walls of the retaining steel plate a (61) and the retaining steel plate b (62). The threaded locking rod (64) moves through the clamp (67) and the pin hole (63) and is locked in place by a nut (65).
3. The mobile mechanism for reinforcement construction inside a factory building according to claim 2, characterized in that, Woodworking clamps (68) are respectively installed on the outer wall of the column below the clamping steel plate a (61) and the clamping steel plate b (62).
4. A mobile mechanism for reinforcement construction inside a factory building according to claim 3, characterized in that, A turnbuckle a (21) is also installed between the suspension rope (20) and the installation assembly. The two ends of the turnbuckle a (21) are fixedly connected to the end wall of the suspension rope (20) and the end wall of the retaining ring (66), respectively.
5. A mobile mechanism for reinforcement construction inside a factory building according to claim 4, characterized in that, The traction assembly includes at least two electric winches (31). Mounting brackets (12) are symmetrically installed on the side walls of the basket (10). The two electric winches (31) are respectively installed on the mounting brackets (12) on both sides. A traction rope (30) is installed on the winch of the electric winch (31). The end of the traction rope (30) away from the electric winch (31) is fixedly connected to the tie rod.
6. A mobile mechanism for reinforcement construction inside a factory building according to claim 5, characterized in that, It also includes a safety rope a (40), with turnbuckles b (41) installed at both ends of the safety rope a (40). An installation component is also provided on the side of the turnbuckle b (41) away from the safety rope a (40). The turnbuckle b (41) is connected to the column through the installation component. Multiple limiting rings (13) are fixedly installed on the bottom wall of the suspended basket (10). The safety rope a (40) moves through the inside of the limiting ring (13).
7. A mobile mechanism for reinforcement construction inside a factory building according to claim 6, characterized in that, It also includes a safety rope b (50), with a turnbuckle c (51) installed at both ends of the safety rope b (50), and the end of the turnbuckle c (51) away from the safety rope b (50) is installed on the tie rod.
8. A mobile mechanism for reinforcement construction inside a factory building according to claim 7, characterized in that, A basket screw d (70) is also installed on the suspension rope (20), and the end of the basket screw d (70) away from the suspension rope (20) is connected to the roof wall of the factory building.
9. A mobile mechanism for reinforcement construction inside a factory building according to claim 8, characterized in that, A pull ring is installed on the suspended basket (10), and a hand chain hoist (80) is installed on the pull ring. The top of the hand chain hoist (80) is installed on the roof wall of the factory building.