A building machine jacking assembly
By designing adjustable frame wall mounts and connecting mechanisms, the problem of existing building construction machines being unable to adapt to different floor heights has been solved, enabling flexible adaptation and efficient construction of the building construction machine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN ZHIYE INTELLIGENT EQUIPMENT CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-05-29
AI Technical Summary
The existing building construction machine's lifting components lack adjustment mechanisms for the positions of the wall mounts and the frame, making them unable to adapt to buildings of different heights and affecting their adaptability.
A lifting assembly including a sleeve, a sleeve wall mount, and a connecting mechanism was designed. By combining a hanging plate, a connecting plate, and a limiting plate, the position of the sleeve wall mount is adjusted using a bolt and pin hole structure, thereby enhancing the stability of the connection and the efficiency of assembly and disassembly.
This has enabled the building machine to adapt to buildings of different heights, improving construction flexibility and safety, and increasing construction efficiency.
Smart Images

Figure CN224298840U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building construction machine technology, and in particular to a building construction machine lifting component. Background Technology
[0002] To meet the demands of efficient, safe, and high-quality construction in modern buildings, various advanced construction technologies and machinery have emerged. Among them, high-rise building machines, as integrated and intelligent construction equipment, play a crucial role in the construction of high-rise buildings. They can automatically climb formwork, quickly tie reinforcing bars, and efficiently pour concrete, significantly shortening the construction cycle and improving construction safety and quality stability.
[0003] The lifting assembly is one of the key components of a building construction machine. It can lift the machine upwards along the building structure, ensuring that the machine is always at a suitable construction height and providing a working platform for the construction of subsequent floors.
[0004] The lifting components need to be coordinated with the building's floor height. For example, the utility model disclosed in CN216276811U discloses a one-time lifting device for a building construction machine, where the stroke of the hydraulic cylinder between the track column and the frame is one floor height, and the distance between two adjacent wall mounts is also one floor height. However, this technical solution lacks a mechanism for adjusting the position of the wall mounts and the frame, preventing the building construction machine from constructing buildings of different floor heights and hindering its adaptability. Utility Model Content
[0005] In view of this, the present invention proposes a building construction machine lifting component, which can adjust the relative position of the wall mount and the frame, so that the building construction machine can adapt to buildings of different floor heights and improve the adaptability of the building construction machine.
[0006] The technical solution of this utility model is achieved as follows: This utility model provides a building construction machine lifting assembly, including a frame, two frame wall mounts, and a connecting mechanism, wherein...
[0007] The two aforementioned wall-mounted brackets are spaced apart vertically for fixing to the building wall;
[0008] The connecting mechanism includes a hanging plate, a connecting plate, and a limiting plate. The hanging plate is fixedly mounted on the sleeve. The connecting plate is fixedly mounted on the sleeve, and its interior is provided with a plurality of connecting holes spaced apart in the vertical direction. The limiting plate is fixedly connected to one or more of the connecting holes by bolts. The limiting plate and the hanging plate are respectively connected to two sleeve wall mounts.
[0009] Based on the above technical solution, preferably, the limiting plate has two assembly holes, and the two assembly holes are fixedly connected to two of the connecting holes by bolts.
[0010] More preferably, the assembly hole is an oblong hole.
[0011] More preferably, the length direction of the assembly hole is parallel to the vertical direction.
[0012] Based on the above technical solutions, preferably, both the hanging plate and the limiting plate are provided with pin holes;
[0013] The wall mount includes a wall mount component and a load-bearing pin. The load-bearing pin is detachably fixed to the wall mount component and slides through and within the pin hole.
[0014] More preferably, the load-bearing pin has a reinforcing hole inside;
[0015] The wall-mounted component includes a fixing base, a hanging lug, and a screw. The fixing base has a through hole, and the load-bearing pin is slidably disposed in the through hole. The hanging lug is fixedly disposed on the fixing base. The screw is L-shaped and passes through and is slidably disposed in the reinforcement hole and the hanging lug.
[0016] More preferably, the wall-mounted component further includes a nut, which is threadedly connected to the screw.
[0017] Based on the above technical solutions, preferably, there are two connecting mechanisms, and the two connecting mechanisms are symmetrically arranged about the center line of the sleeve.
[0018] More preferably, there are two load-bearing pins, which are symmetrically arranged about the center line of the frame.
[0019] More preferably, the load-bearing pin includes a pin shaft and a pull ring, wherein,
[0020] The pin is slidably disposed in the through hole and the pin hole, and the reinforcing hole is formed on the circumferential side of the pin.
[0021] The pull ring is fixedly mounted on one end of the pin.
[0022] The building construction machine lifting component of this utility model has the following advantages over the prior art:
[0023] (1) By connecting one frame wall mount to the frame through a hanging plate and connecting the other frame wall mount to the frame through a connecting plate and a limiting plate, and by setting multiple connecting holes on the connecting plate, the distance between the two frame wall mounts can be adjusted, so that this lifting component can adapt to different floor heights and improve the adaptability of the building machine.
[0024] (2) By setting the assembly hole as an oblong hole, the height of the wall mount of the sleeve can be adjusted within a small range, which not only ensures the fixed connection between the connecting plate and the limiting plate, but also improves the fixing accuracy of the wall mount of the sleeve.
[0025] (3) By setting pins, lugs, screws and nuts, not only can the connection between the wall mount and the connecting mechanism be guaranteed, but the disassembly and assembly efficiency of the two can also be improved, thereby improving the adjustment efficiency of the building machine. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a front view of a building construction machine lifting assembly according to this utility model;
[0028] Figure 2 This is a perspective view of the hanging plate in the lifting assembly of a building construction machine according to this utility model;
[0029] Figure 3 This is a perspective view of the connecting plate in a building construction machine lifting assembly according to this utility model;
[0030] Figure 4 This is a front view of the limiting plate in the lifting assembly of a building construction machine according to this utility model;
[0031] Figure 5 This is a cross-sectional view of the load-bearing pin in a building construction machine lifting assembly according to this utility model;
[0032] Figure 6 This is an exploded view of the limiting plate in the lifting assembly of a building construction machine according to this utility model.
[0033] The components include: 1. Sleeve; 2. Sleeve wall mount; 21. Wall mount; 22. Load-bearing pin; 211. Fixing seat; 212. Hanging lug; 213. Screw; 214. Nut; 221. Pin; 222. Pull ring; 201. Reinforcing hole; 202. Through hole; 3. Connecting mechanism; 31. Hanging plate; 32. Connecting plate; 33. Limiting plate; 301. Connecting hole; 302. Assembly hole; 303. Pin hole; 4. Guide rail. Detailed Implementation
[0034] The technical solutions of this utility model will be clearly and completely described below with reference to specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0035] The lifting assembly is an important component of the building construction machine. It is used to drive the entire building construction machine to climb, so that the building construction machine is always at a suitable construction height, providing a working platform for the construction of subsequent floors.
[0036] This utility model discloses a building construction machine lifting assembly, comprising a frame 1, two frame wall mounts 2, a connecting mechanism 3, a guide rail 4, a hydraulic cylinder, and the guide rail wall mounts. The construction platform of the building construction machine is fixedly mounted on the guide rail 4. Figure 1 As shown, two wall-mounted brackets 2 and a guide rail wall-mounted bracket are fixed to the building wall. These brackets are spaced vertically apart, with the guide rail wall-mounted bracket located below the two wall-mounted brackets 2. The two wall-mounted brackets 2 are connected to the bracket 1 via a connecting mechanism 3, thus securing the bracket 1 to the wall. Both the wall-mounted brackets 2 and the guide rail wall-mounted bracket are slidably connected to the guide rail 4. A self-locking structure to prevent falls is provided between the wall-mounted brackets 2 and the guide rail wall-mounted bracket and the guide rail 4. When the hydraulic cylinder between the bracket 1 and the guide rail 4 extends, it can lift the guide rail 4 upwards, enabling the building machine to climb. When the hydraulic cylinder between the bracket 1 and the guide rail 4 is not in operation, the self-locking structure supports the guide rail 4, keeping it stationary and improving the safety performance of the building machine.
[0037] To improve the climbing efficiency of the building construction machine, the stroke length of the hydraulic cylinder output end is usually set to the floor height, and the distance between two adjacent frame wall mounts 2 is set to the floor height. However, when constructing buildings of different floor heights, the stroke of the hydraulic cylinder output end can be adjusted by the oil supply, but the distance between two adjacent frame wall mounts 2 is not easy to adjust, which will affect the adaptability of the building construction machine.
[0038] Therefore, the connecting mechanism 3 is configured to include a hanging plate 31, a connecting plate 32, and a limiting plate 33, such as... Figure 2 As shown, the hanging plate 31 is fixedly mounted on the sleeve 1, and the upper sleeve wall mount 2 is connected to the hanging plate 31; as shown Figure 3 As shown, the connecting plate 32 is fixedly mounted on the sleeve 1, and multiple connecting holes 301 are arranged vertically at intervals inside the connecting plate 32; the limiting plate 33 is fixedly connected to one or more of the connecting holes 301 by bolts, and the limiting plate 33 is connected to the sleeve wall mount 2 located below; by fixing the limiting plate 33 to the connecting holes 301 at different positions, the height of the limiting plate 33 can be adjusted, thereby adjusting the height of the sleeve wall mount 2 located below, so that the spacing between the two sleeve wall mounts 2 is adapted to the floor height of the building, improving the adaptability of the building construction machine.
[0039] The limiting plate 33 and the connecting plate 32 are fixedly connected by bolts. In order to prevent relative rotation between the two and improve the fixing firmness, it is preferable to open two assembly holes 302 on the limiting plate 33, so that the two assembly holes 302 are fixedly connected to two of the connecting holes 301 by bolts.
[0040] Multiple connecting holes 301 are spaced apart in the vertical direction. The distance between two adjacent connecting holes 301 is the minimum adjustment distance of the sleeve wall mount 2. To increase the minimum adjustment distance of the sleeve wall mount 2, the assembly hole 302 can be set to be an elongated oval shape. The height of the limiting plate 33 can be finely adjusted by sliding the bolt in the assembly hole 302, thereby accurately adjusting the height of the sleeve wall mount 2.
[0041] Meanwhile, by setting the assembly hole 302 to be elongated oval, the two assembly holes 302 can be adapted to the connecting holes 301 with different spacing, thereby facilitating the connection and fixing of the connecting plate 32 and the limiting plate 33.
[0042] Preferably, the length direction of the assembly hole 302 is parallel to the vertical direction, thereby reducing the adjustment stroke of the limit plate 33.
[0043] like Figure 3 , Figure 5 and Figure 6 As shown, the limiting plate 33 has a pin hole 303; correspondingly, the sleeve wall mount 2 includes a wall mount 21 and a load-bearing pin 22. The load-bearing pin 22 is detachably fixed to the wall mount 21, and the load-bearing pin 22 passes through and slides in the pin hole 303. When the load-bearing pin 22 is removed from the lower wall mount 21, the load-bearing pin 22 can slide out from the pin hole 303, thereby allowing the lower wall mount 21 to quickly separate from the limiting plate 33. When it is necessary to connect and fix the lower wall mount 21 to the limiting plate 33, the load-bearing pin 22 is inserted into the pin hole 303 and fixedly connected to the lower wall mount 21, thereby improving the quick assembly and disassembly of the lower sleeve wall mount 2 and the sleeve 1.
[0044] Similarly, pin holes 303 are also provided on the hanging plate 31, so as to realize the quick assembly and disassembly of the upper bracket wall mount 2 and the bracket 1.
[0045] like Figure 5 and Figure 6 As shown, the wall-mounted component 21 includes a fixing base 211, a hanging lug 212, a screw 213, and a nut 214. A through hole 202 is provided in the fixing base 211, and a load-bearing pin 22 is slidably disposed in the through hole 202. Preferably, the axis of the through hole 202 is horizontal, so that the load-bearing pin 22 can be quickly disassembled and assembled with the fixing base 211 by inserting and removing the load-bearing pin 22.
[0046] The lug 212, screw 213, and nut 214 are used to strengthen the fixing of the fixed base 211 and the load-bearing pin 22. The load-bearing pin 22 has a reinforcement hole 201. The lug 212 is fixedly installed on the fixed base 211. The screw 213 passes through and slides in the reinforcement hole 201 and the lug 212. Preferably, the axis of the reinforcement hole 201 is vertical and the screw 213 is set to be L-shaped. When the load-bearing pin 22 is inserted into the through hole 202, the screw 213 is inserted from top to bottom into the lug 212 and the reinforcement hole 201 to fix the load-bearing pin 22 and the lug 212.
[0047] Nut 214 is threaded onto screw 213, such as Figure 5 As shown, after the load-bearing pin 22 is inserted into the through hole 202 and the pin hole 303, the screw 213 is inserted from top to bottom into the lug 212 and the reinforcing hole 201, and then the nut 214 is installed at the lower end of the screw 213. This prevents the screw 213 from separating from the load-bearing pin 22, making the connection between the load-bearing pin 22 and the wall-mounted component 21 more secure.
[0048] To improve the connection stability between the wall mount 2 and the frame 1, two connecting mechanisms 3 and two load-bearing pins 22 should be provided, and the two connecting mechanisms 3 and the two load-bearing pins 22 should be symmetrically arranged about the center line of the frame 1.
[0049] like Figure 3 and Figure 5 As shown, the load-bearing pin 22 includes a pin shaft 221 and a pull ring 222. The pin shaft 221 is slidably disposed in the through hole 202 and the pin hole 303. The reinforcing hole 201 is opened on the periphery of the pin shaft 221. The pull ring 222 is fixedly disposed at one end of the pin shaft 221. When disassembling the nut 214 and the screw 213, the pin shaft 221 can be pulled out by holding the pull ring 222, which improves the ease of disassembly and assembly of the load-bearing pin 22.
[0050] The method of using the building construction machine lifting component of this utility model is as follows:
[0051] like Figure 3As shown, first remove the bolts between the limiting plate 33 and the connecting plate 32, then align the assembly hole 302 with the connecting hole 301 at the appropriate position, and finally use bolts to fix the assembly hole 302 and the connecting hole 301, thereby realizing the adjustment of the height of the wall mount 2.
[0052] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A building construction machine lifting assembly, characterized in that: It includes a frame (1), two frame wall mounts (2), and a connecting mechanism (3), wherein, The two wall mounts (2) are arranged at intervals in the vertical direction for fixing to the building wall; The connecting mechanism (3) includes a hanging plate (31), a connecting plate (32) and a limiting plate (33). The hanging plate (31) is fixedly installed on the sleeve (1). The connecting plate (32) is fixedly installed on the sleeve (1) and has multiple connecting holes (301) spaced vertically inside. The limiting plate (33) is fixedly connected to one or more of the connecting holes (301) by bolts. The limiting plate (33) and the hanging plate (31) are respectively connected to two sleeve wall mounts (2).
2. The building construction machine lifting assembly as described in claim 1, characterized in that: The limiting plate (33) has two assembly holes (302), and the two assembly holes (302) are fixedly connected to two of the connecting holes (301) by bolts.
3. The building construction machine lifting assembly as described in claim 2, characterized in that: The assembly hole (302) is an oblong hole.
4. The building construction machine lifting assembly as described in claim 3, characterized in that: The length direction of the assembly hole (302) is parallel to the vertical direction.
5. The building construction machine lifting assembly as described in claim 1, characterized in that: Both the hanging plate (31) and the limiting plate (33) are provided with pin holes (303); The wall mount (2) includes a wall mount (21) and a load-bearing pin (22). The load-bearing pin (22) is detachably fixed to the wall mount (21) and slides through and is disposed in the pin hole (303).
6. The building construction machine lifting assembly as described in claim 5, characterized in that: The load-bearing pin (22) has a reinforcing hole (201) inside; The wall-mounted component (21) includes a fixing base (211), a hanging lug (212), and a screw (213). The fixing base (211) has a through hole (202) and the load-bearing pin (22) is slidably disposed in the through hole (202). The hanging lug (212) is fixedly disposed on the fixing base (211). The screw (213) is L-shaped and passes through and is slidably disposed in the reinforcement hole (201) and the hanging lug (212).
7. A building construction machine lifting assembly as described in claim 6, characterized in that: The wall-mounted component (21) also includes a nut (214), which is threadedly connected to the screw (213).
8. The building construction machine lifting assembly as described in claim 1, characterized in that: There are two connecting mechanisms (3), and the two connecting mechanisms (3) are symmetrically arranged about the center line of the sleeve (1).
9. A building construction machine lifting assembly as described in claim 5, characterized in that: There are two load-bearing pins (22), and the two load-bearing pins (22) are symmetrically arranged about the center line of the sleeve (1).
10. A building construction machine lifting assembly as described in claim 6, characterized in that: The load-bearing pin (22) includes a pin shaft (221) and a pull ring (222), wherein, The pin (221) is slidably disposed in the through hole (202) and the pin hole (303), and the reinforcing hole (201) is formed on the periphery of the pin (221); The pull ring (222) is fixedly disposed at one end of the pin (221).