CN109184098A - Bus stop ceiling intelligence induction type snow-removing method - Google Patents
Bus stop ceiling intelligence induction type snow-removing method Download PDFInfo
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- CN109184098A CN109184098A CN201811334947.0A CN201811334947A CN109184098A CN 109184098 A CN109184098 A CN 109184098A CN 201811334947 A CN201811334947 A CN 201811334947A CN 109184098 A CN109184098 A CN 109184098A
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- snow
- transport line
- conducting wire
- line roller
- driving
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- 230000006698 induction Effects 0.000 title claims abstract description 39
- 238000000034 method Methods 0.000 title claims abstract description 11
- 230000007246 mechanism Effects 0.000 claims abstract description 77
- 238000004140 cleaning Methods 0.000 claims abstract description 34
- 241000196324 Embryophyta Species 0.000 claims abstract description 27
- 230000005540 biological transmission Effects 0.000 claims description 77
- 238000010438 heat treatment Methods 0.000 claims description 11
- 238000004804 winding Methods 0.000 claims description 9
- 238000005381 potential energy Methods 0.000 claims description 8
- 235000003140 Panax quinquefolius Nutrition 0.000 claims description 7
- 240000005373 Panax quinquefolius Species 0.000 claims description 7
- 238000002844 melting Methods 0.000 claims description 6
- 230000008018 melting Effects 0.000 claims description 6
- 238000005096 rolling process Methods 0.000 claims description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 2
- 230000032258 transport Effects 0.000 description 154
- 238000010586 diagram Methods 0.000 description 42
- 244000309464 bull Species 0.000 description 12
- 230000005484 gravity Effects 0.000 description 11
- 238000007789 sealing Methods 0.000 description 5
- 230000005465 channeling Effects 0.000 description 4
- 230000005611 electricity Effects 0.000 description 4
- 235000013305 food Nutrition 0.000 description 4
- 238000010276 construction Methods 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 230000032683 aging Effects 0.000 description 2
- 230000003139 buffering effect Effects 0.000 description 2
- 239000004020 conductor Substances 0.000 description 2
- 230000007423 decrease Effects 0.000 description 2
- 239000011148 porous material Substances 0.000 description 2
- 241000533950 Leucojum Species 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- WABPQHHGFIMREM-UHFFFAOYSA-N lead(0) Chemical compound [Pb] WABPQHHGFIMREM-UHFFFAOYSA-N 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 230000002035 prolonged effect Effects 0.000 description 1
- 238000004064 recycling Methods 0.000 description 1
- 230000035882 stress Effects 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
- 230000001960 triggered effect Effects 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D13/00—Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
- E04D13/10—Snow traps ; Removing snow from roofs; Snow melters
- E04D13/106—Snow removing devices
Landscapes
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Buildings Adapted To Withstand Abnormal External Influences (AREA)
Abstract
The invention discloses bus stop ceiling intelligence induction type snow-removing methods, its step is: S1: when snowy day, when the accumulated snow of bus stop ceiling reaches critical value, sensing device switches to triggering state by non-triggering state, trigger signal is transferred to control device by sensing device, and control device starting transport line device simultaneously controls the operating of transport line device;S2: mechanical snow plow structure carries out row's snow, and Sheng Xue mechanism and trigger mechanism reset;S3: transport line device driving cleaning plant is moved along object top surface for clearance, and cleaning plant pushes the accumulated snow of object top surface for clearance to slide, and transport line device driving cleaning plant moves reciprocatingly.
Description
Technical field
The present invention relates to a kind of snow removing equipment more particularly to bus stop ceiling intelligence induction type snow-removing methods.
Background technique
It is more demanding to the support strength of ceiling in bus platform ceiling, food market ceiling process of construction, to prevent sleet
Or the landslide problem of ceiling caused by heavy snow, with bus platform ceiling, the extension of food market ceiling service life, bus platform
The structural strength decrease of ceiling, food market ceiling, when meeting with sleet or heavy snow weather, bus platform ceiling, food market top
Canopy be easy to cause landslide since the weight of carrying is excessive, causes serious casualties and property losses, and sleet or big
Snow mostly occurs in night, and the artificial operation difficulty that removes the snow is big, and it is unsustainable to remove the snow.
Summary of the invention
To solve the deficiencies in the prior art, the object of the present invention is to provide bus stop ceiling intelligence induction type snow removing sides
Method.
To realize the above-mentioned technical purpose, the technical solution adopted in the present invention is as follows:
Bus stop ceiling intelligence induction type snow-removing method, step are:
S1: when snowy day, increase with the accumulated snow accumulated in snow disc is contained, accumulated snow weight increases, and contains the gravitational force urges of accumulated snow in snow disc
It contains snow disc to overcome the elastic force of compressed spring and move straight down, elastic potential energy is shunk and put aside to compressed spring, incudes frizzen
It is moved synchronously with snow disc is contained, during induction frizzen moves straight down, incudes the bottom end triggering inductor of frizzen, sense
It answers device to generate signal and is transferred to control device as electronic signals, control device controls the operating of transport line device;
S2: at the same time, solenoid valve switches to open state by closed state, and row's snow guiding tube starts to be connected to drainpipe, feel
It answers device to generate signal and is transferred to control device as electronic signals, control device control heating plate distributes heat, heating plate
The heat distributed is conducted by row's snow mounting disc and Sheng snow disc to the accumulated snow contained in snow disc, contains the snow melting Cheng Xue in snow disc
Water, snow-broth is extraneous by row's snow guiding tube, solenoid valve, drainpipe discharge, at this time the elastic potential energy release of compressed spring savings, pressure
The elastic force of contracting spring pushes Sheng Xue mechanism and trigger mechanism to reset;
S3: at this point, first motor is in idle state, transmission gear is engaged with left driven wheel, and the second electric motor starting simultaneously will rotation
Power is transferred to left drive shaft by the second driving wheel, transmission gear, left driven wheel, and left drive shaft is around own axes and drives left fortune
Line roller rotates clockwise, and left transport line roller recycles and wind conducting wire, and conducting wire passes through several guide wheels, fixed pulley, several guide wheels simultaneously
Right transport line roller is driven to rotate clockwise and discharge conducting wire, the right right transmission shaft of transport line drum driven is around own axis, actively
By the right rotary force to the right transmission shaft of positive drive authorities and around own axis, driving revolving drum passes through to main story rotating cylinder
Send band to drive driven rotating cylinder around own axis, to positive belt-driven power transmitting sliding block along to positive conveyer belt band facing towards
The opposite direction movement that conducting wire disappears on right transport line roller, power transmitting slider-actuated sliding sleeve move synchronously, draw and connect to positive guide sleeve
The axial direction of the conducting wire connect vertical right transport line roller always, when the conducting wire of right transport line roller release internal layer, power transmitting at this time is slided
Block is moved to positive conveyer belt close to one end of driven rotating cylinder, and power transmits sliding block in the driven rotating cylinder of guidance lower edge of driven rotating cylinder
Circumference completes semi arch and runs and complete to commutate, and power transmitting sliding block guidance conducting wire synchronously completes unwrapping wire commutation, and conducting wire drives at this time
Dynamic cleaning plant is moved towards the direction of fixed pulley, and cleaning plant pushes accumulated snow at the top of object to slide;
S4: when the conducting wire release on right transport line roller finishes, first motor starts and the first driving wheel is driven to rotate, and first is main
Driving wheel driving setter plate moves and reversing plate is driven to rotate, and arcuately guiding groove slides for left drive shaft and right transmission shaft, driving cog
Wheel is moved towards right driven wheel and is engaged with right driven wheel, and first motor stops operating at this time, and the rotary force of the second motor passes through
Second driving wheel, transmission gear, right driven wheel are transferred to right transmission shaft, and right transmission shaft is around own axis and drives right transport line
Roller rotates counterclockwise, and right transport line roller recycles and wind conducting wire, and conducting wire drives left transport line roller to rotate counterclockwise, left transport line rolling
Cylinder release conducting wire, driving revolving drum rotates backward at this time, and power transmits sliding block and moves towards driving revolving drum, when the one of right transport line roller
When holding conducting wire winding full, at this point, power transmits slide block movement to driving revolving drum, power transmits sliding block under the guidance of driving revolving drum
It being run along driving revolving drum circumference completion semi arch and completes to commutate, power transmitting sliding block guidance conducting wire synchronously completes winding commutation,
The cleaning plant of conducting wire driving at this time faces away from the direction movement of fixed pulley, and cleaning plant reversely clears up accumulated snow at the top of object;
S5: when the conducting wire release on left transport line roller finishes, first motor starts and rotates backward, and first motor passes through first
Driving wheel and setter plate driving transmission gear are moved towards left driven wheel, and transmission gear separates with right driven wheel and realizes driving cog
Wheel is engaged with left driven wheel, and repeat the above steps sustainable operating conducting wire, guarantees the duration of cleaning accumulated snow.
The beneficial effect of the present invention compared with prior art is: high reliablity of the present invention, strong antijamming capability, structure are skilful
It is wonderful, voluntarily started by gravity sensing, save manpower, and started in time, avoided and manually start when easily delaying cleaning accumulated snow
The case where effect property, occurs, and the present invention round-the-clock can await orders, and can avoid the case where accumulated snow crushes building, light-weight, just
In disassembly and carry, it is compact-sized, it is small in size, it can remove the snow without limitation.
Detailed description of the invention
In order to illustrate the technical solution of the embodiments of the present invention more clearly, below will be to needed in the embodiment attached
Figure does simple introduction, it should be understood that the following drawings illustrates only certain embodiments of the present invention, therefore is not construed as pair
The restriction of range for those of ordinary skill in the art without creative efforts, can also be according to this
A little attached drawings obtain other relevant attached drawings.
Fig. 1 is the structural diagram of the present invention.
Fig. 2 is structural schematic diagram of the invention.
Fig. 3 is structural schematic diagram of the invention.
Fig. 4 is structural schematic diagram of the invention.
Fig. 5 is structural schematic diagram of the invention.
Fig. 6 is sensing device structural schematic diagram of the invention.
Fig. 7 is sensing device structural schematic diagram of the invention.
Fig. 8 is Sheng Xue mechanism and mechanical snow plow structure attachment structure schematic diagram of the invention.
Fig. 9 is Sheng Xue mechanism and mechanical snow plow structure attachment structure schematic diagram of the invention.
Figure 10 is Sheng Xue mechanism and mechanical snow plow structure attachment structure schematic diagram of the invention.
Figure 11 is heating plate and row's snow sealing plate attachment structure schematic diagram of the invention.
Figure 12 is that Sheng Xue mechanism and gravity of the invention trigger elastic component, mechanical snow plow structure attachment structure schematic diagram.
Figure 13 is drain structure schematic diagram of the invention.
Figure 14 is induction bracket and upper bracket attachment structure schematic diagram of the invention.
Figure 15 is transport line apparatus structure schematic diagram of the invention.
Figure 16 is transport line apparatus structure schematic diagram of the invention.
Figure 17 is transport line apparatus structure schematic diagram of the invention.
Figure 18 is transport line supporting structure schematic diagram of the invention.
Figure 19 is transport line supporting structure schematic diagram of the invention.
Figure 20 is middle bracket and conductor connecting structure schematic diagram of the invention.
Figure 21 is conducting wire and fixed pulley attachment structure schematic diagram of the invention.
Figure 22 is transport line power supply component and transport line mechanism attachment structure schematic diagram of the invention.
Figure 23 is transport line power supply modular construction schematic diagram of the invention.
Figure 24 is transport line power supply modular construction schematic diagram of the invention.
Figure 25 is transport line power supply component partial structural diagram of the invention.
Figure 26 is transport line power supply component and transport line mechanism attachment structure schematic diagram of the invention.
Figure 27 is transport line power supply component and transport line mechanism attachment structure schematic diagram of the invention.
Figure 28 is transport line power supply component and transport line mechanism attachment structure schematic diagram of the invention.
Figure 29 is transport line mechanism and lower bracket attachment structure schematic diagram of the invention.
Figure 30 is lower bracket and reversing plate attachment structure schematic diagram of the invention.
Figure 31 is lower bracket and transport line mechanism, right aligning guide attachment structure schematic diagram of the invention.
Figure 32 is right transmission shaft and transmitting driving wheel attachment structure schematic diagram of the invention.
Figure 33 is right aligning guide structural schematic diagram of the invention.
Figure 34 is the right side of the invention to positive drive force transfer mechanism and right transmission shaft, conduction active bull stick connection structure signal
Figure.
Figure 35 is the right side of the invention to ahead power conduction mechanism and driving revolving drum attachment structure schematic diagram.
Figure 36 is of the invention to positive drive member structural schematic diagram.
Figure 37 is of the invention to Positive rack and to positive guide member attachment structure schematic diagram.
Figure 38 is of the invention to positive guide member and sliding sleeve attachment structure schematic diagram.
Figure 39 is of the invention to positive conveyer belt and power transmitting sliding block attachment structure schematic diagram.
Figure 40 is of the invention to positive guiding elements structural schematic diagram.
Figure 41 is of the invention to positive guiding elements structural schematic diagram.
Figure 42 is connection component and conductor connecting structure schematic diagram of the invention.
Figure 43 is conducting wire and fixes sleeve attachment structure schematic diagram of the invention.
It is denoted as in figure:
10, sensing device;110, Sheng Xue mechanism;120, induction bracket;130, trigger mechanism;140, inductor;150, gravity touches
Send out elastic component;160, mechanical snow plow structure;161, row's snow mounting disc;162, row's snow annular groove;163, row's snow guiding tube;164, heating plate;
165, row's snow sealing plate;166, solenoid valve;167, drainpipe;
20, transport line device;210, transport line bracket;211, lower bracket;2111, clamping plate a;2112, clamping plate b;212, middle bracket;213,
Upper bracket;220, transport line power supply component;221, first motor;222, the second motor;223, transport line transmission mechanism;2231,
Left driven wheel;2232, the first driving wheel;2233, transmission gear;2234, right driven wheel;2235, the second driving wheel;2236, pacify
Set plate;224, reversing plate;225, buffer gear;2251, mounting groove is buffered;2252, buffer board;2253, buffer spring;230, it transports
Line mechanism;231, left drive shaft;232, left transport line roller;233, right transmission shaft;234, right transport line roller;240, conducting wire;250,
Right aligning guide;251, the right side is to positive drive force transfer mechanism;2511, driving wheel is transmitted;2512, driven wheel is transmitted;252, the right side is to just
Power conduction mechanism;2521, active bull stick is conducted;2522, driving wheel is conducted;2523, driven bull stick is conducted;2524, conduction from
Driving wheel;253, to Positive rack;2531, vertical plate one;2532, vertical plate two;2533, to positive level board;254, to positive driving structure
Part;2541, driving revolving drum;2542, driven rotating cylinder;2543, to positive conveyer belt;255, to positive guide member;2551, to positive guiding
Bar one;2552, to positive guide rod two;256, to positive guiding elements;2561, sliding sleeve;2562, power transmits sliding block;2563, to just
Guide sleeve;260, fixed pulley;
30, cleaning plant;310, connection component;311, mounting hole is connected;312, fixes sleeve;313, loop bar is connected;
40, control device.
Specific embodiment
In order to which objects and advantages of the present invention are more clearly understood, the present invention is carried out specifically with reference to embodiments
It is bright.It should be appreciated that following text is only used to describe one or more of specific embodiments of the invention, not to the present invention
The protection scope specifically requested carries out considered critical.
Picture 1-4 shown in 3, bus stop ceiling intelligence induction type snow-removing method comprising be set to object for clearance
On the transport line device 20 being used to provide power, be set on transport line device 20 for incuding the sensing device of accumulated snow weight
10, for receiving the signal of the transmitting of sensing device 10 and controlling control device 40 and transport line device 20 that transport line device 20 operates
Connect and receive the cleaning plant 30 for being used to clear up accumulated snow on object for clearance of 20 power of transport line device, sensing device 10 and control
Device 40 processed is electrically connected, and in snowy day, snowflake falls on sensing device 10 and forms accumulated snow, with increasing for accumulated snow, sensing device
Accumulated snow weight on 10 increases, and when accumulated snow weight meets or exceeds the critical value of sensing device 10, sensing device 10 is not by touching
Hair-like state switches to triggering state, and trigger signal is transferred to control device 40 by sensing device 10, and control device 40 starts transport line
Device 20 simultaneously controls the operating of transport line device 20, and transport line device 20 drives cleaning plant 30 to move along object top surface for clearance, clears up
Device 30 pushes the accumulated snow of object top surface for clearance to slide, and the accumulated snow at the top of object for clearance is reduced, and avoids accumulated snow and accumulated
Mostly by object be collapsed for clearance.
High reliablity of the present invention, strong antijamming capability, clever structure are voluntarily started by gravity sensing, save manpower,
And starting is in time, avoids and manually starts the case where easily delaying cleaning accumulated snow timeliness generation, the present invention round-the-clock can await orders, can
The case where avoiding accumulated snow that building crushes, light-weight, easy to disassemble and carrying is compact-sized, small in size, can be without limitation
Snow removing.
As shown in Fig. 6-14, above-mentioned sensing device 10 includes the induction bracket 120 being set on transport line device 20, setting
In the inductor 140 in induction bracket 120, the Sheng Xue mechanism 110 for containing snow, the inductor 140 and control device
40 electrical connections, the Sheng Xue mechanism 110 and induction bracket 120 are in arrangement up and down and Sheng Xue mechanism 110 is located at induction bracket 120
Top, sensing device 10 further includes trigger mechanism 130, trigger mechanism 130 between induction bracket 120 and Sheng Xue mechanism 110 it
Between and trigger mechanism 130 connect with Sheng Xue mechanism 110, trigger mechanism 130 and induction bracket 120 constitute the guiding on vertical direction
Cooperation, sensing device 10 further include gravity triggering elastic component 150, and one end that gravity triggers elastic component 150 contradicts Sheng Xue mechanism
110, the other end of gravity triggering elastic component 150 contradicts induction bracket 120, and the elastic force that gravity triggers elastic component 150 pushes triggering
Mechanism 130 deviates inductor 140, and as the accumulated snow that Sheng Xue mechanism 110 carries increases, Sheng Xue mechanism 110 overcomes gravity to trigger bullet
Property part 150 elastic force and push trigger mechanism 130 to move towards inductor 140, inductor 140 senses that trigger mechanism 130 is raw
At signal and control device 40 is transmitted signals to, control device 40 controls transport line device 20 and operates.
More specifically, the induction bracket 120 includes the induction supporting leg of several along the circumferential direction uniform intervals arrangement,
Horizontally disposed induction support plate is provided at the top of induction supporting leg.
More perfect, the Sheng Xue mechanism 110 includes horizontally disposed Sheng snow disc, contain opened up at the top of snow disc it is useful
Slot is avenged in the storage of storage accumulated snow, Sheng Xue mechanism 110 further includes connecting with Sheng snow disc and leading towards the induction that induction bracket 120 extends
Xiang Zhu is offered in above-mentioned induction support plate and is constituted with the induction matched pilot hole of guide post, induction guide post and pilot hole
Guiding cooperation on vertical direction.
More optimize, the gravity triggering elastic component 150 is compressed spring, and compressed spring is sheathed on induction guide post
Outside, one end of compressed spring contradicts and contains snow disc, the other end conflict sense of compressed spring answers support plate, the elastic force of compressed spring
It pushes and contains snow disc deviation induction support plate.
More specifically, the trigger mechanism 130 is several induction triggerings along induction guide post circumferential directions
Bar, the top for incuding frizzen are connect with snow disc is contained, and are incuded and are offered in support plate and the matched triggering guiding of induction frizzen
Hole, induction frizzen and the guiding for triggering pilot hole composition vertical direction cooperate.
Increase with the accumulated snow accumulated in snow disc is contained, accumulated snow weight increases, and the gravitational force urges for containing accumulated snow in snow disc contain snow disc
Overcome the elastic force of compressed spring and move straight down, elastic potential energy is shunk and put aside to compressed spring, and induction frizzen and Sheng are avenged
Disk moves synchronously, and during induction frizzen moves straight down, incudes the bottom end triggering inductor 140 of frizzen, induction
Device 140 generates signal and is transferred to control device 40 as electronic signals, and control device 40 controls transport line device 20 and operates.
More optimize, above-mentioned sensing device 10 further includes the mechanical snow plow structure for that will contain the discharge of the accumulated snow in snow disc
160, it is not easy to melt due to containing in the accumulated snow short time in snow disc, and the accumulated snow contained over time in snow disc can be further
Increase, compressed spring persistently receives the pressure for containing snow disc, and compressed spring keeps compressive state for a long time, and compressed spring is for a long time
It is exposed to the external world, easy to aging, the compressed spring of aging changes by prolonged Elastic Limit Under Compression, and compressed spring is restored
Length shortens afterwards, and the precision decline of sensing device 10, sensing device 10 easily triggers, the easy frequent starting of snow plough, snow plough
Service life is reduced, for this purpose, the precision of sensing device 10 can effectively be kept by adding mechanical snow plow structure 160, improves the service life of snow plough.
More specifically, above-mentioned mechanical snow plow structure 160 includes being set to the row's snow mounting disc 161 for containing snow disc bottom, row's snow
Coaxially the row's of offering snow annular groove 162, the interior matching of row's snow annular groove 162 are provided with for melting adding for snow-broth for the bottom surface of mounting disc 161
Hot plate 164, the row that the opening of row's snow annular groove 162 is provided with the opening sealing for that will arrange snow annular groove 162 avenge sealing plate 165,
The intercommunicating pore of connection row's snow annular groove 162 is offered on row's snow sealing plate 165, the plug in heating plate 164 passes through intercommunicating pore and electricity
Source connection, row's snow mounting disc 161 are coaxially connected with the row extended straight down and avenge guiding tube 163, row's snow substitution sense of guiding tube 163
Guide post is answered, compressed spring is sheathed on the outside of row's snow guiding tube 163, and row's snow guiding tube 163 is the inner hollow of both ends open
Tube body, row snow 163 inner cavity of guiding tube with contain snow disc inner cavity be connected to, arrange avenge guiding tube 163 bottom end be provided with solenoid valve 166,
The bottom end of solenoid valve 166 is provided with several drainpipes 167, and the delivery end of drainpipe 167 faces away from the direction of transport line device 20
Extend, avoids the snow-broth pollution transport line device 20 after melting.
More optimize, the Sheng snow disc and row's snow mounting disc 161 are made of Heat Conduction Material, improve heat transfer effect
Rate.
Inductor 140 is triggered in the bottom end for incuding frizzen, and solenoid valve 166 switches to open state by closed state at this time,
Row's snow beginning of guiding tube 163 is connected to drainpipe 167, and inductor 140 generates signal and is transferred to control as electronic signals
Device 40, control device 40 control heating plate 164 and distribute heat, and the heat that heating plate 164 distributes is by row's snow 161 He of mounting disc
It contains snow disc to conduct to the accumulated snow contained in snow disc, contains the snow melting in snow disc into snow-broth, snow-broth is by row's snow guiding tube 163, electricity
The external world is discharged in magnet valve 166, drainpipe 167, at this time the elastic potential energy release of compressed spring savings, and the elastic force of compressed spring, which pushes, to be contained
It avenges mechanism 110 and trigger mechanism 130 resets.
As shown in Figure 14-41, above-mentioned transport line device 20 includes the transport line bracket 210 connecting with object for clearance, setting
In on transport line bracket 210 transport line mechanism 230, be wound in transport line mechanism 230 conducting wire 240, connect with transport line mechanism 230
For providing the transport line power supply component 220 of rotary force to transport line mechanism 230,230 one end of transport line mechanism discharges conducting wire 240 simultaneously
And the other end recycles conducting wire 240 simultaneously, the conducting wire 240 is connect with cleaning plant 30, and transport line device 20 further includes that activity connects
It is connected to the fixed pulley 260 of object for clearance, fixed pulley 260 can be around own axis, the transport line bracket 210 and fixed pulley
260 are placed in the both ends on object length direction for clearance, and conducting wire 240 is discharged by transport line mechanism 230 by several guide wheels, fixed sliding
Wheel 260, several guide wheels return to transport line mechanism 230, and transport line power supply component 220 drives transport line mechanism 230 to turn around own axes
Dynamic, 230 one end of transport line mechanism discharges conducting wire 240 and the other end recycles conducting wire 240 simultaneously.
Specifically, the transport line bracket 210 include lower bracket 211, connect with lower bracket 211 middle bracket 212, and in
The upper bracket 213 that bracket 212 connects, lower bracket 211, middle bracket 212 and upper bracket 213 arrange along the vertical direction, middle bracket 212
Between lower bracket 211 and upper bracket 213, above-mentioned several guide wheels are set on middle bracket 212.
More specifically, the transport line mechanism 230 includes that around own axis and can wind the left side of conducting wire 240
Transport line roller 232, right transport line roller 234, transport line mechanism 230 further include the Left Drive with left 232 coaxial line of transport line roller arrangement
Axis 231, the right transmission shaft 233 with right 234 coaxial line of transport line roller arrangement, left drive shaft 231 are axially parallel to right transmission shaft
The driving end of 233 axial direction, left drive shaft 231 and right transmission shaft 233 can receive the rotary force of transport line power supply component 220 simultaneously
By the rotary force, transport line roller 232 and right transport line roller 234 are transmitted to the left, compare single transport line roller, by the way that left transport line is arranged
Roller 232 and right transport line roller 234 can wind longer conducting wire 240, the commutating period of extension lead 240, can clear up top surface compared with
Long object.
More optimize, clamping plate a2111 parallel to each other, clamping plate b2112 are provided on above-mentioned lower bracket 211, it is described
Left transport line roller 232 and right transport line roller 234 be installed on the interval region between clamping plate a2111 and clamping plate b2112.
The transport line power supply component 220 is the first motor 221 coaxially connected with left drive shaft 231 and right biography
The second coaxially connected motor 222 of moving axis 233;First motor 221 drives left 232 up time of transport line roller by left drive shaft 231
Needle rotation, left transport line roller 232 recycle and wind conducting wire 240, and the second motor 222 drives right transport line to roll by right transmission shaft 233
Cylinder 234 rotates clockwise, and right transport line roller 234 discharges conducting wire 240, and left transport line roller 232 is synchronous with right transport line roller 234 to be turned
Dynamic, when right transport line roller 234 finishes the release of conducting wire 240, first motor 221 and the second motor 222 are rotated backward, at this time right fortune
Line roller 234, which recycles, simultaneously winds conducting wire 240, and left transport line roller 232 discharges conducting wire 240, when left transport line roller 232 is by conducting wire 240
When release finishes, first motor 221 and the second motor 222 rotate backward again, so recycle.
As another embodiment of the invention, lead to that the motor feels hot, influences electrical machinery life to avoid motor from frequently commutating,
The transport line power supply component 220 further includes the hinged shaft core line of the reversing plate 224 hinged with clamping plate a2111 and hinged place
Direction is parallel to clamping plate perpendicular to clamping plate a2111, the transport line transmission mechanism 223 being set on reversing plate 224, reversing plate 224
A2111 and reversing plate 224 are bonded the outside of clamping plate a2111, and reversing plate 224 can axially be rotated around the articulated shaft of its connection, above-mentioned
First motor 221 and the second motor 222 left transport line roller 232 and right transport line roller 234 driven by transport line transmission mechanism 223
Rotation.
The output end of driving link the connection first motor 221 and the second motor 222 of transport line transmission mechanism 223, transport line transmission
The driving end of driven member the connection left drive shaft 231 and right transmission shaft 233 of mechanism;By transport line transmission mechanism, realize second
The rotary force of motor 222 is transferred to left transport line roller 232 or right transport line roller 234, and realizes that first motor 221 drives reversing plate
224 deflection.
Specifically, transport line transmission mechanism 223 includes the left driven wheel 2231 for driving end to connect with left drive shaft 231 and the right side
Transmission shaft 233 drives the right driven wheel 2234 of end connection, and transport line transmission mechanism 223 further includes connecting with 221 output end of first motor
The first driving wheel 2232 connect, the second driving wheel 2235 being connect with 222 output end of the second motor, the transport line transmission mechanism
223 be gear drive, and left driven wheel 2231, right driven wheel 2234, the first driving wheel 2232 and the second driving wheel 2235 are
For gear, transport line transmission mechanism 223 further includes that the transmission gear 2233 engaged with the second driving wheel 2235 and reversing plate 224 paste
The setter plate 2236 of conjunction, transmission gear 2233 can be engaged transmission, setter plate with the right driven wheel 2234 of left driven wheel 2231/
2236 bottom end is provided with the rack gear engaged with the first driving wheel 2232.
The first motor 221 is set on lower bracket 211, transmission gear 2233 and the second motor 222 are set to and change
To on plate 224, setter plate 2236 is between reversing plate 224 and the second motor 222, articulated shaft of the reversing plate 224 around its connection
The second motor 222, setter plate 2236 and transmission gear 2233 can be driven to move synchronously when axial rotation.
The reversing plate 224 is fan-shaped and the bottom surface of reversing plate 224 is arc surface, offers a pair on reversing plate 224
The driving end difference of the arc guide slot 2242 concentric with reversing plate 224, above-mentioned left drive shaft 231 and right transmission shaft 233
With an arc guide slot 2242 is worn, the arc-shaped limit concentric with reversing plate 224 is also provided between two arc guide slots 2242
Slot 2241 is provided with the driving block that slide-and-guide cooperation is constituted with arc limit slot 2241 on above-mentioned clamping plate a2111;Pass through
The bootable reversing plate 224 of above scheme rotates.
Original state, first motor 221 are in idle state, and transmission gear 2233 is engaged with left driven wheel 2231, and second
Rotary force is simultaneously transferred to Left Drive by the second driving wheel 2235, transmission gear 2233, left driven wheel 2231 by the starting of motor 222
Axis 231, left drive shaft 231 is around own axes and left transport line roller 232 is driven to rotate clockwise, and the left recycling of transport line roller 232 is simultaneously
Conducting wire 240 is wound, conducting wire 240 is by several guide wheels, fixed pulley 260, several guide wheels and right transport line roller 234 is driven to turn clockwise
Conducting wire 240 is moved and discharges, when the release of conducting wire 240 on right transport line roller 234 finishes, first motor 221 starts and drives the
The rotation of one driving wheel 2232, the first driving wheel 2232 driving setter plate 2236 move and reversing plate 224 are driven to rotate, left drive shaft
231 and right transmission shaft 233 arcuately guiding groove 2242 slide, transmission gear 2233 moved towards right driven wheel 2234 and with the right side from
Driving wheel 2234 engages, and first motor 221 stops operating at this time, and the rotary force of the second motor 222 passes through the second driving wheel 2235, biography
Moving gear 2233, right driven wheel 2234 are transferred to right transmission shaft 233, and right transmission shaft 233 is around own axis and drives right fortune
Line roller 234 rotates counterclockwise, and right transport line roller 234 recycles and winds conducting wire 240, and conducting wire 240 drives left transport line roller 232 inverse
Hour hands rotation, left transport line roller 232 discharge conducting wire 240, when the release of conducting wire 240 on left transport line roller 232 finishes, the first electricity
Machine 221 starts and rotates backward, and first motor 221 drives transmission gear 2233 by the first driving wheel 2232 and setter plate 2236
It is moved towards left driven wheel 2231, transmission gear 2233 separates with right driven wheel 2234 and realize that transmission gear 2233 and a left side are driven
2231 engagement of wheel, repeat the above steps sustainable operating conducting wire 240, guarantees the duration of cleaning accumulated snow.
For the impact wreckage knot for preventing transmission gear 2233 from generating when engaging with left driven wheel 2231 or right driven wheel 2234
The stability of structure, for this purpose, one end that two arc guide slots 2242 are away from each other is provided with buffer gear 225, by adding buffer
Structure 225, when transmission gear 2233 is moved towards right driven wheel 2234 and will be engaged with right driven wheel 2234, left drive shaft
231 crusherbull zone mechanisms 225, buffer gear 225 play buffer deceleration, and buffer gear 225 is implemented to buffer to reversing plate 224
To slow down, the movement velocity of transmission gear 2233 reduces, and impact force when transmission gear 2233 is engaged with right driven wheel 2234 reduces,
Reduce the influence to structural strength.
Specifically, the buffer gear 225 includes being opened in arc guide slot 2242 away from arc limit slot 2,241 1
The buffering mounting groove 2251 at end, the interior matching of buffering mounting groove 2251 are provided with buffer board 2252, buffer board 2252 and reversing plate 224
Between be provided with buffer spring 2253, one end of buffer spring 2253 contradicts reversing plate 224, the other end of buffer spring 2253 supports
Reversing plate 224 is touched, the elastic force of buffer spring 2253 pushes buffer board 2252 to be biased to left drive shaft 231 or right transmission shaft 233.
More optimize, to prevent buffer spring 2253 from falling, is provided on buffer board 2252 and reversing plate 224 coaxial
The limit guide post being arranged in inside buffer spring 2253.
As shown in Figure 31-41, in order to avoid the coiling when winding left transport line roller 232 and right transport line roller 234 of conducting wire 240
Confusion, and guarantee conducting wire 240 when winding and drawing left transport line roller 232 or right transport line roller 234,240 vertical left of conducting wire is transported
The axial direction of line roller 232 and right transport line roller 234, for this purpose, left transport line roller 232 and right transport line roller 234 are connected with to positive machine
Structure, there are two aligning guide settings and is respectively the left aligning guide connecting with left transport line roller 232 and right transport line roller
The right aligning guide 250 of 234 connections, the connection relationship and left aligning guide and a left side of right aligning guide 250 and right transport line roller 234
The connection relationship of transport line roller 232 is consistent.
The right aligning guide 250 include be set to right 234 side of transport line roller to Positive rack 253, be set to pair
On Positive rack 253 to positive guide member 255, with to positive guide member 255 constitute slide-and-guide cooperation to positive guiding elements
256, what is connect with to positive guiding elements 256 is used to drive to the movement of positive guiding elements 256 to positive drive member 254, conducting wire
240 are slidably connected with to positive guiding elements 256;When right transport line roller 234 recycles conducting wire 240, right 234 side of transport line roller
Side of the conducting wire 240 towards right transport line roller 234 without conducting wire 240 is wound, right when right transport line roller 234 discharges conducting wire 240
The conducting wire 240 of 234 side of transport line roller is deviated towards the side that right transport line roller 234 is wound with conducting wire 240, in right transport line roller
When 234 windings or release conducting wire 240, the rotary force of right transmission shaft 233 is received to positive drive member 254 and is driven to positive guidance structure
Part 256 is along the channeling direction sliding to positive guiding elements 256, and to the traction of positive guiding elements 256, its conducting wire 240 connected keeps hanging down
The axial direction of straight right transport line roller 234 ensure that right transport line roller 234 just draw or release straight by release or conducting wire 240 to be wound
It puts.
Specifically, it is above-mentioned include the vertical plate 1 being vertically arranged on lower bracket 211 to Positive rack 253, it is vertical
Plate 2 2532, vertical plate 1 is parallel with vertical plate 2 2532 and line between vertical plate 1 and vertical plate 2 2532
It is parallel to the axial direction of right transport line roller 234, is provided between vertical plate 1 and vertical plate 2 2532 horizontally disposed to just
Level board 2533.
Described is set to the top to positive level board 2533 to positive guide member 255, to positive drive member 254 between right
Positive level board 2533 and between positive guide member 255.
To positive guide member 255 include it is parallel to each other to positive guide rod 1, to positive guide rod 2 2552, to just leading
To bar 1 and to positive guide rod 2 2552 between vertical plate 1 and vertical plate 2 2532, and to positive guide rod one
2551 and to positive guide rod 2 2552 constitute plane be parallel to horizontal plane.
It include being set to positive 2533 top surface of level board and can turning around the active of own axis to positive drive member 254
The central axial direction of cylinder 2541, driven rotating cylinder 2542, driving revolving drum 2541 and driven rotating cylinder 2542 is perpendicular to horizontal plane, actively
Rotating cylinder 2541 and driven rotating cylinder 2542 further include pair to positive drive member 254 along the length direction arrangement to positive level board 2533
Positive conveyer belt 2543, driving revolving drum 2541 and driven rotating cylinder 2542 are by realizing connection transmission to positive conveyer belt 2543.
Above-mentioned includes being slidably connected with to positive guide rod 1 and to positive guide rod 2 2552 to positive guiding elements 256
Sliding sleeve 2561, extending direction is offered on sliding sleeve 2561 vertically to positive guide rod 1 to positive sliding slot 2564, to positive sliding
Being provided in slot 2564 along slide positive 2564 channeling direction of sliding slot can be used to that the power of positive drive member 254 will to be transferred to
The power of sliding sleeve 2561 transmits sliding block 2562, and power transmits sliding block 2562 and the fixed company of zone face to positive 2543 side of conveyer belt
It connects, is provided on sliding sleeve 2561 for guiding that conducting wire 240 moves to positive guide sleeve 2563, is hung down to the channeling direction of positive guide sleeve 2563
Directly in the axial direction of right transport line roller 234.
Preferably, cone cell is arranged to the both ends open of positive guide sleeve 2563, and to the both ends open size of positive guide sleeve 2563
It is directed toward by port and the center of positive guide sleeve 2563 is gradually narrowed;It wears convenient for conducting wire 240 to positive guide sleeve 2563.
The right aligning guide 250 further includes the right side that the rotary force of right transmission shaft 233 is transferred to driving revolving drum 2541
To positive drive mechanism, it is right to positive drive mechanism include it is right to positive drive force transfer mechanism 251, it is right to ahead power conduction mechanism 252, it is right
The output end of right transmission shaft 233 is connected to the driving end of positive drive force transfer mechanism 251, the right side is to the defeated of positive drive force transfer mechanism 251
The right driving end to ahead power conduction mechanism 252 of outlet connection, the right output end connection to ahead power conduction mechanism 252 actively turn
The driving end of cylinder 2541.
Specifically, right includes the driven bull stick of the coaxially connected conduction in driving revolving drum 2541 to ahead power conduction mechanism 252
2523, it conducts driven bull stick 2523 and is flexibly connected away from one end of driving revolving drum 2541 with lower bracket 211, conduct driven bull stick
2523 can conduct driven 2523 outer, coaxial of bull stick and be arranged with conduction driven wheel 2524, conduct from turn around own axis
The side of bar 2523 be provided be flexibly connected with to Positive rack 253 and can around the conduction active bull stick 2521 of own axis,
The axial direction of the driven bull stick 2523 of axially vertical conduction of active bull stick 2521 is conducted, conduction 2521 outer, coaxial of active bull stick is arranged
Have and the conduction matched conduction driving wheel 2522 of driven wheel 2524, it is preferred that conduction driving wheel 2522 and conduction driven wheel 2524
It is helical gear, conduction driving wheel 2522 is engaged with conduction driven wheel 2524.
The right side includes the transmitting driving wheel connecting with right 233 output end of transmission shaft to positive drive force transfer mechanism 251
2511, the transmitting driven wheel 2512 being connect with the driving end of conduction active bull stick 2521, it is preferred that transmitting driving wheel 2511 and biography
It passs 2512 belt pulley of driven wheel, transmitting driving wheel 2511 and transmitting driven wheel 2512 and connection transmission is realized by belt.
Driving revolving drum 2541 passes through the right rotary force to the right transmission shaft of positive drive authorities 233 and turns around own axes
Dynamic, driving revolving drum 2541 is by driving driven rotating cylinder 2542 around own axis positive conveyer belt 2543, to positive conveyer belt
2543 driving power transmitting sliding blocks 2562 are slided along to positive 2543 zone face extending direction of conveyer belt, and power transmits sliding block 2562 and drives
Sliding sleeve 2561 moves synchronously positive guide sleeve 2563 with sliding sleeve 2561, along the channeling direction sliding to positive guide rod 1 to just
The axial direction of the vertical right transport line roller 234 always of conducting wire 240 of the traction connection of guide sleeve 2563, when power transmitting sliding block 2562 moves to
When to one end of positive conveyer belt 2543, power transmits sliding block 2562 in the driven circle of rotating cylinder 2542 of guidance lower edge of driven rotating cylinder 2542
It completes semi arch in week to run and complete to commutate, power transmitting sliding block 2562 guides conducting wire 240 to synchronously complete unwrapping wire commutation.
As shown in Fig. 5,42-43, the cleaning plant 30 and the side conducting wire 240 for being located at object top face for clearance
It is fixedly connected, the conducting wire 240 of operating drives cleaning plant 30 to slidably reciprocate along object end face length for clearance direction, cleaning plant
The accumulated snow of object top surface for clearance is swept and is fallen by 30, and cleaning plant 30 can make corresponding tune according to the true form of top surface for clearance
It is whole, for example, cleaning plant 30 can be set to isosceles trapezoid block when object top surface for clearance is plane, the two of isosceles trapezoid block
Equal central planes are respectively facing one end of object end face length for clearance, and isosceles trapezoid block can two-way cleaning back and forth.
In the present embodiment, the top of object for clearance is arc ceiling, and the center of circle of arc ceiling is downward, therefore cleaning plant
30 be the arc structure for adapting to arc ceiling, to expand the scope of application, to adapt to the ceiling of different radians, cleaning plant 30 it is curved
Bent radian is adjustable, it is preferred that cleaning plant 30 is the chain hinged by several connection components 310, the position of centre of gravity of chain and one
Side conducting wire 240 is fixedly connected;Convenient for chain stress balance.
Above-mentioned connection component 310 includes the connection loop bar for being set to above arc ceiling and being located at chain middle position
313, the both ends of connection loop bar 313 offer the connection mounting hole 311 sequentially passed through for two conducting wires being parallel to each other 240,
In be provided with for connecting the fixed fixes sleeve 312 of loop bar 313 and conducting wire 240 in a connection mounting hole 311, it is more perfect
, fixes sleeve 312 with connect mounting hole 311 and be fixedly and coaxially connected and fixes sleeve 312 and conducting wire 240 through its center
It is fixedly connected.
Bus stop ceiling intelligence induction type snow-removing method, step are:
S1: when snowy day, increase with the accumulated snow accumulated in snow disc is contained, accumulated snow weight increases, and contains the gravitational force urges of accumulated snow in snow disc
It contains snow disc to overcome the elastic force of compressed spring and move straight down, elastic potential energy is shunk and put aside to compressed spring, incudes frizzen
It is moved synchronously with snow disc is contained, during induction frizzen moves straight down, incudes the bottom end triggering inductor of frizzen
140, inductor 140 generates signal and is transferred to control device 40 as electronic signals, and control device 40 controls transport line device
20 operatings;
S2: at the same time, solenoid valve 166 switches to open state by closed state, and row's snow guiding tube 163 starts and drainpipe
167 connections, inductor 140 generate signal and are transferred to control device 40 as electronic signals, the control heating of control device 40
Plate 164 distributes heat, and the heat that heating plate 164 distributes is conducted by row's snow mounting disc 161 and Sheng snow disc to the product contained in snow disc
Snow contains the snow melting in snow disc into snow-broth, and snow-broth is discharged outer by row's snow guiding tube 163, solenoid valve 166, drainpipe 167
Boundary, the elastic potential energy release of compressed spring savings, the elastic force of compressed spring push Sheng Xue mechanism 110 and trigger mechanism 130 at this time
It resets;
S3: at this point, first motor 221 is in idle state, transmission gear 2233 is engaged with left driven wheel 2231, the second motor
Rotary force is simultaneously transferred to left drive shaft by the second driving wheel 2235, transmission gear 2233, left driven wheel 2231 by 222 startings
231, left drive shaft 231 is around own axes and left transport line roller 232 is driven to rotate clockwise, and left transport line roller 232 is recycled and twined
Around conducting wire 240, conducting wire 240 is by several guide wheels, fixed pulley 260, several guide wheels and right transport line roller 234 is driven to rotate clockwise
And conducting wire 240 is discharged, right transport line roller 234 drives right transmission shaft 233 around own axis, and it is right right that driving revolving drum 2541 passes through
The rotary force of the right transmission shaft 233 of positive drive authorities and around own axis, driving revolving drum 2541 passes through to positive conveyer belt
The 2543 driven rotating cylinders 2542 of driving are around own axis, to positive conveyer belt 2543 driving power transmitting sliding block 2562 along to main story
The opposite direction movement for sending 2543 band of band to disappear facing towards conducting wire 240 on right transport line roller 234, power, which transmits the driving of sliding block 2562, to be slided
Set 2561 moves synchronously, and to the axial direction of the conducting wire 240 of positive guide sleeve 2563 traction connection vertical right transport line roller 234 always, works as the right side
When transport line roller 234 discharges the conducting wire 240 of internal layer, the sliding block 2562 of power transmitting at this time move to positive conveyer belt 2543 close to from
One end of turn cylinder 2542, power transmit sliding block 2562 and complete in driven 2542 circumference of rotating cylinder of guidance lower edge of driven rotating cylinder 2542
Semi arch runs and completes to commutate, and power transmitting sliding block 2562 guides conducting wire 240 to synchronously complete unwrapping wire commutation, at this time conducting wire 240
Cleaning plant 30 is driven to move towards the direction of fixed pulley 260, cleaning plant 30 pushes accumulated snow at the top of object to slide;
S4: when the release of conducting wire 240 on right transport line roller 234 finishes, first motor 221 starts and drives the first driving wheel
2232 rotations, the first driving wheel 2232 driving setter plate 2236 move and reversing plate 224 are driven to rotate, left drive shaft 231 and the right side
Transmission shaft 233 arcuately guiding groove 2242 slide, transmission gear 2233 moved towards right driven wheel 2234 and with right driven wheel
2234 engagements, first motor 221 stops operating at this time, and the rotary force of the second motor 222 passes through the second driving wheel 2235, driving cog
Wheel 2233, right driven wheel 2234 are transferred to right transmission shaft 233, and right transmission shaft 233 is around own axis and right transport line is driven to roll
Cylinder 234 rotates counterclockwise, and right transport line roller 234 recycles and wind conducting wire 240, and conducting wire 240 drives left transport line roller 232 counterclockwise
Rotation, left transport line roller 232 discharge conducting wire 240, and driving revolving drum 2541 rotates backward at this time, and power transmits sliding block 2562 towards master
Turn cylinder 2541 moves, when the winding of one end conducting wire 240 of right transport line roller 234 is full, at this point, power transmitting sliding block 2562 moves
To driving revolving drum 2541, power transmits sliding block 2562 and completes half along 2541 circumference of driving revolving drum under the guidance of driving revolving drum 2541
Circular arc runs and completes to commutate, and power transmitting sliding block 2562 guides conducting wire 240 to synchronously complete winding commutation, and conducting wire 240 drives at this time
Dynamic cleaning plant 30 faces away from the direction movement of fixed pulley 260, and cleaning plant 30 reversely clears up accumulated snow at the top of object;
S5: when the release of conducting wire 240 on left transport line roller 232 finishes, first motor 221 starts and rotates backward, the first electricity
Machine 221 drives transmission gear 2233 to move towards left driven wheel 2231 by the first driving wheel 2232 and setter plate 2236, is driven
Gear 2233 separates with right driven wheel 2234 and realizes that transmission gear 2233 is engaged with left driven wheel 2231, and repeating the above steps can
Continuous running conducting wire 240 guarantees the duration of cleaning accumulated snow.
The above is only a preferred embodiment of the present invention, it is noted that for the ordinary skill people of the art
For member, in knowing the present invention after contents, without departing from the principle of the present invention, it can also be made several
Same transformation and replacement, these convert and substitute on an equal basis and also should be regarded as belonging to the scope of protection of the present invention.
Claims (1)
1. bus stop ceiling intelligence induction type snow-removing method, step are:
S1: when snowy day, increase with the accumulated snow accumulated in snow disc is contained, accumulated snow weight increases, and contains the gravitational force urges of accumulated snow in snow disc
It contains snow disc to overcome the elastic force of compressed spring and move straight down, elastic potential energy is shunk and put aside to compressed spring, incudes frizzen
It is moved synchronously with snow disc is contained, during induction frizzen moves straight down, incudes the bottom end triggering inductor of frizzen, sense
It answers device to generate signal and is transferred to control device as electronic signals, control device controls the operating of transport line device;
S2: at the same time, solenoid valve switches to open state by closed state, and row's snow guiding tube starts to be connected to drainpipe, feel
It answers device to generate signal and is transferred to control device as electronic signals, control device control heating plate distributes heat, heating plate
The heat distributed is conducted by row's snow mounting disc and Sheng snow disc to the accumulated snow contained in snow disc, contains the snow melting Cheng Xue in snow disc
Water, snow-broth is extraneous by row's snow guiding tube, solenoid valve, drainpipe discharge, at this time the elastic potential energy release of compressed spring savings, pressure
The elastic force of contracting spring pushes Sheng Xue mechanism and trigger mechanism to reset;
S3: at this point, first motor is in idle state, transmission gear is engaged with left driven wheel, and the second electric motor starting simultaneously will rotation
Power is transferred to left drive shaft by the second driving wheel, transmission gear, left driven wheel, and left drive shaft is around own axes and drives left fortune
Line roller rotates clockwise, and left transport line roller recycles and wind conducting wire, and conducting wire passes through several guide wheels, fixed pulley, several guide wheels simultaneously
Right transport line roller is driven to rotate clockwise and discharge conducting wire, the right right transmission shaft of transport line drum driven is around own axis, actively
By the right rotary force to the right transmission shaft of positive drive authorities and around own axis, driving revolving drum passes through to main story rotating cylinder
Send band to drive driven rotating cylinder around own axis, to positive belt-driven power transmitting sliding block along to positive conveyer belt band facing towards
The opposite direction movement that conducting wire disappears on right transport line roller, power transmitting slider-actuated sliding sleeve move synchronously, draw and connect to positive guide sleeve
The axial direction of the conducting wire connect vertical right transport line roller always, when the conducting wire of right transport line roller release internal layer, power transmitting at this time is slided
Block is moved to positive conveyer belt close to one end of driven rotating cylinder, and power transmits sliding block in the driven rotating cylinder of guidance lower edge of driven rotating cylinder
Circumference completes semi arch and runs and complete to commutate, and power transmitting sliding block guidance conducting wire synchronously completes unwrapping wire commutation, and conducting wire drives at this time
Dynamic cleaning plant is moved towards the direction of fixed pulley, and cleaning plant pushes accumulated snow at the top of object to slide;
S4: when the conducting wire release on right transport line roller finishes, first motor starts and the first driving wheel is driven to rotate, and first is main
Driving wheel driving setter plate moves and reversing plate is driven to rotate, and arcuately guiding groove slides for left drive shaft and right transmission shaft, driving cog
Wheel is moved towards right driven wheel and is engaged with right driven wheel, and first motor stops operating at this time, and the rotary force of the second motor passes through
Second driving wheel, transmission gear, right driven wheel are transferred to right transmission shaft, and right transmission shaft is around own axis and drives right transport line
Roller rotates counterclockwise, and right transport line roller recycles and wind conducting wire, and conducting wire drives left transport line roller to rotate counterclockwise, left transport line rolling
Cylinder release conducting wire, driving revolving drum rotates backward at this time, and power transmits sliding block and moves towards driving revolving drum, when the one of right transport line roller
When holding conducting wire winding full, at this point, power transmits slide block movement to driving revolving drum, power transmits sliding block under the guidance of driving revolving drum
It being run along driving revolving drum circumference completion semi arch and completes to commutate, power transmitting sliding block guidance conducting wire synchronously completes winding commutation,
The cleaning plant of conducting wire driving at this time faces away from the direction movement of fixed pulley, and cleaning plant reversely clears up accumulated snow at the top of object;
S5: when the conducting wire release on left transport line roller finishes, first motor starts and rotates backward, and first motor passes through first
Driving wheel and setter plate driving transmission gear are moved towards left driven wheel, and transmission gear separates with right driven wheel and realizes driving cog
Wheel is engaged with left driven wheel, and repeat the above steps sustainable operating conducting wire, guarantees the duration of cleaning accumulated snow.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201811334947.0A CN109184098A (en) | 2018-11-10 | 2018-11-10 | Bus stop ceiling intelligence induction type snow-removing method |
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Application Number | Priority Date | Filing Date | Title |
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CN201811334947.0A CN109184098A (en) | 2018-11-10 | 2018-11-10 | Bus stop ceiling intelligence induction type snow-removing method |
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CN201811334947.0A Withdrawn CN109184098A (en) | 2018-11-10 | 2018-11-10 | Bus stop ceiling intelligence induction type snow-removing method |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109750800A (en) * | 2019-03-15 | 2019-05-14 | 南京工程学院 | Greenhouse snow blower |
-
2018
- 2018-11-10 CN CN201811334947.0A patent/CN109184098A/en not_active Withdrawn
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109750800A (en) * | 2019-03-15 | 2019-05-14 | 南京工程学院 | Greenhouse snow blower |
CN109750800B (en) * | 2019-03-15 | 2024-03-22 | 南京工程学院 | Snow remover for greenhouse |
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Application publication date: 20190111 |