Adjustable measurement and control instrument for building construction site
By introducing protective box, adjustment bracket and heat dissipation tank into the measuring instrument, the problems of height adjustment and heat dissipation of the measuring instrument are solved, and the stability and life are improved.
Patent Information
- Application Number
- CN202521117052.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2035-06-03
AI Technical Summary
The existing measuring instruments for construction sites have poor stability when height adjustment, easy to pour, and difficult to dissipate heat, which affects the detection effect and service life.
It adopts a protective box design, combined with adjustment bracket, heat sink and memory alloy sheet, to achieve height adjustment and automatic heat dissipation, enhance stability and heat dissipation efficiency.
It improves the applicability and stability of the measuring instrument, ensures detection effect, extends service life, and prevents performance degradation caused by pouring and temperature increase.
Smart Images

Figure CN223077679U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field related to building construction, and particularly relates to an adjustable measuring and controlling instrument for building construction sites. Background Technique
[0002] When carrying out building construction, it is necessary to measure and control the construction site, so as to understand the environment of the construction site. By understanding the environment of the construction site, it can be judged whether the working environment of the construction workers meets the working standards and whether it will cause harm to the physical health of the workers. However, there are still certain defects in the existing measuring and controlling instruments for building construction sites when in use. During the use process, the overall structure of the existing measuring and controlling instruments is fixed, which is not only inconvenient for transportation, but also inconvenient for height adjustment, easily resulting in inconvenient adjustment of the measurement position, thereby reducing the reliability of the measurement results and the versatility.
[0003] In order to overcome the above defects, the prior art (a Chinese patent with the publication number CN217030663U and the publication date of July 22, 2022) provides a building construction measuring and controlling instrument, which relates to the field of building construction and includes a base. The upper surface of the base is movably connected with a movable plate through a turntable. The upper surface of the movable plate is fixed with two symmetrically distributed support plates, and a connecting plate is arranged between the two support plates. In the utility model, a movable plate is arranged on the base, and the movable plate is arranged as a movable structure, which can be adjusted horizontally according to needs. Support plates are arranged on the movable plate, and the cooperation between the support plates and the connecting plate plays a role in height adjustment, and the height of the installation box can be adjusted according to needs, and then the height of the measuring and controlling instrument body in the installation box can be adjusted. The measuring and controlling instrument body is installed in the installation box, which plays a role in protecting the measuring and controlling instrument body. At the same time, the solar panel on the installation box can convert solar energy into electric energy and store it in the storage battery, and the storage battery increases the endurance of the measuring and controlling instrument body and improves the working efficiency of the device.
[0004] Although the prior art can adjust the height through the cooperation of the support plates and the connecting plate, during the working process, the stability of the support plates and the connecting plate is poor, and it is easy to be affected by external forces and fall. Moreover, when the measuring and controlling instrument body is installed in the installation box, it not only easily affects the detection effect of the measuring and controlling instrument, but also the measuring and controlling instrument will generate a certain amount of heat during the working process. When installed in the installation box, the heat is difficult to dissipate effectively, which may cause the device temperature to rise, thereby affecting the stability and service life of the instrument.
[0005] In view of the above problems, it is urgent to innovate and design on the basis of the original adjustable measuring and controlling instrument for building construction sites. Therefore, we propose an adjustable measuring and controlling instrument for building construction sites, which can well solve the above problems. Content of the Utility Model
[0006] The purpose of the present utility model is to provide an adjustable measuring and controlling instrument for construction sites, so as to solve the problems raised in the above background technology. Currently in the market, height adjustment is carried out through the cooperation of a support plate and a connecting plate. The stability of the support plate and the connecting plate is poor, and it is easily affected by external forces and causes tipping. Moreover, when the measuring and controlling instrument body is installed in the installation box, it not only easily affects the detection effect of the measuring and controlling instrument, but also generates a certain amount of heat during the working process of the measuring and controlling instrument. When installed in the installation box, the heat is difficult to effectively dissipate, which may cause the temperature of the equipment to rise, thereby affecting the stability and service life of the instrument.
[0007] To achieve the above purpose, the present utility model provides the following technical solutions: An adjustable measuring and controlling instrument for construction sites includes a detection component provided. The detection component is connected to an operator through a wire. The operator is installed inside a protection box. The protection box is connected to a support base through an adjustment bracket. A heat dissipation slot is opened on the side end of the protection box, and a protective cover is installed outside the heat dissipation slot.
[0008] Preferably, the wire passes through and is connected inside a protection cylinder, and the protection cylinder is installed on the protection box.
[0009] Preferably, a conveying component is installed at the inner bottom of the detection component. The conveying component includes a first conveying piece installed at the inner bottom of the detection component. The bottom of the first conveying piece is connected to a second conveying piece through a metal column.
[0010] Preferably, the metal column passes through and is connected inside the protection cylinder, and the second conveying piece is installed at the bottom of the operator.
[0011] Preferably, a first baffle is connected to the second conveying piece through a first shape memory alloy sheet. The first shape memory alloy sheet passes through and is connected to the side end of the protection box. The first baffle is installed inside the protective cover, and the first baffle is moved inside the protective cover through the first shape memory alloy sheet.
[0012] Preferably, a clamping component is arranged at the connection part of the operator and the wire. The clamping component includes a clamping piece installed at the connection part of the operator and the wire. The clamping pieces are symmetrically arranged. The clamping pieces are connected to the outside of the operator through spring pieces.
[0013] Preferably, through grooves adapted to the wire are opened on the opposite sides of the clamping pieces. Heat dissipation holes are opened on the clamping pieces, and a second baffle is arranged on the surface of the clamping pieces.
[0014] Preferably, the second baffle is connected to the second conveying piece through a second shape memory alloy sheet, and the second baffle is driven to move on the surface of the clamping piece through the second shape memory alloy sheet.
[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: For the adjustable measuring and controlling instrument used in construction sites, the detection component facilitates the detection at construction sites. The adjusting bracket provided at the lower end of the protective box facilitates the adjustment of the overall height, and is disassembled and installed through a bolt structure, enhancing the applicability of the instrument. The overall device is stably supported by the support base at the bottom, reducing the problem of tipping caused by low structural strength. The heat dissipation slots opened on the side of the protective box facilitate the transfer of heat, reducing the problem of affecting the instrument performance due to excessive temperature. The protective cover outside the heat dissipation slots facilitates protection and safeguards the safety of the components inside the protective box. The specific contents are as follows:
[0016] (1) The detection component facilitates the detection at construction sites, reducing the problem that the detection effect is poor due to the protection of the detection component. The adjusting bracket provided at the lower end of the protective box facilitates the adjustment of the overall height, enhancing the applicability of the instrument. The overall device is stably supported by the support base at the bottom, reducing the problem of tipping caused by low structural strength. The heat dissipation slots opened on the side of the protective box facilitate the transfer of heat, improving the service life of the device.
[0017] (2) Heat is adsorbed through the first conveying component and transmitted through the metal column at the bottom of the first conveying component. The metal column inside the protective cylinder facilitates the heat dissipation operation, and can quickly conduct the heat generated during the use of the detection component, improving the overall heat dissipation efficiency.
[0018] (3) The heat dissipation slots are automatically opened when the temperature rises, thereby reducing the temperature during the overall use and avoiding the decline in the performance of the detection component caused by temperature accumulation, ensuring the continuous and stable progress of the detection work. The heat generated during the use of the operator can also be conveyed through the second conveying component, improving the overall service life.
[0019] (4) The clamping component moves relatively through the spring rebound, so that the through slot on the clamping component limits the wire, ensuring the tight connection between the wire and the operator interface, effectively preventing loosening caused by external force factors, and improving the stability and reliability of the connection.
[0020] (5) The heat dissipation holes on the clamping component facilitate the transfer of heat at the connection between the wire and the operator, reducing the loosening problem caused by the connection between the wire and the operator being too cold or too hot. The second baffle leaves the surface of the clamping component, thereby realizing the automatic opening and closing of the heat dissipation holes according to the heat condition. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is the schematic diagram of the overall structure of the present utility model;
[0022] Figure 2 is the schematic diagram of the internal structure of the protective box of the present utility model;
[0023] Figure 3This is a schematic diagram of the cutaway structure of the protective tube of the utility model;
[0024] Figure 4 This is a schematic diagram of the connection structure between the first conveying member and the metal column of the utility model;
[0025] Figure 5 This is a schematic diagram of the connection structure between the first memory alloy sheet and the first baffle of the utility model;
[0026] Figure 6 This is a side view of the structure of the operator of the utility model;
[0027] Figure 7 It is a schematic diagram of the structure of the second memory alloy sheet and the second baffle of the utility model.
[0028] In the figure: 1. detection part; 2. wire; 3. protective tube; 4. operator; 5. protective box; 6. adjustment bracket; 7. support seat; 8. heat dissipation slot; 9. protective cover; 10. first conveying part; 11. metal column; 12. second conveying part; 13. first memory alloy sheet; 14. first baffle; 15. clamping part; 16. spring part; 17. through slot; 18. heat dissipation hole; 19. second memory alloy sheet; 20. second baffle. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0030] Embodiment 1: In this embodiment, the signal is transmitted to the display screen on the surface of the protective box 5 through the internal processing module of the operator 4, and the overall visual display of the detection data of the construction site can be quickly and accurately presented, so that the construction personnel can obtain information in time and improve the efficiency of construction detection. Figures 1 - 5The described technical solution includes a provided detection component 1. The detection component 1 is connected to an operator 4 through a wire 2. It is characterized in that the operator 4 is installed inside a protective box 5. The protective box 5 is connected to a support base 7 through an adjustment bracket 6 at the bottom. A heat dissipation slot 8 is opened on the side of the protective box 5. A protective cover 9 is installed outside the heat dissipation slot 8. The wire 2 is connected through the protective cylinder 3. The protective cylinder 3 is installed on the protective box 5. The detection component 1 facilitates detection at the construction site. At this time, the detection positioning signal detected by the detection component 1 is transmitted to the inside of the operator 4 through the wire 2 for processing, and the signal is transmitted to the display screen on the surface of the protective box 5 through the internal processing module of the operator 4. The whole can quickly and accurately visualize the detection data at the construction site, facilitating the construction personnel to obtain information in a timely manner and improving the construction detection efficiency. Since the provided wire 2 is transported inside the protective cylinder 3, it can effectively avoid the problem that the wire 2 is exposed and damaged mechanically or corroded, extending the service life of the wire 2 and ensuring the stability and reliability of signal transmission. Moreover, the adjustment bracket 6 provided at the lower end of the protective box 5 facilitates adjusting the overall height. It is disassembled and installed through a bolt structure, and the height of the instrument can be flexibly adjusted according to different construction scenarios and detection requirements, enhancing the applicability of the instrument. The bolt structure is convenient for installation and disassembly, facilitating the transportation, storage and maintenance of the instrument. The whole device is stably supported by the support base 7 at the bottom, greatly improving the overall stability and reducing the problem of tipping caused by low structural strength. The heat dissipation slot 8 opened on the side of the protective box 5 facilitates heat transfer, reducing the problem of affecting the instrument performance due to excessive temperature. The protective cover 9 outside the heat dissipation slot 8 facilitates protection. The filter holes on the protective cover 9 can effectively block dust and sundries from entering the inside of the protective box 5, protecting the safety of the internal components of the protective box 5.
[0031] Embodiment 2: In this embodiment, the heat dissipation slot 8 is not blocked by the first baffle 14. The overall automation degree is high, facilitating the automatic opening of the heat dissipation slot 8 when the temperature rises, thereby reducing the temperature during overall use and avoiding the performance decline of the detection component 1 caused by temperature accumulation, ensuring the continuous and stable progress of the detection work. Specifically, as Figures 3 - 6As shown in the figure, a conveying assembly is installed at the inner bottom of the detection piece 1. The conveying assembly includes a first conveying piece 10 installed at the inner bottom of the detection piece 1. The bottom of the first conveying piece 10 is connected to a second conveying piece 12 through a metal column 11. The metal column 11 is connected through the inside of the protective cylinder 3. The second conveying piece 12 is installed at the bottom of the manipulator 4. A first baffle 14 is connected to the second conveying piece 12 through a first shape memory alloy sheet 13. The first shape memory alloy sheet 13 is connected through the side end of the protective box 5. The first baffle 14 is installed inside the protective cover 9. The first baffle 14 is moved inside the protective cover 9 through the first shape memory alloy sheet 13. When the detection piece 1 is in use, heat will be generated. At this time, the heat is adsorbed through the first conveying piece 10 and transmitted through the metal column 11 at the bottom of the first conveying piece 10. The metal column 11 inside the protective cylinder 3 facilitates heat dissipation operation and can quickly conduct the heat generated when the detection piece 1 is in use, improving the overall heat dissipation efficiency. The heat is transmitted to the second conveying piece 12 at the bottom of the manipulator 4. The second conveying piece 12 conveys the heat to the first shape memory alloy sheet 13. The first shape memory alloy sheet 13 deforms to move the first baffle 14 inside the protective cover 9, so that the heat dissipation slot 8 is not blocked by the first baffle 14. The overall automation degree is high, which is convenient for the automatic opening of the heat dissipation slot 8 when the temperature rises, thereby reducing the overall temperature during use and avoiding the performance degradation of the detection piece 1 caused by temperature accumulation, ensuring the continuous and stable progress of the detection work. Moreover, the heat generated when the manipulator 4 is in use can also be conveyed through the second conveying piece 12, which is convenient for effectively conveying the heat of the manipulator 4 and improving the overall service life.
[0032] Embodiment 3: In this embodiment, the heat dissipation holes 18 on the clamping piece 15 facilitate the conveyance of the heat at the connection between the wire 2 and the manipulator 4, reducing the loosening problem caused by the connection between the wire 2 and the manipulator 4 being too cold or too hot. Specifically, as Figures 3 - 7As shown, a clamping assembly is provided at the connection between the manipulator 4 and the wire 2. The clamping assembly includes a clamping member 15 installed at the connection between the manipulator 4 and the wire 2. The clamping member 15 is symmetrically arranged. The clamping member 15 is connected to the outside of the manipulator 4 through a spring member 16. A through groove 17 adapted to the wire 2 is formed on the opposite side of the clamping member 15. A heat dissipation hole 18 is formed on the clamping member 15. A second baffle 20 is provided on the surface of the clamping member 15. The second baffle 20 is connected to the second conveying member 12 through a second shape memory alloy sheet 19. The second baffle 20 is driven by the second shape memory alloy sheet 19 to move on the surface of the clamping member 15. When the wire 2 is connected to the manipulator 4, the clamping member 15 can be moved to both sides. At this time, the spring members 16 on both sides of the clamping member 15 are compressed. Then, the wire 2 is connected to the interface of the manipulator 4. After releasing the clamping member 15, the clamping member 15 rebounds and moves relatively through the spring member 16, so that the through groove 17 on the clamping member 15 limits the wire 2, ensuring that the connection between the wire 2 and the interface of the manipulator 4 is tight, effectively preventing loosening caused by external force factors, and improving the stability and reliability of the connection. The heat dissipation hole 18 on the clamping member 15 facilitates the transfer of the heat at the connection between the wire 2 and the manipulator 4, reducing the loosening problem caused by the connection between the wire 2 and the manipulator 4 being too cold or too hot. And the second conveying member 12 conveys the heat to the second shape memory alloy sheet 19. The second shape memory alloy sheet 19 deforms and moves the second baffle 20 to both sides, so that the second baffle 20 leaves the surface of the clamping member 15, facilitating the heat dissipation hole 18 on the clamping member 15 not to be blocked by the second baffle 20. In this way, the opening and closing of the heat dissipation hole 18 are automatically adjusted according to the heat condition, improving the overall heat dissipation efficiency. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0033] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. An adjustable measuring and controlling instrument for construction sites, including a provided detecting member (1), the detecting member (1) is connected to an operator (4) through a wire (2), and is characterized in that, The manipulator (4) is installed inside the protective box (5). The lower part of the protective box (5) is connected to a support base (7) through an adjusting bracket (6). A heat dissipation slot (8) is formed in the side end of the protective box (5), and a protective cover (9) is installed outside the heat dissipation slot (8).
2. The adjustable measuring and controlling instrument for construction sites according to claim 1, characterized in that: The wire (2) is connected through the protective cylinder (3) inside, and the protective cylinder (3) is installed on the protective box (5).
3. An adjustable measuring and controlling instrument for construction sites according to claim 1, characterized in that: A conveying component is installed at the inner bottom of the detection piece (1). The conveying component includes a first conveying piece (10) installed at the inner bottom of the detection piece (1). The bottom of the first conveying piece (10) is connected to a second conveying piece (12) through a metal column (11).
4. An adjustable measuring and controlling instrument for construction sites according to claim 3, characterized in that: The metal column (11) is connected through the protective cylinder (3) inside, and the second conveying piece (12) is installed at the bottom of the manipulator (4).
5. An adjustable measuring and controlling instrument for construction sites according to claim 4, characterized in that: A first baffle (14) is connected to the second conveying piece (12) through a first shape memory alloy sheet (13). The first shape memory alloy sheet (13) is connected through the side end of the protective box (5). The first baffle (14) is installed inside the protective cover (9), and the first baffle (14) is moved inside the protective cover (9) through the first shape memory alloy sheet (13).
6. An adjustable measuring and controlling instrument for construction sites according to claim 1, characterized in that: A clamping component is arranged at the connection between the manipulator (4) and the wire (2). The clamping component includes a clamping piece (15) installed at the connection between the manipulator (4) and the wire (2). The clamping pieces (15) are symmetrically arranged, and the clamping pieces (15) are connected to the outside of the manipulator (4) through spring pieces (16).
7. An adjustable measuring and controlling instrument for construction sites according to claim 6, characterized in that: Through grooves (17) adapted to the wire (2) are formed in the opposite sides of the clamping piece (15). Heat dissipation holes (18) are formed in the clamping piece (15), and a second baffle (20) is arranged on the surface of the clamping piece (15).
8. An adjustable measuring and controlling instrument for construction sites according to claim 7, characterized in that: The second baffle (20) is connected to the second conveying piece (12) through a second shape memory alloy sheet (19), and the second baffle (20) is driven to move on the surface of the clamping piece (15) through the second shape memory alloy sheet (19).
Citation Information
Patent Citations
Measurement and control instrument for building construction
CN217030663U