Floor vibration isolation and reinforcement structure

CN224785158UActive Publication Date: 2026-09-22DONYA DECORATION CO LTD
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Patent Information

Application Number
CN202522282349.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-29
Publication Date
2026-09-22
Estimated Expiration
2035-10-29

AI Technical Summary

Technical Problem

[0003]然而,在现有技术中,楼板在铺设时,对于扣板的安装往往仅采用简单的搭接或螺栓固定方式,扣板与楼板主体结构的连接节点缺乏足够的防震保护结构,当遭遇震动时,连接部位易因刚性碰撞产生应力集中,导致螺栓松动或扣板边缘开裂,且楼板抗荷载受力强度相对不够好,加固保护能力相对不足,在受到震动冲击时难以承受横向剪切力,易发生变形或断裂,楼板整体的减震保护性能严重不足,无法有效吸收和耗散震动能量,同时刚性加固能力不够好,为此我们提出一种楼板防震加固结构来解决上述问题

Benefits of technology

1、该楼板防震加固结构,通过在楼板主体的两侧均套接安装有承托安装座,起到限位与防护作用,两个加固承载基座浇筑安装于建筑的顶部,且加固承载基座的顶部嵌入安装有钢制加固槽和减震橡胶框,承托安装座的底部设置有安装固定块,可插接贴合于钢制加固槽和减震橡胶框内,便于楼板主体和承托安装座的装配安装,钢制加固槽起到刚性加固作用,减震橡胶框起到减震受力保护作用,使装置安装操作较为便利,减震保护性好,可有效分散吸收震动能量,不易开裂损伤。

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Abstract

The utility model relates to building construction structure technical field discloses a floor shock -proof reinforcing structure, including floor body and the supporting mounting seat of sleeve joint in the both sides of floor body, the positive below of supporting mounting seat is provided with reinforcing bearing base, the utility model discloses, through the supporting mounting seat of sleeve joint installation in the both sides of floor body, play spacing and protection function, the top embedding installation of reinforcing bearing base has steel reinforcing groove and shock -absorbing rubber frame, can install fixed supporting mounting seat and mounting fixed block, play rigid reinforcing and shock -absorbing effect, by the insertion of the fixed peg of insertion fixed in the installation rubber tube, the positioning of reinforcing bearing base and mounting fixed block, construction is not easy to tilt loose, the corner reinforcing part plays the reinforcing effect to the bottom of floor body, makes device installation operation more convenient, shock -absorbing protection is good, can effectively disperse and absorb vibration energy, is not easy to crack damage, and stress resistance load strength is high, and the reinforcing protection ability is excellent.
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Description

Technical Field

[0001] This utility model relates to the field of building construction structure technology, and in particular to a seismic reinforcement structure for floor slabs. Background Technology

[0002] During floor slab construction, seismic reinforcement structures are a crucial component in ensuring the overall seismic performance of a building. Their core function is to enhance the stability and resistance to damage of the floor slab when subjected to external forces such as earthquakes and vibrations through specific structural designs and connection methods. Common methods include adding a reinforcing steel frame layer inside the floor slab, installing seismic bracing components beneath the slab, and filling joint gaps with elastic sealant and securing them with metal connectors. These structures can evenly distribute external loads to the main load-bearing structure of the building, reducing localized stress concentration in the floor slab and thus preventing the risk of cracking, deformation, or even detachment of the floor slab under vibration, providing a fundamental guarantee for the overall safety of the building.

[0003] However, in existing technologies, the installation of floor panels during floor slab installation often only uses simple overlapping or bolt fixing methods. The connection nodes between the panels and the main floor structure lack sufficient seismic protection structures. When encountering vibration, the connection points are prone to stress concentration due to rigid collision, leading to loose bolts or cracking of the panel edges. Furthermore, the floor slab's load-bearing strength is relatively poor, and its reinforcement and protection capabilities are relatively insufficient. When subjected to vibration impact, it is difficult to withstand lateral shear force and is prone to deformation or breakage. The overall seismic protection performance of the floor slab is seriously inadequate, failing to effectively absorb and dissipate vibration energy. At the same time, its rigid reinforcement capability is insufficient. Therefore, we propose a floor slab seismic reinforcement structure to solve the above problems. Utility Model Content

[0004] In response to the problems raised, this utility model provides a floor slab earthquake-resistant reinforcement structure to solve the aforementioned issues.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A seismic reinforcement structure for floor slabs includes a floor slab body and support mounting seats sleeved on both sides of the floor slab body, wherein a reinforced bearing base is provided directly below the support mounting seats; The top of the reinforced bearing base is equipped with a steel reinforcement groove, and the inner side of the steel reinforcement groove is provided with a shock-absorbing rubber frame. The bottom of the support mounting base is provided with a mounting block that engages with the shock-absorbing rubber frame. The inner sides of the reinforced bearing base and the mounting block are provided with corresponding mounting rubber tubes. The mounting rubber tubes are inserted with the insertion fixing pins for positioning the reinforced bearing base and the mounting block. The corner reinforcement members that support and fix the bottom sides of the floor slab are installed between the two support mounting bases.

[0006] Preferably, both the support mounting base and the reinforced bearing base are made of cast concrete. The inner side of the support mounting base is covered with shock-absorbing and anti-detachment pads. Two shock-absorbing and anti-detachment pads are laid and installed on the front and rear sides of the bottom of the floor slab. The corner reinforcement is fixed between the two support mounting bases with screws.

[0007] Preferably, the installation rubber tube is pre-embedded inside the reinforced bearing base and the installation fixing block, the steel reinforcement groove is pre-embedded inside the top of the reinforced bearing base, the shock-absorbing rubber frame is U-shaped and fitted inside the steel reinforcement groove, and the installation fixing block is inverted U-shaped and fitted into the steel reinforcement groove and the shock-absorbing rubber frame.

[0008] Preferably, the bottom sides of the mounting block are provided with anti-offset buckle posts, and the inner sides of the steel reinforcement groove and the shock-absorbing rubber frame are provided with mounting insertion holes. The bottom of the anti-offset buckle post is inserted and fixed in the mounting insertion hole. The mounting block is positioned in the steel reinforcement groove by the anti-offset buckle post. The anti-offset buckle post and the insertion fixing post are intersected.

[0009] Preferably, the insertion fixing pin is inserted and positioned inside the multiple mounting rubber tubes, and the mounting fixing block is limited and fixed by the insertion fixing pin and the reinforcing bearing base. The two ends of the insertion fixing pin extend out to the mounting fixing block and the reinforcing bearing base respectively and are bolted with abutment fixing nuts.

[0010] Preferably, the corner reinforcement includes two L-shaped corner blocks and four bolted mounting seats. The two L-shaped corner blocks are fitted together on both sides of the bottom of the floor slab body, and the two bolted mounting seats are welded and fixed to both ends of the L-shaped corner blocks. The side of the bolted mounting seat away from the L-shaped corner block is bolted and fixed to the supporting mounting seat.

[0011] Preferably, multiple bottom support plates are bolted at equal intervals between the two L-shaped corner blocks, and the multiple bottom support plates support and adhere to the bottom of the floor slab body.

[0012] Preferably, the front and rear sides of the support mounting base are provided with shock-absorbing and reinforcing outer rings, and an integral connecting piece connects the two shock-absorbing and reinforcing outer rings.

[0013] Compared with the prior art, the advantages and positive effects of this utility model are as follows: 1. This floor slab seismic reinforcement structure features support mounting bases installed on both sides of the main floor slab, providing limiting and protection. Two reinforced support bases are cast and installed on the top of the building, with steel reinforcement grooves and damping rubber frames embedded in their tops. The bottom of the support mounting bases has mounting blocks that can be inserted into and fitted into the steel reinforcement grooves and damping rubber frames, facilitating the assembly and installation of the main floor slab and the support mounting bases. The steel reinforcement grooves provide rigid reinforcement, while the damping rubber frames provide shock absorption and protection, making the installation and operation of the device convenient. It offers good shock absorption and protection, effectively dispersing and absorbing vibration energy, and is less prone to cracking and damage.

[0014] 2. This floor slab seismic reinforcement structure features corresponding installation rubber tubes on the inner sides of both the reinforced bearing base and the mounting block. These tubes are fixed by insertion fixing pins, providing a fixed positioning function for the reinforced bearing base and the mounting block. This enhances the fixing effect, ensures high precision in construction and assembly, and prevents tilting or loosening. The rubber tubes also provide cushioning protection. Furthermore, corner reinforcements are installed between the two support mounting bases, supporting and fixing the bottom sides of the floor slab. The bottom and side corners of the floor slab provide load-bearing and impact-resistant protection, resulting in high strength under vibration and impact, and excellent reinforcement and protection capabilities. Attached Figure Description

[0015] Figure 1 This utility model provides a frontal three-dimensional schematic diagram of a floor slab earthquake-resistant reinforcement structure; Figure 2 This utility model provides a bottom-view three-dimensional schematic diagram of a floor slab earthquake-resistant reinforcement structure; Figure 3 This is a three-dimensional front view of the reinforced bearing base of this utility model after the removal of the imperfections. Figure 4 This is a frontal perspective three-dimensional schematic diagram of the rubber tube installation and plug-in fixing brazing structure of this utility model; Figure 5 This utility model provides a bottom-view cross-sectional three-dimensional schematic diagram of a floor slab seismic reinforcement structure; Figure 6 This is a three-dimensional side view of the connection structure of the plug-in fixing pin and the abutment fixing nut of this utility model.

[0016] In the diagram: 1. Main floor slab; 2. Support mounting base; 201. Shock-absorbing and anti-detachment pad; 202. Shock-absorbing and reinforcing outer ring; 203. Integrated connecting piece; 3. Reinforced bearing base; 4. Steel reinforcing groove; 5. Shock-absorbing rubber frame; 6. Mounting and fixing block; 601. Anti-offset buckle column; 602. Mounting insertion hole; 7. Mounting rubber tube; 8. Insertion fixing pin; 801. Abutment fixing nut; 9. Corner reinforcement; 901. L-shaped corner block; 902. Bolted mounting base; 903. Bottom support plate. Detailed Implementation

[0017] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0018] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0019] Please see Figures 1-6 A seismic reinforcement structure for floor slabs includes a floor slab body 1 and support mounting seats 2 sleeved on both sides of the floor slab body 1. A reinforcement bearing base 3 is provided directly below the support mounting seats 2. A steel reinforcement groove 4 is installed on the top of the reinforced bearing base 3. A shock-absorbing rubber frame 5 is provided on the inner side of the steel reinforcement groove 4. An installation fixing block 6 is provided at the bottom of the support mounting base 2 and is installed in the shock-absorbing rubber frame 5. Corresponding installation rubber tubes 7 are provided on the inner side of both the reinforced bearing base 3 and the installation fixing block 6. An insertion fixing pin 8 for positioning the reinforced bearing base 3 and the installation fixing block 6 is inserted into the inside of the installation rubber tube 7. An edge and corner reinforcement member 9 is installed between the two support mounting bases 2 to support and fix the bottom sides of the floor slab body 1. The beneficial effects that this plan aims to achieve are: By installing support mounting seats 2 on both sides of the floor slab body 1, it serves to limit and protect. Two reinforced bearing bases 3 are cast and installed on the top of the building. The top of the reinforced bearing base 3 is embedded with a steel reinforcement groove 4 and a shock-absorbing rubber frame 5. The bottom of the support mounting seat 2 is provided with a mounting fixing block 6, which can be inserted and fitted into the steel reinforcement groove 4 and the shock-absorbing rubber frame 5, which facilitates the assembly and installation of the floor slab body 1 and the support mounting seat 2. The steel reinforcement groove 4 serves as a rigid reinforcement, and the shock-absorbing rubber frame 5 serves as a shock-absorbing force protection. The inner sides of both the reinforced bearing base 3 and the mounting block 6 are equipped with corresponding mounting rubber tubes 7, which are inserted and fixed inside the mounting rubber tubes 7 by the insertion fixing pins 8. This serves to fix and position the reinforced bearing base 3 and the mounting block 6, resulting in a good fixing effect, high construction and assembly precision, and resistance to tilting and loosening. The mounting rubber tubes 7 are made of rubber, which can provide cushioning and protection. Furthermore, there are corner reinforcements 9 installed between the two supporting mounting seats 2, which support and fix the bottom sides of the floor slab body 1. The bottom and side corners of the floor slab body 1 play a role in resisting loads and preventing impacts, making the installation and operation of the device more convenient. It has good shock absorption and protection, can effectively disperse and absorb vibration energy, is not easy to crack or be damaged, and has high load-bearing strength and excellent reinforcement and protection capabilities.

[0020] Furthermore, both the support mounting base 2 and the reinforced bearing base 3 are made of concrete. The inner side of the support mounting base 2 is covered with shock-absorbing and anti-detachment pads 201. The two shock-absorbing and anti-detachment pads 201 are laid and installed on the front and rear sides of the bottom of the floor slab body 1. The corner reinforcement 9 is fixed between the two support mounting bases 2 with screws. Specifically, both the support mounting base 2 and the reinforced bearing base 3 are made of cast concrete, resulting in high reinforcement strength. Furthermore, the support mounting base 2 and the mounting block 6 are an integral unit, facilitating the assembly and fixation of the support mounting base 2 onto the reinforced bearing base 3 by the mounting block 6. This ensures stable installation force and good load-bearing adaptability. The inner side of the support mounting base 2 is covered with shock-absorbing and anti-detachment pads 201. When the support mounting base 2 is fitted onto both sides of the floor slab body 1, the shock-absorbing and anti-detachment pads 201 can be used for auxiliary filling and laying, ensuring stable installation force and good shock absorption and protection.

[0021] Furthermore, the rubber tube 7 is pre-embedded inside the reinforced bearing base 3 and the mounting block 6, the steel reinforcement groove 4 is pre-embedded inside the top of the reinforced bearing base 3, the shock-absorbing rubber frame 5 is U-shaped and fitted inside the steel reinforcement groove 4, and the mounting block 6 is inverted U-shaped and fitted inside the steel reinforcement groove 4 and the shock-absorbing rubber frame 5. Specifically, the rubber tube 7 is pre-embedded inside the reinforced bearing base 3 and the mounting block 6 to facilitate the insertion and fixing of the fixing pin 8. The steel reinforcement groove 4 is pre-embedded inside the top of the reinforced bearing base 3. The steel reinforcement groove 4 is a steel frame, which greatly enhances the stress strength of the reinforced bearing base 3. The shock-absorbing rubber frame 5 is U-shaped and fitted inside the steel reinforcement groove 4 to play a shock-absorbing and buffering role. The mounting block 6 is U-shaped and fitted into the steel reinforcement groove 4 and the shock-absorbing rubber frame 5. The fit is excellent, the assembly fit is good, and the installation and fixing are stable.

[0022] Furthermore, anti-offset buckle posts 601 are provided on both sides of the bottom of the mounting block 6, and mounting insertion holes 602 are provided on the inner sides of the steel reinforcement groove 4 and the shock-absorbing rubber frame 5. The bottom of the anti-offset buckle post 601 is inserted and fixed in the mounting insertion hole 602. The mounting block 6 is snapped and positioned in the steel reinforcement groove 4 by the anti-offset buckle post 601. The anti-offset buckle post 601 and the insertion fixing rod 8 are intersected. Specifically, the bottom sides of the mounting block 6 are provided with anti-offset latching posts 601, and the inner sides of the steel reinforcement groove 4 and the shock-absorbing rubber frame 5 are provided with mounting insertion holes 602, which serve to fix the installation. When the mounting block 6 is snapped into the steel reinforcement groove 4, the anti-offset latching posts 601 can be inserted into the mounting insertion holes 602. The installation positioning effect is good, the bearing clamping fit is good, the anti-offset latching posts 601 and the insertion fixing pins 8 are intersected and do not interfere with each other, and the installation fit is stable.

[0023] Furthermore, the insertion fixing pin 8 is inserted and positioned inside the multiple installation rubber tubes 7, and the installation fixing block 6 is limited and fixed by the insertion fixing pin 8 and the reinforced bearing base 3. The two ends of the insertion fixing pin 8 extend out of the installation fixing block 6 and the reinforced bearing base 3 respectively and are bolted with the abutment fixing nut 801. Specifically, the insertion fixing pin 8 is inserted and positioned inside multiple installation rubber tubes 7, resulting in good installation and fixing effect. The installation fixing block 6 is limited and fixed by the insertion fixing pin 8 and the reinforced bearing base 3, resulting in good limiting and locking installation effect, excellent adaptability, and stable assembly and fixing. The two ends of the insertion fixing pin 8 extend to the installation fixing block 6 and the reinforced bearing base 3 respectively, and are bolted with abutment fixing nuts 801, so that the insertion fixing pin 8 can be clamped and fixed stably by the abutment fixing nuts 801 during installation and fixing, resulting in stable installation and adaptation, and good reinforcement and anti-detachment effect.

[0024] Furthermore, the corner reinforcement 9 includes two L-shaped corner blocks 901 and four bolted mounting seats 902. The two L-shaped corner blocks 901 are fitted and installed on both sides of the bottom of the floor slab body 1. The two bolted mounting seats 902 are welded and fixed to both ends of the L-shaped corner blocks 901. The side of the bolted mounting seat 902 away from the L-shaped corner blocks 901 is bolted and fixed to the support mounting seat 2. Specifically, the corner reinforcement 9 includes two L-shaped corner blocks 901 and four bolted mounting seats 902. The L-shaped corner blocks 901 are attached to both sides of the bottom of the floor slab body 1, and the L-shaped corner blocks 901 are bolted to the support mounting seats 2 by the bolted mounting seats 902, so as to play a role in load-bearing installation. The installation adaptability is good and it is easy to install and fix.

[0025] Furthermore, multiple bottom support plates 903 are bolted at equal intervals between the two L-shaped corner blocks 901, and the multiple bottom support plates 903 support and adhere to the bottom of the floor slab body 1; Specifically, multiple bottom support plates 903 are bolted at equal intervals between the two L-shaped corner blocks 901. The two L-shaped corner blocks 901 can be bolted and fixed together by the bottom support plates 903, which greatly strengthens the bottom of the floor slab body 1, has a good load-bearing capacity and good fixation effect, and excellent adaptability.

[0026] Furthermore, the front and rear sides of the support mounting base 2 are provided with shock-absorbing and reinforcing outer rings 202, and an integral connecting piece 203 is connected between the two shock-absorbing and reinforcing outer rings 202. Specifically, the front and rear sides of the support mounting base 2 are provided with shock-absorbing and reinforcing outer rings 202, which play a role in fixing the surface corners of the support mounting base 2. An integrated connecting piece 203 is connected between the two shock-absorbing and reinforcing outer rings 202, which has good integrity and damage resistance and excellent installation adaptability.

[0027] How to use and how to work this device: By installing support mounting seats 2 on both sides of the floor slab body 1, it serves to limit and protect. Two reinforced bearing bases 3 are cast and installed on the top of the building, and steel reinforcement grooves 4 and shock-absorbing rubber frames 5 are embedded in the top of the reinforced bearing bases 3. The steel reinforcement grooves 4 provide rigid reinforcement, and the shock-absorbing rubber frames 5 provide shock absorption and stress protection. The bottom of the support mounting seats 2 is provided with mounting blocks 6, which can be inserted and fitted into the inner side of the steel reinforcement grooves 4 and the shock-absorbing rubber frames 5, which facilitates the assembly and installation of the floor slab body 1 and the support mounting seats 2. The installation operation is relatively convenient. In the event of vibration and impact, the shock-absorbing rubber frames 5 can provide shock absorption protection, and the support mounting seats 2 can provide rigid reinforcement to both sides of the floor slab. The stress bearing is stable and not easy to crack or be damaged. The installation and construction are convenient, and the shock absorption and crack prevention effect is good. The inner sides of the reinforced bearing base 3 and the mounting block 6 are equipped with corresponding installation rubber tubes 7. The installation rubber tubes 7 are fixed by the insertion fixing pins 8, which play a fixed positioning role for the reinforced bearing base 3 and the mounting block 6, and the fixed effect is good. The installation rubber tubes 7 are made of rubber, which plays a buffer protection role. The construction and assembly are highly accurate, not easy to tilt or loosen, and have good load-bearing strength. Furthermore, between the two support mounting seats 2, there are corner reinforcements 9 that support and fix the bottom sides of the floor slab body 1. The corner reinforcements 9 play a load-bearing and impact-resistant role for the bottom and side corners of the floor slab body 1. When subjected to vibration and impact, the strength is high and the reinforcement and protection capabilities are excellent. Both the support mounting base 2 and the reinforced bearing base 3 are made of cast concrete, which provides high reinforcement strength. The support mounting base 2 and the mounting block 6 are an integral unit, which facilitates the assembly and fixation of the support mounting base 2 onto the reinforced bearing base 3 by the mounting block 6. The installation is stable and has good load-bearing adaptability. The inner side of the support mounting base 2 is covered with shock-absorbing and anti-detachment pads 201. When the support mounting base 2 is fitted onto both sides of the floor slab body 1, the shock-absorbing and anti-detachment pads 201 can be used for auxiliary filling and laying, which provides stable installation and good shock absorption and protection. The rubber tube 7 is pre-embedded inside the reinforced bearing base 3 and the mounting block 6 to facilitate the insertion and fixing of the fixing pin 8. The steel reinforcement groove 4 is pre-embedded inside the top of the reinforced bearing base 3. The steel reinforcement groove 4 is a steel frame, which greatly enhances the stress strength of the reinforced bearing base 3. The shock-absorbing rubber frame 5 is U-shaped and fitted inside the steel reinforcement groove 4 to play a shock-absorbing and buffering role. The mounting block 6 is inverted U-shaped and fitted into the steel reinforcement groove 4 and the shock-absorbing rubber frame 5. The fit is excellent, the assembly fit is good, and the installation and fixing are stable. Both sides of the bottom of the mounting block 6 are provided with anti-offset buckle posts 601, and the inner sides of the steel reinforcement groove 4 and the shock-absorbing rubber frame 5 are provided with mounting insertion holes 602, which serve as installation and fixing functions. When the mounting block 6 is snapped into the steel reinforcement groove 4, the anti-offset buckle posts 601 can be inserted into the mounting insertion holes 602. The installation positioning effect is good, the bearing clamping fit is good, the anti-offset buckle posts 601 and the insertion fixing pins 8 are intersected and do not interfere with each other, and the installation fit is stable. The insertion fixing pin 8 is inserted and positioned inside multiple installation rubber tubes 7, providing a good installation and fixing effect. The installation fixing block 6 is limited and fixed by the insertion fixing pin 8 and the reinforced bearing base 3, providing a good limiting and locking installation effect, excellent adaptability, and stable assembly and fixing. The two ends of the insertion fixing pin 8 extend to the installation fixing block 6 and the reinforced bearing base 3 respectively, and are bolted with abutment fixing nuts 801, so that the insertion fixing pin 8 can be clamped and fixed stably by the abutment fixing nuts 801 during installation and fixing, providing stable installation and adaptation, and good reinforcement and anti-detachment effect. The corner reinforcement 9 includes two L-shaped corner blocks 901 and four bolted mounting seats 902. The L-shaped corner blocks 901 are attached to both sides of the bottom of the floor slab body 1, and the L-shaped corner blocks 901 are bolted to the support mounting seats 2 by the bolted mounting seats 902, thus playing a load-bearing role. It has good installation adaptability and is easy to install and fix. Multiple bottom support plates 903 are bolted at equal intervals between the two L-shaped corner blocks 901. The two L-shaped corner blocks 901 can be bolted and fixed together by the bottom support plates 903, which greatly strengthens the bottom of the floor slab body 1, has good load-bearing capacity and good fixation, and excellent adaptability. Both the front and rear sides of the support mounting base 2 are provided with shock-absorbing and reinforcing outer rings 202, which play a role in fixing the surface corners of the support mounting base 2. An integral connecting piece 203 is connected between the two shock-absorbing and reinforcing outer rings 202, which has good integrity and damage resistance and excellent installation adaptability. This makes the device easier to install and operate, provides good shock absorption and protection, effectively disperses and absorbs vibration energy, is not prone to cracking or damage, has high load-bearing strength, and excellent reinforcement and protection capabilities.

[0028] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A seismic reinforcement structure for floor slabs, comprising a floor slab body (1) and support mounting seats (2) sleeved on both sides of the floor slab body (1), characterized in that: A reinforced bearing base (3) is provided directly below the support mounting base (2); The top of the reinforced bearing base (3) is equipped with a steel reinforcing groove (4), and the inner side of the steel reinforcing groove (4) is provided with a shock-absorbing rubber frame (5). The bottom of the support mounting base (2) is provided with an installation fixing block (6) that is engaged and installed in the shock-absorbing rubber frame (5). The inner sides of the reinforced bearing base (3) and the installation fixing block (6) are provided with corresponding installation rubber tubes (7). The installation rubber tube (7) is inserted with a positioning reinforcing bearing base (3) and an insertion fixing pin (8) for the installation fixing block (6). The corner reinforcement members (9) that support and fix the bottom sides of the floor slab body (1) are installed between the two support mounting bases (2).

2. The seismic reinforcement structure for floor slabs according to claim 1, characterized in that: Both the support mounting base (2) and the reinforced bearing base (3) are made of concrete. The inner side of the support mounting base (2) is covered with shock-absorbing and anti-detachment pads (201). The two shock-absorbing and anti-detachment pads (201) are laid and installed on the front and rear sides of the bottom of the floor slab body (1). The corner reinforcement (9) is fixed between the two support mounting bases (2) with screws.

3. The seismic reinforcement structure for floor slabs according to claim 1, characterized in that: The installation rubber tube (7) is pre-embedded and installed inside the reinforced bearing base (3) and the installation fixing block (6). The steel reinforcement groove (4) is pre-embedded and installed inside the top of the reinforced bearing base (3). The shock-absorbing rubber frame (5) is U-shaped and fitted inside the steel reinforcement groove (4). The installation fixing block (6) is inverted U-shaped and fitted inside the steel reinforcement groove (4) and the shock-absorbing rubber frame (5).

4. The seismic reinforcement structure for floor slabs according to claim 1, characterized in that: The bottom sides of the mounting block (6) are provided with anti-offset buckle posts (601), and the inner sides of the steel reinforcement groove (4) and the shock-absorbing rubber frame (5) are provided with mounting insertion holes (602). The bottom of the anti-offset buckle post (601) is inserted and fixed in the mounting insertion hole (602). The mounting block (6) is positioned in the steel reinforcement groove (4) by the anti-offset buckle post (601). The anti-offset buckle post (601) and the insertion fixing rod (8) are intersected.

5. The seismic reinforcement structure for floor slabs according to claim 1, characterized in that: The insertion fixing pin (8) is inserted and positioned inside the multiple mounting rubber tubes (7). The mounting fixing block (6) is limited and fixed by the insertion fixing pin (8) and the reinforced bearing base (3). The two ends of the insertion fixing pin (8) extend out to the mounting fixing block (6) and the reinforced bearing base (3) respectively and are bolted with abutment fixing nuts (801).

6. The seismic reinforcement structure for floor slabs according to claim 1, characterized in that: The corner reinforcement (9) includes two L-shaped corner blocks (901) and four bolted mounting seats (902). The two L-shaped corner blocks (901) are fitted and installed on both sides of the bottom of the floor slab body (1). The two bolted mounting seats (902) are welded and fixed to both ends of the L-shaped corner blocks (901). The side of the bolted mounting seat (902) away from the L-shaped corner blocks (901) is bolted and fixed to the support mounting seat (2).

7. The seismic reinforcement structure for floor slabs according to claim 6, characterized in that: Multiple bottom support plates (903) are bolted at equal intervals between the two L-shaped corner blocks (901), and the multiple bottom support plates (903) support and adhere to the bottom of the floor slab body (1).

8. The seismic reinforcement structure for floor slabs according to claim 2, characterized in that: The front and rear sides of the support mounting base (2) are provided with shock-absorbing and reinforcing outer rings (202), and an integral connecting piece (203) is connected between the two shock-absorbing and reinforcing outer rings (202).