Construction engineering building climbing frame
By designing a foldable building climbing frame, the inconvenience of existing building climbing frames in handling and transportation is solved, convenient use and stable movement in narrow places are achieved, and construction flexibility is enhanced.
Patent Information
- Application Number
- CN202422401974.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-30
AI Technical Summary
Existing construction climbing frames are heavy and bulky, making them difficult to carry and transport, especially in some short and narrow areas of construction sites.
A foldable building climbing frame is designed. Through the sliding connection of the first climbing frame, the second climbing frame and the third climbing frame, combined with the self-locking component and the universal wheel, the frame can be folded and extended, which is convenient for transportation and use.
It realizes the convenient transportation and use of the building climbing frame, improves its applicability in narrow places, and improves the stability and mobility of the frame through self-locking components and universal wheels.
Smart Images

Figure CN223330491U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of construction equipment, and in particular to a construction engineering climbing frame. Background Art
[0002] During construction, workers often need to use construction climbing frames when climbing. Existing construction climbing frames generally use an integrated manufacturing process, which makes the manufacturing of such climbing frames simple.
[0003] However, such a construction climbing frame is heavy and bulky, and is inconvenient for workers to carry during handling and transportation, especially in some short and narrow areas of construction sites. At this time, the construction climbing frame is inconvenient to carry or hook and use. Utility Model Content
[0004] In order to facilitate the transportation and use of a building climbing frame, the present application provides a building climbing frame for construction projects.
[0005] The present application provides a construction engineering building climbing frame, which adopts the following technical solution: a construction engineering building climbing frame, including a frame body of the building climbing frame, the frame body including a first climbing frame, a second climbing frame and a third climbing frame, the first climbing frame is slidably connected to the second climbing frame along its own length direction, the third climbing frame is slidably connected to the second climbing frame along its own length direction, the first climbing frame is located on the side of the second climbing frame away from the third climbing frame, the first climbing frame is provided with a first self-locking component for locking its own sliding, the second climbing frame is provided with a second self-locking component for locking its own sliding, the top of the first climbing frame is provided with a hook and a storage component for storing the hook.
[0006] By adopting the above technical solution, when the building climbing frame needs to be transported, the first self-locking component and the second self-locking component are closed, and then the first climbing frame and the second climbing frame are pushed, so that the first climbing frame and the second climbing frame are both slid toward the third climbing frame until the first climbing frame, the second climbing frame and the third climbing frame are misaligned and overlapped, and then the storage component is opened to store the hook. At this time, the total length of the frame is reduced, thereby facilitating the transportation and stacking of the frame.
[0007] When the building climbing frame is needed, the first climbing frame and the second climbing frame are moved according to the length requirements. When they slide to the required length, the first self-locking component and the second self-locking component are opened to lock the relative positions of the first climbing frame, the second climbing frame and the third climbing frame, so that it is convenient for workers to adjust the length of the climbing frame according to the scene requirements, and then open the storage component, take out the hook and use the building climbing frame. According to the above two processes, it is convenient for workers to store, transport and use the building climbing frame according to their needs.
[0008] Optionally, a plurality of universal wheels are provided at the bottom of the third climbing frame.
[0009] By adopting the above technical solution, when workers need to move the building climbing frame, they repeat the above-mentioned moving steps, stagger and overlap the first climbing frame, the second climbing frame and the third climbing frame, and then place the third climbing frame on the ground and pull the frame. At this time, the universal wheels are in contact with the ground, which further facilitates the workers to move the building climbing frame.
[0010] Optionally, the structure of the first self-locking component is the same as that of the second self-locking component. The first self-locking component includes a locking member, which is slidably connected to the first climbing frame. The sliding direction of the locking member intersects with the sliding direction of the first climbing frame. The second climbing frame is provided with a plurality of locking grooves for sliding and inserting the locking member. The locking grooves are arranged in sequence along the length direction of the second climbing frame. The locking member is provided with a force-applying member for workers to move the locking member.
[0011] By adopting the above technical solution, when it is necessary to move the position of the first climbing frame on the second climbing frame, the worker pulls the force-applying member to make the locking member slide on the first climbing frame until the locking member is separated from the locking groove. The worker then pushes the first climbing frame to make the first climbing frame slide on the second climbing frame until the position of the first climbing frame is determined. The worker then pushes the force-applying member to make the locking member slide and be inserted into the locking groove, thereby locking the relative positions of the first climbing frame and the second climbing frame, which makes it convenient for workers to adjust the length of the frame while improving the stability of the frame.
[0012] Optionally, both the first climbing frame and the second climbing frame are provided with a first elastic member for pushing the locking member to insert into the locking groove.
[0013] By adopting the above technical solution, when the worker pulls the force-applying member, the force-applying member drives the locking member to separate from the locking groove. At this time, the first elastic member is deformed until the locking member corresponds to the nearest locking groove. The worker releases the force-applying member. At this time, the first elastic member returns to its natural state and pushes the locking member to slide and insert into the locking groove, thereby making it convenient for the worker to lock the position of the first climbing frame and the second climbing frame, and further improving the stability of the first climbing frame and the second climbing frame.
[0014] Optionally, there are at least two locking members in the same self-locking assembly.
[0015] By adopting the above technical solution, the locking strength is further improved and the stability of the frame is improved.
[0016] Optionally, the locking member is arranged in an arc shape. When the first climbing frame is in a vertical state and the hook member is located at the top, the opening of the locking member faces upward, the locking member slides circumferentially around its own axis, and the opening of the locking groove faces downward.
[0017] By adopting the above technical solution, when the locking member is slidably inserted into the locking groove, the second climbing frame is hooked on the first climbing frame, and the force contact area between the locking member and the locking groove is larger, further improving the stability of the frame.
[0018] Optionally, the second climbing frame is provided with a second elastic member for pushing the first climbing frame and the second climbing frame to be separated and dislocated, and the third climbing frame is provided with a third elastic member for pushing the second climbing frame and the third climbing frame to be separated and dislocated.
[0019] By adopting the above technical solution, when the worker opens the first self-locking component, the second elastic member pushes the first climbing frame away from the third climbing frame, so that the overall length of the frame becomes longer, which makes it easier for the worker to pull the first frame; similarly, when the worker opens the second self-locking component, the third elastic member pushes the second climbing frame away from the third climbing frame. According to the above actions, it is convenient for the worker to stretch the length of the frame, and further facilitates the workers to use the building climbing frame.
[0020] Optionally, a storage bag is provided on one side of the first climbing frame.
[0021] By adopting the above technical solution, when workers climb the frame, it is convenient for them to temporarily place their tools in the storage bag, which is convenient for construction.
[0022] Optionally, the storage assembly includes a rotating shaft, the hook is fixedly connected to the rotating shaft, the rotating shaft is rotatably connected to the first climbing frame, and the first climbing frame is provided with a storage groove for the hook to rotate and sink into.
[0023] By adopting the above technical solution, when workers need to store the hook, they rotate the hook so that the hook rotates around the axis of the rotating shaft. The rotating shaft rotates on the first climbing frame until the hook sinks into the storage groove, further reducing the overall volume of the frame and making it more convenient for workers to carry and use the building climbing frame.
[0024] In summary, this application has the following beneficial technical effects:
[0025] 1. The arrangement of the first climbing frame, the second climbing frame, the third climbing frame, the first self-locking assembly, the second self-locking assembly, the hook and the storage assembly facilitates workers to store, transport and use the construction climbing frame as needed;
[0026] 2. The setting of universal wheels further facilitates workers to carry the building climbing frame;
[0027] 3. The locking piece, locking groove and force-applying piece make it easier for workers to lock the positions of the first and second climbing frames, further improving the stability of the frame.
[0028] 4. The provision of the first elastic member further improves the stability of the first climbing frame and the second climbing frame;
[0029] 5. The arc-shaped setting allows the second climbing frame to be hooked on the first climbing frame when using the building climbing frame, further improving the stability of the frame;
[0030] 6. The second and third elastic members facilitate workers in extending the climbing frame, further facilitating their use of the climbing frame.
[0031] 7. The storage bag provides workers with a temporary tool storage place, which further facilitates workers to use the construction climbing frame;
[0032] 8. The setting of the rotating shaft and the storage slot makes it convenient for workers to store the hooks and hanging parts, which is not easy to cause collision during transportation, and further facilitates workers to carry the building climbing frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 This is a schematic diagram of the overall structure of the embodiment of the present application;
[0034] Figure 2 Schematic diagram of the cross-sectional structure of the first self-locking component and the second self-locking component in the embodiment of the present application;
[0035] Figure 3 Schematic diagram of the exploded structure of the second elastic member, the third elastic member, the force applying member and the connecting rod in the embodiment of the present application;
[0036] Figure 4 It is a schematic cross-sectional structural diagram used to represent the storage component in the embodiment of the present application.
[0037] Figure markings: 1. frame; 11. first climbing frame; 12. second climbing frame; 13. third climbing frame; 14. sliding groove; 15. mounting groove; 16. hook; 2. first self-locking component; 21. locking component; 22. locking groove; 3. second self-locking component; 4. universal wheel; 5. force-applying component; 51. avoidance groove; 52. connecting rod; 6. first elastic component; 7. second elastic component; 71. third elastic component; 8. storage bag; 9. storage component; 91. rotating shaft; 92. storage groove. DETAILED DESCRIPTION
[0038] The following is combined with Figure 1-3 This application is described in further detail.
[0039] The embodiment of the present application discloses a construction engineering building climbing frame. Figure 1 and Figure 2As shown, a construction engineering building climbing frame includes a frame body 1 of the building climbing frame. The frame body 1 is arranged vertically, and the frame body 1 is composed of a first climbing frame 11, a second climbing frame 12 and a third climbing frame 13 from top to bottom. The first climbing frame 11 is provided with a first self-locking component 2, and the second climbing frame 12 is provided with a second self-locking component 3. The upper end surface of the first climbing frame 11 is installed with a hook 16, and the first climbing frame 11 is installed with a storage component 9.
[0040] Both the second climbing frame 12 and the third climbing frame 13 are provided with sliding grooves 14. The first climbing frame 11 is slidably inserted into the sliding groove 14 of the second climbing frame 12, and the second climbing frame is slidably inserted into the sliding groove 14 of the third climbing frame 13. The extension direction of the sliding groove 14 is the same as the length direction of the frame body 1.
[0041] The first climbing frame 11 and the second climbing frame 12 are slidably inserted into the two sliding grooves 14 respectively.
[0042] When the frame 1 needs to be stored, the worker closes the first self-locking component 2 and the second self-locking component 3, pushes the first frame 1, so that the first climbing frame 11 slides in the corresponding sliding groove 14, and is offset and overlapped with the second climbing frame 12, and then pushes the second climbing frame 12, so that the second climbing frame 12 slides in the corresponding sliding groove 14, and is offset and overlapped with the third climbing frame 13. After the relative positions of the first climbing frame 11, the second climbing frame 12 and the third climbing frame 13 are moved, the first self-locking component 2 and the second self-locking component 3 are opened, so that the first climbing frame 11 and the second climbing frame 12 are locked relative to the third climbing frame 13, thereby completing the contraction process of the frame 1 and reducing the overall volume of the frame 1.
[0043] Next, the worker opens the storage assembly 9 and stores the hook 16, thereby completing the folding and contraction process of the frame 1, thereby making it convenient for the workers to carry the building climbing frame in and out of short and narrow places, and making it convenient for the workers to store and carry the building climbing frame according to their needs.
[0044] like Figure 1 As shown, a plurality of universal wheels 4 are fixedly connected to the bottom of the third climbing frame 13. In this embodiment, the number of universal wheels 4 is two.
[0045] When the frame 1 is folded and contracted, the worker places the frame 1 vertically on the ground. At this time, the universal wheels 4 at the bottom of the third climbing frame 13 are in contact with the ground, which further facilitates the worker to push the frame 1.
[0046] like Figure 2 and Figure 3 As shown, in this embodiment, the first self-locking component 2 and the second self-locking component 3 have the same structure. The first self-locking component 2 is arranged on the first climbing frame 11 and corresponds to the second climbing frame 12, and the second self-locking component 3 is arranged on the second climbing frame 12 and corresponds to the third climbing frame 13.
[0047] The first self-locking component 2 includes two locking members 21. A mounting groove 15 for sliding and inserting the locking member 21 is provided on the side wall of the first climbing frame 11. In this embodiment, the extension direction of the locking member 21 and the mounting groove 15 are both arc-shaped, and the arc-shaped opening is vertically upward.
[0048] At least three locking grooves 22 are formed on the groove wall of the sliding groove 14 . The locking grooves 22 are arranged in sequence along the length direction of the sliding groove 14 . The extending direction of the locking grooves 22 is arc-shaped and the locking member 21 is slidably inserted therein.
[0049] Both locking members 21 are fixedly connected to a force-applying member 5. The wall of the mounting slot 15 is provided with an escape slot 51 for the force-applying member 5 to slide through. The escape slot 51 is connected to the outer wall of the corresponding first climbing frame 11. The end of the force-applying member 5, away from the locking member 21, is located outside the corresponding first climbing frame 11. A connecting rod 52 is fixedly connected between the two force-applying members 5 in the same self-locking assembly, and the two ends of the connecting rod 52 are respectively connected to the two force-applying members 5.
[0050] A first elastic member 6 is fixedly connected to the groove wall of the installation groove 15 . In this embodiment, the first elastic member 6 is a spring. One end of the first elastic member 6 is fixedly connected to the groove wall of the installation groove 15 , and the other end of the first elastic member 6 is fixedly connected to the locking member 21 .
[0051] Similarly, the configuration of the second self-locking component 3 is the same as that of the first self-locking component 2 , except that the configuration objects correspond to the second climbing frame 12 and the third climbing frame 13 .
[0052] When the length of the frame 1 needs to be adjusted, the worker pulls the connecting rod 52, and the connecting rod 52 drives the force-applying member 5 to move, and the force-applying member 5 drives the locking member 21 to sink into the installation groove 15, and the first elastic member 6 is deformed. At this time, the locking member 21 is separated from the locking groove 22, and then the worker pushes the first climbing frame 11, and the first climbing frame 11 slides in the sliding groove 14 of the second climbing frame 12. After the position of the first climbing frame 11 is determined, the worker releases the connecting rod 52. At this time, the first elastic member 6 returns to its natural state and pushes the locking member 21 to insert into the locking groove 22, thereby completing the position locking of the first climbing frame 11.
[0053] Similarly, the worker adjusts the position of the second climbing frame 12 on the third climbing frame 13 .
[0054] According to the above method, it is convenient for workers to adjust the construction climbing frame and adjust the length of the frame 1 according to the conditions of the construction site. At the same time, the locking member 21 is arranged in an arc shape, so that the first climbing frame 11 hooks the second climbing frame 12, and the second climbing frame 12 hooks the third climbing frame 13. The frame 1 is more stable, and the locking member 21 is not easily separated from the locking groove 22 under the pull of the non-force-applying member 5, thereby improving the stability of the frame 1.
[0055] like Figure 2and Figure 3 As shown, a second elastic member 7 is fixedly connected to the wall of the sliding groove 14 of the second climbing frame 12, and a third elastic member 71 is fixedly connected to the wall of the sliding groove 14 of the third climbing frame 13. In this embodiment, the second elastic member 7 and the third elastic member 71 are both springs.
[0056] The second elastic member 7 abuts against the first climbing frame 11 , and the third elastic member 71 abuts against the second climbing frame 12 .
[0057] When the first climbing frame 11 slides in the sliding groove 14 in the overlapping direction of the second climbing frame 12, the second elastic member 7 is deformed. When the worker needs to stretch the length of the frame 1, the above unlocking process is repeated. At this time, the second elastic member 7 returns to its natural state and pushes the first climbing frame 11 to slide in the sliding groove 14, which makes it convenient for the worker to stretch the length of the frame 1 and further facilitates the worker to use the building climbing frame.
[0058] like Figure 1 As shown, a storage bag 8 is fixedly connected to one side of the first climbing frame 11 for workers to place tools, making it convenient for workers to carry out construction.
[0059] like Figure 1 and Figure 4 As shown, the storage assembly 9 includes a rotating shaft 91, which is rotatably connected to the first climbing frame 11, and a hook 16 is fixedly connected to the rotating shaft 91. The hook 16 is connected to the first climbing frame 11 through the rotating shaft 91, and a storage groove 92 is opened on the side of the first climbing frame 11.
[0060] When the worker needs to store the hook 16, the worker rotates the hook 16, and the hook 16 rotates around the axis of the rotating shaft 91 until the hook 16 sinks into the storage groove 92, thereby realizing the storage of the hook 16, reducing the volume of the frame 1 during transportation, and making it convenient for workers to use whether it is stacked or transported.
[0061] The implementation principle of a construction climbing frame of a construction project in an embodiment of the present application is: when the construction climbing frame needs to be moved, first, the worker pulls the connecting rod 52, the connecting rod 52 drives the force-applying member 5, the force-applying member 5 slides through the avoidance groove 51, and the force-applying member 5 drives the locking member 21 to sink into the installation groove 15, and the first elastic member 6 is deformed until the locking member 21 is separated from the locking groove 22.
[0062] Then, the worker pushes the first climbing frame 11 toward the direction of overlapping with the second climbing frame 12. After the first climbing frame 11 and the second climbing frame 12 overlap, the worker releases the connecting rod 52. At this time, the first elastic member 6 returns to its natural state and pushes the locking member 21 into the locking groove 22, so that the position of the first climbing frame 11 is locked. At this time, the first climbing frame 11 and the second climbing frame 12 overlap.
[0063] Similarly, the worker pulls the connecting rod 52 of the second self-locking assembly 3 and repeats the above-mentioned action to overlap the second climbing frame 12 with the third climbing frame 13 .
[0064] Next, the worker rotates the hook member 16 , and the hook member 16 rotates around the axis of the rotation shaft 91 until the hook member 16 sinks into the receiving groove 92 .
[0065] Finally, the worker places the frame 1 on the ground. At this time, the universal wheels 4 on the third climbing frame 13 are in contact with the ground, making it convenient for the worker to pull and carry it.
[0066] According to the above process, it is convenient for workers to store and move the construction climbing frame according to their needs.
[0067] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A construction engineering building climbing frame, characterized by: A frame body (1) comprising a building climbing frame, wherein the frame body (1) comprises a first climbing frame (11), a second climbing frame (12) and a third climbing frame (13), wherein the first climbing frame (11) is connected to the second climbing frame (12) by sliding along its own length direction, and the third climbing frame (13) is connected to the second climbing frame (12) by sliding along its own length direction, and the first climbing frame (11) is located on a side of the second climbing frame (12) away from the third climbing frame (13), the first climbing frame (11) is provided with a first self-locking component (2) for locking its own sliding, the second climbing frame (12) is provided with a second self-locking component (3) for locking its own sliding, the top of the first climbing frame (11) is provided with a hook (16), and the first climbing frame (11) is provided with a storage component (9) for storing the hook (16).
2. A construction engineering climbing frame according to claim 1, characterized in that: A plurality of universal wheels (4) are provided at the bottom of the third climbing frame (13).
3. A construction engineering climbing frame according to claim 1, characterized in that: The structure of the first self-locking component (2) is the same as that of the second self-locking component (3). The first self-locking component (2) includes a locking member (21), and the locking member (21) is slidably connected to the first climbing frame (11). The sliding direction of the locking member (21) intersects with the sliding direction of the first climbing frame (11). The second climbing frame (12) is provided with a plurality of locking grooves (22) for the locking member (21) to be slidably inserted. The locking grooves (22) are arranged in sequence along the length direction of the second climbing frame (12). The locking member (21) is provided with a force member (5) for a worker to move the locking member (21).
4. A construction engineering climbing frame according to claim 3, characterized in that: The first climbing frame (11) and the second climbing frame (12) are both provided with a first elastic member (6) for pushing the locking member (21) to insert into the locking groove (22).
5. A construction engineering climbing frame according to claim 3, characterized in that: There are at least two locking members (21) in the same self-locking assembly.
6. A construction engineering climbing frame according to claim 3, characterized in that: The locking member (21) is arranged in an arc shape. When the first climbing frame (11) is in a vertical state and the hook member (16) is located above, the opening of the locking member (21) faces upward, the locking member (21) slides circumferentially around its own axis, and the opening of the locking groove (22) faces downward.
7. The construction climbing frame according to claim 3, characterized in that: The second climbing frame (12) is provided with a second elastic member (7) for pushing the first climbing frame (11) and the second climbing frame (12) to be dislocated and separated, and the third climbing frame (13) is provided with a third elastic member (71) for pushing the second climbing frame (12) and the third climbing frame (13) to be dislocated and separated.
8. The construction engineering climbing frame according to claim 1, characterized in that: A storage bag (8) is provided on one side of the first climbing frame (11).
9. The construction engineering climbing frame according to claim 1, characterized in that: The storage assembly (9) includes a rotating shaft (91), the hook member (16) is fixedly connected to the rotating shaft (91), the rotating shaft (91) is rotatably connected to the first climbing frame (11), and the first climbing frame (11) is provided with a storage groove (92) for the hook member (16) to rotate and sink into.