Bridge pile hole sediment treatment device

By designing a bridge pile hole sediment treatment device and utilizing the coordinated work of the push-down mechanism, buffer mechanism and compaction mechanism, the problem that the existing device cannot completely shovel out and compact the sediment is solved, automatic sediment treatment is achieved, and treatment efficiency and practicality are improved.

CN120759262APending Publication Date: 2025-10-10SHANDONG GEOLOGY & MINING KAIYUAN ENG TECH CO LTD
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Patent Information

Application Number
CN202511249313.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

Existing bridge pile hole sediment processing devices are difficult to shovel out all the sediment in the pile hole, and the sediment cannot be compacted during the shoveling process, resulting in the need for manual cleaning.

Method used

A bridge pile hole sediment treatment device is designed, which includes a support platform, a wheel plate, a support cover, a scooping mechanism, a compacting mechanism and a collection box. The automatic scooping and compacting of sediment is achieved through the coordinated work of the pushing mechanism, the buffer mechanism, the scooping mechanism and the compacting mechanism.

Benefits of technology

The complete shoveling and compaction of the sediment in the pile hole is achieved, which improves the processing efficiency, reduces manual intervention and enhances the practicability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of bridge construction, in particular to a bridge pile hole sediment treatment device which comprises a supporting table and a wheel plate, the supporting table is provided with a lower pressing opening, the wheel plate is provided with a through opening and fixed to the lower side of the supporting table, and moving wheels are installed at the lower end of the wheel plate; the supporting cover is fixedly installed on the supporting table, long-strip-shaped openings are formed in the two sides of the supporting cover, a downward pushing mechanism is installed on the supporting cover and the supporting table, a buffering mechanism is fixedly connected to the power output end of the downward pushing mechanism, and a hanging rod is fixedly arranged on the buffering mechanism; the shoveling mechanism is fixedly connected with the lower end of the suspender; and one end of the extension rod is fixedly connected with the downward pushing mechanism, the other end of the extension rod penetrates through the long-strip-shaped opening, and the extension rod is fixedly connected with a compaction mechanism. According to the bridge pile hole sediment treatment device, sediment in a pile hole can be treated, all the sediment in the pile hole can be shoveled out, meanwhile, the collected sediment can be compacted in the sediment shoveling-out process, operation is easy, and practicability is high.
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Description

Technical Field

[0001] The present invention relates to the technical field of bridge construction, in particular to a bridge pile hole sediment treatment device. Background Art

[0002] Pile hole sediment is loose soil, mud, or other debris left at the bottom of the pile hole during pile foundation construction. This sediment primarily originates from sedimentation during drilling and hole cleaning, or from sediment left behind by the collapsed hole that is not carried away by the circulating mud. Sediment can adversely affect the bearing capacity and stability of the pile foundation, potentially causing the pile foundation to sink or settle unevenly.

[0003] Due to the hazards of sediment, it is necessary to treat the sediment in the pile hole. Although the existing treatment device can treat the pile hole sediment, there are still some problems. First, it is difficult for the current treatment device to shovel out all the sediment in the pile hole, resulting in the need for manual further cleaning of the sediment. Second, the current treatment device cannot compact the collected sediment during the process of shoveling out the sediment. Therefore, a bridge pile hole sediment treatment device is needed to solve the above problems. Summary of the Invention

[0004] The purpose of the embodiments of the present invention is to provide a bridge pile hole sediment treatment device, aiming to solve the following problems: existing treatment devices are difficult to shovel out all the sediment in the pile hole and are unable to compact the collected sediment during the shoveling process.

[0005] The embodiment of the present invention is achieved as follows: a bridge pile hole sediment processing device comprises: a support platform and a wheel plate, the support platform is provided with a downward pressure port, the wheel plate is provided with a through port and is fixed to the lower side of the support platform, and a moving wheel is installed at the lower end of the wheel plate; a support cover, which is fixedly installed on the support platform, and long strip ports are provided on both sides of the support cover, and a downward pushing mechanism is installed on the support cover and the support platform, and a buffer mechanism is fixedly connected to the power output end of the downward pushing mechanism, the downward pushing mechanism is used to drive the buffer mechanism to rise or fall, and a boom is fixedly provided on the buffer mechanism, and the boom passes through the support platform; a shoveling mechanism, which is fixedly connected to the lower end of the boom, and the boom is used to drive the shoveling mechanism into the pile hole to process the sediment; an extension rod, one end of which is fixedly connected to the downward pushing mechanism, and the other end passes through the long strip port, and a compacting mechanism is fixedly connected to the extension rod, and the lower end of the compacting mechanism can pass through the downward pressure port, and a collection box fixed to the support platform is provided directly below the compacting mechanism.

[0006] Preferably, the pushing-down mechanism includes: a first power member, which is fixedly mounted on the outside of the support cover, and the output shaft of the first power member is connected to a first bevel gear arranged in the support cover; a threaded column, whose two ends are respectively rotatably connected to the support platform and the inner wall of the support cover, and a second bevel gear meshing with the first bevel gear is fixed on the upper side of the threaded column; a guide column, whose two ends are respectively fixedly connected to the support platform and the support cover, and a lower push plate threadedly connected to the threaded column is sleeved on the guide column, the buffer mechanism is fixed on the lower push plate, and the extension rod is fixedly connected to the lower push plate.

[0007] Preferably, the buffer mechanism includes: a protective box, which is fixedly installed on the push-down mechanism, a buffer spring is fixedly arranged in the protective box, multiple buffer springs are provided and fixedly connected to a buffer plate, and the suspension rod and the buffer plate are fixedly connected; a guide groove, which is fixed on the inner wall of the protective box, and a guide wheel installed on the buffer plate is slidably arranged in the guide groove.

[0008] Preferably, the scooping mechanism includes: a limit plate, which is fixedly connected to the boom, a rotating assembly is installed on the limit plate, a trough body is installed on the rotating assembly, and the rotating assembly is used to drive the trough body to rotate; an extrapolation assembly, which is installed on the trough body, a sediment shovel is fixedly provided on the extrapolation assembly, and the rotating assembly is used to drive the sediment shovel to rotate through the trough body to scoop up the sediment, and the sediment shovel is provided with two clamping rods fixedly connected to the ends close to each other, and the clamping rods are provided with a clamping port; a locking assembly, which is installed on the trough body, the clamping rod can be inserted into the locking assembly, and the locking assembly is used to lock the clamping rod.

[0009] Preferably, the rotating assembly includes: a heat sink, which is fixedly mounted on a limit plate, a second power component is mounted in the heat sink, and an output shaft of the second power component is fixedly connected to a first gear; a shaft, both ends of which are rotatably connected to an inner wall of the heat sink, a second gear meshing with the first gear is fixed on the shaft, a rotating column is fixed on the shaft, and the slot body and the rotating column are fixedly connected; a stabilizing slot, which is fixed on the limit plate, and a stabilizing wheel mounted on the slot body is slidably arranged in the stabilizing slot.

[0010] Preferably, the push-out assembly includes: a partition, which is fixedly arranged in the trough body, a sliding rod is fixedly connected between the partition and the inner wall of the trough body, a slide plate is sleeved on the slide rod, the sediment shovel and the slide plate are fixedly connected, and a push spring is fixedly connected between the slide plate and the partition; a linkage gear, which is rotatably installed in the trough body, linkage racks are meshed on both sides of the linkage gear, and the slide plate and the linkage rack are fixedly connected.

[0011] Preferably, the locking assembly includes: a fixed block, which is fixedly mounted on the slot body, the fixed block is provided with a cavity and a clamping groove, and the clamping rod can be inserted into the clamping groove; a turning handle, which is rotatably mounted on the fixed block, and the turning handle is fixed with a cam rotatably set in the cavity; a guide column, both ends of which are fixedly connected to the inner wall of the cavity opened by the fixed block, and a guide plate is provided on the guide column, the cam and the guide plate are in sliding contact, and a clamping block extending into the clamping groove is fixed on the guide plate; a compression spring, both ends of which are respectively fixedly connected to the inner wall of the empty gun opened by the fixed block and the guide plate, and is used to push the clamping block into the clamping opening opened by the clamping rod.

[0012] Preferably, the compacting mechanism includes: a side groove, which is fixedly connected to the extension rod, a stabilizing rod is fixedly arranged in the side groove, a stabilizing plate is also sleeved on the stabilizing rod, and a top spring is fixedly connected between the stabilizing plate and the inner wall of the side groove; an L-shaped plate, one end of which is fixedly connected to the stabilizing plate, and the other end is fixedly connected to a compacting plate for compacting the sediment in the collection box.

[0013] The bridge pile hole sediment processing device provided by the present invention can not only process the sediment in the pile hole, but also shovel out all the sediment in the pile hole, thereby improving the sediment processing efficiency and eliminating the need for manual processing. At the same time, the collected sediment can be compacted during the process of shoveling out the sediment, so that the collection box can store more sediment. The operation is simple and the practicability is strong. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 Schematic diagram of the bridge pile hole sediment treatment device.

[0015] Figure 2 Schematic diagram of the buffer mechanism of the bridge pile hole sediment treatment device.

[0016] Figure 3 Schematic diagram of the scooping mechanism of the bridge pile hole sediment treatment device.

[0017] Figure 4 Schematic diagram of the rotating assembly of the bridge pile hole sediment treatment device.

[0018] Figure 5 Schematic diagram of the extrapolated components of the bridge pile hole sediment treatment device.

[0019] Figure 6 Schematic diagram of the locking assembly of the bridge pile hole sediment treatment device.

[0020] Figure 7 This is a partial schematic diagram of the compaction mechanism of the bridge pile hole sediment treatment device.

[0021] In the drawings: 1-supporting table, 2-wheel plate, 3-moving wheel, 4-supporting cover, 5-pushing-down mechanism, 6-buffering mechanism, 7-derrick, 8-scooping mechanism, 9-extending rod, 10-compacting mechanism, 11-collecting box, 51-first power member, 52-first bevel gear, 53-threaded column, 54-second bevel gear, 55-guiding column, 56-pushing plate, 61-protection box, 62-buffering spring, 63-buffering plate, 64-guiding groove, 65-guiding wheel, 81-limiting plate, 82-rotating assembly, 83-groove body, 84-outward pushing assembly, 85-sediment shovel, 86-clamping rod, 87-locking assembly, 821-radiating box, 822-second power member, 823-first gear, 824-shaft rod, 825-second gear, 826-rotating column, 827-stabilizing groove, 828-stabilizing wheel, 841-separating plate, 842-sliding rod, 843-sliding plate, 844-pushing spring, 845-linking gear, 846-linking rack, 871-fixing block, 872-rotating handle, 873-cam, 874-guiding column, 875-guiding plate, 876-clamping block, 877-pressing spring, 101-side groove, 102-stabilizing rod, 103-stabilizing plate, 104-top spring, 105-L-shaped plate, 106-compacting plate. DETAILED DESCRIPTION

[0022] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0023] The specific implementation of the present application is described in detail below in combination with specific embodiments.

[0024] Please refer to Figure 1 The bridge pile hole sediment treatment device provided by the embodiment of the present application comprises: The supporting table 1 is provided with a pressing opening, and the wheel plate 2 is provided with a through opening and is fixed to the lower side of the supporting table 1, and the wheel plate 2 is provided with a moving wheel 3 at the lower end; the supporting cover 4 is fixedly installed on the supporting table 1, and the supporting cover 4 is provided with a long opening at both sides, and the supporting cover 4 and the supporting table 1 are provided with a pushing-down mechanism 5, the power output end of the pushing-down mechanism 5 is fixedly connected with a buffering mechanism 6, the pushing-down mechanism 5 is used to drive the buffering mechanism 6 to ascend or descend, the buffering mechanism 6 is fixedly provided with a derrick 7, and the derrick 7 penetrates through the supporting table 1; the scooping mechanism 8 is fixedly connected with the lower end of the derrick 7, and the derrick 7 is used to drive the scooping mechanism 8 to enter the pile hole to treat the sediment; the extending rod 9 is fixedly connected with the pushing-down mechanism 5 at one end and penetrates through the long opening at the other end, the extending rod 9 is fixedly connected with a compacting mechanism 10, the compacting mechanism 10 is provided with a collecting box 11 fixed to the supporting table 1 below the compacting mechanism 10.

[0025] When the device for treating sediment in the pile hole of the bridge is used, the device can be first moved to the top of the pile hole by rolling the moving wheel 3, and then the pushing mechanism 5 is turned on. The pushing mechanism 5 can drive the boom 7 to move downward through the buffer mechanism 6, thereby driving the shoveling mechanism 8 to move downward. After the shoveling mechanism 8 moves downward and presses against the sediment, the buffer mechanism 6 will generate a restoring elastic force, and the shoveling mechanism 8 can be turned on to shovel the sediment. As the sediment is shoveled, the buffer mechanism 6 can continue to push the shoveling mechanism 8 to move downward until the shoveling mechanism 8 is filled with sediment, and the pushing mechanism 5 is turned on in the reverse direction, and the pushing mechanism 5 can drive the shoveling mechanism 8 to move upward until the sediment is filled. After the scooping mechanism 8 moves to the top, the control end of the scooping mechanism 8 is rotated, and the scooping mechanism 8 can extend to both sides under the action of its own elastic force and pass through the through opening, so as to facilitate pushing the sediment in the scooping mechanism 8 into the collection box 11 for storage. Then push the scooping mechanism 8, and the scooping mechanism 8 can be clamped. At this time, the pushing mechanism 5 is opened again to control the scooping mechanism 8 to move downward, so that the second sediment processing work can be carried out. At the same time, the pushing mechanism 5 drives the extension rod 9 to move downward, thereby driving the compacting mechanism 10 to move downward, and the compacting mechanism 10 can compact the sediment in the collection box 11, so that the collection box 11 can store more sediment.

[0026] like Figure 1 As shown, as a preferred embodiment of the present invention, the push-down mechanism 5 includes: a first power member 51, which is fixedly mounted on the outside of the support cover 4, and the output shaft of the first power member 51 is connected to a first bevel gear 52 arranged in the support cover 4; a threaded column 53, both ends of which are rotatably connected to the support platform 1 and the inner wall of the support cover 4, and a second bevel gear 54 engaged with the first bevel gear 52 is fixed on the upper side of the threaded column 53; a guide column 55, both ends of which are fixedly connected to the support platform 1 and the support cover 4 respectively, and a push-down plate 56 threadedly connected to the threaded column 53 is sleeved on the guide column 55, the buffer mechanism 6 is fixed on the push-down plate 56, and the extension rod 9 is fixedly connected to the push-down plate 56.

[0027] When controlling the shoveling mechanism 8 to move downward, the first power member 51 is turned on. The first power member 51 is specifically a motor. The output shaft of the first power member 51 drives the first bevel gear 52 to rotate, thereby driving the second bevel gear 54 and the threaded column 53 to rotate. The rotation of the threaded column 53 can cause the push plate 56 to push the buffer mechanism 6 and the boom 7 to move downward, and then drive the shoveling mechanism 8 to move downward and enter the pile hole.

[0028] like Figure 2As shown, as a preferred embodiment of the present invention, the buffer mechanism 6 includes: a protective box 61, which is fixedly mounted on the push-down mechanism 5, a buffer spring 62 is fixedly arranged in the protective box 61, a plurality of buffer springs 62 are provided and fixedly connected to a buffer plate 63, and the suspension rod 7 and the buffer plate 63 are fixedly connected; a guide groove 64, which is fixed on the inner wall of the protective box 61, and a guide wheel 65 installed on the buffer plate 63 is slidably arranged in the guide groove 64.

[0029] After the bottom of the shoveling mechanism 8 contacts the sediment, if the boom 7 continues to move downward, the boom 7 can drive the protective box 61 and the guide groove 64 to move downward along the guide wheel 65 and the buffer plate 63 and compress the buffer spring 62. In this way, as the shoveling mechanism 8 scoops the sediment, the buffer spring 62 can push the buffer plate 63 and the guide wheel 65 to move downward along the guide groove 64 until the shoveling mechanism 8 is full of sediment.

[0030] like Figure 3 As shown, as a preferred embodiment of the present invention, the scooping mechanism 8 includes: a limit plate 81, which is fixedly connected to the boom 7, a rotating assembly 82 is installed on the limit plate 81, a trough body 83 is installed on the rotating assembly 82, and the rotating assembly 82 is used to drive the trough body 83 to rotate; an extrapolation assembly 84, which is installed on the trough body 83, and a sediment shovel 85 is fixedly provided on the extrapolation assembly 84, and the rotating assembly 82 is used to drive the sediment shovel 85 to rotate through the trough body 83 to scoop up the sediment, and the sediment shovel 85 is provided with two clamping rods 86 fixedly connected to each other at the ends close to each other, and the clamping rod 86 is provided with a clamping port; a locking assembly 87, which is installed on the trough body 83, and the clamping rod 86 can be inserted into the locking assembly 87, and the locking assembly 87 is used to lock the clamping rod 86.

[0031] After the sediment shovel 85 contacts the sediment, the rotating assembly 82 is turned on, and the rotating assembly 82 can drive the trough body 83 to rotate. The rotation of the trough body 83 can drive the two sediment shovels 85 to rotate. As the buffer mechanism 6 pushes downward, the sediment shovel 85 can gradually shovel up the sediment. After shoveling is full, the pushing mechanism 5 drives the sediment shovel 85 to move to the upper end. At this time, the control end of the locking assembly 87 is rotated. After the locking assembly 87 disengages from the clamping port opened by the clamping rod 86, the pushing assembly 84 can push the sediment shovels 85 on both sides to each other. The shovel 85 is moved away from the collecting box 11, so that the sediment shovel 85 can be pushed to the top of the collecting box 11, which makes it convenient to use the tool to push the sediment into the collecting box 11 for collection. Then, the sediment shovel 85 on either side is pushed, and the sediment shovel 85 can drive the clamping rod 86 to enter the locking assembly 87. The locking assembly 87 can be clamped into the clamping mouth under the action of its own elastic force, so that the sediment shovel 85 can be locked. At this time, the pushing mechanism 5 can be opened again to control the shoveling mechanism 8 to move downward, so that the sediment can be scooped again.

[0032] like Figure 3 and Figure 4As shown, as a preferred embodiment of the present invention, the rotating assembly 82 includes: a heat sink 821, which is fixedly mounted on the limiting plate 81, a second power member 822 is installed in the heat sink 821, and the output shaft of the second power member 822 is fixedly connected to the first gear 823; a shaft 824, both ends of which are rotatably connected to the inner wall of the heat sink 821, a second gear 825 engaged with the first gear 823 is fixed on the shaft 824, a rotating column 826 is fixedly provided on the shaft 824, and the slot body 83 and the rotating column 826 are fixedly connected; a stabilizing slot 827, which is fixed on the limiting plate 81, and a stabilizing wheel 828 installed on the slot body 83 is slidably provided in the stabilizing slot 827.

[0033] When controlling the rotation of the sediment shovel 85, the second power component 822 is turned on. The second power component 822 is specifically a motor. The output shaft of the second power component 822 drives the first gear 823 to rotate, and the first gear 823 drives the second gear 825 and the shaft 824 to rotate. The rotation of the shaft 824 can drive the groove body 83 on the rotating column 826 to rotate, and the rotation of the groove body 83 can drive the two sediment shovels 85 to rotate, so that the sediment can be scooped.

[0034] like Figure 5 As shown, as a preferred embodiment of the present invention, the push-out assembly 84 includes: a partition 841, which is fixedly arranged in the trough body 83, a slide rod 842 is fixedly connected between the partition 841 and the inner wall of the trough body 83, a slide plate 843 is sleeved on the slide rod 842, a sludge shovel 85 and the slide plate 843 are fixedly connected, and a push spring 844 is fixedly connected between the slide plate 843 and the partition 841; a linkage gear 845, which is rotatably installed in the trough body 83, and linkage racks 846 are meshed on both sides of the linkage gear 845, and the slide plate 843 and the linkage rack 846 are fixedly connected.

[0035] like Figure 6 As shown, as a preferred embodiment of the present invention, the locking assembly 87 includes: a fixed block 871, which is fixedly mounted on the slot body 83, and the fixed block 871 is provided with a cavity and a clamping groove, and the clamping rod 86 can be inserted into the clamping groove; a turning handle 872, which is rotatably mounted on the fixed block 871, and the turning handle 872 is fixed with a cam 873 rotatably set in the cavity; a guide column 874, both ends of which are fixedly connected to the inner wall of the cavity opened by the fixed block 871, and a guide plate 875 is sleeved on the guide column 874, and the cam 873 and the guide plate 875 are in sliding contact, and a clamping block 876 extending into the clamping groove is fixed on the guide plate 875; a compression spring 877, both ends of which are respectively fixedly connected to the inner wall of the empty gun opened by the fixed block 871 and the guide plate 875, and are used to push the clamping block 876 into the clamping mouth opened by the clamping rod 86.

[0036] When the two sediment shovels 85 are controlled to pop out to both sides, the turning handle 872 is turned, and the turning handle 872 drives the cam 873 to rotate. The rotation of the cam 873 can push the guide plate 875 to move upward along the guide column 874 and compress the compression spring 877. The movement of the guide plate 875 can drive the clamping block 876 to move into the cavity, and the clamping block 876 can be disengaged from the clamping mouth opened by the clamping rod 86. At this time, the push spring 844 can push the two slides 843 away from each other along the slide rod 842, and the slide 843 can drive the two sediment shovels 85 to pop out to both sides. If the two sediment shovels 85 are to be clamped, push any one of the sediment shovels 85, and the sediment shovel 85 can push a slide 843 along the guide column 874. As the slide bar 842 slides, it drives a linkage rack 846 to move. The movement of one linkage rack 846 can drive the linkage gear 845 to rotate. The rotation of the linkage gear 845 can drive the other linkage rack 846 to move, thereby driving the two slide plates 843 to approach each other along the slide bar 842 and compress the push spring 844, thereby driving the two sediment shovels 85 and the clamping rod 86 to approach each other. When the clamping port opened by the clamping rod 86 is flush with the clamping block 876, the compression spring 877 can push the clamping block 876 to clamp into the clamping port, thereby clamping the two sediment shovels 85, making it convenient to move the two sediment shovels 85 into the pile hole again for sediment cleaning.

[0037] like Figure 7 As shown, as a preferred embodiment of the present invention, the compacting mechanism 10 includes: a side groove 101, which is fixedly connected to the extension rod 9, a stabilizing rod 102 is fixedly arranged in the side groove 101, a stabilizing plate 103 is also sleeved on the stabilizing rod 102, and a top spring 104 is fixedly connected between the stabilizing plate 103 and the inner wall of the side groove 101; an L-shaped plate 105, one end of which is fixedly connected to the stabilizing plate 103, and the other end is fixedly connected to a compacting plate 106 for compacting the sediment in the collection box 11.

[0038] In this embodiment, when the push plate 56 moves downward, it can drive the side groove 101 on the extension rod 9 to move downward, thereby driving the compacting plate 106 on the L-shaped plate 105 to move downward. During the process of gradual compaction of the sediment, the side groove 101 can drive the stabilizing rod 102 to move downward along the stabilizing plate 103 and compress the top spring 104, thereby providing a buffer for the compacting plate 106 and preventing the collection box 11 and the compacting plate 106 from being damaged by excessive pressure.

[0039] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A bridge pile hole sediment treatment device, comprising a support platform and a wheel plate, characterized in that: The support platform is provided with a downward pressure port, the wheel plate is provided with a through port and is fixed to the lower side of the support platform, and a moving wheel is installed at the lower end of the wheel plate; A support cover is fixedly mounted on the support platform, and long strips are opened on both sides of the support cover. A push-down mechanism is installed on the support cover and the support platform, and a buffer mechanism is fixedly connected to the power output end of the push-down mechanism. The push-down mechanism is used to drive the buffer mechanism to rise or fall. A suspension rod is fixedly arranged on the buffer mechanism, and the suspension rod passes through the support platform; A shoveling mechanism is fixedly connected to the lower end of the boom, and the boom is used to drive the shoveling mechanism into the pile hole to process the sediment; An extension rod has one end fixedly connected to the push-down mechanism and the other end passing through the long strip opening. The extension rod is fixedly connected to a compacting mechanism, the lower end of the compacting mechanism can pass through the push-down opening, and a collection box fixed on the support platform is provided directly below the compacting mechanism.

2. The bridge pile hole sediment treatment device according to claim 1, characterized in that: The push-down mechanism comprises: A first power member is fixedly mounted on the outside of the support cover, wherein an output shaft of the first power member is connected to a first bevel gear disposed in the support cover; A threaded column, with two ends thereof rotatably connected to the support platform and the inner wall of the support cover respectively, and a second bevel gear meshing with the first bevel gear fixed on the upper side of the threaded column; The guide column has two ends fixedly connected to the support platform and the support cover respectively. The guide column is sleeved with a lower push plate threadedly connected to the threaded column. The buffer mechanism is fixed on the lower push plate, and the extension rod is fixedly connected to the lower push plate.

3. The bridge pile hole sediment treatment device according to claim 1, characterized in that: The buffer mechanism comprises: A protection box is fixedly mounted on the push-down mechanism, wherein a buffer spring is fixedly arranged in the protection box, a plurality of buffer springs are provided and fixedly connected to a buffer plate, and a suspension rod and the buffer plate are fixedly connected; The guide groove is fixed on the inner wall of the protection box, and a guide wheel installed on the buffer plate is slidably arranged in the guide groove.

4. The bridge pile hole sediment treatment device according to claim 3, characterized in that: The scooping mechanism comprises: A limit plate is fixedly connected to the boom, a rotating assembly is mounted on the limit plate, a trough is mounted on the rotating assembly, and the rotating assembly is used to drive the trough to rotate; An external push assembly is mounted on the tank body. A sediment shovel is fixedly provided on the external push assembly. The rotating assembly is used to drive the sediment shovel to rotate through the tank body to scoop up sediment. Two sediment shovels are provided and a clamping rod is fixedly connected to each other at the ends close to each other. The clamping rod has a clamping opening. The locking assembly is mounted on the slot body, and the clamping rod can be inserted into the locking assembly. The locking assembly is used to lock the clamping rod.

5. The bridge pile hole sediment treatment device according to claim 4, characterized in that: The rotating assembly comprises: A heat dissipation box is fixedly mounted on the limiting plate, wherein a second power member is mounted in the heat dissipation box, and an output shaft of the second power member is fixedly connected to the first gear; The shaft has two ends rotatably connected to the inner wall of the heat dissipation box, a second gear meshing with the first gear is fixed on the shaft, a rotating column is fixedly provided on the shaft, and the trough body and the rotating column are fixedly connected; The stabilizing groove is fixed on the limiting plate, and a stabilizing wheel installed on the groove body is slidably arranged in the stabilizing groove.

6. The bridge pile hole sediment treatment device according to claim 4, characterized in that: The extrapolation component includes: A partition is fixedly arranged in the tank body, a slide rod is fixedly connected between the partition and the inner wall of the tank body, a slide plate is sleeved on the slide rod, a sediment shovel is fixedly connected to the slide plate, and a push spring is fixedly connected between the slide plate and the partition; The linkage gear is rotatably mounted in the slot body, linkage racks are meshed on both sides of the linkage gear, and the slide plate and the linkage racks are fixedly connected.

7. The bridge pile hole sediment treatment device according to claim 4, characterized in that: The locking assembly comprises: A fixed block is fixedly mounted on the tank body, wherein the fixed block is provided with a cavity and a clamping groove, and the clamping rod can be inserted into the clamping groove; A turning handle is rotatably mounted on the fixed block, and a cam rotatably disposed in the cavity is fixed on the turning handle; The guide post has two ends fixedly connected to the inner wall of the cavity defined by the fixed block, a guide plate is sleeved on the guide post, the cam and the guide plate are in sliding contact, and a clamping block extending into the clamping groove is fixed on the guide plate; The compression spring has two ends fixedly connected to the inner wall of the empty gun opened by the fixing block and the guide plate, and is used for pushing the clamping block into the clamping opening opened by the clamping rod.

8. The bridge pile hole sediment treatment device according to claim 1, characterized in that: The compacting mechanism comprises: A side groove is fixedly connected to the extension rod, a stabilizing rod is fixedly arranged in the side groove, a stabilizing plate is sleeved on the stabilizing rod, and a top spring is fixedly connected between the stabilizing plate and the inner wall of the side groove; One end of the L-shaped plate is fixedly connected to the stabilizing plate, and the other end is fixedly connected to a compacting plate for compacting the sediment in the collecting box.