Light steel assembly type villa with indoor intelligent monitoring function
By using positioning components and strain gauges for precise positioning in light steel prefabricated villas, combined with reinforced connections of base columns, the problem of inaccurate positioning of the wall frame is solved, achieving high stability and intelligent monitoring, meeting the safety and intelligent needs of modern families.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-03-20
AI Technical Summary
Traditional light steel prefabricated villas suffer from inaccurate wall frame positioning during construction, leading to assembly deviations. Furthermore, the lack of intelligent monitoring affects structural stability and safety, failing to meet the intelligent needs of modern families.
Precise positioning is achieved by using positioning components, including positioning frames, upper positioning rods, and lower positioning rods on the columns, and by using limiting rods and sliding grooves. The connection strength is enhanced by combining these components with the base columns. Strain gauges are installed inside the villa to monitor the connection status, and multiple cameras are used for real-time monitoring.
It improves assembly precision and overall structural stability, enhances seismic performance, and enables comprehensive intelligent monitoring, meeting the safe living needs of modern families.
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Figure CN224016487U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to light steel villa technical field especially, it is a kind of light steel fabricated villa with indoor intelligent monitoring. BACKGROUND
[0002] In recent years, with the continuous development of prefabricated building technology, light steel fabricated villa gradually receives the favour of market due to its construction speed, environmental protection and energy saving, good seismic performance and other advantages.
[0003] When traditional light steel fabricated villa is built, wall frame is mostly fixed directly through fixed bolt, but wall frame is easy to shake when fixed bolt is hit, so that positioning is not accurate enough, leading to deviation during assembly, affect the stability and safety of overall structure.In addition, the lack of intelligent monitoring inside the villa cannot meet the demand of modern family for intelligentization and safety, therefore, we propose a kind of light steel fabricated villa with indoor intelligent monitoring to solve the above problems. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the problems of wall frame shaking when fixed by fixed bolt in prior art, which leads to inaccurate positioning and deviation during assembly, and the lack of intelligent monitoring inside the villa, and proposes a kind of light steel fabricated villa with indoor intelligent monitoring.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A kind of light steel fabricated villa with indoor intelligent monitoring, including foundation, the top of the foundation is provided with villa body, the top of the villa body is fixedly provided with top cover, the wall inner wall of the villa body is provided with light steel frame for supporting;
[0007] The light steel frame includes four columns, four columns are arranged on the top of foundation, two positioning frames, two upper positioning rods and two lower positioning rods are arranged between four columns, two upper positioning rods and lower positioning rods are arranged in upper and lower rows and form crosspieces, the crosspieces and positioning frames are respectively fixed on the two sides adjacent to column, two groups of wall groups are arranged between four columns on the top of foundation, and two groups of wall groups are arranged in upper and lower rows, two positioning frames, upper positioning rods and lower positioning rods are located between two groups of wall groups, a plurality of trusses are fixed between two crosspieces, and one end of truss is fixedly arranged between upper positioning rod and lower positioning rod.
[0008] The villa further includes:
[0009] Positioning assembly is arranged on four columns, for preliminary positioning when wall frame, positioning frame, upper positioning rod and lower positioning rod are installed.
[0010] In one possible design, the foundation has base columns fixedly embedded inside, corresponding to four columns, with the bottoms of the four columns fixedly connected to the tops of their respective base columns.
[0011] In one possible design, strain gauges are fixedly connected to both sides of one of the base columns, and the connection ends of the two strain gauges are fixedly connected to the corresponding side of the column. By setting two strain gauges, the connection status between the column and the base column can be monitored.
[0012] In one possible design, multiple cameras are fixedly installed on the interior ceiling of the villa to monitor the interior of the villa in real time.
[0013] In one possible design, the positioning assembly includes multiple limiting rods, which are fixedly arranged in pairs on adjacent sides of corresponding columns. Both ends of the positioning frame, upper positioning rod, and lower positioning rod are provided with sliding grooves corresponding to the limiting rods. The sliding grooves are slidably connected to the corresponding limiting rods. By providing sliding grooves on the positioning frame, upper positioning rod, and lower positioning rod, the positioning of the positioning frame, upper positioning rod, and lower positioning rod with the corresponding columns is facilitated during installation, preventing displacement when the screws are fixed.
[0014] In one possible design, the top and bottom of the positioning frame, as well as the bottom of the upper positioning rod and the bottom of the lower positioning rod, are provided with second positioning grooves. The top of the lower wall assembly is engaged with the corresponding second positioning groove, and the bottom of the upper wall assembly is engaged with the corresponding second positioning groove.
[0015] In one possible design, the wall assembly consists of multiple wall frames arranged side by side. Each wall frame has a first positioning groove on both sides. The first positioning groove at the edge is engaged with a corresponding limiting rod. A connecting rod is provided between two adjacent wall frames at the same horizontal level. The connecting rod is engaged with two corresponding first positioning grooves. By providing the connecting rod, the two adjacent wall frames are initially spliced and fixed together.
[0016] In this application, firstly, four columns are set on the top of the foundation, and the columns are fixedly connected to the foundation through base columns, wherein the base columns are embedded inside the foundation to ensure the firmness of the connection;
[0017] Then, two positioning frames, two upper positioning rods, and two lower positioning rods are set between the four columns, and they are all symmetrically arranged. The positioning assembly includes multiple limiting rods, which are fixedly set in pairs on the adjacent side of the corresponding columns. The two ends of the positioning frame, upper positioning rod, and lower positioning rod are all provided with sliding grooves corresponding to the limiting rods. Through the sliding connection between the sliding grooves and the limiting rods, the positioning frame, upper positioning rod, and lower positioning rod are accurately positioned on the columns.
[0018] Next, multiple trusses are set between the upper and lower positioning rods, which not only enhances the stability of the overall structure, but also makes the interior space of the villa layered through the trusses, realizing the two-story design of the villa. At the same time, second positioning grooves are opened at the top and bottom of the positioning frame, as well as at the top of the upper positioning rod and the bottom of the lower positioning rod, for locking with the wall frame.
[0019] Finally, first positioning grooves are opened on both sides of the wall frame to engage with the corresponding limiting rods, so as to achieve precise positioning of the wall frame on the column. Connecting rods are set between two adjacent wall frames at the same level, and the connecting rods engage with the two corresponding first positioning grooves to initially splice and fix the two adjacent wall frames.
[0020] Meanwhile, multiple cameras are installed on the interior ceiling of the villa to monitor the interior in real time, ensuring residential safety. Strain gauges are also installed to monitor the connection status between the columns and the base columns, allowing for timely detection and handling of potential problems and ensuring the structural safety of the villa.
[0021] Beneficial effects: In this utility model, the light steel prefabricated villa with indoor intelligent monitoring uses positioning components for precise positioning, ensuring that the wall frame, positioning frame, upper positioning rod and lower positioning rod can be accurately positioned on the column during installation, which greatly improves the assembly accuracy and the stability of the overall structure.
[0022] In this utility model, a light steel prefabricated villa with indoor intelligent monitoring enhances the connection strength between the villa and the foundation and improves the villa's seismic performance by embedding base columns inside the foundation and fixing the columns to the base columns.
[0023] In this invention, a light steel prefabricated villa with indoor intelligent monitoring, by installing strain gauges and multiple cameras, can not only monitor the connection status between the columns and the base columns and promptly detect potential problems at the connection points, but also achieve all-round real-time monitoring of the interior, meeting the modern family's demand for intelligent and safe living.
[0024] In this invention, precise positioning is achieved through positioning components, ensuring accurate positioning during wall frame installation, which greatly improves assembly precision and overall structural stability. The base columns enhance the connection strength between the villa and the foundation, improving the villa's seismic performance. Strain gauges and multiple cameras not only monitor the connection status between the columns and the base columns but also enable comprehensive real-time monitoring of the interior. Attached Figure Description
[0025] Figure 1This is a three-dimensional structural diagram of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0026] Figure 2 This is a three-dimensional structural diagram of a light steel frame for a light steel prefabricated villa with indoor intelligent monitoring, as proposed in this utility model.
[0027] Figure 3 This is a three-dimensional structural diagram of the base column of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0028] Figure 4 This is a partial three-dimensional structural diagram of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0029] Figure 5 This is a partial three-dimensional structural diagram of the light steel frame of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0030] Figure 6 This is a partial three-dimensional structural diagram of another light steel frame of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0031] Figure 7 This is a three-dimensional structural diagram of the wall frame of a light steel prefabricated villa with indoor intelligent monitoring proposed in this utility model.
[0032] In the diagram: 1. Foundation; 2. Villa body; 3. Roof; 4. Column; 401. Limiting rod; 5. Wall frame; 501. First positioning slot; 502. Connecting rod; 6. Positioning frame; 7. Upper positioning rod; 8. Lower positioning rod; 9. Base column; 10. Strain gauge; 11. Second positioning slot; 12. Camera; 13. Truss. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0034] Example 1: Refer to Figures 1-7 A light steel villa includes a foundation 1, which serves as the basic supporting structure for the villa, and its stability is crucial. The villa body 2 is mounted on top of the foundation 1, and a roof 3 is fixedly installed on top of the villa body 2 to provide shade and rain protection. The inner walls of the villa body 2 utilize a light steel frame as the main supporting structure; this structure is not only lightweight but also has excellent seismic performance.
[0035] The specific structure of the light steel frame is as follows: It comprises four columns 4, which are stably positioned on top of the foundation 1, providing solid support for the entire villa. Between the four columns 4, there are two positioning frames 6, two upper positioning rods 7, and two lower positioning rods 8. The upper positioning rods 7 and lower positioning rods 8 are arranged vertically, forming a stable horizontal frame structure together with the positioning frames 6. These horizontal frames and positioning frames 6 are fixed to the adjacent sides of the columns 4, ensuring the stability and robustness of the entire villa structure.
[0036] In addition, two sets of wall assemblies are carefully installed at the top of the foundation 1, between the four columns 4. These two sets of wall assemblies are arranged vertically, forming the wall structure of the villa together with the positioning frame 6, the upper positioning rod 7, and the lower positioning rod 8. Multiple trusses 13 are also fixed between the horizontal frames, with one end of each truss 13 fixed between the upper positioning rod 7 and the lower positioning rod 8, further enhancing the overall stability of the villa.
[0037] During the construction of the villa, a positioning assembly was designed to facilitate the installation and positioning of the wall frame 5, positioning bracket 6, upper positioning rod 7, and lower positioning rod 8. This positioning assembly includes multiple limiting rods 401, which are fixed in pairs on adjacent sides of the corresponding columns 4. Both ends of the positioning bracket 6, upper positioning rod 7, and lower positioning rod 8 are provided with sliding grooves corresponding to the limiting rods 401. During installation, precise positioning can be achieved simply by sliding the sliding grooves into the corresponding limiting rods 401, effectively preventing displacement during screw fixing.
[0038] Inside the foundation 1, base columns 9 corresponding to the four upright columns 4 are also fixedly embedded. The bottoms of the four upright columns 4 are firmly fixedly connected to the tops of the corresponding base columns 9. To ensure that the connection between the upright columns 4 and the base columns 9 remains stable and reliable, strain gauges 10 are fixedly connected to both sides adjacent to one of the base columns 9. The connection ends of these two strain gauges 10 are fixedly connected to the corresponding side of the upright column 4. Through real-time monitoring by these two strain gauges 10, any connection problems between the upright columns 4 and the base columns 9 can be detected and addressed promptly.
[0039] Multiple cameras 12 are also fixedly installed on the interior ceiling of villa 2. These cameras 12 can monitor the interior of villa 2 in real time to ensure the safety and privacy of the villa.
[0040] This application can be used in the field of light steel villa technology, or in other fields applicable to this application.
[0041] Example 2: Reference Figures 5-7An improvement upon Embodiment 1: A light steel prefabricated villa with indoor intelligent monitoring, applied to the field of light steel villa technology, features second positioning grooves 11 at the top and bottom of the positioning frame 6, upper positioning rod 7, and lower positioning rod 8, as well as at their connection points. During wall assembly installation, simply engage the top of the lower wall assembly with the corresponding second positioning groove 11, and engage the bottom of the upper wall assembly with the corresponding second positioning groove 11 to achieve rapid wall positioning.
[0042] The wall assembly consists of multiple wall frames 5 arranged side-by-side to form the wall structure of the villa. Each wall frame 5 has a first positioning groove 501 on both sides. The first positioning groove 501 at the edge engages with the corresponding limiting rod 401, achieving initial fixation between the wall frame 5 and the column 4. A connecting rod 502 is installed between two adjacent wall frames 5 at the same horizontal level. This connecting rod 502 engages with the two corresponding first positioning grooves 501, enabling initial splicing and fixation between adjacent wall frames 5.
[0043] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A light steel prefabricated villa with indoor intelligent monitoring, comprising a foundation (1), a villa body (2) is provided on the top of the foundation (1), a roof (3) is fixedly provided on the top of the villa body (2), and a light steel frame for support is provided on the inner wall of the villa body (2). Its features are, The light steel frame includes four columns (4), all four columns (4) are set on the top of the foundation (1), and two positioning frames (6), two upper positioning rods (7) and two lower positioning rods (8) are set between the four columns (4). The two upper positioning rods (7) and the lower positioning rods (8) are arranged vertically to form a cross frame. The cross frame and the positioning frame (6) are fixed on the adjacent sides of the columns (4). Two sets of wall groups are set between the four columns (4) at the top of the foundation (1), and the two sets of wall groups are arranged vertically. The two positioning frames (6), the upper positioning rods (7) and the lower positioning rods (8) are all located between the two sets of wall groups. Multiple trusses (13) are fixed between the two cross frames, and one end of the truss (13) is fixed between the upper positioning rods (7) and the lower positioning rods (8). The villa also includes: The positioning components are set on four columns (4) for initial positioning during the installation of the wall frame (5), positioning frame (6), upper positioning rod (7) and lower positioning rod (8).
2. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 1, characterized in that, The foundation (1) is fixedly embedded with base columns (9) corresponding to the four columns (4), and the bottom of the four columns (4) is fixedly connected to the top of the corresponding base columns (9).
3. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 2, characterized in that, Strain gauges (10) are fixedly connected to both sides of one of the base columns (9). The connection ends of the two strain gauges (10) are fixedly connected to the corresponding side of the column (4). By setting two strain gauges (10), the connection status between the column (4) and the base column (9) can be monitored.
4. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 1, characterized in that, Multiple cameras (12) are fixedly installed on the indoor ceiling of the villa body (2) to monitor the interior of the villa body (2) in real time.
5. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 1, characterized in that, The positioning assembly includes multiple limiting rods (401), which are fixedly arranged in pairs on adjacent sides of the corresponding column (4). The two ends of the positioning frame (6), the upper positioning rod (7) and the lower positioning rod (8) are provided with sliding grooves corresponding to the limiting rods (401). The sliding grooves are slidably connected to the corresponding limiting rods (401). By providing sliding grooves on the positioning frame (6), the upper positioning rod (7) and the lower positioning rod (8), the positioning between the positioning frame (6), the upper positioning rod (7) and the lower positioning rod (8) and the corresponding column (4) is facilitated during installation, and displacement is prevented when the screws are fixed.
6. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 5, characterized in that, The top and bottom of the positioning frame (6), as well as the bottom of the upper positioning rod (7) and the bottom of the lower positioning rod (8), are provided with second positioning grooves (11). The top of the lower wall assembly is engaged with the corresponding second positioning groove (11), and the bottom of the upper wall assembly is engaged with the corresponding second positioning groove (11).
7. A light steel prefabricated villa with indoor intelligent monitoring as described in claim 5, characterized in that, The wall assembly consists of multiple wall frames (5), which are arranged side by side. Each wall frame (5) has a first positioning groove (501) on both sides. The first positioning groove (501) located at the edge is engaged with the corresponding limiting rod (401). A connecting rod (502) is provided between two adjacent wall frames (5) located at the same level. The connecting rod (502) is engaged with the two corresponding first positioning grooves (501). By setting the connecting rod (502), the two adjacent wall frames (5) are initially spliced and fixed.