Piling device for water conservancy protection side slope
By designing a combination of an extended bearing frame, a crawler drive frame, a piling mechanism, and a counterweight assembly, the construction challenges of piling devices for hydraulic protection slopes under complex geological conditions were solved. This enabled precise control of the pile position and stability of the device, improving construction quality and efficiency.
Patent Information
- Application Number
- CN202520405169.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-10
AI Technical Summary
Existing hydraulic slope protection piling devices are difficult to effectively control the position, depth, and inclination of piles under complex geological conditions, resulting in low construction quality and efficiency. They are particularly difficult to operate on slopes and pose a risk of device damage.
A device comprising a telescopic support frame, a track drive frame, a piling mechanism, a slope travel component, and a counterweight component is designed. By adjusting the angle of the track drive frame and the extension of the telescopic beam, the device can be stably fixed on the slope. The piling mechanism controls the depth and force of the piles, and the counterweight component increases stability and prevents overturning.
It enables precise control of the pile position under complex geological conditions, improves construction quality and efficiency, prevents damage to the device and slope, and ensures the stability and safety of the device on the slope.
Smart Images

Figure CN223805529U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water conservancy engineering technical field, concretely relates to a piling device for water conservancy protection side slope. BACKGROUND
[0002] The piling device for water conservancy protection side slope is an important equipment in water conservancy engineering slope protection construction, and its main function is to drive pile into soil, and selecting appropriate piling device and correct operation and maintenance can ensure construction quality and efficiency, and improve the stability and erosion resistance of side slope.
[0003] However, the geological conditions of water conservancy protection side slope are often complex and changeable, including rock stratum of different hardness, soil moisture content, underground water level and the like, these factors can greatly increase the difficulty of piling, and the position, depth and inclination of pile body need to be strictly controlled in the piling process to ensure the overall stability of side slope, and the existing device cannot effectively pile when the machine position is not enough or the piling point is located on the slope.
[0004] Therefore, it is necessary to provide a piling device for water conservancy protection side slope to solve the above problems. CONTENT OF UTILITY MODEL
[0005] To achieve the above object, the utility model provides the following technical scheme, a piling device for water conservancy protection side slope, comprising:
[0006] The stretchable carrier frame is fixedly assembled with track drive frames on both sides, each track drive frame is provided with a track on the periphery, and two side slope travel assemblies are fixedly assembled on the side of each track drive frame away from the stretchable carrier frame.
[0007] The piling mechanism is fixedly assembled at one end of the stretchable carrier frame in the travel direction.
[0008] The counterweight assembly is fixedly assembled on the upper surfaces of the two side slope travel assemblies on the same track drive frame.
[0009] Further, as a preferred, the stretchable carrier frame comprises:
[0010] The fixed carrier frame is rotatably assembled with two telescopic beams on both sides, and one track drive frame is horizontally fixedly assembled at the other end of the two telescopic beams on the same side.
[0011] Four first adjusting cylinders are arranged, one end of the four first adjusting cylinders is rotatably assembled on the lower surface of the fixed carrier frame, and the other end is rotatably assembled on the lower surfaces of the four telescopic beams respectively.
[0012] Further, as a preferred, the piling mechanism comprises:
[0013] The fixed plate is fixedly assembled at one end of the stretching carrier in the running direction, and an angle adjusting cylinder group is fixedly assembled at the other end of the fixed plate, a clamping sliding frame is fixedly assembled on the angle adjusting cylinder group, a sliding rail is slidably arranged on the clamping sliding frame, a driving sliding block is slidably arranged on the sliding rail, and a hydraulic pile hammer is fixedly assembled on the lower surface of the driving sliding block.
[0014] A pile driving auxiliary assembly is fixedly assembled at the lower end of the sliding rail and is located directly below the hydraulic pile hammer.
[0015] Further, as a preferred, a second adjusting cylinder is rotatably arranged on the angle adjusting cylinder group, and the other end of the second adjusting cylinder is rotatably arranged on the fixed plate.
[0016] Further, as a preferred, the pile driving auxiliary assembly comprises:
[0017] A fixed seat is fixedly assembled at the lower end of the sliding rail, two fixed sliding rods are fixedly assembled on the two sides of the fixed seat, a sliding clamping seat is slidably arranged on the two fixed sliding rods, and two limiting springs are fixedly arranged between the sliding clamping seat and the fixed seat, and the two limiting springs are respectively sleeved on the two fixed sliding rods.
[0018] Two pile clamps are symmetrically arranged and fixedly embedded in the middle of the two sides of the sliding clamping seat.
[0019] Further, as a preferred, the slope running assembly comprises:
[0020] A fixed connecting plate is fixedly assembled on the corresponding track drive frame, a fixed connecting rod is fixedly assembled on the lower surface of the fixed connecting plate, a rotating connecting rod is rotatably connected at the other end of the fixed connecting rod, and two running wheels are rotatably arranged on the other side of the rotating connecting rod.
[0021] A third adjusting cylinder is rotatably arranged between the fixed connecting rod and the rotating connecting rod.
[0022] Further, as a preferred, the counterweight assembly comprises:
[0023] A fixed beam is fixedly assembled on the upper surfaces of the two slope running assemblies on the same track drive frame, a support frame is fixedly assembled on the upper end surface of the fixed beam, an assembly threaded rod is horizontally fixedly assembled on the support frame, and a plurality of counterweight blocks are threadedly arranged on the assembly threaded rod.
[0024] A fixed nut is threadedly arranged on the assembly threaded rod.
[0025] Compared with the prior art, the pile driving device for water conservancy protection slope has the following beneficial effects:
[0026] The utility model discloses a stretch bearing frame's setting can make the relative position of device's track drive frame both sides elongate, can change the relative angle of two track drive frames simultaneously to can make device one end fixed on the horizontal plane of slope, and the other end sets up on the inclined plane to carry out piling operation to the piling point on the inclined plane.
[0027] The utility model discloses a pile driving mechanism is to pile driving, and the pile driving mechanism can control the maximum depth of pile driving, thereby effectively prevent the geological judgment error of piling position, and the device is damaged or the situation of piling too deep happens that piling strength is too big.
[0028] The utility model discloses the setting of side slope travel subassembly can make this side can smoothly travel on the inclined plane, makes the track of track drive frame that elongates on the inclined plane hang in the air simultaneously, prevents its damage to side slope.
[0029] The utility model discloses the setting of counterweight subassembly can make the weight of device one side increase, thereby making device not overturn because one side piles on the inclined plane, thereby effectively protecting device. ACCURACY OF DRAWINGS
[0030] Fig. 1 It is a water conservancy protection side slope's piling device structure schematic view;
[0031] Fig. 2 It is stretch bearing frame structure schematic view;
[0032] Fig. 3 It is pile driving mechanism structure schematic view;
[0033] Fig. 4 It is pile driving auxiliary subassembly structure schematic view;
[0034] Fig. 5 It is side slope travel subassembly structure schematic view;
[0035] Fig. 6 It is counterweight subassembly structure schematic view;
[0036] In the figure: 1, the stretching carrier frame; 2, the track drive frame; 3, the track; 4, the piling mechanism; 5, the slope traveling assembly; 6, the counterweight assembly; 11, the fixed carrier frame; 12, the telescopic beam; 13, the first adjusting cylinder; 41, the fixed plate; 42, the angle adjusting cylinder group; 43, the clamping sliding frame; 44, the sliding rail; 45, the driving sliding block; 46, the hydraulic piling hammer; 47, the piling auxiliary assembly; 48, the second adjusting cylinder; 471, the fixed seat; 472, the fixed sliding rod; 473, the sliding clamping seat; 474, the limiting spring; 475, the pile clamp; 51, the fixed connecting plate; 52, the fixed connecting rod; 53, the rotating connecting rod; 54, the traveling wheel; 55, the third adjusting cylinder; 61, the fixed beam; 62, the support frame; 63, the assembled threaded rod; 64, the counterweight; 65, the fixed nut. DETAILED DESCRIPTION
[0037] Please refer to Figs. 1-6 The utility model provides a water conservancy protection slope's piling device, include:
[0038] The stretching carrier frame 1 is fixedly provided with the track drive frame 2 on both sides, each track drive frame 2 is provided with the track 3 on the side, and each track drive frame 2 is fixedly provided with two slope traveling assemblies 5 on the side away from the stretching carrier frame 1.
[0039] The piling mechanism 4 is fixedly arranged at one end of the stretching carrier frame 1 in the traveling direction.
[0040] The counterweight assembly 6 is fixedly arranged on the upper surface of the two slope traveling assemblies 5 on the same track drive frame 2.
[0041] As a preferred embodiment, the stretching carrier frame 1 can make the relative positions of the two sides of the track drive frame 2 of the device elongate, and the relative angle of the two track drive frames 2 can be changed, so that one end of the device can be fixed on the horizontal plane of the slope, and the other end can be arranged on the inclined plane to perform piling operation on the piling point on the inclined plane, the piling mechanism 4 can pile the piling point, and the maximum depth of the pile can be controlled, so that the device can be effectively prevented from being damaged due to the overlarge piling force or the overdeep piling caused by the error in the geological judgment of the piling position, and the slope traveling assembly 5 can make the side smoothly travel on the inclined plane, and the track 3 on the elongated track drive frame 2 on the inclined plane can be suspended to prevent damage to the slope, and the counterweight assembly 6 can increase the weight of one side of the device, so that the device will not be overturned due to piling on one side of the inclined plane, and the device can be effectively protected.
[0042] Further, the stretching carrier frame 1 includes:
[0043] The fixed bearing frame 11 is rotatably equipped with two telescopic beams 12 on both sides, and the other ends of the two telescopic beams 12 on the same side are horizontally fixedly equipped with a caterpillar drive frame 2.
[0044] The first adjusting cylinder 13 is provided with four, one end of the four first adjusting cylinders 13 is rotatably equipped on the lower surface of the fixed bearing frame 11, and the other end is rotatably equipped on the lower surface of the four telescopic beams 12 respectively.
[0045] As a preferred embodiment, when the device needs to be piled, the telescopic beam 12 can be appropriately elongated, thereby increasing the supporting capacity of the device, so that it can better perform the piling operation, and when the piling point on the slope needs to be piled, the two telescopic beams 12 in the opposite direction of the slope can be elongated, and the angle of the two caterpillar drive frames 2 can be adjusted through the two first adjusting cylinders 13 on the same side, so that the angle between the two caterpillar drive frames 2 is equal to the slope angle, and then the other two telescopic beams 12 are elongated, so that the piling mechanism 4 reaches the piling point position.
[0046] It is worth noting that when the four first adjusting cylinders 13 are located on the lower surface of the fixed bearing frame 11, the device can pile the downward slope, and when the four first adjusting cylinders 13 are located on the upper surface of the fixed bearing frame 11, the device can pile the upward slope.
[0047] Further, the piling mechanism 4 comprises:
[0048] The fixed plate 41 is fixedly equipped on one end of the extension bearing frame 1 in the running direction, the other end of the fixed plate 41 is fixedly equipped with an angle adjusting cylinder group 42, the angle adjusting cylinder group 42 is fixedly equipped with a clamping sliding frame 43, the clamping sliding frame 43 is slidably provided with a sliding rail 44, the sliding rail 44 is slidably provided with a driving sliding block 45, and the lower surface of the driving sliding block 45 is fixedly equipped with a hydraulic pile hammer 46.
[0049] The piling auxiliary assembly 47 is fixedly equipped at the lower end of the sliding rail 44, and the piling auxiliary assembly 47 is located directly below the hydraulic pile hammer 46.
[0050] As a preferred embodiment, the angle between the pile and the piling point can be changed by adjusting the angle adjusting cylinder group 42, the relative height of the device and the piling point can be changed by the sliding of the sliding rail 44 on the clamping sliding frame 43, the pile is driven into the piling point by the hydraulic pressure of the hydraulic pile hammer 46, and the relative position with the pile is adjusted by the driving sliding block 45 during the piling process, the piling depth is limited by the piling auxiliary assembly 47, so as to prevent the device from being damaged due to the error of the geological judgment of the piling position and the excessive force of the hydraulic pile hammer 46, or the piling depth is too deep.
[0051] Further, the angle adjusting cylinder group 42 is rotationally provided with a second adjusting cylinder 48, and the other end of the second adjusting cylinder 48 is rotationally provided on the fixed plate 41.
[0052] As a preferred embodiment, the second adjusting cylinder 48 can further increase the adjustment range of the angle between the pile and the pile driving point plane.
[0053] Further, the pile driving auxiliary assembly 47 comprises:
[0054] A fixed seat 471 is fixedly assembled at the lower end of the sliding rail 44, and two fixed sliding rods 472 are fixedly assembled on both sides of the fixed seat 471. A sliding clamping seat 473 is slidingly arranged on the two fixed sliding rods 472, and two limiting springs 474 are fixedly arranged between the sliding clamping seat 473 and the fixed seat 471, and the two limiting springs 474 are respectively sleeved on the two fixed sliding rods 472.
[0055] Two pile clamps 475 are mirror image arranged and fixedly embedded on both sides of the middle part of the sliding clamping seat 473.
[0056] As a preferred embodiment, the pile to be driven is clamped by the two pile clamps 475, and then the pile driving operation is performed. During the pile driving, the two pile clamps 475 and the sliding clamping seat 473 will descend with the pile, and in the process of descending, the two limiting springs 474 will be compressed until the two limiting springs 474 stop compressing. The two pile clamps 475 release the pile, and rebound under the elastic force of the two limiting springs 474 until they stop, and then continue to clamp the pile, perform the pile driving operation, and reach the limit position. At this time, a part of the pile will be left on the ground. If the part left on the ground is not needed or the length left is too long, the hydraulic pile hammer 46 will be used to slowly knock into the pile according to the previous pile driving data.
[0057] Further, the slope advancing assembly 5 comprises:
[0058] A fixed connecting plate 51 is fixedly assembled on the corresponding track driving frame 2, and a fixed connecting rod 52 is fixedly assembled on the lower surface of the fixed connecting plate 51. The other end of the fixed connecting rod 52 is rotationally connected with a rotating connecting rod 53, and two advancing wheels 54 are rotationally assembled on the other side of the rotating connecting rod 53.
[0059] A third adjusting cylinder 55 is rotationally arranged between the fixed connecting rod 52 and the rotating connecting rod 53.
[0060] As a preferred embodiment, when the piling operation on the slope is needed, the third adjusting cylinder 55 of the slope side traveling assembly 5 is extended to make the traveling wheel 54 extend out, thereby supporting the caterpillar track 3 on this side, which can smoothly travel on the slope, and the caterpillar track 3 on the caterpillar track drive frame 2 extended on the slope is suspended, preventing it from damaging the slope.
[0061] Further, the counterweight assembly 6 comprises:
[0062] The fixed beam 61 is fixedly arranged on the upper surface of the two slope traveling assemblies 5 on the same caterpillar track drive frame 2, the upper end surface of the fixed beam 61 is fixedly arranged with a support frame 62, the support frame 62 is horizontally fixedly arranged with an assembled threaded rod 63, and a plurality of counterweight blocks 64 are threadedly arranged on the assembled threaded rod 63.
[0063] The fixed nut 65 is threadedly arranged on the assembled threaded rod 63.
[0064] As a preferred embodiment, when the piling operation on the slope is needed, the third adjusting cylinder 55 of the slope side traveling assembly 5 is extended to make the traveling wheel 54 extend out, thereby supporting the caterpillar track 3 on this side, which can smoothly travel on the slope, and the caterpillar track 3 on the caterpillar track drive frame 2 extended on the slope is suspended, preventing it from damaging the slope.
[0065] Specific implementation includes the following steps: when the piling operation on the slope is needed, the third adjusting cylinder 55 of the slope side traveling assembly 5 is extended to make the traveling wheel 54 extend out, thereby supporting the caterpillar track 3 on this side, which can smoothly travel on the slope, and the caterpillar track 3 on the caterpillar track drive frame 2 extended on the slope is suspended, preventing it from damaging the slope.
[0066] The above is only a preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A pile driving apparatus for use in the construction of a water conservancy protection slope, characterized by: Include: The stretch carrier (1) is fixedly provided with a track drive frame (2) on both sides, each track drive frame (2) is provided with a track (3) on the side, and each track drive frame (2) is fixedly provided with two slope travel assemblies (5) away from the stretch carrier (1); The pile driving mechanism (4) is fixedly provided on one end of the stretch carrier (1) in the direction of travel; The counterweight assembly (6) is fixedly provided on the upper surface of the two slope travel assemblies (5) on the same track drive frame (2).
2. A piling device for water conservancy protection slope according to claim 1, characterized in that: The stretch carrier (1) comprises: The fixed carrier (11) is rotatably provided with two telescopic beams (12) on both sides, and the other ends of the two telescopic beams (12) on the same side are fixedly provided with a track drive frame (2); Four first adjusting cylinders (13) are provided, one end of the four first adjusting cylinders (13) is rotatably provided on the lower surface of the fixed carrier (11), and the other end is rotatably provided on the lower surface of the four telescopic beams (12).
3. A piling device for water conservancy protection slope according to claim 1, characterized in that: The pile driving mechanism (4) comprises: The fixed plate (41) is fixedly provided on one end of the stretch carrier (1) in the direction of travel, the other end of the fixed plate (41) is fixedly provided with an angle adjusting cylinder group (42), the angle adjusting cylinder group (42) is fixedly provided with a clamping sliding frame (43), the clamping sliding frame (43) is slidably provided with a sliding rail (44), the sliding rail (44) is slidably provided with a driving sliding block (45), and the lower surface of the driving sliding block (45) is fixedly provided with a hydraulic pile hammer (46); The pile driving auxiliary assembly (47) is fixedly provided at the lower end of the sliding rail (44), and the pile driving auxiliary assembly (47) is located directly below the hydraulic pile hammer (46).
4. A piling device for water conservancy protection slope according to claim 3, characterized in that: The angle adjusting cylinder group (42) is rotatably provided with a second adjusting cylinder (48), and the other end of the second adjusting cylinder (48) is rotatably provided on the fixed plate (41).
5. A piling device for water conservancy protection slope according to claim 3, characterized in that: The pile driving auxiliary assembly (47) comprises: The fixed seat (471) is fixedly provided at the lower end of the sliding rail (44), the fixed seat (471) is fixedly provided with a fixed sliding rod (472) on both sides, the two fixed sliding rods (472) are slidably provided with a sliding clamping seat (473), and two limiting springs (474) are fixedly arranged between the sliding clamping seat (473) and the fixed seat (471), and the two limiting springs (474) are respectively sleeved on the two fixed sliding rods (472); The pile clamping device (475) is mirror image provided with two, and is fixedly embedded in the middle of the sliding clamping seat (473) on both sides.
6. A piling device for water conservancy protection slope according to claim 1, characterized in that: The slope travel assembly (5) comprises: The fixed connecting plate (51) is fixedly provided on the corresponding track drive frame (2), the lower surface of the fixed connecting plate (51) is fixedly provided with a fixed connecting rod (52), the other end of the fixed connecting rod (52) is rotatably connected with a rotating connecting rod (53), and the other side of the rotating connecting rod (53) is rotatably provided with two travel wheels (54); The third adjusting cylinder (55) is rotatably arranged between the fixed connecting rod (52) and the rotating connecting rod (53).
7. A piling device for water conservancy protection slope according to claim 1, characterized in that: The counterweight assembly (6) comprises: The fixed beam (61) is fixedly assembled on the upper surface of the two side slope traveling assemblies (5) on the same track driving frame (2), the upper end surface of the fixed beam (61) is fixedly assembled with a supporting frame (62), the upper horizontal surface of the supporting frame (62) is fixedly assembled with an assembled threaded rod (63), and a plurality of counterweight blocks (64) are threadedly arranged on the assembled threaded rod (63). A fixed nut (65) is threadedly arranged on the assembled threaded rod (63).