Assembled jacking type building and construction method thereof

Through the construction method of assembled hoisting buildings, construction is built from top to bottom, and the risks of high altitude operations and construction are reduced, safety and construction efficiency are improved, and the problems of low labor productivity and high safety prevention in traditional construction are solved.

CN116163424BActive Publication Date: 2025-05-16WENZHOU WANFENG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202310262640.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-17
Publication Date
2025-05-16
Estimated Expiration
2043-03-17

AI Technical Summary

Technical Problem

Traditional construction relies on on-site operations, requires a large amount of migrant workers to invest, and labor productivity is low. Since construction from bottom to top requires a large amount of high-altitude operations, safety prevention is difficult and costly.

Method used

The assembly hoisting building and its construction method are adopted to build from top to bottom through the top lift method to reduce high-altitude operations, reduce construction risks, and improve safety through fixed connections between building floors.

Benefits of technology

It reduces the workload of high-altitude operations, reduces construction risks and costs, and improves the safety and construction efficiency of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an assembled jacking-type building and a construction method thereof, comprising an operating platform, a building body built above the operating platform, and a jacking assembly built below the operating platform, wherein the jacking assembly comprises a lifting assembly, and the lifting assembly is used to modularly lift the building body as a whole; the building body comprises a bottom building assembly, which is arranged at the bottom of the overall building and used to support the building as a whole; a middle building assembly, which is arranged in the middle of the overall building and connected to the top of the bottom building assembly, and is connected with the bottom building assembly in coordination, wherein the middle building assembly can be provided with a plurality of them, and a top building assembly, which is arranged at the top of the overall building. The present invention realizes construction from top to bottom by jacking, reduces the workload of high-altitude operations, greatly reduces construction risks, and is conducive to cost saving, wherein the building layers can be fixedly connected, which greatly improves the safety of the building.
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Description

Technical Field

[0001] The invention relates to the field of construction, and in particular to an assembled jacking type building and a construction method thereof. Background Art

[0002] At present, traditional construction usually adopts on-site operations such as tying steel bars, supporting formwork, and pouring concrete. Its industrialization level is quite low, and it basically relies on the labor of migrant workers for construction, accompanied by large-scale high-altitude operations. Traditional construction relies on on-site operations, which requires a large number of migrant workers. The labor productivity of construction projects is quite low, which makes the construction period of a project longer. Since construction is constructed from the bottom up, it often requires a lot of high-altitude operations, and the working surface that needs to be protected is quite large, and the safety precautions are difficult. Due to the particularity of construction, a lot of high-altitude operations are required. The volume of building components is huge, and large high-altitude lifting machinery is required for lifting. The cost of lifting is quite expensive, and the existing lifting-top buildings are mostly fixed by connectable parts, and the connectivity is not strong.

[0003] Therefore, it is necessary to invent an assembled jacking type building and a construction method thereof to solve the above problems. Summary of the invention

[0004] The purpose of the present invention is to provide an assembled jacking-type building and a construction method thereof, which realizes construction from top to bottom by lifting the jack, reduces the workload of high-altitude operations, greatly reduces construction risks, and is conducive to cost saving, wherein the building layers can be fixedly connected, greatly improving the safety of the building, so as to solve the problems in the prior art that the construction relies on on-site operations, requires a large number of migrant workers, and the labor productivity of the construction project is quite low; since the construction is constructed from bottom to top, a large amount of high-altitude operations are often required, the working surface that needs safety precautions is quite large, and the safety precautions are difficult; due to the huge volume of the building components, a large high-altitude lifting machinery is required for lifting, and the construction cost is high.

[0005] In order to achieve the above object, the present invention provides the following technical solutions: an assembled jacking type building, comprising an operating platform, a building body built above the operating platform, and a jacking assembly built below the operating platform, wherein the jacking assembly comprises

[0006] A lifting assembly, wherein the lifting assembly is used to modularly lift the building body as a whole;

[0007] The building body includes

[0008] The bottom building components are set at the bottom of the whole building to support the whole building;

[0009] A middle building component is arranged in the middle of the whole building, connected to the top of the bottom building component, and connected with the bottom building component in coordination, wherein a plurality of the middle building components can be arranged;

[0010] A top building assembly is arranged on the top of the whole building, connected to the top of the middle building assembly, and connected with the middle building assembly in coordination, and a waterproof top plate is fixedly installed on the top of the top building assembly;

[0011] As a preferred solution of the present invention, the bottoms of the middle building components and the top building components are fixedly connected with bottom connecting components, the tops of the bottom building components and the middle building components are fixedly connected with top connecting components corresponding to the bottom connecting components, and a connecting parts group is connected between the bottom connecting components and the top connecting components.

[0012] As a preferred solution of the present invention, the top of the lifting assembly is fixedly connected with an operating base plate, the upper surface of the operating base plate is on the same horizontal plane as the top of the operating platform, a plurality of evenly distributed side hydraulics are symmetrically arranged on the left and right sides of the interior of the lifting assembly, a plurality of evenly distributed front and rear hydraulic cylinders are symmetrically arranged on the front and rear sides of the interior of the lifting assembly, and a plurality of slots for the side hydraulics and the front and rear hydraulic cylinder output ends to pass through are arranged inside the operating base plate.

[0013] As a preferred solution of the present invention, the front and rear sides of the bottom building components are both provided with a first reserved groove, the left and right sides of the top of the bottom building components are both fixedly connected with plug-in columns, and the left and right sides of the middle building components are both provided with a second reserved groove matching with the plug-in columns.

[0014] As a preferred solution of the present invention, the four corners of the bottom of the bottom connecting component and the four corners of the top of the top connecting component are provided with installation grooves, and each installation groove inside the bottom connecting component is fixedly connected with a plurality of top curved ribs, and each installation groove inside the top connecting component is fixedly connected with a plurality of bottom curved ribs, and in the closed state, the top curved ribs and the bottom curved ribs are staggered with each other.

[0015] As a preferred solution of the present invention, the top vertical ribs are fixedly connected to the installation grooves inside the bottom connecting assembly, and the top vertical ribs are arranged as top rods located at the four corners of the top curved ribs, the bottom vertical ribs are fixedly connected to the installation grooves inside the top connecting assembly, and the bottom vertical ribs are arranged as bottom rods located at the four corners of the bottom curved ribs, the top vertical ribs cooperate with the bottom vertical ribs, and square connecting ribs are arranged on the outer sides of the top vertical ribs and the outer sides of the bottom vertical ribs.

[0016] As a preferred solution of the present invention, the shapes of the top curved rib and the bottom curved rib are both set to be curved, the connecting parts group includes curved connecting ribs, and the curved connecting ribs are provided in plurality, and the plurality of curved connecting ribs are equidistantly interspersed inside the top curved rib and the bottom curved rib.

[0017] As a preferred solution of the present invention, the bottom of the bottom connecting assembly is fixedly connected to a top mounting block, and the top of the top connecting assembly is fixedly connected to a bottom mounting block. In a closed state, the top mounting block and the bottom mounting block are staggered left and right.

[0018] As a preferred solution of the present invention, top hook ribs are fixedly connected to both sides of the top mounting block, and bottom hook ribs are fixedly connected to both sides of the bottom mounting block. The top hook ribs and bottom hook ribs are staggered front to back in a closed state, and the directions of every two adjacent top hook ribs and bottom hook ribs are opposite.

[0019] A construction method for assembling a jack-up building, the specific processing steps are as follows:

[0020] Step 1: Install the lifting assembly, dig an installation cavity on the operating platform site, install a fixed base in the installation cavity, and install hydraulic cylinders on both sides and front and rear hydraulic cylinders at equal distances around the fixed base. Install an operating base plate on the top of the fixed base, and dig slots inside the operating base plate to match the hydraulic cylinders on both sides and the front and rear hydraulic cylinders;

[0021] Step 2: constructing a top building component, constructing an operating base plate on the top of the operating base plate, constructing a top connecting component on the top of the operating base plate, and integrally constructing a top building component on the top of the top connecting component, and jacking up the top building component by simultaneously starting multiple hydraulic pressures on both sides;

[0022] Step 3: construct a middle building component, construct the middle building component on the top of the operating base plate below the top building component, integrally construct a bottom connecting component on the top of the middle building component, and integrally construct a top connecting component on the bottom of the middle building component, and at the same time, second reserved grooves are set on the left and right sides of the middle building component, and then the top building component is lifted up by starting the front and rear hydraulic cylinders, and at the same time, the output shafts of the hydraulics on both sides pass through the second reserved grooves, so as to match the top connecting component on the top of the middle building component with the bottom connecting component on the bottom of the top building component;

[0023] Step 4: Install the middle building component, insert the curved connecting ribs into the top curved ribs and the bottom curved ribs, wrap the square connecting ribs around the outside of the bottom vertical ribs, insert the transverse interlaced ribs into the top hook ribs and the bottom hook ribs, then pour cement into the gap between the bottom connecting component and the top connecting component, and pour cement into the installation groove. After the cement solidifies, the middle building component can be fixedly connected to the top building component, and then the two sides are hydraulically retracted;

[0024] Step 5: Build the bottom building assembly. Build the bottom building assembly on the top of the operating base plate under the middle building assembly, and build a bottom connecting assembly matching the top connecting assembly at the bottom of the middle building assembly on the top of the bottom building assembly. Build the top connecting assembly at the bottom of the bottom building assembly. At the same time, a plug-in column matching the second reserved groove is integrated on the top of the bottom building assembly, and a first reserved groove matching the output shaft of the front and rear hydraulic cylinders is opened on the side of the first reserved groove. Then, the bottom building assembly is lifted up by starting the hydraulic pressure on both sides so that the plug-in column enters the second reserved groove. If a multi-story building is required, the user can repeat the above operation. If the construction is completed, the user can replace the top connecting assembly at the bottom of the bottom building assembly with a building base, and retract the front and rear hydraulic cylinders to allow the plug-in column to enter the second reserved groove, and repeat step 4 to install and fix the bottom building assembly.

[0025] In the above technical solution, compared with the prior art, the technical effects and advantages provided by the present invention are as follows:

[0026] If a multi-story building is required, the user can build multiple middle building components. When the construction is completed, the user can replace the top connection component at the bottom of the bottom building component with a building base. The cooperation between the plug-in column and the second reserved groove can not only reserve activity space for the device to be lifted, but also make the buildings more stable. Users can carry out multi-story construction as needed, with a wide range of uses. Users only need to perform construction operations on the operating platform, without the need for high-altitude operations, which is conducive to reducing labor costs and can reduce the probability of safety accidents.

[0027] By setting the shapes of the top curved ribs and the bottom curved ribs to be curved, wherein the curved connecting ribs are interwoven with the top curved ribs and the bottom curved ribs, the top curved ribs and the bottom curved ribs can be fixedly connected, wherein the top curved ribs, the bottom curved ribs and the curved connecting ribs all use reinforcing ribs to enhance the connection between the devices, and the user can wrap a plurality of square connecting ribs around the outside of the top vertical ribs and the bottom vertical ribs to limit the shape of the top vertical ribs and the bottom vertical ribs, and since the top hook ribs and the bottom hook ribs are both set to be hook-shaped, they can be fixed via transverse interlaced ribs to prevent the transverse interlaced ribs from falling off, and at the same time, the transverse interlaced ribs can fix and limit the top hook ribs and the bottom hook ribs to prevent the top connecting assembly from being away from the bottom connecting assembly, thereby greatly enhancing the stability between the devices, and then cement is poured into the gap between the bottom connecting assembly and the top connecting assembly to form an integrated structure to enhance the connection between the devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0029] Figure 1 It is a schematic diagram of the decomposition structure of the present invention;

[0030] Figure 2 It is a schematic diagram of the internal structure of the lifting component 001 of the present invention;

[0031] Figure 3 It is a schematic diagram of the three-dimensional structure of the middle building component 003 of the present invention;

[0032] Figure 4 It is a schematic diagram of the exploded structure of the bottom connection component 006 and the top connection component 007 of the present invention;

[0033] Figure 5 For the present invention Figure 4 Look at the structural diagram;

[0034] Figure 6 It is a detailed structural diagram of the top connection component 007 of the present invention;

[0035] Figure 7 It is a schematic diagram of the connection structure between the bottom connection component 006 and the top connection component 007 of the present invention.

[0036] Description of reference numerals:

[0037] 001, lifting assembly; 002, bottom building assembly; 003, middle building assembly; 004, top building assembly; 005, waterproof top plate; 006, bottom connection assembly; 007, top connection assembly; 008, connection parts assembly;

[0038] 101, fixed base; 102, hydraulic pressure on both sides; 103, front and rear hydraulic cylinders; 104, operating base plate;

[0039] 201, first reserved slot; 202, plug-in column;

[0040] 301, second reserved slot;

[0041] 601, top curved rib; 602, top vertical rib; 603, top hook rib; 604, top mounting block;

[0042] 701, bottom curved ribs; 702, bottom vertical ribs; 703, bottom hook ribs; 704, bottom mounting block;

[0043] 801. Curved connecting reinforcement; 802. Square connecting reinforcement; 803. Horizontal interlaced reinforcement. DETAILED DESCRIPTION

[0044] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0045] The present invention provides Figure 1-7 The assembled jacking-type building shown in the figure comprises an operating platform, a building body built above the operating platform, and a jacking assembly built under the operating platform. The jacking assembly comprises

[0046] Lifting assembly 001, which is used to modularize the roof of the building as a whole;

[0047] The top of the lifting component 001 is fixedly connected to an operating base plate 104, the upper surface of the operating base plate 104 is on the same horizontal plane as the top of the operating platform, a plurality of evenly spaced side hydraulics 102 are symmetrically arranged on the left and right sides of the lifting component 001, a plurality of evenly spaced front and rear hydraulic cylinders 103 are symmetrically arranged on the front and rear sides of the lifting component 001, and a plurality of slots are arranged inside the operating base plate 104 for the output ends of the two-side hydraulics 102 and the front and rear hydraulic cylinders 103 to pass through.

[0048] Specifically, before the construction of the building, an installation cavity is dug in advance on the operating platform site, a fixed base 101 is installed in the installation cavity, and a plurality of equally spaced side hydraulics 102 are installed on the left and right sides of the fixed base 101, and a plurality of equally spaced front and rear hydraulic cylinders 103 are installed on the front and rear sides of the fixed base 101. An operating base plate 104 is installed on the top of the fixed base 101, and the operating base plate 104 is flush with the ground, and slots matching the side hydraulics 102 and the front and rear hydraulic cylinders 103 are dug inside the operating base plate 104 to allow the side hydraulics 102 and the front and rear hydraulic cylinders 103 to move.

[0049] The building includes

[0050] The bottom building component 002 is arranged at the bottom of the whole building and is used to support the whole building;

[0051] The middle building component 003 is arranged in the middle of the whole building, connected to the top of the bottom building component 002, and connected with the bottom building component 002. There can be multiple middle building components 003, and the bottom of each upper middle building component 003 is matched with the top of the middle building component 003 of the lower layer, and the top of the uppermost middle building component 003 is matched with the top building component 004. Users can build multi-story buildings according to their needs, and the application range is wide.

[0052] The top building component 004 is arranged at the top of the whole building, connected to the top of the middle building component 003, and connected with the middle building component 003. The top of the top building component 004 is fixedly installed with a waterproof top plate 005;

[0053] The bottoms of the middle building component 003 and the top building component 004 are fixedly connected with bottom connecting components 006, the tops of the bottom building component 002 and the middle building component 003 are fixedly connected with top connecting components 007 corresponding to the bottom connecting components 006, and a connecting parts group 008 is connected between the bottom connecting components 006 and the top connecting components 007.

[0054] The front and rear sides of the bottom building component 002 are both provided with a first reserved groove 201, the left and right sides of the top of the bottom building component 002 are both fixedly connected with plug-in columns 202, and the left and right sides of the middle building component 003 are both provided with a second reserved groove 301 that matches the plug-in columns 202.

[0055] The four corners at the bottom of the bottom connecting component 006 and the four corners at the top of the top connecting component 007 are provided with installation grooves, and a plurality of top curved ribs 601 are fixedly connected in the installation groove inside each bottom connecting component 006, and a plurality of bottom curved ribs 701 are fixedly connected in the installation groove inside each top connecting component 007. In the closed state, the top curved ribs 601 and the bottom curved ribs 701 are staggered with each other.

[0056] Among them, the shapes of the top curved rib 601 and the bottom curved rib 701 are both set to be curved, and the connecting part group 008 includes a curved connecting rib 801, and the curved connecting rib 801 is set to be multiple, and the multiple curved connecting ribs 801 are equidistantly interspersed inside the top curved rib 601 and the bottom curved rib 701, wherein the curved connecting rib 801 is interwoven with the top curved rib 601 and the bottom curved rib 701, so that the top curved rib 601 and the bottom curved rib 701 can be fixedly connected, wherein the top curved rib 601, the bottom curved rib 701 and the curved connecting rib 801 all use reinforcing ribs to enhance the connection between the devices.

[0057] The top vertical ribs 602 are fixedly connected to the installation grooves inside the bottom connecting component 006, and the top vertical ribs 602 are set as top rods located at the four corners of the top curved ribs 601. The bottom vertical ribs 702 are fixedly connected to the installation grooves inside the top connecting component 007, and the bottom vertical ribs 702 are set as bottom rods located at the four corners of the bottom curved ribs 701. The top vertical ribs 602 cooperate with the bottom vertical ribs 702, and square connecting ribs 802 are set on the outer sides of the top vertical ribs 602 and the outer sides of the bottom vertical ribs 702.

[0058] Specifically, when the bottom connecting component 006 is docked with the top connecting component 007, the top vertical rib 602 and the bottom vertical rib 702 are abutted against each other, and the user can wrap a plurality of square connecting ribs 802 around the outside of the top vertical rib 602 and the bottom vertical rib 702 to limit the shape of the top vertical rib 602 and the bottom vertical rib 702, and then fix the connection by pouring cement in the installation groove, so that the installation between the bottom building component 002 and the middle building component 003 is more solid, wherein the top vertical rib 602, the bottom vertical rib 702 and the square connecting rib 802 all use reinforcing ribs to enhance the connection between the devices.

[0059] The bottom of the bottom connecting component 006 is fixedly connected to the top mounting block 604, and the top of the top connecting component 007 is fixedly connected to the bottom mounting block 704. In the closed state, the top mounting block 604 and the bottom mounting block 704 are staggered left and right, which can enable the two-story building to be interlocked with each other to prevent dislocation, tilting and collapse.

[0060] The top hook ribs 603 are fixedly connected to both sides of the top mounting block 604, and the bottom hook ribs 703 are fixedly connected to both sides of the bottom mounting block 704. The top hook ribs 603 and the bottom hook ribs 703 are staggered front and back in a closed state, and the directions of each adjacent two top hook ribs 603 and the bottom hook ribs 703 are opposite. Transverse interlaced ribs 803 are inserted between the top hook ribs 603 and the bottom hook ribs 703. Since the top hook ribs 603 and the bottom hook ribs 703 are both arranged in a hook shape, they can be fixed through the transverse interlaced ribs 803 to prevent the transverse interlaced ribs 803 from falling off. At the same time, the transverse interlaced ribs 803 can fix and limit the top hook ribs 603 and the bottom hook ribs 703 to prevent the top connecting component 007 from being away from the bottom connecting component 006, thereby greatly enhancing the stability between the devices. Then, cement is poured into the gap between the bottom connecting component 006 and the top connecting component 007 to form an integrated structure.

[0061] A construction method for assembling a jack-up building, the specific processing steps are as follows:

[0062] Step 1: Install the lifting assembly, dig an installation cavity at the operating platform site, install a fixed base 101 in the installation cavity, and install the two-side hydraulics 102 and front and rear hydraulic cylinders 103 at equal distances around the fixed base 101, install an operating base plate 104 on the top of the fixed base 101, and dig slots inside the operating base plate 104 that match the two-side hydraulics 102 and the front and rear hydraulic cylinders 103;

[0063] Step 2: construct the top building component 004, construct the operating base plate 104 on the top of the operating base plate 104, and construct the top connecting component 007 on the top of the operating base plate 104, and build the top building component 004 on the top of the top connecting component 007, and lift the top building component 004 by simultaneously starting multiple hydraulic pressures 102 on both sides;

[0064] Step 3: construct the middle building component 003, construct the middle building component 003 on the top of the operating base plate 104 below the top building component 004, build the bottom connecting component 006 on the top of the middle building component 003, and build the top connecting component 007 on the bottom of the middle building component 003, and at the same time, set the second reserved grooves 301 on the left and right sides of the middle building component 003, and then lift the top building component 004 by starting the front and rear hydraulic cylinders 103, and at the same time, the output shafts of the hydraulics 102 on both sides pass through the second reserved grooves 301, so as to match the top connecting component 007 on the top of the middle building component 003 with the bottom connecting component 006 on the bottom of the top building component 004;

[0065] Step 4: Install the middle building component 003, insert the curved connecting rib 801 into the top curved rib 601 and the bottom curved rib 701, wrap the square connecting rib 802 around the outside of the bottom vertical rib 702, insert the transverse interlaced rib 803 into the top hook rib 603 and the bottom hook rib 703, then pour cement into the gap between the bottom connecting component 006 and the top connecting component 007, and pour cement into the installation groove, after the cement solidifies, the middle building component 003 can be fixedly connected with the top building component 004, and then the hydraulics 102 on both sides are retracted;

[0066] Step 5: Construct the bottom building component 002, construct the bottom building component 002 on the top of the operating base plate 104 under the middle building component 003, and construct the bottom connecting component 006 matching the top connecting component 007 at the bottom of the middle building component 003 on the top of the bottom building component 002, and construct the top connecting component 007 at the bottom of the bottom building component 002. At the same time, the plug-in column 202 matching the second reserved groove 301 is integrated at the top of the bottom building component 002, and the first reserved groove 201 matching the output shaft of the front and rear hydraulic cylinders 103 is opened on the side of the first reserved groove 201, and then the bottom building component 002 is lifted up by starting the hydraulic pressure 102 on both sides, so that the plug-in column 202 enters the second reserved groove 301.

[0067] If a multi-story building is required, the user can repeat the above operation. If the construction is completed, the user can replace the top connecting component 007 at the bottom of the bottom building component 002 with a building base, and retract the front and rear hydraulic cylinders 103 to allow the plug-in column 202 to enter the second reserved groove 301, and repeat step four to install and fix the bottom building component 002. The cooperation between the plug-in column 202 and the second reserved groove 301 can not only reserve space for the lifting of the device, but also make the buildings more stable. Users can carry out multi-story construction as needed, with a wide range of uses, and users only need to perform construction operations on the operating platform without the need for high-altitude operations, which is conducive to reducing labor costs and the probability of safety accidents.

[0068] The above description is only by way of illustration of certain exemplary embodiments of the present invention. It is undoubted that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. An assembled jacking-type building, comprising an operating platform, a building body built above the operating platform, and a jacking assembly built below the operating platform, characterized in that: The lifting assembly comprises: A lifting assembly (001), the lifting assembly (001) is used to carry out modular lifting of the entire building body; The building body comprises: The bottom building component (002) is arranged at the bottom of the whole building and is used to support the whole building; A middle building component (003) is arranged in the middle of the whole building, connected to the top of the bottom building component (002), and connected to the bottom building component (002), wherein a plurality of the middle building components (003) can be arranged; A top building component (004) is arranged on the top of the whole building, connected to the top of the middle building component (003), and connected to the middle building component (003). A waterproof top plate (005) is fixedly installed on the top of the top building component (004); The bottoms of the middle building assembly (003) and the top building assembly (004) are both fixedly connected with a bottom connection assembly (006); the tops of the bottom building assembly (002) and the middle building assembly (003) are both fixedly connected with a top connection assembly (007) corresponding to the bottom connection assembly (006); and a connection parts assembly (008) is connected between the bottom connection assembly (006) and the top connection assembly (007); The four corners at the bottom of the bottom connection component (006) and the four corners at the top of the top connection component (007) are provided with mounting grooves, and a plurality of top curved ribs (601) are fixedly connected to the mounting grooves inside each of the bottom connection components (006), and a plurality of bottom curved ribs (701) are fixedly connected to the mounting grooves inside each of the top connection components (007), and in a closed state, the top curved ribs (601) and the bottom curved ribs (701) are arranged in an interlaced manner; The top vertical ribs (602) are fixedly connected to the mounting grooves inside the bottom connection component (006), and the top vertical ribs (602) are arranged as top rods located at the four corners of the top curved ribs (601); the bottom vertical ribs (702) are fixedly connected to the mounting grooves inside the top connection component (007), and the bottom vertical ribs (702) are arranged as bottom rods located at the four corners of the bottom curved ribs (701); the top vertical ribs (602) cooperate with the bottom vertical ribs (702), and the outer sides of the top vertical ribs (602) and the outer sides of the bottom vertical ribs (702) are both provided with square connection ribs (802); The shapes of the top curved rib (601) and the bottom curved rib (701) are both set to be curved, the connection part group (008) comprises a curved connecting rib (801), and the curved connecting rib (801) is set to be a plurality, and the plurality of curved connecting ribs (801) are equidistantly interspersed inside the top curved rib (601) and the bottom curved rib (701).

2. The assembled jacking-type building according to claim 1 is characterized in that: The top of the lifting component (001) is fixedly connected to an operating base plate (104), the upper surface of the operating base plate (104) is on the same horizontal plane as the top of the operating platform, a plurality of evenly spaced side hydraulics (102) are symmetrically arranged on the left and right sides of the lifting component (001), a plurality of evenly spaced front and rear hydraulic cylinders (103) are symmetrically arranged on the front and rear sides of the lifting component (001), and a plurality of slots are arranged inside the operating base plate (104) for the output ends of the two-side hydraulics (102) and the front and rear hydraulic cylinders (103) to pass through.

3. The assembled jacking-type building according to claim 1 is characterized in that: The front and rear sides of the bottom building component (002) are both provided with a first reserved groove (201), the top left and right sides of the bottom building component (002) are both fixedly connected with plug-in columns (202), and the left and right sides of the middle building component (003) are both provided with a second reserved groove (301) that matches the plug-in columns (202).

4. The assembled jacking-type building according to claim 1 is characterized in that: The bottom of the bottom connection component (006) is fixedly connected to a top mounting block (604), and the top of the top connection component (007) is fixedly connected to a bottom mounting block (704). In a closed state, the top mounting block (604) and the bottom mounting block (704) are staggered left and right.

5. The assembled jacking-type building according to claim 4 is characterized in that: Both sides of the top mounting block (604) are fixedly connected with top hook-shaped ribs (603), and both sides of the bottom mounting block (704) are fixedly connected with bottom hook-shaped ribs (703). The top hook-shaped ribs (603) and the bottom hook-shaped ribs (703) are staggeredly distributed front to back in a closed state, and the directions of every two adjacent top hook-shaped ribs (603) and bottom hook-shaped ribs (703) are opposite.

6. A construction method for an assembled jack-up building, comprising an assembled jack-up building according to any one of claims 1 to 5, characterized in that: The specific processing steps are as follows: Step 1: Install the lifting assembly, dig an installation cavity at the operating platform site, install a fixed base (101) in the installation cavity, and install hydraulic pressure (102) on both sides and front and rear hydraulic cylinders (103) at equal distances around the fixed base (101), install an operating base plate (104) on the top of the fixed base (101), and dig slots inside the operating base plate (104) that match the hydraulic pressure (102) on both sides and the front and rear hydraulic cylinders (103); Step 2: constructing a top building component (004), constructing an operating base plate (104) on the top of the operating base plate (104), and constructing a top connection component (007) on the top of the operating base plate (104), and integrally constructing the top building component (004) on the top of the top connection component (007), and jacking up the top building component (004) by simultaneously activating multiple hydraulic pressures (102) on both sides; Step 3: construct the middle building component (003), construct the middle building component (003) on the top of the operating base plate (104) below the top building component (004), integrally construct the bottom connecting component (006) on the top of the middle building component (003), and integrally construct the top connecting component (007) on the bottom of the middle building component (003), and at the same time, set second reserved grooves (301) on the left and right sides of the middle building component (003), and then lift up the top building component (004) by starting the front and rear hydraulic cylinders (103), and at the same time, the output shafts of the hydraulics (102) on both sides pass through the second reserved grooves (301), so that the top connecting component (007) on the top of the middle building component (003) is matched with the bottom connecting component (006) on the bottom of the top building component (004); Step 4: Install the middle building component (003), insert the curved connecting rib (801) into the top curved rib (601) and the bottom curved rib (701), wrap the square connecting rib (802) around the outside of the bottom vertical rib (702), insert the transverse interlaced rib (803) into the top hook rib (603) and the bottom hook rib (703), then pour cement to fill the gap between the bottom connecting component (006) and the top connecting component (007), and pour cement into the installation groove. After the cement solidifies, the middle building component (003) and the top building component (004) can be fixedly connected, and then the hydraulic pressure (102) on both sides can be retracted; Step 5: construct the bottom building component (002), construct the bottom building component (002) on the top of the operating base plate (104) below the middle building component (003), and construct a bottom connecting component (006) on the top of the bottom building component (002) that matches the top connecting component (007) at the bottom of the middle building component (003), and construct a top connecting component (007) at the bottom of the bottom building component (002), and at the same time, an inserting column (202) that matches the second reserved groove (301) is integrated at the top of the bottom building component (002), and a plug-in column (202) that matches the front reserved groove (301) is opened on the side of the first reserved groove (201). The output shaft of the rear hydraulic cylinder (103) is matched with the first reserved groove (201), and then the bottom building component (002) is lifted up by starting the hydraulic pressure (102) on both sides, so that the plug-in column (202) enters the second reserved groove (301). If a multi-story building is required, the user can repeat the above operation. When the construction is completed, the user can replace the top connection component (007) at the bottom of the bottom building component (002) with the building base, and retract the front and rear hydraulic cylinders (103) to allow the plug-in column (202) to enter the second reserved groove (301), and repeat step 4 to install and fix the bottom building component (002).

Citation Information

Patent Citations

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    CN105839784A

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    CN114753483A