Adjusting and mounting structure of intelligent detection device for high and steep slope
By adjusting the installation structure of the intelligent detection device for steep slopes, and utilizing the design of spiral springs and limiting components, the angle of the installation side plate can be adjusted and fixed, which solves the problems of high installation difficulty and large data error of traditional devices, and improves stability and data accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-26
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional high and steep slope detection devices are difficult and time-consuming to install, cannot be flexibly adjusted, resulting in large errors in detection data and poor stability and reliability under severe weather conditions.
A smart detection device for steep slopes is adopted to adjust the installation structure. Through the combination design of the installation spiral spring and the limiting component, the angle of the installation side plate can be adjusted and fixed. Combined with the plug-in and fastening components, it can adapt to slope environments with different slopes.
It improves the stability and data accuracy of the installation structure, adapts to rapid adjustments of slopes at different angles, and enhances the stability and reliability of the device under adverse weather conditions.
Smart Images

Figure CN224050057U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of high and steep slope intelligent detection device adjusting installation structure. BACKGROUND
[0002] Traditional high and steep slope detection device often faces complex terrain, installation position is limited and other problems in installation process, resulting in large installation difficulty, long time-consuming. At the same time, since the detection device cannot be flexibly adjusted, it is difficult to adapt to different slope environments, resulting in large detection data error, which cannot accurately reflect the actual state of the slope. In addition, the existing device is easily disturbed under bad weather conditions, affecting the stability and reliability of data. In actual use process, the intelligent detection device needs to be fixedly installed on the side wall of high and steep slope. Since high and steep slope has different slope angles, the angle of the installation structure needs to be adjusted. However, most installation structures are single, so it is not convenient to quickly adjust according to different angle slopes, and the stability of the installation structure is not convenient to improve. SUMMARY
[0003] In view of the deficiencies of the prior art, the technical problem to be solved by the utility model is to provide a high and steep slope intelligent detection device adjusting installation structure, which is not only reasonable in structure, but also convenient and stable.
[0004] In order to solve the above technical problems, the technical scheme of the utility model is as follows: a high and steep slope intelligent detection device adjusting installation structure, characterized by: the device main body is supported and positioned by the installation base at the bottom, the installation side plate is rotatably connected to the end of the installation base by a connecting shaft, the installation side plate is fixed to the connecting shaft, the connecting shaft is fixedly provided with an installation block at the end, the installation block is vertically provided with an installation hole, and an installation shaft is rotatably connected in the installation hole, the end of the installation shaft is fixedly provided with a limiting piece, the limiting ring is fixedly provided on the installation base, the limiting ring is uniformly distributed with a plurality of limiting grooves along the circumference, and the installation scroll spring is arranged between the installation shaft and the installation hole to facilitate the rotation of the limiting piece into the limiting groove and clamping.
[0005] Further, two connection blocks are fixedly provided on the installation base and rotatably connected to the ends of the connecting shaft, the ends of the connecting shaft pass through the connection blocks, and the limiting ring is fixedly connected to the connection blocks and coaxially arranged with the connecting shaft.
[0006] Further, when the high and steep slope intelligent detection device adjusts the installation structure in use, first, place the installation base in the designated installation position, then the installation base can be supported by the abutting component, when the installation side plate needs to be attached to the side wall of the slope, first, adjust and rotate the limiting piece, then adjust and rotate the installation side plate by means of the connecting shaft, the connecting shaft can drive the limiting piece to adjust and rotate by means of the installation block, when the angle adjustment of the installation side plate is completed, immediately loosen the limiting piece, according to the rebound force generated by the elastic deformation of the installation volute spring, the installation volute spring can drive the limiting piece to adjust and rotate to the inside of the limiting groove by means of the installation shaft, so as to limit and fix the connecting shaft, which can be quickly adjusted according to different angle slopes, thereby improving the stability of the installation structure, while rotating, the installation side plate can be inserted and fixed on the side wall of the slope by means of the plug-in component, and the installation side plate can be tightly installed by means of the fastening component, in addition, the abutting component can be stored and limited by means of the positioning component.
[0007] Further, the two sides of the installation side plate are provided with fastening components; the top of the installation side plate is provided with a plug-in component; the two sides of the installation base are symmetrically provided with two groups of abutting components for better gripping; the installation base is provided with a positioning component for storing and limiting the abutting component.
[0008] Further, the abutting component comprises two fixed blocks fixed on the installation base, a fixed hole is horizontally and transversely formed in each fixed block and extends into the two ends of a rotating shaft to be connected in rotation, a rotating volute spring is arranged between the two ends of the rotating shaft and the fixed hole, one end of the rotating volute spring is fixedly connected with the inner wall of the fixed hole, and the other end is connected with the rotating shaft to elastically swing. Place the installation base in the designated installation position, then adjust the positioning component, then adjust and rotate the abutting component by means of the rotating volute spring according to the rebound force generated by the elastic deformation of the rotating volute spring.
[0009] Further, the rotating shaft is radially and fixedly provided with a folding plate on the outer wall, and a plurality of abutting pins for rotating and wedging into the ground are fixedly arranged on the folding plate. The rotating volute spring can drive the folding plate to adjust and rotate by means of the rotating shaft, and the installation base can be installed and fixed on the ground by means of the abutting pins.
[0010] Further, the positioning assembly is arranged at the end of the mounting base away from the mounting side plate, which is composed of fixing boxes, guide blocks, guide rods, adjusting rods, return springs and positioning blocks. The adjusting rods longitudinally extend and both ends of each adjusting rod are fixedly connected with guide blocks. The guide blocks are vertically and slidingly connected in the fixing boxes. The guide rods vertically penetrate the guide blocks and both ends of each guide rod are fixedly connected in the fixing boxes to guide. The return spring is sleeved on the guide rod between the lower end of the guide block and the bottom of the fixing box. One end of the return spring is fixedly connected with the bottom wall of the guide block, and the other end of the return spring is fixedly connected with the inner wall of the fixing box. When not in use, the two sets of positioning blocks can respectively limit the two sets of folding plates. The positioning blocks are fixedly connected with the outer end of the guide blocks to limit the folding plate of the resistance assembly. The two fixing boxes are fixedly connected with the mounting base. When the folding plate needs to be opened, the adjusting rod is pulled up to drive the two sets of guide blocks to move. The two sets of guide blocks can drive the two sets of positioning assemblies to move through the two sets of guide rods. Then, the positioning plate is driven to move upwards, and the folding plate loses the resistance pressing force, so that the two folding plates can be automatically opened. The positioning plate is also provided with an opening to facilitate the folding plate to be separated.
[0011] Further, the fastening assembly comprises an elastic pre-tightening assembly and a fixing assembly. The elastic pre-tightening assembly is arranged on the top of the mounting side plate and comprises support blocks fixedly connected with the mounting side plate on the longitudinal two sides. The support blocks are transversely penetrated by the insertion rods and are slidingly connected with the insertion rods. The insertion rods close to the device body are fixedly connected with the same pull rod. The connection spring is arranged between the pull rod and the mounting side plate. The two sets of insertion rods can be used to insert and fix the mounting side plate on the side wall of the slope.
[0012] Further, one end of the connection spring is fixedly connected with the mounting side plate, and the other end of the connection spring is transversely extended and fixedly connected with the pull rod through the connecting piece. The pull rod is manually pulled to drive the two sets of insertion rods to adjust. When the mounting position is adjusted to the specified position, the pull rod is loosened. According to the elastic deformation of the connection spring, the connection spring drives the pull rod to adjust and reset. Then, the two sets of insertion rods can be used to insert and fix the mounting side plate on the side wall of the slope.
[0013] Further, the fixing assembly comprises fastening blocks fixedly connected with the mounting side plate on the longitudinal two sides. The fastening blocks are penetrated by fastening threaded holes. The fastening threaded holes are screwed with fastening bolts for fixing. The fastening bolts are inserted into the fastening threaded holes to insert and fix the mounting side plate on the side wall of the slope.
[0014] Compared with the prior art, the utility model have following beneficial effect: when need to be installed with side plate and side wall of slope is pasted, first, adjust the rotation of limiting piece, then, adjust the rotation of installation side plate can be adjusted rotation with the help of connecting shaft, connecting shaft can pass through the installation block and drive limiting piece adjust the rotation, when the angle of installation side plate is adjusted, immediately loosen the limiting piece, according to the resilience of the elastic deformation of installation volute spring, installation volute spring can pass through the installation shaft and drive limiting piece adjust the rotation to the inside of limiting slot, thereby can be limited to fixed connecting shaft, can according to the different angle of slope and adjust quickly, further can improve the stability of installation structure.
[0015] The utility model makes further detailed explanation below combining with the specific embodiment and the accompanying drawing. DRAWINGS
[0016] Figure 1 It is the structure schematic drawing of embodiment of the utility model;
[0017] Figure 2 It is the connection schematic drawing of installation side plate and plug-in assembly and fastening assembly in embodiment of the utility model;
[0018] Figure 3 It is the connection schematic drawing of installation base and abutment assembly, positioning assembly in embodiment of the utility model;
[0019] Figure 4 It is the structure schematic drawing of positioning assembly in embodiment of the utility model.
[0020] In the drawing: 1, device main body;2, installation base;3, installation side plate;4, connecting shaft;5, connecting block;6, installation block;7, installation hole;8, installation volute spring;9, installation shaft;10, limiting piece;11, limiting ring;12, limiting slot;101, fixed block;102, fixed hole;103, rotation volute spring;104, folding plate;105, abutment thimble;106, rotation shaft;201, fixed box;202, guide rod;203, guide block;204, adjusting rod;205, return spring;206, positioning block;301, support block;302, plug-in rod;303, pull rod;304, connecting spring;305, connecting piece;401, fastening block;402, fastening screw hole;403, fastening bolt. SPECIFIC EMBODIMENT
[0021] In order to let above-mentioned features and advantages of the utility model can be more obvious and easy to understand, the following text takes example, and cooperates the drawing, and makes detailed explanation as follows.
[0022] As Figures 1-4As shown, a high and steep slope intelligent detection device adjusting installation structure, including device main body 1, installation base 2, installation side plate 3, connecting shaft 4, connecting block 5, installation block 6, mounting hole 7, mounting scroll spring 8, mounting shaft 9, limiting piece 10, limiting ring 11, limiting groove 12, abutting assembly, positioning assembly, plug-in assembly and fastening assembly;The upper portion of installation base 2 is provided with device main body 1, one side of installation base 2 is provided with installation side plate 3, the upper portion of installation base 2 is provided with connecting block 5, connecting block 5 is provided with two groups, two groups of connecting block 5 are respectively arranged on both sides of installation side plate 3, the inside of connecting block 5 is provided with connecting shaft 4, one end of mounting shaft 9 is provided with installation block 6, the inside of installation block 6 is provided with mounting hole 7, the inside of mounting hole 7 is provided with mounting shaft 9, one end of mounting shaft 9 is provided with mounting scroll spring 8, one end of mounting scroll spring 8 is fixedly connected with the inner wall of mounting hole 7, the other end of mounting scroll spring 8 is fixedly connected with one end of mounting shaft 9, the other end of mounting shaft 9 is provided with limiting piece 10, limiting ring 11 is arranged on the installation base, limiting groove 12 is formed in the side wall of limiting ring 11, limiting groove 12 is provided with multiple groups, limiting piece 10 is connected with limiting ring 11 through limiting groove 12, both sides of installation base 2 are provided with abutting assembly, the other side of installation base 2 is provided with positioning assembly, the side wall of installation side plate 3 is provided with plug-in assembly, both sides of installation side plate 3 are provided with fastening assembly.
[0023] In the embodiment of the utility model, the abutting assembly includes fixed block 101, fixed hole 102, rotating scroll spring 103 and rotating shaft 106;Both sides of installation base 2 are provided with fixed block 101, fixed block 101 is provided with multiple groups, the inside of fixed block 101 is provided with fixed hole 102, the inside of fixed hole 102 is provided with rotating shaft 106, both ends of rotating shaft 106 are provided with rotating scroll spring 103, one end of rotating scroll spring 103 is fixedly connected with the inner wall of fixed hole 102;Place installation base 2 in the designated installation position, when the folding plate is limited, the rotating scroll spring is in the compressed state, then, by adjusting the positioning assembly, then, according to the rebound force generated by the elastic deformation of rotating scroll spring 103, rotating scroll spring 103 can drive the abutting assembly to adjust rotation through rotating shaft 106;
[0024] The abutting assembly further includes folding plate 104 and abutting thimble 105;The side wall of rotating shaft 106 is provided with folding plate 104, the bottom wall of folding plate 104 is provided with abutting thimble 105, and abutting thimble 105 is provided with multiple groups;Rotating scroll spring 103 can drive folding plate 104 to adjust rotation through rotating shaft 106, and multiple abutting thimbles 105 are abuttingly fixed with the ground, so that installation base 2 can be installed and fixed on the ground;
[0025] The positioning assembly comprises a fixing box 201, a guide rod 202, a guide block 203 and an adjusting rod 204; the side wall of the mounting base 2 is provided with the fixing box 201, and two groups of the fixing box 201 are arranged; the inside of the fixing box 201 is provided with the guide rod 202; the side wall of the guide rod 202 is provided with the guide block 203, and the guide block 203 is slidably connected with the guide rod 202; one side of the guide block 203 is provided with the adjusting rod 204, and both ends of the adjusting rod 204 are fixedly connected with one side of the guide block 203; when the folding plate 104 needs to be opened, the adjusting rod 204 is pulled to drive the two groups of guide blocks 203 to move, and the two groups of guide blocks 203 drive the two groups of positioning assemblies to move through the two groups of guide rods 202, and then the folding plate 104 loses the blocking pressure, so that the turnover opening effect can be realized.
[0026] The positioning assembly further comprises a reset spring 205 and a positioning block 206; the other side of the guide block 203 is provided with the positioning block 206, the outside of the guide rod 202 is provided with the reset spring 205, one end of the reset spring 205 is fixedly connected with the bottom wall of the guide block 203, and the other end of the reset spring 205 is fixedly connected with the inner wall of the fixing box 201; when not in use, the two groups of positioning blocks 206 can abut against and limit the two groups of folding plates 104 respectively.
[0027] In the embodiment of the utility model, the plug-in assembly comprises support blocks 301 and plug-in rods 302; the two sides of the mounting side plate 3 are provided with the support blocks 301, the inside of the support block 301 is provided with the plug-in rod 302, and the plug-in rod 302 is slidably connected with the inside of the support block 301; the two groups of plug-in rods 302 can be used to plug and fix the mounting side plate 3 on the side wall of the slope; the plug-in assembly further comprises a pull rod 303, a connecting spring 304 and a connecting piece 305; one end of the plug-in rod 302 is provided with the pull rod 303, both ends of the pull rod 303 are fixedly connected with both ends of the plug-in rod 302, the side wall of the pull rod 303 is provided with the connecting piece 305, one side of the connecting piece 305 is provided with the connecting spring 304, and one end of the connecting spring 304 is fixedly connected with the side wall of the mounting side plate 3;
[0028] The pull rod 303 is pulled manually, and then the two groups of plug-in rods 302 are driven to adjust; when the specified mounting position is adjusted, the pull rod 303 is loosened, the connecting spring 304 drives the pull rod 303 to adjust and reset according to the rebound force generated by the elastic deformation of the connecting spring 304, and then the two groups of plug-in rods 302 can be used to plug and fix the mounting side plate 3 on the side wall of the slope;
[0029] The fastening assembly comprises a fastening block 401, a fastening threaded hole 402 and a fastening bolt 403; the two sides of the installation side plate 3 are provided with the fastening block 401, the inside of the fastening block 401 is provided with the fastening threaded hole 402, the inside of the fastening threaded hole 402 is provided with the fastening bolt 403, and the fastening bolt 403 is in threaded connection with the fastening threaded hole 402; by inserting the fastening bolt 403 into the inside of the fastening threaded hole 402, the installation side plate 3 can be inserted and fixed on the side wall of the slope.
[0030] When the high and steep slope intelligent detection device adjusting installation structure is in use, first, the installation base 2 is placed at the designated installation position, then the two groups of guide blocks are driven to move upward by the upward adjusting rod 204, the reset spring is stretched, the two groups of guide blocks 203 move upward along the guide rod, and the positioning plate is driven to move upward, the folding plate 104 loses the extrusion force after the positioning plate moves upward to a height higher than the folding plate, so that the downward opening effect can be realized.
[0031] Subsequently, the folding plate 104 is adjusted and rotated by the rotating vortex spring 103 through the rotating shaft 106, and the installation base 2 is installed and fixed on the ground by the resistance of the multiple groups of resistance pins 105 to the ground;
[0032] When the installation side plate 3 needs to be attached to the side wall of the slope, first, the limiting piece 10 is adjusted and rotated, that is, the limiting piece is rotated out of the limiting slot, the vortex spring is tensioned, then the installation side plate 3 is adjusted and rotated by means of the connecting shaft 4, and the connecting shaft 4 drives the limiting piece 10 to adjust and rotate by means of the installation block 6;
[0033] When the angle adjustment of the installation side plate 3 is completed, the limiting piece 10 is loosened, the installation vortex spring 8 is adjusted and rotated to the inside of the limiting slot 12 by means of the installation shaft 9 according to the elastic deformation of the installation vortex spring 8, so that the connecting shaft 4 can be limited and fixed, different angle slopes can be quickly adjusted, and the stability of the installation structure can be improved;
[0034] The pulling rod 303 is manually pulled outward, and the pulling rod 303 drives the two groups of insertion rods 302 to adjust, when the installation position is adjusted, the pulling rod 303 is loosened, the connecting spring 304 drives the pulling rod 303 to adjust and reset according to the elastic deformation of the connecting spring 304, then the installation side plate 3 is inserted and fixed on the side wall of the slope by means of the two groups of insertion rods 302, and the installation side plate 3 is inserted and fixed on the side wall of the slope by inserting the fastening bolt 403 into the inside of the fastening threaded hole 402, and the installation is completed.
[0035] The utility model is not limited to the above best implementation, and any person can draw other various forms of high and steep slope intelligent detection device adjusting installation structure under the enlightenment of the utility model. Any equal change and modification made in the patent application range of the utility model should belong to the coverage range of the utility model.
Claims
1. A high and steep slope intelligent detection device adjusting installation structure, comprising a device main body, characterized in that: The bottom of the device body is supported and positioned by a mounting base, the end of the mounting base is rotationally connected with a mounting side plate through a connecting shaft, the mounting side plate is fixedly connected with the connecting shaft, the end of the connecting shaft is fixedly provided with a mounting block, a mounting hole is vertically formed in the mounting block and a mounting shaft is rotationally connected in the mounting hole, the end of the mounting shaft is fixedly provided with a limiting piece, a limiting ring is fixedly provided on the mounting base, a plurality of limiting grooves are uniformly distributed along the circumference of the limiting ring, and a mounting spiral spring is arranged between the mounting shaft and the mounting hole to facilitate the rotation of the limiting piece into the limiting groove.
2. The adjusting and installing structure of the intelligent detection device for high and steep slope according to claim 1, characterized in that: Two connecting blocks are fixedly provided on the mounting base and rotationally connected with the ends of the connecting shaft, the ends of the connecting shaft pass through the connecting blocks, and the limiting ring is fixedly connected on the connecting blocks and coaxially arranged with the connecting shaft.
3. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 1, characterized in that: Fastening assemblies are arranged on the two sides of the mounting side plate, an inserting assembly is arranged on the top of the mounting side plate, and abutting assemblies for facilitating ground gripping are symmetrically arranged on the two sides of the mounting base.
4. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 3, characterized in that: The abutting assembly comprises two fixed blocks fixedly connected on the mounting base, a fixed hole is transversely formed in each fixed block and rotationally connected with a rotating shaft extending into the ends of the rotating shaft, and a rotating spiral spring is arranged between the ends of the rotating shaft and the fixed hole.
5. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 4, characterized in that: A folding plate is fixedly provided on the outer wall of the rotating shaft, and a plurality of abutting pins for rotating and wedging into the ground are fixedly provided on the folding plate.
6. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 3, characterized in that: The positioning assembly is arranged at the end of the mounting base away from the mounting side plate and comprises a fixed box, a guide block, a guide rod, an adjusting rod, a return spring and a positioning block, the adjusting rod extends longitudinally and the two ends of the adjusting rod are fixedly connected with the guide blocks, the guide blocks are vertically and slidingly connected in the two fixed boxes, the guide rod vertically penetrates the guide blocks and the two ends of the guide rod are fixedly connected in the fixed boxes for guiding, the return spring is sleeved on the guide rod between the lower end of the guide block and the inner bottom of the fixed box, the positioning blocks are fixedly connected with the outer end portions of the guide blocks to limit the swing of the abutting assembly, and the two fixed boxes are fixedly connected on the mounting base.
7. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 3, characterized in that: The fastening assembly comprises an elastic pre-tightening assembly and a fixing assembly, the elastic pre-tightening assembly is arranged on the top of the mounting side plate and comprises support blocks symmetrically fixedly connected on the longitudinal two sides of the mounting side plate, the two support blocks are transversely penetrated by inserting rods and slidingly connected with the inserting rods, the two inserting rods close to the device body are fixedly connected on the same pulling rod, and a connecting spring is arranged between the pulling rod and the mounting side plate.
8. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 7, characterized in that: One end of the connecting spring is fixedly connected on the mounting side plate, the other end of the connecting spring extends transversely and is fixedly connected on the pulling rod through a connecting piece.
9. The adjusting and mounting structure of the intelligent detection device for high and steep slope according to claim 7, characterized in that: The fixing assembly comprises fastening blocks symmetrically fixedly connected on the longitudinal two sides of the mounting side plate, fastening threaded holes are formed in the fastening blocks, and fastening bolts for fixing are screwed in the fastening threaded holes.