CN112642756B - Railway signal power supply screen protection device - Google Patents

Railway signal power supply screen protection device Download PDF

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Publication number
CN112642756B
CN112642756B CN202011412580.7A CN202011412580A CN112642756B CN 112642756 B CN112642756 B CN 112642756B CN 202011412580 A CN202011412580 A CN 202011412580A CN 112642756 B CN112642756 B CN 112642756B
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CN
China
Prior art keywords
frame
limiting
fixedly connected
ash
sliding
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Expired - Fee Related
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CN202011412580.7A
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Chinese (zh)
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CN112642756A (en
Inventor
李珊珊
梁宏伟
韦成杰
穆中华
李丽兰
王秀玄
楚彩虹
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Zhengzhou Railway Vocational and Technical College
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Zhengzhou Railway Vocational and Technical College
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Priority to CN202011412580.7A priority Critical patent/CN112642756B/en
Publication of CN112642756A publication Critical patent/CN112642756A/en
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Publication of CN112642756B publication Critical patent/CN112642756B/en
Expired - Fee Related legal-status Critical Current
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/10Cleaning by methods involving the use of tools characterised by the type of cleaning tool
    • B08B1/12Brushes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/30Cleaning by methods involving the use of tools by movement of cleaning members over a surface
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B13/00Accessories or details of general applicability for machines or apparatus for cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B15/00Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area
    • B08B15/04Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area from a small area, e.g. a tool

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  • Cleaning In General (AREA)

Abstract

The invention relates to the field of power supply screen protection, in particular to a railway signal power supply screen protection device which comprises an ash containing frame, a cleaning mechanism, a rotating frame, a cleaning power mechanism, a moving frame, an installation main frame, an upper limiting mechanism, a lower limiting mechanism and an ash pushing mechanism, wherein the cleaning mechanism is connected to the rear end of the ash containing frame in a sliding manner, the upper end of the ash containing frame is connected to the front end of the rotating frame in a sliding manner, the cleaning power mechanism is fixedly connected to the upper end of the ash containing frame and is connected with the cleaning mechanism in a rotating manner, the rear end of the rotating frame is connected to the upper end of the installation main frame in a sliding manner, the moving frame is connected to the upper end of the installation main frame and is in meshing transmission connection with the rotating frame, the two upper limiting mechanisms are connected to the upper part of the installation main frame, the lower limiting mechanism is connected to the lower part of the installation main frame, the lower limiting mechanism and the two upper limiting mechanisms are arranged in opposite directions up and down, the ash pushing mechanism is connected to the ash containing frame, the invention can clean ash of the power supply screen, and avoid the fault and the influence on the railway operation.

Description

Railway signal power supply screen protection device
Technical Field
The invention relates to the field of power supply screen protection, in particular to a railway signal power supply screen protection device.
Background
In a railway traffic system, a signal lamp is an important device for providing signals for train operation, a railway signal power supply screen provides energy for the signal lamp, the stability and the safety of the railway signal power supply screen are required to be ensured during operation, the railway signal power supply screen is often arranged near a rail, and in the working process, due to the fact that more dust is arranged near a railway track, the railway track power supply screen is full of dust, the railway track power supply screen which is full of dust runs for a long time, faults easily occur, and railway operation is affected.
Disclosure of Invention
The invention aims to provide a railway signal power supply screen protection device which can be used for cleaning dust of a power supply screen and avoiding faults from affecting railway operation.
The purpose of the invention is realized by the following technical scheme:
a railway signal power supply screen protection device comprises an ash containing frame, a cleaning mechanism, a rotating frame, a cleaning power mechanism, a moving frame, an installation main frame, an upper limit mechanism, a lower limit mechanism and an ash pushing mechanism, the cleaning mechanism is connected with the rear end of the ash containing frame in a sliding way, the upper end of the ash containing frame is connected with the front end of the rotating frame in a sliding way, the cleaning power mechanism is fixedly connected with the upper end of the ash containing frame and is rotationally connected with the cleaning mechanism, the rear end of the rotating frame is slidably connected with the upper end of the mounting main frame, the moving frame is connected with the upper end of the mounting main frame, and is engaged and connected with the rotating frame in a transmission way, two upper limiting mechanisms are arranged, the two upper limiting mechanisms are both connected with the upper part of the installation main frame, the lower limiting mechanism is connected to the lower portion of the installation main frame, the lower limiting mechanism and the two upper limiting mechanisms are arranged in an up-and-down opposite mode, and the ash pushing mechanism is connected to the ash containing frame.
Flourishing ash frame include grey groove frame, the fan of breathing in, closure plate, side slide, go up closure plate and last connecting seat down, the fan fixed connection that breathes in all is equipped with the side slide at the lower extreme of grey groove frame, the left and right sides of grey groove frame, closure plate under the lower extreme fixedly connected with of grey groove frame, closure plate on the upper end fixedly connected with of grey groove frame, go up fixedly connected with and go up the connecting seat on the closure plate.
Cleaning the mechanism including cleaning connecting plate, brush and inhaling grey head, clean a plurality of brushes of fixedly connected with and a plurality of grey heads of inhaling on the connecting plate, a plurality of grey heads of inhaling set up with a plurality of brush intervals, clean connecting plate sliding connection in two side slides.
The rotating turret include slide, worm wheel, support slide frame, accommodate motor I and adjusting screw I, the middle part of slide is equipped with the worm wheel, slide fixed connection has adjusting screw I through threaded connection on supporting the slide frame at the rear end that supports the slide frame, I fixed connection of adjusting screw is on the output shaft of accommodate motor I, go up connecting seat sliding connection on supporting the slide frame, I fixed connection of accommodate motor is on last connecting seat.
The cleaning power mechanism comprises a cleaning motor, a rotating wheel and a linkage plate, the cleaning motor is fixedly connected to the upper connecting seat, the rotating wheel is fixedly connected to an output shaft of the cleaning motor, the upper end of the linkage plate is rotatably connected to the eccentric position of the rotating wheel, and the lower end of the linkage plate is rotatably connected to the lower end of the cleaning connecting plate.
The installation body frame include the sideslip post, adjusting screw II, the side shield, adjusting motor II, the mainboard, spacing traveller, limit baffle, spacing slide opening and lift traveller, the equal fixedly connected with side shield in both ends of sideslip post, the lower extreme fixedly connected with mainboard of two side shields, the lower part of mainboard is equipped with spacing slide opening, lift traveller fixed connection is at the lower extreme of mainboard, II fixed connections of adjusting motor are on one of them side shield, the both ends of adjusting screw II rotate with two side shields respectively and are connected, adjusting screw II and adjusting motor II's output shaft fixed connection, spacing traveller is equipped with two, the equal fixed connection of two spacing travelers is at the rear end of mainboard, the equal fixedly connected with limit baffle in rear end of two spacing travelers.
The movable rack comprises a movable limiting rack, an adjusting motor III and a worm, the movable limiting rack is connected to a cross sliding column in a sliding mode and is in threaded connection with an adjusting screw II, the adjusting motor III is fixedly connected to the movable limiting rack, the worm is fixedly connected to an output shaft of the adjusting motor III and is in meshed transmission connection with a worm wheel, a sliding seat is located in the movable limiting rack, and the movable limiting rack is connected to the cross sliding column in a sliding mode.
Go up the positioning mechanism include collude board and upper spring, last positioning mechanism be equipped with two, two go up the equal sliding connection of colluding the board on the mainboard, two go up collude the board respectively with two spacing travelers sliding connection, two upper springs overlap respectively and establish on two spacing travelers, the front end of two upper springs all pushes up tightly on the mainboard, the rear end of two upper springs pushes up two respectively and goes up colluding the board.
Lower limiting mechanism include mount pad down, spacing traveller down, lower spring, lower board and lower spring of colluding, mount pad sliding connection is in spacing slide down, mount pad sliding connection is on the lift traveller down, the lower extreme of lower spring and the lower extreme fixed connection of lift traveller, the upper end top of lower spring tightly mounts pad down, the equal fixedly connected with spacing traveller down in both ends of mount pad down, lower board of colluding is equipped with two, two lower equal sliding connection of board collude just respectively with two spacing traveller sliding connection on the mount pad down, all the cover is equipped with down the spring on two spacing travelers down, the front end of two lower springs all pushes up tightly the mount pad down, the rear end of two lower springs respectively with two lower board fixed connection that collude.
Push away grey mechanism including pushing away the hawk, pushing away grey motor and pushing away grey screw rod, push away grey motor fixed connection on last closure plate, push away grey screw rod fixed connection on pushing away the output shaft of grey motor, push away the hawk and pass through threaded connection and sliding connection on pushing away grey screw rod in grey chase frame.
The invention has the beneficial effects that: the invention provides a railway signal power supply screen protection device which can be used for cleaning dust of a power supply screen and avoiding faults from affecting railway operation.
Drawings
FIG. 1 is a first general structural diagram of the present invention;
FIG. 2 is a second overall structural schematic of the present invention;
FIG. 3 is a schematic view of the ash containing frame of the present invention;
FIG. 4 is a schematic view of the sweeping mechanism of the present invention;
FIG. 5 is a schematic view of the turret structure of the present invention;
FIG. 6 is a schematic view of the cleaning mechanism according to the present invention;
FIG. 7 is a schematic view of the mobile gantry of the present invention;
FIG. 8 is a schematic view of the mounting frame construction of the present invention;
FIG. 9 is a schematic structural view of an upper positioning mechanism of the present invention;
FIG. 10 is a schematic view of the lower limiting mechanism of the present invention;
fig. 11 is a schematic structural diagram of the ash pushing mechanism of the invention.
In the figure: a dust containing frame 1; 1-1 of ash chute frame; an air suction fan 1-2; 1-3 of a lower plugging plate; 1-4 of a side slideway; 1-5 parts of an upper blocking plate; 1-6 parts of an upper connecting seat; a cleaning mechanism 2; cleaning the connecting plate 2-1; 2-2 parts of a brush; 2-3 of a dust suction head; a rotating frame 3; a slide carriage 3-1; a worm wheel 3-2; 3-3 of a support strut frame; 3-4 of a regulating motor; 3-5 parts of an adjusting screw rod; a cleaning power mechanism 4; cleaning a motor 4-1; 4-2 of a rotating wheel; 4-3 of a linkage plate; a moving frame 5; moving the limiting frame 5-1; 5-2 of a regulating motor; 5-3 parts of worm; installing a main frame 6; 6-1 of a cross sliding column; adjusting a screw II 6-2; 6-3 of a side baffle; adjusting a motor II 6-4; 6-5 of a main board; 6-6 parts of a limiting sliding column; 6-7 of a limiting baffle; 6-8 of limiting slide holes; 6-9 of a lifting sliding column; an upper limit mechanism 7; an upper hook plate 7-1; an upper spring 7-2; a lower limit mechanism 8; a lower mounting base 8-1; limiting the lower sliding column by 8-2; a lower spring 8-3; 8-4 parts of a lower hook plate; 8-5 parts of lower seat spring; a dust pushing mechanism 9; a dust pushing plate 9-1; a dust pushing motor 9-2; and an ash pushing screw 9-3.
Detailed Description
The invention is described in further detail below with reference to fig. 1-11.
The first embodiment is as follows:
as shown in fig. 1-11, a railway signal power supply screen protection device comprises an ash containing frame 1, a cleaning mechanism 2, a rotating frame 3, a cleaning power mechanism 4, a moving frame 5, an installation main frame 6, an upper limiting mechanism 7, a lower limiting mechanism 8 and an ash pushing mechanism 9, wherein the cleaning mechanism 2 is slidably connected to the rear end of the ash containing frame 1, the upper end of the ash containing frame 1 is slidably connected to the front end of the rotating frame 3, the cleaning power mechanism 4 is fixedly connected to the upper end of the ash containing frame 1 and is rotatably connected with the cleaning mechanism 2, the rear end of the rotating frame 3 is slidably connected to the upper end of the installation main frame 6, the moving frame 5 is connected to the upper end of the installation main frame 6 and is in meshing transmission connection with the rotating frame 3, the upper limiting mechanisms 7 are provided in number of two, the two upper limiting mechanisms 7 are both connected to the upper part of the installation main frame 6, the lower limiting mechanism 8 is connected to the lower part of the installation main frame 6, the lower limiting mechanism 8 and the two upper limiting mechanisms 7 are arranged in an up-down opposite direction, and the ash pushing mechanism 9 is connected in the ash containing frame 1.
When the device is used, the device is fixed on the power supply screen through the two upper limiting mechanisms 7 and the lower limiting mechanism 8, the rear end of the power supply screen is tightly propped against the installation main frame 6, the cleaning mechanism 2 is driven to reciprocate through the cleaning power mechanism 4, so that the front end face of the power supply screen is cleaned, meanwhile, the cleaned dust is sucked into the dust containing frame 1 through the dust containing frame 1 for storage, the cleaning mechanism 2 and the dust containing frame 1 are driven to transversely reciprocate through the installation main frame 6 and the transmission moving frame 5 of the installation main frame 6 through the rotating frame 3, transverse reciprocating dust cleaning on the power supply screen is formed, the dust is prevented from falling on the power supply screen for a long time, the rotating frame 3 can be driven to drive the cleaning mechanism 2 and the dust containing frame 1 to rotate upwards on the installation main frame 6 through the moving frame 5, the dust containing frame 1 is rotated above the power supply screen on the installation main frame 6, the device is prevented from influencing maintenance of the power supply screen, the dust containing frame 1 can be driven to move on the rotating frame 3 through the rotating frame 3, thereby change the interval of cleaning mechanism 2 and power screen, make the device adapt to the power screen of different thickness, when the dust in flourishing ash frame 1 is more, will contain ash frame 1 and open, pour the dust, can also push out the dust that is detained in flourishing ash frame 1 through pushing away ash mechanism 9, improve the device and pour out dust efficiency.
The second embodiment is as follows:
as shown in the figures 1-11, the ash containing frame 1 comprises an ash chute frame 1-1, an air suction fan 1-2, a lower blocking plate 1-3, side slideways 1-4, an upper blocking plate 1-5 and an upper connecting seat 1-6, wherein the air suction fan 1-2 is fixedly connected to the lower end of the ash chute frame 1-1, the left side and the right side of the ash chute frame 1-1 are respectively provided with the side slideways 1-4, the lower end of the ash chute frame 1-1 is fixedly connected with the lower blocking plate 1-3, the upper end of the ash chute frame 1-1 is fixedly connected with the upper blocking plate 1-5, and the upper connecting seat 1-6 is fixedly connected to the upper blocking plate 1-5.
The third concrete implementation mode:
as shown in fig. 1-11, the cleaning mechanism 2 includes a cleaning connection plate 2-1, brushes 2-2 and dust-absorbing heads 2-3, the cleaning connection plate 2-1 is fixedly connected with a plurality of brushes 2-2 and a plurality of dust-absorbing heads 2-3, the plurality of dust-absorbing heads 2-3 and the plurality of brushes 2-2 are arranged at intervals, and the cleaning connection plate 2-1 is slidably connected in two side slideways 1-4.
The dust containing box body is formed by cleaning the connecting plate 2-1 through matching of the dust groove frame 1-1, the lower blocking plate 1-3 and the upper blocking plate 1-5, air is sucked through the air suction fan 1-2, dust is sucked into the dust containing box body through the dust suction head 2-3 to be stored, when more dust is stored, the lower blocking plate 1-3 is detached, the dust can be poured out from the lower end of the dust containing box body, and the brush 2-2 is used for cleaning the power supply screen.
The fourth concrete implementation mode:
as shown in fig. 1-11, the rotating frame 3 includes a sliding seat 3-1, a worm wheel 3-2, a support sliding column frame 3-3, an adjusting motor i 3-4 and an adjusting screw i 3-5, the worm wheel 3-2 is arranged in the middle of the sliding seat 3-1, the sliding seat 3-1 is fixedly connected to the rear end of the support sliding column frame 3-3, the support sliding column frame 3-3 is connected with the adjusting screw i 3-5 through threads, the adjusting screw i 3-5 is fixedly connected to an output shaft of the adjusting motor i 3-4, an upper connecting seat 1-6 is slidably connected to the support sliding column frame 3-3, and the adjusting motor i 3-4 is fixedly connected to the upper connecting seat 1-6.
The adjusting motor I3-4 drives the adjusting screw rod I3-5 to rotate, the adjusting screw rod I3-5 supports the sliding column frame 3-3 to slide on the upper connecting seat 1-6 through thread transmission, so that the change of the distance between the sliding seat 3-1 and the ash chute frame 1-1 is formed, and then the distance between the hairbrush 2-2 and the power supply screen is changed, so that the device is suitable for power supply screens with different thicknesses.
The fifth concrete implementation mode:
as shown in fig. 1-11, the cleaning power mechanism 4 includes a cleaning motor 4-1, a rotating wheel 4-2 and a linkage plate 4-3, the cleaning motor 4-1 is fixedly connected to an upper connecting seat 1-6, the rotating wheel 4-2 is fixedly connected to an output shaft of the cleaning motor 4-1, an upper end of the linkage plate 4-3 is rotatably connected to an eccentric position of the rotating wheel 4-2, and a lower end of the linkage plate 4-3 is rotatably connected to a lower end of the cleaning connecting plate 2-1.
The cleaning motor 4-1 drives the rotating wheel 4-2 to rotate, the rotating wheel 4-2 drives the cleaning connecting plate 2-1 to move up and down in a reciprocating mode on the ash chute frame 1-1 through the linkage plate 4-3, and then the brush 2-2 is driven to move up and down in a reciprocating mode, and efficient cleaning of the power supply screen is achieved.
The sixth specific implementation mode:
as shown in the figures 1-11, the installation main frame 6 comprises a transverse sliding column 6-1, an adjusting screw II 6-2, side baffles 6-3, an adjusting motor II 6-4, a main board 6-5, a limiting sliding column 6-6, a limiting baffle 6-7, a limiting sliding hole 6-8 and a lifting sliding column 6-9, wherein the two ends of the transverse sliding column 6-1 are fixedly connected with the side baffles 6-3, the lower ends of the two side baffles 6-3 are fixedly connected with the main board 6-5, the lower part of the main board 6-5 is provided with the limiting sliding hole 6-8, the lifting sliding column 6-9 is fixedly connected with the lower end of the main board 6-5, the adjusting motor II 6-4 is fixedly connected with one of the side baffles 6-3, the two ends of the adjusting screw II 6-2 are respectively and rotatably connected with the two side baffles 6-3, the adjusting screw II 6-2 is fixedly connected with an output shaft of the adjusting motor II 6-4, two limiting sliding columns 6-6 are arranged, the two limiting sliding columns 6-6 are fixedly connected to the rear end face of the main board 6-5, and the rear ends of the two limiting sliding columns 6-6 are fixedly connected with limiting baffles 6-7.
The seventh embodiment:
as shown in the figures 1-11, the movable rack 5 comprises a movable limiting rack 5-1, an adjusting motor III 5-2 and a worm 5-3, the movable limiting rack 5-1 is connected to the cross sliding column 6-1 in a sliding mode and is connected with the adjusting screw II 6-2 through threads, the adjusting motor III 5-2 is fixedly connected to the movable limiting rack 5-1, the worm 5-3 is fixedly connected to an output shaft of the adjusting motor III 5-2 and is in meshed transmission connection with the worm wheel 3-2, the sliding seat 3-1 is located in the movable limiting rack 5-1, and the movable limiting rack 5-1 is connected to the cross sliding column 6-1 in a sliding mode.
The adjusting motor II 6-4 drives the adjusting screw II 6-2 to rotate, the adjusting screw II 6-2 moves the limiting frame 5-1 to move transversely and reciprocally on the transverse sliding column 6-1 through thread transmission, then the sliding seat 3-1 is driven to move transversely and reciprocally, so that the transverse reciprocating cleaning of the cleaning mechanism 2 on the power supply screen is formed, when the power supply screen needs to be maintained, the adjusting motor III 5-2 is started to drive the worm 5-3 to drive the worm wheel 3-2, the worm wheel 3-2 drives the rotating frame 3 to rotate upwards by taking the transverse sliding column 6-1 as an axis, and therefore the space right in front of the power supply screen is emptied, and maintenance is facilitated.
The specific implementation mode is eight:
as shown in fig. 1-11, the upper limiting mechanism 7 includes two upper hook plates 7-1 and two upper springs 7-2, the two upper hook plates 7-1 are both slidably connected to the main board 6-5, the two upper hook plates 7-1 are respectively slidably connected to the two limiting sliding posts 6-6, the two upper springs 7-2 are respectively sleeved on the two limiting sliding posts 6-6, the front ends of the two upper springs 7-2 are respectively tightly pressed against the main board 6-5, and the rear ends of the two upper springs 7-2 are respectively tightly pressed against the two upper hook plates 7-1.
The specific implementation method nine:
as shown in the figure 1-11, the lower limiting mechanism 8 comprises a lower mounting base 8-1, a limiting lower sliding column 8-2, a lower spring 8-3, a lower hook plate 8-4 and a lower base spring 8-5, wherein the lower mounting base 8-1 is slidably connected in a limiting sliding hole 6-8, the lower mounting base 8-1 is slidably connected on a lifting sliding column 6-9, the lower end of the lower base spring 8-5 is fixedly connected with the lower end of the lifting sliding column 6-9, the upper end of the lower base spring 8-5 tightly pushes the lower mounting base 8-1, two ends of the lower mounting base 8-1 are fixedly connected with the limiting lower sliding column 8-2, two lower hook plates 8-4 are arranged, the two lower hook plates 8-4 are slidably connected on the lower mounting base 8-1 and are respectively slidably connected with the two limiting lower sliding columns 8-2, the two limiting lower sliding columns 8-2 are respectively sleeved with a lower spring 8-3, the front ends of the two lower springs 8-3 are respectively tightly propped against the lower mounting seat 8-1, and the rear ends of the two lower springs 8-3 are respectively fixedly connected with the two lower hook plates 8-4.
When the device is fixed on a power supply screen, a main board 6-5 is arranged at the rear end of the power supply screen, two upper hook plates 7-1 are pushed forwards, the front ends of the upper hook plates 7-1 slide forwards and are hooked at the upper end of the power supply screen, the upper hook plates 7-1 are loosened, the upper hook plates 7-1 and the main board 6-5 are matched and hooked at the upper end of the power supply screen through the elasticity of upper springs 7-2 to form the device hook which is hooked at the rear end of the power supply screen, then a lower mounting seat 8-1 is pulled downwards, two lower hook plates 8-4 are pushed forwards at the same time, two lower hook plates 8-4 are hooked at the lower end of the power supply screen and are loosened, the lower mounting seat 8-1 carries the two lower hook plates 8-4 to tightly push against the lower end of the power supply screen through the elasticity of lower seat springs 8-5, and the two lower hook plates 8-4 hook the lower end of a main power supply screen through the elasticity of lower springs 8-3, thereby securing the device at the rear end of the power panel.
The detailed implementation mode is ten:
as shown in fig. 1-11, the ash pushing mechanism 9 includes an ash pushing plate 9-1, an ash pushing motor 9-2 and an ash pushing screw 9-3, the ash pushing motor 9-2 is fixedly connected to the upper blocking plate 1-5, the ash pushing screw 9-3 is fixedly connected to an output shaft of the ash pushing motor 9-2, and the ash pushing plate 9-1 is connected to the ash pushing screw 9-3 through a thread and is slidably connected to the inside of the ash chute frame 1-1.
After the lower blocking plate 1-3 is disassembled, the ash pushing motor 9-2 drives the ash pushing screw rod 9-3, and the ash pushing plate 9-1 slides downwards in the ash chute frame 1-1 through screw transmission, so that ash remained in the ash chute frame 1-1 is pushed out, and the ash pouring efficiency of the ash chute frame 1-1 is improved.
The invention relates to a railway signal power supply screen protection device, which has the use principle that: when the device is used, the device is fixed on the power supply screen through the two upper limiting mechanisms 7 and the lower limiting mechanism 8, the rear end of the power supply screen is tightly propped against the installation main frame 6, the cleaning mechanism 2 is driven to reciprocate through the cleaning power mechanism 4, so that the front end face of the power supply screen is cleaned, meanwhile, the cleaned dust is sucked into the dust containing frame 1 through the dust containing frame 1 for storage, the cleaning mechanism 2 and the dust containing frame 1 are driven to transversely reciprocate through the installation main frame 6 and the transmission moving frame 5 of the installation main frame 6 through the rotating frame 3, transverse reciprocating dust cleaning on the power supply screen is formed, the dust is prevented from falling on the power supply screen for a long time, the rotating frame 3 can be driven to drive the cleaning mechanism 2 and the dust containing frame 1 to rotate upwards on the installation main frame 6 through the moving frame 5, the dust containing frame 1 is rotated above the power supply screen on the installation main frame 6, the device is prevented from influencing maintenance of the power supply screen, the dust containing frame 1 can be driven to move on the rotating frame 3 through the rotating frame 3, thereby change the interval of cleaning mechanism 2 and power screen, make the device adapt to the power screen of different thickness, when the dust in flourishing ash frame 1 is more, will contain ash frame 1 and open, pour the dust, can also push out the dust that is detained in flourishing ash frame 1 through pushing away ash mechanism 9, improve the device and pour out dust efficiency.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.

Claims (7)

1. The utility model provides a railway signal power supply screen protection device, includes flourishing grey frame (1), cleans mechanism (2), rotating turret (3), cleans power unit (4), removes frame (5), installation body frame (6), goes up stop gear (7), stop gear (8) and pushes away grey mechanism (9), its characterized in that down: the cleaning mechanism (2) is connected with the rear end of the ash containing frame (1) in a sliding way, the upper end of the ash containing frame (1) is connected with the front end of the rotating frame (3) in a sliding way, the cleaning power mechanism (4) is fixedly connected with the upper end of the ash containing frame (1) and is rotationally connected with the cleaning mechanism (2), the rear end of the rotating frame (3) is slidably connected with the upper end of the mounting main frame (6), the moving frame (5) is connected with the upper end of the mounting main frame (6), and is engaged and connected with the rotating frame (3) in a transmission way, two upper limiting mechanisms (7) are arranged, the two upper limiting mechanisms (7) are both connected with the upper part of the installation main frame (6), the lower limiting mechanism (8) is connected to the lower part of the mounting main frame (6), the lower limiting mechanism (8) and the two upper limiting mechanisms (7) are arranged in an up-down opposite direction, and the ash pushing mechanism (9) is connected in the ash containing frame (1);
the device is fixed on the power supply screen through two upper limiting mechanisms (7) and a lower limiting mechanism (8), the cleaning mechanism (2) is driven to reciprocate through the cleaning power mechanism (4), so that the front end surface of the power supply screen is cleaned, the cleaned dust is sucked into the dust containing frame (1) through the dust containing frame (1) for storage, the cleaning mechanism (2) and the dust containing frame (1) are driven to transversely reciprocate through the rotating frame (3) by the transmission moving frame (5) of the installation main frame (6), so as to form transverse reciprocating dust cleaning on the power supply screen, the cleaning mechanism (2) and the dust containing frame (1) are driven to upwards rotate on the installation main frame (6) through the transmission moving frame (5) of the rotating frame (3), the dust containing frame (1) is rotated above the power supply screen on the installation main frame (6), the influence on the maintenance of the power supply screen by the device is avoided, the dust containing frame (1) can be driven to move on the rotating frame (3) through the rotating frame (3), the distance between the cleaning mechanism (2) and the power supply screen is changed, and dust retained in the dust containing frame (1) is pushed out through the dust pushing mechanism (9);
the ash containing frame (1) comprises an ash groove frame (1-1), an air suction fan (1-2), a lower plugging plate (1-3), side slideways (1-4), upper plugging plates (1-5) and upper connecting seats (1-6), wherein the air suction fan (1-2) is fixedly connected to the lower end of the ash groove frame (1-1), the left side and the right side of the ash groove frame (1-1) are respectively provided with the side slideways (1-4), the lower end of the ash groove frame (1-1) is fixedly connected with the lower plugging plates (1-3), the upper end of the ash groove frame (1-1) is fixedly connected with the upper plugging plates (1-5), and the upper connecting seats (1-6) are fixedly connected to the upper plugging plates (1-5);
the cleaning mechanism (2) comprises a cleaning connecting plate (2-1), brushes (2-2) and dust suction heads (2-3), the cleaning connecting plate (2-1) is fixedly connected with a plurality of brushes (2-2) and a plurality of dust suction heads (2-3), the plurality of dust suction heads (2-3) and the plurality of brushes (2-2) are arranged at intervals, and the cleaning connecting plate (2-1) is slidably connected in two side slideways (1-4);
the ash pushing mechanism (9) comprises an ash pushing plate (9-1), an ash pushing motor (9-2) and an ash pushing screw rod (9-3), the ash pushing motor (9-2) is fixedly connected to the upper blocking plate (1-5), the ash pushing screw rod (9-3) is fixedly connected to an output shaft of the ash pushing motor (9-2), and the ash pushing plate (9-1) is connected to the ash pushing screw rod (9-3) through threads and is connected to the ash chute frame (1-1) in a sliding mode.
2. A railway signal power supply panel protection device according to claim 1, wherein: the rotary rack (3) comprises a sliding seat (3-1), a worm wheel (3-2), a support sliding column rack (3-3), an adjusting motor I (3-4) and an adjusting screw rod I (3-5), the worm wheel (3-2) is arranged in the middle of the sliding seat (3-1), the sliding seat (3-1) is fixedly connected to the rear end of the support sliding column rack (3-3), the adjusting screw rod I (3-5) is connected to the support sliding column rack (3-3) through threads, the adjusting screw rod I (3-5) is fixedly connected to an output shaft of the adjusting motor I (3-4), an upper connecting seat (1-6) is slidably connected to the support sliding column rack (3-3), and the adjusting motor I (3-4) is fixedly connected to the upper connecting seat (1-6).
3. A railway signal power supply panel protection device according to claim 2, wherein: the cleaning power mechanism (4) comprises a cleaning motor (4-1), a rotating wheel (4-2) and a linkage plate (4-3), the cleaning motor (4-1) is fixedly connected to an upper connecting seat (1-6), the rotating wheel (4-2) is fixedly connected to an output shaft of the cleaning motor (4-1), the upper end of the linkage plate (4-3) is rotatably connected to the eccentric position of the rotating wheel (4-2), and the lower end of the linkage plate (4-3) is rotatably connected to the lower end of the cleaning connecting plate (2-1).
4. A railway signal power supply panel protection device according to claim 3, wherein: the mounting main frame (6) comprises transverse sliding columns (6-1), adjusting screws II (6-2), side baffles (6-3), adjusting motors II (6-4), main boards (6-5), limiting sliding columns (6-6), limiting baffles (6-7), limiting sliding holes (6-8) and lifting sliding columns (6-9), the two ends of each transverse sliding column (6-1) are fixedly connected with the side baffles (6-3), the lower ends of the two side baffles (6-3) are fixedly connected with the main boards (6-5), the lower parts of the main boards (6-5) are provided with the limiting sliding holes (6-8), the lifting sliding columns (6-9) are fixedly connected to the lower ends of the main boards (6-5), the adjusting motors II (6-4) are fixedly connected to one of the side baffles (6-3), two ends of the adjusting screw II (6-2) are respectively rotatably connected with the two side baffles (6-3), the adjusting screw II (6-2) is fixedly connected with an output shaft of the adjusting motor II (6-4), two limiting sliding columns (6-6) are arranged, the two limiting sliding columns (6-6) are fixedly connected to the rear end face of the main board (6-5), and the rear ends of the two limiting sliding columns (6-6) are fixedly connected with the limiting baffles (6-7).
5. A railway signal power supply screen protection device according to claim 4, characterized in that: the movable rack (5) comprises a movable limiting rack (5-1), an adjusting motor III (5-2) and a worm (5-3), the movable limiting rack (5-1) is connected to the cross sliding column (6-1) in a sliding mode and is in threaded connection with an adjusting screw II (6-2), the adjusting motor III (5-2) is fixedly connected to the movable limiting rack (5-1), the worm (5-3) is fixedly connected to an output shaft of the adjusting motor III (5-2) and is in meshed transmission connection with the worm wheel (3-2), the sliding seat (3-1) is located in the movable limiting rack (5-1), and the movable limiting rack (5-1) is connected to the cross sliding column (6-1) in a sliding mode.
6. A railway signal power supply screen protection device according to claim 5, characterized in that: the upper limiting mechanism (7) comprises two upper hook plates (7-1) and two upper springs (7-2), the two upper hook plates (7-1) are connected to the main board (6-5) in a sliding mode, the two upper hook plates (7-1) are connected to the two limiting sliding columns (6-6) in a sliding mode respectively, the two upper springs (7-2) are sleeved on the two limiting sliding columns (6-6) respectively, the front ends of the two upper springs (7-2) are tightly propped against the main board (6-5), and the rear ends of the two upper springs (7-2) are tightly propped against the two upper hook plates (7-1) respectively.
7. A railway signal power supply screen protection device according to claim 6, characterized in that: the lower limiting mechanism (8) comprises a lower mounting seat (8-1), a limiting lower sliding column (8-2), a lower spring (8-3), a lower hook plate (8-4) and a lower seat spring (8-5), the lower mounting seat (8-1) is connected in the limiting sliding hole (6-8) in a sliding mode, the lower mounting seat (8-1) is connected to the lifting sliding column (6-9) in a sliding mode, the lower end of the lower seat spring (8-5) is fixedly connected with the lower end of the lifting sliding column (6-9), the upper end of the lower seat spring (8-5) abuts against the lower mounting seat (8-1), the two ends of the lower mounting seat (8-1) are fixedly connected with the limiting lower sliding column (8-2), the two lower hook plates (8-4) are arranged, the two lower hook plates (8-4) are connected to the lower mounting seat (8-1) in a sliding mode and respectively slide with the two limiting lower sliding columns (8-2) The two limiting lower sliding columns (8-2) are movably connected, lower springs (8-3) are sleeved on the two limiting lower sliding columns (8-2), the front ends of the two lower springs (8-3) are tightly propped against the lower mounting seat (8-1), and the rear ends of the two lower springs (8-3) are fixedly connected with the two lower hook plates (8-4) respectively.
CN202011412580.7A 2020-12-05 2020-12-05 Railway signal power supply screen protection device Expired - Fee Related CN112642756B (en)

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