CN114345769A - Dampproofing processing apparatus for hydraulic engineering equipment - Google Patents

Dampproofing processing apparatus for hydraulic engineering equipment Download PDF

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CN114345769A
CN114345769A CN202111560215.5A CN202111560215A CN114345769A CN 114345769 A CN114345769 A CN 114345769A CN 202111560215 A CN202111560215 A CN 202111560215A CN 114345769 A CN114345769 A CN 114345769A
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frame body
rotating shaft
hydraulic engineering
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CN114345769B (en
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郑小华
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Abstract

The invention relates to a processing device, in particular to a moisture-proof processing device for hydraulic engineering equipment. The technical problem of the invention is that: the damp-proof processing device for the hydraulic engineering equipment can protect the hydraulic engineering equipment from damp and can scrape moss generated on the surface of the equipment. The utility model provides a dampproofing processing apparatus for hydraulic engineering equipment, including: the support column is arranged on each of two sides of the bottom of the frame body; the fixing rods are arranged on two sides of the frame body; the upper side and the lower side of the fixed rod are respectively provided with a rotating sleeve in a rotating mode; the isolating doors are connected between the rotating sleeves on the upper side and the lower side; exhaust net board, isolation door downside all are equipped with exhaust net board. The invention achieves the effects of protecting hydraulic engineering equipment from moisture and scraping moss generated on the surface of the equipment; the third rotating shaft drives the cutting knife to rotate, so that the cutting knife can scrape the moss on the rear side of the equipment.

Description

Dampproofing processing apparatus for hydraulic engineering equipment
Technical Field
The invention relates to a processing device, in particular to a moisture-proof processing device for hydraulic engineering equipment.
Background
Because hydraulic engineering equipment often carries out the operation in the district of wading with water, and the humidity in the air is too big, and the humidity of air is too big can make the mould breed fast, makes the equipment surface rust by oxidation in addition.
People need hydraulic engineering equipment to maintain when not using hydraulic engineering's equipment, and people generally are through using a great plastics leather lid on hydraulic engineering equipment surface for hydraulic engineering equipment can not contact with the air as far as possible, then because the plastics leather is comparatively easy to be damaged, thereby is not strong to hydraulic engineering equipment's protectiveness.
Therefore, a damp-proof treatment device for hydraulic engineering equipment is needed to be designed, wherein the damp-proof treatment device can protect the hydraulic engineering equipment from damp and can scrape moss generated on the surface of the equipment.
Disclosure of Invention
In order to overcome the defect that the plastic skin is easy to damage and does not have strong protection on the equipment by protecting the surface of the hydraulic engineering equipment by using the plastic skin, the technical problem of the invention is as follows: the damp-proof processing device for the hydraulic engineering equipment can protect the hydraulic engineering equipment from damp and can scrape moss generated on the surface of the equipment.
The utility model provides a dampproofing processing apparatus for hydraulic engineering equipment, including: the support column is arranged on each of two sides of the bottom of the frame body; the fixing rods are arranged on two sides of the frame body; the upper side and the lower side of the fixed rod are respectively provided with a rotating sleeve in a rotating mode; the isolating doors are connected between the rotating sleeves on the upper side and the lower side; the lower sides of the isolation doors are provided with exhaust grating plates; the damping mechanism is arranged on the inner side of the frame body; the air inlet mechanism is arranged at the top of the frame body.
Further, the damper mechanism includes: the bottom in the frame body is symmetrically and slidably provided with two sliding rods, and the number of the sliding rods is four; the damping spring is connected between the sliding rod and the bottom in the frame body; the dampproof board is connected with between the slide bar top.
Further explaining, the air inlet mechanism comprises: the first fixing column is symmetrically arranged on one part of the frame body; the air inlet frames are arranged on the first fixing columns; the middle of one side of the top of the frame body is provided with a second fixing column; the motor is arranged on the second fixing column; the third fixing columns are arranged on two sides of the top of the frame body; the first air delivery pipes are arranged on the third fixing columns, and one sides of the first air delivery pipes are communicated with the air inlet frame; a second air delivery pipe is connected between the upper parts of the first air delivery pipes; the air inlet frame is rotatably provided with a first rotating shaft; first belt pulleys are arranged on the first rotating shaft and the output shaft of the motor, and first flat belts are connected between every two adjacent first belt pulleys; the fan, first pivot rear side all are equipped with the fan, and the fan all is located the frame that admits air.
Further explaining, still including the separating mechanism, the separating mechanism includes: the fourth fixing columns are arranged on two sides of the top of the frame body, and are arranged on two sides of the frame body in an up-and-down symmetrical mode; the first water drainage pipe is connected between the three fourth fixing columns on the left side and the right side; the inner sides of the first drainage pipes are provided with drainage frames, the drainage frames are respectively positioned right below the first air delivery pipes, and the bottoms of the first air delivery pipes are communicated with the drainage frames; a plurality of drainage tubes are uniformly arranged at the top of the drainage frame; the bottom of the first air delivery pipe is rotatably provided with a second rotating shaft which is rotatably connected with the drainage frame; the first rotating plates are arranged on the second rotating shafts and are positioned on the inner sides of the first air delivery pipes; first bevel gears are arranged on the first rotating shaft and the second rotating shaft, and the two adjacent first bevel gears are meshed.
Further explain, still include cutting mechanism, cutting mechanism includes: the middle positions of two sides of the frame body are respectively provided with a fifth fixing column; the inner sides of the third rotating shaft and the fifth fixing column are respectively and rotatably provided with a third rotating shaft, and the third rotating shafts are positioned on the rear side of the frame body; the cutting knife is arranged on one side of the third rotating shaft; second belt pulleys are arranged on the third rotating shaft, and second flat belts are connected between the first belt pulleys on the motor output shaft and the second belt pulleys on the two sides respectively.
Further explain, still including dust removal mechanism, dust removal mechanism is including: the sixth fixing columns are symmetrically arranged at the top in the frame body; a fourth rotating shaft is rotatably arranged between the sixth fixing columns; the middle of the fourth rotating shaft is provided with a second rotating plate; the top in the frame body is symmetrically provided with the dust removing brushes, and the dust removing brushes on the two sides are respectively positioned on the outer sides of the sixth fixing columns on the two sides; and two sides of the fourth rotating shaft and the middle of the dust removing brush are respectively provided with a second bevel gear, and two adjacent second bevel gears are meshed.
Further explain, still including collecting the mechanism, collect the mechanism including: two seventh fixed columns are arranged on two sides of the frame body, and the number of the seventh fixed columns is four; a collecting frame is connected between the inner sides of the seventh fixing columns; the conveying pipes are communicated with the middles of the two sides of the collecting frame; the lower sides of the two sides of the frame body are provided with supporting plates; the upper parts of the supporting plates are provided with collecting barrels, and the tops of the collecting barrels are communicated with the conveying pipe; the positions, close to the supporting plate, of the outer side of the collecting barrel are communicated with second drain pipes; the eighth fixing columns are arranged on the inner sides of the second drain pipes; the outer sides of the eighth fixed columns are rotatably provided with the turntables, and the turntables are rotatably connected with the second water drainage pipe; keep off the ball, the carousel rear side all is equipped with the fender ball, and the fender ball all is located the second drain pipe inboard.
Further, the volume of the collecting tank was 10 liters.
The invention has the beneficial effects that: 1. the invention achieves the effects of protecting hydraulic engineering equipment from moisture and scraping moss generated on the surface of the equipment;
2. according to the invention, the equipment is placed on the inner side of the frame body, and the air circulation is accelerated through the rotation of the fan, so that the surface of the equipment can be kept dry;
3. according to the invention, the third rotating shaft drives the cutting knife to rotate, so that the cutting knife can scrape down moss on the rear side of the equipment.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a partial perspective view of the present invention.
Fig. 3 is a schematic perspective view of the damping mechanism of the present invention.
Fig. 4 is a schematic perspective view of a first part of the air intake mechanism of the present invention.
Fig. 5 is a schematic perspective view of a second part of the air intake mechanism of the present invention.
Fig. 6 is a schematic perspective view of a first part of the separating mechanism of the present invention.
Fig. 7 is a perspective view of a second part of the separating mechanism of the present invention.
Fig. 8 is a schematic perspective view of the cutting mechanism of the present invention.
Fig. 9 is a schematic perspective view of the dust removing mechanism of the present invention.
Fig. 10 is a perspective view of a first portion of the collection mechanism of the present invention.
Fig. 11 is a perspective view of a second part of the collecting mechanism of the present invention.
Reference numbers in the drawings: 1: support column, 2: frame, 3: fixed link, 4: rotating sleeve, 5: isolation gate, 6: exhaust mesh plate, 7: damper mechanism, 71: moisture-proof plate, 72: damper spring, 73: slide bar, 8: air inlet mechanism, 81: first fixing column, 82: air intake frame, 83: second fixing column, 84: motor, 85: first flat belt, 86: first air delivery duct, 87: third fixing column, 88: second air delivery pipe, 89: first shaft, 810: fan, 9: separating mechanism, 91: drainage frame, 92: a drainage tube, 93: first drain pipe, 94: fourth fixing column, 95: second rotating shaft, 96: first bevel gear, 97: first rotating plate, 10: cutting mechanism, 101: fifth fixing column, 102: cutting knife, 103: third rotating shaft, 104: second flat belt, 11: dust removal mechanism, 111: sixth fixing column, 112: fourth rotation shaft, 113: second rotating plate, 114: second bevel gear, 115: dust removal brush, 12: collecting mechanism, 121: seventh fixing column, 122: collection box, 123: delivery pipe, 124: collecting barrel, 125: second drain pipe, 126: a pallet, 127: catch ball, 128: turntable, 129: and an eighth fixed column.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example 1
The utility model provides a dampproofing processing apparatus for hydraulic engineering equipment, as shown in fig. 1-2, including support column 1, framework 2, dead lever 3, change cover 4, isolating door 5, exhaust waffle slab 6, damper 7 and air inlet mechanism 8, framework 2 bottom left and right sides all is equipped with support column 1, framework 2 front side left and right sides all is equipped with dead lever 3, the equal rotary type in both sides is equipped with changes cover 4 about dead lever 3, all be connected with isolating door 5 between the commentaries on classics cover 4 of upper and lower both sides, 5 downside of isolating door all is equipped with exhaust waffle slab 6, framework 2 inboard is equipped with damper 7, framework 2 top is equipped with air inlet mechanism 8.
The user can rotate isolating gate 5 and commentaries on classics cover 4, opens the isolating gate 5 of both sides, places equipment in framework 2 afterwards to close isolating gate 5, the in-process of placing, because equipment has certain weight, thereby damper 7 can prevent that equipment from suffering the damage at the in-process of placing, exhaust graticule 6 can be so that framework 2 keeps the ventilation state, and the user can make through air inlet mechanism 8 keep dry in the framework 2.
Example 2
On the basis of embodiment 1, as shown in fig. 3 to 5, the damping mechanism 7 includes a damp-proof plate 71, a damping spring 72 and four sliding rods 73, two sliding rods 73 are symmetrically arranged at the bottom of the frame 2 in a left-right sliding manner, the number of the sliding rods 73 is four, the damping spring 72 is connected between the sliding rods 73 and the bottom of the frame 2, and the damp-proof plate 71 is connected between the tops of the sliding rods 73.
The user places equipment in dampproofing board 71 top, dampproofing board 71 this moment drives slide bar 73 downstream, and damping spring 72 is compressed, and when the user took off equipment from dampproofing board 71, under damping spring 72's reset action, dampproofing board 71 and slide bar 73 rebound reset, so, equipment is at the in-process of placing, and damping spring 72 can give equipment certain buffering, prevents that equipment from receiving the damage.
Example 3
Based on embodiment 2, as shown in fig. 6 to 11, the air intake mechanism 8 includes a first fixed column 81, an air intake frame 82, a second fixed column 83, a motor 84, a first flat belt 85, a first air duct 86, a third fixed column 87, a second air duct 88, a first rotating shaft 89 and a fan 810, the first fixed column 81 is symmetrically arranged on the upper side of the rear portion of the frame body 2, the air intake frame 82 is arranged on the first fixed column 81, the second fixed column 83 is arranged in the middle of the rear side of the top portion of the frame body 2, the motor 84 is arranged on the second fixed column 83, the third fixed column 87 is arranged on the left side and the right side of the top portion of the frame body 2, the first air duct 86 is arranged on the third fixed column 87, the rear side of the first air duct 86 is communicated with the air intake frame 82, the second air duct 88 is communicated between the upper portions of the first air duct 86, the first rotating shaft 89 is rotatably arranged on the output shafts of the first rotating shaft 89 and the motor 84, all be connected with first flat belt 85 between the adjacent first belt pulley, first pivot 89 rear side all is equipped with fan 810, and fan 810 all is located air inlet frame 82.
The motor 84 is started, the output shaft of the motor 84 rotates to drive the first rotating shafts 89 on two sides to rotate through the first belt pulley and the first flat belt 85, then the fans 810 on two sides are driven to rotate, the air generated by the fans 810 is led into the frame body 2 through the first air conveying pipe 86 and the second air conveying pipe 88, the air circulation in the frame body 2 can be kept, and when the fans 810 are not required to rotate, the motor 84 is closed.
The separation device also comprises a separation mechanism 9, the separation mechanism 9 comprises a drainage frame 91, a drainage tube 92, a first drainage tube 93, a fourth fixed column 94, a second rotating shaft 95, a first bevel gear 96 and a first rotating plate 97, the left side and the right side of the top of the frame body 2 are respectively provided with the fourth fixed column 94, the left side and the right side of the frame body 2 are also provided with the fourth fixed column 94 in an up-and-down symmetrical mode, the first drainage tube 93 is connected between the three fourth fixed columns 94 on the left side and the right side, the drainage frame 91 is arranged on the inner side of the first drainage tube 93, the drainage frame 91 is respectively positioned under the first air conveying tube 86, the top of the drainage frame 91 is uniformly provided with a plurality of drainage tubes 92, the bottom of the first air conveying tube 86 is communicated with the drainage frame 91, the bottom of the first air conveying tube 86 is respectively and rotatably provided with the second rotating shaft 95, the second rotating shaft 95 is rotatably connected with the drainage frame 91, the second rotating shaft 95 is respectively provided with the first rotating plate 97, the first rotating plate 97 is positioned on the inner side of the first air conveying tube 86, first bevel gears 96 are arranged on the first rotating shaft 89 and the second rotating shaft 95, and two adjacent first bevel gears 96 are meshed.
When the air lets in first defeated tuber pipe 86, first pivot 89 rotates and drives second pivot 95 and first rotor plate 97 through first bevel gear 96 and rotate, and then makes the air can carry out the rotatory circulation, utilizes the inertia of droplet to get rid of the droplet on cyclone's inner tube wall then lean on gravity to flow down and collect, so can get rid of the steam in the moist air to flow out through drainage frame 91, drainage tube 92 and first drain pipe 93.
Still including cutting mechanism 10, cutting mechanism 10 is including fifth fixed column 101, cutting knife 102, third pivot 103 and the flat belt of second 104, framework 2 left and right sides intermediate position all is equipped with fifth fixed column 101, the inboard equal rotary type of fifth fixed column 101 is equipped with third pivot 103, third pivot 103 all is located framework 2's rear side, third pivot 103 front side all is equipped with cutting knife 102, all be equipped with the second belt pulley in the third pivot 103, the epaxial first belt pulley of motor 84 output respectively with be connected with the flat belt of second 104 between the second belt pulley of both sides.
If the frame body 2 is placed at a corner or in a relatively humid environment, the rear side surface of the frame body 2 may grow a moss, so that the output shaft of the motor 84 rotates to drive the third rotating shafts 103 at two sides to rotate through the first belt pulley, the second belt pulley and the second flat belt 104, and further drive the cutting knives 102 at two sides to rotate, and thus the cutting knives 102 at two sides can scrape the moss at the rear side of the frame body 2.
The dust removing device comprises a dust removing mechanism 11, the dust removing mechanism 11 comprises a sixth fixing column 111, a fourth rotating shaft 112, a second rotating plate 113, a second bevel gear 114 and a dust removing brush 115, the sixth fixing column 111 is symmetrically arranged on the left and right of the inner top of the frame body 2, the fourth rotating shaft 112 is rotatably arranged between the sixth fixing columns 111, the second rotating plate 113 is arranged in the middle of the fourth rotating shaft 112, the dust removing brush 115 is symmetrically arranged on the left and right of the inner top of the frame body 2, the dust removing brushes 115 on the two sides are respectively located on the outer sides of the sixth fixing columns 111 on the two sides, the second bevel gear 114 is arranged between the left and right of the fourth rotating shaft 112 and the dust removing brush 115, and the two adjacent second bevel gears 114 are meshed.
When the air in the second air duct 88 flows into the frame 2, the second rotating plate 113 and the fourth rotating shaft 112 are driven to rotate, and the second bevel gear 114 drives the dust removing brush 115 to rotate, so that the dust removing brush 115 can remove dust on the surface of the equipment.
The collecting device further comprises a collecting mechanism 12, the collecting mechanism 12 comprises seventh fixing columns 121, a collecting frame 122, conveying pipes 123, collecting barrels 124, a second drain pipe 125, a supporting plate 126, blocking balls 127, a rotary table 128 and eighth fixing columns 129, two seventh fixing columns 121 are arranged on the left side and the right side of the frame body 2, the number of the seventh fixing columns 121 is four, the collecting frame 122 is connected between the inner sides of the seventh fixing columns 121, the conveying pipes 123 are communicated between the left side and the right side of the collecting frame 122, the supporting plates 126 are arranged on the lower sides of the left side and the right side of the frame body 2, the collecting barrels 124 are arranged on the upper portions of the supporting plates 126, the tops of the collecting barrels 124 are communicated with the conveying pipes 123, the positions, close to the supporting plates 126, on the outer sides of the collecting barrels 124 are communicated with the second drain pipe 125 in a rotating manner, the eighth fixing columns 129 are arranged on the inner sides of the second drain pipe 125, the rotary table 128 is arranged on the outer sides of the eighth fixing columns 129, and the rotary table 128 is rotatably connected with the second drain pipe 125, the rear sides of the turntables 128 are provided with blocking balls 127, and the blocking balls 127 are positioned at the inner sides of the second drain pipes 125.
If rainwater falls on the collecting frame 122, the rainwater can flow into the collecting barrel 124 through the delivery pipe 123, and since the round hole is formed in the blocking ball 127, the user can rotate the rotary disc 128 to enable the round hole in the blocking ball 127 to be communicated with the second drain pipe 125, and then the rainwater in the collecting barrel 124 can flow out through the second drain pipe 125, and after the rainwater in the collecting barrel 124 is discharged, the user can reversely rotate the rotary disc 128 to enable the round hole in the blocking ball 127 to be no longer communicated with the second drain pipe 125.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (8)

1. The utility model provides a dampproofing processing apparatus for hydraulic engineering equipment which characterized in that, including:
the device comprises supporting columns (1) and a frame body (2), wherein the supporting columns (1) are arranged on two sides of the bottom of the frame body (2); the fixing rods (3) are arranged on two sides of the frame body (2); the upper side and the lower side of the fixed rod (3) are respectively provided with a rotating sleeve (4) in a rotating way; the isolating doors (5) are connected between the rotating sleeves (4) on the upper side and the lower side of the isolating door (5); the lower sides of the exhaust grating plates (6) and the isolating doors (5) are provided with the exhaust grating plates (6); the damping mechanism (7) is arranged on the inner side of the frame body (2); the air inlet mechanism (8) is arranged at the top of the frame body (2).
2. The damp-proof treatment device for the hydraulic engineering equipment according to claim 1, wherein the damping mechanism (7) comprises:
the bottom in the frame body (2) is symmetrically and slidably provided with two sliding rods (73), and the number of the sliding rods (73) is four; the damping spring (72) is connected between the sliding rod (73) and the inner bottom of the frame body (2); the moisture-proof plate (71) is connected between the tops of the moisture-proof plates (71) and the sliding rods (73).
3. The moisture-proof processing device for the hydraulic engineering equipment according to claim 2, wherein the air inlet mechanism (8) comprises:
the first fixing column (81) is symmetrically arranged on one part of the frame body (2); the air inlet frames (82) are arranged on the first fixing columns (81); the middle of one side of the top of the frame body (2) is provided with a second fixing column (83); the motor (84) is arranged on the second fixing column (83); the third fixing columns (87) are arranged on the two sides of the top of the frame body (2); the first air conveying pipes (86) are arranged on the third fixing columns (87), and one sides of the first air conveying pipes (88) are communicated with the air inlet frame (82); a second air delivery pipe (88) is connected between the upper parts of the first air delivery pipes (86); the first rotating shaft (89) and the air inlet frame (82) are respectively and rotatably provided with the first rotating shaft (89); first flat belts (85), first belt pulleys are arranged on the first rotating shaft (89) and the output shaft of the motor (84), and the first flat belts (85) are connected between the adjacent first belt pulleys; the fan (810) is arranged on the rear side of the first rotating shaft (89), and the fan (810) is located in the air inlet frame (82).
4. The moisture-proof processing device for the hydraulic engineering equipment according to claim 3, further comprising a separating mechanism (9), wherein the separating mechanism (9) comprises:
the fourth fixing columns (94) are arranged on the two sides of the top of the frame body (2), and the fourth fixing columns (94) are arranged on the two sides of the frame body (2) in an up-and-down symmetrical mode; the first drain pipe (93) is connected between the three fourth fixing columns (94) on the left side and the right side of the first drain pipe (93); the inner sides of the first drainage pipes (93) are provided with the drainage frames (91), the drainage frames (91) are respectively positioned right below the first air delivery pipes (86), and the bottoms of the first air delivery pipes (86) are communicated with the drainage frames (91); a plurality of drainage tubes (92) are uniformly arranged at the top of the drainage frame (91); the bottom of the first air delivery pipe (86) is rotatably provided with a second rotating shaft (95), and the second rotating shaft (95) is rotatably connected with the drainage frame (91); the first rotating plates (97) are arranged on the second rotating shafts (95), and the first rotating plates (97) are positioned on the inner sides of the first air delivery pipes (86); first bevel gears (96) are arranged on the first rotating shaft (89) and the second rotating shaft (95), and the two adjacent first bevel gears (96) are meshed.
5. The moisture-proof processing device for the hydraulic engineering equipment according to claim 4, further comprising a cutting mechanism (10), wherein the cutting mechanism (10) comprises:
fifth fixing columns (101) are arranged in the middle positions of two sides of the frame body (2); the inner sides of the fifth fixing columns (101) are respectively and rotatably provided with a third rotating shaft (103), and the third rotating shafts (103) are respectively positioned on one side of the frame body (2); the cutting knife (102) is arranged on one side of the cutting knife (102) and the third rotating shaft (103); second flat belts (104) are arranged on the third rotating shaft (103), and second flat belts (104) are connected between the first belt pulleys on the output shaft of the motor (84) and the second belt pulleys on the two sides respectively.
6. The moisture-proof processing device for the hydraulic engineering equipment according to claim 5, further comprising a dust removing mechanism (11), wherein the dust removing mechanism (11) comprises:
the sixth fixing column (111) is symmetrically arranged at the top in the frame body (2); a fourth rotating shaft (112) is rotatably arranged between the fourth rotating shaft (112) and the sixth fixing column (111); a second rotating plate (113), wherein the middle of the fourth rotating shaft (112) is provided with the second rotating plate (113); the dust removing brushes (115) are symmetrically arranged at the top in the frame body (2), and the dust removing brushes (115) at two sides are respectively positioned at the outer sides of the sixth fixing columns (111) at two sides; two sides of the fourth rotating shaft (112) and the middle of the dust removing brush (115) are respectively provided with a second bevel gear (114), and two adjacent second bevel gears (114) are meshed.
7. The moisture-proof processing device for the hydraulic engineering equipment according to claim 6, further comprising a collecting mechanism (12), wherein the collecting mechanism (12) comprises:
two seventh fixing columns (121) are arranged on two sides of the frame body (2), and the number of the seventh fixing columns (121) is four; the collecting frame (122) is connected between the inner sides of the seventh fixing columns (121); the middle parts of the two sides of the collecting frame (122) are communicated with the conveying pipe (123); the supporting plates (126) are arranged at the lower sides of the two sides of the frame body (2); the upper parts of the supporting plates (126) are provided with the collecting barrels (124), and the tops of the collecting barrels (124) are communicated with the conveying pipe (123); the positions, close to the supporting plate (126), of the outer side of the collecting barrel (124) are all communicated with a second drain pipe (125); the eighth fixing columns (129) are arranged on the inner sides of the second water discharging pipes (125); the outer sides of the eighth fixing columns (129) are respectively and rotatably provided with the rotary disc (128), and the rotary disc (128) is rotatably connected with the second water drainage pipe (125); the rear sides of the blocking balls (127) and the rotary disc (128) are provided with the blocking balls (127), and the blocking balls (127) are positioned on the inner side of the second drain pipe (125).
8. The moisture-proof processing device for hydraulic engineering equipment as claimed in claim 7, wherein the volume of the collecting barrel (124) is 10 liters.
CN202111560215.5A 2021-12-20 2021-12-20 Dampproofing processing apparatus is used to hydraulic engineering equipment Active CN114345769B (en)

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CN114345769B CN114345769B (en) 2023-11-03

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