Portable structure bearing capacity detector
Through the built-in detector body, threaded rod and box cover combined structure, the portable structural bearing capacity detector solves the problems of transportation inconvenience and probe injury, achieving convenient movement and efficient detection.
Patent Information
- Application Number
- CN202421699283.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing structural bearing capacity detector is inconvenient during transportation and movement, and the probe is prone to injuring people, and it is inconvenient to debug and observe during use.
A portable structural bearing capacity detector is designed, using a built-in detector body of the box, which can facilitate movement and protection of the probe through the combined structure of threaded rod and box cover. The opening and opening and closing cover are set for easy debugging, and the fixed structure and transparent plastic plates improve stability and observation convenience.
It realizes convenient transportation and movement of the detector, prevents the probe from injuring people, improves detection accuracy and observation convenience, and simplifies the use process.
Smart Images

Figure CN223078057U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of structural bearing capacity detectors, and in particular to a portable structural bearing capacity detector. Background Art
[0002] A structural bearing capacity detector is an instrument used to evaluate the ability of a structure or system to withstand a predetermined load without excessive deformation, damage, or failure. Such detectors are widely used in fields such as construction, machinery, aerospace, and transportation, and are a key link in ensuring safety and reliability.
[0003] Its specific structure includes: a detector body, a probe installed at the lower end of the detector body, and a handle installed at the upper end of the detector body. The tester aligns the probe with the ground and then holds the handle to vertically apply pressure to the ground. At this time, the detector body will display the bearing capacity of the detected structure according to the feedback of the probe.
[0004] However, for the transportation of the structural bearing capacity detector, in the prior art, the probe is usually removed from the detector and then placed in a box for transportation. However, when conducting structural bearing capacity detection on a large construction site and moving from one area to another, it is rather troublesome to disassemble and pack the structural bearing capacity detector again. If the structural bearing capacity detector is directly carried for movement, the probe of the structural bearing capacity detector is very likely to stab the tester if not noticed during movement. Therefore, a portable structural bearing capacity detector is needed. Content of the Utility Model
[0005] Aiming at the deficiencies of the prior art, the purpose of this application is to provide a portable structural bearing capacity detector to solve the technical problem of inconvenient carrying of the structural bearing capacity detector in the prior art.
[0006] The above purpose of this application is achieved through the following technical solutions: A portable structural bearing capacity detector includes a box body and a detector body located inside the box body. A through opening is provided at the upper end of the box body, and a box cover rotatably connected to the box body is provided on one side of the through opening. A probe is installed at the lower end of the detector body, and the probe extends out of the bottom surface of the box body. A threaded rod is fixedly connected to the upper end of the detector body. The threaded rod is threadedly connected to the box cover and extends out of the box cover. A rotating handle is fixedly connected to the end of the threaded rod extending out of the box cover.
[0007] By adopting the above technical solution, when it is necessary to detect the structural bearing capacity, place the bottom surface of the box body on the ground, and then rotate the threaded rod by turning the handle, so that the threaded rod moves downward. The downward-moving threaded rod drives the detector body to move downward, pushing the probe to press against the ground. At this time, rotate the box cover to a vertical state. At this time, the threaded rod drives the detector body to be in a horizontal state on the box cover. After the tester observes and records the data of the detector body, rotate the box cover to cover the through hole, and move the box body to the next area for detection. This makes the detector body easy to move, and during the movement, rotate the threaded rod to drive the detector body upward, so that the probe retracts into the box body, so that the probe will not hurt the tester.
[0008] Further, an opening is provided on one vertical side of the box body, and a switchable cover is provided at the bottom end of the opening. One end of the switchable cover is rotatably connected to the box body.
[0009] By adopting the above technical solution, although setting the detector body in the box body makes the detector easy to transport and can prevent the probe from hurting people at the same time, when using the detector body in the box body, it needs to be debugged. This leads to the need to rotate the box cover to separate the detector from the box body, and rotate the entire box body to make the probe contact the ground before the detector body can be debugged, which is very troublesome. The setting of the opening and the switchable cover solves this technical problem. When it is necessary to debug the detector body, rotate the switchable cover to open the opening, and then reach into the box body through the opening to debug the detector body, which is very convenient.
[0010] Further, a fixing structure is provided on one side of the box cover for fixing the box cover.
[0011] Further, the fixing structure includes a notch opened on one side of the box cover, a plugging strip slidably connected in the notch, a plugging port opened on the box body, and a support spring located between the plugging strip and the notch. The plugging port is opposite to the notch. The support spring is arranged between the side of the notch away from the plugging port and the side of the plugging strip away from the plugging port, and both ends are respectively fixedly connected to the plugging strip and the box cover. The plugging port and the end of the box cover rotatably connected to the box body are on the same horizontal line.
[0012] By adopting the above technical scheme, although the setting of the box cover is convenient for the detection personnel to observe the data of the detection instrument body, the box cover will always shake when moving, which makes it inconvenient to move the box body as a whole. The setting of the fixed structure solves this technical problem. By rotating the box cover and making it horizontal with the plug interface, the plug strip is inserted into the plug interface due to the thrust of the supporting spring, thereby fixing the box cover. When the box cover needs to be rotated, the plug strip is slid in the direction of the notch to disengage it from the plug interface. In this way, the box cover will not shake during the movement. Because the plug interface makes the box cover horizontal, the detection structure of the detection instrument body is vertically downward, which also achieves the purpose of improving the detection accuracy of the detection instrument body.
[0013] Furthermore, a fixed magnetic strip is provided at one end of the opening and closing cover away from the box body to which the opening and closing cover is rotatably connected, and the box body is made of a magnetically attractive material.
[0014] By adopting the above technical solution, the opening and closing cover will also shake when the box moves, making it inconvenient to move the box. This technical problem is solved by setting a fixed magnetic strip. The opening and closing cover can be fixed by rotating the opening and closing cover so that the fixed magnetic strip adsorbs the box.
[0015] Furthermore, a fixed handle is fixedly provided on one side of the box body.
[0016] By adopting the above technical solution, the fixed handle facilitates the movement of the box.
[0017] Furthermore, a through hole penetrating the box body is provided at the periphery of the box body, and a transparent plastic plate fixedly connected to the box body is provided in the through hole.
[0018] By adopting the above technical solution, although the setting of the fixed structure prevents the box cover from shaking during transportation, it also means that each time the data of the detector body is observed, the box cover must be turned by opening the fixed structure, which is very inconvenient. The setting of the transparent plastic plate solves this technical problem. The transparent plastic cup allows the inspector to directly observe the detector body in the box, so there is no need to turn the box cover to observe the detector body, making it more convenient for the inspector to observe the detector body.
[0019] Furthermore, the opening and closing cover is provided with a through hole penetrating the opening and closing cover, and a transparent plastic plate fixedly connected to the opening and closing cover is provided in the through hole.
[0020] By adopting the above technical solution, when the opening and closing cover is fixedly connected to the box body, the inspector can also observe the detector body in the box body through the transparent plastic plate.
[0021] In summary, the present application includes at least one of the following beneficial technical effects:
[0022] Through the arrangement of the box body, the box cover and the threaded rod, the bottom of the box body can be placed on the ground, and then the threaded rod is rotated by turning the handle to move the threaded rod downward. The downward moving threaded rod drives the detector body downward, pushing the probe to press the ground. At this time, the box cover is turned vertically again, and the threaded rod carries the detector body in a horizontal state on the box cover. After the inspector observes and records the data of the detector body, he turns the box cover to cover the opening, holds the fixed handle and moves the box body to the next area for inspection. This makes it easy to move the detector body, and during the movement, the threaded rod is turned to drive the detector body upward and retract the probe into the box, so that the probe will not hurt the inspector.
[0023] By setting up the fixed structure, it is achieved that the box cover is level with the plug interface by rotating. At this time, the plug-in strip is inserted into the plug interface due to the thrust of the supporting spring, thereby fixing the box cover. When the box cover needs to be rotated, the plug-in strip is slid in the direction of the notch to disengage it from the plug interface. In this way, the box cover will not shake during the movement. Because the plug interface makes the box cover level, the detector body is a vertical downward detection structure, which also achieves the purpose of improving the detection accuracy of the detector body.
[0024] By setting the transparent plastic plate, the inspector can directly observe the detector body in the box through the transparent plastic cup, so there is no need to turn the box cover to observe the detector body, making it more convenient for the inspector to observe the detector body. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the overall structure of the embodiment;
[0026] Figure 2 is along Figure 1 Sectional view along line AA;
[0027] Figure 3 yes Figure 2 Enlarged view of part A in the middle.
[0028] Figure numerals: 1. Box body; 10. Through port; 11. Opening; 12. Fixed handle; 13. Through port; 2. Detector body; 20. Probe; 21. Threaded rod; 22. Rotating handle; 3. Box cover; 4. Opening and closing cover; 40. Fixed magnetic strip; 5. Fixed structure; 50. Notch; 51. Plug strip; 52. Plug port; 53. Support spring; 6. Transparent plastic plate. DETAILED DESCRIPTION
[0029] The present application is further described in detail below in conjunction with the accompanying drawings.
[0030] Example, see Figure 1A portable structural bearing capacity detector comprises a box body 1 and a detector body 2 located in the box body 1. A through opening 10 is opened at the upper end of the box body 1 and a box cover 3 rotatably connected to the box body 1 is arranged on one side of the through opening 10. A probe 20 is installed at the lower end of the detector body 2 and the probe 20 extends out of the bottom surface of the box body 1. A threaded rod 21 is fixedly connected to the upper end of the detector body 2. The threaded rod 21 is threadedly connected to the box cover 3 and extends out of the box cover 3. A rotating handle 22 is fixedly connected to one end of the threaded rod 21 extending out of the box cover 3. A fixed handle 12 is fixedly arranged on one side of the box body 1. When the structural bearing capacity needs to be detected, the bottom surface of the box body 1 is placed on the ground, and then the threaded rod 21 is rotated by rotating the handle 22. , so that the threaded rod 21 moves downward, and the threaded rod 21 moving downward drives the detector body 2 to move downward, pushing the probe 20 to press the ground, and then the box cover 3 is turned vertically. At this time, the threaded rod 21 carries the detector body 2 in a horizontal state on the box cover 3. After the inspector observes and records the data of the detector body 2, he turns the box cover 3 to cover the through hole 10, holds the fixed handle 12 and moves the box 1 to the next area for inspection, so that the detector body 2 is easy to move, and during the movement, the threaded rod 21 is turned to drive the detector body 2 upward, so that the probe 20 is retracted into the box 1, so that the probe 20 will not hurt the inspector.
[0031] Although the detector body 2 is arranged in the box 1, the detector can be easily transported and the probe 20 can be prevented from hurting people. However, the detector body 2 arranged in the box 1 needs to be debugged when the detector body 2 is used, which requires rotating the box cover 3 to make the detector out of the box 1, and the detector body 2 can be debugged only after the entire box 1 is rotated to make the probe 20 touch the ground. This is very troublesome. In order to solve this technical problem, the present embodiment has an opening 11 on one vertical side of the box 1, and an opening and closing cover 4 is provided at the bottom of the opening 11. One end of the opening and closing cover 4 is rotatably connected to the box 1. When the detector body 2 needs to be debugged, the opening and closing cover 4 is rotated to open the opening 11, and then the detector body 2 is debugged by reaching into the box 1 through the opening 11. This is very convenient.
[0032] Although the box cover 3 is set to facilitate the inspection personnel to observe the data of the detector body 2, the box cover 3 will always shake when moving, which makes the overall movement of the box body 1 inconvenient. In order to solve this technical problem, refer to Figure 2 , Figure 3In this embodiment, a fixing structure 5 for fixing the box cover 3 is provided on one side of the box cover 3, and the fixing structure 5 includes a notch 50 opened on one side of the box cover 3, a plug-in strip 51 slidably connected in the notch 50, a plug-in port 52 opened on the box body 1, and a support spring 53 located between the plug-in strip 51 and the notch 50, the plug-in port 52 is opposite to the notch 50, the support spring 53 is arranged between a side of the notch 50 away from the plug-in port 52 and a side of the plug-in strip 51 away from the plug-in port 52, and the two ends are respectively fixedly connected to the plug-in strip 51 and the box cover 3, the plug-in port 52 and the end of the box cover 3 rotatably connected to the box body 1 are on the same horizontal line, and the end of the opening and closing cover 4 away from the box body 1 rotatably connected to itself is provided with a fixed magnetic strip 40, through the rotation The box cover 3 is horizontal with the plug interface 52. At this time, the plug strip 51 is inserted into the plug interface 52 due to the thrust of the supporting spring 53, thereby fixing the box cover 3. When the box cover 3 needs to be rotated, the plug strip 51 is slid in the direction of the notch 50 to disengage it from the plug interface 52. In this way, the box cover 3 will not shake during the movement. Moreover, because the plug interface 52 makes the box cover 3 horizontal, the detector body 2 is a vertical downward detection structure, and the purpose of improving the detection accuracy of the detector body 2 is also achieved. The opening and closing cover 4 will also shake when the box body 1 moves, making it inconvenient to move the box body 1. This technical problem is solved by setting the fixed magnetic strip 40. The opening and closing cover 4 can be fixed by rotating the opening and closing cover 4 so that the fixed magnetic strip 40 adsorbs the box body 1.
[0033] Although the setting of the fixing structure 5 prevents the box cover 3 from shaking during transportation, it also means that each time the data of the detector body 2 is observed, the box cover 3 must be turned by opening the fixing structure 5, which is very inconvenient. In order to solve this technical problem, in this embodiment, a through hole 13 penetrating the box body 1 is opened on the periphery of the box body 1, and a transparent plastic plate 6 fixedly connected to the box body 1 is provided in the through hole 13; a through hole 13 penetrating the opening and closing cover 4 is opened on the opening and closing cover 4, and a transparent plastic plate 6 fixedly connected to the opening and closing cover 4 is provided in the through hole 13. The detector can directly observe the detector body 2 in the box body 1 through the transparent plastic cup. In this way, there is no need to rotate the box cover 3 to observe the detector body 2, which makes it more convenient for the detector to observe the detector body 2.
[0034] Specific implementation process: first place the box 1 on the ground, then turn the opening and closing cover 4 to open the opening 11, then turn the threaded rod 21 to press the probe 20 downward, and then debug the detector body 2. After the debugging is completed, turn the opening and closing cover 4 to block the opening 11, and then move the box 1 to the area to be detected, place the box 1 on the ground, turn the threaded rod 21 to press the probe 20 downward, observe and record the test results through the transparent plastic plate 6, and move to the next area to continue testing after completion.
[0035] The embodiments of this specific implementation manner are all preferred embodiments of this application, and do not limit the protection scope of the application. Therefore, all equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.
Claims
1. A portable structural bearing capacity detector, comprising a box body (1) and a detector body (2) located inside the box body (1), characterized in that, The upper end of the box body (1) is provided with a through opening (10), and a box cover (3) rotatably connected to the box body (1) is arranged on one side of the through opening (10). The lower end of the detector body (2) is equipped with a probe (20), and the probe (20) extends out of the bottom surface of the box body (1). The upper end of the detector body (2) is fixedly connected with a threaded rod (21), and the threaded rod (21) is threadedly connected to the box cover (3) and extends out of the box cover (3). One end of the threaded rod (21) extending out of the box cover (3) is fixedly connected with a rotating handle (22).
2. The portable structural bearing capacity detector according to claim 1, characterized in that, An opening (11) is formed in one vertical side of the box body (1), and a switchable cover (4) is arranged at the bottom end of the opening (11). One end of the switchable cover (4) is rotatably connected to the box body (1).
3. The portable structural bearing capacity detector according to claim 1, characterized in that A fixing structure (5) for fixing the box cover (3) is arranged on one side of the box cover (3).
4. The portable structural bearing capacity detector according to claim 3, characterized in that, The fixing structure (5) includes a notch (50) formed on one side of the box cover (3), a plugging strip (51) slidably connected in the notch (50), a plugging opening (52) formed on the box body (1), and a support spring (53) located between the plugging strip (51) and the notch (50). The plugging opening (52) is opposite to the notch (50). The support spring (53) is arranged between the side of the notch (50) far from the plugging opening (52) and the side of the plugging strip (51) far from the plugging opening (52), and both ends are respectively fixedly connected to the plugging strip (51) and the box cover (3). The plugging opening (52) and the end of the box cover (3) rotatably connected to the box body (1) are on the same horizontal line.
5. The portable structural bearing capacity detector according to claim 2, wherein A fixed magnetic strip (40) is arranged at one end of the switchable cover (4) far from the box body (1) to which it is rotatably connected, and the box body (1) is made of a magnetizable material.
6. The portable structural bearing capacity detector according to claim 1, wherein A fixed handle (12) is fixedly arranged on one side of the box body (1).
7. The portable structural bearing capacity detector according to claim 1, wherein A through opening (13) penetrating the box body (1) is formed around the box body (1), and a transparent plastic plate (6) fixedly connected to the box body (1) is arranged in the through opening (13).
8. The portable structural bearing capacity detector according to claim 2, wherein A through opening (13) penetrating the switchable cover (4) is formed on the switchable cover (4), and a transparent plastic plate (6) fixedly connected to the switchable cover (4) is arranged in the through opening (13).