Device for controlling elevation of embedded part and construction method thereof

By controlling the coordination of the lifting and supporting components of the embedded part elevation device, the problem of embedded part elevation adjustment relying on elevation deviation markings was solved, achieving precise adjustment of embedded part elevation and improving construction efficiency, thus ensuring installation quality.

CN116378437BActive Publication Date: 2026-02-10MCC TIANGONG GROUP TIANJIN CO LTD
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Patent Information

Application Number
CN202310393191.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-13
Publication Date
2026-02-10
Estimated Expiration
2043-04-13

AI Technical Summary

Technical Problem

In existing technologies, the adjustment of the elevation of embedded parts relies on elevation deviation indicators, which lack measurement basis, require repeated adjustments, increase construction difficulty and consume a lot of labor, and make it difficult to guarantee installation quality.

Method used

A device for controlling the elevation of embedded parts is provided, including a base, a lifting support assembly and a support plate. Through the cooperation of the lifting assembly and the support assembly, the embedded parts can be precisely adjusted, reducing the need for manpower and multiple adjustments, and improving construction efficiency.

Benefits of technology

By combining the lifting and supporting components, the elevation of the embedded parts can be precisely adjusted, reducing manpower requirements, improving construction efficiency, ensuring quality, and the device is detachable, easy to operate, and reduces construction time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a device for controlling the elevation of embedded parts and a construction method thereof, and relates to the technical field of building engineering. The device comprises a base, a bottom plate and a side plate vertically arranged on one side of the bottom plate, the bottom plate comprises a first bottom edge and a second bottom edge arranged vertically, and the bottom plate is provided with a mounting hole for connecting with the ground; a lifting support assembly, comprising a lifting assembly and a support assembly, both of which are arranged on the bottom plate, and the lifting assembly is located at the center of the bottom plate, and the support assembly is arranged at the connection between the first bottom edge and the second bottom edge; a supporting plate arranged on the top of the lifting support assembly for supporting the embedded parts. The application has the advantages of being adjustable, detachable, simple to operate and convenient to construct, greatly reducing the number of construction personnel, and ensuring the quality.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building engineering, and in particular to a device for controlling the elevation of embedded parts and a construction method thereof. BACKGROUND

[0002] In many field constructions, the required plate top embedded parts have multiple specifications and are densely arranged, the installation process is complex, and the elevation accuracy is high. Generally, the installation process is rough installation, then re-measurement by using a level combined with manual adjustment by adding shims, then welding and fixing and re-measurement.

[0003] During the construction process, the height is estimated and adjusted only by the elevation deviation mark, without a measurement basis, and multiple repeated adjustments are required, and multiple people are required to complete the adjustment. Therefore, the construction difficulty is increased, the installation quality is difficult to guarantee, and a large amount of labor is consumed. SUMMARY

[0004] The present application relates to the technical field of building engineering, and in particular to a device for controlling the elevation of embedded parts and a construction method thereof. 。 The preferred technical solutions in the many technical solutions provided by the present application can produce many technical effects, which are described in detail below.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0006] The present application provides a device for controlling the elevation of embedded parts, comprising:

[0007] The base comprises a bottom plate and a side plate vertically arranged on one side of the bottom plate, the bottom plate comprises a first bottom edge and a second bottom edge arranged vertically, and the bottom plate is provided with a mounting hole for connecting with the ground;

[0008] The lifting support assembly comprises a lifting assembly and a support assembly, the lifting assembly and the support assembly are arranged on the bottom plate, and the lifting assembly is located at the center of the bottom plate, and the support assembly is arranged at the connection between the first bottom edge and the second bottom edge;

[0009] The supporting plate is arranged on the top of the lifting support assembly and is used for supporting the embedded parts.

[0010] Preferably, the cross section of the supporting plate is an isosceles right triangle structure, the top end of the lifting assembly is connected to the center of the isosceles right triangle structure, and the top end of the support assembly is connected to the right angle of the isosceles triangle structure.

[0011] Preferably, the side plate comprises a first side plate and a second side plate, wherein:

[0012] The first side plate and the second side plate are arranged perpendicularly, and the bottom of the support assembly is located at the connection between the first side plate and the second side plate.

[0013] Preferably, the support assembly includes a first sleeve and a second sleeve, wherein:

[0014] The first sleeve has an internal accommodating structure for accommodating the second sleeve;

[0015] The cross-sectional dimensions of the accommodating structure are the same as those of the second sleeve.

[0016] Preferably, the first sleeve is made of hollow square steel and the wall thickness of the first sleeve is at least 2mm; the second sleeve is made of square steel.

[0017] Preferably, the lifting assembly includes a hollow steel pipe, a lead screw, and fasteners, wherein:

[0018] One end of the hollow steel pipe is fixedly connected to the center of the support plate;

[0019] One end of the lead screw is disposed on the base plate, and the lead screw extends into the hollow steel pipe from the other end of the hollow steel pipe;

[0020] The fastener is fitted onto the lead screw.

[0021] Preferably, the fastener is a mountain-shaped nut.

[0022] Preferably, the third bottom edge of the base plate is parallel to the first bottom edge, the fourth bottom edge of the base plate is parallel to the second bottom edge, and the included angle between the third bottom edge and the fourth bottom edge is set as a right angle;

[0023] The angle between the line connecting the first base edge and the third base edge and the third base edge is set to 45°;

[0024] The angle between the line connecting the second base edge and the fourth base edge and the fourth base edge is set to 45°.

[0025] A construction method for the above-mentioned device for controlling the elevation of embedded parts includes the following steps:

[0026] S1: Laying out the lines, laying out the lines of the embedded parts and multiple control lines according to the drawings;

[0027] S2: Base fabrication: Fabricate the base according to the elevation of the embedded parts marked on the drawings;

[0028] S3: Fix the base. After laying out the lines, use expansion bolts to pass through the mounting holes and fix the base on the concrete ground.

[0029] S4: Install the lead screw and the first sleeve. Weld the lead screw and the first sleeve onto the base plate of the base, and fit the fasteners onto the lead screw.

[0030] S5: Fabrication of pallet and connecting structure: Select angle steel to cut pallet, and weld hollow steel pipe and second sleeve to the pallet at the positions corresponding to the lead rod and the first sleeve.

[0031] S6: Install the support plate and install the hollow steel pipe and the second sleeve to the corresponding screw rod and the first sleeve respectively;

[0032] S7: Install the embedded parts, install the embedded parts on the support plate, and fine-tune the embedded parts with a three-line instrument or a five-line instrument;

[0033] S8: Pouring concrete;

[0034] S9: A device for recovering and controlling the elevation of embedded parts for secondary use.

[0035] This invention provides a device and construction method for controlling the elevation of embedded parts. A lifting support assembly is installed inside a right-angled structure formed by the base plate and side plates of the base. The lifting and support components of the lifting support assembly form a support system, effectively supporting the support plate and embedded parts located on top. The height of the lifting and support components can be adjusted according to actual usage needs, making the device more widely applicable and versatile. During use, the cooperation of the lifting and support components eliminates the need for extensive manual adjustment of the embedded part elevation. Furthermore, the adjustment process can be controlled by controlling the lifting components to control specific lifting data, improving adjustment accuracy and reducing the need for multiple adjustments, thus saving time and labor. This device is also detachable, easy to operate, and convenient to construct, ensuring construction quality while improving construction efficiency. Attached Figure Description

[0036] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0037] Figure 1 This is a schematic diagram of the planar structure of the device for controlling the elevation of embedded parts according to the present invention;

[0038] Figure 2 This is a schematic diagram of the elevation structure of the device for controlling the elevation of embedded parts according to the present invention.

[0039] In the diagram: 1. Base; 11. Base plate; 110. Mounting hole; 111. First bottom edge; 112. Second bottom edge; 113. Third bottom edge; 114. Fourth bottom edge; 12. Side plate; 121. First side plate; 122. Second side plate;

[0040] 2. Lifting support assembly; 21. Lifting assembly; 211. Hollow steel pipe; 212. Screw rod; 213. Fastener; 22. Support assembly; 221. First sleeve; 222. Second sleeve;

[0041] 3. Pallet; 4. Embedded parts; 5. Concrete floor. Detailed Implementation

[0042] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be described in detail below. Obviously, the described embodiments are merely some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0043] This invention provides a device for controlling the elevation of embedded parts. Figure 1 This is a schematic diagram of the planar structure of this embodiment. Figure 2 This is a schematic diagram of the elevation structure of this embodiment, as shown below. Figure 1 and Figure 2 As shown, it includes a base 1, a lifting support assembly 2, and a tray 3.

[0044] The base 1 includes a base plate 11 and a side plate 12 vertically disposed on one side of the base plate 11. The base plate 11 includes a first bottom edge 111 and a second bottom edge 112 vertically disposed, and mounting holes 110 for connecting to the ground are provided on the base plate 11.

[0045] In this embodiment, the base 1 is welded from angle iron, and the base plate 11 has holes set as mounting holes 110, which are used to allow expansion bolts to pass through the mounting holes to connect the base plate 11 to the concrete ground 5.

[0046] The lifting support assembly 2 includes a lifting component 21 and a support component 22. Both the lifting component 21 and the support component 22 are mounted on the base plate 11, with the lifting component 21 located at the center of the base plate 11 and the support component 22 located at the connection between the first bottom edge 111 and the second bottom edge 112. A support plate 3 is mounted on top of the lifting support assembly 2 and is used to support the embedded part 4.

[0047] A lifting support assembly 2 is installed inside the right-angle structure formed by the base plate 11 and side plate 12 of the base 1. The lifting component 21 and the support component 22 of the lifting support assembly 2 form a support system, effectively supporting the support plate 3 and the embedded part 4 set on top of it. The height of the lifting component 21 and the support component 22 can be adjusted according to actual usage needs, making the device more widely applicable and versatile. In use, the cooperation of the lifting component 21 and the support component 22 eliminates the need for a large amount of manpower to adjust the elevation of the embedded part. Moreover, the adjustment process can be controlled by controlling the lifting component 21 to control the specific lifting data, improving adjustment accuracy. Multiple adjustments are unnecessary, saving time and labor. Furthermore, this device has the advantages of being detachable, easy to operate and convenient to construct, ensuring construction quality while improving construction efficiency.

[0048] As an optional implementation, the cross-section of the support plate 3 is an isosceles right triangle structure, which is used to increase the contact area between the device for controlling the elevation of the embedded part and the embedded part 4, so as to better support the embedded part 4.

[0049] In this embodiment, the thickness of the support plate 3 is not less than 2mm, and the right-angled sides of the isosceles right triangle structure are arranged correspondingly to the right-angled sides of the base 1 on the top and bottom, and the lengths are the same, so as to make the overall structure more stable.

[0050] The top of the lifting component 21 is connected to the center of the isosceles right triangle structure, and the top of the support component 22 is connected to the right angle of the isosceles triangle structure.

[0051] As an optional implementation, the side plate 12 includes a first side plate 121 and a second side plate 122.

[0052] The first side plate 121 and the second side plate 122 are arranged perpendicularly, and the bottom of the support component 22 is located at the connection between the first side plate 121 and the second side plate 122.

[0053] In this embodiment, the first side plate 121 is connected to the first bottom edge 111 and is perpendicular to each other, and the second side plate 122 is connected to the second bottom edge 112 and is perpendicular to each other. The bottom plate 11 and the side plate 12 form a right-angle structure to enhance the overall structural stability.

[0054] Specifically, the third bottom edge 113 of the base plate 11 is parallel to the first bottom edge 111, the fourth bottom edge 114 of the base plate 11 is parallel to the second bottom edge 112, and the included angle between the third bottom edge 113 and the fourth bottom edge 114 is set as a right angle.

[0055] The angle between the line connecting the first base 111 and the third base 113 and the third base 113 is set to 45°; the angle between the line connecting the second base 112 and the fourth base 114 and the fourth base 114 is also set to 45°. These angles are created by cutting angle steel, achieving a simpler overall structure while maintaining stability.

[0056] As an optional implementation, the support component 22 includes a first sleeve 221 and a second sleeve 222.

[0057] The first sleeve 221 has an internal accommodating structure for accommodating the second sleeve 222, and the cross-sectional dimensions of the accommodating structure are the same as those of the second sleeve 222.

[0058] Specifically, the first sleeve 221 adopts a hollow square steel structure, and the wall thickness of the first sleeve 221 is at least 2mm. The second sleeve 222 adopts a square steel structure. The edge of the first sleeve 221 is set to fit the right-angle edge of the base 1.

[0059] In this embodiment, the cross-section of the accommodating structure is 2cm in length and 2cm in width, and the first sleeve 221 is fully welded to the right angle of the base. The second sleeve 222 is made of square steel with a side length of 2cm and is fully welded to the lower right angle of the support plate 3.

[0060] In actual production and use, the second sleeve 222 can be made of hollow square steel or solid square steel. In this embodiment, in order to reduce the weight of the overall structure, the second sleeve 222 is made of hollow square steel.

[0061] As an optional implementation, the lifting assembly 21 includes a hollow steel pipe 211, a lead screw 212, and a fastener 213.

[0062] One end of the hollow steel pipe 211 is fixedly connected to the center of the support plate 3; one end of the screw rod 212 is set on the base plate 11, and the other end of the screw rod 212 extends into the hollow steel pipe 211; the fastener 213 is sleeved on the screw rod 212.

[0063] In this embodiment, a lead screw 212 with a diameter of 14mm is fully welded onto the base 1, and a fastener 213 matching the lead screw 212 is configured on the lead screw 212. Each lead of the lead screw 212 has a certain height, which facilitates fine adjustment during construction. The fastener 213 is a U-shaped nut. Of course, in actual production and use, other fasteners available on the market for adjusting tightness can also be used. A hollow round steel with a diameter of 16mm and a wall thickness of 2mm is fully welded to the center of the support plate 3. During construction, it is installed according to the layout line and fixed to the ground. The elevation of the embedded part 4 is finely adjusted by raising and lowering the fastener 213.

[0064] A construction method for the above-mentioned device for controlling the elevation of embedded parts includes the following steps:

[0065] S1: Laying out the lines. Lay out the lines of the embedded part 4 and multiple control lines according to the drawings. In actual use, the surveyor can directly lay out the lines of the embedded part 4 and related control lines according to the drawings to facilitate subsequent operations.

[0066] S2: Base 1 fabrication: Fabricate a matching base 1 according to the elevation of the embedded parts marked on the drawings;

[0067] S3: Fix base 1. After laying out the lines, use expansion bolts to pass through the mounting holes 110 and fix base 1 on the concrete ground.

[0068] S4: Install the lead screw 212 and the first sleeve 221. Weld the lead screw 212 and the first sleeve 221 onto the base plate 11 of the base 1, and fit the fastener 213 onto the lead screw 212. In actual construction, welding is used to fully weld the lead screw 212 and the first sleeve 221 onto the base 1, and the matching fastener 213 is screwed into the lead screw 212.

[0069] S5: Fabrication of pallet 3 and its connecting structure: Select angle steel to cut pallet 3, and weld hollow steel pipe 211 and second sleeve 222 on pallet 3 at positions corresponding to screw rod 212 and first sleeve 221.

[0070] S6: Install the support plate 3, and install the hollow steel pipe 211 and the second sleeve 222 to the screw rod 212 and the first sleeve 221 respectively.

[0071] S7: Install the embedded part 4, install the embedded part 4 on the support plate 3, and fine-tune the embedded part with the three-line instrument or five-line instrument;

[0072] S8: Pouring concrete;

[0073] S9: A device for recycling and controlling the elevation of embedded parts for secondary use. In this embodiment, all parts except expansion bolts can be recycled.

[0074] Using this construction method, a lifting support assembly 2 is installed inside the right-angle structure formed by the base plate 11 and side plate 12 of the base 1. The lifting component 21 and the support component 22 of the lifting support assembly 2 form a support system, effectively supporting the support plate 3 and the embedded part 4 set on top of it. The height of the lifting component 21 and the support component 22 can be adjusted according to actual usage needs, making the device more widely applicable and more versatile. During use, through the cooperation of the lifting component 21 and the support component 22, there is no need to use a lot of manpower to adjust the elevation of the embedded part. Moreover, the adjustment process can be controlled by controlling the lifting component 21 to control the specific lifting data, improving the adjustment accuracy. Multiple adjustments are not required, saving time and labor. Furthermore, this device has the advantages of being detachable, easy to operate and convenient to construct, ensuring construction quality while improving construction efficiency.

[0075] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A device for controlling the elevation of embedded parts, characterized in that, include: The base includes a base plate and a side plate vertically disposed on one side of the base plate. The base plate includes a first bottom edge and a second bottom edge vertically disposed, and the base plate is provided with mounting holes for connecting to the ground. A lifting support assembly includes a lifting component and a support component, both of which are disposed on the base plate, with the lifting component located at the center of the base plate and the support component disposed at the connection between the first bottom edge and the second bottom edge; A support plate, located on top of the lifting support assembly, is used to support the embedded parts; The cross-section of the tray is an isosceles right triangle structure, and the right-angled sides of the isosceles right triangle structure are arranged correspondingly to the right-angled sides of the base on the top and bottom, and the lengths are the same. The top end of the lifting component is connected to the center of the isosceles right triangle structure, and the top end of the support component is connected to the right angle of the isosceles right triangle structure; the support component includes a first sleeve and a second sleeve, wherein: the interior of the first sleeve is provided with a receiving structure for accommodating the second sleeve; the cross-sectional dimensions of the receiving structure are the same as the cross-sectional dimensions of the second sleeve; The third bottom edge of the base plate is parallel to the first bottom edge, the fourth bottom edge of the base plate is parallel to the second bottom edge, and the included angle between the third bottom edge and the fourth bottom edge is set as a right angle; The angle between the line connecting the first base edge and the third base edge and the third base edge is set to 45°; The angle between the line connecting the second base edge and the fourth base edge and the fourth base edge is set to 45°.

2. The device for controlling the elevation of embedded parts according to claim 1, characterized in that: The side plate includes a first side plate and a second side plate, wherein: The first side plate is perpendicular to the second side plate.

3. The device for controlling the elevation of embedded parts according to claim 1, characterized in that: The first sleeve is made of hollow square steel and has a wall thickness of at least 2 mm; the second sleeve is made of square steel.

4. A device for controlling the elevation of embedded parts according to claim 1 or 2, characterized in that: The lifting assembly includes a hollow steel tube, a lead screw, and fasteners, wherein: One end of the hollow steel pipe is fixedly connected to the center of the support plate; One end of the lead screw is disposed on the base plate, and the lead screw extends into the hollow steel pipe from the other end of the hollow steel pipe; The fastener is fitted onto the lead screw.

5. The device for controlling the elevation of embedded parts according to claim 4, characterized in that: The fastener is a mountain-shaped nut.

6. A construction method for a device for controlling the elevation of embedded parts as described in any one of claims 1-5, characterized in that: Includes the following steps: S1: Laying out the lines, laying out the lines of the embedded parts and multiple control lines according to the drawings; S2: Base fabrication: Fabricate the base according to the elevation of the embedded parts marked on the drawings; S3: Fix the base. After laying out the lines, use expansion bolts to pass through the mounting holes and fix the base on the concrete ground. S4: Install the lead screw and the first sleeve. Weld the lead screw and the first sleeve onto the base plate of the base, and fit the fasteners onto the lead screw. S5: Fabrication of pallet and connecting structure: Select angle steel to cut pallet, and weld hollow steel pipe and second sleeve to the pallet at the positions corresponding to the lead rod and the first sleeve. S6: Install the support plate and install the hollow steel pipe and the second sleeve to the corresponding screw rod and the first sleeve respectively; S7: Install the embedded parts, install the embedded parts on the support plate, and fine-tune the embedded parts with a three-line instrument or a five-line instrument; S8: Pouring concrete; S9: A device for recovering and controlling the elevation of embedded parts for secondary use.

Citation Information

Patent Citations

  • Device for controlling elevation of embedded part

    CN219654316U