CN211704487U - Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket - Google Patents

Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket Download PDF

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Publication number
CN211704487U
CN211704487U CN201921539583.XU CN201921539583U CN211704487U CN 211704487 U CN211704487 U CN 211704487U CN 201921539583 U CN201921539583 U CN 201921539583U CN 211704487 U CN211704487 U CN 211704487U
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water squeezing
elastic
water
wringing
guide plate
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CN201921539583.XU
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Chinese (zh)
Inventor
尹建兰
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Hunan Haodaughter In Law Home Furnishings Co ltd
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Zhuzhou Good Wife Home Furnishings Co ltd
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Abstract

The utility model discloses a plate dragging double-scraper water squeezing structure and a partitioned water squeezing bucket, which comprises a base plate, a water squeezing piece and a guide plate, wherein a water squeezing opening is formed on the base plate, the water squeezing piece is arranged on one side of the water squeezing opening, and a water squeezing gap is formed between the water squeezing end in the front of the water squeezing piece and the other side of the water squeezing opening, so that a mop head can pass through the water squeezing in a reciprocating way; the guide plate is arranged below the water squeezing piece, the front edge of the guide plate is arranged in a retracting manner relative to the water squeezing end at the front part of the water squeezing piece, and the guide plate extends from high to low in the direction opposite to the water squeezing end at the front part of the water squeezing piece. The utility model discloses especially be suitable for with the subregion crowded cask, the subregion washs and wringing dull and stereotyped mop, has good clean and wringing effect, has reduced the ponding of wringing the bucket intracavity simultaneously, avoids user's too much clearance ponding operation, improves the efficiency of mopping, the elastic deformation of elasticity crowded water doctor-bar is to the washing and the wringing effect of mop, has simple structure, characteristics that wringing is efficient.

Description

Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket
Technical Field
The utility model relates to the technical field of cleaning appliances, in particular to a flat mop double-scraper water squeezing structure and a partitioned water squeezing bucket.
Background
The floor cleaning and mopping device is a means for cleaning and sanitation of people and keeping the house life or the office place clean and tidy, and people pay more and more attention to the cleaning and mopping device along with the promotion of urbanization and the improvement of the living standard of people, and the structure and the variety of the cleaning device are continuously increased and improved. The mop is used as a cleaning tool for mopping the floor, and various types of mops are available according to different requirements of cleaning environments. The manual flat mop with the flat structure has the advantages of large effective mopping surface, high mopping efficiency, relatively low cost and wide application in cleaning work. As with the traditional mop, the flat mop needs to be cleaned and squeezed from time to time during the mopping process, thereby ensuring the mopping effect. Aiming at the hand-free cleaning and wringing of the mop, some partitioned wringing buckets are also appeared in the prior art and are divided into a cleaning area and a wringing area, but the wringing structures of the two areas of the existing partitioned wringing bucket are only simple to copy, the wringing drainage problem of the wringing area is not fully considered, so that the excessive water accumulation in the wringing area is caused, the wringing effect is influenced, and the mopping efficiency is reduced.
Disclosure of Invention
The utility model aims at the above problem, provide a two scraper blade crowded water structures of dull and stereotyped dragging on the one hand. The technical scheme of the utility model is that:
a water squeezing structure of a flat mop double-scraper comprises a base plate, a water squeezing piece and a guide plate, wherein a water squeezing opening is formed in the base plate, the water squeezing piece is arranged on one side of the water squeezing opening, and a water squeezing gap is formed between a water squeezing end in the front of the water squeezing piece and the other side of the water squeezing opening and is used for a mop head to pass through the water squeezing in a reciprocating mode; the guide plate is arranged below the water squeezing piece, the front edge of the guide plate is arranged in a retracting manner relative to the water squeezing end at the front part of the water squeezing piece, and the guide plate extends from high to low in the direction opposite to the water squeezing end at the front part of the water squeezing piece.
As a further explanation of the present invention, the wringing member is a wringing roller or an elastic wiper blade.
Further, the front end of the elastic blade 3 includes a guide section from top to bottom or from bottom to top.
Further, the guide section is an arc section or an inclined straight section.
Furthermore, elastic gaps for increasing the elastic deformation amount of the elastic scraping blade are formed in two sides of the rear end of the elastic scraping blade, and the guide plate covers the elastic scraping blade and the elastic gaps on the two sides of the elastic scraping blade.
Furthermore, a reinforcing blocking bone is arranged beside the rear end part of the elastic scraping blade, and the elastic scraping blade is not contacted with the reinforcing blocking bone in a non-deformation state.
Furthermore, the number of the reinforcing blocking ribs is more than two, and the reinforcing blocking ribs and the elastic scraping blades are perpendicular to each other and arranged at intervals.
Furthermore, the guide plate is clamped on the substrate.
Furthermore, the front end of the guide plate also comprises a guide section, and the direction of the guide section is consistent with the direction of the guide section of the elastic scraping blade above the guide plate.
The utility model discloses an on the other hand provides a subregion crowded cask, includes that the above-mentioned flat board drags two scraper blade crowded water structures.
The utility model has the advantages that:
the utility model discloses a crowded water structure of two scraper blade drainage, especially be suitable for with in the subregion crowded cask, the subregion washs and crowded water flat mop, good cleanness and wringing effect have, the ponding of wringing the cask intracavity has been reduced simultaneously, avoid user's too much clearance ponding operation, improve the efficiency of mopping, the elastic deformation of the crowded water doctor-bar of elasticity is to the washing and the crowded water effect of mop, simple structure has, the efficient characteristics of wringing, the single is scraped and is washed and can reach general crowded water roller-type mop and scrape the washing effect many times, it is moderate to scrape the washing resistance, user experience is good, crowded cask lid does not contain the metalwork, metal part rusts easily in avoiding traditional crowded cask, influence the condition of result of use.
Drawings
Fig. 1 is an exploded view of the overall structure of the embodiment of the present invention;
FIG. 2 is an enlarged view of a part of the structure of the present invention;
fig. 3 is an enlarged schematic view of a local structure of the present invention.
Reference numerals: the device comprises a barrel cover 1, a cleaning water squeezing port 11, a squeezing water squeezing port 12, an upper barrel cover 13, a lower barrel cover 14, a barrel body 2, a cleaning barrel cavity 21, a squeezing barrel cavity 22, an elastic scraping blade 3, an arc-shaped section 31, a U-shaped groove 32 and a drainage scraping blade 4.
Detailed Description
Example (b):
the embodiments of the present invention will be described in detail below with reference to the accompanying drawings, and it is to be understood that the described embodiments are merely illustrative of some, but not all embodiments of the invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
A water squeezing structure of a flat mop double-scraper comprises a base plate, a water squeezing piece and a drainage scraper 4, wherein a water squeezing opening is formed in the base plate, the water squeezing piece is arranged on one side of the water squeezing opening, a water squeezing gap is formed between a water squeezing end in the front of the water squeezing piece and the other side of the water squeezing opening, and a mop head can pass through the water squeezing structure in a reciprocating manner; the drainage scraper 4 is arranged below the water squeezing piece, the front edge of the drainage scraper is arranged in a retracting manner relative to the water squeezing end at the front part of the water squeezing piece, namely, the drainage scraper and the water squeezing gap formed at the other side of the water squeezing opening are relatively wide, and the drainage scraper extends from high to low in the direction opposite to the water squeezing end at the front part of the water squeezing piece. The utility model discloses a crowded water structure is applied to in the subregion crowded cask of mop, is applicable to and carries out the wringing and drainage to the mop head, effectively avoids the ponding too much in the wringing district in the subregion crowded cask.
Referring to an embodiment shown in the drawings specifically, the partitioned water squeezing bucket comprises a bucket cover 1 and a bucket body 2, wherein the bucket body 2 is divided into a washing bucket cavity 21 and a squeezing bucket cavity 22 on the left and right, the bucket cover 1 covers a bucket opening of the bucket body 2, a washing water squeezing opening 11 and a squeezing water squeezing opening 12 are respectively arranged at positions corresponding to the washing bucket cavity 21 and the squeezing bucket cavity 22 below the bucket cover, and the washing water squeezing opening 11 and the squeezing water squeezing opening 12 are elastic water squeezing openings and can be used for a mop head of a flat mop to slide through water squeezing. One side of the elastic water squeezing port is provided with a guide roller, the opposite side of the guide roller is provided with an elastic scraping blade 3, and the elastic scraping blade 3 extends from the inner side edge of the elastic water squeezing port to the middle. The drainage scraper blade 4 is arranged below the elastic scraper blade 3, the front end of the drainage scraper blade 4 is relatively retracted with the front end of the elastic scraper blade 3, the squeezing gap at the lower part is larger than that at the upper part, the retraction distance can be set according to the deformation amount of a mop during actual squeezing, the drainage scraper blade extends from high to low to the cleaning barrel cavity 21, and the outlet of the drainage scraper blade is positioned at the upper part of the cleaning barrel cavity 21.
The utility model discloses when using, the washing bucket cavity 21 on one side is filled with the washing water, maintains empty after emptying dirty water in the wringing bucket cavity 22 on the other side, when the dull and stereotyped mop mops ground in-process and need wash crowded water, at first aims at the mop head of the dull and stereotyped mop that has adjusted and washs crowded mouth of a river 11, pushes down in proper order and lifts and wash and tentatively crowded water, then moves to 12 tops in crowded mouth of a river of wringing are aimed at, push down once more and lift and carry out the crowded water of secondary and dry. In the process, the guide roller provides back supporting force for the mop head and plays a role in sliding guide, because the width of a water squeezing gap formed between the front end of the elastic scraping piece 3 and the opposite side surface is smaller than the thickness of the mop head, when the mop head slides up and down in the elastic water squeezing port, the elastic scraping piece 3 is driven by the mop cloth of the mop head to generate certain elastic deformation upwards or downwards and scrape and wash and squeeze water primarily for the mop cloth, and based on the same structure and principle, secondary squeezing operation can be carried out on the mop head by the water squeezing port 12 after primary squeezing water, so that the mop cloth reaches the squeezing rate suitable for mopping. The secondary water squeezing is a pressing-down water squeezing process and a lifting-up water squeezing process, and during the pressing-down water squeezing process, squeezed water is squeezed out from the upper part of the elastic doctor blade 3, so that the elastic doctor blade 3 and a barrel cover part connected with the elastic doctor blade can be designed into a drainage structure, namely the structure from high to low inclines towards the cleaning barrel cavity 21, and the squeezed water during the pressing-down water squeezing process is drained to the cleaning barrel cavity 21; in the crowded water of lifting crosses the car, because the crowded water effect of elasticity doctor-bar 3, extrude the water and be located elasticity doctor-bar 3's below, simultaneously, the mop takes place deformation at the crowded water effect of elasticity doctor-bar 3, the thickness of the mop of elasticity doctor-bar 3 below is great relatively to the extrusion department this moment, and the drainage version of indentation just can be with from the drainage of the water drainage of extruding of elasticity doctor-bar 3 below to washing barrel chamber 21 to ponding in the crowded dry barrel chamber 22 has been reduced as far as possible, avoids user's too much to clear up ponding operation, improves the efficiency of mopping the ground.
It is to be understood that although the wringer shown in the present embodiment is the elastic blade 3, it is not to be construed as a limitation of the present invention, and that the wringer may be a conventional wringing roller structure or the like may be applicable to the structure of the present invention.
In practical application, a flat mop is generally washed and primarily squeezed through the washing squeezing nozzle 11 and then secondarily squeezed by the squeezing nozzle 12, and as the primary squeezing does not need to squeeze the mop cloth to a degree suitable for mopping the floor, in order to reduce the squeezing resistance of the washing squeezing nozzle 11 and facilitate quick washing and primary squeezing by a user, the width of the squeezing gap of the washing squeezing nozzle 11 can be designed to be larger than that of the squeezing nozzle 12, so as to reduce the scraping action force of the elastic wiper blade 3 in the washing squeezing nozzle 11 on the mop cloth.
Referring to the drawings, the front end of the elastic blade 3 in the present embodiment is designed to be arc-shaped, so that the front end of the elastic blade 3 has a certain sliding guiding function, referring to the embodiment shown in the drawings, in the cleaning water squeezing port 11, the front end of the elastic blade 3 includes an arc-shaped section 31, and the arc-shaped section 31 is arc-shaped from the outside of the bucket to the inside of the bucket, that is, when the mop head is inserted into the cleaning bucket cavity 21 from the cleaning water squeezing port 11, the arc-shaped section 31 of the elastic blade 3 plays a role of forward guiding, the resistance of the mop head sliding towards the elastic blade 3 is relatively small, otherwise, the arc-shaped section 31 of the elastic blade 3 plays a role of reverse guiding, and the resistance of the mop head sliding towards the elastic blade 3 is relatively large. This structural design is because flat mop when preliminary scraping and washing, even use great scraping and washing power to extrude most water at the mop head in-process of lifting, and the water of extruding can directly fall back to in the washing bucket chamber 21 of below, and on the other hand, exempt from hand washing flat board to drag the subregion crowded cask because washing bucket chamber 21 is full of water when using, the crowded dry bucket chamber 22 is vacant, consequently exempt from hand washing flat board to drag the focus of subregion crowded cask to lie in washing bucket chamber 21 one side partially at this moment, the resistance of lifting in preliminary crowded water process is great also difficult to cause the staving to turn on one side. Similarly, in contrast, the arc-shaped section 31 of the elastic blade 3 in the wringing and wringing nozzle 12 is suitable for the arc-shaped section 31 from the inside of the barrel to the outside of the barrel, because the secondary wringing requires a larger wringing force, the barrel body is not easy to turn sideways even if a larger pressing wringing force is used.
Referring to the attached drawings, the barrel cover of the embodiment has a double-layer structure, and comprises an upper barrel cover 13 and a lower barrel cover 14, wherein the elastic scraping blade 3 and the lower barrel cover 14 are integrally formed, and an elastic gap is formed at two sides of the rear end part of the elastic scraping blade 3; on the other hand, the opened trampling gap can be used as a flow guide hole, and when the mop head is inserted into the lower barrel cover 4 for squeezing water, the water squeezed out and accumulated on the upper end surface of the lower barrel cover 4 can be guided into the lower barrel cavity from the technical gap; in this embodiment, the elastic gap is a U-shaped groove 32 formed on both sides of the rear end portion of the elastic blade 3. It can be understood that the both sides of the rear end of the elastic scraping blade 3 at the cleaning water squeezing port 11 and the squeezing water squeezing port 12 are both opened with the U-shaped groove 32, but the design of the utility model aims to expect that the squeezing water in the squeezing barrel cavity 22 is better, therefore, the width of the drainage scraper 4 below the elastic scraping blade 3 in the embodiment should reach the cladding the effect of the elastic scraping blade 3 and the U-shaped grooves 32 on the two sides thereof, so as to drain the squeezing water dropped from the U-shaped groove 32 on the side back to the cleaning barrel cavity 21.
Referring to the drawings, the front end of the drainage scraper 4 in this embodiment is also designed into an arc shape, and the direction of the front end is consistent with the direction of the arc section 31 of the elastic scraper 3 above the drainage scraper, so that the drainage of the squeezed water during the process of lifting the mop head to the cleaning barrel cavity 21 can be better realized.
As a further description of the embodiment, the different sliding resistance of the elastic blade 3 of the mop head up and down opposite to each other will result in different deformation of the elastic blade 3 due to the guiding function of the arc-shaped section 31 at the front end of the elastic blade 3, and the deformation may be too large in the reverse guiding direction of the arc-shaped section 31 to cause the elastic blade 3 to break, therefore, the reinforcing rib is provided at the base of the elastic blade 3 opposite to the arc-shaped section 31, which can effectively prevent the base from breaking when the elastic blade 3 is reversely deformed. Referring to the drawings specifically, in the cleaning water squeezing port 11, because the arc section 31 is from outside to inside, the deformation amount of the elastic wiper 3 from inside to outside is large, and therefore, the reinforcing ribs are disposed at the base of the outer side surface of the elastic wiper 3, and are a plurality of reinforcing ribs perpendicular to the elastic wiper 3, which extend from the edge of the lower barrel cover 14 to be close to the base of the elastic wiper 3, but do not contact with the elastic wiper in the initial state, and contact with each other only when the elastic wiper 3 deforms in the reverse direction to a certain amount, so as to provide an additional supporting force for the base of the elastic wiper 3, and prevent the elastic wiper 3 from being excessively deformed and breaking.
In the present embodiment, a scraping rack is provided above the elastic scraping blade 3 at the cleaning squeezing opening 11, and the scraping rack comprises scraping teeth with intervals, and when the mop head is inserted for scraping, the scraping teeth firstly scrape impurities such as hair, paper dust and the like on the mop cloth, so that excessive solid impurities are prevented from being brought into the cleaning barrel cavity 21.
The foregoing is illustrative of the preferred embodiments of the present invention only, and is not to be construed as limiting the claims. The present invention is not limited to the above embodiments, and the specific structure thereof allows for variations, and in short, all variations within the scope of the independent claims of the present invention are within the scope of the present invention.

Claims (10)

1. The utility model provides a two scraper blade crowded water structures are dragged to flat board which characterized in that: the mop head comprises a base plate, a water squeezing piece and a guide plate, wherein a water squeezing opening is formed in the base plate, the water squeezing piece is arranged on one side of the water squeezing opening, a water squeezing gap is formed between a water squeezing end in the front of the water squeezing piece and the other side of the water squeezing opening, and a mop head can pass through the water squeezing hole back and forth; the guide plate is arranged below the water squeezing piece, the front edge of the guide plate is arranged in a retracting manner relative to the water squeezing end at the front part of the water squeezing piece, and the guide plate extends from high to low in the direction opposite to the water squeezing end at the front part of the water squeezing piece.
2. The twin drag scraper wringing structure of claim 1, wherein: the water squeezing piece is a water squeezing roller or an elastic scraping blade.
3. The twin drag scraper wringing structure of claim 2, wherein: the front end of the elastic scraping blade comprises a guide section from top to bottom or from bottom to top.
4. The twin drag scraper wringing structure of claim 3, wherein: the guide section is an arc section or an inclined straight section.
5. The twin drag scraper wringing structure of claim 4, wherein: elastic gaps for increasing the elastic deformation amount of the elastic scraping blades are formed in two sides of the rear end of each elastic scraping blade, and the guide plates cover the elastic scraping blades and the elastic gaps on the two sides of the elastic scraping blades.
6. The twin drag scraper wringing structure of claim 4, wherein: the elastic scraping blade is characterized in that a reinforcing blocking rib is arranged beside the rear end part of the elastic scraping blade, and the elastic scraping blade is not in contact with the reinforcing blocking rib in a non-deformation state.
7. The twin drag scraper wringing structure of claim 6, wherein: the number of the reinforced blocking ribs is more than two, and the reinforced blocking ribs and the elastic scraping sheets are mutually perpendicular and arranged at intervals.
8. The twin drag scraper wringing structure of claim 4, wherein: the guide plate is clamped on the substrate.
9. The twin drag scraper wringing structure of claim 4, wherein: the front end of the guide plate also comprises a guide section, and the direction of the guide section is consistent with that of the guide section of the elastic scraping blade above the guide plate.
10. The utility model provides a subregion crowded cask which characterized in that: comprising a twin-screed wringing structure according to any of claims 1 to 9.
CN201921539583.XU 2019-09-17 2019-09-17 Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket Active CN211704487U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921539583.XU CN211704487U (en) 2019-09-17 2019-09-17 Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921539583.XU CN211704487U (en) 2019-09-17 2019-09-17 Flat-plate mop double-scraper water squeezing structure and partitioned water squeezing bucket

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CN211704487U true CN211704487U (en) 2020-10-20

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GR01 Patent grant
GR01 Patent grant
CP03 Change of name, title or address

Address after: No. 299 Jinle Road, Hetang District, Zhuzhou City, Hunan Province, 412000

Patentee after: Hunan Haodaughter-in-law Home Furnishings Co.,Ltd.

Country or region after: China

Address before: Room 303, 3rd floor, building 7, Jiade Industrial Park, 158 Jinjing Road, Hetang District, Zhuzhou City, Hunan Province, 412000

Patentee before: Zhuzhou good wife home furnishings Co.,Ltd.

Country or region before: China