Reinforced concrete structure for green building
By installing horizontal, support, and seismic devices on reinforced concrete slabs, the problems of insufficient support for beams and difficulty in connecting beam surfaces are solved, thereby improving the stability and seismic performance of reinforced concrete structures for green buildings.
Patent Information
- Application Number
- CN202520093318.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Existing green building reinforced concrete beams lack support, resulting in insufficient stability, and the beam surface is not easily connected to the wall surface, leading to low seismic resistance.
The system uses reinforced concrete slabs, with leveling devices on both sides, support devices at the bottom, and seismic devices on the sides. It is stably connected by components such as ear plates, seismic columns, telescopic rods, and fixing knobs. A level is used to ensure that the installation is level, and the support columns and connecting frames enhance stability and seismic performance.
The combined device enhances the stability and seismic performance of reinforced concrete structures, ensuring comprehensive stability and adaptability during building use.
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Figure CN223689183U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of green building reinforced concrete, in particular to a green building reinforced concrete structure. BACKGROUND
[0002] The building assembled by the prefabricated parts at the site is called the fabricated building. According to the form of the prefabricated component and the construction method, there are five types of block building, plate building, box building, skeleton plate building and lifting plate lifting layer building. With the development of modern industrial technology, houses can be mass-produced like machines. As long as the prefabricated house components are transported to the site and assembled, they become the fabricated building. A large number of assembly operations are carried out on site in the fabricated building, which greatly reduces the original cast-in-place operation.
[0003] At present, the existing Chinese patent with publication number CN213597325U discloses a green building reinforced concrete beam, which comprises a concrete shell with a mounting cavity, a steel cage built-in the mounting cavity and a concrete body filled in the mounting cavity. The end of the concrete shell is provided with an outlet communicated with the mounting cavity for installing the steel cage. The mounting cavity is provided with a limiting assembly for limiting the sliding of the steel cage. The application has the effect of improving the durability and stability of the reinforced concrete beam. Although the device solves the above problems, it also has the following problems: the beam body lacks support, the device itself is not stable enough, and the device beam surface and wall surface are not easy to connect, and the device has low anti-seismic effect. Therefore, a new green building reinforced concrete structure is needed. UTILITY MODEL CONTENT
[0004] The technical problem to be solved by the utility model is to overcome the problems of the existing device, such as lack of support for the beam body, insufficient stability of the device itself, difficulty in connecting the device beam surface and the wall surface, and low anti-seismic effect of the device. A green building reinforced concrete structure is provided.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: a green building reinforced concrete structure, comprising a reinforced concrete slab, the left and right side surfaces of the reinforced concrete slab are fixedly provided with horizontal devices, the bottom surface of the reinforced concrete slab is fixedly provided with a supporting device, the side surface of the reinforced concrete slab is fixedly provided with an anti-seismic device, the top surface of the reinforced concrete slab is fixedly provided with a connecting frame, and the surface of the connecting frame is provided with connecting bolts.
[0006] Further description of the above technical scheme:
[0007] The anti-vibration device comprises an ear plate seat, an anti-vibration column, a fixing knob, an extension rod, a fixing hole, a shaft seat, a connecting plate and a connecting knob, the inner wall of the ear plate seat is fixedly provided with the anti-vibration column, the surface of the anti-vibration column is provided with the fixing knob, the inside of the anti-vibration column is provided with the extension rod, the surface of the extension rod is provided with a plurality of fixing holes, the top end surface of the extension rod is fixedly provided with the shaft seat, the top end surface of the shaft seat is fixedly provided with the connecting plate, and the bottom end surface of the connecting plate is provided with the connecting knob.
[0008] As a further description of the above technical solution:
[0009] The position of the fixing knob corresponds to the position of the fixing hole, and the fixing hole and the fixing knob are provided with threads at the joint, and the shaft seat and the extension rod are provided with a rotating shaft at the joint.
[0010] As a further description of the above technical solution:
[0011] The supporting device comprises a receiving seat, a supporting plate, a supporting column, a movable frame, a movable block, a positioning knob and a positioning hole, the inside of the receiving seat is provided with the supporting plate, the bottom end surface of the supporting plate is fixedly provided with a plurality of supporting columns, the top end surface of the supporting plate is provided with the movable frame, one side surface of the movable frame is fixedly provided with the movable block, the surface of the movable block is provided with the positioning knob, and the inner wall of the receiving seat is provided with a plurality of positioning holes.
[0012] As a further description of the above technical solution:
[0013] The position of the positioning hole corresponds to the position of the positioning knob, and the positioning knob and the positioning hole are threadedly connected, the supporting column and the movable frame penetrate through the receiving seat, and the positioning knob penetrates through the movable frame.
[0014] As a further description of the above technical solution:
[0015] The horizontal device comprises a fixing table, an adjusting knob, an adjusting screw, a self-rotating shaft seat, an adjusting plate and a level, the top end of the fixing table is provided with the adjusting knob, the bottom end surface of the adjusting knob is fixedly provided with the adjusting screw, the bottom end surface of the adjusting screw is fixedly provided with the self-rotating shaft seat, the bottom end surface of the self-rotating shaft seat is fixedly provided with the adjusting plate, and one side surface of the fixing table is fixedly provided with the level.
[0016] The utility model has the advantages of:
[0017] In the utility model, the adjusting knob is rotated, the adjusting knob drives the adjusting screw, the adjusting screw vertically moves according to threads, the self-rotating shaft seat is pushed during the movement, the self-rotating shaft seat drives the adjusting plate, until the level is horizontal, the device is kept horizontal during installation, lays a foundation for subsequent stable bearing, and the stability of the device is greatly improved.
[0018] By pushing the connecting plate, the connecting plate drives the shaft seat, the shaft seat drives the telescopic rod, until the appropriate length is rotated and fixed knob, fixed knob and corresponding fixed hole, then rotate the connecting knob, the connecting plate and the support beam, so that the device can easily adapt to different height beam surface, strengthen the device and the connection stability of the main body of building, and then improve the anti-seismic performance of the device.
[0019] By pushing the movable block, the movable block drives the movable frame, the movable frame drives the support plate, the support plate drives the support column, the support column moves out of the storage seat, then rotate the positioning knob, the positioning knob and the corresponding positioning hole, make the support column auxiliary support the reinforced concrete slab, all-round guarantee the stability of the device in the process of building use. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a green building reinforced concrete structure whole structure diagram of the utility model;
[0021] Figure 2 It is a green building reinforced concrete structure anti-seismic device structure side view of the utility model;
[0022] Figure 3 It is a green building reinforced concrete structure support device structure side view of the utility model;
[0023] Figure 4 It is a green building reinforced concrete structure horizontal device structure front view of the utility model;
[0024] LEGEND:
[0025] In the drawing: 1, reinforced concrete slab; 2, horizontal device; 3, support device; 4, anti-seismic device; 5, link frame; 6, link bolt; 401, ear plate seat; 402, anti-seismic column; 403, fixed knob; 404, telescopic rod; 405, fixed hole; 406, shaft seat; 407, connecting plate; 408, connecting knob; 301, storage seat; 302, support plate; 303, support column; 304, movable frame; 305, movable block; 306, positioning knob; 307, positioning hole; 201, fixed table; 202, adjusting knob; 203, adjusting screw; 204, rotation shaft seat; 205, adjusting plate; 206, level. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0027] With reference to 1-4, the utility model provides a kind of green building reinforced concrete structure, including reinforced concrete slab 1, and the horizontal device 2 of being fixedly arranged on the surface of the left and right two sides of reinforced concrete slab 1, and the support device 3 of being fixedly arranged on the surface of the bottom end of reinforced concrete slab 1, and the anti-shock device 4 of being fixedly arranged on the surface of one side of reinforced concrete slab 1, and the interface frame 5 of being fixedly arranged on the surface of the top end of reinforced concrete slab 1, and the interface bolt 6 of being arranged on the surface of interface frame 5.
[0028] Anti-shock device 4 includes lug plate seat 401, anti-shock column 402, fixed knob 403, telescopic rod 404, fixed hole 405, shaft seat 406, connecting plate 407, connecting knob 408, anti-shock column 402 is fixedly arranged on the inner wall of lug plate seat 401, fixed knob 403 is arranged on the surface of anti-shock column 402, telescopic rod 404 is arranged in anti-shock column 402, a plurality of fixed holes 405 are arranged on the surface of telescopic rod 404, shaft seat 406 is fixedly arranged on the top end surface of telescopic rod 404, connecting plate 407 is fixedly arranged on the top end surface of shaft seat 406, connecting knob 408 is arranged on the bottom end surface of connecting plate 407, by pushing connecting plate 407, connecting plate 407 drives shaft seat 406, shaft seat 406 drives telescopic rod 404, until the appropriate length is rotated fixed knob 403, fixed knob 403 is connected with corresponding fixed hole 405, then rotating connecting knob 408, connecting plate 407 is connected with support beam, so that the device can easily adapt to the beam surface of different height, the connection stability of device and building main body is strengthened, and then the anti-shock performance of device is improved.
[0029] The position of fixed knob 403 corresponds with the position of fixed hole 405, and the thread is arranged at the junction of fixed hole 405 and fixed knob 403, and the pivot is arranged at the junction of shaft seat 406 and telescopic rod 404, by the position of fixed knob 403 corresponding with the position of fixed hole 405, and the thread is arranged at the junction of fixed hole 405 and fixed knob 403, and the pivot is arranged at the junction of shaft seat 406 and telescopic rod 404, improve the practicability of device.
[0030] The supporting device 3 comprises a receiving seat 301, a supporting plate 302, supporting columns 303, a movable frame 304, movable blocks 305, positioning knobs 306, positioning holes 307, the inside of the receiving seat 301 is provided with the supporting plate 302, the bottom end surface of the supporting plate 302 is fixedly provided with a plurality of supporting columns 303, the top end surface of the supporting plate 302 is provided with the movable frame 304, one side surface of the movable frame 304 is fixedly provided with the movable blocks 305, the surface of the movable blocks 305 is provided with the positioning knobs 306, the inner wall of the receiving seat 301 is provided with a plurality of positioning holes 307, by pushing the movable blocks 305, the movable blocks 305 drive the movable frame 304, the movable frame 304 drives the supporting plate 302, the supporting plate 302 drives the supporting columns 303, the supporting columns 303 move out of the receiving seat 301, then the positioning knobs 306 are rotated, the positioning knobs 306 are connected with the corresponding positioning holes 307, so that the supporting columns 303 assist in supporting the reinforced concrete slab 1, and the stability of the device in the building use process is comprehensively ensured.
[0031] The positioning holes 307 are located in correspondence with the positioning knobs 306, and the positioning knobs 306 are threadedly connected with the positioning holes 307, the supporting columns 303 and the movable frame 304 penetrate through the receiving seat 301, and the positioning knobs 306 penetrate through the movable frame 304, so that the supporting columns 303 and the movable frame 304 penetrate through the receiving seat 301, and the positioning knobs 306 penetrate through the movable frame 304, thereby improving the supporting and fixing property of the device.
[0032] The horizontal device 2 comprises a fixed table 201, an adjusting knob 202, an adjusting screw 203, a self-rotation shaft seat 204, an adjusting plate 205 and a level 206, the top end of the fixed table 201 is provided with the adjusting knob 202, the bottom end surface of the adjusting knob 202 is fixedly provided with the adjusting screw 203, the bottom end surface of the adjusting screw 203 is fixedly provided with the self-rotation shaft seat 204, the bottom end surface of the self-rotation shaft seat 204 is fixedly provided with the adjusting plate 205, and one side surface of the fixed table 201 is fixedly provided with the level 206, by rotating the adjusting knob 202, the adjusting knob 202 drives the adjusting screw 203, the adjusting screw 203 moves vertically according to the thread, the self-rotation shaft seat 204 is pushed in the moving process, the self-rotation shaft seat 204 drives the adjusting plate 205, until the level 206 is observed to be horizontal, so that the device is kept horizontal during installation, lays a foundation for subsequent stable bearing, and greatly improves the stability of the device.
[0033] Working principle: when the device is installed, at this time by rotating the adjusting knob 202, the adjusting knob 202 drives the adjusting screw 203, the adjusting screw 203 moves vertically according to the thread, pushes the rotation shaft seat 204 in the movement, the rotation shaft seat 204 drives the adjusting plate 205, until the observation level 206 is horizontal, so that the device is installed horizontally, improve the stability of the device, then the connection bolt 6 is penetrated through the connection frame 5 and the building wall surface, according to the building support beam surface height, by pushing the connecting plate 407, the connecting plate 407 drives the shaft seat 406, the shaft seat 406 drives the telescopic rod 404, until the appropriate length is rotated and fixed knob 403, the fixed knob 403 is connected with the corresponding fixed hole 405, then rotate the connecting knob 408, connect the connecting plate 407 with the support beam, make the device convenient to connect with different height beam surface support, improve the anti-seismic performance of the device, after connection, push the movable block 305, the movable block 305 drives the movable frame 304, the movable frame 304 drives the support plate 302, the support plate 302 drives the support column 303, the support column 303 moves out of the storage seat 301, then rotate the positioning knob 306, the positioning knob 306 is connected with the corresponding positioning hole 307, make the support column 303 auxiliary support the reinforced concrete slab 1, all-round guarantee the stability of the device in the process of building use.
[0034] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application is made with reference to the foregoing embodiments, for the skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the scope of protection of the present application.
Claims
1. A green building reinforced concrete structure comprising a reinforced concrete slab (1), characterized in that, The reinforced concrete slab (1) is provided with horizontal devices (2) on the left and right sides, support devices (3) on the bottom surface, anti-seismic devices (4) on one side, and connecting frames (5) on the top surface.
2. A green building reinforced concrete structure according to claim 1, characterized in that, The anti-seismic device (4) comprises an ear plate seat (401), an anti-seismic column (402), a fixed knob (403), an extension rod (404), a fixed hole (405), an axle seat (406), a connecting plate (407), and a connecting knob (408). The anti-seismic column (402) is fixedly arranged on the inner wall of the ear plate seat (401). The anti-seismic column (402) is provided with a fixed knob (403) on the surface. The anti-seismic column (402) is provided with an extension rod (404) inside. The extension rod (404) is provided with a plurality of fixed holes (405) on the surface. The extension rod (404) is provided with an axle seat (406) on the top surface. The axle seat (406) is provided with a connecting plate (407) on the top surface. The connecting plate (407) is provided with a connecting knob (408) on the bottom surface.
3. A green building reinforced concrete structure according to claim 2, characterized in that, The fixed knob (403) is located in correspondence with the fixed hole (405), and the fixed hole (405) and the fixed knob (403) are provided with threads at the joint. The axle seat (406) and the extension rod (404) are provided with a rotating shaft at the joint.
4. The green building reinforced concrete structure according to claim 1, characterized in that, The support device (3) comprises a storage seat (301), a support plate (302), a support column (303), a movable frame (304), a movable block (305), a positioning knob (306), and a positioning hole (307). The storage seat (301) is provided with a support plate (302) inside. The support plate (302) is provided with a plurality of support columns (303) on the bottom surface. The support plate (302) is provided with a movable frame (304) on the top surface. The movable frame (304) is provided with a movable block (305) on one side. The movable block (305) is provided with a positioning knob (306) on the surface. The storage seat (301) is provided with a plurality of positioning holes (307) on the inner wall.
5. A green building reinforced concrete structure according to claim 4, characterized in that, The positioning hole (307) is located in correspondence with the positioning knob (306), and the positioning knob (306) and the positioning hole (307) are threadedly connected. The support column (303) and the movable frame (304) penetrate the storage seat (301). The positioning knob (306) penetrates the movable frame (304).
6. A green building reinforced concrete structure according to claim 5, characterized in that, The horizontal device (2) includes a fixed table (201), an adjusting knob (202), an adjusting screw (203), a self-rotation shaft seat (204), an adjusting plate (205), and a level (206), the top end of the fixed table (201) is provided with the adjusting knob (202), the bottom end surface of the adjusting knob (202) is fixedly provided with the adjusting screw (203), the bottom end surface of the adjusting screw (203) is fixedly provided with the self-rotation shaft seat (204), the bottom end surface of the self-rotation shaft seat (204) is fixedly provided with the adjusting plate (205), and the side surface of the fixed table (201) is fixedly provided with the level (206).
Citation Information
Patent Citations
Green building reinforced concrete beam
CN213597325U