Embedded part leveling assembly and plate cabinet combined mounting structure
By using embedded parts leveling components, adjusting the flatness and level of embedded parts by adjusting the nuts on the studs, the problems of poor flatness of embedded parts, inability to adjust the installation direction and long construction cycle in the prior art are solved, and higher construction accuracy and faster installation progress are achieved.
Patent Information
- Application Number
- CN202421603536.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-08
AI Technical Summary
In the prior art, the construction method of adjusting the level of the T-shaped embedded parts leads to poor flatness of the embedded parts, the installation direction cannot be adjusted, and the construction period is relatively long.
An embedded component leveling assembly is provided, including a first plate body, a second plate body, a stud and a nut, and the flatness and level of the first plate body are adjusted by adjusting the nut on the stud, thereby adjusting the flatness, level and/or elevation parameters of the embedded component body.
It effectively avoids pre-embedding errors caused by concrete vibration and hardening, reserves a time window and operating space for secondary adjustment, ensures the construction accuracy of equipment installation, shortens the installation progress, and eliminates the problem that traditional T-shaped embedded parts cannot be adjusted in the direction.
Smart Images

Figure CN222996084U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cabinet installation, in particular to an embedded part leveling assembly and a combined installation structure of a cabinet and a panel. Background Technique
[0002] At present, in engineering, the installation of electrical control cabinets mostly adopts the bolt connection between the legs and the embedded parts. For important control cabinets, higher requirements are imposed on the levelness of the T-shaped embedded parts and the overall levelness of the control cabinets.
[0003] However, during the civil engineering construction process, the concrete needs to be vibrated, and the concrete will also expand during the hardening process, which will affect the positioning and installation levelness of the embedded parts. In engineering, the surface of the T-shaped embedded parts is generally polished for treatment. On the one hand, when polishing carbon steel products, it can only be polished while measuring, and the deviation is large, and the polishing is extremely difficult, wasting a lot of manpower. On the other hand, since the T-shaped embedded parts are installed and embedded in one molding, when the construction of the T-shaped embedded parts is offset, the installation can only be carried out according to the position of the embedded parts on site, and no adjustment in any direction can be made at all. On the other hand, generally speaking, it is difficult for civil engineering construction to achieve the high precision required for equipment installation. Therefore, the equipment can only be installed after the embedded parts are polished, which affects the overall construction progress.
[0004] Therefore, the existing construction method of simply adjusting the levelness by polishing the T-shaped embedded parts not only has poor flatness of the embedded parts and cannot adjust the installation direction, but also has a long construction period. Content of the Utility Model
[0005] In view of this, the utility model provides an embedded part leveling assembly and a combined installation structure of a cabinet and a panel to solve the problems that the existing construction method of simply adjusting the levelness by polishing the T-shaped embedded parts not only has poor flatness of the embedded parts, cannot adjust the installation direction of the embedded parts, but also has a long construction period.
[0006] In the first aspect, the utility model provides an embedded part leveling assembly, including:
[0007] A first plate body, which is provided with a plurality of first through holes along the height direction;
[0008] A second plate body, which is arranged at an interval with the first plate body along the height direction:
[0009] A plurality of stud bolts, one end of the stud bolt in the height direction is fixedly arranged on the second plate body, and the other end is adapted to pass through the first through hole;
[0010] A number of first nuts and a number of second nuts, both the first nut and the second nut are threadedly connected to the stud. The first nut is arranged on one side of the first plate body close to the second plate body along the height direction, and the second nut is arranged on one side of the first plate body away from the second plate body along the height direction. The first nut and the second nut are adapted to jointly adjust the flatness, levelness and / or elevation parameters of the first plate body.
[0011] Beneficial effects: The embedded part leveling assembly provided by the present utility model adjusts the flatness and levelness of the first plate body by adjusting the first nut and the second nut on one or more studs, so as to adjust the flatness, levelness and / or elevation parameters of the embedded part body, avoiding the embedded error caused by the expansion during the concrete vibration and hardening process in the civil engineering construction process. At the same time, a time window and operation space for secondary adjustment are reserved, ensuring the installation construction accuracy of equipment such as cabinets, shortening the installation construction progress, eliminating the problem that the traditional T-shaped embedded part installation is formed once and cannot be adjusted in direction, which is beneficial to accelerating the construction progress, ensuring construction safety and construction quality.
[0012] In an optional embodiment, a number of studs are arranged at intervals in pairs along the length direction and / or the width direction on the second plate body.
[0013] Beneficial effects: It can not only ensure the support strength and support stability of the first plate body, but also can more precisely adjust the levelness and height of the first plate body by selectively adjusting the first nut and the second nut on at least one of the studs.
[0014] In an optional embodiment, one end of the stud along the height direction is fixedly welded to the second plate body.
[0015] Beneficial effects: Thus, the connection strength between the stud and the second plate body is ensured, and the structural stability between the stud and the second plate body is enhanced.
[0016] In a second aspect, the present utility model further provides a combined installation structure of a switch cabinet, including:
[0017] A switch cabinet body, and the embedded part leveling assembly as described above;
[0018] An embedded part body, arranged between the switch cabinet body and the embedded part leveling assembly; the embedded part leveling assembly is adapted to adjust the flatness, levelness and / or elevation parameters of the embedded part body.
[0019] Beneficial effects: The combined installation structure of the switchgear cabinet provided by the present utility model adjusts the flatness, levelness and / or elevation parameters of the embedded part body through the embedded part leveling assembly, thereby adjusting the flatness, levelness and / or elevation parameters of the switchgear cabinet body, avoiding the embedded error caused by the expansion during the concrete vibration and hardening process in the civil engineering construction process, and at the same time reserving a time window and operation space for secondary adjustment, ensuring the installation construction accuracy of equipment such as the cabinet body, shortening the installation construction progress, eliminating the problem that the traditional T-shaped embedded part is installed and pre-embedded in one forming and cannot adjust the direction, which is beneficial to accelerating the construction progress, ensuring construction safety and construction quality.
[0020] In an optional implementation manner, both ends of the embedded part body in the length direction are fixedly welded to one side of the first plate body away from the second plate body along the height direction.
[0021] Beneficial effects: Thereby ensuring the connection strength between the embedded part body and the first plate body, and enhancing the stability of the fixed connection between the embedded part body and the first plate body.
[0022] In an optional implementation manner, the combined installation structure of the switchgear cabinet further includes an anchor leg, the anchor leg is fixedly arranged on one side of the embedded part body along the height direction close to the embedded part leveling assembly, and the anchor leg is suitable for being buried in the concrete and fixedly supporting the embedded part body.
[0023] Beneficial effects: During the construction process, by burying the anchor leg in the concrete, it plays a role of fixed support, which is beneficial to ensuring the stability and reliability of the combined installation structure of the switchgear cabinet and ensuring the support strength of the embedded part body for the switchgear cabinet body.
[0024] In an optional implementation manner, an installation base is arranged on one side of the switchgear cabinet body along the height direction close to the embedded part body, and the installation base is suitable for being fixedly connected to the embedded part body.
[0025] Beneficial effects: Facilitating the fixation of the embedded part body to the switchgear cabinet body.
[0026] In an optional implementation manner, a second through hole is formed on the installation base; the combined installation structure of the switchgear cabinet further includes a bolt, and the bolt is suitable for passing through the second through hole and being threadedly connected to the embedded part body.
[0027] Beneficial effects: Threadedly connecting the installation base and the embedded part body through the bolt can not only replace the welding operation process of the T-shaped embedded part in the related technology, reduce the fire duration, improve the safety of the construction site, but also replace the on-site hole-opening operation process of the T-shaped embedded part in the related technology, optimize the working duration and the on-site hole-opening workload, which is beneficial to accelerating the construction progress, ensuring construction safety and construction quality.
[0028] In an optional implementation manner, the combined installation structure of the switchgear cabinet further includes:
[0029] The base is arranged on the side of the embedment leveling component away from the embedment body in the height direction, and the base is suitable for supporting the embedment leveling component;
[0030] The first concrete layer is poured from the base in the height direction towards the direction close to the embedment body. The first concrete layer is suitable for pouring and fixing at least part of the stud close to one end of the second plate body in the height direction;
[0031] The second concrete layer is poured from the first concrete layer in the height direction towards the direction close to the embedment body. The second concrete layer is suitable for pouring and fixing the embedment leveling component and the embedment body as a whole.
[0032] Beneficial effects: By pouring the first concrete layer, at least part of the stud close to one end of the second plate body in the height direction is poured and fixed, so as to reserve the secondary adjustment space for the first nut and the second nut; after the first concrete layer hardens, the levelness of the first plate body of the embedment leveling component is adjusted again, so as to accurately ensure that the first plate bodies of each group of embedment bodies are on the same horizontal plane. By pouring the second concrete layer, the embedment leveling component and the embedment body are poured and fixed as a whole, so as to stably support the switch cabinet body. Description of the Drawings
[0033] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0034] Figure 1 It is the front view of an embedment leveling component according to an embodiment of the present invention;
[0035] Figure 2 It is the schematic working principle diagram of an embedment leveling component applied to a switch cabinet combined installation structure according to an embodiment of the present invention;
[0036] Figure 3 It is the schematic installation principle diagram of the installation base of a switch cabinet combined installation structure according to an embodiment of the present invention;
[0037] Figure 4 It is the schematic cross-sectional structure diagram of a switch cabinet combined installation structure after pouring the first concrete layer according to an embodiment of the present invention;
[0038] Figure 5 It is the schematic cross-sectional structure diagram of a switch cabinet combined installation structure after pouring the second concrete layer according to an embodiment of the present invention.
[0039] Description of the Reference Numerals:
[0040] 11. First plate body; 111. First through hole; 12. Second plate body; 13. Stud; 14. First nut; 15. Second nut;
[0041] 20. Cabinet body; 21. Installation base; 211. Second through hole;
[0042] 30. Embedded part body;
[0043] 40. Anchor leg;
[0044] 50. Bolt;
[0045] 60. Foundation platform; 61. First concrete layer; 62. Second concrete layer. Detailed implementation manners
[0046] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Apparently, the described embodiments are some, but not all, of the embodiments of the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0047] The following is combined with Figures 1 to 5 , to describe the embodiments of the present utility model.
[0048] According to an embodiment of the present utility model, on the one hand, a leveling assembly for embedded parts is provided, including:
[0049] The first plate body 11, as shown in Figure 1 , is provided with a plurality of first through holes 111 along the height direction;
[0050] The second plate body 12 is spaced from the first plate body 11 along the height direction:
[0051] A plurality of studs 13, one end of the stud 13 in the height direction is fixedly arranged on the second plate body 12, and the other end is adapted to pass through the first through hole 111;
[0052] A plurality of first nuts 14 and a plurality of second nuts 15, both the first nut 14 and the second nut 15 are threadedly connected to the stud 13. The first nut 14 is arranged on the side of the first plate body 11 close to the second plate body 12 along the height direction, and the second nut 15 is arranged on the side of the first plate body 11 far from the second plate body 12 along the height direction. The first nut 14 and the second nut 15 are adapted to jointly adjust the flatness, levelness, and / or elevation parameters of the first plate body 11.
[0053] Furthermore, as shown inFigure 2 As shown, one side of the second plate body 12 away from the first plate body 11 in the height direction is adapted to abut against the base 60; one side of the first plate body 11 away from the second plate body 12 in the height direction is adapted to support the embedded part body 30.
[0054] Furthermore, one end of the stud 13 in the height direction can be fixed to the second plate body 12 by welding, or a fixing part (not shown in the figure) can be provided at one end of the stud 13 in the height direction, and the stud 13 is bolted to the second plate body 12 through the fixing part, so as to realize the fixation between the stud 13 and the second plate body 12.
[0055] It should be noted that during the specific construction process, the embedded part leveling assembly is pre-placed on the base 60, and the flatness and levelness of the second plate body 12 are ensured; then the levelness and height of the first plate body 11 are adjusted by adjusting the first nut 14 and the second nut 15, so that the first plate body 11 of each leveling assembly is on the same horizontal plane, thereby adjusting the flatness, levelness and / or elevation parameters of the embedded part body 30; then the first partial pouring of the embedded part leveling assembly is carried out, and the pouring thickness reaches the middle of the stud 13, so as to reserve the secondary adjustment space for the first nut 14 and the second nut 15; after the first poured concrete hardens, the levelness of the first plate body 11 of the embedded part leveling assembly is adjusted again to accurately ensure that the first plate body 11 of each group of embedded part bodies 30 is on the same horizontal plane. The number of the embedded part leveling assemblies under the embedded part body 30 can be adjusted according to the actual length of the embedded part body 30.
[0056] The embedded part leveling assembly provided by the utility model mainly includes a first plate body 11, a second plate body 12, a plurality of studs 13, a plurality of first nuts 14 and a plurality of second nuts 15. Among them, one end of each stud 13 in the height direction is fixedly arranged on the second plate body 12, and the other end passes through the first through hole 111. Each stud 13 is provided with a first nut 14 and a second nut 15. The first nut 14 and the second nut 15 are respectively arranged on both sides of the first plate body 11 in the height direction, and both the first nut 14 and the second nut 15 are threadedly connected with the stud 13; by adjusting the first nut 14 and the second nut 15 on one or more studs 13, the flatness and levelness of the first plate body 11 are adjusted, so as to adjust the flatness, levelness and / or elevation parameters of the embedded part body 30, avoiding the embedding error caused by the expansion during the concrete vibration and hardening process in the civil engineering construction, and at the same time reserving the time window and operation space for secondary adjustment, ensuring the installation construction accuracy of equipment such as cabinets, shortening the installation construction progress, eliminating the problem that the traditional T-shaped embedded part is installed and embedded in one forming and cannot be adjusted in direction, which is beneficial to accelerating the construction progress, ensuring the construction safety and construction quality.
[0057] In some embodiments, please also combine Figure 1 andFigure 2 As shown, a plurality of studs 13 are arranged at intervals in pairs along the length direction and / or the width direction on the second plate body 12, which can not only ensure the support strength and support stability of the first plate body 11, but also more precisely adjust the levelness and height of the first plate body 11 by selectively adjusting the first nut 14 and the second nut 15 on at least one of the studs 13.
[0058] Furthermore, four studs 13 are fixedly arranged on each second plate body 12, and the four studs 13 are arranged at intervals in pairs along the length direction and the width direction on the second plate body 12.
[0059] In some embodiments, please refer to Figure 1 As shown, one end of the stud 13 in the height direction is fixedly welded to the second plate body 12, so as to ensure the connection strength between the stud 13 and the second plate body 12 and enhance the structural stability between the stud 13 and the second plate body 12.
[0060] According to an embodiment of the present invention, on the other hand, a combined installation structure of a switchgear cabinet is further provided, including:
[0061] The switchgear cabinet body 20 and the embedded part leveling assembly as described above;
[0062] The embedded part body 30, please refer to Figure 2 As shown, it is arranged between the switchgear cabinet body 20 and the embedded part leveling assembly; the embedded part leveling assembly is adapted to adjust the flatness, levelness and / or elevation parameters of the embedded part body 30.
[0063] In the combined installation structure of the switchgear cabinet provided by the present invention, the flatness, levelness and / or elevation parameters of the embedded part body 30 are adjusted through the embedded part leveling assembly, so as to adjust the flatness, levelness and / or elevation parameters of the switchgear cabinet body 20, avoiding the embedded error caused by the expansion during the concrete vibration and hardening process in the civil engineering construction process, and at the same time reserving a time window and operation space for secondary adjustment, ensuring the installation construction accuracy of equipment such as the cabinet body, shortening the installation construction progress, eliminating the problem that the traditional T-shaped embedded part installation is formed once and the direction cannot be adjusted, which is beneficial to accelerating the construction progress and ensuring the construction safety and construction quality.
[0064] It should be noted that the thickness of the embedded part body 30 can be polished; during the installation process of the switchgear cabinet body 20, the embedded part body 30 can be locally polished to more precisely adjust the flatness, levelness and / or elevation parameters of the switchgear cabinet body 20.
[0065] In some embodiments, please refer to Figure 2As shown, both ends of the embedded body 30 in the length direction are welded and fixed to the side of the first plate 11 away from the second plate 12 in the height direction, thereby ensuring the connection strength between the embedded body 30 and the first plate 11 and enhancing the stability of the fixed connection between the embedded body 30 and the first plate 11.
[0066] In some embodiments, the cabinet assembly installation structure further includes an anchor leg 40 , which is fixedly disposed on one side of the embedded component body 30 close to the embedded component leveling assembly along the height direction. The anchor leg 40 is suitable for being embedded in concrete and fixing and supporting the embedded component body 30 .
[0067] Furthermore, the anchor leg 40 and the embedded component body 30 may be fixed by welding.
[0068] In this embodiment, anchor legs 40 are fixedly arranged on the embedded component body 30. During the construction process, the anchor legs 40 are embedded in the concrete, thereby playing a fixed supporting role, which is beneficial to ensure the stability and reliability of the cabinet assembly installation structure and ensure the supporting strength of the embedded component body 30 to the cabinet body 20.
[0069] In some embodiments, see Figure 3 As shown, a mounting base 21 is provided on one side of the cabinet body 20 close to the embedded body 30 in the height direction. The mounting base 21 is suitable for being fixedly connected to the embedded body 30 so that the embedded body 30 can fix the cabinet body 20 .
[0070] In some embodiments, see Figure 3 As shown, a second through hole 211 is formed on the mounting base 21 ; the cabinet assembly mounting structure further includes a bolt 50 , which is suitable for passing through the second through hole 211 and being threadedly connected to the embedded component body 30 .
[0071] In this embodiment, the mounting base 21 is threadedly connected to the embedded part body 30 by bolts 50, which can not only replace the welding operation process of the T-shaped embedded parts in the related technology, reduce the time of hot work, and improve the safety of the construction site, but also replace the on-site drilling operation process of the T-shaped embedded parts in the related technology, optimize the working time and the workload of on-site drilling, which is conducive to speeding up the construction progress and ensuring the construction safety and quality.
[0072] Furthermore, the mounting base 21 and the embedded component body 30 may be fixed by local spot welding.
[0073] In some embodiments, please combine Figure 4 and Figure 5 As shown, the cabinet assembly installation structure also includes:
[0074] A base 60 is disposed on a side of the embedded part leveling assembly away from the embedded part body 30 in the height direction, and the base 60 is suitable for supporting the embedded part leveling assembly;
[0075] The first concrete layer 61 is formed by pouring from the base 60 in the height direction towards the embedded part body 30. The first concrete layer 61 is suitable for pouring and fixing at least a part of the stud 13 in the height direction near one end of the second plate body 12.
[0076] The second concrete layer 62 is formed by pouring from the first concrete layer 61 in the height direction towards the embedded part body 30. The second concrete layer 62 is suitable for pouring and fixing the embedded part leveling assembly and the embedded part body 30 as a whole.
[0077] In this embodiment, the first concrete layer 61 is formed by pouring to pour and fix at least a part of the stud 13 in the height direction near one end of the second plate body 12, so as to reserve a secondary adjustment space for the first nut 14 and the second nut 15. After the first concrete layer 61 hardens, the levelness of the first plate body 11 of the embedded part leveling assembly is adjusted again, so as to accurately ensure that the first plate bodies 11 of each group of embedded part bodies 30 are on the same horizontal plane. The second concrete layer 62 is formed by pouring to pour and fix the embedded part leveling assembly and the embedded part body 30 as a whole, so as to stably support the switch cabinet body 20.
[0078] The following is a unified description of the construction method of the switch cabinet combined installation structure of the present utility model:
[0079] Prefabricate the embedded part body 30 and the embedded part leveling assembly;
[0080] Install and adjust the embedded part leveling assembly, conduct partial pouring on the embedded part leveling assembly, and reserve a secondary adjustment space for the embedded part leveling assembly;
[0081] Adjust the levelness of the first plate body 11 again by adjusting the first nut 14 and the second nut 15;
[0082] Install the embedded part body 30 on the first plate body 11, and fix the embedded part body 30 after adjusting the relative position between the embedded part body 30 and the embedded part leveling assembly;
[0083] Check the height of the embedded part leveling assembly and the embedded part body 30 again. After confirming that there is no error, pour the embedded part leveling assembly and the embedded part body 30 as a whole;
[0084] Check the flatness of the embedded part body 30. If the requirement is still not met, the embedded part body 30 can be polished.
[0085] It should be noted that for the prefabrication of the embedded part body 30, the embedded part body 30 needs to meet the functions of earthquake resistance, tensile resistance, shear resistance, etc. to a certain extent, and the specific specifications and dimensions can be determined according to the actual load requirements and the dimensions of the switchgear body 20; an anchor leg 40 is arranged on one side of the embedded part body 30 close to the base 60 in the height direction, and the anchor leg 40 can be fixed to the embedded part body 30 by welding, and the length of the anchor leg 40 is not greater than the distance between the surface layer formed by partial pouring and the lower surface of the embedded part body 30. For the prefabrication of the embedded part leveling assembly, the distance of the first through hole 111 on the first plate body 11 in the width direction cannot be too small to ensure the overlapping space and welding space between the embedded part body 30 and the embedded part leveling assembly. For the installation of the embedded part body 30, both ends of the embedded part body 30 in the length direction are overlapped on the first plate body 11 of the embedded part leveling assembly, and the installation position, height and direction of the embedded part body 30 are strictly controlled. After verification and confirmation, the embedded part body 30 can be spot-welded to the first plate body 11 to ensure the reliable connection between the embedded part body 30 and the first plate body 11.
[0086] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations fall within the scope defined by the appended claims.
Claims
1. An embedded part leveling assembly, characterized in that: include: A first plate body (11) having a plurality of first through holes (111) formed along a height direction; The second plate body (12) is arranged spaced apart from the first plate body (11) in the height direction: a plurality of studs (13), wherein one end of the studs (13) in the height direction is fixedly arranged on the second plate body (12), and the other end is suitable for passing through the first through hole (111); A plurality of first nuts (14) and a plurality of second nuts (15), wherein the first nuts (14) and the second nuts (15) are both threadedly connected to the studs (13), the first nuts (14) being arranged on a side of the first plate body (11) close to the second plate body (12) in the height direction, and the second nuts (15) being arranged on a side of the first plate body (11) away from the second plate body (12) in the height direction, and the first nuts (14) and the second nuts (15) being suitable for jointly adjusting the flatness, horizontality and / or elevation parameters of the first plate body (11).
2. The embedded part leveling assembly according to claim 1, characterized in that: A plurality of studs (13) are arranged on the second plate body (12) at intervals in pairs along the length direction and / or the width direction.
3. The embedded part leveling assembly according to claim 1 or 2, characterized in that: One end of the stud (13) along the height direction is welded and fixed to the second plate body (12).
4. A cabinet assembly installation structure, characterized in that: include: A cabinet body (20), and an embedded leveling assembly as described in any one of claims 1 to 3; The embedded component body (30) is arranged between the cabinet body (20) and the embedded component leveling component; the embedded component leveling component is suitable for adjusting the flatness, horizontality and / or elevation parameters of the embedded component body (30).
5. The cabinet assembly installation structure according to claim 4, characterized in that: Both ends of the embedded component body (30) in the length direction are welded and fixed to a side of the first plate body (11) away from the second plate body (12) in the height direction.
6. The cabinet assembly installation structure according to claim 4, characterized in that: The cabinet assembly installation structure further comprises an anchor leg (40), wherein the anchor leg (40) is fixedly arranged on a side of the embedded component body (30) close to the embedded component leveling assembly in the height direction, and the anchor leg (40) is suitable for being embedded in concrete and fixing and supporting the embedded component body (30).
7. The cabinet assembly installation structure according to claim 4, characterized in that: A mounting base (21) is provided on one side of the cabinet body (20) close to the embedded component body (30) in the height direction, and the mounting base (21) is suitable for being fixedly connected to the embedded component body (30).
8. The cabinet assembly installation structure according to claim 7, characterized in that: The mounting base (21) is provided with a second through hole (211); the cabinet assembly mounting structure further comprises a bolt (50), wherein the bolt (50) is adapted to pass through the second through hole (211) and be threadedly connected to the embedded component body (30).
9. The cabinet assembly installation structure according to any one of claims 4 to 8, characterized in that: The cabinet assembly installation structure also includes: A base (60) is arranged on a side of the embedded part leveling assembly away from the embedded part body (30) in the height direction, and the base (60) is suitable for supporting the embedded part leveling assembly; A first concrete layer (61) is cast by the base (60) along the height direction toward the embedded component body (30), and the first concrete layer (61) is suitable for casting and fixing at least a portion of the stud (13) along the height direction close to one end of the second plate body (12); The second concrete layer (62) is formed by pouring the first concrete layer (61) along the height direction toward the embedded part body (30), and the second concrete layer (62) is suitable for integrally pouring and fixing the embedded part leveling assembly and the embedded part body (30).