Excavator tamping device

By installing a rammer and rammer plate on the excavator, combined with an inclination sensor and a resistive strain gauge, efficient compaction and safety warning can be achieved in locations that the roller cannot reach, solving the problems of low compaction efficiency and poor safety in construction and improving construction efficiency and safety.

CN223373696UActive Publication Date: 2025-09-23ANHUI WATER CONSERVANCY DEV CO LTD
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Patent Information

Application Number
CN202423315894.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-09-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In the existing technology, the compaction efficiency of backfill soil in construction is low and there are safety hazards, especially in places where rollers cannot reach, and large-scale compaction operations cannot be used. The problem that cannot be effectively solved is to provide an excavator compaction device, which is installed on the hydraulic breaker hammer head of the excavator, and realizes the safety warning function through the inclination sensor and the resistive strain gauge, thereby solving the problems of low compaction efficiency and poor safety in the existing technology.

Method used

A compacting device for an excavator is designed, comprising a vertically arranged cylindrical rammer and a horizontally arranged rammer plate, with an inclination sensor embedded in the rammer plate, ribs and a long strip plate, a resistance strain gauge, a detection device through the ...

Benefits of technology

It achieves efficient compaction in locations that rollers cannot reach, can adapt to complex terrain, has a safety warning function, improves construction efficiency and safety, and reduces the danger of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

A tamping device of an excavator comprises a tamping hammer, a rectangular tamping plate is arranged on the lower side of the tamping hammer, a tilt angle sensor is embedded in the upper side of the tamping plate, four first rib plates and four second rib plates which extend in the radial direction and are connected with the tamping plate are arranged on the lower portion of the tamping hammer, and the first rib plates extend to the centers of the four rectangular side edges of the tamping plate. The second rib plates extend to the four rectangular corners of the tamping plate, each first rib plate is provided with a rectangular through groove, each rectangular through groove is internally provided with a vertical long-strip-shaped plate, the long-strip-shaped plates are parallel to the corresponding first rib plates, the upper ends and the lower ends of the long-strip-shaped plates are connected with the corresponding rectangular through grooves respectively, the thickness of the long-strip-shaped plates is smaller than that of the first rib plates, and the thickness of the long-strip-shaped plates is smaller than that of the first rib plates. Resistance type strain gauges are arranged on the two sides of each long-strip-shaped plate in the thickness direction. The device is mounted on a hydraulic breaking hammer head of the excavator, can be used for tamping at the backfill positions of beams, walls and column sides where a road roller cannot reach, can be used for accurately controlling the inclination angle of the tamping plate, and also has a safety early warning function.
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Description

Technical Field

[0001] The utility model relates to a compacting device for an excavator. Background Art

[0002] During construction, foundation beams, columns, and shear walls require backfill, which must then be compacted. Inadequate backfill can result in suspended scaffolding, potentially leading to safety incidents such as scaffold collapse in the early stages and, later, floor subsidence and cracking. Due to the unique location of the backfill, large-scale rollers cannot be used. Currently, the construction industry generally uses manual, hand-held diesel tampers to compact the backfill around foundation beams, columns, and shear walls. The tamping machine structure is described in Chinese patent CN201710421386.7. This method is inefficient, and manual operation is dangerous, with no guarantee of quality. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide an excavator compacting device, which is installed on the hydraulic breaker hammer head of the excavator and can compact backfill soil at the edges of beams, walls and columns that cannot be reached by the roller. The inclination angle of the compacting plate can be accurately controlled and it also has a safety warning function.

[0004] In order to solve the above technical problems, the utility model provides an excavator compacting device, including a vertically arranged cylindrical rammer, a horizontally arranged rectangular rammer plate is provided at the lower side of the rammer, at least one inclination sensor is embedded on the upper side of the rammer, and the lower part of the rammer is provided with four vertically arranged first ribs extending radially outward along the rammer and connected to the rammer plate, the four first ribs extend along the length direction away from the end of the rammer to the centers of the four rectangular sides of the rammer plate respectively, the lower part of the rammer is also provided with four vertically arranged second ribs extending radially outward along the rammer and connected to the rammer plate, the four second ribs extend along the length direction away from the end of the rammer to the four rectangular sides of the rammer plate respectively Corner, each of the first ribs is provided with a rectangular through-slot running through it in the thickness direction, the rectangular through-slot is located in the middle area in the height direction of the corresponding first rib, each rectangular through-slot is provided with a vertically arranged long strip plate, each long strip plate is arranged parallel to the corresponding first rib, the upper and lower ends of each long strip plate are respectively connected to the upper and lower edges of the corresponding rectangular through-slot, both sides in the width direction of each long strip plate are in a non-contact state with the edges of the corresponding rectangular through-slot, the thickness of each long strip plate is less than the thickness of the corresponding first rib, and resistive strain gauges are provided on both sides in the thickness direction of each long strip plate corresponding to the middle area in the height direction.

[0005] For the purpose of simple explanation, the excavator compacting device described in the present invention is referred to as the device below.

[0006] Advantages of this device: The upper end of the rammer of this device is fixed to the end of the hydraulic breaker hammer head of the excavator, and the whole device reciprocates with the hydraulic breaker hammer head, converting the original crushing impact of the crushing hammer head into a compacting impact. Under the combined action of gravity and the hydraulic accumulator, the rammer plate repeatedly impacts the ground to achieve a compacting effect. Due to the high maneuverability of the excavator and the flexible swing arm control, this device can be used to compact the backfill soil at the edge of beams, walls, and columns that the roller cannot reach. Since this device is controlled by the excavator's swing arm, it can not only compact flat ground, but also adapt to various terrains and various operating methods. It can complete the processing of complex foundations such as plane compaction, slope compaction, step compaction, groove and pit compaction, etc. The inclination sensor can detect the inclination angle of the rammer plate in real time, and transmit the inclination information of the rammer plate to the operator through the external controller and display screen. The operator can accurately adjust the inclination angle of the rammer plate according to actual needs. When the rammer is performing compaction operations, it is inevitable that the rammer or rammer plate may break or bend due to uneven force or collision with hard objects. If this is not discovered and repaired in time, it will not only affect the compaction effect, but also pose a risk of injury. When this device performs the tamping operation, the four first ribs will produce a small amount of deformation due to the supporting force at each impact, and the resistive strain gauges provided on the long strip plate will also undergo corresponding compression or tension deformation with the corresponding first ribs. This deformation will cause the resistance of the resistive strain gauge itself to change. Through the principle of the Wheatstone bridge, the force size and direction are calibrated with the resistance change of each resistive strain gauge, so that the current force conditions of the rammer and rammer plate are reflected by detecting the changes in the resistance values ​​of all resistive strain gauges. The force conditions can also be transmitted to the operator through an external controller and display screen. When a force condition exceeds its limit load, a timely warning can be issued to prevent further danger. The long strip plate is provided in a rectangular through groove, with only the upper and lower ends connected to the ribs, and the thickness of each long strip plate is less than the thickness of the corresponding first rib. This can amplify the deformation amount, thereby increasing the detection accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1 It is a top view of the device.

[0008] Figure 2 yes Figure 1 AA cross-sectional view (to facilitate the display of structural features, Figure 2 The second rib is not shown).

[0009] Figure 3 yes Figure 2 A partial enlarged view of part B in the middle. DETAILED DESCRIPTION

[0010] See also Figure 1-Figure 3, an excavator compacting device, including a vertically arranged cylindrical rammer 1, a horizontally arranged rectangular rammer plate 2 is provided at the lower side of the rammer 1, and an inclination sensor 3 is embedded on the upper side of the rammer plate 2. The lower part of the rammer 1 is provided with four vertically arranged first ribs 4 extending radially outward along the rammer 1 and connected to the rammer plate 2. The four first ribs 4 extend along the length direction away from the end of the rammer 1 to the centers of the four sides of the rectangle of the rammer plate 2 respectively. The lower part of the rammer 1 is also provided with four vertically arranged second ribs 5 extending radially outward along the rammer 1 and connected to the rammer plate 2. The four second ribs 5 extend along the length direction away from the end of the rammer 1 to the four corners of the rectangle of the rammer plate 2 respectively. Each rib 4 is provided with a rectangular through-slot 41 running through it in the thickness direction. The rectangular through-slot 41 is located in the middle area in the height direction of the corresponding first rib 4. A vertically arranged long strip plate 6 is provided in each rectangular through-slot 41. Each long strip plate 6 is arranged parallel to the corresponding first rib 4. The upper and lower ends of each long strip plate 6 are respectively connected to the upper and lower edges of the corresponding rectangular through-slot 41. Both sides of the width direction of each long strip plate 6 are in a non-contact state with the edges of the corresponding rectangular through-slot 41. The thickness of each long strip plate 6 is less than the thickness of the corresponding first rib 4, and a resistive strain gauge 7 is provided on both sides of the thickness direction of each long strip plate 6 corresponding to the middle area in the height direction.

Claims

1. An excavator compacting device, characterized in that: The invention comprises a vertically arranged cylindrical rammer, a horizontally arranged rectangular rammer plate is provided on the lower side of the rammer, at least one inclination sensor is embedded on the upper side of the rammer, and four vertically arranged first ribs are provided on the lower part of the rammer, extending radially outward along the rammer and connected to the rammer plate, and the four first ribs extend along the length direction away from the end of the rammer to the centers of the four sides of the rammer rectangle respectively, and the lower part of the rammer is also provided with four vertically arranged second ribs extending radially outward along the rammer and connected to the rammer plate, and the four second ribs extend along the length direction away from the end of the rammer to the four corners of the rammer rectangle respectively, and each of the first ribs has There is a rectangular through-slot running through it in the thickness direction, and the rectangular through-slot is located in the middle area in the height direction of the corresponding first rib. There is a vertically arranged long strip plate in each rectangular through-slot, and each long strip plate is arranged parallel to the corresponding first rib. The upper and lower ends of each long strip plate are respectively connected to the upper and lower edges of the corresponding rectangular through-slot, and both sides of the width direction of each long strip plate are in a non-contact state with the edges of the corresponding rectangular through-slot. The thickness of each long strip plate is less than the thickness of the corresponding first rib, and resistive strain gauges are provided on both sides of the thickness direction of each long strip plate corresponding to the middle area in the height direction.

Citation Information

Patent Citations

  • Tamping machine

    CN107012851A