A device and method for recovering waste material from a port wharf cathodic protection

By designing a port terminal cathodic protection waste recycling device, a mechanical transmission and hydraulic system is used to clean and collect the solid corrosion products of sacrificial anodes, solving the problems of pollution and uneven consumption after the sacrificial anodes are consumed, and achieving clean and environmentally friendly waste treatment.

CN116648540BActive Publication Date: 2026-01-02BEIJING CARBON CLOUD TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202080107730.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-10
Publication Date
2026-01-02
Estimated Expiration
2040-12-10

AI Technical Summary

Technical Problem

In existing technologies, some of the solid corrosion products generated after the sacrificial anode is consumed fall into the water naturally, polluting the port water quality. The remaining portion leads to uneven consumption and low utilization rate.

Method used

Design a port terminal cathodic protection waste recycling device. Utilize components such as a rotating seat, hydraulic cylinder, hydraulic telescopic arm, cleaning roller, water-guiding blade, and push rod. Through mechanical transmission and hydraulic system, it cleans solid corrosion products and collects them into a wire mesh bag, avoiding pollution and uneven consumption.

Benefits of technology

Effectively cleans solid corrosion products from the surface of sacrificial anodes, avoids polluting port water quality, improves the utilization rate of sacrificial anodes, and achieves uniform consumption.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116648540B_ABST
    Figure CN116648540B_ABST
Patent Text Reader

Abstract

A kind of port wharf cathode protection waste recovery device and method thereof, the recovery device includes car body (1), the top of the car body (1) is rotatably installed with rotating seat (2), installation cavity (3) is set up in car body (1), rotating motor (4) is fixedly installed on the bottom inner wall of installation cavity (3), in use, the solid-state corrosion of outside sacrificial anode can be effectively cleaned by rotating cleaning roller (13), avoid its consumption uneven, and avoid solid-state corrosion by rotating water guide paddle (18) Directly fall into water to cause pollution to the water of port, finally push solid-state corrosion into steel wire mesh bag (20) by push rod (19) and collect.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of waste recycling, in particular to a device for recycling waste of cathodic protection of a port terminal and a method thereof. BACKGROUND

[0002] A port is located along the coast of a sea, a river, a lake, a reservoir, has waterway intermodal equipment and conditions for the safe entry and exit and berthing of ships, is a transportation hub, a node and hub of water and land transportation, a distribution center of industrial and agricultural products and import and export materials, a place for ships to berth, load and unload goods, embark and disembark passengers, and replenish supplies, and is of great significance to transportation and logistics. Therefore, an important maintenance measure for a port terminal is the strength of a dike, especially for a large hub deep-sea port. In order to resist the corrosion of various active ions in seawater, a sacrificial anode is needed to be installed along the dike of the port terminal to cathodically protect the dike.

[0003] However, as the sacrificial anode is consumed, a layer of solid corrosion product is generated on the surface of the sacrificial anode. Part of the solid corrosion product will naturally fall into the water and pollute the water quality of the port, and the part that does not naturally fall off will cause uneven surface consumption rate and low utilization rate of the sacrificial anode. SUMMARY

[0004] The present application aims at solving the problems in the prior art that as the sacrificial anode is consumed, a layer of solid corrosion product is generated on the surface of the sacrificial anode, part of the solid corrosion product will naturally fall into the water and pollute the water quality of the port, and the part that does not naturally fall off will cause uneven surface consumption rate and low utilization rate of the sacrificial anode, and provides a device for recycling waste of cathodic protection of a port terminal.

[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0006] The utility model provides a kind of port wharf cathode protection waste recovery device, including vehicle body, the top rotation of the vehicle body is installed with rotating seat, installation cavity is opened in vehicle body, rotating motor is fixedly installed on the bottom inner wall of installation cavity, the output shaft of rotating motor is welded with rotating shaft, the top end of rotating shaft extends to the top outside of vehicle body and is fixedly connected with the bottom of rotating seat, the outside of rotating seat is fixedly connected with fixed column, one end of fixed column is fixedly connected with hydraulic cylinder, hydraulic cylinder's output shaft is welded with hydraulic telescopic arm, the bottom of hydraulic telescopic arm is fixedly connected with first shell, cleaning through opening is opened in the side of first shell, the bottom of first shell is fixedly connected with second shell, first rotating rod is rotatably installed in the first shell, cleaning roller is fixedly sheathed on the outside of first rotating rod, motor cavity, water inlet cavity and transmission cavity are respectively opened in second shell, motor is fixedly installed on the side inner wall of motor cavity, water inlet paddle is rotatably installed in water inlet cavity, push rod is slidably installed in first shell, motor cooperates with water inlet paddle, cleaning roller and push rod, the side of first shell is opened with discharge port, steel mesh bag is provided on discharge port.

[0007] Preferably, the bottom of the first shell is opened with a first installation opening, a first filter screen is fixedly installed in the first installation opening, the bottom of the second shell is opened with a second installation opening communicated with the water inlet cavity, a second filter screen is fixedly installed in the second installation opening, a paddle shaft is rotatably installed at the bottom of the first filter screen, and the water inlet paddle is fixedly sheathed on the outside of the paddle shaft.

[0008] Preferably, the two side inner walls of the first shell are both opened with a sliding groove, and a sliding block is slidably installed in each of the two sliding grooves, and the two sliding blocks are respectively fixedly connected with the two ends of the push rod.

[0009] Preferably, the side of the motor cavity and the water inlet cavity close to each other is opened with a same first rotating hole, the side of the water inlet cavity and the transmission cavity close to each other is opened with a same second rotating hole, and a same second rotating rod is rotatably installed in the first rotating hole and the second rotating hole, and one end of the second rotating rod extends into the motor cavity and is welded with the output shaft of the motor.

[0010] Preferably, a first bevel gear is fixedly sheathed on the outside of the second rotating rod, a second bevel gear is fixedly connected with the bottom end of the paddle shaft, and the second bevel gear is engaged with the first bevel gear.

[0011] Preferably, a gear cavity is opened in the first shell, one end of the first rotating rod extends into the rotating cavity and is fixedly connected with a third bevel gear, the side of the gear cavity and the transmission cavity close to each other is opened with a same third rotating hole, a third rotating rod is rotatably installed in the third rotating hole, the top end of the third rotating rod is fixedly connected with a fourth bevel gear, and the fourth bevel gear is engaged with the third bevel gear.

[0012] Preferably, the other end of the second rotating rod extends into the transmission cavity and is fixedly connected with a fifth bevel gear, and the bottom end of the third rotating rod extends into the transmission cavity and is fixedly connected with a sixth bevel gear, and the sixth bevel gear is engaged with the fifth bevel gear.

[0013] Preferably, a groove is formed in the inner wall of one side of the first shell, and a fourth rotating hole is formed in the side of the groove close to the transmission cavity, and a fourth rotating rod is rotatably installed in the fourth rotating hole, and a seventh bevel gear is fixedly connected to the outer side of the second rotating rod, and the bottom end of the fourth rotating rod extends into the transmission cavity and is fixedly connected with an eighth bevel gear, and the eighth bevel gear is engaged with the seventh bevel gear.

[0014] Preferably, the top end of the fourth rotating rod extends into the groove and is fixedly connected with a rotating rod, one end of a transmission rod is rotatably connected to the rotating rod, and the other end of the transmission rod is rotatably connected to one side of a push rod, and the push rod cooperates with the steel mesh bag.

[0015] The application further provides a use method of the cathode protection waste recycling device for a port wharf.

[0016] S1: in use, first drive the vehicle body to the port shore, then start the rotating motor, so that the output shaft of the rotating motor drives the rotating shaft to rotate, the rotating shaft drives the rotating seat to rotate, the rotating seat drives the fixed column to rotate, the fixed column drives the hydraulic cylinder to displace, the hydraulic cylinder drives the first shell to displace to a suitable displacement through the hydraulic telescopic arm, then start the hydraulic cylinder, so that the output shaft of the hydraulic cylinder drives the hydraulic telescopic arm to extend, the hydraulic telescopic arm drives the first shell to be put into water and abut against one side of the sacrificial anode;

[0017] S2: then start the motor, the output shaft of the motor drives the second rotating rod to rotate, at this time, the second rotating rod drives the fifth bevel gear to rotate, the fifth bevel gear drives the sixth bevel gear to rotate, the sixth bevel gear drives the third rotating rod to rotate, the third rotating rod drives the fourth bevel gear to rotate, the fourth bevel gear drives the third bevel gear to rotate, the third bevel gear drives the first rotating rod to rotate, and the first rotating rod drives the cleaning roller to rotate, so that the cleaning roller can clean the solid corrosion on the surface of the sacrificial anode through the cleaning opening;

[0018] S3: at the same time, the second rotating rod drives the first bevel gear to rotate, the first bevel gear drives the second bevel gear to rotate, the second bevel gear drives the paddle shaft to rotate, and the paddle shaft drives the water guide paddle to rotate, so that the rotating water guide paddle can effectively guide the water flow, thereby effectively guiding the cleaned solid corrosion into the first shell, avoiding the direct falling of the solid corrosion into the water to pollute the water quality of the port;

[0019] S4: At the same time, the second rotating rod drives the seventh bevel gear to rotate, the seventh bevel gear drives the eighth bevel gear to rotate, the eighth bevel gear drives the fourth rotating rod to rotate, the fourth rotating rod drives the rotating rod to rotate, and the rotating rod drives the push rod to reciprocate and displace through the transmission rod, so that the push rod can push the solid corrosion on the first filter screen into the steel mesh bag, thereby avoiding the solid corrosion from blocking the first filter screen, and facilitating the collection and unified treatment of the solid corrosion.

[0020] Compared with the prior art, the beneficial effects of the present application are:

[0021] 1、The fifth bevel gear and the sixth bevel gear are matched, the third bevel gear and the fourth bevel gear are matched, and the first rotating rod and the cleaning roller are matched, so that the rotating cleaning roller can effectively clean the solid corrosion outside the sacrificial anode, avoiding uneven consumption.

[0022] 2、The first bevel gear and the second bevel gear are matched, and the paddle shaft and the water guide paddle are matched, so that the rotating water guide paddle can drive the water flow, thereby guiding the cleaned solid corrosion into the first shell, avoiding direct falling into the water to pollute the water in the port.

[0023] 3、The seventh bevel gear and the eighth bevel gear are matched, and the rotating rod and the push rod are matched through the transmission rod, so that the push rod can reciprocate and displace on the surface of the first filter screen, thereby pushing the solid corrosion on the surface of the first filter screen into the steel mesh bag for collection, while avoiding blocking the first filter screen.

[0024] In use, the rotating cleaning roller can effectively clean the solid corrosion outside the sacrificial anode, avoiding uneven consumption, and the rotating water guide paddle can guide the cleaned solid corrosion into the first shell, avoiding direct falling into the water to pollute the water in the port, and finally the reciprocating push rod can push the solid corrosion into the steel mesh bag for collection, avoiding blocking the first filter screen. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 A structural schematic view of a port wharf cathode protection waste recovery device is provided.

[0026] Figure 2 A first shell structure schematic view of a port wharf cathode protection waste recovery device is provided.

[0027] Figure 3 A first shell side view cross-sectional structure schematic view of a port wharf cathode protection waste recovery device is provided.

[0028] Figure 4A kind of port wharf cathode protection waste recovery device of the present application proposes Figure 3 The enlarged structure schematic diagram in middle A;

[0029] Figure 5 A kind of port wharf cathode protection waste recovery device of the present application proposes Figure 3 The enlarged structure schematic diagram in middle B.

[0030] In the figure: 1 car body, 2 rotating seat, 3 installation cavity, 4 rotating motor, 5 rotating shaft, 6 fixed column, 7 hydraulic cylinder, 8 hydraulic telescopic arm, 9 first shell, 10 cleaning through hole, 11 second shell, 12 first rotating rod, 13 cleaning roller, 14 motor cavity, 15 water guide cavity, 16 transmission cavity, 17 motor, 18 water guide paddle, 19 push rod, 20 steel wire mesh bag, 21 first filter screen, 22 second filter screen, 23 paddle shaft, 24 sliding block, 25 second rotating rod, 26 first bevel gear, 27 second bevel gear, 28 third bevel gear, 29 third rotating rod, 30 fourth bevel gear, 31 fifth bevel gear, 32 sixth bevel gear, 33 fourth rotating rod, 34 seventh bevel gear, 35 eighth bevel gear, 36 rotating rod, 37 transmission rod. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments of the present application.

[0032] Embodiment one

[0033] Reference Figures 1-5The utility model provides a kind of port wharf cathode protection waste recovery device, including car body 1, rotating seat 2 is installed on the top of car body 1, installation cavity 3 is opened in car body 1, rotating motor 4 is fixedly installed on the inner wall of the bottom of installation cavity 3, rotating shaft 5 is welded on the output shaft of rotating motor 4, the top of rotating shaft 5 extends to the outside of the top of car body 1 and is fixedly connected with the bottom of rotating seat 2, fixed column 6 is fixedly connected on the outside of rotating seat 2, one end of fixed column 6 is fixedly connected with hydraulic cylinder 7, hydraulic cylinder 7 is welded on the output shaft and has hydraulic telescopic arm 8, first shell 9 is fixedly connected at the bottom end of hydraulic telescopic arm 8, cleaning through 10 is opened in the side of first shell 9, second shell 11 is fixedly connected at the bottom of first shell 9, first rotating rod 12 is rotatably installed in first shell 9, cleaning roller 13 is fixedly sleeved on the outside of first rotating rod 12, motor cavity 14, water inlet cavity 15 and transmission cavity 16 are opened in second shell 11 respectively, motor 17 is fixedly installed on the side inner wall of motor cavity 14, water inlet paddle 18 is rotatably installed in water inlet cavity 15, push rod 19 is slidably installed in first shell 9, motor 17 is matched with water inlet paddle 18, cleaning roller 13 and push rod 19, discharge port is opened in the side of first shell 9, steel wire mesh bag 20 is arranged on discharge port.

[0034] In the embodiment, the bottom of the first shell 9 is provided with a first mounting hole, and a first filter screen plate 21 is fixedly installed in the first mounting hole. The bottom of the second shell 11 is provided with a second mounting hole communicated with the water inlet cavity 15, and a second filter screen plate 22 is fixedly installed in the second mounting hole. The bottom of the first filter screen plate 21 is rotatably installed with a paddle shaft 23, and the water inlet paddle 18 is fixedly sleeved on the outside of the paddle shaft 23. The paddle shaft 23 can drive the water inlet paddle 18 to rotate.

[0035] In the embodiment, the two side inner walls of the first shell 9 are both provided with a sliding groove, and a sliding block 24 is slidably installed in each of the two sliding grooves. The two sliding blocks 24 are respectively fixedly connected with the two ends of the push rod 19. The sliding block 24 can displace along the sliding groove.

[0036] In the embodiment, the same first rotating hole is opened on the side of the motor cavity 14 and the water inlet cavity 15, and the same second rotating hole is opened on the side of the water inlet cavity 15 and the transmission cavity 16. The same second rotating rod 25 is rotatably installed in the first rotating hole and the second rotating hole. One end of the second rotating rod 25 extends into the motor cavity 14 and is welded with the output shaft of the motor 17. The motor 17 can drive the second rotating rod 25 to rotate through the output shaft.

[0037] In the embodiment, the first bevel gear 26 is fixedly sleeved on the outside of the second rotating rod 25, the second bevel gear 27 is fixedly connected with the bottom end of the paddle shaft 23, the second bevel gear 27 is engaged with the first bevel gear 26, and the first bevel gear 26 can drive the second bevel gear 27 to rotate.

[0038] In the embodiment, the first shell 9 is provided with a gear cavity, one end of the first rotating rod 12 extends into the rotating cavity and is fixedly connected with a third bevel gear 28, the gear cavity is provided with a same third rotating hole on the side close to the transmission cavity 16, the third rotating hole is rotatably provided with a third rotating rod 29, the top end of the third rotating rod 29 is fixedly connected with a fourth bevel gear 30, the fourth bevel gear 30 is engaged with the third bevel gear 28, and the fourth bevel gear 30 can drive the third bevel gear 28 to rotate.

[0039] In the embodiment, the other end of the second rotating rod 25 extends into the transmission cavity 16 and is fixedly connected with a fifth bevel gear 31, the bottom end of the third rotating rod 29 extends into the transmission cavity 16 and is fixedly connected with a sixth bevel gear 32, the sixth bevel gear 32 is engaged with the fifth bevel gear 31, and the fifth bevel gear 31 can drive the sixth bevel gear 32 to rotate.

[0040] In the embodiment, a groove is formed in the inner wall of one side of the first shell 9, the groove is provided with a same fourth rotating hole on the side close to the transmission cavity 16, the fourth rotating hole is rotatably provided with a fourth rotating rod 33, the outer side of the second rotating rod 25 is fixedly provided with a seventh bevel gear 34, the bottom end of the fourth rotating rod 33 extends into the transmission cavity 16 and is fixedly connected with an eighth bevel gear 35, the eighth bevel gear 35 is engaged with the seventh bevel gear 34, and the seventh bevel gear 34 can drive the eighth bevel gear 35 to rotate.

[0041] In the embodiment, the top end of the fourth rotating rod 33 extends into the groove and is fixedly connected with a rotating rod 36, one end of a transmission rod 37 is rotatably connected to the rotating rod 36, the other end of the transmission rod 37 is rotatably connected to one side of the push rod 19, the push rod 19 cooperates with the steel mesh bag 20, and the rotating rod 36 can drive the push rod 19 to reciprocatingly displace through the transmission rod 37.

[0042] Embodiment two

[0043] Reference Figures 1-5The utility model relates to a kind of recycling device of port wharf cathode protection waste, including car body 1, rotating seat 2 is installed on the top of car body 1, installation cavity 3 is opened in car body 1, rotating motor 4 is fixedly installed on the inner wall of the bottom of installation cavity 3 by bolt, rotating shaft 5 is welded on the output shaft of rotating motor 4, rotating shaft 5 top extends to the outside of the top of car body 1 and is fixedly connected with the bottom of rotating seat 2 by welding, fixed column 6 is fixedly connected with the outside of rotating seat 2 by welding, one end of fixed column 6 is fixedly connected with hydraulic cylinder 7 by bolt, hydraulic cylinder 7 output shaft is welded with hydraulic telescopic arm 8, the bottom of hydraulic telescopic arm 8 is fixedly connected with first shell 9 by welding, cleaning through 10 is opened in one side of first shell 9, the bottom of first shell 9 is fixedly connected with second shell 11 by welding, first rotary rod 12 is rotatably installed in first shell 9, cleaning roller 13 is fixedly sleeved with the outside of first rotary rod 12 by welding, motor cavity 14, water inlet cavity 15 and transmission cavity 16 are opened in second shell 11 respectively, motor 17 is fixedly installed on the inner wall of one side of motor cavity 14 by bolt, water inlet paddle 18 is rotatably installed in water inlet cavity 15, push rod 19 is slidably installed in first shell 9, motor 17 is matched with water inlet paddle 18, cleaning roller 13 and push rod 19, the side of first shell 9 is opened with discharge port, discharge port is provided with wire mesh bag 20.

[0044] In the embodiment, the bottom of first shell 9 is opened with first mounting port, first filter screen plate 21 is fixedly installed in first mounting port by welding, the bottom of second shell 11 is opened with second mounting port, second filter screen plate 22 is fixedly installed in second mounting port by welding, paddle shaft 23 is rotatably installed on the bottom of first filter screen plate 21, water inlet paddle 18 is fixedly sleeved on the outside of paddle shaft 23 by welding, paddle shaft 23 can drive water inlet paddle 18 to rotate.

[0045] In the embodiment, the inner wall of both sides of first shell 9 is opened with sliding groove, sliding block 24 is slidably installed in two sliding grooves, two sliding blocks 24 are fixedly connected with the both ends of push rod 19 by welding respectively, sliding block 24 can displace along sliding groove.

[0046] In the embodiment, the side of motor cavity 14 and water inlet cavity 15 is opened with same first rotary hole, the side of water inlet cavity 15 and transmission cavity 16 is opened with same second rotary hole, same second rotary rod 25 is rotatably installed in first rotary hole and second rotary hole, one end of second rotary rod 25 extends into motor cavity 14 and is welded with the output shaft of motor 17, motor 17 can drive second rotary rod 25 to rotate through output shaft.

[0047] The outer side of the second rotating rod 25 is sleeved with the first bevel gear 26 through welding in the embodiment, the bottom end of the paddle shaft 23 is fixedly connected with the second bevel gear 27 through welding, the second bevel gear 27 is engaged with the first bevel gear 26, and the first bevel gear 26 can drive the second bevel gear 27 to rotate.

[0048] The first shell 9 is provided with a gear cavity in the embodiment, one end of the first rotating rod 12 extends into the rotating cavity and is fixedly connected with the third bevel gear 28 through welding, the gear cavity and the side, close to each other, of the transmission cavity 16 are provided with a same third rotating hole, the third rotating hole is rotatably provided with the third rotating rod 29, the top end of the third rotating rod 29 is fixedly connected with the fourth bevel gear 30 through welding, the fourth bevel gear 30 is engaged with the third bevel gear 28, and the fourth bevel gear 30 can drive the third bevel gear 28 to rotate.

[0049] The other end of the second rotating rod 25 extends into the transmission cavity 16 and is fixedly connected with the fifth bevel gear 31 through welding in the embodiment, the bottom end of the third rotating rod 29 extends into the transmission cavity 16 and is fixedly connected with the sixth bevel gear 32 through welding, the sixth bevel gear 32 is engaged with the fifth bevel gear 31, and the fifth bevel gear 31 can drive the sixth bevel gear 32 to rotate.

[0050] The side inner wall of the first shell 9 is provided with a groove in the embodiment, the groove and the side, close to each other, of the transmission cavity 16 are provided with a same fourth rotating hole, the fourth rotating hole is rotatably provided with the fourth rotating rod 33, the outer side of the second rotating rod 25 is sleeved with the seventh bevel gear 34 through welding, the bottom end of the fourth rotating rod 33 extends into the transmission cavity 16 and is fixedly connected with the eighth bevel gear 35 through welding, the eighth bevel gear 35 is engaged with the seventh bevel gear 34, and the seventh bevel gear 34 can drive the eighth bevel gear 35 to rotate.

[0051] The top end of the fourth rotating rod 33 extends into the groove and is fixedly connected with the rotating rod 36 through welding in the embodiment, one end of the transmission rod 37 is rotatably connected to the rotating rod 36, the other end of the transmission rod 37 is rotatably connected to one side of the push rod 19, the push rod 19 cooperates with the steel mesh bag 20, and the rotating rod 36 can drive the push rod 19 to reciprocatingly displace through the transmission rod 37.

[0052] The embodiment further provides a use method of the cathode protection waste recycling device for a port wharf.

[0053] S1: in use, first drive the vehicle body 1 to the port side, then start the rotating motor 4, so that the output shaft of the rotating motor 4 drives the rotating shaft 5 to rotate, the rotating shaft 5 drives the rotating seat 2 to rotate, the rotating seat 2 drives the fixed column 6 to rotate, the fixed column 6 drives the hydraulic cylinder 7 to displace, the hydraulic cylinder 7 drives the first shell 9 to displace to the appropriate displacement through the hydraulic telescopic arm 8, then start the hydraulic cylinder 7, so that the output shaft of the hydraulic cylinder 7 drives the hydraulic telescopic arm 8 to extend, the hydraulic telescopic arm 8 drives the first shell 9 to put into the water and abut against one side of the sacrificial anode;

[0054] S2: then start the motor 17, the output shaft of the motor 17 drives the second rotating rod 25 to rotate, at this time the second rotating rod 25 drives the fifth bevel gear 31 to rotate, the fifth bevel gear 31 drives the sixth bevel gear 32 to rotate, the sixth bevel gear 32 drives the third rotating rod 29 to rotate, the third rotating rod 29 drives the fourth bevel gear 30 to rotate, the fourth bevel gear 30 drives the third bevel gear 28 to rotate, the third bevel gear 28 drives the first rotating rod 12 to rotate, the first rotating rod 12 drives the cleaning roller 13 to rotate, so that the cleaning roller 13 can clean the solid corrosion on the surface of the sacrificial anode through the cleaning opening 10;

[0055] S3: at the same time, the second rotating rod 25 drives the first bevel gear 26 to rotate, the first bevel gear 26 drives the second bevel gear 27 to rotate, the second bevel gear 27 drives the paddle shaft 23 to rotate, the paddle shaft 23 drives the water guide paddle 18 to rotate, so that the rotating water guide paddle 18 can effectively guide the water flow, so that the cleaned solid corrosion can be effectively guided into the first shell 9, avoiding direct falling into the water to pollute the water quality of the port;

[0056] S4: at the same time, the second rotating rod 25 drives the seventh bevel gear 34 to rotate, the seventh bevel gear 34 drives the eighth bevel gear 35 to rotate, the eighth bevel gear 35 drives the fourth rotating rod 33 to rotate, the fourth rotating rod 33 drives the rotating rod 36 to rotate, the rotating rod 36 drives the push rod 19 to reciprocate through the transmission rod 37, so that the push rod 19 can push the solid corrosion on the first filter screen 21 into the wire mesh bag 20, the first avoids the first filter screen 21 being blocked, and the second facilitates the collection and unified treatment of the solid corrosion.

[0057] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled 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 port wharf cathodic protection waste recycling device, comprising a vehicle body (1), a rotating seat (2) is rotatably installed on the top of the vehicle body (1), an installation cavity (3) is formed in the vehicle body (1), a rotating motor (4) is fixedly installed on the inner wall of the bottom of the installation cavity (3), a rotating shaft (5) is welded to the output shaft of the rotating motor (4), the top end of the rotating shaft (5) extends to the outside of the top of the vehicle body (1) and is fixedly connected with the bottom of the rotating seat (2), a fixed column (6) is fixedly connected with the outside of the rotating seat (2), one end of the fixed column (6) is fixedly connected with a hydraulic cylinder (7), a hydraulic telescopic arm (8) is welded to the output shaft of the hydraulic cylinder (7), a first shell (9) is fixedly connected with the bottom end of the hydraulic telescopic arm (8), a cleaning opening (10) is formed in one side of the first shell (9), a first installation opening is formed in the bottom of the first shell (9), a first filter screen (21) is fixedly installed in the first installation opening, a second shell (11) is fixedly connected with the bottom of the first shell (9), a first rotating rod (12) is rotatably installed in the first shell (9), a cleaning roller (13) is fixedly sleeved with the outside of the first rotating rod (12), a motor cavity (14), a water diversion cavity (15) and a transmission cavity (16) are respectively formed in the second shell (11), a motor (17) is fixedly installed on the inner wall of one side of the motor cavity (14), a water diversion paddle (18) is rotatably installed in the water diversion cavity (15), a paddle shaft (23) is rotatably installed on the bottom of the first filter screen (21), the water diversion paddle (18) is fixedly sleeved with the outside of the paddle shaft (23), a push rod (19) is slidably installed in the first shell (9), a sliding groove is formed in the inner wall of each side of the first shell (9), a sliding block (24) is slidably installed in each sliding groove, the two sliding blocks (24) are respectively fixedly connected with the two ends of the push rod (19), the motor (17) cooperates with the water diversion paddle (18), the cleaning roller (13) and the push rod (19), a discharge opening is formed in one side of the first shell (9), a steel mesh bag (20) is arranged on the discharge opening.

2. A device for recycling of cathodic protection waste material from a port according to claim 1, characterized in that, A second installation opening is formed in the bottom of the second shell (11) and communicates with the water diversion cavity (15), a second filter screen (22) is fixedly installed in the second installation opening.

3. A device for recycling of cathodic protection waste material from a port according to claim 1, characterized in that, A first rotating hole is formed in the side of the motor cavity (14) and the water diversion cavity (15) close to each other, a second rotating hole is formed in the side of the water diversion cavity (15) and the transmission cavity (16) close to each other, a second rotating rod (25) is rotatably installed in the first rotating hole and the second rotating hole, one end of the second rotating rod (25) extends into the motor cavity (14) and is welded with the output shaft of the motor (17).

4. A device for recovering cathodic protection waste material from a port according to claim 3, characterized in that, A first bevel gear (26) is fixedly sleeved with the outside of the second rotating rod (25), a second bevel gear (27) is fixedly connected with the bottom end of the paddle shaft (23), the second bevel gear (27) is engaged with the first bevel gear (26).

5. A device for recycling of cathodic protection waste material from a port according to claim 1, characterized in that, The first shell (9) is provided with a gear cavity, one end of the first rotating rod (12) extends into the rotating cavity and is fixedly connected with the third bevel gear (28), the gear cavity and the side of the transmission cavity (16) close to each other are provided with a same third rotating hole, the third rotating hole is rotatably provided with the third rotating rod (29), the top end of the third rotating rod (29) is fixedly connected with the fourth bevel gear (30), and the fourth bevel gear (30) is engaged with the third bevel gear (28).

6. A device for recycling of cathodic protection waste material from a port according to claim 3, characterized in that, The other end of the second rotating rod (25) extends into the transmission cavity (16) and is fixedly connected with the fifth bevel gear (31), the bottom end of the third rotating rod (29) extends into the transmission cavity (16) and is fixedly connected with the sixth bevel gear (32), and the sixth bevel gear (32) is engaged with the fifth bevel gear (31).

7. A device for recycling of cathodic protection waste material from a port according to claim 1, characterized in that, The side inner wall of the first shell (9) is provided with a groove, the groove and the side of the transmission cavity (16) close to each other are provided with a same fourth rotating hole, the fourth rotating hole is rotatably provided with the fourth rotating rod (33), the outer side of the second rotating rod (25) is fixedly provided with the seventh bevel gear (34), the bottom end of the fourth rotating rod (33) extends into the transmission cavity (16) and is fixedly connected with the eighth bevel gear (35), and the eighth bevel gear (35) is engaged with the seventh bevel gear (34).

8. A device for recovering cathodic protection waste material from a port according to claim 7, characterized in that, The top end of the fourth rotating rod (33) extends into the groove and is fixedly connected with the rotating rod (36), one end of the transmission rod (37) is rotatably connected to the rotating rod (36), the other end of the transmission rod (37) is rotatably connected to one side of the push rod (19), and the push rod (19) is matched with the steel mesh bag (20).

9. Use of a device for recycling of cathodic protection waste material at a port according to any one of claims 1-8, characterized in that, The method comprises the following steps: S1: in use, first, the vehicle body (1) is driven to the port side, then the rotating motor (4) is started, the output shaft of the rotating motor (4) drives the rotating shaft (5) to rotate, the rotating shaft (5) drives the rotating seat (2) to rotate, the rotating seat (2) drives the fixed column (6) to rotate, the fixed column (6) drives the hydraulic cylinder (7) to displace, the hydraulic cylinder (7) drives the first shell (9) to displace to a suitable displacement through the hydraulic telescopic arm (8), then the hydraulic cylinder (7) is started, the output shaft of the hydraulic cylinder (7) drives the hydraulic telescopic arm (8) to extend, and the hydraulic telescopic arm (8) drives the first shell (9) to be put into water and abut against one side of the sacrificial anode; S2: then the motor (17) is started, the output shaft of the motor (17) drives the second rotating rod (25) to rotate, at this time, the second rotating rod (25) drives the fifth bevel gear (31) to rotate, the fifth bevel gear (31) drives the sixth bevel gear (32) to rotate, the sixth bevel gear (32) drives the third rotating rod (29) to rotate, the third rotating rod (29) drives the fourth bevel gear (30) to rotate, the fourth bevel gear (30) drives the third bevel gear (28) to rotate, the third bevel gear (28) drives the first rotating rod (12) to rotate, and the first rotating rod (12) drives the cleaning roller (13) to rotate, so that the cleaning roller (13) can clean the solid corrosion on the surface of the sacrificial anode through the cleaning opening (10); S3: while the second rotating rod (25) drives the first bevel gear (26) to rotate, the first bevel gear (26) drives the second bevel gear (27) to rotate, the second bevel gear (27) drives the paddle shaft (23) to rotate, and the paddle shaft (23) drives the water guide paddle (18) to rotate, so that the rotating water guide paddle (18) can effectively guide the water flow, thereby effectively guiding the cleaned solid corrosion to the first shell (9), avoiding direct falling into the water to pollute the water quality of the port; S4: while the second rotating rod (25) drives the seventh bevel gear (34) to rotate, the seventh bevel gear (34) drives the eighth bevel gear (35) to rotate, the eighth bevel gear (35) drives the fourth rotating rod (33) to rotate, the fourth rotating rod (33) drives the rotating rod (36) to rotate, and the rotating rod (36) drives the push rod (19) to reciprocate through the transmission rod (37), so that the push rod (19) can push the solid corrosion on the first filter screen (21) into the wire mesh bag (20), thereby avoiding the first filter screen (21) from being blocked, and secondly facilitating the collection and unified treatment of the solid corrosion.

Citation Information

Patent Citations

  • Marine garbage cleaning robot

    CN111498030A

  • Water surface garbage cleaning device with crushing and collecting structure for aquaculture

    CN112012183A