Anti-falling construction frame for building construction
By introducing vibration isolation and blocking devices into the construction scaffold, and utilizing the combination of vertical support components and horizontal sliding components, the forces between the construction climbing structure components are decomposed and eliminated, solving the safety problems caused by load variations and vibrations, and improving the stability and safety of the construction scaffold.
Patent Information
- Application Number
- CN202511052965.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-07-30
AI Technical Summary
Under load variations and vibrations, the performance of existing building scaffolding nodes is prone to change, leading to a reduction in the overall structural safety and posing a risk of falling and collapsing.
A vibration-dispersing and blocking device is adopted. Through the combination of vertical support components and horizontal sliding components, the force between the construction climbing structure components is decomposed and eliminated to prevent the transmission of force. The device includes vertical support components, horizontal sliding components and compression linkage components. The cooperation of compression springs and hinged rods is used to eliminate instantaneous load changes.
It effectively prevents the overall structure from shaking and nodes from slipping due to swaying or vibration of the construction scaffold, thus improving the safety and stability of the construction scaffold and avoiding falls and collapses.
Smart Images

Figure CN120556699B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of building construction tools, and particularly relates to a building construction frame capable of preventing falling. BACKGROUND
[0002] A scaffold is a working platform erected to ensure the smooth progress of various construction processes. In the existing building construction platform, the scaffold has obvious advantages such as large bearing capacity, convenient disassembly, flexible erection and economy, and the scaffold components erected can be repeatedly used, the one-time investment cost is low, and the scaffold is suitable for most construction scenes. However, the scaffold also has some disadvantages:
[0003] A. The load borne by the scaffold has large variability;
[0004] B. The fastener connection point is a semi-rigid connection, and the node performance can change due to changes in the force direction or instantaneous bearing capacity during the construction process;
[0005] C. The components in the scaffold are affected by mutual force constraints, and in the case of vibration or shaking of the foundation structure, the force is transmitted upward, affecting the safety of the overall structure. SUMMARY
[0006] In view of the above problems, the application provides a building construction frame capable of preventing falling, which is provided with vibration separation blocking devices arranged between the construction climbing structures to decompose the force borne by the base part of the construction climbing structure, block the transmission of the force to the upper part of the construction climbing structure, and set vibration separation blocking devices between the two groups of vibration separation blocking devices to separate and eliminate the lateral force transmission while pulling and fixing the two groups of upper loading support frames, so that the overall structure is not shaken due to shaking or vibration or large load variation in a short time, the node component fixed is not shaken and slipped, and the falling or collapse of the construction frame component is avoided.
[0007] The technical scheme adopted by the application is as follows: the application provides a building construction frame capable of preventing falling, which comprises vibration separation blocking devices and construction climbing structure components, the vibration separation blocking devices are arranged between the construction climbing structure components, the vibration separation blocking devices comprise vertical receiving components, lateral sliding components and extrusion linkage components, the vertical receiving components are arranged at the bottom of the lateral sliding components, the extrusion linkage components are arranged at the upper part of the lateral sliding components, the vertical receiving components comprise receiving base components and force receiving lateral plate components, and the force receiving lateral plate components are arranged above the receiving base components.
[0008] Further, the receiving base member comprises a receiving base plate, end side plates and a bottom penetrating pipe, the two side edges of the receiving base plate are fixedly connected with the end side plates, the outer wall of the end side plate is fixedly connected with a pre-buried pipe A, the bottom of the receiving base plate is fixedly connected with the bottom penetrating pipe, and the bottom penetrating pipe is provided with a compression spring A.
[0009] As preferred, the stress receiving transverse plate member comprises a transverse connecting main plate, a plate bottom penetrating element, a plurality of sliding grooves and side edge limiting guide blocks, the bottom of the transverse connecting main plate is fixedly connected with the plate bottom penetrating element, the plate bottom penetrating element comprises a penetrating upper pipe and a penetrating rod shaft, the penetrating upper pipe and the penetrating rod shaft are arranged at the same center, a fixed ring is fixedly connected to the middle position of the penetrating rod shaft, the top surface of the fixed ring is fixedly connected with a compression spring B, the compression spring B is wrapped outside the penetrating rod shaft, the upper surface of the transverse connecting main plate is provided with a plurality of sliding grooves, the sliding grooves are provided with groove tracks, and the two side edges of the transverse connecting main plate are fixedly connected with the side edge limiting guide blocks.
[0010] As further preferred of the present application, the penetrating upper pipe penetrates in the bottom penetrating pipe, the penetrating rod shaft penetrates in the bottom penetrating pipe, and the upper end of the compression spring A is fixedly connected with the bottom surface of the fixed ring.
[0011] Further, the transverse sliding member comprises an internal rolling wheel group and a synchronous moving assembly, the internal rolling wheel group is fixedly connected in the synchronous moving assembly, the internal rolling wheel group comprises a rolling wheel element, a penetrating horizontal shaft, an end connecting block and a dragging spring, a plurality of rolling wheel elements are arranged on the penetrating horizontal shaft, the end connecting block is fixedly connected to the two end portions of the penetrating horizontal shaft, one end of the dragging spring is fixedly connected with the end connecting block, and the other end of the dragging spring is fixedly connected with the inner wall of the end side plate.
[0012] As preferred, the synchronous moving assembly comprises a moving cover ring and a top setting member, the top setting member is fixedly connected to the top of the moving cover ring, the two side edges of the moving cover ring are provided with side edge slots, the side edge limiting guide blocks are inserted into the side edge slots, the side edge limiting guide blocks slide in the side edge slots, the two ends of the inserted horizontal shaft are fixedly connected to the inner wall of the moving cover ring, the top setting member comprises a top setting ring tube and a connecting horizontal positioning rod A, the top setting ring tube is provided with two branches, the connecting horizontal positioning rod A is fixedly connected to the two branches of the top setting ring tube, the horizontal sliding member provided in the device is arranged between the pressing linkage member and the vertical receiving member, the flexibility of the device is increased, the stability of the built-in rolling wheel group in the horizontal sliding member is ensured through the drag spring without affecting the operation of the pressing linkage member and the vertical receiving member, the stability of the vibration separation blocking device itself is improved, and the rupture of the components of the vibration separation blocking device itself due to simultaneous multi-directional stress is prevented.
[0013] As further preferred of the present application, the pressing linkage member comprises a synchronous moving inserted part, a pressing hinged rod and a stress plate, the synchronous moving inserted part is rotationally connected with the pressing hinged rod, the pressing hinged rod is slidingly connected with the stress plate, the synchronous moving inserted part is insertedly connected with the top setting member, the synchronous moving inserted part comprises a vertical inserted rod, a wrapping spring and a connecting horizontal positioning rod B, the wrapping spring is wrapped around the lower part of the vertical inserted rod, the vertical inserted rod is inserted into the top setting ring tube, the wrapping spring is arranged in the top setting ring tube, the vertical inserted rod is provided with two branches, and the connecting horizontal positioning rod B is fixedly connected with the two branches of the vertical inserted rod.
[0014] Further, the pressing hinged rod comprises a hinged rod A, a hinged rod B, a hinged block and a traction spring, one end of the hinged rod A is fixedly connected with one end of the hinged rod B through the hinged block, the other end of the hinged rod A is slidingly arranged at the end of the connecting horizontal positioning rod A, the other end of the hinged rod B is slidingly arranged at the end of the connecting horizontal positioning rod B, the back of the hinged block is fixedly provided with a sliding clamping plate, the bottom of the hinged block is fixedly provided with a bottom fixed plate, the upper end of the traction spring is fixedly connected to the bottom of the bottom fixed plate, the stress plate comprises a pressing plate, a plate inner wall sliding groove and a pre-buried pipe B, the inner wall of the pressing plate is fixedly provided with the plate inner wall sliding groove, the pre-buried pipe B is fixedly connected to the outer wall of the pressing plate, the bottom of the pressing plate is fixedly provided with a bottom connecting plate, the traction spring is fixedly connected between the bottom fixed plate and the bottom connecting plate, and the sliding clamping plate slides in the plate inner wall sliding groove.
[0015] As preferred, the construction climbing structure comprises an upper loading support frame and a lower base support frame, the upper loading support frame is arranged on the lower base support frame, the upper loading support frame comprises a horizontal long rod A, a horizontal short rod A and a vertical rod A, the horizontal long rod A, the horizontal short rod A and the vertical rod A are fixed and locked at the mutual connection positions by cross buckles, the lower base support frame comprises a horizontal long rod B, a horizontal short rod B and a vertical rod B, the horizontal long rod B, the horizontal short rod B and the vertical rod B are fixed and locked at the mutual connection positions by cross buckles, the device retains the traditional horizontal rod and vertical rod mode of the scaffold, the structure between the horizontal rod and the vertical rod is fixed by the existing cross buckle, wherein the lower base support frame serves as the base of the overall structure, the upper loading support frame is loaded on the lower base support frame, the scaffold structure has the advantages of simple structure, convenient loading and low investment cost, the force transmission mode between the upper loading support frame and the lower base support frame is changed by the vibration separation blocking device, the shaking or oscillation or the large amplitude variation of the load in a short time is avoided, the shaking of the overall structure and the fixed node component is avoided, and the falling or collapse of the construction frame is avoided.
[0016] As further preferred of the present application, the horizontal short rod A is inserted into the pre-buried pipe B of the stress plate, and the horizontal long rod B is inserted into the pre-buried pipe A fixed with the end side plate.
[0017] The present application has the following beneficial effects by adopting the above structure:
[0018] (1) The vertical receiving component in the device is connected with the lower base support frame, and the upper loading support frame is connected with the extrusion linkage component, when the oscillation pressure in the upward and downward directions is received, the extrusion and insertion between the receiving base component and the stress horizontal plate component in the vertical receiving component occurs, the instantaneous force in the upward and downward directions is eliminated, the extrusion linkage component is arranged between the two groups of upper loading support frames, when the instantaneous load force of one group of upper loading support frames changes, the horizontal extrusion stress plate is extruded, the cooperation between the extrusion hinged rod component and the synchronous movement insertion component eliminates the horizontal force.
[0019] (2) The horizontal sliding component in the device is arranged between the pressurization linkage component and the vertical receiving component, the flexibility of the device is increased, the stability of the built-in rolling wheel group in the horizontal sliding component is ensured by the drag spring without affecting the operation of the pressurization linkage component and the vertical receiving component, the stability of the vibration separation blocking device itself is improved, and the fracture of the components of the vibration separation blocking device itself due to the simultaneous multi-directional force is prevented.
[0020] (3), The device of the application retains the traditional scaffold horizontal rod vertical rod mode, the structure between the horizontal rod and the vertical rod is fixed through the existing cross buckle, wherein, the lower base support frame is used as the base of the overall structure, the upper mounted support frame is mounted on the lower base support frame, the scaffold structure is simple, convenient to mount, low investment cost and other obvious advantages are retained, the force transmission mode between the upper mounted support frame and the lower base support frame is changed through the vibration separation blocking device, the overall structure is prevented from shaking due to shaking or oscillation or large load variation in a short time, the node component for fixing is prevented from shaking and slipping, and the falling of the construction frame component or the collapse of the construction frame is caused. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 A front view of the anti-falling building construction frame for building construction is provided for the application;
[0022] Figure 2 A front view of the anti-falling building construction frame for building construction is provided for the application;
[0023] Figure 3 For Figure 2 The local enlarged view of I in the middle;
[0024] Figure 4 A front view of the vibration separation blocking device is provided for the application;
[0025] Figure 5 A side view of the vibration separation blocking device is provided for the application;
[0026] Figure 6 A front view of the vibration separation blocking device is provided for the application; Figure 1 ;
[0027] Figure 7 A front view of the vibration separation blocking device is provided for the application; Figure 2 ;
[0028] Figure 8 For Figure 4 The sectional view along the cutting line A-A in the middle;
[0029] Figure 9 For Figure 8 The sectional view along the cutting line B-B in the middle;
[0030] Figure 10 For Figure 8 The sectional view along the cutting line C-C in the middle;
[0031] Figure 11 For Figure 8 The sectional view along the cutting line D-D in the middle;
[0032] Figure 12The structural schematic view of the synchronous mobile insertion piece and the extrusion hinged rod piece provided by the present application;
[0033] Figure 13 The structural schematic view of the force-bearing transverse plate piece provided by the present application;
[0034] Figure 14 The structural schematic view of the transverse sliding member provided by the present application;
[0035] Figure 15 The structural schematic view of the receiving base piece provided by the present application;
[0036] Figure 16 The structural schematic view of the force-bearing plate piece provided by the present application.
[0037] Among them, 1, vibration separation blocking device, 2, construction climbing structure piece, 3, vertical receiving member, 4, transverse sliding member, 5, extrusion linkage member, 6, upper loading support frame, 7, lower base support frame, 8, receiving base piece, 9, force-bearing transverse plate piece, 10, built-in rolling wheel group, 11, synchronous moving assembly, 12, synchronous mobile insertion piece, 13, extrusion hinged rod piece, 14, force-bearing plate piece, 15, receiving base plate, 16, end side plate, 17, bottom insertion pipe, 18, embedded pipe A, 19, compression spring A, 20, transverse connection main plate, 21, plate bottom insertion piece, 22, multiple sliding grooves, 23, side edge limiting guide block, 24, insertion upper pipe, 25, insertion rod shaft, 26, fixed ring, 27, compression spring B, 28, groove track, 29, rolling wheel piece, 30, insertion cross shaft, 31, end connection block, 32, dragging spring, 33, moving cover ring, 34, top mounting member, 35, side edge slot, 36, top mounting ring pipe, 37, connection transverse fixed rod A, 38, vertical insertion rod, 39, wrapping spring, 40, connection transverse fixed rod B, 41, hinged rod A, 42, hinged rod B, 43, hinged block, 44, traction spring, 45, sliding clamping plate, 46, bottom fixed plate, 47, extrusion plate, 48, plate inner wall sliding groove, 49, embedded pipe B, 50, bottom connection plate, 51, transverse long rod A, 52, transverse short rod A, 53, vertical rod A, 54, transverse long rod B, 55, transverse short rod B, 56, vertical rod B.
[0038] The drawings are used to provide further understanding of the present application, and constitute a part of the specification, together with the embodiments of the present application, to explain the present application, and do not constitute a limitation on the present application. DETAILED DESCRIPTION
[0039] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments; based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative effort shall fall within the protection scope of the present application.
[0040] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are merely for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0041] As shown in Figures 1-16 The present application provides a building construction anti-falling construction frame, which comprises a vibration separation blocking device 1 and a construction climbing structure 2, the vibration separation blocking device 1 is arranged between the construction climbing structure 2, the vibration separation blocking device 1 comprises a vertical receiving member 3, a horizontal sliding member 4 and an extrusion linkage member 5, the vertical receiving member 3 is arranged at the bottom of the horizontal sliding member 4, the extrusion linkage member 5 is arranged at the upper part of the horizontal sliding member 4, the vertical receiving member 3 comprises a receiving base 8 and a stress horizontal plate 9, the stress horizontal plate 9 is arranged above the receiving base 8.
[0042] The receiving base 8 comprises a receiving base plate 15, an end side plate 16 and a bottom insertion pipe 17, the end side plate 16 is fixedly connected on both sides of the receiving base plate 15, a pre-buried pipe A 18 is fixedly connected on the outer wall of the end side plate 16, the bottom insertion pipe 17 is fixedly connected on the bottom of the receiving base plate 15, and a compression spring A 19 is arranged in the bottom insertion pipe 17.
[0043] The stress horizontal plate 9 comprises a horizontal connection main plate 20, a plate bottom insertion 21, a plurality of sliding grooves 22 and a side edge limiting guide block 23, the plate bottom insertion 21 is fixedly connected on the bottom of the horizontal connection main plate 20, the plate bottom insertion 21 comprises an insertion upper pipe 24 and an insertion rod shaft 25, the insertion upper pipe 24 and the insertion rod shaft 25 are arranged at the same center, a fixed ring 26 is fixedly connected at the middle position of the insertion rod shaft 25, a compression spring B 27 is fixedly connected on the top surface of the fixed ring 26, the compression spring B 27 is wrapped outside the insertion rod shaft 25, the horizontal connection main plate 20 is provided with a plurality of sliding grooves 22 on the upper surface, the sliding grooves 22 are provided with groove tracks 28, and the side edge limiting guide block 23 is fixedly connected on both sides of the horizontal connection main plate 20.
[0044] The upper penetrating pipe 24 is penetrated in the bottom penetrating pipe 17, the penetrating rod shaft 25 is penetrated in the bottom penetrating pipe 17, and the upper end of the compression spring A 19 is fixed to the bottom surface of the fixed ring 26.
[0045] The transverse sliding member 4 comprises an internal rolling wheel set 10 and a synchronous moving assembly 11, the internal rolling wheel set 10 is fixed in the synchronous moving assembly 11, the internal rolling wheel set 10 comprises rolling wheel pieces 29, a penetrating horizontal shaft 30, end connecting blocks 31 and a dragging spring 32, the rolling wheel pieces 29 are provided in plurality and are rolled on the penetrating horizontal shaft 30, the end connecting blocks 31 are fixed at both ends of the penetrating horizontal shaft 30, one end of the dragging spring 32 is fixed to the end connecting block 31, and the other end of the dragging spring 32 is fixed to the inner wall of the end side plate 16.
[0046] The synchronous moving assembly 11 comprises a moving cover ring 33 and a top placing member 34, the top placing member 34 is fixed at the top of the moving cover ring 33, both sides of the moving cover ring 33 are provided with side edge slots 35, the side edge limiting guide blocks 23 are penetrated in the side edge slots 35, the side edge limiting guide blocks 23 slide in the side edge slots 35, both ends of the penetrating horizontal shaft 30 are fixed to the inner wall of the moving cover ring 33, and the top placing member 34 comprises a top placing ring pipe 36 and a connecting horizontal fixed rod A 37, the top placing ring pipe 36 is provided in two branches, and the connecting horizontal fixed rod A 37 is fixed to the two branches of the top placing ring pipe 36.
[0047] The extrusion linkage member 5 comprises a synchronous moving penetrating piece 12, an extrusion hinged rod piece 13 and a stress plate piece 14, the synchronous moving penetrating piece 12 is rotationally connected with the extrusion hinged rod piece 13, the extrusion hinged rod piece 13 is slidingly connected with the stress plate piece 14, the synchronous moving penetrating piece 12 is penetratingly connected with the top placing member 34, the synchronous moving penetrating piece 12 comprises a vertical penetrating rod 38, a wrapping spring 39 and a connecting horizontal fixed rod B 40, the wrapping spring 39 is wrapped at the lower part of the vertical penetrating rod 38, the vertical penetrating rod 38 is penetrated in the top placing ring pipe 36, the wrapping spring 39 is provided in the top placing ring pipe 36, the vertical penetrating rod 38 is provided in two branches, and the connecting horizontal fixed rod B 40 is fixed to the two branches of the vertical penetrating rod 38.
[0048] The extruded articulated rod 13 comprises an articulated rod A41, an articulated rod B42, an articulated block 43 and a traction spring 44, one end of the articulated rod A41 is fixed with one end of the articulated rod B42 through the articulated block 43, the other end of the articulated rod A41 is slidably arranged at the end of the connecting horizontal fixed rod A37, the other end of the articulated rod B42 is slidably arranged at the end of the connecting horizontal fixed rod B40, the back of the articulated block 43 is fixedly connected with a sliding clamping plate 45, the bottom of the articulated block 43 is fixedly connected with a bottom fixed plate 46, the upper end of the traction spring 44 is fixedly connected to the bottom of the bottom fixed plate 46, the force plate 14 comprises an extruded plate 47, a plate inner wall sliding groove 48 and a pre-buried pipe B49, the inner wall of the extruded plate 47 is fixedly connected with the plate inner wall sliding groove 48, the pre-buried pipe B49 is fixedly connected to the outer wall of the extruded plate 47, the bottom of the extruded plate 47 is fixedly connected with a bottom connecting plate 50, the traction spring 44 is fixedly connected between the bottom fixed plate 46 and the bottom connecting plate 50, and the sliding clamping plate 45 slides in the plate inner wall sliding groove 48.
[0049] The construction climbing structure 2 comprises an upper loading support frame 6 and a lower base support frame 7, the upper loading support frame 6 is arranged on the lower base support frame 7, the upper loading support frame 6 comprises a horizontal long rod A51, a horizontal short rod A52 and a vertical rod A53, the horizontal long rod A51, the horizontal short rod A52 and the vertical rod A53 are fixed and locked by cross buckles at the connection positions therebetween, and the lower base support frame 7 comprises a horizontal long rod B54, a horizontal short rod B55 and a vertical rod B56, the horizontal long rod B54, the horizontal short rod B55 and the vertical rod B56 are fixed and locked by cross buckles at the connection positions therebetween.
[0050] The horizontal short rod A52 is inserted into the pre-buried pipe B49 of the force plate 14, and the horizontal long rod B54 is inserted into the pre-buried pipe A18 fixedly connected with the end side plate 16.
[0051] In specific use, when the construction climbing structure 2 is built, the horizontal long rod B54 of the lower base support frame 7 is inserted into the pre-buried pipe A18 on one side of the end side plate 16 of the receiving base 8, the horizontal short rod A52 of the upper loading support frame 6 is inserted into the pre-buried pipe B49 on the side of the extruded plate 47, the horizontal long rod A51, the horizontal short rod A52 and the vertical rod A53 are fixed and locked by cross buckles at the connection positions therebetween, and the horizontal long rod B54, the horizontal short rod B55 and the vertical rod B56 are fixed and locked by cross buckles at the connection positions therebetween.
[0052] When the force in the vertical direction (Y-axis direction force) occurs, such as the load changes on the upper load support frame 6, or the lower base support frame 7 is shaken in the vertical direction due to large equipment passing through, the distance between the receiving base plate 15 and the transverse connection main plate 20 is shortened, the insertion rod shaft 25 and the insertion upper pipe 24 are inserted in the bottom insertion pipe 17, and the bottom insertion pipe 17 has a limiting effect on the compression spring A19 and the compression spring B27. When the insertion rod shaft 25 is inserted, the upper and lower pushing adjustment of the fixed ring 26 is controlled to reset the insertion rod shaft 25, ensuring the effective reset of the transverse connection main plate 20, and eliminating the force in the vertical direction in the process. When the lateral force (X-axis direction force) between adjacent upper load support frames 6 occurs, such as the movement of construction personnel, the distance between the two sides of the extrusion plate 47 is small, and the angle between the hinge rod A41 and the hinge rod B42 is large under the interaction of the hinge rod A41, the hinge rod B42 and the hinge block 43. Since one end of the hinge rod B42 is connected to the fixed connection transverse fixed rod A37, one end of the hinge rod A41 is lifted to drag the connection transverse fixed rod B40 upward to move, the vertical insertion rod 38 is dragged upward, the wrapped spring 39 is compressed and deformed, and as the angle between the hinge rod A41 and the hinge rod B42 increases, the height of the hinge block 43 rises, the sliding clamping plate 45 fixed to the hinge block 43 slides in the plate inner wall sliding groove 48 of the extrusion plate 47, and the traction spring 44 between the bottom connecting plate 50 and the bottom fixed plate 46 is dragged and lifted. When the lateral force disappears, the included angle between the hinge rod A41 and the hinge rod B42 is reset under the reset action of the wrapped spring 39 and the traction spring 44, the hinge block 43 is dragged to reset, and the distance between the extrusion plates 47 is restored. When the center of gravity between the upper load support frame 6 and the lower base support frame 7 is offset and the force (Z-axis direction force) occurs, the transverse short rod A52 drives the embedded pipe B to move, so as to drive the extrusion linkage component 5 to move, the transverse long rod B54 drives the embedded pipe A18 to move, so as to drive the vertical receiving component 3 to move, the transverse sliding component 4 connected between the vertical receiving component 3 and the extrusion linkage component 5 is stressed to displace the internal component, and as the moving cover ring 33 moves along the transverse connection main plate 20, the insertion transverse shaft 30 moves synchronously with the moving cover ring 33, the rolling wheel component 29 rolls in the groove track 28 of the multiple sliding grooves 22, the moving cover ring 33 slides in the side slot 35 during the movement, the end connecting block 31 moves in position, drags one side of the dragging spring 32, and extrudes the other side of the dragging spring 32. When the external force disappears, the synchronous movement assembly 11 is reset under the reset condition of the two sides of the dragging spring 32.
[0053] When the multi-directional synchronous tremor occurs, the vertical receiving member 3, the transverse sliding member 4 and the extrusion linkage member 5 are matched and restricted to each other, and the applied force in the multi-direction is resolved and blocked from being conducted to the next group of support frames.
[0054] The above is the overall working process of the present application, and the next time it is used, repeat this step.
[0055] It should be noted that, in this document, the terms such as first and second are used merely to distinguish one entity or operation from another, and do not necessarily require or imply that these entities or operations exist in any actual relationship or order. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0056] The present application and its embodiments are described above, which is not limited, and the drawings shown are only one of the embodiments of the present application, and the actual structure is not limited thereto. In general, if a person skilled in the art is inspired, without departing from the purpose of the present application, without creative design, similar structure and embodiments of the technical solution can be designed, which should belong to the protection scope of the present application.
Claims
1. A fall-preventing construction scaffold for construction work, characterized by: The utility model provides a kind of construction climbing structure and vibration partition blocking device, including vibration partition blocking device (1) and construction climbing structure (2), and vibration partition blocking device (1) is inserted between construction climbing structure (2), and vibration partition blocking device (1) includes vertical receiving member (3), transverse sliding member (4) and extrusion linkage component (5), vertical receiving member (3) is located at the bottom of transverse sliding member (4), and extrusion linkage component (5) is located at the upper portion of transverse sliding member (4), and vertical receiving member (3) includes receiving base piece (8) and stress transverse plate piece (9), and stress transverse plate piece (9) is located above receiving base piece (8); Receiving base piece (8) includes end side plate (16), and stress transverse plate piece (9) includes side edge limiting guide block (23); Transverse sliding member (4) includes built-in rolling wheel group (10) and synchronous movement assembly (11), built-in rolling wheel group (10) is fixedly connected in synchronous movement assembly (11), and built-in rolling wheel group (10) includes rolling wheel piece (29), inserted horizontal shaft (30), end connecting block (31) and dragging spring (32), rolling wheel piece (29) is provided with a plurality of and rolls on inserted horizontal shaft (30), end connecting block (31) is fixedly connected at both ends of inserted horizontal shaft (30), one end of dragging spring (32) is fixedly connected with end connecting block (31), and the other end of dragging spring (32) is fixedly connected with the inner wall of end side plate (16); Synchronous movement assembly (11) includes moving cover ring (33) and top mounting member (34), top mounting member (34) is fixedly connected at the top of moving cover ring (33), both side edges of moving cover ring (33) are provided with side edge slot (35), side edge limiting guide block (23) is inserted in side edge slot (35), side edge limiting guide block (23) slides in side edge slot (35), both ends of inserted horizontal shaft (30) are fixedly connected with the inner wall of moving cover ring (33), and top mounting member (34) includes top mounting ring pipe (36) and connecting transverse fixed rod A (37), top mounting ring pipe (36) is provided with two branches, and connecting transverse fixed rod A (37) is fixedly connected with two branches of top mounting ring pipe (36). The extrusion linkage component (5) comprises a synchronous movement penetrating piece (12), an extrusion hinged rod (13) and a stress plate (14), the synchronous movement penetrating piece (12) is rotationally connected with the extrusion hinged rod (13), the extrusion hinged rod (13) is slidingly connected with the stress plate (14), the synchronous movement penetrating piece (12) is penetratingly connected with the top arrangement component (34), the synchronous movement penetrating piece (12) comprises a vertical penetrating rod (38), a wrapped spring (39) and a connecting horizontal positioning rod B (40), the wrapped spring (39) is wrapped at the lower part of the vertical penetrating rod (38), the vertical penetrating rod (38) is penetratingly arranged in the top arrangement ring tube (36), the wrapped spring (39) is arranged in the top arrangement ring tube (36), the vertical penetrating rod (38) is provided with two branches, and the connecting horizontal positioning rod B (40) is fixedly connected with the two branches of the vertical penetrating rod (38).
2. The fall-preventing construction scaffold for building construction according to claim 1, characterized in that: The receiving base component (8) comprises a receiving base plate (15) and a bottom penetrating tube (17), both side edges of the receiving base plate (15) are fixedly provided with end side plates (16), the outer wall of the end side plate (16) is fixedly provided with a pre-buried pipe A (18), the bottom of the receiving base plate (15) is fixedly provided with the bottom penetrating tube (17), and the bottom penetrating tube (17) is provided with a compression spring A (19) therein.
3. The fall-preventing construction scaffold for building construction according to claim 2, characterized in that: The stress horizontal plate component (9) comprises a horizontal connection main plate (20), a plate bottom penetrating piece (21) and a plurality of sliding grooves (22), the bottom of the horizontal connection main plate (20) is fixedly provided with the plate bottom penetrating piece (21), the plate bottom penetrating piece (21) comprises a penetrating upper tube (24) and a penetrating rod shaft (25), the penetrating upper tube (24) and the penetrating rod shaft (25) are arranged at the same center, a fixed ring (26) is fixedly arranged at the middle position of the penetrating rod shaft (25), the top surface of the fixed ring (26) is fixedly provided with a compression spring B (27), the compression spring B (27) is wrapped outside the penetrating rod shaft (25), the upper surface of the horizontal connection main plate (20) is provided with a plurality of sliding grooves (22), the sliding grooves (22) are provided with groove tracks (28) therein, and both side edges of the horizontal connection main plate (20) are fixedly provided with side edge limiting guide blocks (23).
4. The fall-preventing construction scaffold for building construction according to claim 3, characterized in that: The penetrating upper tube (24) is penetratingly arranged in the bottom penetrating tube (17), the penetrating rod shaft (25) is penetratingly arranged in the bottom penetrating tube (17), and the upper end of the compression spring A (19) is fixedly connected with the bottom surface of the fixed ring (26).
5. The fall-preventing construction scaffold for building construction according to claim 4, characterized in that: The extrusion hinged rod (13) comprises a hinged rod A (41), a hinged rod B (42), a hinged block (43) and a traction spring (44), one end of the hinged rod A (41) is fixed with one end of the hinged rod B (42) through the hinged block (43), the other end of the hinged rod A (41) is slidably arranged at the end of the connecting transverse fixed rod A (37), the other end of the hinged rod B (42) is slidably arranged at the end of the connecting transverse fixed rod B (40), the back of the hinged block (43) is fixedly connected with a sliding clamping plate (45), the bottom of the hinged block (43) is fixedly connected with a bottom fixed plate (46), the upper end of the traction spring (44) is fixedly connected with the bottom of the bottom fixed plate (46), the stress plate (14) comprises an extrusion plate (47), a plate inner wall sliding groove (48) and a pre-buried pipe B (49), the inner wall of the extrusion plate (47) is fixedly connected with the plate inner wall sliding groove (48), the pre-buried pipe B (49) is fixedly connected with the outer wall of the extrusion plate (47), the bottom of the extrusion plate (47) is fixedly connected with a bottom connecting plate (50), the traction spring (44) is fixedly connected between the bottom fixed plate (46) and the bottom connecting plate (50), and the sliding clamping plate (45) slides in the plate inner wall sliding groove (48).
6. The fall-preventing construction scaffold for building construction according to claim 5, characterized in that: The construction climbing structure (2) comprises an upper loading support frame (6) and a lower base support frame (7), the upper loading support frame (6) is arranged on the lower base support frame (7), the upper loading support frame (6) comprises a transverse long rod A (51), a transverse short rod A (52) and a vertical rod A (53), the transverse long rod A (51), the transverse short rod A (52) and the vertical rod A (53) are fixed and locked by cross buckles at the mutual connection positions, and the lower base support frame (7) comprises a transverse long rod B (54), a transverse short rod B (55) and a vertical rod B (56), the transverse long rod B (54), the transverse short rod B (55) and the vertical rod B (56) are fixed and locked by cross buckles at the mutual connection positions.
7. The fall-preventing construction scaffold for building construction according to claim 6, characterized in that: The transverse short rod A (52) is fixedly inserted in the pre-buried pipe B (49) of the stress plate (14), the transverse long rod B (54) is fixedly inserted in the pre-buried pipe A (18) fixedly connected with the end side plate (16), the adjacent transverse short rods A (52) of the two groups of upper loading support frames (6) are respectively inserted in the pre-buried pipes A (18) on both sides of the receiving base (8), and the two transverse long rods of the lower base support frame (7) are respectively inserted in the pre-buried pipes A (18) fixedly connected with the end side plates (16) on both sides.
Citation Information
Patent Citations
Adjustable scaffold body for building construction
CN218668415U