Auxiliary frame for wall masonry
By combining anti-slip sleeves and anti-slip balls with the column design, the load-bearing frame can be easily adjusted and gravity locked, solving the problem of low efficiency in manual construction of small houses and improving construction efficiency.
Patent Information
- Application Number
- CN202423069396.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-12
AI Technical Summary
In the construction of small houses, the lack of large-scale automated equipment when manually building walls results in low efficiency in construction and adjustment. Operators need to manually set up climbing equipment, which affects construction efficiency.
The design incorporates anti-slip sleeves, anti-slip balls, and uprights, allowing the load-bearing frame to be adjusted by pushing and locked in place by gravity, avoiding the use of clips for fixing and simplifying the operation process.
It significantly reduced the setup and adjustment time for operators, improved the efficiency of auxiliary frame use, and enhanced construction efficiency.
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Figure CN223767115U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of building engineering, and in particular to an auxiliary frame for wall masonry. BACKGROUND
[0002] When a small house is built, after the ground beam is completed and the frame column reinforcement cage is connected, brick masonry is needed between the frame columns to fill the wall, and the masonry of the filling wall needs to be completed manually. Due to the size of the small house, large-scale automatic climbing equipment cannot be used, and the operator needs to use a pipe to build a climbing device on site to facilitate the masonry, and the building efficiency and use efficiency are low. CONTENT OF THE UTILITY MODEL
[0003] In view of the deficiencies in the prior art, the present application provides an auxiliary frame for wall masonry, and the embodiments of the present application are configured by a slip stop sleeve, a slip stop ball and a stand column, so that the operator does not need to use a buckle or other clamping piece to fix the position of the bearing frame, and only needs to push the bearing frame to complete the adjustment of the bearing frame. After the stress of the operator pushing the bearing frame is unloaded, the bearing frame is locked at the current position by gravity, which significantly reduces the building and adjusting time of the operator and improves the use efficiency of the auxiliary frame.
[0004] The above application object of the present application is achieved by the following technical scheme:
[0005] The auxiliary frame for wall masonry comprises a base frame and a bearing frame, the top of the base frame is provided with a plurality of stand columns, the axis of the stand column is perpendicular to the horizontal plane of the base frame, the bearing frame is movably connected to the top of the base frame, and the spacing between the bearing frame and the base frame is adjustable.
[0006] A plurality of slip stop mechanisms are arranged on the bearing frame, the slip stop mechanism comprises a slip stop sleeve mounted on the bearing frame, a plurality of limiting grooves are formed in the inner side of the slip stop sleeve, the limiting grooves are arranged in a ring array, a slip stop ball is rotatably connected in the limiting groove, in the assembled state, the side of the slip stop ball extends out of the limiting groove and is rotatably connected to the outer side of the stand column, and the distance between the inner side of the limiting groove away from the stand column gradually increases in the direction close to the base frame.
[0007] Optionally, the inner side of the slip stop sleeve is further provided with a ring-shaped limiting frame, a plurality of limiting balls are rotatably connected to the limiting frame, and the plurality of limiting balls are arranged in a ring array on the limiting frame.
[0008] Optionally, the inner side of the anti-skid sleeve is provided with an annular mounting groove, the annular mounting groove is located at the top of the plurality of limiting grooves, and the limiting frame is mounted in the annular mounting groove.
[0009] Optionally, the top of the base frame is provided with a plurality of mounting sleeves, and the bottom of the plurality of support columns is respectively inserted into the plurality of mounting sleeves.
[0010] The bottom of the column and the middle of the mounting sleeve are both provided with a connecting hole, and the column is detachably connected with the mounting sleeve through a pin shaft penetrating the connecting holes on the column and the mounting sleeve.
[0011] Optionally, the middle of the base frame is further detachably connected with a limiting column, the carrying frame is provided with a limiting hole through which the limiting column passes, and in the assembled state, the limiting column passes through the limiting hole, and the outer side of the limiting column is attached to the inner side of the limiting hole.
[0012] Optionally, the limiting column is provided with a plurality of grooves, the plurality of grooves are linearly distributed at equal intervals along the central axis of the limiting column, and a ring buckle is mounted in the groove, and the end of the ring buckle away from the limiting column does not protrude from the opening of the groove.
[0013] In summary, the present application has the following beneficial technical effects:
[0014] The embodiment of the present application is through the cooperation of the anti-skid sleeve, the anti-skid ball and the column, so that the operator does not need to use a buckle or other clamping parts to fix the position of the carrying frame, and only needs to push the carrying frame to complete the adjustment of the carrying frame. After the stress of the operator pushing the carrying frame is unloaded, the carrying frame is locked at the current position by gravity, which significantly reduces the time of the operator to build and adjust, and improves the use efficiency of the auxiliary frame. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a front view of an embodiment of the present application;
[0016] Figure 2 is a schematic view of a carrying frame of an embodiment of the present application;
[0017] Figure 3 is a cross-sectional view of an anti-skid mechanism of an embodiment of the present application.
[0018] Reference signs: 10, base frame; 11, mounting sleeve;
[0019] 20, limiting column; 21, groove; 22, ring buckle;
[0020] 30, carrying frame; 31, limiting hole;
[0021] 40, anti-skid mechanism; 41, anti-skid sleeve; 42, limiting groove; 43, anti-skid ball; 44, limiting frame; 45, limiting ball; 46, annular mounting groove;
[0022] 50. Column. Detailed Implementation
[0023] The following is in conjunction with the appendix Figure 1 - Appendix Figure 3 This application will be described in further detail.
[0024] This application provides an auxiliary frame for wall construction, including a base frame 10 as a ground foundation and a support frame 30 for supporting workers and equipment. Several columns 50 are installed on the top of the base frame 10. The axis of the columns 50 is perpendicular to the horizontal plane of the base frame 10. The central axes of any two columns 50 are parallel to each other. The support frame 30 is movably connected to the top of the base frame 10. The height distance between the support frame 30 and the base frame 10 is adjustable.
[0025] The support frame 30 is provided with several anti-slip mechanisms 40. Each anti-slip mechanism 40 includes an anti-slip sleeve 41 installed on the support frame 30. Several limiting grooves 42 are opened on the inner side of the anti-slip sleeve 41. The limiting grooves 42 are arranged in a circular array. Anti-slip balls 43 are rolled inside the limiting grooves 42. In the assembled state, the anti-slip balls 43 extend out of the limiting grooves 42 and roll to the outer side of the column 50. The distance between the inner side of the limiting grooves 42 away from the column 50 and the column 50 gradually increases in the direction close to the base frame 10. When the anti-slip balls 43 move to the top of the limiting grooves 42, the anti-slip balls 43 clamp the column 50 to maintain the relative position of the anti-slip sleeve 41 and the column 50.
[0026] The following section will provide further details based on specific usage scenarios.
[0027] When in use, the operator first moves the base frame 10 to the designated location on the construction site, and then places the load-bearing frame 30 on the base frame 10. After the base frame 10 and the load-bearing frame 30 are placed, the operator passes several columns 50 through several anti-slip sleeves 41 respectively. The bottom end of the column 50 passing through the anti-slip sleeve 41 is detachably connected to the base frame 10.
[0028] At this time, the top of the base frame 10 is in contact with the bottom of the bearing frame 30, and several anti-slip sleeves 41 are respectively wrapped around the outside of several columns 50. Several anti-slip balls 43 inside the anti-slip sleeves 41 are also in contact with the columns 50. When the operator needs to raise the height between the bearing frame 30 and the base frame 10, he only needs to manually raise the bearing frame 30.
[0029] During the upward movement of the support frame 30, the anti-slip sleeve 41 slides relative to the column 50. Several anti-slip balls 43 inside the anti-slip sleeve 41 are located at the bottom of the inner cavity of the limiting groove 42 where they reside. The anti-slip balls 43 are in rolling connection with the outer side of the column 50. When the support frame 30 moves to the designated height, the operator unloads the stress on the support frame 30, and the support frame 30 slides down under gravity. At this time, the several anti-slip balls 43 inside the anti-slip sleeve 41 are still in rolling connection with the outer side of the column 50. As the anti-slip sleeve 41 slides down, the anti-slip balls 43 gradually move upward while still in rolling connection with the column 50. Because the limiting groove 42 is far from the column 50... The distance between the inner side of the column 50 and the column 50 gradually increases in the direction closer to the base frame 10. That is, the distance between the inner side of the limiting groove 42 away from the column 50 and the column 50 gradually decreases in the direction away from the base frame 10. This causes the inner wall of the limiting groove 42 to abut against the anti-slip ball 43 when the anti-slip ball 43 moves upward. This causes the part of the anti-slip ball 43 that contacts the outer side of the column 50 to be slightly embedded in the outer side of the column 50. This fixes the relative position of the anti-slip sleeve 41 and the column 50. After the positions of several anti-slip sleeves 41 are fixed relative to the column 50, the position of the bearing frame 30 will also remain fixed at the height distance from the base frame 10.
[0030] When the operator needs to continue raising the support frame 30, they only need to push the support frame 30 upward. After the support frame 30 is subjected to upward stress, the anti-slip ball 43 rolls and connects with the outer side of the column 50, causing the anti-slip ball 43 to slide down and the anti-slip ball 43 and the column 50 to disengage from the locked state.
[0031] In summary, the embodiments of this application utilize the anti-slip sleeve 41, anti-slip ball bearings 43, and column 50 to allow operators to adjust the load-bearing frame 30 without using clips or other fasteners to fix its position. The operator only needs to push the load-bearing frame 30 to complete the adjustment. After the operator pushes the load-bearing frame 30 to relieve stress, the load-bearing frame 30 is locked in its current position by gravity, which significantly reduces the time required for the operator to set up and adjust the frame and improves the efficiency of the auxiliary frame.
[0032] The anti-slip balls 43 on the inner side of the anti-slip sleeve 41 always maintain contact with the outer side of the column 50. In some possible implementations of this application, an annular limiting frame 44 is also provided on the inner side of the anti-slip sleeve 41. A plurality of limiting balls 45 are rolled on the limiting frame 44. The plurality of limiting balls 45 are distributed in an annular array on the limiting frame 44. In the installed state, the plurality of limiting balls 45 in the same anti-slip sleeve 41 are all in contact with the column 50. An annular mounting groove 46 is opened on the inner side of the anti-slip sleeve 41. The annular mounting groove 46 is located at the top of the plurality of limiting grooves 42. The limiting frame 44 is installed in the annular mounting groove 46. Through the setting of the limiting frame 44 and the plurality of limiting balls 45, the central axis of the anti-slip sleeve 41 can be close to the central axis of the column 50, ensuring the contact between the plurality of anti-slip balls 43 and the column 50.
[0033] The column 50 is detachably connected to the top of the base frame 10. In some possible implementations of this application, the top of the base frame 10 is provided with several mounting sleeves 11, and the bottom of several columns is inserted into several mounting sleeves 11 respectively. The bottom of the column 50 and the middle of the mounting sleeve 11 are provided with connecting holes. The column 50 is detachably connected to the mounting sleeve 11 by a pin passing through the connecting hole on the column 50 and the mounting sleeve 11. When the operator installs the column 50, he only needs to insert the bottom end of the column 50 into the mounting sleeve 11, and then use the pin to pass through the connecting hole on the column 50 and the mounting sleeve 11 to realize the installation of the column 50. The installation process is simple and easy to operate, and there is no need for the operator to use clips or other fasteners, which reduces the time for the operator to build and adjust, and improves the efficiency of the auxiliary frame.
[0034] In some possible implementations of this application, a limiting post 20 can be detachably connected to the middle of the base frame 10. A limiting hole 31 is provided on the bearing frame 30 for the limiting post 20 to pass through. In the assembled state, the limiting post 20 passes through the limiting hole 31, and the outer side of the limiting post 20 fits against the inner side of the limiting hole 31. Through the cooperation between the limiting hole 31 and the limiting post 20, the relative angle relationship between the bearing frame 30 and the base frame 10 can be maintained when the bearing frame 30 moves, so that the bearing frame 30 can always tend to be parallel to the top of the base frame 10. A number of grooves 21 are provided on the limiting post 20. The grooves 21 are linearly distributed at equal intervals along the central axis of the limiting post 20. A ring buckle 22 is installed in the groove 21. The end of the ring buckle 22 away from the limiting post 20 does not protrude from the opening of the groove 21. When the operator climbs onto the bearing frame 30, he / she can tie his / her safety rope in the ring buckle 22, which improves the safety of the operator when using the auxiliary frame.
[0035] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A wall construction aid, characterised in that, Including base frame (10) and bearing frame (30), the top of base frame (10) is provided with several columns (50), the spacing between bearing frame (30) and base frame (10) is adjustable; Several anti-skid mechanisms (40) are arranged on bearing frame (30), the anti-skid mechanism (40) includes an anti-skid sleeve (41) mounted on the bearing frame (30), a plurality of limiting grooves (42) are formed in the inner side of the anti-skid sleeve (41), the limiting grooves (42) are arranged in a ring array, the anti-skid balls (43) are rotatably connected inside the limiting grooves (42), in the assembled state, the side of the anti-skid balls (43) extends out of the limiting grooves (42) and is rotatably connected with the outside of the column (50), the distance between the inner side of the limiting grooves (42) away from the column (50) and the column (50) gradually increases in the direction close to the base frame (10), when the several anti-skid balls (43) move to the top of the several limiting grooves (42) respectively, the several anti-skid balls (43) clamp the column (50) to keep the relative position of the anti-skid sleeve (41) and the column (50).
2. The wall construction aid of claim 1, wherein The inner side of the anti-skid sleeve (41) is also provided with a ring-shaped limiting frame (44), a plurality of limiting balls (45) are rotatably connected on the limiting frame (44), the limiting balls (45) are arranged in a ring array on the limiting frame (44), in the installed state, the limiting balls (45) in the same anti-skid sleeve (41) are in contact with the column (50).
3. A wall building aid according to claim 2, characterised in that The inner side of the anti-skid sleeve (41) is provided with a ring-shaped mounting groove (46), the ring-shaped mounting groove (46) is at the top of the several limiting grooves (42), and the limiting frame (44) is mounted in the ring-shaped mounting groove (46).
4. The wall construction aid of claim 1, wherein, The top of the base frame (10) is provided with several mounting sleeves (11), the bottom of the several columns is inserted into the several mounting sleeves (11) respectively; The bottom of the column (50) and the middle part of the mounting sleeve (11) are provided with connecting holes, and the column (50) is detachably connected with the mounting sleeve (11) through the connecting holes penetrating the column (50) and the mounting sleeve (11).
5. The wall construction aid of claim 1, wherein The middle part of the base frame (10) is also detachably connected with a limiting column (20), the bearing frame (30) is provided with a limiting hole (31) through which the limiting column (20) passes, in the assembled state, the limiting column (20) passes through the limiting hole (31), and the outer side of the limiting column (20) is attached to the inner side of the limiting hole (31).
6. A wall building jig according to claim 5, wherein Several grooves (21) are formed in the limiting column (20), the grooves (21) are linearly distributed at equal intervals along the central axis of the limiting column (20), and a ring buckle (22) is mounted in the groove (21), one end of the ring buckle (22) away from the limiting column (20) does not extend out of the opening of the groove (21).