Indoor spatial data acquisition and measurement device
By using multiple composite connection methods and magnetic fasteners, the design solves the problems of unstable connection and cumbersome installation of traditional indoor space data acquisition and measurement devices, achieving a more stable and convenient connection.
Patent Information
- Application Number
- CN202520615123.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Traditional indoor space data acquisition and measurement devices have a single and unstable connection method and a cumbersome installation process, resulting in poor convenience.
It adopts multiple composite connection methods, including detachable connection between connecting post and connecting groove, threaded connection of magnet and auxiliary connection of buckle, combined with the design of flip cover spring, to enhance connection stability and convenience.
It provides a more stable connection, simplifies the installation and disassembly process, and improves the convenience and reliability of the device.
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Figure CN223953661U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of measuring equipment, more specifically, it relates to an indoor space data acquisition and measurement device. BACKGROUND
[0002] Indoor space size data can help architects plan space layout and ensure the perfect combination of stability and functionality of building structure.
[0003] Manual measurement is generally used for data acquisition of indoor space, which is not only inefficient, but also prone to errors due to human operation. The traditional measurement device has a single and unstable connection mode, which is connected only by bolts or plug-in connection. The bolt connection is prone to thread wear during frequent installation and disassembly, affecting the connection firmness. Moreover, the installation process is complicated and time-consuming. The plug-in connection cannot guarantee that the scanner will not loosen due to vibration or collision in complex environments, resulting in lack of convenience. UTILITY MODEL CONTENT
[0004] To solve the above technical problems, the utility model provides an indoor space data acquisition and measurement device to solve the technical problem of the single and unstable connection mode of the traditional measurement device and the lack of convenience caused by the complicated installation process in the prior art.
[0005] The purpose and function of the indoor space data acquisition and measurement device are achieved by the following specific technical means:
[0006] An indoor space data acquisition and measurement device comprises a room scanner body, a tripod connected to the bottom of the room scanner body through a connecting assembly, a two-axis rotating structure arranged at the top of the tripod, a connecting table arranged at the top of the two-axis rotating structure, a connecting seat, the connecting seat connected to the bottom of the room scanner body, four connecting columns arranged at the top of the connecting table, four connecting grooves arranged at the bottom of the connecting seat, and four connecting columns respectively and detachably connected to the four connecting grooves.
[0007] According to a preferred embodiment, the top of each of the four connecting columns is provided with an installation groove, and the bottom of each of the four installation grooves is provided with a threaded hole. Four first magnets are threadedly connected to the four threaded holes through the bottom screw rods.
[0008] According to a preferred embodiment, a second magnet is pasted in each of the four connecting grooves, and the four first magnets are respectively and detachably connected to the four second magnets.
[0009] According to a preferred embodiment, the connecting assembly further comprises two sets of buckles, the connecting seat is provided with rotating seats on both sides, the rotating seats are rotatably connected with the buckles through shaft pins, and the connecting table is provided with clamping grooves on both sides, and one end of the two sets of buckles is detachably connected with the two sets of clamping grooves respectively.
[0010] According to a preferred embodiment, the two sets of shaft pins are provided with flip springs, the connecting seat is provided with protrusions on both sides, one end of the two sets of flip springs is in contact with the protrusions, and the other end is connected with the two sets of buckles respectively.
[0011] According to a preferred embodiment, the two sets of buckles are provided with falling-off pieces away from the clamping grooves, and the connecting seat is provided with two sets of recesses at the bottom, and the two sets of falling-off pieces are located in the two sets of recesses respectively.
[0012] According to a preferred embodiment, the connecting table is provided with two sets of positioning holes at the top, the bottom of the resisting plate is provided with two sets of positioning cylinders, the two sets of positioning cylinders are slidably arranged in the two sets of positioning holes respectively, the two sets of positioning cylinders are provided with springs, and the resisting plate is provided with four sets of through grooves corresponding to the four sets of connecting columns.
[0013] Compared with the prior art, the utility model has the advantages of the following beneficial effects:
[0014] 1. Through the setting of the connecting assembly, a plurality of composite connecting modes are adopted, the connecting seat at the bottom of the room scanner body is detachably connected with the four sets of connecting grooves at the top of the connecting table through the four sets of connecting columns, the multi-connection-point mode provides more stable connection effect, meanwhile, the installation grooves are arranged at the top of the connecting columns and the first magnets are connected through threads, the second magnets are pasted in the connecting grooves, the stability of connection is further enhanced by using magnetic force, and the connecting assembly is convenient to disassemble, meanwhile, through the setting of the buckles and the clamping grooves, the buckle auxiliary connecting mode further reinforces the connection between the scanner body and the connecting table on the basis of the original connecting column and the connecting groove, prevents accidental falling, and through the setting of the flip springs, the buckle can automatically keep the clamping state when not subjected to external force, so that the utility model is simple and practical to operate and improves convenience.
[0015] 2. Through the setting of the two sets of falling-off pieces, the falling-off pieces are arranged on the side, away from the clamping grooves, of the buckle and are arranged in the recesses at the bottom of the connecting seat, so that the user can operate conveniently when needing to disassemble, the falling-off piece is brought into contact with the connecting table by rotating the buckle along the shaft pin, and the connecting seat is pried off from the connecting table, so that the utility model further improves convenience. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structural schematic view of the utility model;
[0017] Figure 2The exploded view of the utility model;
[0018] Figure 3 The structure schematic diagram of the connecting assembly after assembly in the utility model;
[0019] Figure 4 The structure schematic diagram of the connecting assembly after disassembly in the utility model;
[0020] Figure 5 The utility model Figure 4 The enlarged schematic view of a region in the utility model;
[0021] Figure 6 The structure schematic diagram of the connecting seat and the buckle piece after disassembly in the utility model.
[0022] In the drawing, the corresponding relationship of component name and drawing number is as follows:
[0023] 11, room scanner body; 12, tripod; 13, rotating structure; 14, connecting table; 15, positioning hole; 16, stop plate; 17, positioning cylinder; 18, spring; 19, through slot; 21, connecting seat; 22, connecting column; 23, connecting groove; 24, installation groove; 25, first magnet; 26, second magnet; 27, buckle piece; 28, clamping groove; 29, flip spring; 30, falling piece; 31, rotating seat. Specific implementation
[0024] The implementation of the utility model is described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0025] Example:
[0026] As shown in the accompanying Figure 1 to the accompanying Figure 6 :
[0027] The utility model provides a kind of indoor space data acquisition measuring device, including room scanner body 11, room scanner body 11 bottom is detachably connected with tripod 12 by connecting assembly, tripod 12 provides stable support for entire device, the top of tripod 12 is provided with two-axis rotating structure 13, two-axis rotating structure 13 can make room scanner body 11 flexible rotation on two different dimensions, expands the detection angle range of scanner, to adapt to complex and changeable indoor space environment;Two-axis rotating structure 13 top is equipped with connecting table 14 as intermediate connecting hinge, connecting assembly includes connecting seat 21, room scanner body 11 bottom is provided with connecting seat 21, connecting table 14 top is equipped with four groups of connecting columns 22, corresponding, connecting seat 21 bottom is provided with four groups of connecting grooves 23, four groups of connecting columns 22 are respectively detachably connected with four groups of connecting grooves 23, compared with common single connection mode, the connection mode of this multiple connection point can enhance the stability of connection, effectively avoid inaccurate measurement data due to device shaking during data acquisition process occurs.
[0028] Please refer to as Figure 4 With Figure 5 As shown, the top of four groups of connecting columns 22 is provided with mounting groove 24, and the bottom of four groups of mounting grooves 24 is provided with threaded hole, four groups of first magnets 25 with screw rod at the bottom can be screwed with four groups of threaded holes, at the same time, four groups of connecting grooves 23 are pasted with second magnet 26, there is mutual attraction between first magnet 25 and second magnet 26, four groups of first magnet 26 are detachably connected with four groups of second magnet 25, this connection mode using magnetic force, on the basis of original mechanical connection, further enhance the connection stability between connecting seat 21 and connecting table 14, and when room scanner body 11 needs to be disassembled, due to the characteristics of magnetic force connection, compared with traditional tight mechanical connection, operation is more convenient, can quickly realize separation, improve the convenience in the process of device use.
[0029] Please refer to as Figure 4 With Figure 6As shown, the connecting assembly is also provided with two sets of buckle members 27, and the connecting seat 21 is provided with rotating seats 31 on both sides, which are rotatably connected with the buckle members 27 through shaft pins, and the connecting table 14 is provided with clamping grooves 28 on both sides, and one end of the two sets of buckle members 27 is respectively detachably connected with the two sets of clamping grooves 28. This clamping type auxiliary connection mode further strengthens the connection stability between the room scanner body 11 and the connecting table 14 on the basis of the connection between the connecting column 22 and the connecting groove 23, prevents the connection from loosening or even falling off due to accidental collision or shaking in a complex use environment, and sets the two sets of shaft pins with flip springs 29, the connecting seat 21 is provided with protrusions on both sides, one end of the two sets of flip springs 29 is in contact with the protrusions, and the other end is respectively connected with the two sets of buckle members 27, so that the buckle members 27 can automatically maintain the clamping state when not subjected to external force, and the reliability of the connection is ensured. In addition, the side of the two sets of buckle members 27 away from the clamping groove 28 is provided with a falling member 30, and the bottom of the connecting seat 21 is provided with two groups of grooves, and the two sets of falling members 30 are respectively located in the two groups of grooves. When the user needs to disassemble the room scanner body 11, the buckle member 27 is moved, so that it rotates along the shaft pin. At this time, one end of the falling member 30 will be in contact with the connecting table 14, and through the lever principle, the connecting seat 21 can be pried off from the connecting table 14, further improving the convenience of the disassembly process of the device and reducing the operation difficulty.
[0030] Please refer to Figure 4 and Figure 5 As shown, the connecting table 14 is provided with two sets of positioning holes 15 on the top, the bottom of the resisting plate 16 is provided with two sets of positioning cylinders 17, the two sets of positioning cylinders 17 are respectively slidably arranged in the two sets of positioning holes 15, the spring 18 is arranged in the two sets of positioning cylinders 17, and four groups of through grooves 19 are arranged on the resisting plate 16 corresponding to the four groups of connecting columns 22. When the room scanner body 11 is disassembled, the spring 18 can assist the connecting seat 21 to separate from the connecting table 14.
[0031] The embodiments of the present application are given for the purpose of example and description, and are not exhaustive or limit the present application to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are selected and described in order to better illustrate the principles and practical application of the present application, and to enable those skilled in the art to understand the present application so as to design various embodiments with various modifications suitable for specific purposes.
Claims
1. A room data collecting measuring device comprising a room scanner body (11), characterized in that: The bottom of the room scanner body (11) is detachably connected with a tripod (12) through a connecting assembly, the top of the tripod (12) is provided with a two-axis rotating structure (13), the top of the two-axis rotating structure (13) is provided with a connecting table (14), the connecting assembly comprises a connecting seat (21), the bottom of the room scanner body (11) is connected with the connecting seat (21), the top of the connecting table (14) is provided with four groups of connecting columns (22), the bottom of the connecting seat (21) is provided with four groups of connecting grooves (23), and four groups of the connecting columns (22) are detachably connected with four groups of the connecting grooves (23) respectively.
2. The indoor space data collection measurement device of claim 1, wherein: The top of each of the four groups of connecting columns (22) is provided with a mounting groove (24), the bottom of each of the four groups of mounting grooves (24) is provided with a threaded hole, and four groups of first magnets (25) are threadedly connected with the four groups of threaded holes through screws at the bottom.
3. The indoor space data collection measurement device of claim 2, wherein: Each of the four groups of connecting grooves (23) is pasted with a second magnet (26), and four groups of the first magnets (25) are detachably connected with four groups of the second magnets (26) respectively.
4. The indoor space data collection measurement device of claim 1, wherein: The connecting assembly further comprises two groups of buckle members (27), both sides of the connecting seat (21) are provided with rotating seats (31), the rotating seats (31) are rotatably connected with the buckle members (27) through shaft pins, and both sides of the connecting table (14) are provided with clamping grooves (28), one end of each of the two groups of buckle members (27) is detachably connected with the clamping grooves (28) respectively.
5. The indoor space data collection measurement device of claim 4, wherein: The shaft pins are provided with flip springs (29), both sides of the connecting seat (21) are provided with protrusions, one end of each of the two groups of flip springs (29) is in contact with the protrusions, and the other end is connected with the two groups of buckle members (27) respectively.
6. The indoor space data collection measurement device of claim 4, wherein: The side, away from the clamping grooves (28), of each of the two groups of buckle members (27) is provided with a falling member (30), the bottom of the connecting seat (21) is provided with two groups of recesses, and the two groups of falling members (30) are located in the two groups of recesses respectively.
7. The indoor space data collection measurement device of claim 1, wherein: The top of the connecting table (14) is provided with two groups of positioning holes (15), the bottom of the abutting plate (16) is provided with two groups of positioning cylinders (17), the two groups of positioning cylinders (17) are slidably arranged in the two groups of positioning holes (15) respectively, the two groups of positioning cylinders (17) are provided with springs (18) respectively, and the abutting plate (16) is provided with four groups of through grooves (19) corresponding to the four groups of connecting columns (22).