CN223316298U - Slope protection construction equipment - Google Patents
Slope protection construction equipmentInfo
- Publication number
- CN223316298U CN223316298U CN202422747783.1U CN202422747783U CN223316298U CN 223316298 U CN223316298 U CN 223316298U CN 202422747783 U CN202422747783 U CN 202422747783U CN 223316298 U CN223316298 U CN 223316298U
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- China
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- slope
- assembly
- telescopic
- lifting
- subassembly
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Abstract
The utility model relates to the technical field of slope protection engineering, in particular to slope protection construction equipment, which comprises a moving assembly, a lifting assembly, a telescopic assembly and a carrying assembly, wherein the lifting assembly is arranged on the upper part of the moving assembly, the lifting assembly is arranged on one side of the moving assembly, which is close to a slope surface of a slope, the telescopic assembly is rotationally connected with the lifting assembly, the telescopic assembly is unfolded and then is arranged on the slope surface of the slope, one end of the telescopic assembly is abutted to the bottom of the slope, the carrying assembly is arranged on the outer side of the telescopic assembly, the carrying assembly is in rolling connection with the telescopic assembly through rollers, the telescopic assembly can be arranged on the slope, the carrying assembly is driven by the lifting assembly to convey slope protection bricks along the telescopic assembly, meanwhile, the lifting assembly is matched with the telescopic assembly, the telescopic bracket can be retracted, manpower transportation is avoided, the construction safety is improved, the occupied space of the equipment is small, and the equipment is convenient to transport and load and unload.
Description
Technical Field
The utility model relates to the technical field of slope protection engineering, in particular to slope protection construction equipment.
Background
The slope protection refers to the collective name of various paving and planting made on the slope surface for preventing the slope from being washed, the slope protection brick is paved on the slope surface, which is one of the important means of slope protection engineering, in the process of paving the slope protection brick, the slope protection brick needs to be conveyed to the slope for paving, the transportation of the slope protection brick at present mostly depends on manpower, workers need to carry the slope and the side bank in the past, the construction efficiency is low, meanwhile, the construction safety is greatly influenced by the load walking on the slope, and the safety accidents caused by the sliding of the slope protection brick are easy to occur.
Disclosure of utility model
In view of the above problems, the present utility model provides a slope protection construction device to solve the problems of the prior art.
The utility model solves the technical problems by adopting the technical scheme that:
Slope protection construction equipment, dock on the slope roof of side slope, including moving the subassembly, lifting unit, flexible subassembly and carrying the thing subassembly, lift unit installs in moving subassembly upper portion, lifting unit installs and is being close to the domatic one side of side slope at moving the subassembly, flexible subassembly rotates with lifting unit to be connected, and flexible subassembly is set up on the domatic of side slope after expanding, and flexible subassembly's one end and the butt of the slope bottom of side slope, carry the thing subassembly to set up in flexible subassembly outside, carry thing subassembly and flexible subassembly to pass through gyro wheel roll connection, lift unit passes through the lifting rope and carries the thing subassembly to be connected, and flexible subassembly includes rotation support and flexible support, and rotation support passes through the rack cooperation of gear structure and flexible support and stretches out and draws back.
Further, the telescopic assembly further comprises a telescopic hydraulic cylinder and an adjusting assembly, one end of the rotating support, which is close to the top of the slope, is hinged to one side of the lifting assembly, which is close to the slope, the telescopic hydraulic cylinder is arranged at the joint of the rotating support and the lifting assembly, the telescopic support is in sliding connection with the rotating support, the adjusting assembly is arranged at one end of the rotating support, which is close to the bottom of the slope, and the rotating support and the telescopic support are erected on the slope of the slope.
Further, the rotating support comprises two rotating support rods which are symmetrically arranged, a plurality of first cross beams are arranged between the two rotating support rods at intervals, a first sliding groove is formed in the middle of the upper surface of the rotating support rod, two sides of the upper end of the rotating support rod are symmetrically provided with inverted L-shaped limiting bosses, and two sides of the first sliding groove are symmetrically provided with stop grooves.
Further, the telescopic bracket comprises two telescopic struts which are symmetrically arranged, a plurality of second cross beams are arranged between the two telescopic struts at intervals, a second sliding groove is formed in the middle of the upper surface of the telescopic struts, racks are fixedly connected in the middle of the lower surface of the telescopic struts, and two sides of each rack are slidably connected with the upper parts of the first sliding grooves.
Further, one end of the rack, which is close to the top of the slope, is connected with a guide block, the guide block is provided with an inclined plane, two sides of the guide block are provided with stop bars extending outwards, the stop bars are in sliding connection with stop grooves on the rotating support rods, and two sides of the telescopic support rods are provided with limit grooves which are in sliding connection with limit bosses.
The adjusting assembly comprises a motor, a first gear, a second gear and a rotating shaft, wherein the first gear and the second gear are respectively arranged in the lower portion of the first sliding groove, the motor is arranged on the outer side of one rotating support rod close to one end of the slope bottom, one end of the rotating shaft penetrates through the rotating support rod to be fixedly connected with an output shaft of the motor, the other end of the rotating shaft extends into the first sliding groove of the other rotating support rod, the first gear and the second gear are respectively and fixedly arranged at two ends of the rotating shaft, and the first gear and the second gear are respectively meshed with two racks of the telescopic support.
Further, the object carrying assembly comprises a scooter, a turnover hydraulic cylinder, a first connecting rod, a second connecting rod and an object carrying box, wherein two rollers are respectively arranged on two sides of the lower portion of the scooter, the rollers are in rolling connection with the first sliding groove or the second sliding groove, one side of the scooter is hinged with the object carrying box, one end of a cylinder body of the turnover hydraulic cylinder is rotationally connected with one side of the scooter, the second connecting rod is symmetrically arranged on two sides of the turnover hydraulic cylinder, one end of the second connecting rod is rotationally connected with one side of the scooter, the other end of the second connecting rod is hinged with one end of the first connecting rod, the other end of the first connecting rod is hinged with the lower surface of the object carrying box, a connecting shaft is fixedly connected between the two first connecting rods, and the movable end of the turnover hydraulic cylinder is rotationally connected with the middle part of the connecting shaft.
Further, the movable assembly comprises a base, a support, a supporting table, a pushing handle and a baffle, wherein the base is placed on the top of a slope, the support is arranged in the middle of the base and extends upwards, the supporting table is horizontally fixed above the support, a diagonal column is fixedly arranged above the supporting table, the pushing handle is fixed on one side, away from the slope, of the base, and the baffle is fixed on one side, close to the slope, of the base.
Further, the lifting assembly comprises an electric hoist and a first pulley, the electric hoist is arranged above the supporting table, the first pulley is arranged at the upper end of the inclined column on the supporting table, one end of the lifting rope is connected with the electric hoist, and the other end of the lifting rope bypasses the first pulley and is connected with a hanging lug arranged on the scooter.
Further, the lifting assembly comprises a lifting hydraulic cylinder, a shearing fork arm, a lifting table and a base, wherein the base is arranged on the base, the base is arranged on one side of the base, which is close to the slope, the lifting table is connected with the base through a plurality of stages of shearing fork arms, the lifting hydraulic cylinder is a multi-stage hydraulic cylinder, and a cylinder body of the telescopic hydraulic cylinder is hinged with the lower part of the lifting table.
Compared with the prior art, the utility model has the beneficial effects that:
1. according to the slope protection construction equipment, the telescopic assembly can be erected on the slope, the object carrying assembly is driven by the lifting assembly to convey the slope protection bricks along the telescopic assembly, so that manual carrying is avoided, the construction efficiency is improved, and the construction safety is improved.
2. The slope protection construction equipment provided by the utility model has the advantages that the lifting component is matched with the telescopic component, the telescopic bracket can be retracted, the occupied space of the equipment is small, and the transportation and the loading and unloading of the equipment are more convenient.
Drawings
The utility model is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic diagram of the working state of a slope protection construction device according to the present utility model;
FIG. 2 is a schematic view of a slope protection construction device in a retracted state according to the present utility model;
FIG. 3 is a schematic view of a lifting assembly according to the present utility model;
FIG. 4 is an exploded view of the telescopic assembly of the present utility model;
FIG. 5 is an exploded partial enlarged view of the telescopic assembly according to the present utility model;
FIG. 6 is a schematic view of a detent groove according to the present utility model;
FIG. 7 is a cross-sectional view of an adjustment assembly according to the present utility model;
FIG. 8 is a schematic side view of a carrier assembly according to the present utility model
Fig. 9 is a schematic diagram of another side of the carrier assembly according to the present utility model.
1, Side slope, 2, moving assembly, 21, base, 22, pillar, 23, supporting bench, 24, pushing handle, 25, castor, 26, balancing weight, 27, baffle, 3, lifting assembly, 31, electric hoist, 32, first pulley, 33, lifting rope, 4, lifting assembly, 41, lifting hydraulic cylinder, 42, scissor arm, 43, lifting bench, 431, second pulley, 44, base, 5, telescopic assembly, 51, telescopic hydraulic cylinder, 52, rotating bracket, 521, first chute, 522, rotating strut, 523, limit boss, 524, stop slot, 53, telescopic bracket, 531, second chute, 532, rack, 533, guide block, 534, limit slot, 535, stop rod, 536, telescopic strut, 54, adjusting assembly, 541, motor, 542, first gear, 543, second gear, 544, rotating shaft, 6, carrying assembly, 61, scooter, 611, roller, 612, ear, 62, overturning hydraulic cylinder, 63, first link, 631, connecting shaft, 64, second link, and box.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
In the following description of the present invention, it should be noted that the terms "upper", "lower", "left", "right", "inner", "outer", and the like indicate an orientation or a positional relationship based on that shown in the drawings, and are merely for convenience of describing the present invention and simplifying the description, and do not indicate or imply that the apparatus or elements to be referred to must have a specific orientation or be constructed and operated in a specific orientation. The term "connected" merely means a connection between devices and is not of special significance.
1-9, A slope protection construction equipment berths on the slope top of side slope 1, including moving subassembly 2, lifting unit 3, lifting unit 4, flexible subassembly 5 and carrying article subassembly 6, lifting unit 3 installs on moving unit 2 upper portion, lifting unit 4 installs in moving unit 2 and is close to the domatic one side of side slope 1, flexible subassembly 5 is connected with lifting unit 4 rotation, and flexible subassembly 5 is set up on the domatic of side slope 1 after expanding, and the one end butt of flexible subassembly 5 and the slope bottom of side slope 1, carrying article subassembly 6 sets up in flexible subassembly 5 outside, carrying article subassembly 6 passes through gyro wheel roll connection with flexible subassembly 5.
Further, the moving assembly 2 comprises a base 21, a support column 22, a supporting table 23, a pushing handle 24, casters 25, a balancing weight 26 and a baffle 27, wherein the base 21 is placed on the top of the slope 1, the casters 25 are installed below the base 21 and are convenient for moving the moving assembly 2, the support column 22 is arranged in the middle of the base 21 and extends upwards, a plurality of inclined beams are arranged around the support column 22 to support the support column 22, the supporting table 23 is horizontally fixed above the support column 22, the inclined columns are fixedly arranged above the supporting table 23, the pushing handle 24 is fixed on one side, away from the slope, of the base 21, so that a constructor can conveniently push the moving assembly 2, the balancing weight 26 is arranged on the upper surface of the base 21, the balancing weight 26 is arranged between the pushing handle 24 and the support column 22, the balancing weight 26 plays a role in preventing equipment from tilting, the baffle 27 is fixed on the base 21, the baffle 27 is fixed on one side, close to the slope of the base 21, and plays a limiting role in the retracted telescopic assembly 5.
Further, the lifting assembly 3 comprises an electric hoist 31, a first pulley 32 and a lifting rope 33, the electric hoist 31 is installed above the supporting table 23, the first pulley 32 is installed at the upper end of an inclined column on the supporting table 23, one end of the lifting rope 33 is connected with the electric hoist 31, and the other end of the lifting rope 33 bypasses the first pulley 32 to be connected with the carrying assembly 6.
Further, the lifting assembly 4 includes a lifting hydraulic cylinder 41, a scissor arm 42, a lifting platform 43 and a base 44, the base 44 is mounted on the base 21, the base 44 is disposed on one side of the base 21 close to the slope, the lifting platform 43 and the base 44 are connected through a plurality of stages of scissor arms 42, each stage of scissor arm 42 is hinged with the scissor arm 42 of an adjacent stage, two sides of one end of the upper portion of the base 44 are respectively hinged with two scissor arms 42 of the lower stage, two sides of the other end of the upper portion of the base 44 are respectively hinged with the other two scissor arms 42 of the lower stage and are in sliding connection, two sides of one end of the lower portion of the lifting platform 43 are respectively hinged with the two other scissor arms 42 of the upper stage, the lifting hydraulic cylinder 41 is provided with two stages of hydraulic cylinders at intervals, the cylinder body of the lifting hydraulic cylinder 41 is hinged with the scissor arms 42 of the adjacent stage, the movable end of the lifting hydraulic cylinder 41 is hinged with the scissor arms 42 of the adjacent stage, the lifting platform is in sliding connection with the other scissor arms of the adjacent stage, the lifting platform is a traction rope 431 is not changed from the outer side of the lifting platform to the second pulley 33, and the traction rope is not changed from the outer side of the lifting platform 43.
Further, the telescopic assembly 5 comprises telescopic hydraulic cylinders 51, rotating supports 52, telescopic supports 53 and adjusting assemblies 54, two telescopic hydraulic cylinders 51 are arranged at intervals, the cylinder body of each telescopic hydraulic cylinder 51 is hinged to the lower portion of the lifting table 43, one end, close to the top of a slope, of each rotating support 52 is hinged to the outer side of the lifting table 43, two sides of each rotating support 52 are respectively hinged to movable ends of the corresponding two telescopic hydraulic cylinders 51, each telescopic support 53 is in sliding connection with each rotating support 52, the adjusting assemblies 54 are arranged at one end, close to the bottom of the slope, of each rotating support 52, and the corresponding telescopic support 53 is erected on the slope of the slope 1.
Further, the rotating bracket 52 includes two symmetrically arranged rotating struts 522, a plurality of first beams are arranged between the two rotating struts 522 at intervals, one end of the rotating strut 522 close to the top of the slope is hinged to the lifting platform 43, the lower side of the rotating strut 522 is hinged to the movable end of the telescopic hydraulic cylinder 51, a first chute 521 is provided in the middle of the upper surface of the rotating strut 522, an inverted L-shaped limit boss 523 is provided at the upper end of the rotating strut 522, and stop grooves 524 are symmetrically provided on two sides of the first chute 521.
Further, the telescopic support 53 includes two symmetrical telescopic struts 536, a plurality of second crossbeams are disposed between the two telescopic struts 536, the second sliding grooves 531 are provided on the upper surface of the telescopic struts 536, the middle of the lower surface of the telescopic struts 536 is fixedly connected with racks 532, two sides of the racks 532 are slidably connected with the upper portion of the first sliding groove 521, one end of each rack 532 close to the top of the slope is connected with a guide block 533, the guide blocks 533 are provided with inclined planes, the inclined planes enable the second sliding groove 531 to smoothly transition to the first sliding groove 521, two sides of each guide block 533 are provided with outwardly extending stop rods 535, the stop rods 535 are slidably connected with the stop grooves 524 on the rotating struts 522, the stop rods 535 enable the telescopic supports 53 to be not separated from the rotating supports 52 after being unfolded, limit grooves 534 are provided on two sides of the telescopic struts 536, the limit grooves 534 are slidably connected with limit bosses 523 of the rotating struts 522, and the limit grooves 534 are matched with the limit bosses so that the racks 532 cannot be separated from the first sliding grooves 521.
Further, the adjusting assembly 54 includes a motor 541, a first gear 542, a second gear 543, and a rotating shaft 544, where the first gear 542 and the second gear 543 are respectively disposed at the lower portion of the first chute 521, the motor 541 is disposed at an outer side of one end of one of the rotating struts 522 near the bottom of the slope, one end of the rotating shaft 544 passes through the rotating strut 522 and is fixedly connected with the output shaft of the motor 541, the other end extends into the first chute 521 of the other rotating strut 522, the rotating shaft 544 passes through a first cross beam located closest to the bottom of the rotating bracket 52, two ends of the rotating shaft 544 are respectively fixedly disposed with the first gear 542 and the second gear 543, and the first gear 542 and the second gear 543 are respectively meshed with two racks 532 of the telescopic bracket 53, when the device is in use, the output shaft of the motor 541 drives the rotating shaft 544 to rotate synchronously, and the two racks 532 are respectively meshed with the first gear 542 and the second gear 543 to drive the telescopic bracket 53 to extend or retract along the rotating bracket 52.
Further, the carrying component 6 comprises a scooter 61, a turnover hydraulic cylinder 62, a first connecting rod 63, a second connecting rod 64 and a carrying box 65, two rollers 611 are respectively arranged on two sides below the scooter 61, the rollers 611 are in rolling connection with the first sliding chute 521 or the second sliding chute 531, one side of the scooter 61 is hinged with the carrying box 65, a hanging lug 612 is arranged on the same side of the scooter 61, the hanging lug 612 is connected with a lifting rope 33, an electric hoist 31 is started, the scooter 61 moves along the telescopic component 5 under the traction force of the lifting rope 33, a rectangular groove is formed in the middle of the scooter 61, one end of a cylinder body of the turnover hydraulic cylinder 62 extends into the rectangular groove, one end of the cylinder body of the turnover hydraulic cylinder 62 is in rolling connection with one side of the scooter 61, two sides of the turnover hydraulic cylinder 62 are symmetrically provided with second connecting rods 64, one end of the second connecting rod 64 is in rolling connection with one side of the scooter 61, the other end of the second connecting rod 64 is hinged with one end of the first connecting rod 63, the other end of the first connecting rod 63 is hinged with the lower surface of the carrying box 65, a connecting shaft is fixedly connected between the two first connecting rods 63, the middle of the turnover hydraulic cylinder 631 is in rolling connection with the lower surface of the carrying box 65, the turnover hydraulic cylinder 631 is in rolling connection with the hydraulic mechanism, and the turnover hydraulic mechanism is not in rolling connection with the hydraulic mechanism is realized, and the hydraulic mechanism is in the state that the turnover hydraulic mechanism is in the state that the hydraulic mechanism is in front of a rolling connection with the state of the lifting box 65.
When the lifting device is used, the lifting hydraulic cylinder 41 is started to move the device to a position close to the side slope 1, the lifting platform 43 is lowered to a position close to the base 21, the telescopic hydraulic cylinder 51 is started to rotate the telescopic assembly 5 to a proper angle, the motor 541 is started, the telescopic bracket 53 slides downwards to be in butt joint with the bottom of the side slope 1, the overturning hydraulic cylinder 62 is started to overturn the carrying box 65 to be horizontal, a certain number of slope protection bricks are loaded into the carrying box 65, the electric hoist 31 is started, the lifting assembly 3 starts to work, and the falling and transportation of the slope protection bricks are realized.
After the embodiment is finished, the motor 541 is started, the telescopic bracket 53 slides upwards, the telescopic assembly 5 is shortened, the lifting hydraulic cylinder 41 is started, the lifting table 43 is lifted, the telescopic hydraulic cylinder 51 is started, the telescopic assembly 5 is rotated to the lower end of the telescopic assembly 5 to be abutted with the upper surface of the base 21, the overturning hydraulic cylinder 62 is started, the carrying box 65 is overturned to be abutted with the scooter 61, and after the equipment is retracted, the occupied space is greatly reduced, so that the equipment is convenient to transport and assemble and disassemble.
Pushing the pushing handle 24, the equipment can move on the side bank of the side slope 1, so that the slope protection brick of the whole side slope 1 is conveyed, workers do not need to carry the whole conveying process back and forth on the side slope 1, and the construction efficiency and the construction safety are improved.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. Slope protection construction equipment, dock on the slope top of side slope (1), including remove subassembly (2), lift by crane subassembly (3), lifting unit (4), flexible subassembly (5) and carry thing subassembly (6), lift by crane subassembly (3) are installed on removal subassembly (2) upper portion, lifting unit (4) are installed and are being close to the domatic one side of side slope (1) in removal subassembly (2), flexible subassembly (5) are connected with lifting unit (4) rotation, and the slope of side slope (1) is set up after expansion of flexible subassembly (5), and the one end of flexible subassembly (5) and the butt at the slope bottom of side slope (1), carry thing subassembly (6) to set up in flexible subassembly (5) outside, carry thing subassembly (6) and flexible subassembly (5) through gyro wheel roll connection, lift by crane subassembly (3) are connected with carry thing subassembly (6) through lifting rope (33), flexible subassembly (5) are including rotating support (52) and flexible support (53), rotate rack (532) cooperation through gear structure and flexible support (53).
2. The slope protection construction equipment according to claim 1, wherein the telescopic assembly (5) further comprises a telescopic hydraulic cylinder (51) and an adjusting assembly (54), one end of the rotating support (52) close to the slope top is hinged to one side of the lifting assembly (4) close to the slope surface, the telescopic hydraulic cylinder (51) is arranged at the joint of the rotating support (52) and the lifting assembly (4), the telescopic support (53) is slidably connected with the rotating support (52), the adjusting assembly (54) is mounted at one end of the rotating support (52) close to the slope bottom, and the rotating support (52) and the telescopic support (53) are erected on the slope surface of the slope (1).
3. The slope protection construction equipment according to claim 2, wherein the rotating support (52) comprises two symmetrically arranged rotating struts (522), a plurality of first cross beams are arranged between the two rotating struts (522) at intervals, a first chute (521) is formed in the middle of the upper surface of the rotating struts (522), two sides of the upper end of the rotating struts (522) are symmetrically provided with inverted-L-shaped limit bosses (523), and two sides of the first chute (521) are symmetrically provided with stop grooves (524).
4. A slope protection construction equipment according to claim 3, characterized in that, telescopic bracket (53) includes two telescopic support bars (536) that the symmetry set up, and the interval is provided with a plurality of second crossbeams between two telescopic support bars (536), and second spout (531) have been seted up at telescopic support bar (536) upper surface middle part, and telescopic support bar (536)'s lower surface middle part fixedly connected with rack (532), rack (532) both sides and first spout (521) upper portion sliding connection.
5. The slope protection construction equipment according to claim 4, wherein one end of the rack (532) close to the slope top is connected with a guide block (533), the guide block (533) is provided with an inclined plane, two sides of the guide block (533) are provided with outwards extending stop rods (535), the stop rods (535) are slidably connected with stop grooves (524) on the rotating support rods (522), two sides of the telescopic support rods (536) are provided with limit grooves (534), and the limit grooves (534) are slidably connected with the limit bosses (523).
6. A slope protection construction equipment according to claim 4, wherein the adjusting component (54) comprises a motor (541), a first gear (542), a second gear (543) and a rotating shaft (544), the first gear (542) and the second gear (543) are respectively arranged in the lower portion of the first chute (521), the motor (541) is arranged on the outer side of one rotating support rod (522) close to one end of the slope bottom, one end of the rotating shaft (544) penetrates through the rotating support rod (522) to be fixedly connected with the output shaft of the motor (541), the other end of the rotating shaft (544) extends into the first chute (521) of the other rotating support rod (522), the first gear (542) and the second gear (543) are respectively fixedly arranged at two ends of the rotating shaft (544), and the first gear (542) and the second gear (543) are respectively meshed with two racks (532) of the telescopic support frame (53).
7. The slope protection construction equipment according to claim 1, wherein the object carrying assembly (6) comprises a scooter (61), a turnover hydraulic cylinder (62), a first connecting rod (63), a second connecting rod (64) and an object carrying box (65), two rollers (611) are respectively arranged on two sides below the scooter (61), the rollers (611) are in rolling connection with the first sliding groove (521) or the second sliding groove (531), one side of the scooter (61) is hinged with the object carrying box (65), one end of a cylinder body of the turnover hydraulic cylinder (62) is rotatably connected with one side of the scooter (61), two sides of the turnover hydraulic cylinder (62) are symmetrically provided with the second connecting rod (64), one end of the second connecting rod (64) is rotatably connected with one side of the scooter (61), the other end of the second connecting rod (64) is hinged with one end of the first connecting rod (63), the other end of the first connecting rod (63) is hinged with the lower surface of the object carrying box (65), a connecting shaft (631) is fixedly connected between the two first connecting rods (63), and the movable end of the turnover hydraulic cylinder (62) is rotatably connected with the middle part of the connecting shaft (631).
8. The slope protection construction equipment according to claim 7, wherein the moving assembly (2) comprises a base (21), a support column (22), a supporting table (23), a pushing handle (24) and a baffle plate (27), the base (21) is placed on the slope top of the slope (1), the support column (22) is arranged in the middle of the base (21) and extends upwards, the supporting table (23) is horizontally fixed above the support column (22), a diagonal column is fixedly arranged above the supporting table (23), the pushing handle (24) is fixed on one side, far away from the slope, of the base (21), and the baffle plate (27) is fixed on one side, close to the slope of the slope (1), of the base (21).
9. The slope protection construction equipment according to claim 8, wherein the hoisting assembly (3) comprises an electric hoist (31) and a first pulley (32), the electric hoist (31) is installed above the supporting table (23), the first pulley (32) is installed at the upper end of a diagonal column on the supporting table (23), one end of the hoisting rope (33) is connected with the electric hoist (31), and the other end of the hoisting rope (33) bypasses the first pulley (32) to be connected with a hanging lug (612) arranged on the scooter (61).
10. The slope protection construction equipment according to claim 9, wherein the lifting assembly (4) comprises a lifting hydraulic cylinder (41), a shearing fork arm (42), a lifting table (43) and a base (44), the base (44) is arranged on the base (21), the base (44) is arranged on one side, close to a slope, of the base (21), the lifting table (43) is connected with the base (44) through a plurality of stages of shearing fork arms (42), the lifting hydraulic cylinder (41) is a multi-stage hydraulic cylinder, and a cylinder body of the telescopic hydraulic cylinder (51) is hinged with the lower portion of the lifting table (43).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422747783.1U CN223316298U (en) | 2024-11-12 | 2024-11-12 | Slope protection construction equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202422747783.1U CN223316298U (en) | 2024-11-12 | 2024-11-12 | Slope protection construction equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223316298U true CN223316298U (en) | 2025-09-09 |
Family
ID=96941050
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202422747783.1U Active CN223316298U (en) | 2024-11-12 | 2024-11-12 | Slope protection construction equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223316298U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN121250838A (en) * | 2025-10-28 | 2026-01-02 | 广东兴禹水利工程咨询有限公司 | Ecological concrete porous slope fixing device for water and soil conservation of side slope |
-
2024
- 2024-11-12 CN CN202422747783.1U patent/CN223316298U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN121250838A (en) * | 2025-10-28 | 2026-01-02 | 广东兴禹水利工程咨询有限公司 | Ecological concrete porous slope fixing device for water and soil conservation of side slope |
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