CN108554864A - A kind of detergent concentration can self-regulated glass cleaning equipment - Google Patents

A kind of detergent concentration can self-regulated glass cleaning equipment Download PDF

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Publication number
CN108554864A
CN108554864A CN201810009565.4A CN201810009565A CN108554864A CN 108554864 A CN108554864 A CN 108554864A CN 201810009565 A CN201810009565 A CN 201810009565A CN 108554864 A CN108554864 A CN 108554864A
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CN
China
Prior art keywords
cleaning
shaft
gear
detergent
water
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810009565.4A
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Chinese (zh)
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CN108554864B (en
Inventor
蔡宜和
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LU'AN YONGZHEN GRIZZLY ELECTRICAL AND MECHANICAL TECHNOLOGY Co.,Ltd.
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蔡宜和
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Priority to CN201810009565.4A priority Critical patent/CN108554864B/en
Publication of CN108554864A publication Critical patent/CN108554864A/en
Application granted granted Critical
Publication of CN108554864B publication Critical patent/CN108554864B/en
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Classifications

    • B08B1/143
    • B08B1/32
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/04Cleaning involving contact with liquid
    • B08B3/08Cleaning involving contact with liquid the liquid having chemical or dissolving effect
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B2203/00Details of cleaning machines or methods involving the use or presence of liquid or steam
    • B08B2203/02Details of machines or methods for cleaning by the force of jets or sprays
    • B08B2203/0217Use of a detergent in high pressure cleaners; arrangements for supplying the same

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Abstract

The present invention provides a kind of detergent concentration can self-regulated glass cleaning equipment, including power supply component, power transfer mechanism, volume control device, cleaning device, water pot, clean tank, power supply component, which is used to clean glass for cleaning device, provides cleaning power, power transfer mechanism can receive the power of power supply component and the power be transferred to cleaning device, water pot is used to provide required cleaning water source for cleaning device, cleaning tank is used to provide detergent needed for glass surface cleaning in the process for cleaning device, cleaning device can receive the mixed liquor of clean water and detergent and be cleaned to glass, volume control device is used to control the mixed proportion of clean water and detergent in cleaning device, mounting device is for quickly and easily installation or removal cleaning tank ontology.

Description

A kind of detergent concentration can self-regulated glass cleaning equipment
Technical field
The present invention relates to a kind of cleaning equipments of glass.
Background technology
Usually sponge is absorbed by cleaning solution to wipe, pass through to the traditional removal method of glass surface spot at present Rubber scraper or dry wipe remove the cleaning solution stayed on glass, and this method not only takes considerable time, but also cleaning solution is dense Bad grasp is spent, concentration of lotion, which is crossed, to be caused to damage to glass surface, and concentration of lotion is too small, can not remove stupid Gu spot, in addition to this, such cleaning method also add the labor intensity of cleaning personnel, it is not easy to daily cleaning.
Invention content
To solve the deficiencies in the prior art, the object of the present invention is to provide detergent concentration can the cleaning glass of self-regulated set It is standby.
To realize the above-mentioned technical purpose, the technical solution adopted in the present invention is as follows.
A kind of detergent concentration can self-regulated glass cleaning equipment comprising power supply component, power transfer mechanism, stream Amount control device, cleaning device, water pot, cleaning tank, power supply component are used to clean glass for cleaning device to provide to clean and move Power, power transfer mechanism can receive the power of power supply component and the power are transferred to cleaning device, and water pot is for being clear Clean device provides required cleaning water source, and cleaning tank is used to provide glass surface cleaning required detergent in the process for cleaning device, Cleaning device can receive the mixed liquor of clean water and detergent and be cleaned to glass, and volume control device is cleaned for controlling The mixed proportion of clean water and detergent in device;
The volume control device includes control mechanism, detergent flow control mechanism, water flow control mechanism, detergent stream Amount control mechanism is used to control the flow for flowing into the detergent in cleaning device, and water flow control mechanism flows into cleaning for controlling The flow of clean water in device, control mechanism are used to control the opening of detergent flow control mechanism and water flow control mechanism Or it closes;
The detergent flow control mechanism includes flow controlling unit, fixing bracket, flow with water flow control mechanism Control unit is installed on fixing bracket;
The cleaning tank includes cleaning tank ontology, conducting hose, be connected one end of hose with clean tank ontology connect, the other end It is connect with the flow controlling unit for being set to detergent flow control mechanism;
The water pot includes water pot ontology, diversion pipe, and one end of diversion pipe connect with water pot ontology, the other end and is set to water The flow controlling unit of flow control mechanism connects.
Advanced optimizing and improving as this programme.
The flow controlling unit includes screw nipple, three-way pipe, sealing-plug, connecting tube, and the three-way pipe is set It is equipped with vertical flow tube, horizontal flow tube, vertical flow tube is vertically installed in horizontal flow tube centre position and mutually connects and constitute T-type Structure, one end of horizontal flow tube is threaded ends, the other end is liquid extruding end, the conducting hose or diversion pipe and three The vertical flow tube connection of siphunculus is connected, and the sealing-plug is set in horizontal flow tube and the two constitutes sealed sliding and matches It closes, by sliding of the sealing-plug in horizontal flow tube, to control vertical flow tube and the effective vent ruler at horizontal flow tube connection Very little, the screw nipple is movably installed on fixing bracket and can be rotated around center axis, screw nipple Central axial direction is parallel with the central axial direction of shaft, and the connection end of screw nipple and horizontal flow tube is the end of thread, The end of thread of screw nipple is threadedly coupled with the threaded ends of three-way pipe, one end of the connecting tube and horizontal flow tube The connection of liquid extruding end is connected, the other end and cleaning device connection are connected;
The flow controlling unit further includes adjustment spring, and built-in step, built-in step are provided in the horizontal flow tube Be set to horizontal flow tube liquid extruding end and horizontal flow tube, vertical flow tube connection between, the adjustment spring setting In in horizontal flow tube, one end of adjustment spring is contradicted with the built-in step in horizontal flow tube, the other end and sealing-plug contradict, and is adjusted The elastic force of spring makes threaded connection end motion of the sealing-plug towards horizontal flow tube;
The flow controlling unit further includes gear c, and gear c is socketed on the outside of screw nipple, the gear c and spiral shell It is connected by connector between line connecting tube, and gear, when threadingly connecting tube is axially displaced, gear c can pass through connection Part continues to export power to screw nipple, and the connector is the external splines two being set on screw nipple, is set to At the centers gear c and with the matched internal spline two of external splines two-phase, gear c is subjected to external motivating force and to screw nipple It is transmitted.
Advanced optimizing and improving as this programme.
The power transfer mechanism includes bevel gear transmission, shaft, and the bevel gear transmission includes master The power output end of dynamic bevel gear, driven wheel of differential, the power supply component is connect with drive bevel gear, driven wheel of differential It is engaged with drive bevel gear and driven wheel of differential is fixedly sheathed in the outside of shaft.
Advanced optimizing and improving as this programme.
The control mechanism includes loop bar, impeller, fixed link, gear part, the central axis of the fixed link Direction is parallel with the central axial direction of shaft, and the gear part is socketed on the outside of shaft, and the one of the impeller End cap is connected to the outside of fixed link, the other end is socketed on the outside of shaft and is flexibly connected with gear part, and impeller can edge The axial movement of fixed link when impeller is axially displaced along fixed link, can drive gear part to be moved axially along shaft, institute The loop bar stated is socketed on the outside of fixed link and is flexibly connected with impeller, and loop bar can sliding axially and cover along fixed link Bar can draw the synchronous fortune of impeller around the center axis thereof of fixed link when along fixed link axis shift occurs for loop bar It is dynamic;
It is connected by linkage part between the gear part and shaft, and gear part is axially displaced along shaft When, shaft can continue to export power to gear part by linkage part, the linkage part be set to it is outer in shaft Spline one, the internal spline one for being set to gear part;
The gear part includes gear a, gear b, connection loop bar, and the equal coaxial line arrangement of gear a, gear b, connection loop bar is simultaneously And gear a, gear b are fixedly installed on one end of connection loop bar respectively, internal spline one is set at the center of gear a and gear b And match with the external splines one being set in shaft, the impeller is fixedly connected on connection loop bar;
When gear part is moved along the central axial direction of shaft, and makes gear a in gear part and be set to detergent When the gear c engagements of flow controlling unit in flow control mechanism, gear part can be to being set to detergent flow control machine Screw nipple on flow controlling unit in structure transmits rotary force, and controls the flow of detergent;
When gear part is moved along the central axial direction of shaft, and makes gear b in gear part and be set to water flow When the gear c engagements of the flow controlling unit in control mechanism, gear part can be to the stream being set in water flow control mechanism The screw nipple measured in control unit transmits rotary force, and controls the flow of water.
Advanced optimizing and improving as this programme.
The cleaning device includes cleaning head, cleaning shaft, accommodates tank, fixing sleeve, and the receiving tank can receive stream It measures the detergent or water that control unit is discharged and accommodates the holding tank being provided in tank for accommodating detergent or water, cleaning turns The central axial direction of axis is overlapped with the central axial direction of shaft, the one end for cleaning shaft connect with shaft, the other end with it is clear Clean head connection, shaft rotation drives cleaning shaft rotation, and cleaning head is driven to rotate;
The cleaning shaft is the cylindrical barrel body structure of both ends open, and the part that the shaft is located in holding tank is provided with The water flowing inner cavity connected with cleaning shaft inner cavity, the periphery of shaft, which is provided with, to be connected with water flowing inner cavity and is connected with holding tank Permeable hole, clean inner cavity is provided in the cleaning head and the inner cavity of clean inner cavity and cleaning shaft is connected, cleaning head It is in the limbers for being evenly spaced on and being connected with clean inner cavity with several are provided on the end face of glass contact.
Advanced optimizing and improving as this programme.
Glass cleaning equipment further includes the mounting device for quickly and easily installing or removing cleaning tank ontology, described Mounting device includes installation shell, installs setting limit switches, position-limit mechanism, limit switch, position-limit mechanism, braking on shell Spring;
The fixation that the installation shell includes outer cover body, is structure as a whole positioned at outer cover body side and with outer cover body Circle, retainer plate is for fixed cleaning tank ontology, and the outer cover body is towards being provided with for holding on the face of volume control device Receive the mounting groove of limit switch, for mounting groove towards limit sliding chutes are provided on the cell wall of retainer plate, position-limit mechanism is installed on limit In sliding slot and position-limit mechanism can be moved along the guide direction of limit sliding chutes;
The limit switch includes shank, tripping spring, locking sliding block, and one end of the shank is positive stop end and limits End connect with locking sliding block, the other end and outer cover body be hinged, hinged place be located at the lower section of mounting groove and be hinged shaft core line and The groove depth direction of mounting groove is parallel, and the slot bottom of the mounting groove is provided with the protrusion of the constraint above locking sliding block, described Locking sliding block towards being provided with mobile protrusion on the face of constraint protrusion, one end of tripping spring with it is mobile it is raised connect, it is another End is connect with constraint protrusion, and the elastic force of tripping spring makes locking sliding block be moved upwards along the guide direction of mounting groove, the lock Tight sliding block is set in mounting groove and locking sliding block is towards being provided with guide chute on the face of mounting groove slot bottom, guide chute with The cell wall of mounting groove matches and locking sliding block can be slided up and down by guide chute and installation groove groove wall cooperation;
The locking sliding block includes locking sliding block ontology, is structure as a whole below retainer plate and with locking sliding block ontology Filler ring, the filler ring connect with conducting hose, and the locking sliding block ontology is towards being arranged on the face of volume control device There are guide and limit slot, the positive stop end of the shank to be located in guide and limit slot, shank and the cooperation control limit of guide and limit slot Mechanism opens or closes;
The guide and limit slot includes guiding groove one, limiting slot, guiding groove two, between guiding groove one, limiting slot, guiding groove two It mutually connects, the guiding groove one is for guiding the positive stop end of shank into limiting slot, and the limiting slot is for limiting The movement of shank, the guiding groove two is for the positive stop end of shank to be guided out from limiting slot;
The position-limit mechanism includes gag lever post, position limiting slide block, and gag lever post is structure as a whole with position limiting slide block, position limiting slide block and peace Limit sliding chutes on casing match and position limiting slide block can be slided along the guide direction of limit sliding chutes, one end of gag lever post with Locking sliding block ontology is hinged and is hinged shaft core line perpendicular to the groove depth direction of mounting groove, the other end for pressing end and for clear Clean tank ontology carries out locking positioning.
Advanced optimizing and improving as this programme.
The inclined arrangement of channeling direction and the distance between limit sliding chutes and mounting groove slot bottom of the limit sliding chutes Guide direction along mounting groove is from top to bottom incremented by, when gag lever post is moved along the channeling direction of limit sliding chutes, the pressing of gag lever post The tank bottom with cleaning tank ontology is held to contact or disengage, to be limited or be cancelled limitation to cleaning tank ontology.
Advanced optimizing and improving as this programme.
The guiding groove one it is inclined arrangement and the distance between guiding groove one and filler ring along the guiding side of mounting groove To being incremented by from the bottom to top, the guiding groove two is arranged vertically, the V-shaped structure of the limiting slot, the output of guiding groove one End and the input terminal of limiting slot are connected, and the output end of limiting slot is connected with the input terminal of guiding groove two, the output end of guiding groove two It is connected with the input terminal of guiding groove one;
The upper V-shaped groove wall minimum point of the limiting slot is close to the input terminal of limiting slot, lower V-shaped groove wall minimum point close to limiting slot Output end.
Advanced optimizing and improving as this programme.
Limited block one is provided between the output end of guiding groove one and the input terminal of limiting slot, limited block one is in wedge The thickness of shape structure and limited block one is incremented by along the direction of one output end of guiding groove to limiting slot input terminal, the guiding groove Limited block two, two wedge shaped structure of limited block and limited block two are provided between two output end and the input terminal of guiding groove one Thickness be incremented by along the direction of two output end of guiding groove to one input terminal of guiding groove, the maximum face of thickness on limited block two with draw The input terminal of guide groove one is concordant.
Advanced optimizing and improving as this programme.
The control mechanism further includes oscillating structural member, and oscillating structural member is for making axial movement of the loop bar along fixed link, institute The oscillating structural member stated includes control rocking bar, intermediate bar, motion bar, control rocking bar can deflection and deflected trajectory be parallel to and turn The central axis of axis, the central axial direction for extending perpendicularly to shaft of intermediate bar control one end and the intermediate bar of rocking bar Driving end be fixedly connected, the deflection for controlling rocking bar drives intermediate bar to synchronize deflection, and motion bar is metal elastic part, living One end of lever is fixedly connected with the output end of intermediate bar, the other end and loop bar connect, and the deflection of intermediate bar drives loop bar deflection, The deflection of loop bar can be divided into sliding axially, around the axial rotation of fixed link along fixed link.
The sweep-out method of the flat-objects surface such as glass, floor stain, step are:
(One)Clean water source and detergent preparation stage;
S1:Cleaning water source is injected into water pot ontology by water injection pipe;
S2:It is installed on shell by tank ontology is cleaned by mounting device, cleaning tank ontology and conducting are made by retainer plate and filler ring Hose is connected, and pressing cleaning tank ontology makes it move downward and filler ring and locking sliding block ontology is driven to move downward, filler ring and lock During tight slider body moves downward, when the distance between filler ring and retainer plate incrementally increase and reach maximum value, shank Positive stop end entered in limiting slot by the guiding function of guiding groove one, the positive stop end of shank is slided with limiting slot cooperation limitation locking Block body moves upwards, and tripping spring is in extended configuration, and the elastic force of tripping spring makes locking sliding block ontology do to transport relatively upward Dynamic trend, at the same time, gag lever post is moved downward along the channeling direction of limit sliding chutes, since the channeling direction of limit sliding chutes is in incline Tiltedly arrangement, the movement of gag lever post can be divided into vertical and straight movement and horizontal movement, and the vertical and straight movement of gag lever post makes the pressing end of gag lever post Close to cleaning tank ontology, the horizontal movement of gag lever post makes the pressing end of gag lever post be contacted with the tank bottom of cleaning tank ontology and to cleaning The movement of tank ontology is limited, and cleaning tank ontology is fixedly installed in shell under the cooperation that tripping spring and gag lever post press end Body;
(Two)Clean water source and detergent mix stages;
S3:Cleaning water source in water pot ontology flows into water flow control mechanism by diversion pipe and is conveyed by water flow control mechanism To the receiving tank of cleaning device, water flow control mechanism can control the stream for flowing into the cleaning water source for accommodating tank in transmission process Amount, after the cleaning water source in receiving tank reaches aequum, water flow control mechanism makes cleaning water source that can not flow into receiving tank;
S4:It cleans the detergent in tank ontology and flows into detergent flow control mechanism by the way that hose is connected, and by cleaning agent flux Control mechanism is delivered in the receiving tank of cleaning device to be mixed with cleaning water source, detergent flow control mechanism energy in transmission process Enough control flows into the flow for the detergent for accommodating tank, after the detergent in receiving tank reaches aequum, detergent flow control Mechanism makes detergent that can not flow into receiving tank;
The detergent flow control mechanism in water flow control mechanism, step S4 in above-mentioned steps S3 includes flow control Unit, when external motivating force connect simultaneously passing power with the flow controlling unit for being set to water flow control mechanism, by setting The flow of clean water is adjusted in the flow controlling unit for being placed in water flow control mechanism;When external motivating force and it is set to clear When the flow controlling unit of clean agent flux control mechanism connects simultaneously passing power, by being set to detergent flow control mechanism The flow of detergent is adjusted in flow controlling unit;
(Three)Cleaning device cleans the glass stage;
S5:When shaft rotates, the permeable hole for being set to shaft can be to the mixing liquid at cleaning water source and detergent in holding tank Flow-disturbing is carried out, cleaning water source is made to be uniformly mixed with detergent, liquid after mixing passes sequentially through the water flowing of permeable hole, shaft Inner cavity, the cleaning inner cavity of shaft, the clean inner cavity of cleaning head, the limbers on cleaning head are sprayed to glass surface, while shaft Rotation drives cleaning shaft to rotate and cleaning head is driven to rotate, and cleaning head rotation makes sponge protrusion cleaning glass window;
(Four)Cleaning water source refills the cleaning device stage with detergent;
S6:External motivating force is connect with the flow controlling unit for being set to water flow control mechanism and passing power, is set to water The flow at the flow controlling unit control cleaning water source of flow control mechanism increases, external after cleaning water source reaches aequum Driving force makes the flow at the flow controlling unit control cleaning water source for being set to water flow control mechanism reduce until being zero;
S7:External motivating force is connect with the flow controlling unit for being set to detergent flow control mechanism and passing power, setting The flow that detergent is controlled in the flow controlling unit of detergent flow control mechanism increases, after detergent reaches aequum, External motivating force makes the flow for the flow controlling unit control detergent for being set to detergent flow control mechanism reduce until being Zero;
(Five)Clean the replacement stage of tank ontology;
S8:Pressing cleaning tank ontology, during pressing, the positive stop end of shank is detached from limit under the guiding function of guiding groove two The elastic force of slot, tripping spring makes locking sliding block ontology move upwards, while keeping gag lever post upward along the channeling direction of limit sliding chutes Movement makes the pressing end of gag lever post be detached from the tank bottom of cleaning tank ontology, clearly due to the inclined arrangement of the channeling direction of limit sliding chutes The clean unrestricted position bar of tank ontology is limited and can be removed;
S9:New cleaning tank ontology is installed on shell by mounting device.
The advantageous effect of the present invention compared with prior art is that the detergent concentration of cleaning glass can be certainly in the present invention It adjusts, and it is convenient to clean the dismounting of tank ontology.
Description of the drawings
It in order to more clearly explain the embodiment of the invention or the technical proposal in the existing technology, below will be to institute in embodiment
Attached drawing to be used is needed to be briefly described, it should be apparent that, the accompanying drawings in the following description is only some of the present invention Embodiment for those of ordinary skill in the art without having to pay creative labor, can also be according to these Attached drawing obtains other attached drawings.
Fig. 1 is the overall structure diagram of the present invention.
Fig. 2 is the sectional view of the present invention.
Fig. 3 is the partial sectional view of the present invention.
Fig. 4 is the structural schematic diagram of the control mechanism of the present invention.
Fig. 5 is the unmated schematic diagram of the control mechanism and flow controlling unit of the present invention.
Fig. 6 is the sectional view of the flow controlling unit of the present invention.
Fig. 7 is the sectional view of the receiving tank of the present invention.
Fig. 8 is the cooperation schematic diagram of the shaft and cleaning shaft of the present invention.
Fig. 9 is the cooperation schematic diagram of the shaft and cleaning shaft of the present invention.
Figure 10 is the sectional view of the anti-detachment shell of the present invention.
Figure 11 is the uninstalled schematic diagram of cleaning tank ontology of the present invention.
Figure 12 is the mounted schematic diagram of cleaning tank ontology of the present invention.
Figure 13 is the structural schematic diagram of the mounting device of the present invention.
Figure 14 is the structural schematic diagram of the installation shell of the present invention.
Figure 15 is the structural schematic diagram of the position limiting slide block of the present invention.
Figure 16 is the structural schematic diagram of the position-limit mechanism of the present invention.
Each label meaning is in figure:
100, power supply component;
200, power transfer mechanism;210, shaft;211, permeable hole;212, dive key;220, drive bevel gear;230, driven Bevel gear;
300, volume control device;310, control mechanism;311, rocking bar is controlled;312, intermediate bar;313, motion bar;314, it covers Bar;315, impeller;316, fixed link;317, gear part;318, external splines one;
320, detergent flow control mechanism;
330, water flow control mechanism;
340, flow controlling unit;341, screw nipple;342, external splines two;343, gear c;344, three-way pipe;345, close Blocking;346, adjustment spring;347, connecting tube;
400, cleaning device;410, cleaning head;420, shaft is cleaned;421, buffer spring;422, keyway;430, tank is accommodated; 431, holding tank;
440, anti-detachment shell;441, inner cavity is limited;442, inner cavity is slided;443, inner cavity is connected;
500, water pot;
600, tank is cleaned;610, tank ontology is cleaned;620, hose is connected;
700, mounting device;710, shell is installed;711, outer cover body;712, mounting groove;713, constraint protrusion;714, dog hole; 715, limit sliding chutes;716, retainer plate;
720, shank;
730, tripping spring;
740, locking sliding block;741, locking sliding block ontology;742, guide chute;743, filler ring;744, mobile protrusion;745, it guides Slot one;746, limiting slot;747, guiding groove two;748, limited block one;749, limited block two;
750, position-limit mechanism;751, gag lever post;752, position limiting slide block;
800, shell.
Specific implementation mode
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation describes, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments. Based on the embodiments of the present invention, obtained by those of ordinary skill in the art without making creative efforts all Other embodiment shall fall within the protection scope of the present invention.
As illustrated in figs. 1-16, a kind of detergent concentration can self-regulated glass cleaning equipment, including power supply component 100, Power transfer mechanism 200, volume control device 300, cleaning device 400, water pot 500, cleaning tank 600, power supply component 100 Cleaning power is provided for cleaning glass for cleaning device 400, power transfer mechanism 200 can receive power supply component 100 The power is simultaneously transferred to cleaning device 400 by power, and water pot 500 is used to provide required cleaning water source, cleaning for cleaning device 400 Tank 600 is used to provide detergent needed for glass surface cleaning in the process for cleaning device 400, and cleaning device 400 can receive cleaning The mixed liquor of water and detergent simultaneously cleans glass, and volume control device 300 is used to control the cleaning in cleaning device 400 The mixed proportion of water and detergent.
As Figure 2-3, above-mentioned power transfer mechanism 200 includes gear drive, shaft 210, it is preferred that gear Transmission mechanism is bevel gear transmission, and the bevel gear transmission includes drive bevel gear 220, driven wheel of differential 230, The power output end of the power supply component 100 is connect with drive bevel gear 220, driven wheel of differential 230 and active conical tooth 220 engagement of wheel and driven wheel of differential 230 are fixedly sheathed in the outside of shaft 210, the power of the power supply component 100 It is transferred to shaft 210 by bevel gear transmission and shaft 210 is made to be rotated around center axis;Select Bevel Gear Transmission machine Structure can make power direction of transfer that 90 degree of deflections occur, and can reduce the volume of transmission mechanism.
For the ease of holding, the present invention is additionally provided with front handlebar, rear handle, and the power supply component 100 is set to Afterwards in handle, since bevel gear transmission can make power direction of transfer that 90 degree of deflections occur, handle can be set vertically after institute Set, be advantageous in that, in the use of the present invention, cleanup crew can the right hand hold front handlebar, handle after left-handed, convenient for cleaning Personnel hold.
Glass cleaning equipment further includes shell 800, and the power transfer mechanism 200, volume control device 300 are respectively provided with In in shell 800.
As shown in figures 2-6, above-mentioned volume control device 300 includes control mechanism 310, detergent flow control mechanism 320, water flow control mechanism 330, the detergent flow control mechanism 320 connect with cleaning tank 600 and for controlling The flow of the detergent in cleaning device 400 is flowed into, the water flow control mechanism 330 connect and is used for water pot 500 Control flows into the flow of the clean water in cleaning device 400, and the control mechanism 310 is for controlling detergent flow control machine Structure 320 and water flow control mechanism 330 open or close.
As shown in Figure 3-4, above-mentioned control mechanism 310 includes loop bar 314, impeller 315, fixed link 316, gear part 317, the fixed link 316 is fixedly connected with shell 800 and in the central axial direction of fixed link 316 and shaft 210 Heart axis direction is parallel, and the gear part 317 is socketed on the outside of shaft 210, one end socket of the impeller 315 It is socketed on the outside of shaft 210 in the outside of fixed link 316, the other end and is flexibly connected with gear part 317, impeller 315 can drive gear part along the axial movement of fixed link 316 when impeller 315 is axially displaced along fixed link 316 317 move axially along shaft 210, and the loop bar 314 is socketed on the outside of fixed link 316 and connects with 315 activity of impeller Connect, loop bar 314 can along fixed link 316 slide axially and loop bar 314 can be around the center axis thereof of fixed link 316, loop bar 314 along fixed link 316 occur axis shift when, 315 synchronous movement of impeller can be drawn;Loop bar 314 is along fixed link 316 Being axially moved makes impeller 315 push gear part 317 during the sliding axially of shaft 210, gear part 317 with it is clear Clean agent flux control mechanism 320 or water flow control mechanism 330 connect and control opening or closing for the two.
More specifically, it is connected by linkage part between gear part 317 and shaft 210, and 317 edge of gear part When shaft 210 is axially displaced, shaft 210 can continue to export power to gear part 317 by linkage part, it is preferred that The linkage part is the external splines 1 being set in shaft 210, the internal spline one for being set to gear part 317.
More optimize, the gear part 317 includes gear a, gear b, connection loop bar, gear a, gear b, connection Loop bar equal coaxial line arrangement and gear a, gear b are fixedly installed on one end of connection loop bar respectively, in gear a and gear b The internal spline one that the external splines 1 in shaft 210 matches is both provided with and is set at the heart, and the impeller 315 is solid Surely it is connected to connection loop bar;Gear part 317 is in the central axial direction motion process along shaft 210, when gear a and flow When measuring the connection of control mechanism 330, shaft 210 can export power to water flow control mechanism 330 and control water flow control mechanism 330 are opening, are being switched between closed state, and when gear b is connect with detergent flow control mechanism 320, shaft 210 can Power, which is exported, to detergent flow control mechanism 320 and controls detergent flow control mechanism 320 is opening, between closed state It switches over.
As shown in figure 4, above-mentioned control mechanism 310 further includes oscillating structural member, oscillating structural member is installed on shell 800, pendulum Dynamic component is for making loop bar 314 along the axial movement of fixed link 316.
More specifically, the oscillating structural member includes control rocking bar 311, intermediate bar 312, motion bar 313, controls rocking bar 311 are located at outside shell 800, control rocking bar 311 can deflection and deflected trajectory be parallel to the central axis of shaft 210, Intermediate bar 312 is movably installed on shell 800, and the central axial direction for extending perpendicularly to shaft 210 of intermediate bar 312 is simultaneously And the driving end of intermediate bar 312 is located at outside shell 800, output end is located inside shell 800, control rocking bar 311 one end with The driving end of intermediate bar 312 is fixedly connected, and the deflection of control rocking bar 311 drives intermediate bar 312 to synchronize deflection, motion bar 313 one end is fixedly connected with the output end of intermediate bar 312, the other end and loop bar 314 are connect, and the deflection of intermediate bar 312 drives Loop bar 314 deflects, and the deflection of loop bar 314 can be divided into sliding axially, around the axial rotation of fixed link 316 along fixed link 316;Set The deflection of bar 314 is embodied in:When the distance between loop bar 314 and intermediate bar 312 are incremented by by minimum value to maximum value When(I.e. loop bar 314 is far from intermediate bar 312), the deflection of motion bar 313 makes loop bar 314 be done far from along the axial direction of fixed link 316 Between bar 313 sliding, while loop bar 314 being made to do the rotation of bar 313 towards the middle around the axial direction of fixed link 316, when loop bar 314 with When the distance between intermediate bar 312 is successively decreased by maximum value to minimum value(I.e. loop bar 314 is close to intermediate bar 312), motion bar 313 Deflection makes loop bar 314 do the sliding close to intermediate bar 313 along the axial direction of fixed link 316, while making loop bar 314 around fixed link 316 Axial direction do the rotation far from intermediate bar 313.
Preferably, the motion bar 313 is metal elastic part;Motion bar 313 made of metal elastic part has Bending property can make the process that motion bar 313 drives loop bar 314 to deflect more smooth, if motion bar 313 does not have bendability Can, then motion bar 313 drive loop bar 314 deflect during, loop bar 314 along fixed link 316 slide axially with loop bar 314 around It can be interfered between the axial rotation of fixed link 316, lead to interim card occur in 314 deflection of loop bar.
As seen in figs. 5-6, above-mentioned detergent flow control mechanism 320 includes flow with water flow control mechanism 330 Control unit 340, the fixing bracket being fixedly installed on shell 800, flow controlling unit 340 are installed on fixing bracket, if The flow controlling unit 340 for being placed in water flow control mechanism 330 flows into cleaning device for controlling the clean water in water pot 500 Flow in 400 is set to the flow controlling unit 340 of detergent flow control mechanism 320 for controlling in cleaning tank 600 Detergent flows into the flow in cleaning device 400, to control the mixing ratio of clean water and detergent in cleaning device 400 Example.
More specifically, the cleaning tank 600 includes cleaning tank ontology 610, conducting hose 620, and hose 620 is connected One end connect with cleaning tank ontology 610, the other end and the flow controlling unit 340 for being set to detergent flow control mechanism 320 Connection, conducting hose 620 and the inflow cleaning device of flow controlling unit 340 can be passed through by cleaning the detergent in tank ontology 610 In 400, the water pot 500 includes water pot ontology, diversion pipe, one end of diversion pipe connect with water pot ontology, the other end with set The flow controlling unit 340 for being placed in water flow control mechanism 330 connects, the clean water in water pot ontology can by diversion pipe and Flow controlling unit 340 flows into cleaning device 400.
As shown in fig. 6, above-mentioned flow controlling unit 340 include screw nipple 341, three-way pipe 344, sealing-plug 345, Connecting tube 347, the three-way pipe 344 are provided with vertical flow tube, horizontal flow tube, and vertical flow tube is vertically installed in horizontal flow tube Between position and mutually connect and constitute T-type structure, one end of horizontal flow tube is threaded ends, the other end is liquid extruding end, The conducting hose 620 or diversion pipe connect connection with the vertical flow tube of three-way pipe 344, and the sealing-plug 345 is set to In horizontal flow tube and the two constitute it is sealed be slidably matched, by sliding of the sealing-plug 345 in horizontal flow tube, to control Vertical flow tube and the effective vent size at horizontal flow tube connection, the screw nipple 341 are movably installed in fixing bracket It can rotate above and around center axis, the central axial direction of the central axial direction and shaft 210 of screw nipple 341 Parallel, the connection end of screw nipple 341 and horizontal flow tube is the end of thread, the end of thread and three-way pipe of screw nipple 341 344 threaded ends are threadedly coupled, one end of the connecting tube 347 connect with the liquid extruding end of horizontal flow tube connection, The other end connect connection with cleaning device 400;When screw nipple 341 rotates, due to horizontal flow tube and screw nipple 341 Between be connected through a screw thread, make screw nipple 341 that can be moved towards horizontal flow tube along center axis direction, be threadedly coupled Pipe 341 is contacted with sealing-plug 345 during the motion, and makes liquid extruding end motion of the sealing-plug 345 towards horizontal flow tube, close In 345 motion process of blocking, sealing-plug 345 makes vertical flow tube be gradually reduced with the effective vent size at horizontal flow tube connection, It is clear in clean water or cleaning tank 600 in water pot 500 to adjust to make the specific discharge of three-way pipe 344 be gradually reduced The clean dose of flow flowed into three-way pipe 344, and be finally reached and adjust the clean water in water pot 500 or the cleaning in cleaning tank 600 Agent flows into the purpose of the flow in cleaning device 400, and after clean water is mixed with detergent completion, sealing-plug 345 will flow vertically Pipe is sealed at horizontal flow tube connection, is made clean water or detergent that can not enter in cleaning device 400 by three-way pipe 344, is kept away Exempt from the optimum mixture ratio example of the clean water and detergent in destruction cleaning device 400.
As shown in fig. 6, above-mentioned flow controlling unit 340 further includes adjustment spring 346, setting in the horizontal flow tube There is built-in step, it is preferred that built-in step is set to the connection at the liquid extruding end and horizontal flow tube, vertical flow tube of horizontal flow tube Between, adjustment spring 346 is set in horizontal flow tube, and one end of adjustment spring 346 is supported with the built-in step in horizontal flow tube It touches, the other end and the conflict of sealing-plug 345, the elastic force of adjustment spring 346 make sealing-plug 345 towards the threaded ends of horizontal flow tube Movement;When clean water and the detergent mixing liquid in cleaning device 400 after use, screw nipple 341 can be reversely rotated, The end of thread of screw nipple 341 is set to be exited from the threaded ends of horizontal flow tube, while sealing-plug 345 is in adjustment spring 346 Elastic force effect under towards horizontal flow tube threaded connection end motion, in 345 motion process of sealing-plug, sealing-plug 345 makes vertically Flow tube gradually increases with the effective vent size at horizontal flow tube connection, and clean water or detergent is made to pass through three-way pipe 344 and connect Take over 347 reenters in cleaning device 400, until after clean water is mixed with detergent completion, is incited somebody to action making sealing-plug 345 again Vertical flow tube is sealed at horizontal flow tube connection, and so on.
As seen in figs. 5-6, above-mentioned flow controlling unit 340 further includes gear c343, and gear c343 is socketed on screw thread company The outside of take over 341, when gear part 317 is moved along the central axial direction of shaft 210, the gear a in gear part 317 Or gear b is engaged with the gear c in flow controlling unit 340, shaft 210 rotates and gear part 317 is driven to rotate, to band Moving gear c rotations, and finally rotate screw nipple 341.
More specifically, it is connected by connector between the gear c343 and screw nipple 341, and gear When threadingly connecting tube 341 is axially displaced, gear c can continue to export to screw nipple 341 by connector dynamic c343 Power, it is preferred that the connector is the external splines 2 342 being set on screw nipple 341, is set to the centers gear c343 Place and the internal spline two to match with external splines 2 342;During gear c343 drives screw nipple 341 to rotate, spiral shell Line connecting tube 341 is moved towards three-way pipe 344, at the same time, due to the presence of connector, gear c343 opposite thread connecting tubes 341 occur relative displacement, and gear c can continue to export power to screw nipple 341 by connector.
As shown in Fig. 2-3,7-9, above-mentioned cleaning device 400 include cleaning head 410, cleaning shaft 420, accommodate tank 430, Fixing sleeve, the receiving tank 430 are fixedly installed in by fixing sleeve on shell 800, are accommodated tank 430 and be can receive flow control list The detergents of 340 discharge of member and accommodate the holding tank 431 being provided in tank 430 for accommodating detergent or water at water, clean The central axial direction of shaft 420 is overlapped with the central axial direction of shaft 210, and the one end and shaft 210 for cleaning shaft 420 connect It connects, the connection of the other end and cleaning head 410, the rotation of shaft 210 drives cleaning shaft 420 to rotate, and cleaning head 410 is driven to rotate.
As shown in fig. 7, the cleaning shaft 420 is the cylindrical barrel body structure of both ends open, the shaft 210 is located at Part in holding tank 431 is provided with the water flowing inner cavity connected with 420 inner cavity of cleaning shaft, and the periphery of shaft 210 is provided with The permeable hole 211 connected with water flowing inner cavity and connected with holding tank 431 is provided with clean inner cavity in the cleaning head 410 And the inner cavity of clean inner cavity and cleaning shaft 420 is connected, cleaning head 410 be provided with several on the end face of glass contact and be in The limbers for being evenly spaced on and being connected with clean inner cavity;Clean water and detergent mixture in holding tank 431 are successively Pass through permeable hole 211, the water flowing inner cavity of shaft 210, the cleaning inner cavity of shaft 420, the clean inner cavity of cleaning head 410, cleaning head Limbers on 410 is sprayed to glass surface, and the rotation of shaft 210 drives cleaning shaft 420 to rotate and drive 410 turns of cleaning head Dynamic, 410 cleaning glass window of cleaning head, in addition to this, permeable hole 211 also have stirring action, are embodied in:Shaft 210 is turning During dynamic, permeable hole 211 can be realized carries out flow-disturbing to the mixed liquor in holding tank 431, to promote filling for water and detergent Divide mixing.
Preferably, the cleaning head 410 is in be evenly spaced on several are additionally provided on the end face of glass contact Sponge protrusion, when 410 cleaning glass window of cleaning head, sponge protrusion can increase the frictional force between cleaning head 410 and glass, To improve the efficiency that cleaning head 410 cleans glass.
More optimizing, the shaft 210 is located at the lower section of holding tank 431, its significance lies in that, holding tank can be improved The utilization rate of clean water and detergent mixture in 431 will appear residual if shaft 210 is not located at the lower section of holding tank 431 Phenomenon is stayed, is embodied in:The water that holding tank 431 is located at 210 top of shaft can pass through permeable hole 211 with detergent mixture Into in cleaning head 410, and holding tank 431 is located at the water of the lower section of shaft 210 and detergent mixture due to can not be with permeable hole 211 contacts lead to not enter in cleaning head 410 by permeable hole 211, can only remain in holding tank 431, not only reduce The utilization rate of water and detergent mixture in holding tank 431, the also optimum mixture ratio to clean water and detergent next time Example impacts.
When cleaning device 400 cleans glass, if glass surface there are stain, the cleaning in cleaning device 400 First 410 cannot quickly remove stain, in order to quickly remove the stain of glass surface, be gone back in cleaning device 400 It is provided with buffer gear, the buffer gear makes between cleaning head 410 and shaft 210 that there are cushion effects, and cushion effect is not only Cleaning head 410 can be made quickly to remove the spot of glass surface, additionally it is possible to reduce shaking between cleaning head 410 and glass surface It is dynamic.
As Figure 8-9, above-mentioned buffer gear include buffering connector, the shaft 210 with cleaning shaft 420 it Between by buffering connector connection, and when cleaning shaft 420 and being subjected to displacement along center axis direction, shaft 210 can lead to It crosses buffering connector to continue to export power to cleaning shaft 420, it is preferred that the buffering connector includes being set to shaft Dive key 212 on 210, the keyway 422 being set in cleaning shaft 420.
As Figure 8-9, above-mentioned buffer gear further includes buffer spring 421, is set in 420 inner cavity of cleaning shaft It is equipped with built-in step, one end of buffer spring 421 and the built-in step conflict being set in 420 inner cavity of cleaning shaft, the other end It is contradicted with shaft 210, the elastic force of buffer spring 421 makes cleaning shaft 420 be transported towards cleaning head 410 along center axis direction It is dynamic;When cleaning head 410 and glass surface contact, glass surface not only makes cleaning shaft 420 to the reaction force of cleaning head 410 Buffer spring 421 is compressed, there are buffer springs to make between cleaning shaft 420 and shaft 210, additionally it is possible to increase cleaning head Sponge protrusion on 410 is conducive to eliminate stain to the frictional force of glass surface.
Cleaning device 400 cleans in glass process, and when cleaning head 410 is contacted with glass surface, buffer spring 421 is in Compressive state, when cleaning head 410 is disengaged with glass surface, the elastic force of buffer spring 421 can be such that cleaning shaft 420 does far Movement from shaft 210 in this motion process, if the elastic force of buffer spring 421 is excessive, can cause shaft 210 to turn with cleaning Be detached between axis 420, in order to prevent this occurrence of, shaft 210 with cleaning shaft 420 junction be provided with anticreep From shell 440.
As shown in Figure 10, above-mentioned anti-detachment shell 440 is the cylindrical barrel body structure of both ends open, anti-detachment shell 440 Inner cavity be divided into three parts, the limit inner cavity 441 that respectively matches with shaft 210, the connection to match with cleaning shaft 420 Inner cavity 443 positioned at limit inner cavity 441 and connects between inner cavity 443 and the sliding inner cavity 442 that matches with dive key 212, Limit inner cavity 441 diameter be less than sliding inner cavity 442 diameter, the shaft 210 be slidably socketed in limit inner cavity 441 in, The dive key 212 is set in sliding inner cavity 442 and the two composition is slidably matched, and the cleaning shaft 420 can Dismounting is socketed in connection inner cavity 443, it is preferred that cleaning shaft 420 is connected through a screw thread with inner cavity 443 is connect;Buffering elastic The elastic force of spring 421 makes cleaning shaft 420 do in the motion process far from shaft 210, due to cleaning shaft 420 and anti-detachment shell 440 are connected through a screw thread, and cleaning shaft 420 drives anti-detachment shell 440 to move synchronously, and the movement of anti-detachment shell 440 is suitable The movement towards limit inner cavity 441 is done in sliding inner cavity 442 in dive key 212, since the diameter of limit inner cavity 441 is less than The diameter for sliding inner cavity 442 limits 441 restricted guidance of inner cavity when dive key 212, which is moved to, to be contacted with limit inner cavity 441 Flat key 212 continues to move, and the movement far from shaft 210 is done to limit cleaning shaft 420, be finally reached prevent shaft 210 with The purpose being detached between cleaning shaft 420.
As shown in Figure 1, above-mentioned water pot ontology is fixedly installed in the outside of shell 800, water filling is provided on water pot ontology Pipe, when the water in water pot ontology after use, water can be injected into water pot ontology by water injection pipe;Above-mentioned cleaning tank ontology 610 are movably installed in the outside of shell 800, when cleaning tank ontology 610 in detergent after use, replaceable new cleaning tank Ontology 610, in order to clean the install convenient of tank ontology 610, the present invention is additionally provided with mounting device 700, and mounting device 700 can Quickly and easily installation or removal cleaning tank ontology 610.
As illustrated in figures 11-16, above-mentioned mounting device 700 includes installing shell 710, limit switch, position-limit mechanism 750, Installation shell 710, which is fixedly connected and is installed with shell 800, installs limit switches, position-limit mechanism 750 on shell 710, when clear When clean tank ontology 610 is completed to connect with conducting hose 620, position-limit mechanism 750 is by the movement of limitation cleaning tank ontology 610, when right When cleaning tank ontology 610 is replaced, limit switch can make limitation of the revocation of position-limit mechanism 750 to cleaning tank ontology 610, be convenient for It replaces.
As shown in figure 14, above-mentioned installation shell 700 include outer cover body 711, be located at 711 side of outer cover body and with it is outer The retainer plate 716 that shell ontology 711 is structure as a whole, retainer plate 716 is for fixed cleaning tank ontology 610, the outer cover body 711 towards the mounting groove 712 being provided on the face of shell 800 for accommodating limit switch, and mounting groove 712 is towards retainer plate 716 Cell wall on be provided with limit sliding chutes 715, position-limit mechanism 750 is installed in limit sliding chutes 715 and position-limit mechanism 750 can be along limit The guide direction movement of position sliding slot 715.
As illustrated in figs. 13-15, above-mentioned limit switch includes shank 720, tripping spring 730, locking sliding block 740, described One end of shank 720 be that positive stop end and positive stop end connects with locking sliding block 740, the other end and outer cover body 711 are hinged, cut with scissors The place of connecing is located at the lower section of mounting groove 712 and is hinged that shaft core line is parallel with the groove depth direction of mounting groove 712, the mounting groove 712 slot bottom is provided with the constraint protrusion 713 above locking sliding block 740, and the locking sliding block 740 is raised towards constraint Mobile protrusion 744 is provided on 713 face, one end of tripping spring 730 is connect with mobile protrusion 744, the other end and constraint are convex 713 connections are played, the elastic force of tripping spring 730 makes locking sliding block 740 be moved upwards along the guide direction of mounting groove 712, described Locking sliding block 740 is set in mounting groove 712 and locking sliding block 740 is towards being provided with guiding on the face of 712 slot bottom of mounting groove The cell wall of sliding slot 742, guide chute 742 and mounting groove 712 match and locking sliding block 740 can by guide chute 742 with The cooperation of 712 cell wall of mounting groove slides up and down.
As shown in figure 15, above-mentioned locking sliding block 740 include locking sliding block ontology 741, be located at the lower section of retainer plate 716 and The filler ring 743 being structure as a whole with locking sliding block ontology 741, the filler ring 743 are connect with conducting hose 620, when cleaning tank When ontology 600 is located in retainer plate 716 and moves downward, the bottleneck of cleaning tank ontology 600 will be connected with filler ring 743, thus with Hose 620 is connected to connect, the locking sliding block ontology 741 is described towards being provided with guide and limit slot on the face of shell 800 The positive stop end of shank 720 is located in guide and limit slot, the opening of shank 720 and guide and limit slot cooperation control position-limit mechanism 750 Or it closes.
More specifically, the guide and limit slot includes guiding groove 1, limiting slot 746, guiding groove 2 747, guiding It is mutually connected between slot 1, limiting slot 746, guiding groove 2 747, the guiding groove 1 is used for the limit of shank 720 Position end is guided into limiting slot 746, and the limiting slot 746 is used to limit the movement of shank 720, the guiding groove 2 747 For the positive stop end of shank 720 to be guided out from limiting slot 746;Cleaning tank ontology 600 continues after being connected with conducting hose 620 During moving downward, the distance between filler ring 743 and retainer plate 716 gradually increase, when filler ring 743 and retainer plate 716 it Between distance be maximum value when, the positive stop end of shank 720 is located in limiting slot 746, and the elastic force of tripping spring 730 makes filler ring 743 Has the tendency that relative upward movement, the at the same time limitation of position-limit mechanism 750 cleaning tank ontology 600 moves upwards, tripping spring 730 make cleaning tank ontology 600 be fixed with the cooperation of position-limit mechanism 750, in 600 disassembly process of cleaning tank ontology, filler ring 743 with it is solid Surely the distance between circle 716 is gradually reduced, when the distance between filler ring 743 and retainer plate 716 are minimum value, shank 720 Positive stop end is guided out from limiting slot 746, and tank sheet is cleaned in limitation of the at the same time revocation of position-limit mechanism 750 to cleaning tank ontology 600 Body 600 can be removed.
More optimize, the guiding groove 1 is inclined to be arranged and between guiding groove 1 and filler ring 743 Distance is incremented by from the bottom to top along the guide direction of mounting groove 712, and the guiding groove 2 747 is arranged vertically,
The 746 V-shaped structure of limiting slot, the output end of guiding groove 1 are connected with the input terminal of limiting slot 746, limit The output end of slot 746 is connected with the input terminal of guiding groove 2 747, the input of the output end and guiding groove 1 of guiding groove 2 747 Termination is logical.
Preferably, the upper V-shaped groove wall minimum point of limiting slot 746 is minimum close to input terminal, the lower V-shaped groove wall of limiting slot 746 Point is advantageous in that close to the output end of limiting slot 746, shank 720 from limiting slot 746 into 2 747 motion process of guiding groove, It can prevent shank 720 from backhaul phenomenon occurs(I.e. shank 720 is moved from limiting slot 747 to guiding groove 1).
It is more perfect, it is provided with limit between the output end and the input terminal of limiting slot 746 of the guiding groove 1 The thickness of block 1, one 748 wedge shaped structure of limited block and limited block 1 is along one 745 output end of guiding groove to limiting slot The direction of 746 input terminals is incremented by, and from guiding groove 1 into 747 motion process of limiting slot, limited block 1 can make shank 720 Shank 720 can smoothly enter into limiting slot 747, prevent shank 720 occur backhaul phenomenon, the output end of the guiding groove 2 747 with Limited block 2 749,2 749 wedge shaped structure of limited block and limited block 2 749 are provided between the input terminal of guiding groove 1 Thickness along the direction of 2 747 output end of guiding groove to one 745 input terminal of guiding groove be incremented by, the thickness on limited block 2 749 is most Big face is concordant with the input terminal of guiding groove 1, shank 720 from guiding groove 2 747 into one 745 motion process of guiding groove, Limited block 2 749 can make shank 720 can smoothly enter into guiding groove 1, prevent shank 720 from reentering guiding groove 2 747.
As shown in Figure 11-12,16, above-mentioned position-limit mechanism 750 includes gag lever post 751, position limiting slide block 752, gag lever post 751 It is structure as a whole with position limiting slide block 752, position limiting slide block 752 matches and limits with the limit sliding chutes 715 on installation shell 710 Sliding block 752 can be slided along the guide direction of limit sliding chutes 715, one end of gag lever post 751 it is hinged with locking sliding block ontology 741 and Hinged shaft core line is pressing end perpendicular to the groove depth direction of mounting groove 712, the other end and is used to lock cleaning tank ontology 610 Tightening position;Locking sliding block ontology 741 slides up and down and gag lever post 751 is driven to be moved along the guide direction of limit sliding chutes 715, to The pressing end of gag lever post 751 is set to be limited or be cancelled limitation to cleaning tank ontology 610.
More specifically, the inclined arrangement of the channeling direction of the limit sliding chutes 715 and limit sliding chutes 715 and installation The distance between 712 slot bottom of slot is from top to bottom incremented by along the guide direction of mounting groove 712, and gag lever post 751 is along limit sliding chutes 715 When channeling direction moves, the pressing end of gag lever post 751 contacts or disengages with the tank bottom of cleaning tank ontology 610, to clear Clean tank ontology 610 is limited or is cancelled limitation;Gag lever post 751 presses end and limits the limitation or revocation of cleaning tank ontology 610 Process is embodied in:Due to the inclined arrangement of the channeling direction of limit sliding chutes 715, gag lever post 751 is led along limit sliding chutes 715 Movement to direction can be divided into vertical and straight movement and horizontal movement, and the vertical and straight movement of gag lever post 751 makes the pressing end of gag lever post 751 lean on Close or remote from the tank bottom of cleaning tank ontology 610, the horizontal movement of gag lever post 751 makes pressing end and the cleaning tank sheet of gag lever post 751 The tank bottom of body 610 is contacted or is disengaged, when the pressing end of gag lever post 751 is close and contacts the tank bottom of cleaning tank ontology 610, Cleaning tank ontology 610 is limited, and when the pressing end of gag lever post 751 is separate and is detached from the tank bottom of cleaning tank ontology 610, cleans tank Ontology 610 is revoked limitation.
When glass cleaning equipment works, cleaning water source is injected into water pot ontology by water injection pipe, passes through mounting device 700 Cleaning tank ontology 610 is installed on shell 800, the installation process of mounting device 700 is embodied in:It is logical to clean tank ontology 610 It crosses retainer plate 716 and filler ring 743 to be connected with conducting hose 620, pressing cleaning tank ontology 610 makes it move downward and drive Filler ring 743 and locking sliding block ontology 741 move downward, and during filler ring 743 is moved downward with locking sliding block ontology 741, work as support When the distance between ring 743 and retainer plate 716 incrementally increase and reach maximum value, the positive stop end of shank 720 passes through guiding groove one 745 guiding function enters in limiting slot 746, positive stop end and the cooperation limitation locking sliding block ontology of limiting slot 746 of shank 720 741 move upwards, and tripping spring 730 is in extended configuration, and the elastic force of tripping spring 730 makes locking sliding block ontology 741 do relatively Trend is moved upwards, at the same time, gag lever post 751 is moved downward along the channeling direction of limit sliding chutes 715, due to limit sliding chutes The movement of the 715 inclined arrangement of channeling direction, gag lever post 751 can be divided into vertical and straight movement and horizontal movement, and gag lever post 751 erects Straight movement makes the pressing end of gag lever post 751 close to cleaning tank ontology 610, and the horizontal movement of gag lever post 751 makes the pressure of gag lever post 751 It closes end and is contacted with the tank bottom for cleaning tank ontology 610 and the movement for cleaning tank ontology 610 is limited, cleaning tank ontology 610 exists Tripping spring 730 is fixed under the cooperation at the pressing of gag lever post 751 end;When being replaced to cleaning tank ontology 610, press again Tank ontology 610 is cleaned, during pressing, the positive stop end of shank 720 is detached from limiting slot under the guiding function of guiding groove 2 747 746, the elastic force of tripping spring 730 makes locking sliding block ontology 741 move upwards, while making gag lever post 751 along limit sliding chutes 715 Channeling direction moves upwards, and due to the inclined arrangement of the channeling direction of limit sliding chutes 715, the pressing end of gag lever post 751 is made to be detached from The tank bottom of tank ontology 610 is cleaned, 610 unrestricted bars of cleaning tank ontology 751 are limited and can be removed.
The detergent in cleaning water source and cleaning tank ontology 610 in water pot ontology passes through diversion pipe or conducting hose 620 enter in volume control device 300 and are delivered in the receiving tank 430 in cleaning device 400 by volume control device 300, Volume control device 300 can control the flow for flowing into the clean water or detergent that accommodate tank 430, specific manifestation in transmission process For:Mobile oscillating structural member makes the axial movement that loop bar 314 pushes impeller 315 along shaft 210, impeller 315 push gear structure Part 317 along shaft 210 axial movement, to make gear a in gear part 317 or gear b be engaged with gear c343, simultaneously Shaft 210, which is rotated and engaged with gear c by gear part 317, makes screw nipple 341 rotate, due to screw nipple It is connected through a screw thread between 341 and horizontal flow tube, makes screw nipple 341 can be along center axis direction towards horizontal flow tube Movement, screw nipple 341 is contacted with sealing-plug 345 during the motion, and makes sealing-plug 345 towards the fluid of horizontal flow tube End motion is squeezed out, in 345 motion process of sealing-plug, sealing-plug 345 makes vertical flow tube and the effective vent at horizontal flow tube connection Size is gradually reduced, and to make the inflow of three-way pipe 344 be gradually reduced, and is finally reached the clean water adjusted in water pot 500 Or the detergent in cleaning tank 600 flows into the purpose of the flow in cleaning device 400, when clean water is mixed with detergent completion Afterwards, sealing-plug 345 will seal at vertical flow tube and horizontal flow tube connection, make clean water or detergent can not be by three-way pipe 344 Into in cleaning device 400, the optimum mixture ratio example of the clean water and detergent in cleaning device 400 is avoided damage to.
It accommodates the mixing liquid in tank 430 and passes sequentially through permeable hole 211, the water flowing inner cavity of shaft 210, cleaning shaft 420 Inner cavity, the clean inner cavity of cleaning head 410, the limbers on cleaning head 410 be sprayed to glass surface, while shaft 210 rotates It drives cleaning shaft 420 to rotate and cleaning head 410 is driven to rotate, the rotation of cleaning head 410 makes sponge protrusion cleaning glass window.
When accommodating the mixture in tank 430 after use, mobile oscillating structural member simultaneously makes gear part 317 and gear c again Engagement, while shaft 210 being made to rotate backward, shaft 210, which rotates backward, to be driven screw nipple 341 to rotate synchronously and screw thread is made to connect The end of thread of take over 341 is exited from the threaded ends of horizontal flow tube, while sealing-plug 345 is made in the elastic force of adjustment spring 346 With the lower threaded connection end motion towards horizontal flow tube, in 345 motion process of sealing-plug, sealing-plug 345 makes vertical flow tube and water Effective vent size at advection pipe connection gradually increases, and clean water or detergent is made to pass through 347 weight of three-way pipe 344 and connecting tube It is new to enter in receiving tank 430, until after water is mixed with detergent completion, again rotates backward shaft 210 and screw thread is driven to connect Take over 341 and finally makes sealing-plug 345 connect vertical flow tube and horizontal flow tube towards the liquid extruding end motion of horizontal flow tube Place's sealing, and so on.
The sweep-out method of the flat-objects surface such as glass, floor stain, step are:
(One)Clean water source and detergent preparation stage;
S1:Cleaning water source is injected into water pot ontology by water injection pipe;
S2:It is installed on shell 800 by tank ontology 610 is cleaned by mounting device 700, is made clearly by retainer plate 716 and filler ring 743 Clean tank ontology 610 is connected with conducting hose 620, and pressing cleaning tank ontology 610 makes it move downward and drives filler ring 743 and locking Slider body 741 moves downward, during filler ring 743 is moved downward with locking sliding block ontology 741, when filler ring 743 and retainer plate The distance between 716 when incrementally increasing and reaching maximum value, the guiding function that the positive stop end of shank 720 passes through guiding groove 1 Into in limiting slot 746, positive stop end and the limiting slot 746 of shank 720 coordinate limitation locking sliding block ontology 741 to move upwards, and make Spring 730 of moving is in extended configuration, and the elastic force of tripping spring 730 makes locking sliding block ontology 741 do relative upward movement trend, with This simultaneously, gag lever post 751 is moved downward along the channeling direction of limit sliding chutes 715, since the channeling direction of limit sliding chutes 715 is in inclining Tiltedly arrangement, the movement of gag lever post 751 can be divided into vertical and straight movement and horizontal movement, and the vertical and straight movement of gag lever post 751 makes gag lever post 751 Pressing end close to cleaning tank ontology 610, the horizontal movement of gag lever post 751 makes pressing end and the cleaning tank ontology of gag lever post 751 610 tank bottom contact simultaneously limits the movement for cleaning tank ontology 610, and cleaning tank ontology 610 is in tripping spring 730 and limit It is fixedly installed in shell 800 under the cooperation at the pressing of bar 751 end;
(Two)Clean water source and detergent mix stages;
S3:Cleaning water source in water pot ontology is by diversion pipe inflow water flow control mechanism 330 and by water flow control mechanism 330 are delivered in the receiving tank 430 of cleaning device 400, and water flow control mechanism 330 can control inflow and accommodate in transmission process The flow at the cleaning water source of tank 430, after the cleaning water source in receiving tank 430 reaches aequum, water flow control mechanism 330 makes Cleaning water source, which can not flow into, to be accommodated in tank 430;
S4:It cleans the detergent in tank ontology 610 and flows into detergent flow control mechanism 320 by the way that hose 620 is connected, and by clear Clean agent flux control mechanism 320 is delivered in the receiving tank 430 of cleaning device 400 to be mixed with cleaning water source, clear in transmission process Clean agent flux control mechanism 320 can control the flow for flowing into the detergent for accommodating tank 430, the detergent in receiving tank 430 After reaching aequum, detergent flow control mechanism 320 makes detergent that can not flow into receiving tank 430;
The detergent flow control mechanism 320 in water flow control mechanism 330, step S4 in above-mentioned steps S3 includes stream Control unit 340 is measured, when external motivating force connect and passes with the flow controlling unit 340 for being set to water flow control mechanism 330 When graduating power, the flow of clean water is adjusted in the flow controlling unit 340 by being set to water flow control mechanism 330; When external motivating force connect simultaneously passing power with the flow controlling unit 340 for being set to detergent flow control mechanism 320, lead to It crosses and is set to the flow controlling unit 340 of detergent flow control mechanism 320 flow of detergent is adjusted;
(Three)Cleaning device cleans the glass stage;
S5:Shaft 210 rotate when, be set to shaft 210 permeable hole 211 can in holding tank 431 cleaning water source with cleaning The mixing liquid of agent carries out flow-disturbing, and cleaning water source is made to be uniformly mixed with detergent, and liquid after mixing passes sequentially through permeable It is hole 211, the water flowing inner cavity of shaft 210, the cleaning inner cavity of shaft 420, the clean inner cavity of cleaning head 410, logical on cleaning head 410 Water hole is sprayed to glass surface, while the rotation of shaft 210 drives cleaning shaft 420 to rotate and cleaning head 410 is driven to rotate, cleaning First 410 rotation makes sponge protrusion cleaning glass window;
(Four)Cleaning water source refills the cleaning device stage with detergent;
S6:External motivating force is connect with the flow controlling unit 340 for being set to water flow control mechanism 330 and passing power, if The flow for being placed in the control cleaning of flow controlling unit 340 water source of water flow control mechanism 330 increases, when cleaning water source reaches institute After requirement, external motivating force makes the flow at the control cleaning of flow controlling unit 340 water source for being set to water flow control mechanism 330 Reduce until being zero;
S7:External motivating force connect and transmits dynamic with the flow controlling unit 340 for being set to detergent flow control mechanism 320 Power, the flow controlling unit 340 for being set to detergent flow control mechanism 320 control the flow increase of detergent, work as detergent After reaching aequum, external motivating force makes the control cleaning of flow controlling unit 340 for being set to detergent flow control mechanism 320 The flow of agent reduces until being zero;
(Five)Clean the replacement stage of tank ontology;
S8:Pressing cleaning tank ontology 610, during pressing, the positive stop end of shank 720 is under the guiding function of guiding groove 2 747 It is detached from limiting slot 746, the elastic force of tripping spring 730 makes locking sliding block ontology 741 move upwards, while making gag lever post 751 along limit The channeling direction of position sliding slot 715 moves upwards, and due to the inclined arrangement of the channeling direction of limit sliding chutes 715, makes gag lever post 751 The tank bottom that end is detached from cleaning tank ontology 610 is pressed, 610 unrestricted bars of cleaning tank ontology 751 are limited and can be removed;
S9:New cleaning tank ontology 610 is installed on shell 800 by mounting device 700.
Specific case is applied in the present invention, and principle and implementation of the present invention are described, above example
Illustrate the method and its core concept for being merely used to help understand the present invention;Meanwhile for the general technology people of this field Member, according to the thought of the present invention, there will be changes in the specific implementation manner and application range.In conclusion this explanation Book content should not be construed as limiting the invention.

Claims (10)

1. a kind of detergent concentration can self-regulated glass cleaning equipment, which is characterized in that it include power supply component, power pass Mechanism, volume control device, cleaning device, water pot, cleaning tank are passed, power supply component is used to clean glass for cleaning device and carry For cleaning power, power transfer mechanism can receive the power of power supply component and the power be transferred to cleaning device, water pot For providing required cleaning water source for cleaning device, cleaning tank is used to provide glass surface cleaning for cleaning device required in the process Detergent, cleaning device can receive the mixed liquor of clean water and detergent and cleaned to glass, and volume control device is used for Control the mixed proportion of the clean water and detergent in cleaning device;
The volume control device includes control mechanism, detergent flow control mechanism, water flow control mechanism, detergent stream Amount control mechanism is used to control the flow for flowing into the detergent in cleaning device, and water flow control mechanism flows into cleaning for controlling The flow of clean water in device, control mechanism are used to control the opening of detergent flow control mechanism and water flow control mechanism Or it closes;
The detergent flow control mechanism includes flow controlling unit, fixing bracket, flow with water flow control mechanism Control unit is installed on fixing bracket;
The cleaning tank includes cleaning tank ontology, conducting hose, be connected one end of hose with clean tank ontology connect, the other end It is connect with the flow controlling unit for being set to detergent flow control mechanism;
The water pot includes water pot ontology, diversion pipe, and one end of diversion pipe connect with water pot ontology, the other end and is set to water The flow controlling unit of flow control mechanism connects.
2. a kind of detergent concentration according to claim 1 can self-regulated glass cleaning equipment, which is characterized in that it is described Flow controlling unit includes screw nipple, three-way pipe, sealing-plug, connecting tube, and the three-way pipe is provided with vertical flow tube, water Advection pipe, vertical flow tube are vertically installed in horizontal flow tube centre position and mutually connect and constitute T-type structure, horizontal flow tube One end is threaded ends, the other end is liquid extruding end, the vertical flow tube of the conducting hose or diversion pipe and three-way pipe Connection is connected, and the sealing-plug, which is set in horizontal flow tube, and the two composition is sealed is slidably matched, and is existed by sealing-plug Sliding in horizontal flow tube, to control vertical flow tube and the effective vent size at horizontal flow tube connection, the screw thread connects Taking-over activity is installed on fixing bracket and can be rotated around center axis, the central axial direction of screw nipple with turn The central axial direction of axis is parallel, and the connection end of screw nipple and horizontal flow tube is the end of thread, the screw thread of screw nipple End is threadedly coupled with the threaded ends of three-way pipe, and one end of the connecting tube connect with the liquid extruding end of horizontal flow tube and connects The logical, other end and cleaning device connection are connected;
The flow controlling unit further includes adjustment spring, and built-in step, built-in step are provided in the horizontal flow tube Be set to horizontal flow tube liquid extruding end and horizontal flow tube, vertical flow tube connection between, the adjustment spring setting In in horizontal flow tube, one end of adjustment spring is contradicted with the built-in step in horizontal flow tube, the other end and sealing-plug contradict, and is adjusted The elastic force of spring makes threaded connection end motion of the sealing-plug towards horizontal flow tube;
The flow controlling unit further includes gear c, and gear c is socketed on the outside of screw nipple, the gear c and spiral shell It is connected by connector between line connecting tube, and gear, when threadingly connecting tube is axially displaced, gear c can pass through connection Part continues to export power to screw nipple, and the connector is the external splines two being set on screw nipple, is set to At the centers gear c and with the matched internal spline two of external splines two-phase, gear c is subjected to external motivating force and to screw nipple It is transmitted.
3. a kind of detergent concentration according to claim 2 can self-regulated glass cleaning equipment, which is characterized in that it is described Power transfer mechanism includes bevel gear transmission, shaft, and the bevel gear transmission includes drive bevel gear, from mantle The power output end of gear, the power supply component is connect with drive bevel gear, and driven wheel of differential is nibbled with drive bevel gear Merging and driven wheel of differential are fixedly sheathed in the outside of shaft.
4. a kind of detergent concentration according to claim 3 can self-regulated glass cleaning equipment, which is characterized in that it is described Control mechanism includes loop bar, impeller, fixed link, gear part, in the central axial direction and shaft of the fixed link Heart axis direction is parallel, and the gear part is socketed on the outside of shaft, and one end of the impeller is socketed on fixed link Outside, the other end be socketed on the outside of shaft and be flexibly connected with gear part, impeller can be transported along the axial direction of fixed link It is dynamic, when impeller is axially displaced along fixed link, gear part can be driven to be moved axially along shaft, the loop bar is socketed on The outside of fixed link and be flexibly connected with impeller, loop bar can along fixed link slide axially and loop bar can be around fixed link Center axis thereof can draw the synchronous movement of impeller when along fixed link axis shift occurs for loop bar;
It is connected by linkage part between the gear part and shaft, and gear part is axially displaced along shaft When, shaft can continue to export power to gear part by linkage part, the linkage part be set to it is outer in shaft Spline one, the internal spline one for being set to gear part;
The gear part includes gear a, gear b, connection loop bar, and the equal coaxial line arrangement of gear a, gear b, connection loop bar is simultaneously And gear a, gear b are fixedly installed on one end of connection loop bar respectively, internal spline one is set at the center of gear a and gear b And match with the external splines one being set in shaft, the impeller is fixedly connected on connection loop bar;
When gear part is moved along the central axial direction of shaft, and makes gear a in gear part and be set to detergent When the gear c engagements of flow controlling unit in flow control mechanism, gear part can be to being set to detergent flow control machine Screw nipple on flow controlling unit in structure transmits rotary force, and controls the flow of detergent;
When gear part is moved along the central axial direction of shaft, and makes gear b in gear part and be set to water flow When the gear c engagements of the flow controlling unit in control mechanism, gear part can be to the stream being set in water flow control mechanism The screw nipple measured in control unit transmits rotary force, and controls the flow of water.
5. a kind of detergent concentration according to any one of claim 1-4 can self-regulated glass cleaning equipment, it is special Sign is that the cleaning device includes cleaning head, cleaning shaft, accommodates tank, fixing sleeve, and the receiving tank can receive flow The detergent of control unit discharge and accommodates the holding tank being provided in tank for accommodating detergent or water at water, cleans shaft Central axial direction overlapped with the central axial direction of shaft, the one end for cleaning shaft connect with shaft, the other end and cleaning Head connection, shaft rotation drives cleaning shaft rotation, and cleaning head is driven to rotate;
The cleaning shaft is the cylindrical barrel body structure of both ends open, and the part that the shaft is located in holding tank is provided with The water flowing inner cavity connected with cleaning shaft inner cavity, the periphery of shaft, which is provided with, to be connected with water flowing inner cavity and is connected with holding tank Permeable hole, clean inner cavity is provided in the cleaning head and the inner cavity of clean inner cavity and cleaning shaft is connected, cleaning head It is in the limbers for being evenly spaced on and being connected with clean inner cavity with several are provided on the end face of glass contact.
6. a kind of detergent concentration according to claim 1 can self-regulated glass cleaning equipment, which is characterized in that clearing glass Clean equipment further includes the mounting device for quickly and easily installing or removing cleaning tank ontology, and the mounting device includes peace Casing installs setting limit switches, position-limit mechanism, limit switch, position-limit mechanism, tripping spring on shell;
The fixation that the installation shell includes outer cover body, is structure as a whole positioned at outer cover body side and with outer cover body Circle, retainer plate is for fixed cleaning tank ontology, and the outer cover body is towards being provided with for holding on the face of volume control device Receive the mounting groove of limit switch, for mounting groove towards limit sliding chutes are provided on the cell wall of retainer plate, position-limit mechanism is installed on limit In sliding slot and position-limit mechanism can be moved along the guide direction of limit sliding chutes;
The limit switch includes shank, tripping spring, locking sliding block, and one end of the shank is positive stop end and limits End connect with locking sliding block, the other end and outer cover body be hinged, hinged place be located at the lower section of mounting groove and be hinged shaft core line and The groove depth direction of mounting groove is parallel, and the slot bottom of the mounting groove is provided with the protrusion of the constraint above locking sliding block, described Locking sliding block towards being provided with mobile protrusion on the face of constraint protrusion, one end of tripping spring with it is mobile it is raised connect, it is another End is connect with constraint protrusion, and the elastic force of tripping spring makes locking sliding block be moved upwards along the guide direction of mounting groove, the lock Tight sliding block is set in mounting groove and locking sliding block is towards being provided with guide chute on the face of mounting groove slot bottom, guide chute with The cell wall of mounting groove matches and locking sliding block can be slided up and down by guide chute and installation groove groove wall cooperation;
The locking sliding block includes locking sliding block ontology, is structure as a whole below retainer plate and with locking sliding block ontology Filler ring, the filler ring connect with conducting hose, and the locking sliding block ontology is towards being arranged on the face of volume control device There are guide and limit slot, the positive stop end of the shank to be located in guide and limit slot, shank and the cooperation control limit of guide and limit slot Mechanism opens or closes;
The guide and limit slot includes guiding groove one, limiting slot, guiding groove two, between guiding groove one, limiting slot, guiding groove two It mutually connects, the guiding groove one is for guiding the positive stop end of shank into limiting slot, and the limiting slot is for limiting The movement of shank, the guiding groove two is for the positive stop end of shank to be guided out from limiting slot;
The position-limit mechanism includes gag lever post, position limiting slide block, and gag lever post is structure as a whole with position limiting slide block, position limiting slide block and peace Limit sliding chutes on casing match and position limiting slide block can be slided along the guide direction of limit sliding chutes, one end of gag lever post with Locking sliding block ontology is hinged and is hinged shaft core line perpendicular to the groove depth direction of mounting groove, the other end for pressing end and for clear Clean tank ontology carries out locking positioning.
7. a kind of detergent concentration according to claim 6 can self-regulated glass cleaning equipment, which is characterized in that
The inclined arrangement of channeling direction and the distance between limit sliding chutes and mounting groove slot bottom of the limit sliding chutes are along peace The guide direction of tankage from top to bottom be incremented by, when gag lever post is moved along the channeling direction of limit sliding chutes, the pressing end of gag lever post with The tank bottom contact of cleaning tank ontology disengages, to be limited or be cancelled limitation to cleaning tank ontology.
8. a kind of detergent concentration according to claim 6 can self-regulated glass cleaning equipment, which is characterized in that it is described Guiding groove one it is inclined arrangement and the distance between guiding groove one and filler ring along mounting groove guide direction from the bottom to top incrementally, The guiding groove two is arranged vertically, the V-shaped structure of the limiting slot, the input of the output end and limiting slot of guiding groove one Termination is logical, and the output end of limiting slot is connected with the input terminal of guiding groove two, the input of the output end and guiding groove one of guiding groove two Termination is logical;
The upper V-shaped groove wall minimum point of the limiting slot is close to the input terminal of limiting slot, lower V-shaped groove wall minimum point close to limiting slot Output end.
9. a kind of detergent concentration according to claim 8 can self-regulated glass cleaning equipment, which is characterized in that it is described It is provided with limited block one between the output end of guiding groove one and the input terminal of limiting slot, one wedge shaped structure of limited block and limits The thickness of block one along the direction of one output end of guiding groove to limiting slot input terminal be incremented by, the output end of the guiding groove two with draw It is provided with limited block two between the input terminal of guide groove one, the thickness of two wedge shaped structure of limited block and limited block two is along guiding groove Two output ends to the direction of one input terminal of guiding groove is incremented by, the input terminal in thickness maximum face and guiding groove one on limited block two Concordantly.
10. a kind of detergent concentration according to claim 4 can self-regulated glass cleaning equipment, which is characterized in that it is described Control mechanism further include oscillating structural member, oscillating structural member is for making axial movement of the loop bar along fixed link, the oscillating structural member Including control rocking bar, intermediate bar, motion bar, control rocking bar can deflection and deflected trajectory be parallel to the central shaft of shaft The driving end of line, the central axial direction for extending perpendicularly to shaft of intermediate bar, one end and intermediate bar for controlling rocking bar is solid Fixed connection, the deflection for controlling rocking bar drive intermediate bar to synchronize deflection, and motion bar is metal elastic part, one end of motion bar It is fixedly connected with the output end of intermediate bar, the other end and loop bar are connect, the deflection drive loop bar deflection of intermediate bar, the deflection of loop bar Sliding axially, around the axial rotation of fixed link along fixed link can be divided into.
CN201810009565.4A 2018-01-05 2018-01-05 A kind of detergent concentration can self-regulated glass cleaning equipment Active CN108554864B (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111468467A (en) * 2020-04-22 2020-07-31 浙江商业职业技术学院(杭州商业技工学校) Clean convenient computer hardware belt cleaning device
CN112998578A (en) * 2019-12-20 2021-06-22 Seb公司 Cleaning head equipped with wet cleaning device
CN113443829A (en) * 2021-07-17 2021-09-28 盐城杉智光学材料有限公司 High-refractive-index optical glass and preparation device thereof
CN115349790A (en) * 2022-10-19 2022-11-18 南通睿禧智能科技有限公司 Intelligent cleaning device for outer edge of building curtain wall

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Publication number Priority date Publication date Assignee Title
CN1628588A (en) * 2003-12-18 2005-06-22 胡佛公司 Solution distribution arrangement for a cleaning machine
CN202446003U (en) * 2012-01-05 2012-09-26 张奥 Full-automatic glass scrubbing device
EP2977117A1 (en) * 2014-07-24 2016-01-27 Sugino Machine Limited Cleaning apparatus

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1628588A (en) * 2003-12-18 2005-06-22 胡佛公司 Solution distribution arrangement for a cleaning machine
CN202446003U (en) * 2012-01-05 2012-09-26 张奥 Full-automatic glass scrubbing device
EP2977117A1 (en) * 2014-07-24 2016-01-27 Sugino Machine Limited Cleaning apparatus

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112998578A (en) * 2019-12-20 2021-06-22 Seb公司 Cleaning head equipped with wet cleaning device
CN112998578B (en) * 2019-12-20 2024-02-02 Seb公司 Cleaning head equipped with wet cleaning device
CN111468467A (en) * 2020-04-22 2020-07-31 浙江商业职业技术学院(杭州商业技工学校) Clean convenient computer hardware belt cleaning device
CN113443829A (en) * 2021-07-17 2021-09-28 盐城杉智光学材料有限公司 High-refractive-index optical glass and preparation device thereof
CN115349790A (en) * 2022-10-19 2022-11-18 南通睿禧智能科技有限公司 Intelligent cleaning device for outer edge of building curtain wall

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