A water surface salvage device for water ecological restoration
By designing the water surface salvage equipment for water ecological restoration, the cooperation of hollow shafts, positioning slide rails and transmission sprockets is used to realize the position adjustment and rotation of the salvage net plate, solving the problem of low salvage efficiency on the water surface garbage, and improving salvage efficiency and convenience.
Patent Information
- Application Number
- CN202211133823.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-19
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2042-09-19
AI Technical Summary
During the existing water ecological restoration, the water surface garbage salvage efficiency is low and the labor force is large, resulting in low efficiency.
A water surface salvage equipment for water ecological restoration is designed, including a mounting frame, a salvage mechanism and a driving mechanism. Through the cooperation of hollow shafts, positioning slide rails, transmission sprockets and drive gears, the position adjustment and rotation of the salvage net plate are realized, and the salvage area and efficiency are improved.
Through the design of the device, the salvage area is improved, the convenience of use and salvage efficiency is increased, the stability and functional diversity of the device are enhanced, and the demand for labor is reduced.
Smart Images

Figure CN115492067B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of ecological restoration, and in particular to a water surface salvaging device for water ecological restoration. Background Art
[0002] Water ecological restoration generally includes two categories: artificial restoration and natural restoration. In areas with greater ecological damage, artificial restoration is the main approach and is combined with natural restoration to promote natural restoration. In areas with better current ecology, protection and natural restoration are the main approaches, and artificial restoration is mainly to create a better environment for natural restoration, accelerate the ecological restoration process, and promote the stabilization process.
[0003] Water ecological restoration technology includes four technical measures: "source control and pollution reduction, basic habitat improvement, ecological restoration and reconstruction, and optimization of community structure". Water ecological restoration not only includes the development, design, establishment and maintenance of new ecosystems, but also includes ecological restoration, ecological renewal, ecological control, etc. At the same time, it makes full use of water dispatching methods to achieve continuous coordination and unity between people and the environment, organisms and the environment, and social and economic development and resources and the environment.
[0004] In the existing water ecological restoration, it is necessary to first salvage the garbage on the water surface. Manual salvage is not only inefficient, but also requires a lot of labor. Summary of the invention
[0005] In order to solve the above technical problems, the present invention provides a surface salvaging device for water ecological restoration, which increases the salvage area of the device, increases the convenience of using the device, and increases the salvage efficiency of the device.
[0006] The water surface salvage equipment for water ecological restoration of the present invention comprises a mounting frame, a salvage mechanism and a driving mechanism, the salvage mechanism and the driving mechanism are respectively mounted on the mounting frame, and the salvage mechanism and the driving mechanism are cooperatively connected; the salvage mechanism comprises a hollow shaft, a mounting seat, a positioning slide rail, a salvage net plate, a spur rack, a transmission shaft, a driving gear, a first sprocket, a second sprocket, a mounting plate, a support shaft, a third sprocket, a first chain and a transmission mechanism, the hollow shaft is rotatably connected with the through hole of the mounting frame, the mounting seat is coaxially mounted on the hollow shaft, the positioning slide rail is symmetrically mounted on the salvage net plate, the positioning slide rail is slidably connected with the inner groove of the mounting seat, the spur rack It is installed on the salvage net plate, the transmission shaft and the hollow shaft cavity are slidingly connected, the driving gear and the transmission shaft are coaxially connected, the driving gear and the spur rack are meshing and transmission connected, the first sprocket is coaxially connected to the hollow shaft, the second sprocket is coaxially connected to the transmission shaft, the mounting plate is installed on the mounting frame, the support shaft and the mounting plate are rotatably connected, the third sprocket is coaxially connected to the support shaft, the first chain is meshing and transmission connected with the third sprocket and the two groups of second sprockets respectively, the transmission mechanism is installed on the mounting frame, the transmission mechanism is respectively connected to the two groups of first sprockets, and the driving mechanism is respectively connected to the support shaft and the transmission mechanism.
[0007] A water surface salvage device for water ecological restoration according to the present invention, the transmission mechanism includes a mounting shaft, a fourth sprocket, a second chain, a first gear, a worm gear and a mounting mechanism. Two sets of mounting shafts are symmetrically and rotatably mounted on the mounting frame. The fourth sprocket is coaxially and cooperatively connected with the mounting shaft. The second chain is respectively meshed and drivingly connected with the fourth sprocket and the first sprocket. The first gear is coaxially mounted on the mounting shaft. Two sets of first gears are meshed and drivingly connected. The worm gear is coaxially mounted on one set of mounting shafts. The mounting mechanism is mounted on the mounting frame, and the mounting mechanism is respectively cooperatively connected with the worm gear and the driving mechanism.
[0008] A water surface salvage device for water ecological restoration according to the present invention, the mounting mechanism includes a support seat, a worm and a bevel gear. The support seat is mounted on the mounting frame. The worm is rotatably and cooperatively connected with the support seat. The worm is meshed and drivingly connected with the worm gear. The bevel gear is coaxially and cooperatively connected with the worm. The bevel gear is cooperatively connected with the driving mechanism.
[0009] A water surface salvage device for water ecological restoration according to the present invention, the driving mechanism includes a motor seat, a driving motor, a driving shaft, a sector bevel gear, a first sector gear and a transmission mechanism. The driving motor is mounted on the mounting frame through the motor seat. The driving shaft is coaxially and cooperatively connected with the driving motor. The sector bevel gear is coaxially and cooperatively connected with the driving shaft. The sector bevel gear is meshed and drivingly connected with the bevel gear. The first sector gear is coaxially and cooperatively connected with the driving shaft. The transmission mechanism is mounted on the mounting plate, and the transmission mechanism is respectively cooperatively connected with the first sector gear and the support shaft.
[0010] A water surface salvage device for water ecological restoration according to the present invention, the transmission mechanism includes a conduction shaft, a second gear, a second sector gear, a third gear, a fourth gear and a linkage mechanism. Two sets of conduction shafts are respectively symmetrically and rotatably mounted on the mounting plate. The second gear is coaxially and cooperatively connected with the conduction shaft. Two sets of second gears are meshed and drivingly connected. The second sector gear is coaxially and cooperatively connected with the conduction shaft. The third gear is coaxially and cooperatively connected with the support shaft. Two sets of second sector gears are respectively meshed and drivingly connected with the third gear. The fourth gear is coaxially and cooperatively connected with one set of conduction shafts. The linkage mechanism is mounted on the mounting plate, and the linkage mechanism is respectively cooperatively connected with the fourth gear and the first sector gear.
[0011] A water surface salvage device for water ecological restoration according to the present invention, the linkage mechanism includes an assembly shaft, a fifth gear and a sixth gear. The assembly shaft is rotatably and cooperatively connected with the inner hole of the mounting plate. The fifth gear is coaxially and cooperatively connected with the assembly shaft. The fifth gear is meshed and drivingly connected with the fourth gear. The sixth gear is coaxially and cooperatively connected with the assembly shaft. The sixth gear is meshed and drivingly connected with the first sector gear.
[0012] A water surface salvage device for water ecological restoration according to the present invention, a storage plate is provided on the mounting frame, and the storage plate is mounted at the bottom end of the mounting frame.
[0013] A water ecological restoration water surface salvage device of the present invention, a damping block is installed on the mounting seat, and the salvage net plate is slidably connected with the damping block in cooperation.
[0014] A water ecological restoration water surface salvage device of the present invention, the straight rack is slidably connected with the inner groove of the mounting seat in cooperation.
[0015] A water ecological restoration water surface salvage device of the present invention, a mounting seat is arranged on the mounting frame.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: The mounting seat and the mounting frame are rotationally connected in cooperation through a hollow shaft, the salvage net plate and the mounting seat are slidably connected in cooperation through a positioning slide rail, the third sprocket and the mounting plate are rotationally connected in cooperation through a support shaft, the first chain and the support shaft are respectively meshed and driven with two groups of second sprockets, the second sprocket and the driving gear are coaxially installed through a transmission shaft and are rotationally connected with the hollow shaft, the second sprocket drives the driving gear to rotate and meshes with the straight rack to adjust the working position of the salvage net plate, the transmission mechanism and the hollow shaft are connected in cooperation through a first sprocket, the driving mechanism rotates the support shaft electrically to adjust the working position of the salvage net plate, the driving mechanism and the transmission mechanism cooperate to drive the hollow shaft to drive the salvage net plate to rotate, the salvage net plate rotates to salvage the water surface garbage towards the mounting seat, the salvage net plate moves to continuously open the salvage net plate during the collection process, improving the salvage area of the device, increasing the convenience of use of the device, and increasing the salvage efficiency of the device. Brief Description of the Drawings
[0017] Figure 1 is the front view structural schematic diagram of the present invention;
[0018] Figure 2 is the axonometric structural schematic diagram of the present invention;
[0019] Figure 3 is the left view structural schematic diagram of the present invention;
[0020] Figure 4 is the top view structural schematic diagram of the present invention;
[0021] Figure 5 is the bottom view structural schematic diagram of the present invention;
[0022] Reference numerals in the drawings: 1, mounting bracket; 2, hollow shaft; 3, mounting base; 4, positioning slide rail; 5, fishing net plate; 6, straight rack; 7, transmission shaft; 8, driving gear; 9, first sprocket; 10, second sprocket; 11, mounting plate; 12, support shaft; 13, third sprocket; 14, first chain; 15, mounting shaft; 16, fourth sprocket; 17, second chain; 18, first gear; 19, worm gear; 20, support base; 21, worm; 22, bevel gear; 23, motor base; 24, driving motor; 25, driving shaft; 26, sector bevel gear; 27, first sector gear; 28, conduction shaft; 29, second gear; 30, second sector gear; 31, third gear; 32, fourth gear; 33, assembly shaft; 34, fifth gear; 35, sixth gear; 36, storage plate. Detailed implementation manners
[0023] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present invention. The following embodiments are used to illustrate the present invention, but are not used to limit the scope of the present invention.
[0024] As Figures 1 to 5As shown, a water surface salvage device for water ecological restoration of the present invention comprises a mounting frame 1, a salvage mechanism and a driving mechanism, the salvage mechanism and the driving mechanism are respectively mounted on the mounting frame 1, and the salvage mechanism and the driving mechanism are matched and connected; the salvage mechanism comprises a hollow shaft 2, a mounting seat 3, a positioning slide rail 4, a salvage net plate 5, a spur rack 6, a transmission shaft 7, a driving gear 8, a first sprocket 9, a second sprocket 10, a mounting plate 11, a support shaft 12, a third sprocket 13, a first chain 14 and a transmission mechanism, the hollow shaft 2 is matched and rotatably connected with the through hole of the mounting frame 1, the mounting seat 3 is coaxially mounted on the hollow shaft 2, and the positioning slide rail 4 is symmetrical Installed on the salvage net plate 5, the positioning slide rail 4 is slidably connected with the inner groove of the mounting seat 3, the spur rack 6 is installed on the salvage net plate 5, the transmission shaft 7 is slidably connected with the hollow shaft 2 through the cavity, the driving gear 8 is coaxially connected with the transmission shaft 7, the driving gear 8 is meshed and connected with the spur rack 6, the first sprocket 9 is coaxially connected with the hollow shaft 2, the second sprocket 10 is coaxially connected with the transmission shaft 7, the mounting plate 11 is installed on the mounting frame 1, the support shaft 12 is rotatably connected with the mounting plate 11, the third sprocket 13 is coaxially connected with the support shaft 12, and the first chain 14 is respectively connected with the third sprocket 13 and the two groups The second sprocket 10 is meshed and connected to the transmission, and the transmission mechanism is installed on the mounting frame 1. The transmission mechanism is respectively connected to the two groups of first sprockets 9, and the driving mechanism is respectively connected to the support shaft 12 and the transmission mechanism; the mounting seat 3 is connected to the mounting frame 1 through the hollow shaft 2, and the salvage net plate 5 is connected to the mounting seat 3 through the positioning slide rail 4. The third sprocket 13 is connected to the mounting plate 11 through the support shaft 12. The first chain 14 and the support shaft 12 are respectively meshed and connected to the two groups of second sprockets 10 through the transmission shaft 7. The second sprocket 10 is coaxially installed with the driving gear 8 and connected to the hollow The shaft 2 is rotatably connected, and the second sprocket 10 drives the driving gear 8 to rotate and mesh with the spur rack 6 to adjust the working position of the salvage net 5. The transmission mechanism and the hollow shaft 2 are connected through the first sprocket 9. The electric support shaft 12 of the driving mechanism rotates to adjust the working position of the salvage net 5. The hollow shaft 2 drives the salvage net 5 to rotate through the driving mechanism and the transmission mechanism. The salvage net 5 rotates to salvage the surface garbage to the mounting seat 3. The salvage net 5 moves so that the salvage net 5 is continuously opened during the collection process, thereby increasing the salvage area of the device, increasing the convenience of using the device, and increasing the salvage efficiency of the device.
[0025] The present invention provides a water surface salvage device for water ecological restoration, wherein the transmission mechanism comprises a mounting shaft 15, a fourth sprocket 16, a second chain 17, a first gear 18, a worm gear 19 and a mounting mechanism, wherein two groups of mounting shafts 15 are symmetrically mounted on the mounting frame 1, the fourth sprocket 16 is coaxially connected with the mounting shaft 15, the second chain 17 is meshed and driven with the fourth sprocket 16 and the first sprocket 9 respectively, the first gear 18 is coaxially mounted on the mounting shaft 15, the two groups of first gears 18 are meshed and driven, the worm gear 19 is coaxially mounted on one group of mounting shafts 15, the mounting mechanism is mounted on the mounting frame 1, and the mounting The mechanism is respectively connected with the worm wheel 19 and the driving mechanism; the fourth sprocket 16 is coaxially installed with the first gear 18 and is rotatably connected with the mounting frame 1 through the mounting shaft 15, the fourth sprocket 16 is meshed and transmission-connected with the first sprocket 9 through the second chain 17, the two groups of fourth sprockets 16 are synchronously reversely rotated through the meshing connection of two groups of first gears 18, the mounting shaft 15 is connected with the mounting mechanism through the worm wheel 19, the worm wheel 19 is connected with the driving mechanism through the mounting mechanism, the fourth sprocket 16 drives the salvage net plate 5 to rotate synchronously in the reverse direction to bring the salvaged garbage together, thereby increasing the functional diversity of the device.
[0026] The present invention provides a surface salvage device for water ecological restoration, wherein the mounting mechanism comprises a support seat 20, a worm 21 and a bevel gear 22. The support seat 20 is mounted on a mounting frame 1, the worm 21 is rotatably connected with the support seat 20, the worm 21 is meshingly connected with a worm wheel 19, the bevel gear 22 is coaxially connected with the worm 21, and the bevel gear 22 is connected with a driving mechanism; the worm 21 is rotatably connected with the mounting frame 1 through the support seat 20, the worm 21 is connected with the driving mechanism through the bevel gear 22, the rotation is unidirectionally driven and has a self-locking function through the meshing of the worm 21 and the worm wheel 19, thereby increasing the rotation working stability of the salvage net 5, increasing the connection strength of the device, and preventing the impact of water flow on the device.
[0027] A water surface salvage device for water ecological restoration of the present invention, the driving mechanism includes a motor base 23, a driving motor 24, a driving shaft 25, a sector bevel gear 26, a first sector gear 27 and a transmission mechanism. The driving motor 24 is installed on the mounting frame 1 through the motor base 23. The driving shaft 25 is coaxially and cooperatively connected with the driving motor 24. The sector bevel gear 26 is coaxially and cooperatively connected with the driving shaft 25. The sector bevel gear 26 is meshed and drivingly connected with the bevel gear 22. The first sector gear 27 is coaxially and cooperatively connected with the driving shaft 25. The transmission mechanism is installed on the mounting plate 11 and is respectively cooperatively connected with the first sector gear 27 and the support shaft 12. The driving motor 24 is stably installed on the mounting frame 1 through the motor base 23. The sector bevel gear 26 and the first sector gear 27 are respectively cooperatively connected with the output end of the driving motor 24 through the driving shaft 25. The driving shaft 25 is intermittently connected with the bevel gear 22 through the sector bevel gear 26. The sector bevel gear 26 is cooperatively connected with the support shaft 12 through the transmission mechanism. The driving shaft 25 is intermittently connected with the transmission mechanism through the first sector gear 27. The position movement and flipping process of the salvage net plate 5 are separated through the cooperation of the sector bevel gear 26 and the first sector gear 27, improving the working stability and increasing the functional diversity of the device.
[0028] A water surface salvage device for water ecological restoration of the present invention, the transmission mechanism includes a transmission shaft 28, a second gear 29, a second sector gear 30, a third gear 31, a fourth gear 32 and a linkage mechanism. Two groups of transmission shafts 28 are symmetrically and rotatably installed on the mounting plate 11 respectively. The second gear 29 is coaxially and cooperatively connected with the transmission shaft 28. The two groups of second gears 29 are meshed and drivingly connected. The second sector gear 30 is coaxially and cooperatively connected with the transmission shaft 28. The third gear 31 is coaxially and cooperatively connected with the support shaft 12. The two groups of second sector gears 30 are respectively meshed and drivingly connected with the third gear 31. The fourth gear 32 is coaxially and cooperatively connected with one group of transmission shafts 28. The linkage mechanism is installed on the mounting plate 11 and is respectively cooperatively connected with the fourth gear 32 and the first sector gear 27. The second gear 29 and the second sector gear 30 are coaxially installed and rotatably connected with the mounting plate 11 through the transmission shaft 28. The two groups of second sector gears 30 are synchronously and reversely rotatably connected through the meshing and driving connection of the two groups of second gears 29. The transmission shaft 28 is intermittently meshed and drivingly connected with the third gear 31 through the second sector gear 30. The mounting plate 11 drives the third sprocket 13 to reciprocally rotate through the intermittent meshing connection of the third gear 31 with the third gear 31 respectively. The salvage net plate 5 is reciprocally slidably connected with the mounting seat 3 through the reciprocating rotation of the third sprocket 13. The driving mechanism drives the transmission shaft 28 to rotate through the cooperation of the linkage mechanism and the 3 worm 21, improving the transmission stability of the device and increasing the functional diversity of the device.
[0029] The present invention provides a water surface salvage equipment for water ecological restoration, wherein the linkage mechanism includes an assembly shaft 33, a fifth gear 34 and a sixth gear 35. The assembly shaft 33 is rotatably connected with the inner hole of the mounting plate 11, the fifth gear 34 is coaxially connected with the assembly shaft 33, the fifth gear 34 is meshingly connected with the fourth gear 32, the sixth gear 35 is coaxially connected with the assembly shaft 33, and the sixth gear 35 is meshingly connected with the first sector gear 27; the fifth gear 34 and the sixth gear 35 are coaxially mounted and rotatably connected with the mounting plate 11 through the assembly shaft 33, the sixth gear 35 is meshingly connected with the first sector gear 27 through the meshing of the sixth gear 35 with the first sector gear 27 so that the drive motor 24 drives the assembly shaft 33 to rotate, and the fifth gear 34 is meshing with the fourth gear 32 so that the assembly shaft 33 drives the conduction shaft 28 to rotate, thereby increasing the diversity of the transmission functions of the device and improving the transmission stability of the device.
[0030] The present invention provides a water surface salvaging device for water ecological restoration, wherein a mounting frame 1 is provided with a storage plate 36, which is mounted at the bottom end of the mounting frame 1; the garbage salvaged by the two sets of salvaging nets 5 is collected in a limited position by the storage plate 36, thereby increasing the functional diversity of the device and reducing usage limitations.
[0031] The present invention provides a surface salvage device for water ecological restoration, wherein a damping block is installed on the mounting seat 3, and the salvage net plate 5 is slidably connected with the damping block; the damping block of the mounting seat 3 increases the stability of the connection between the salvage net plate 5 and the mounting seat 3, prevents the impact of water flow from changing the connection position of the salvage net plate 5 and the mounting seat 3, and improves the functional diversity of the device.
[0032] The present invention provides a surface salvage device for water ecological restoration, wherein the spur rack 6 is slidably connected with the inner groove of the mounting seat 3; the spur rack 6 is slidably connected with the inner groove of the mounting seat 3 to increase the meshing strength of the driving gear 8 and the spur rack 6, thereby improving the transmission stability of the device and increasing the transmission accuracy of the device.
[0033] The present invention provides a water surface salvaging device for water ecological restoration, wherein a mounting frame 1 is provided with a mounting seat; the mounting frame 1 is provided with a mounting seat so that the mounting frame 1 is easy to be fixed and installed, thus improving the installation adaptability and reducing the limitation of use.
[0034] A water surface salvage device for water ecological restoration of the present invention, when working, first fixedly installs the mounting frame 1 on the hull, then powers on and starts the driving motor 24, then the sector bevel gear 26 meshes with the bevel gear 22 to rotate the worm 21, then the worm 21 meshes with the worm gear 19 to drive the mounting shaft 15 to rotate, then the mounting shaft 15 drives the salvage net plate 5 on the hollow shaft 2 to flip 180° through the engagement of the fourth sprocket 16, the second chain 17 and the first sprocket 9 to gather the garbage towards the receiving plate 36 for garbage collection, then the sector bevel gear 26 disengages from the bevel gear 22, then the first sector gear 27 meshes with the sixth gear 35 to drive the fifth gear 34 at the bottom end of the assembly shaft 33 to rotate, then the fifth gear 34 meshes with the fourth gear 32 to drive the conduction shaft 28 to rotate, then the second sector gear 30 meshes with the third gear 31 to drive the support shaft 12 to rotate, then the third sprocket 13, the first chain 14 and the second sprocket 10 cooperate to make the support shaft 12 drive the transmission shaft 7 to rotate, then the driving gear 8 rotates and meshes with the straight rack 6 to mechanically adjust the connection position between the salvage net plate 5 and the mounting seat 3, and so on.
[0035] The installation method, connection method or setting method of a water surface salvage device for water ecological restoration of the present invention are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented; the driving motor 24 of a water surface salvage device for water ecological restoration of the present invention is purchased on the market, and technicians in this industry only need to install and operate it according to the attached operation manual.
[0036] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present invention, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A water surface salvage device for water ecological restoration, characterized in that, It includes a mounting frame (1), a salvage mechanism, and a driving mechanism. The salvage mechanism and the driving mechanism are respectively mounted on the mounting frame (1), and the salvage mechanism and the driving mechanism are cooperatively connected; The salvage mechanism includes a hollow shaft (2), a mounting seat (3), a positioning slide rail (4), a salvage net plate (5), a straight rack (6), a transmission shaft (7), a driving gear (8), a first sprocket (9), a second sprocket (10), a mounting plate (11), a support shaft (12), a third sprocket (13), a first chain (14), and a transmission mechanism. The hollow shaft (2) is rotationally connected with the through hole of the mounting frame (1) in a mating manner. The mounting seat (3) is coaxially mounted on the hollow shaft (2). The positioning slide rails (4) are symmetrically mounted on the salvage net plate (5), and the positioning slide rails (4) are slidably connected with the inner groove of the mounting seat (3) in a mating manner. The straight rack (6) is cooperatively mounted on the salvage net plate (5). The transmission shaft (7) is slidably connected with the through cavity of the hollow shaft (2) in a mating manner. The driving gear (8) is coaxially connected with the transmission shaft (7) in a mating manner. The driving gear (8) is meshed and drivingly connected with the straight rack (6). The first sprocket (9) is coaxially connected with the hollow shaft (2) in a mating manner. The second sprocket (10) is coaxially connected with the transmission shaft (7) in a mating manner. The mounting plate (11) is mounted on the mounting frame (1). The support shaft (12) is rotationally connected with the mounting plate (11) in a mating manner. The third sprocket (13) is coaxially connected with the support shaft (12) in a mating manner. The first chain (14) is respectively meshed and drivingly connected with the third sprocket (13) and two groups of second sprockets (10). The transmission mechanism is mounted on the mounting frame (1), and the transmission mechanism is respectively connected with two groups of first sprockets (9) in a mating manner. The driving mechanism is respectively connected with the support shaft (12) and the transmission mechanism in a mating manner; The transmission mechanism includes a mounting shaft (15), a fourth sprocket (16), a second chain (17), a first gear (18), a worm (19), and a mounting mechanism. Two groups of the mounting shafts (15) are symmetrically and rotationally mounted on the mounting frame (1). The fourth sprocket (16) is coaxially connected with the mounting shaft (15) in a mating manner. The second chain (17) is respectively meshed and drivingly connected with the fourth sprocket (16) and the first sprocket (9). The first gear (18) is coaxially mounted on the mounting shaft (15). Two groups of the first gears (18) are meshed and drivingly connected. The worm (19) is coaxially mounted on one group of the mounting shafts (15). The mounting mechanism is mounted on the mounting frame (1), and the mounting mechanism is respectively connected with the worm (19) and the driving mechanism in a mating manner; The transmission mechanism includes a conduction shaft (28), a second gear (29), a second sector gear (30), a third gear (31), a fourth gear (32) and a linkage mechanism. Two groups of the conduction shafts (28) are symmetrically and rotatably installed on the mounting plate (11). The second gear (29) is coaxially and cooperatively connected with the conduction shaft (28). Two groups of the second gears (29) are meshed and drivingly connected. The second sector gear (30) is coaxially and cooperatively connected with the conduction shaft (28). The third gear (31) is coaxially and cooperatively connected with the support shaft (12). Two groups of the second sector gears (30) are respectively meshed and drivingly connected with the third gear (31). The fourth gear (32) is coaxially and cooperatively connected with one group of the conduction shafts (28). The linkage mechanism is installed on the mounting plate (11), and the linkage mechanism is respectively cooperatively connected with the fourth gear (32) and the first sector gear (27). The driving mechanism includes a motor base (23), a driving motor (24), a driving shaft (25), a sector bevel gear (26), a first sector gear (27) and a conduction mechanism. The driving motor (24) is installed on the mounting frame (1) through the motor base (23). The driving shaft (25) is coaxially and cooperatively connected with the driving motor (24). The sector bevel gear (26) is coaxially and cooperatively connected with the driving shaft (25). The sector bevel gear (26) is meshed and drivingly connected with the bevel gear (22). The first sector gear (27) is coaxially and cooperatively connected with the driving shaft (25). The conduction mechanism is installed on the mounting plate (11), and the conduction mechanism is respectively cooperatively connected with the first sector gear (27) and the support shaft (12).
2. The water surface salvage equipment for water ecological restoration according to claim 1, wherein The mounting mechanism includes a support base (20), a worm (21) and a bevel gear (22). The support base (20) is installed on the mounting frame (1). The worm (21) is rotatably and cooperatively connected with the support base (20). The worm (21) is meshed and drivingly connected with the worm gear (19). The bevel gear (22) is coaxially and cooperatively connected with the worm (21). The bevel gear (22) is cooperatively connected with the driving mechanism.
3. The water surface salvage equipment for water ecological restoration according to claim 1, characterized in that, The linkage mechanism includes an assembly shaft (33), a fifth gear (34) and a sixth gear (35). The assembly shaft (33) is rotatably and cooperatively connected with the inner hole of the mounting plate (11). The fifth gear (34) is coaxially and cooperatively connected with the assembly shaft (33). The fifth gear (34) is meshed and drivingly connected with the fourth gear (32). The sixth gear (35) is coaxially and cooperatively connected with the assembly shaft (33). The sixth gear (35) is meshed and drivingly connected with the first sector gear (27).
4. The water surface salvage equipment for water ecological restoration according to claim 1, characterized in that, A storage plate (36) is provided on the mounting frame (1), and the storage plate (36) is installed at the bottom end of the mounting frame (1).
5. The water surface salvage equipment for water ecological restoration according to claim 1, characterized in that, A damping block is installed on the mounting seat (3), and the fishing net plate (5) is slidably and cooperatively connected with the damping block.
6. The water surface salvage equipment for water ecological restoration according to claim 1, characterized in that, The straight rack (6) is slidably and cooperatively connected with the inner groove of the mounting seat (3).
7. The surface salvage equipment for water ecological restoration according to claim 1, characterized in that, A mounting seat is provided on the mounting frame (1).
Citation Information
Patent Citations
Intelligent cleaning method for lake water surface
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Automatic salvage device for suspended garbage in water body
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