Building engineering detector

By designing a variety of components and structures of the construction engineering detector, the problem of inconvenient parameter adjustment and unstable placement of the detector in the prior art is solved, convenient operation and stable portability are achieved, and the convenience and safety of the detector are improved.

CN223179548UActive Publication Date: 2025-08-01ZHONGHONG INSPECTION & CERTIFICATION GRP CO LTD
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Patent Information

Application Number
CN202422026009.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-08-01
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The existing construction engineering detectors are inconvenient to adjust the detection parameters during use, and they are less flexible and convenient to use, and they are easily defiled or accidentally bumped and damaged when placed at will.

Method used

A construction engineering detector is designed, including the detector body, connecting wire, detection probe, mounting base, clamping plate, support base, strap structure, writing board and probe clamping frame and other components. Through the design of elastic telescopic structure, strap, writing board sliding structure and probe clamping frame, the detector is stable and fixed, convenient portable and flexible operation.

Benefits of technology

It improves the convenience and stability of the detector, avoids accidental drops and debris, and enhances the operational flexibility and safety during the detection process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a constructional engineering detector which comprises a detector body, one end of the detector body is connected with a connecting line, the tail end of the connecting line is connected with a detection probe, the bottom of the detector body is provided with a mounting seat, two sides of the mounting seat are provided with clamping plates, and first elastic telescopic structures are arranged between the clamping plates and the mounting seat. A supporting base is hinged to the inner side of the mounting base in a limiting mode, a strap structure is arranged on the back face of the supporting base, a writing board is arranged at the bottom of the mounting base in a sliding mode, a paper clip is arranged on the writing board, a probe clamping frame is arranged in front of the mounting base, and a second elastic telescopic structure is arranged between the probe clamping frame and the mounting base. In the constructional engineering detection process, the detector body and the detection probe can be respectively installed and fixed, the detector is stably carried in a back-carrying manner, two hands are liberated, the operation convenience is improved, meanwhile, the writing and recording of detection data are facilitated, and the use is flexible and convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of building engineering detection, and more specifically, it relates to a building engineering detector. Background Art

[0002] During the construction process of building engineering, it is necessary to detect the construction quality of buildings, the quality of building workpieces, etc. Commonly used detectors include flaw detectors, thickness detectors, crack detectors, permeability testers, steel bar scanners, ultrasonic detectors, rebound hammers, infrared thermal imagers, vibration detectors and other instruments;

[0003] Among them, most instruments include two parts: an instrument main body and a detection probe, and the detection probe is connected to the instrument main body through a connecting wire;

[0004] In the prior art, when detecting building engineering through a detector, most often a detector operator holds the detector main body in one hand and holds the detection probe in the other hand to contact the building materials to achieve detection;

[0005] However, during the building engineering detection process, it is necessary to perform key operations on the detection main body to adjust the detection values and parameters. At this time, it is not convenient to place the detection main body and the detection probe;

[0006] In the prior art, most are directly placed on the ground or on the building, with poor stability, and the cleanliness of the building surface and the ground is poor, which easily causes the detector main body to adhere to dust, etc., affecting the service life and performance;

[0007] In addition, during some detections, a coupling agent, etc. is also adhered to the detection probe. If the detection probe is placed on the building surface or the ground during the detection interval, the coupling agent on the surface of the detection probe is likely to bond with dust impurities, etc., affecting the surface cleanliness of the detection probe and the detection effect;

[0008] And random placement easily leads to accidental dropping and knocking damage of the detection main body and the detection probe due to accidental collision, with poor use stability. If not placed, it is not convenient to adjust the detection parameters, and the use flexibility and convenience are poor. Content of the Utility Model

[0009] (1) Technical Problems to be Solved

[0010] Aiming at the problems existing in the prior art, the utility model provides a building engineering detector to solve the technical problems mentioned in the background art that in the prior art, it is not convenient to adjust the detection parameters during the use of the building engineering detector, the use flexibility and convenience are poor, and random placement in the prior art easily causes pollution or accidental collision damage.

[0011] (2) Technical solution

[0012] To achieve the above object, the utility model provides the following technical solution:

[0013] A building engineering detector, comprising a detector body, one end of the detector body is connected with a connecting wire, the tail end of the connecting wire is connected with a detection probe, the bottom of the detector body is provided with a mounting seat, clamping plates are arranged on both sides of the mounting seat, a first elastic telescopic structure is arranged between the clamping plates and the mounting seat, a support base is limitedly hinged inside the mounting seat, a back strap structure is arranged on the back of the support base, a writing board is slidably arranged at the bottom of the mounting seat, a paper clip is arranged on the writing board, a probe clamping frame is arranged in front of the mounting seat, and a second elastic telescopic structure is arranged between the probe clamping frame and the mounting seat.

[0014] The utility model is further arranged such that the first elastic telescopic structure includes first telescopic grooves opened on both sides of the mounting seat, first telescopic columns are arranged on the clamping plates, the first telescopic columns slide in the first telescopic grooves, and first springs are arranged between the first telescopic columns and the inner walls of the first telescopic grooves, realizing the elastic telescopic installation of the clamping plates on the mounting seat.

[0015] The utility model is further arranged such that the back strap structure includes waist locking belts symmetrically arranged at the rear bottom end of the support base, a buckle is arranged between the two waist locking belts, and shoulder bearing belts are arranged between the top of each waist locking belt and the top of the support base. Through the cooperation of the shoulder bearing belts and the waist locking belts, the support base can be locked and fixed in front of the tester's chest, thereby improving the carrying convenience and stability.

[0016] The utility model is further arranged such that two groups of sliding seats are symmetrically arranged at the bottom end of the mounting seat, sliding grooves are opened on the sliding seats, limiting sliding strips are arranged on both sides of the writing board, and the limiting sliding strips slide in the sliding grooves, realizing the sliding installation of the writing board at the bottom end of the mounting seat, facilitating the writing board to be pulled out to provide writing support and being pushed inward to realize storage.

[0017] The utility model is further arranged such that damping gaskets are arranged in the sliding grooves in cooperation with the limiting sliding strips to improve the stability when the writing board provides writing support.

[0018] The utility model is further arranged such that the second elastic telescopic structure includes a second telescopic groove opened in front of the mounting seat, the second telescopic groove is vertically offset from the first telescopic groove, a second telescopic column is arranged inside the probe clamping frame, the second telescopic column slides in the second telescopic groove, and a second spring is arranged between the second telescopic column and the inner wall of the second telescopic groove, realizing the elastic telescopic installation of the probe clamping frame in front of the mounting seat.

[0019] The utility model is further configured such that a locking strip is provided at the outer bottom of the probe clamping frame, and a first magic tape is provided on the locking strip, and a second magic tape is cooperatively provided on the back surface of the support base, so as to realize the folding storage and locking fixation of the mounting seat when the whole is not in use, reduce the floor area, and improve the portability for carrying.

[0020] The utility model is further configured such that anti-slip pads are provided on the inner sides of the probe clamping frame and the clamping plate, and anti-slip patterns are provided on the anti-slip pads, so as to improve the stability of the clamping plate and the probe clamping frame when used for clamping and fixing.

[0021] The utility model is further configured such that a hinge connecting member is provided between the mounting seat and the support base, and a rotation limiting block is cooperatively provided with the hinge connecting member to realize the rotation limit of the mounting seat relative to the support base.

[0022] (III) Beneficial effects

[0023] Compared with the prior art, the utility model provides a building engineering detector, which has the following beneficial effects:

[0024] 1. The utility model includes a detector body, one end of the detector body is connected with a connecting wire, the tail end of the connecting wire is connected with a detection probe, a mounting seat is arranged at the bottom of the detector body, clamping plates are arranged on both sides of the mounting seat, and a first elastic telescopic structure is arranged between the clamping plates and the mounting seat. Among them, the first elastic telescopic structure includes first telescopic grooves opened on both sides of the mounting seat, first telescopic columns are arranged on the clamping plates, the first telescopic columns slide in the first telescopic grooves, and a first spring is arranged between the first telescopic columns and the inner walls of the first telescopic grooves. In this way, under the action of the first spring, the first telescopic columns can elastically telescopically move in the first telescopic grooves, so as to control the elastic telescopic movement of the clamping plates. After the detector body is placed on the mounting seat, the detector body can be clamped and fixed on the mounting seat through the clamping plates, so as to liberate both hands during the building engineering detection process, and thus the detector body can be better operated, and the use convenience and stability during the building engineering detection process can be improved.

[0025] 2. Inside the mounting base of the present utility model, a support base is hinge-limited. A backstrap structure is provided on the back of the support base. Among them, the backstrap structure includes waist locking straps symmetrically arranged at the bottom rear of the support base. An insertion buckle is provided between the two waist locking straps. Above each waist locking strap, a shoulder bearing strap is provided between the top of the support base. In this way, when in use, the support base can be placed in front of the chest, and the tester's arm can pass through the shoulder bearing strap, so that the shoulder bearing strap is placed on the tester's shoulders. Then, the waist locking straps are wound around both sides of the tester's waist and locked and fixed at the back through the insertion buckle. Thus, the whole can be carried and moved on the tester's chest, improving the portability of the detector body during building engineering detection. Furthermore, it can further free the hands, better realizing the operation flexibility and convenience during the building engineering detection process, and having good stability.

[0026] 3. A writing board is slidably arranged at the bottom of the mounting base of the present utility model. A paper clip is provided on the writing board. In this way, during the building engineering detection process, when it is necessary to write and record the detection data, the writing board can be pulled out from the bottom of the mounting base, the paper for recording is placed on the writing board, and is clamped and fixed by the paper clip. Thus, the stability and convenience during the detection record writing are improved;

[0027] And when not in use, the writing board can be directly pushed into the bottom end of the mounting base, reducing the floor area, facilitating storage, and improving the use flexibility and convenience.

[0028] 4. A probe clamping frame is provided in front of the mounting base of the present utility model. A second elastic telescopic structure is provided between the probe clamping frame and the mounting base. Among them, the second elastic telescopic structure includes a second telescopic groove opened in front of the mounting base. The second telescopic groove and the first telescopic groove are arranged vertically and horizontally offset. A second telescopic column is provided inside the probe clamping frame. The second telescopic column is slidably located in the second telescopic groove, and a second spring is provided between the second telescopic column and the inner wall of the second telescopic groove. In this way, with the cooperation of the second spring and the second telescopic groove, the second telescopic column can be elastically telescopically installed in the second telescopic groove, so that the probe clamping frame can be elastically telescopically installed at the front end of the mounting base. In this way, when the detection probe is not in use and needs to be placed, the probe clamping frame can be pulled forward, so that the second telescopic column is pulled out from the second telescopic groove. The probe clamping frame is placed on the part where the second telescopic column is pulled out. Then, when the pulling force is released, under the action of the second spring, the probe clamping frame will move inward to clamp and fix the detection probe, realizing the flexible and stable placement of the detection probe, thus avoiding the occurrence of situations such as pollution and accidental dropping and knocking damage caused by the random placement of the probe, and improving the use stability and safety protection. Description of the Drawings

[0029] Figure 1Schematic diagram of the overall structure of a construction engineering detector in the present utility model Figure 1 ;

[0030] Figure 2 Schematic diagram of the overall structure of a construction engineering detector in the present utility model Figure 2 ;

[0031] Figure 3 Cross-sectional schematic diagram of the connection structure between the mounting base and the clamping plate in the present utility model;

[0032] Figure 4 Cross-sectional schematic diagram of the connection structure between the mounting base and the probe clamping frame in the present utility model;

[0033] Figure 5 Schematic diagram of the connection structure between the mounting base and the support base in the present utility model;

[0034] Figure 6 Schematic diagram of the local positional relationship of the damping gasket in the sliding groove in the present utility model.

[0035] In the figure: 1, detector body; 2, connecting wire; 3, detection probe; 4, mounting base; 5, clamping plate; 6, support base; 7, backpack structure; 8, writing board; 9, paper clip; 10, probe clamping frame; 11, first telescopic groove; 12, first telescopic column; 13, first spring; 14, waist locking belt; 15, buckle; 16, shoulder bearing belt; 17, sliding seat; 18, sliding groove; 19, limiting slide bar; 20, damping gasket; 21, second telescopic groove; 22, second telescopic column; 23, second spring; 24, locking bar; 25, first magic tape; 26, second magic tape; 27, anti-slip pad; 28, hinge connecting piece; 29, rotation limiting block. Detailed implementation manners

[0036] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The present utility model will be described in detail below with reference to the drawings and in combination with the embodiments.

[0037] It should be pointed out that, unless otherwise specified, all technical and scientific terms used in the present application have the same meanings as those commonly understood by those of ordinary skill in the technical field to which the present application belongs.

[0038] In the present utility model, unless otherwise stated, the orientations such as "upper, lower" are usually in the directions shown in the drawings, or in the vertical, perpendicular or gravitational directions; similarly, for the convenience of understanding and description, "left, right" are usually the left and right shown in the drawings; "inside, outside" refer to the inside and outside relative to the contours of the respective components, but the above orientation terms are not used to limit the present utility model.

[0039] Please refer to Figures 1-6 a construction engineering detector, which includes a detector body 1. One end of the detector body 1 is connected with a connecting wire 2, and the tail end of the connecting wire 2 is connected with a detection probe 3. An installation base 4 is arranged at the bottom of the detector body 1, and clamping plates 5 are arranged on both sides of the installation base 4. A first elastic telescopic structure is arranged between the clamping plates 5 and the installation base 4. Among them, the first elastic telescopic structure includes first telescopic grooves 11 opened on both sides of the installation base 4. First telescopic columns 12 are arranged on the clamping plates 5. The first telescopic columns 12 are slidably located in the first telescopic grooves 11, and a first spring 13 is arranged between the first telescopic columns 12 and the inner walls of the first telescopic grooves 11. In this way, under the action of the first spring 13, the first telescopic columns 12 can generate elastic telescopic movement in the first telescopic grooves 11, so as to control the elastic telescopic movement of the clamping plates 5. After the detector body 1 is placed on the installation base 4, the detector body 1 can be clamped and fixed on the installation base 4 through the clamping plates 5, so that during the construction engineering detection process, both hands can be liberated, and thus the detector body 1 can be better operated, improving the use convenience and stability during the construction engineering detection process.

[0040] In the utility model, a support base 6 is limitedly hinged inside the installation base 4, and a back strap structure 7 is arranged on the back of the support base 6. Among them, the back strap structure 7 includes waist locking straps symmetrically arranged at the bottom rear of the support base 6. A buckle 15 is arranged between the two waist locking straps 14. Above each waist locking strap 14, a shoulder carrying strap is arranged between the top of the support base 6. In this way, when in use, the support base 6 can be placed in front of the tester, and the tester's arms can pass through the shoulder carrying straps 16, so that the shoulder carrying straps 16 are placed on the tester's shoulders. Then, the waist locking straps 14 are bypassed from both sides of the tester's waist and locked and fixed through the buckle 15 at the back, so that the whole can be carried and moved in front of the tester, thus improving the carrying convenience of the detector body 1 during the construction engineering detection, and further liberating both hands, better realizing the operation flexibility and convenience during the construction engineering detection process, and having good stability.

[0041] In the utility model, a writing board 8 is slidably arranged at the bottom of the installation base 4, and a paper clip 9 is arranged on the writing board 8. In this way, during the construction engineering detection process, when it is necessary to write and record the detection data, the writing board 8 can be pulled out from the bottom of the installation base 4, the recording paper is placed on the writing board 8, and is clamped and fixed through the paper clip 9, so as to improve the stability and convenience during the detection record writing;

[0042] And when not in use, the writing board 8 can be directly pushed to the bottom end of the installation base 4, reducing the floor area, being convenient for storage, and improving the use flexibility and convenience.

[0043] In front of the mounting base 4 of the present utility model, a probe clamping frame 10 is provided. A second elastic telescopic structure is arranged between the probe clamping frame 10 and the mounting base 4. Among them, the second elastic telescopic structure includes a second telescopic groove 21 opened in front of the mounting base 4. The second telescopic groove 21 and the first telescopic groove 11 are arranged vertically offset. A second telescopic column 22 is arranged inside the probe clamping frame 10. The second telescopic column 22 is slidably located in the second telescopic groove 21, and a second spring 23 is arranged between the second telescopic column 22 and the inner wall of the second telescopic groove 21. In this way, under the cooperation of the second spring 23 and the second telescopic groove 21, the second telescopic column 22 can be elastically telescopically installed in the second telescopic groove 21, so that the probe clamping frame 10 can be elastically telescopically installed at the front end of the mounting base 4. In this way, when the detection probe 3 is not in use and needs to be placed, the probe clamping frame 10 can be pulled forward, so that the second telescopic column 22 is pulled outwards from the second telescopic groove 21. The probe clamping frame 10 is placed on the part where the second telescopic column 22 is pulled outwards. Then, the pulling force is released. Under the action of the second spring 23, the probe clamping frame 10 will move inwards, realizing the clamping and fixing of the detection probe 3, realizing the flexible and stable placement of the detection probe 3, thereby avoiding the occurrence of situations such as pollution, accidental dropping and knocking damage caused by the random placement of the detection probe 3, and improving the use stability and safety protection performance.

[0044] Please refer to Figures 1-6 , as an implementation manner of the writing board 8: Two groups of sliding seats 17 are symmetrically arranged at the bottom end of the mounting base 4. A sliding groove 18 is opened on the sliding seat 17. Limit sliding strips 19 are arranged on both sides of the writing board 8. The limit sliding strips 19 are slidably located in the sliding groove 18.

[0045] Specifically, when pulling the writing board 8 outwards, the limit sliding strips 19 can be driven to move in the sliding groove 18. The stability of the writing board 8 when pulled outwards can be improved through the limit sliding cooperation between the sliding groove 18 and the limit sliding strips 19, and the stability of the writing board 8 during use can be improved.

[0046] Please refer to Figures 1-6 , as an implementation manner of the sliding groove 18: A damping gasket 20 is arranged in the sliding groove 18 to cooperate with the limit sliding strips 19.

[0047] Specifically, through the setting of the damping gasket 20, the friction force between the limit sliding strips 19 and the sliding groove 18 can be increased, thereby improving the stability of the writing board 8 during use and avoiding the situation that the writing board 8 slides randomly.

[0048] Please refer to Figures 1-6 , as an implementation manner of the probe clamping frame 10: A locking strip 24 is arranged at the outer bottom of the probe clamping frame 10. A first magic tape 25 is arranged on the locking strip 24. A second magic tape 26 is arranged on the back of the support base 6 in a matching manner.

[0049] Specifically, when not in use, the mounting base 4 can be flipped towards the support base 6 with the writing board 8 and the probe clamping frame 10 carried thereon. After the mounting base 4 is in a vertical state, the locking strip 24 is driven to flip the first magic tape 25, so that the first magic tape 25 adheres to the second magic tape 26, thereby realizing the connection and fixation between the probe clamping frame 10 and the support base 6, realizing the locking and fixation of the mounting base 4 after flipping, realizing the overall storage and folding, and improving the overall portability.

[0050] Please refer to Figures 1-6 , as an implementation manner of the probe clamping frame 10 and the clamping plate 5: anti-slip pads 27 are provided on the inner sides of the probe clamping frame 10 and the clamping plate 5, and anti-slip patterns are provided on the anti-slip pads 27.

[0051] Specifically, the provision of the anti-slip pads 27 can improve the surface anti-slip property of the probe clamping frame 10 and the clamping plate 5, thereby improving the stability of clamping and fixing the detector body 1 and the detection probe 3.

[0052] Please refer to Figures 1-6 , as an implementation manner of the mounting base 4: a hinge connecting member 28 is provided between the mounting base 4 and the support base 6, and a rotation limiting block 29 is provided in cooperation with the hinge connecting member 28.

[0053] Specifically, the rotation hinge between the mounting base 4 and the support base 6 is realized through the hinge connecting member 28, and the limitation of the rotation angle of the mounting base 4 relative to the support base 6 can be realized through the provision of the rotation limiting block 29, so that the mounting base 4 stops when it rotates to the horizontal position.

[0054] In summary, when the overall device is in use:

[0055] Place the support base 6 in front of the tester's chest, and let the tester's arm pass through the shoulder load-bearing belt 16, so that the shoulder load-bearing belt 16 is placed on the tester's shoulder. Then, pass the waist locking belt 14 around both sides of the tester's waist and lock and fix it at the back through the buckle 15, so that the whole can be carried and moved in front of the tester's chest;

[0056] After that, separate the first magic tape 25 and the second magic tape 26, and flip the mounting base 4 outwards under the action of the hinge connecting member 28, so that the mounting base 4 rotates to the horizontal position under the limiting action of the rotation limiting block 29;

[0057] After that, place the detector body 1 on the mounting base 4 and between the two clamping plates 5, and realize the clamping and fixing of the detector body 1 on the mounting base 4 through the cooperation of the first spring 13 and the first telescopic column 12;

[0058] Then, connect the detection probe 3 to the detector body 1 through the connecting wire 2. This is prior art and will not be elaborated in this utility model.

[0059] When the detection probe 3 is not in use, pull the probe clamping frame 10 outwards, place the detection probe 3 on the second telescopic column 22, and position it between the probe clamping frame 10 and the detector body 1. Then, release the pulling force, and under the action of the second spring 23, the detection probe 3 is clamped and fixed.

[0060] When in use, directly pull the probe clamping frame 10 outwards to remove the detection probe 3 for use. It is convenient to use and can prevent the detection probe 3 from being randomly placed during the detection process, resulting in soiling or accidental dropping and damage.

[0061] At the same time, by fixing the detector body 1 and the detection probe 3 respectively and in combination with a back-carrying method, both hands can be fully liberated during the building engineering detection process, improving the operation convenience and flexibility of the detector body 1 during the detection process, and having good stability.

[0062] During the building detection process, when it is necessary to record detection data, the writing board 8 can be pulled outwards from the bottom of the mounting seat 4, the paper for recording is placed on the writing board 8, and is clamped and fixed by the paper clip 9, thereby improving the stability and convenience during the detection record writing.

[0063] When not in use, the writing board 8 can be directly pushed into the bottom end of the mounting seat 4, reducing the floor area, facilitating storage, and improving the use flexibility and convenience.

[0064] Thus, the portability of the detector body 1 during the building engineering detection is improved, further liberating both hands, better realizing the operation flexibility and convenience during the building engineering detection process, and having good stability.

[0065] In all the above-mentioned solutions, for the connection between two components, welding, bolt and nut connection, bolt or screw connection, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated one by one here. For those mentioned above involving fixed connection, welding is preferably considered. Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

[0066] Among all the solutions mentioned above, for those involving the operation of electrical components, without specific description, they are all controlled by the controller. Since the devices matched with the controller are common devices, their control principles and circuit connections are all well-known and mature technologies in the art, and thus the electrical connection relationships and specific circuit structures will not be elaborated herein.

[0067] Among all the solutions mentioned above, for those involving motors, if actually needed, they can be combined with speed reducers. The connection structures and working principles between them and the speed reducers are well-known technologies in the art, and thus will not be elaborated in this utility model.

[0068] Among all the solutions mentioned above, for those involving the connection between solar panels and storage batteries, necessary accessories such as inverters, battery charge controllers, cables, fuses, and brackets can be used. Their control principles and circuit connections are all well-known and mature technologies in the art, and thus the electrical connection relationships and specific circuit structures will not be elaborated herein.

Claims

1. A building engineering detector, comprising a detector body (1), one end of the detector body (1) is connected with a connecting wire (2), and the tail end of the connecting wire (2) is connected with a detection probe (3), characterized in that: A mounting base (4) is provided at the bottom of the detector body (1). Clamping plates (5) are provided on both sides of the mounting base (4). A first elastic telescopic structure is provided between the clamping plates (5) and the mounting base (4). A support base (6) is limitedly hinged inside the mounting base (4). A backpack structure (7) is provided on the back of the support base (6). A writing board (8) is slidably provided at the bottom of the mounting base (4). A paper clip (9) is provided on the writing board (8). A probe clamping frame (10) is provided in front of the mounting base (4). A second elastic telescopic structure is provided between the probe clamping frame (10) and the mounting base (4).

2. An architectural engineering detector according to claim 1, characterized in that: The first elastic telescopic structure includes first telescopic grooves (11) opened on both sides of the mounting base (4). First telescopic columns (12) are provided on the clamping plates (5). The first telescopic columns (12) are slidably located in the first telescopic grooves (11), and first springs (13) are provided between the first telescopic columns (12) and the inner walls of the first telescopic grooves (11).

3. A building engineering detector according to claim 1, characterized in that: The backpack structure (7) includes waist locking belts (14) symmetrically provided at the rear bottom ends of the support base (6). A buckle (15) is provided between the two waist locking belts (14). Shoulder bearing belts (16) are provided between the upper parts of each waist locking belt (14) and the top of the support base (6).

4. An architectural engineering detector according to claim 1, characterized in that: Two groups of sliding seats (17) are symmetrically provided at the bottom end of the mounting base (4). Sliding grooves (18) are opened on the sliding seats (17). Limiting sliding strips (19) are provided on both sides of the writing board (8). The limiting sliding strips (19) are slidably located in the sliding grooves (18).

5. The construction engineering detector according to claim 4, characterized in that: Damping gaskets (20) are provided in the sliding grooves (18) to cooperate with the limiting sliding strips (19).

6. A building engineering detector according to any one of claims 1-5, characterized in that: The second elastic telescopic structure includes a second telescopic groove (21) opened in front of the mounting base (4). The second telescopic groove (21) is vertically offset from the first telescopic groove (11). A second telescopic column (22) is provided inside the probe clamping frame (10). The second telescopic column (22) is slidably located in the second telescopic groove (21), and a second spring (23) is provided between the second telescopic column (22) and the inner wall of the second telescopic groove (21).

7. An architectural engineering detector according to claim 1, characterized in that: A locking strip (24) is provided at the outer bottom of the probe clamping frame (10). A first magic tape (25) is provided on the locking strip (24). A second magic tape (26) is provided on the back of the support base (6) for cooperation.

8. An architectural engineering detector according to claim 1, characterized in that: Anti-slip pads (27) are provided inside both the probe clamping frame (10) and the clamping plates (5). Anti-slip patterns are provided on the anti-slip pads (27).

9. The construction engineering detector according to claim 1, characterized in that: A hinge connecting member (28) is provided between the mounting base (4) and the support base (6), and a rotation limiting block (29) is provided in cooperation with the hinge connecting member (28).