Magnetic adsorption's arc glass cleaner
Technical Field
The utility model belongs to the technical field of cleaning device and specifically relates to an adsorbed arc glass cleaner of magnetic force.
Background
The glass has good permeability, is widely applied in daily life, is particularly widely applied to buildings, and can provide good lighting for the buildings. However, after a period of time, the glass is easy to be attached with dust, and the permeability of the glass is greatly influenced, so that the glass needs to be cleaned frequently. Most of the existing glass cleaners have single structures and are inconvenient to clean the inner and outer walls of the glass of high floors. The glass double-sided cleaner widely used in the market is used on plane glass, has poor cleaning effect on arc glass, is not only unclean but also unstable in use and is easy to fall off. Therefore, the cleaning of the cambered surface glass has certain trouble, and a feasible scheme capable of solving the problem of cleaning the cambered surface glass is urgently needed.
Disclosure of Invention
The utility model aims to solve the problem that cambered surface glass is difficult for clean to bring, provide an adsorbed arc glass cleaner of magnetic force, the device convenient to use, clean effectual. In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model discloses a magnetic force adsorption arc glass cleaner, which comprises an inner cleaning device and an outer cleaning device.
The inner cleaning device comprises a first frame, a first scraping strip embedded in the first frame, a plurality of first sponge components and a plurality of first magnets. The first frame, the first scraping strip, the first sponge assembly and the first magnet are in a convex arc shape matched with the curved glass. The first frame is provided with a plurality of first frame grooves used for embedding a first scraping strip, a first sponge component and a first magnet. The first magnets and the first sponge components are distributed in the first frame grooves at intervals.
The outer cleaning device comprises a second frame, a second scraping strip embedded in the second frame, a plurality of second sponge components and a plurality of second magnets. The second frame, the second scraping strip, the second sponge component and the second magnet are concave arc-shaped and matched with the inner cleaning device. The second frame is provided with a plurality of second frame grooves used for embedding a second scraping strip, a second sponge component and a second magnet. And the second magnets and the second sponge components are alternately distributed in the second frame grooves. The second magnet is opposite in magnetism to the first magnet.
During the use, place outer cleaning device in the arc glass outside, inside cleaning device was placed inside the arc glass, and interior cleaning device and outer cleaning device pass through first magnet and second magnet inter attraction with arc glass clamp in the centre. The personnel reciprocate interior cleaning device, and outer cleaning device also can move along with interior cleaning device, reaches the effect of washing arc glass.
Furthermore, a plurality of long grooves for mounting the first sponge component, the first magnet, the second sponge component and the second magnet are respectively arranged on the first frame and the second frame. The design of the long groove enables the cleaning sponge and the magnet to swing in a small range, so that the magnet, the cleaning sponge and the arc-shaped glass are better attached, and the cleaning is more thorough. First frame and second frame both sides are equipped with two connectors that are used for cleaning device interconnect respectively, the connector is equipped with and is used for articulated round hole. A plurality of cleaning device accessible connector is rotatable articulated together, enlarges and cleans the area, improves clean efficiency.
Further, the first sponge component comprises a first cleaning sponge, a first sponge tray, a water storage sponge, a sponge buckle and a bolt component; the first cleaning sponge and the first sponge tray are of convex arc shapes matched with the curved glass, and the surfaces of the first cleaning sponge and the first sponge tray are correspondingly provided with through holes respectively, so that the first cleaning sponge and the curved glass are guaranteed to be better attached. The sponge buckle passes through the first cleaning sponge and the first sponge tray through the through hole respectively, and then can be clamped and fixed together by rotating 90 degrees. One end of the bolt assembly is fixed on the first sponge tray, and the other end of the bolt assembly penetrates through the water storage sponge and the long groove of the first frame respectively and then rotates by 90 degrees to install the first sponge assembly on the first frame. The first cleaning sponge can swing left and right on the long groove in a small amplitude.
Further, the second sponge component comprises a second cleaning sponge, a second sponge tray, a water storage sponge, a sponge buckle and a bolt component. The second cleaning sponge and the second sponge tray are concave arc-shaped, and the surfaces of the second cleaning sponge and the second sponge tray are correspondingly provided with through holes, so that the second cleaning sponge and the arc-shaped glass are ensured to have better fitting degree. The sponge buckle passes through the second cleaning sponge and the second sponge tray through the through hole respectively, and then can be clamped and fixed together by rotating 90 degrees. One end of the bolt assembly is fixed on the second sponge tray, and the other end of the bolt assembly penetrates through the water storage sponge and the long groove of the second frame respectively and then is rotated by 90 degrees to install the second sponge assembly on the second frame.
Further, it still includes the fixed strip of magnet. The magnet fixing strip is arranged on the surface of the first magnet or the second magnet. One end of each bolt assembly is fixed on the magnet fixing strip, and the other end of each bolt assembly penetrates through the first magnet and the long groove of the first frame respectively to install the first magnet on the first frame, or penetrates through the second magnet and the long groove of the second frame to install the second magnet on the second frame.
Further, the pressing spring for better fitting of the arc-shaped glass cleaner and the arc-shaped glass is further included. The pressure spring is arranged on the column of the bolt assembly.
Furthermore, the first frame and the second frame are respectively provided with a plurality of first extrusion holes for extruding the water storage sponge.
Further, it also includes the back lid. The rear cover is fixedly mounted on the first frame or the second frame. The back cover is provided with a hand-held block used for grabbing during operation. The rear cover is provided with a plurality of second extrusion holes corresponding to the first frame or the second frame.
Furthermore, first magnets are distributed on the upper portion and the lower portion of the first frame. Second magnets are distributed on the upper and lower parts of the second frame; the first magnet and the second magnet are high-strength magnets. The design can effectively improve the adsorption effect and reduce the hidden danger that the inner and outer cleaning devices drop.
Furthermore, a protective rope for preventing the outer cleaning device from falling off is arranged on the second frame or the first frame.
The utility model has the advantages as follows:
1. frame, clean sponge, magnet, scraping strip and the arc design of arc glass mutually supporting in the inside and outside cleaning device for the cleaner can closely laminate with arc glass, is difficult for droing. The inner cleaning device is pulled up and down to drive the outer cleaning device, the sponge is cleaned, the scraping strip is used for wiping the arc-shaped glass, and the cleanliness of the arc-shaped glass can be greatly improved after wiping.
2. Due to the design of the long groove of the frame, the cleaning sponge and the magnet can swing in a small amplitude, so that the magnet, the cleaning sponge and the arc-shaped glass are better attached to each other, and the cleaning is more thorough.
3. Due to the design of the connector, a plurality of cleaning devices can be rotatably hinged together through the connector, the wiping area is enlarged, and the cleaning efficiency is improved.
4. The sponge tray is designed to be arc-shaped, so that the installed cleaning sponge and the arc-shaped glass have better fitting degree.
5. The magnets are high-strength magnets and are comprehensively distributed on the cleaner, so that the adsorption effect can be effectively improved, and the hidden trouble that the inner cleaner and the outer cleaner are hung down is reduced.
6. Set up the pressure spring between sponge subassembly and frame, magnet and the frame, can be so that magnet and clean sponge and the better laminating of arc glass, be favorable to arc glass's cleanness.
7. The design of water storage sponge and extrusion hole, when the cleaning sponge does not have water, can provide water through the extrusion hole extrusion water storage sponge, just so need not dismantle the cleaner and add water, prolong the live time of once cleaning.
8. Due to the design of the protective rope on the cleaning device, the hidden danger that the outer cleaning device falls off in the wiping process and the pendant goes downstairs can be avoided.
Drawings
Fig. 1 is a schematic perspective view of an internal cleaning device.
Fig. 2 is a schematic top view of an inner cleaning device.
Fig. 3 is a schematic view of the structure of a first sponge assembly in the internal cleaning device.
Fig. 4 is a schematic view of a first magnet structure in the inner cleaning device.
Figure 5 is a schematic perspective view of an outer cleaning device.
Figure 6 is a schematic top view of the outer cleaning device.
Fig. 7 is a schematic view of the structure of a second sponge assembly in the outer cleaning device.
Fig. 8 is a schematic view of a second magnet structure in the outer cleaning device.
Fig. 9 is a schematic view of the rear view structure of the present invention.
Fig. 10 is a schematic view of the frame structure of the present invention.
Fig. 11 is a schematic structural view of the present invention with the rear cover removed.
Fig. 12 is a usage state diagram of the present invention.
Description of the main component symbols:
1-inner cleaning device, 11-first sponge component, 111-first cleaning sponge, 112-first sponge tray, 12-first magnet, 13-first scraping strip, 14-first frame, 2-outer cleaning device, 21-second sponge component, 211-second cleaning sponge, 212-second sponge tray, 22-second magnet, 23-second scraping strip, 24-second frame, 25-safety rope, 3-magnet fixing strip, 4-connector, 5-rear cover, 51-hand-held block, 6-water-storage sponge, 7-sponge button, 8-bolt component, 9-elongated slot, 10-first extrusion hole, 100-glass, 101-second extrusion hole.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the present invention is further described in detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 12, the utility model discloses a magnetic adsorption arc-shaped glass cleaner, which comprises an inner cleaning device 1 and an outer cleaning device 2.
As shown in fig. 1 and 2, the internal cleaning device 1 includes a first frame 14, a first wiper strip 13 embedded in the first frame 14, three sets of first sponge assemblies 11, and three sets of first magnets 12. The first frame 14, the first scraping strip 13, the first sponge component 11 and the first magnet 12 are in a shape of an outer arc matched with the curved glass 100. The first frame 14 is provided with a plurality of first frame grooves for embedding the first scraping strips 13, the first sponge component 11 and the first magnets 12; the first magnet 12 and the first sponge component 11 are distributed in the first frame groove alternately. The first wiper strip 13 is disposed above the first sponge module 11.
As shown in fig. 5 and 6, the outer cleaning device 2 includes a second frame 24, a second wiper strip 23 embedded in the second frame 24, three sets of second sponge assemblies 21, and three sets of second magnets 22. The second frame 24, the second scraping strip 23, the second sponge component 21 and the second magnet 22 are concave arc-shaped and matched with the inner cleaning device 1. The second frame 24 is provided with a plurality of second frame grooves for embedding the second wiper strip 23, the second sponge assembly 21 and the second magnet 22. The second magnets 22 and the second sponge components 21 are alternately distributed in the second frame groove. The second magnet is opposite in magnetism to the first magnet. The second wiper strip 23 is disposed above the second sponge unit 21.
The wiping function of each cleaner consists of two parts, namely a wiping area at the front part and a scraping strip area at the rear part, and the wiping and the scraping are carried out firstly and then, so that a relatively clean effect can be obtained after one-time wiping.
In order to effectively improve the adsorption effect and reduce the falling hidden trouble of the inner and outer cleaning devices 2. The first magnet 12 and the second magnet 22 are high-strength magnets and are distributed over the entire surface in the first frame slot or the second frame slot.
As shown in fig. 10, in order to make the cleaning sponge and the magnet swing with a small amplitude and ensure better adhesion and cleaning of the magnet, the cleaning sponge and the arc-shaped glass 100, the first frame 14 and the second frame 24 are respectively provided with a plurality of elongated slots 9 for mounting the first sponge component 11, the first magnet 12, the second sponge component 21 and the second magnet 22.
In order to rotatably hinge a plurality of cleaning devices together, enlarge the wiping area and improve the cleaning efficiency, two connectors 4 for connecting the cleaners are respectively arranged at two sides of the first frame 14 and the second frame 24. The middle of the connecting head 4 is provided with a round hole for hinging.
As shown in fig. 3 and 11, the first sponge assembly 11 includes a first cleaning sponge 111, a first sponge tray 112, a water storage sponge 6, a sponge button 7, and a bolt assembly 8. The first cleaning sponge 111 and the first sponge tray 112 are convex circular arcs matched with the curved glass 100, and the surfaces of the first cleaning sponge 111 and the first sponge tray are correspondingly provided with through holes respectively, so that the first cleaning sponge 111 and the curved glass 100 can be better attached. The sponge buckle 7 can be clamped and fixed together by rotating 90 degrees after respectively passing through the first cleaning sponge 111 and the first sponge tray 112. One end of the bolt assembly 8 is fixed on the first sponge tray 112, and the other end of the bolt assembly passes through the water storage sponge 6 and the long groove 9 of the first frame 14 respectively and then rotates by 90 degrees, so that the first sponge assembly 11 can be installed on the first frame 14. The first cleaning sponge 111 can swing to the left and right on the long groove 9 with a small amplitude.
As shown in fig. 7, the second sponge assembly 21 includes a second cleaning sponge 211, a second sponge tray 212, a water storage sponge 6, a sponge button 7, and a bolt assembly 8. The second cleaning sponge 211 and the second sponge tray 212 are concave arc-shaped, and the surfaces of the second cleaning sponge 211 and the second sponge tray 212 are correspondingly provided with through holes respectively, so that the second cleaning sponge 211 and the arc-shaped glass 100 can be better attached. The sponge buckle 7 passes through the second cleaning sponge 211 and the second sponge tray 212 respectively and then is clamped and fixed together by rotating 90 degrees. One end of the bolt assembly 8 is fixed on the second sponge tray 212, and the other end of the bolt assembly passes through the water storage sponge 6 and the long groove 9 of the second frame 24 respectively and then rotates by 90 degrees, so that the second sponge assembly 21 can be installed on the second frame 24. The second cleaning sponge 211 can swing left and right on the long groove 9 with a small amplitude.
As shown in fig. 9 and 10, in order to squeeze the water storage sponge 6, the first frame 14 and the second frame 24 are respectively provided with a plurality of first squeezing holes 10 for squeezing the water storage sponge 6.
As shown in fig. 9, a rear cover 5 is further included to facilitate the operation of the cleaner. The rear cover 5 is fixedly mounted on the first frame 14 or the second frame 24. The rear cover 5 is provided with a hand-held block 51 for grasping at the time of operation. The rear cover 5 is provided with a plurality of second pressing holes 101 corresponding to the first frame 14 or the second frame 24.
Due to the design of the water storage sponge 6 and the extrusion holes, when the cleaning sponge is not filled with water, the water storage sponge 6 can be extruded through the extrusion holes to supply water, so that the cleaner does not need to be detached to add water, and the service time of one-time wiping is prolonged.
As shown in fig. 4 and 8, a magnet fixing strip 3 is further included to fix the magnet. The magnet fixing strip 3 is arranged on the surface of the first magnet 12 or the second magnet 22. One end of each of the upper and lower bolt assemblies 8 is fixed to the magnet fixing bar 3, and the other end of each of the upper and lower bolt assemblies passes through the first magnet 12 and the elongated slot 9 of the first frame 14, respectively, so that the first magnet 12 is mounted on the first frame 14, or the second magnet 22 passes through the second magnet 22 and the elongated slot 9 of the second frame 24, respectively, so that the second magnet 22 is mounted on the second frame 24. During wiping, the magnet can swing left and right on the long groove 9 in a small range, and attraction of the inner and outer cleaning devices 2 is facilitated.
In order to better fit the cleaner and the arc glass 100, a pressure spring (not shown in the figure) is further arranged on a column of the bolt component 8, so that after the inner and outer cleaning devices 2 are attracted, the sponge component and the magnet can automatically adjust the pressing position up and down according to the radian of the arc glass 100.
As shown in fig. 5, to avoid the outer cleaning device 2 from falling off during the wiping process, the potential for the pendant to go downstairs. A safety line 25 is provided on the cleaning device.
The cleaner can be used independently or after being combined by a plurality of blocks according to the wiping area. In use, the safety rope 25 of the outer cleaning device 2 is tied on the hand, the outer cleaning device 2 is placed outside the arc-shaped glass 100, the inner cleaning device 1 and the outer cleaning device 2 are aligned and placed inside the arc-shaped glass 100, and the inner cleaning device 1 and the outer cleaning device 2 are mutually attracted through the first magnet 12 and the second magnet 22 to clamp the arc-shaped glass 100 in the middle. The person grasps the hand-held block 51 and moves the inner cleaning device 1 up and down, and the outer cleaning device 2 is also moved along with the inner cleaning device 1, thereby achieving the effect of cleaning the arc-shaped glass 100. When the cleaning sponge is empty of water, the water storage sponge 6 is extruded through the extrusion holes to provide water, the service time of one-time wiping is prolonged, and the wiping is continued.
To sum up, the utility model discloses can be applied to arc glass's washing, convenient operation, clean effectual moreover is suitable for popularization and application.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention.