seismic reinforcement mechanism

By designing a seismic reinforcement mechanism with a detachable base and drive device, the problem of low transportation and installation efficiency caused by the fragmented reinforcement mechanism in prefabricated buildings is solved, realizing convenient installation and stable support, and improving construction efficiency and stability.

CN120331520BActive Publication Date: 2026-01-23CHINA CONSTR EIGHT ENG DIV CORP LTD
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Patent Information

Application Number
CN202510632321.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2026-01-23
Estimated Expiration
2045-05-16

AI Technical Summary

Technical Problem

The existing seismic reinforcement mechanisms for prefabricated buildings are fragmented, resulting in low efficiency in transportation and installation, insufficient stability, and poor applicability.

Method used

Design a seismic reinforcement mechanism including a detachable base, a storage slot, a support plate, and a drive device. The drive device makes the support plate fit with the wall panel or retract into the storage slot. The second drive device moves the second shock-absorbing component synchronously for support. The locking component and the adjusting block are combined to achieve stable support.

Benefits of technology

It enables convenient installation and storage of the reinforcement mechanism, avoids loss of parts, improves transportation efficiency and stability, and simplifies the construction process.

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Abstract

The application belongs to the technical field of building construction, and discloses an anti-seismic reinforcing mechanism, which comprises two reinforcing members for being fixed on a floor on both sides of a wallboard to support the wallboard, and the reinforcing member comprises a base, a receiving groove, a supporting plate, and a first damping member, a first sliding block and a first driving device, the first driving device is used for driving the first sliding block to slide along the receiving groove, so that the first damping member pushes the supporting plate to overturn to be attached to the wallboard or pulls the supporting plate to retract into the receiving groove. In use, the base is installed on the floor, the first damping member pushes the supporting plate to be attached to the wallboard through the driving of the first driving device, so that the wallboard is supported, and the supporting plate is pulled to retract into the receiving groove through the first driving device in non-use. In use, the components do not need to be spliced, and in non-use, the components do not need to be separately disassembled, so that the overall structure is convenient to transport and store, and the parts are prevented from being lost.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of building construction, and particularly relates to an anti-seismic reinforcing mechanism. BACKGROUND

[0002] Fabricated building is one of the house buildings, which can greatly improve the construction speed of the house and reduce the construction period of concrete pouring. Some existing fabricated building structures, such as wallboards and floors, will adopt an anti-seismic reinforcing mechanism for support when being assembled. However, the parts of some existing anti-seismic reinforcing mechanisms are scattered, and some reinforcing parts may be lost during the transportation or storage, resulting in insufficient stability when the floor or wallboard is subsequently reinforced against earthquakes. In addition, the parts need to be stored and transported in a separate storage box during transportation or storage, and then connected at the construction site, which requires more time and is less efficient and less applicable. Therefore, the application provides an anti-seismic reinforcing mechanism to solve the above problems. SUMMARY

[0003] In order to solve the above problems, the application provides an anti-seismic reinforcing mechanism, which solves the problem of scattered reinforcing mechanism parts that are not conducive to storage and installation.

[0004] The application achieves the following scheme: an anti-seismic reinforcing mechanism, comprising two reinforcing members for being fixed on a floor on both sides of a wallboard to support the wallboard relative to each other, the reinforcing member comprising:

[0005] a base detachably fixed to the top of the floor;

[0006] a storage groove opened at the top of the base and extending in a direction perpendicular to the wallboard;

[0007] a support plate having one end reversibly connected to one end of the storage groove facing the wallboard, and the support plate being reversibly upward to be attached to the wallboard and reversibly retractable into the storage groove; and

[0008] a first support member, the first support member comprising a first damping member, a first sliding block and a first driving device, the first sliding block being slidingly connected in the storage groove, one end of the first damping member being movably connected to the other end of the support plate, the other end of the first damping member being movably connected to the first sliding block, and the first driving device being connected to the base for driving the first sliding block to slide along the storage groove, so that the first damping member pushes the support plate to be reversibly attached to the wallboard / the first damping member pulls the support plate to be reversibly retracted into the storage groove.

[0009] Further improvement of the anti-seismic reinforcing mechanism is that the reinforcing member further comprises two second supporting members arranged on two sides of the base respectively, each of the second supporting members comprises a second damping member;

[0010] The reinforcing member further comprises a second driving device for driving the two second damping members to move towards the wallboard simultaneously or move away from the wallboard simultaneously, and the second damping members are driven to move towards the wallboard and support the wallboard by the second driving device, so as to support the wallboard.

[0011] Further improvement of the anti-seismic reinforcing mechanism is that the second supporting member further comprises a locking member for fixing the second damping member and the wallboard.

[0012] Further improvement of the anti-seismic reinforcing mechanism is that the second supporting member further comprises a moving block and a receiving cavity opened on the side surface of the base, the moving block comprises a second sliding block, a contraction cavity, an adjusting block and a notch, the contraction cavity is opened on the outer side of the second sliding block, the opening of the contraction cavity and the receiving cavity are consistent, the adjusting block can be adjusted in the depth direction of the contraction cavity, the notch is opened on the upper part of the adjusting block, and the second damping member is reversibly connected to the notch, the height of the top of the second damping member in the initial state is not higher than the top of the notch, so that the second damping member is pulled into the receiving cavity when the adjusting block is retracted into the contraction cavity, the second sliding block is connected to the second driving device and slides in the length direction of the receiving cavity under the driving of the second driving device;

[0013] The adjusting block is adjusted to extend out of the contraction cavity, and the second damping member is turned up, the second sliding block is driven to slide in the receiving cavity towards the wallboard by the second driving device, so as to push the second damping member to support the wallboard, thereby supporting the wallboard.

[0014] Further improvement of the anti-seismic reinforcing mechanism is that the moving block further comprises a driving member for driving the adjusting block to be adjusted in the depth direction of the contraction cavity.

[0015] Further improvement of the anti-seismic reinforcing mechanism is that the driving member comprises a first screw rod rotatably connected to the side surface of the second sliding block, a connecting plate fixedly connected to the outer part of the adjusting block and a second screw hole penetrating in the thickness direction of the connecting plate, and the connecting plate is sleeved on the outer part of the first screw rod through the second screw hole.

[0016] The first screw rod is rotated to drive the connecting plate to move away from the second sliding block or move towards the second sliding block, so as to drive the adjusting block to be adjusted in the depth direction of the contraction cavity.

[0017] Further improvement of the anti-seismic reinforcing mechanism of the present application is that the base is provided with a movable cavity at the end away from the wallboard, the second driving device comprises two second screw rods, two belt pulleys and a transmission belt, the two second screw rods are rotatably connected in the two accommodating cavities respectively, the two second sliding blocks are screwed onto the outer portions of the two second screw rods respectively, the two second screw rods extend out of the corresponding accommodating cavities into the movable cavity to form two extension sections at the end away from the wallboard, the two belt pulleys are fixed on the outer portions of the two extension sections respectively, the transmission belt is wound around the outer peripheries of the two belt pulleys, and one of the two extension sections extends out of the movable cavity to form a first operation end for rotation operation.

[0018] Further improvement of the anti-seismic reinforcing mechanism of the present application is that the end portion of the base is attached to the wallboard, and the end of the accommodating groove close to the wallboard is open, and the lower end face of the supporting plate is arc-shaped, so that the supporting plate is not blocked by the wallboard when it is retracted into the accommodating groove from the state of being attached to the wallboard.

[0019] Further improvement of the anti-seismic reinforcing mechanism of the present application is that the first damping member comprises two first connecting rods, two first damping cavities, two first dampers and a first conducting rod, the two first connecting rods are movably connected with the supporting plate and the first sliding block respectively, the two first damping cavities are formed at the opposite ends of the two first connecting rods respectively, the two first dampers are fixed in the two first damping cavities respectively, and the two ends of the first conducting rod are movably connected in the two first damping cavities respectively and fixedly connected with the two first dampers respectively.

[0020] Compared with the prior art, the present application has the following advantages:

[0021] In use, the base can be installed on the floor, the first damping member is pushed to be attached to the wallboard by the first driving device, so as to support the wallboard, and the supporting plate is retracted into the accommodating groove by the first driving device when not in use, the whole operation process is simple, no splicing of parts is required in use, no separate disassembly of parts is required when not in use, the overall structure is convenient for transportation and storage, and loss of parts is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0022] Fig. 1 A schematic view of the first supporting member and the second supporting member of the present application when being stored is shown.

[0023] Fig. 2 A schematic view of the first supporting member and the second supporting member of the present application when being supported is shown.

[0024] Fig. 3 A schematic view of the internal structure of the accommodating groove of the present application is shown.

[0025] Fig. 4 A second support member structure of the present application is shown.

[0026] Fig. 5 A driving member structure of the present application is shown.

[0027] Fig. 6 A first shock-absorbing member structure of the present application is shown.

[0028] Fig. 7 A second shock-absorbing member structure of the present application is shown.

[0029] Fig. 8 An active cavity internal structure of the present application is shown.

[0030] In the figure: 1, wallboard; 2, floor; 3, base; 4, storage slot; 5, support plate; 6, second support member; 601, containing cavity; 602, second sliding block; 603, contraction cavity; 604, adjusting block; 605, second shock-absorbing member; 6051, second connecting rod; 6052, second shock-absorbing cavity; 6053, second conducting rod; 6054, second spring; 6055, second damper; 606, notch; 607, connecting block; 608, fixing lug; 609, bolt; 610, connecting plate; 611, first screw; 7, first shock-absorbing member; 701, first connecting rod; 702, first shock-absorbing cavity; 703, first conducting rod; 704, first spring; 705, first damper; 8, first sliding block; 9, first driving device; 10, second driving device; 1001, second screw; 1002, pulley; 1003, transmission belt; 1004, first operation end; 11, active cavity. DETAILED DESCRIPTION

[0031] In order to solve the problem that the components of the reinforcing mechanism are scattered and not conducive to storage and installation, the present application provides an anti-seismic reinforcing mechanism. The anti-seismic reinforcing mechanism is further described below in conjunction with specific embodiments and the accompanying drawings.

[0032] Referring to Figs. 1-8 the figure, an anti-seismic reinforcing mechanism includes two reinforcing members for being fixed on a floor 2 on both sides of a wallboard 1 to relatively support the wallboard 1, and the reinforcing member includes:

[0033] a base 3 detachably fixed on the top of the floor 2;

[0034] a storage slot 4 opened on the top of the base 3 and extending in a direction perpendicular to the wallboard 1;

[0035] a support plate 5 reversibly connected to one end of the storage slot 4 towards the wallboard 1, and the support plate 5 can be reversibly turned up to be attached to the wallboard 1 and can be retracted into the storage slot 4; and

[0036] The first support member comprises the first damping member 7, the first sliding block 8 and the first driving device 9. The first sliding block 8 is slidingly connected in the receiving groove 4. One end of the first damping member 7 is movably connected with the other end of the supporting plate 5, and the other end of the first damping member 7 is movably connected with the first sliding block 8. The first driving device 9 is connected with the base 3 and is used to drive the first sliding block 8 to slide along the receiving groove 4, so that the first damping member 7 pushes the supporting plate 5 to flip to be attached to the wall plate 1 / the first damping member 7 pulls the supporting plate 5 to retract into the receiving groove 4.

[0037] By screwing the base 3 to be fixedly installed at the set position near the assembling connection between the floor 2 and the wall plate 1, the side of the base 3 facing the wall plate 1 is attached to the wall plate 1. The first sliding block 8 is driven by the first driving device 9 to slide along the inside of the receiving groove 4, so that the first damping member 7 pushes the supporting plate 5 to be attached to the wall plate 1, thereby realizing the first support for the wall plate 1. When disassembly is needed, the first sliding block 8 is driven by the first driving device 9 to slide back to the position, thereby pulling the supporting plate 5 to retract into the receiving groove 4. Then, the base 3 is disassembled from the floor 2, which is convenient for overall transportation.

[0038] As shown in Fig. 2 and 4 The reinforcing member further comprises two second support members 6 respectively arranged on the two sides of the base 3. Each second support member 6 comprises a second damping member 605.

[0039] The reinforcing member further comprises a second driving device 10 used to drive the two second damping members 605 to simultaneously move towards the wall plate 1 or away from the wall plate 1. The two second damping members 605 are driven by the second driving device 10 to move towards the wall plate 1 and support the wall plate 1, thereby supporting the wall plate 1.

[0040] By using the above design, the two second damping members 605 can be simultaneously driven by the second driving device 10 to move towards the wall plate 1 or away from the wall plate 1. The second damping members 605 move towards the wall plate 1 and support the wall plate 1, thereby supporting the wall plate 1 for the second time. The twice support is more stable. When the two second damping members 605 are driven to move away from the wall plate 1, the corresponding second damping members 605 can be pulled to retract, which is convenient for the staff to store and transport.

[0041] As shown in Fig. 4 and 5 The second support member 6 further comprises a locking member used to fix the second damping member 605 with the wall plate 1.

[0042] Further, the second damping member 605 is movably connected with a connecting block 607 near one end of the wallboard 1, and the locking member fixes the connecting block 607 with the wallboard 1 to fix the second damping member 605 with the wallboard 1;

[0043] The locking member comprises a bolt 609, a fixed lug 608 fixed to the outer side of the connecting block 607, a through hole penetrating along the thickness direction of the fixed lug 608, and a first screw hole opened on the wallboard 1;

[0044] The connecting block 607 is fixed with the wallboard 1 by screwing the bolt 609 through the through hole and into the first screw hole, so that the connecting block 607 is close to the wallboard 1.

[0045] By adopting the above design, the connecting block 607 is movably connected at the end of the second damping member 605, the installation angle of the connecting block 607 can be rotated to adjust its close fit with the wallboard 1, the support effect is improved, the through hole is aligned with the first screw hole, and the bolt 609 is screwed through the through hole and inserted into the first screw hole to fix the connecting block 607 with the wallboard 1, so that the second support member 6 can support the wallboard 1 more firmly.

[0046] As shown in Fig. 2 The second support member 6 further comprises a moving block and a receiving cavity 601 opened on the side surface of the base 3, the moving block comprises a second sliding block 602, a contraction cavity 603, an adjusting block 604 and a notch 606, the contraction cavity 603 is opened on the outer side of the second sliding block 602, the opening directions of the contraction cavity 603 and the receiving cavity 601 are consistent, the adjusting block 604 can be telescopically adjusted along the depth direction of the contraction cavity 603, the notch 606 is opened on the upper part of the adjusting block 604, and the second damping member 605 is reversibly connected to the notch 606, the height of the top of the second damping member 605 in the initial state is not higher than the top of the notch 606, so that the second damping member 605 can be pulled into the receiving cavity 601 when the adjusting block 604 is retracted into the contraction cavity 603, and the second sliding block 602 is connected to the second driving device 10 and slides along the length direction of the receiving cavity 601 under the driving of the second driving device 10;

[0047] The adjusting block 604 is adjusted to extend out of the contraction cavity 603, and the second damping member 605 is reversibly turned upward, the second sliding block 602 is driven by the second driving device 10 to slide along the receiving cavity 601 towards the wallboard 1, so that the second damping member 605 is pushed to support the wallboard 1, thereby supporting the wallboard 1.

[0048] By adopting the above design, the second damping component 605 can be driven to support the connecting block 607 to the wallboard 1 in use, and the second damping component 605 can be driven to reset the second damping component 605 in non-use, so that the second damping component 605 is placed in the slot 606, and then the adjusting block 604 is adjusted to retract into the retraction cavity 603, so that the second damping component 605 is retracted into the containing cavity 601, thereby completing the storage of the second damping component 605, and facilitating transportation.

[0049] As shown in Fig. 4 and 5 The moving block further comprises a driving member for driving the adjusting block 604 to extend and retract along the depth direction of the retraction cavity 603.

[0050] The driving member comprises a first screw rod 611 rotatably connected to the side surface of the second sliding block 602, a connecting plate 610 fixedly connected to the outside of the adjusting block 604, and a second screw hole penetrating along the thickness direction of the connecting plate 610, and the connecting plate 610 is sleeved on the outside of the first screw rod 611 through the second screw hole.

[0051] By rotating the first screw rod 611, the connecting plate 610 is driven to move away from or towards the second sliding block 602, so as to drive the adjusting block 604 to extend and retract along the depth direction of the retraction cavity 603.

[0052] By adopting the above design, the connecting plate 610 is driven to move away from or towards the second sliding block 602 by rotating the first screw rod 611, so as to drive the adjusting block 604 to extend out of or retract into the retraction cavity 603, and the cooperation of the first screw rod 611 and the second screw hole can limit the position of the adjusting block 604 in the retraction cavity 603, so as to ensure the stability of the position of the adjusting block 604 in non-adjustment.

[0053] As shown in Fig. 8 The base 3 is provided with a movable cavity 11 at one end away from the wallboard 1, the second driving device 10 comprises two second screw rods 1001, two belt pulleys 1002 and a transmission belt 1003, the two second screw rods 1001 are rotatably connected in the two containing cavities 601 respectively, and the two second sliding blocks 602 are sleeved on the outside of the two second screw rods 1001 respectively, the two second screw rods 1001 extend out of the corresponding containing cavities 601 into the movable cavity 11 to form two extension sections at one end away from the wallboard 1, the two belt pulleys 1002 are fixed on the outside of the two extension sections respectively, the transmission belt 1003 is wound on the outer periphery of the two belt pulleys 1002, and one of the two extension sections extends out of the movable cavity 11 to form a first operation end 1004 for rotating operation.

[0054] By adopting the above design, the worker only needs to rotate the first operation end 1004, and the synchronous rotation of the two second screws 1001 can be realized by the driving of one second screw 1001, so that the two second sliding blocks 602 can be simultaneously driven to slide and adjust, and the two second damping members 605 can be controlled, which is convenient to adjust and has high efficiency.

[0055] Further, the first driving device 9 comprises a third screw rotatably connected in the receiving groove 4, and an end of the third screw away from the wall plate 1 extends out of the receiving groove 4 and passes through the movable cavity 11 to the outside of the base 3 to form a second operation end.

[0056] As shown in Figs. 1-2 The lower end surface of the supporting plate 5 is arc-shaped, so that the supporting plate 5 can be retracted without being blocked by the wall plate 1.

[0057] By adopting the above design, the supporting plate 5 can be closely attached to the wall plate 1 when supporting, so as to provide the maximum supporting force; when the supporting plate 5 is retracted from the state of being attached to the wall plate 1, the arc-shaped surface will not be hindered by the surface of the wall plate 1, so that the retraction work is smooth and convenient to adjust.

[0058] As shown in Fig. 6 The first damping member 7 comprises two first connecting rods 701, two first damping cavities 702, two first dampers, and a first conducting rod 703. The two first connecting rods 701 are movably connected with the supporting plate 5 and the first sliding block 8, respectively. The two first damping cavities 702 are respectively formed in the ends of the two first connecting rods 701 opposite to each other. The two first dampers are respectively fixed in the two first damping cavities 702. The two ends of the first conducting rod 703 are respectively movably connected in the two first damping cavities 702 and are respectively fixed with the two first dampers.

[0059] Specifically, the first damper comprises a first spring 704 and a first damper 705. One end of the first damper 705 is connected with the end of the corresponding first damping cavity 702 away from the first conducting rod 703, and the other end is connected with the first conducting rod 703. The first spring 704 is sleeved outside the first damper 705, and the two ends are respectively connected with the first conducting rod 703 and the first damping cavity 702.

[0060] By adopting the above design, the first spring 704 and the first damper 705 can be matched to achieve a good damping effect, thereby improving the damping performance of the first damping component 7.

[0061] Further, referring to Fig. 7 As shown in the figure, the second damping component 605 includes two second connecting rods 6051, two second damping cavities 6052, two second dampers and a second conducting rod 6053. The two second connecting rods 6051 are movably connected with the connecting block 607 and the notch 606 respectively. The two second damping cavities 6052 are respectively arranged at the opposite ends of the two second connecting rods 6051. The two second dampers are respectively fixed in the two second damping cavities 6052. The two ends of the second conducting rod 6053 are respectively slidably connected in the two second damping cavities 6052 and are respectively fixed with the two second dampers.

[0062] Specifically, the second damper includes a second spring 6054 and a second damper 6055. One end of the second damper 6055 is connected with the end of the corresponding second damping cavity 6052 away from the second conducting rod 6053, and the other end is connected with the second conducting rod 6053. The second spring 6054 is sleeved outside the second damper 6055, and the two ends are respectively connected with the second conducting rod 6053 and the second damping cavity 6052. By adopting the above design, the damping performance of the second damping component 605 can be greatly improved.

[0063] It should be noted that the relational terms herein such as first and second and the like are used only to differentiate one entity or operation from another, and do not necessarily require or imply that any such actual relationship or order exists between or among the entities or operations. Also, the terms "comprising", "including", or any other variant thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0064] The above embodiments of the present application are described in detail with reference to the accompanying drawings, and those skilled in the art can make various changes to the present application according to the above description. Therefore, some details in the embodiments should not constitute a limitation on the present application, and the scope of protection of the present application will be defined by the appended claims.

Claims

1. A seismic reinforcement mechanism, characterized in that, Includes two reinforcing members for fixing to the floor slab on both sides of the wall panel to provide relative support for the wall panel, the reinforcing members comprising: A base that can be detachably fixed to the top of the floor slab; A storage slot is created at the top of the base and extends perpendicular to the wall panel; A support plate, one end of which is rotatably connected to the end of the storage slot facing the wall panel, and the support plate can be flipped upwards to be flush with the wall panel and retracted into the storage slot; and The first support member includes a first shock absorber, a first slider, and a first driving device. The first slider is slidably connected to the storage groove. One end of the first shock absorber is movably connected to the other end of the support plate, and the other end is movably connected to the first slider. The first driving device is connected to the base and is used to drive the first slider to slide along the storage groove so that the first shock absorber pushes the support plate to flip up to be in contact with the wall panel / so that the first shock absorber pulls the support plate back into the storage groove. The reinforcement also includes two second support members respectively disposed on both sides of the base, each of the second support members including a second shock-absorbing member; The reinforcement also includes a second driving device for driving the two second damping components to move simultaneously toward the wall panel or move simultaneously away from the wall panel. The second driving device drives the two second damping components to move toward the wall panel and push against the wall panel to support the wall panel. The second support member further includes a movable block and a receiving cavity opened on the side of the base. The movable block includes a second slider, a contraction cavity, an adjusting block, and a slot. The contraction cavity is opened on the outside of the second slider, and the openings of the contraction cavity and the receiving cavity face the same direction. The adjusting block can be extended and retracted along the depth direction of the contraction cavity. The slot is opened on the upper part of the adjusting block, and the second shock absorber is rotatably connected to the slot. In the initial state, the height of the top of the second shock absorber is not higher than the top of the slot, so as to satisfy that when the adjusting block retracts into the contraction cavity, it pulls the second shock absorber into the receiving cavity. The second slider is connected to the second driving device and slides along the length direction of the receiving cavity under the drive of the second driving device. By adjusting the adjustment block to extend out of the contraction cavity and flipping the second shock absorber upward, the second driving device drives the second slider to slide along the direction of the receiving cavity toward the wall panel, thereby pushing the second shock absorber to support the wall panel. The base has a movable cavity at the end away from the wall panel. The second driving device includes two second screws, two pulleys, and a transmission belt. The two second screws are rotatably connected to the two receiving cavities, and the two second sliders are screwed onto the outside of the two second screws. The ends of the two second screws away from the wall panel extend from the corresponding receiving cavities into the movable cavity to form two extension sections. The two pulleys are fixed to the outside of the two extension sections. The transmission belt is wound around the outer circumference of the two pulleys. One of the two extension sections extends out of the movable cavity to form a first operating end for rotational operation.

2. The seismic reinforcement mechanism as described in claim 1, characterized in that, The second support member also includes a locking element for securing the second damping member to the wall panel.

3. The seismic reinforcement mechanism as described in claim 1, characterized in that, The movable block also includes a drive component for driving the adjustment block to extend and retract along the depth direction of the contraction cavity.

4. The seismic reinforcement mechanism as described in claim 3, characterized in that, The driving component includes a first screw rotatably connected to the side of the second slider, a connecting plate fixedly connected to the outside of the adjusting block, and a second screw hole penetrating along the thickness direction of the connecting plate. The connecting plate is screwed onto the outside of the first screw through the second screw hole. By rotating the first screw, the connecting plate is driven to move away from or toward the second slider, thereby enabling the adjusting block to extend or retract along the depth direction of the contraction cavity.

5. The seismic reinforcement mechanism as described in claim 1, characterized in that, The base is attached to the wall panel at one end, and the storage groove is open at the end near the wall panel. The lower end of the support plate is curved to ensure that the support plate is not blocked by the wall panel when it retracts into the storage groove from its attached state.

6. The seismic reinforcement mechanism as described in claim 1, characterized in that, The first damping component includes two first connecting rods, two first damping cavities, two first dampers, and a first transmission rod. The two first connecting rods are movably connected to the support plate and the first slider, respectively. The two first damping cavities are respectively opened at the opposite ends of the two first connecting rods. The two first dampers are respectively fixed in the two first damping cavities. The two ends of the first transmission rod are respectively slidably connected to the two first damping cavities and respectively fixedly connected to the two first dampers.

Citation Information

Patent Citations

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