CN110693405A - Shaft-rotating type washing water bucket of folding flat mop - Google Patents

Shaft-rotating type washing water bucket of folding flat mop Download PDF

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Publication number
CN110693405A
CN110693405A CN201810742528.4A CN201810742528A CN110693405A CN 110693405 A CN110693405 A CN 110693405A CN 201810742528 A CN201810742528 A CN 201810742528A CN 110693405 A CN110693405 A CN 110693405A
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CN
China
Prior art keywords
flat mop
folding flat
pivoting
washing water
recess
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Granted
Application number
CN201810742528.4A
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Chinese (zh)
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CN110693405B (en
Inventor
丁明哲
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Individual
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Individual
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Priority to CN201810742528.4A priority Critical patent/CN110693405B/en
Priority to PCT/CN2019/092910 priority patent/WO2020011018A1/en
Publication of CN110693405A publication Critical patent/CN110693405A/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L13/00Implements for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L13/10Scrubbing; Scouring; Cleaning; Polishing
    • A47L13/50Auxiliary implements
    • A47L13/58Wringers for scouring pads, mops, or the like, combined with buckets

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  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)

Abstract

The invention relates to a shaft-rotating type washing water bucket of a folding flat mop, which comprises a bucket body and a shaft rotating device, wherein the shaft rotating device is connected to the bottom of the bucket body and is provided with a rotating member and a pair of bearing concave parts, the rotating member rotates relative to the bucket body in a shaft center manner, the pair of bearing concave parts are used for bearing the folded folding flat mop, and when the folding flat mop rotates in a shaft manner, the shaft rotating member is driven by the shaft rotating force of the folding flat mop to enable the shaft rotating device to rotate in the bucket body in a shaft manner.

Description

Shaft-rotating type washing water bucket of folding flat mop
Technical Field
The invention relates to the field of manufacturing of living appliances, in particular to a washing bucket, and particularly relates to a shaft-rotating washing bucket of a folding flat mop.
Background
The folding flat mop T is a new type of mop, as shown in fig. 7, and can be used to prolong the life of the mop by replacing the cleaning member M. The folding flat mop T has the advantage of a larger cleaning member and easier storage than the non-folding disc mop R (shown in fig. 9). Further, the folding type flat mop T can be replaced with the cleaning member M having a lateral width which is much larger than that of the disc type mop as needed, and the cleaning area can be changed and various force application conditions can be changed by replacing the cleaning member M having a different size, for example, a large area cleaning member to save cleaning time or a small area cleaning member to save hand force. As mentioned above, the foldable flat mop T can be more conveniently stored and cleaned in a narrow space under a folded condition. However, in the prior art, there is no washing water tank suitable for the folding flat mop, so as to perform operations of cotton cloth washing and cotton cloth dewatering of the mop head under the condition that a user does not touch the mop head.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provide a shaft-rotating type washing water bucket of a folding flat mop. The cotton cloth cleaning and cotton cloth dewatering operation of the mop head can be carried out under the condition that a user does not need to touch the mop head. Further, the pivoting type washing water tub of the folding flat mop of the present invention can provide the folding flat mop with washing, dehydrating and separating operations of cotton cloth washing and cotton cloth dehydrating of the mop head at different positions (i.e., washing and dehydrating) in the pivoting type washing water tub, respectively, according to the needs of use (e.g., washing and dehydrating).
In order to achieve the above object, the present invention has the following configurations: a barrel body having a bottom; and a rotating device which is jointed at the bottom of the barrel body and is provided with a rotating component and a pair of bearing concave parts, wherein the rotating component rotates around a shaft center relative to the barrel body, the pair of bearing concave parts are used for bearing the folded foldable flat mop, and when the foldable flat mop rotates around the shaft, the rotating component of the rotating device is driven by the rotating force of the foldable flat mop to rotate the rotating device around the shaft in the barrel body.
In the pivoting type washing water tub of the folding flat mop according to an embodiment of the present invention, the pivoting means has a pair of blocking members, each of which is provided around an upper surface of the pivoting means in a spaced manner to form the pair of receiving recesses at the spaced positions.
In an embodiment of the present invention, the pivoting type washing water bucket of the folding flat mop further comprises a frame ring member, the frame ring member is disposed on an upper edge portion of the bucket body, and the frame ring member has a through hole, so that when the folding flat mop extends into the bucket body through the through hole, the folding flat mop is folded and folded by being abutted by the frame ring member.
In the pivoting type washing water tub of the folding flat mop according to an embodiment of the present invention, the pivoting device has a bearing seat body disposed between the pair of blocking members to be displaced relative to the pair of blocking members in a positioning displacement manner.
In the pivot type washing water bucket of the folding flat mop of the embodiment of the invention, each side of the bearing seat body is respectively provided with a displacement concave part, the inner peripheral surface of each blocking component is provided with a positioning concave part, the displacement concave part is jointed with the positioning concave part through a roller body, the positioning concave part is provided with a longitudinal concave part, a guiding concave part, a parking concave part and a resetting guiding concave part which are formed by extending from the longitudinal concave part, the guiding concave part, the parking concave part and the resetting guiding concave part are communicated in sequence, when the bearing seat body is pressed downwards, the roller body moves downwards in the longitudinal concave part to position the bearing seat body at a first positioning position, then the bearing seat body moves upwards along the longitudinal concave part through moving upwards, and moves and positions at the parking concave part through the guiding concave part to position the bearing seat body at a second positioning position, and the bearing seat body is continuously moved to enable the roller body to continuously move downwards from the parking concave part through the reset guide concave part and the longitudinal concave part so as to enable the bearing seat body to be positioned at the first positioning position, and the first positioning position and the second positioning position are circulated.
In the pivoting type washing water tub of the folding flat mop according to an embodiment of the present invention, the pivoting means are plural and coupled to the bottom of the tub, and at least two pivoting means have different heights from each other.
In the pivoting type washing water tub of the folding flat mop according to an embodiment of the present invention, the pivoting devices are spaced apart from each other by a spacer.
In the pivoting type washing water tub of the folding flat mop according to an embodiment of the present invention, the folding flat mop is a synchronous folding flat mop, and the folding flat mop is folded and unfolded by a centrifugal force generated by pivoting when the folding flat mop is separated from the pair of receiving depressions.
With the above technical means, the pivoting type washing water tank of the folding flat mop of the present invention can provide the operation of the folding flat mop to perform the cotton cloth washing and the cotton cloth dewatering of the mop head at different positions (i.e., for example, washing and dewatering) in the pivoting type washing water tank according to the use requirement (for example, washing and dewatering). In addition, the shaft-rotating type washing bucket of the folding flat mop is used for the folding flat mop, so the bucket diameter of the bucket and the whole volume of the bucket can be effectively and greatly reduced, and the effects of saving space and facilitating carrying are achieved.
Drawings
FIG. 1 is a schematic view of an pivoting type washing water tub of a folding flat mop according to an embodiment of the present invention;
FIG. 2a is a schematic view of the pivoting type washing water tub of the folding flat mop according to the embodiment of the present invention when the folding flat mop is placed thereon;
FIG. 2b is a schematic view of the pivoting type washing water tub of the folding flat mop according to the embodiment of the present invention during the washing of the folding flat mop;
FIG. 2c is a schematic view of the pivoting type washing water tub of the folding flat mop according to the embodiment of the present invention in dehydrating the folding flat mop;
FIG. 3 is a schematic view of an pivoting wash water tub of a folding flat mop according to another embodiment of the present invention;
FIG. 4 is a schematic view of a pivoting means of the pivoting type washing water tub of the folding flat mop according to the embodiment of the present invention;
FIG. 5a is a schematic view of a supporting base of a pivoting washing water tank of a folding flat mop according to an embodiment of the present invention, when the supporting base is located at a first location;
FIG. 5b is a schematic view of the supporting base of the pivoting type washing water tank of the folding flat mop according to the embodiment of the present invention being located at a second location;
FIG. 5c is a schematic view of the supporting base of the pivoting type washing water tank of the folding flat mop according to the embodiment of the present invention being returned to the first positioning position;
FIG. 6 is a schematic view of an pivoting type washing tub of a folding flat mop according to still another embodiment of the present invention;
FIG. 7 is a schematic view of a folding flat mop;
FIG. 8 is a schematic view of the folding flat mop when folded and rotated;
fig. 9 is a schematic view of the disc type mop.
Description of reference numerals:
100-shaft rotating type washing water barrel
100a shaft type washing water bucket
100b axle type washing water bucket
1 barrel body
11 bottom part
2-axis rotating device
2a axle rotating device
2b axle rotating device
21-axis rotating member
22a receiving concave part
22b receiving concave part
23a blocking member
23b blocking member
230 positioning recess
231 longitudinal recess
232 guiding recess
233 parking recess
234 reset guide recess
24 bearing seat body
241a nesting part
241b nesting part
242 displacement recess
243 rolling body
3 isolating component
4 frame ring component
41 perforation
M cleaning member
R disc type mop
T-shaped folding flat mop
T1 handle
T11 first handle member
T12 second handle component
T2 rotating member
T3 mop head
P1 first positioning position
P2 second fix position
Detailed Description
In order to more clearly describe the technical content of the present invention, further description is made below with reference to specific embodiments according to fig. 1 to 8.
First, a description will be given of a folding flat mop T used in the present invention, preferably, a simultaneous folding flat mop. In one embodiment, as shown in fig. 8, the folding flat mop T can be folded for folding. As shown in FIG. 8, the foldable flat mop T can be rotated in such a way that the handle T1 of the foldable flat mop T is formed by the mutual engagement of a first handle member T11 at the upper part and a second handle member T12 at the lower part, a rotating member T2 is provided at the joint of the first handle member T11 and the second handle member T12, the rotating member T2 is pressed by the first handle member T11 to rotate the second handle member T12, and the mop head T3 is rotated relative to the first handle member T11 because the mop head T3 is linked to the second handle member T12.
As shown in fig. 1, an pivotable washing water tub 100 of a foldable flat mop according to an embodiment of the present invention includes: a barrel body 1 and a rotating device 2, the barrel body 1 has a bottom 11. The shaft rotating means 2 is coupled to the bottom 11 of the tub 1 through a bearing (not shown) which may be provided in the tub 1 to be coupled with a shaft of the shaft rotating means 2. But the present invention is not limited thereto and the bearing may be provided at the bottom surface of the shaft rotating means 2 to be engaged with a shaft body of the tub 1. In addition, as shown in fig. 1, the pivoting-type washing water tub 100 of the present embodiment further includes a frame ring member 4, the frame ring member 4 is disposed at the upper edge of the tub 1 for preventing water in the tub 1 from splashing, and for preventing water from splashing when the folding flat mop T is used for washing and dewatering. Moreover, the frame ring member 4 has a through hole 41, so that when the foldable flat mop T extends into the barrel 1 through the through hole 41, the foldable flat mop T can be folded by the frame ring member 4.
The shaft rotating device 2 has a rotating member 21 and a pair of receiving recesses 22a, 22b, and the rotating member 21 is rotated about an axis with respect to the tub 1. The pair of receiving recesses 22a, 22b receive the folded flat mop T, and when the flat mop is pivoted, the pivoting member 21 of the pivoting device 2 is driven by the pivoting force of the flat mop T to pivot the pivoting device 2 in the bucket 1, and when the flat mop T is disengaged from the pair of receiving recesses 22a, 22b, the flat mop T is self-folded to be unfolded by the centrifugal force generated by the pivoting.
The pivoting type washing water tub 100 of the folding flat mop of the present invention is to support the folding flat mop T (as shown in fig. 2 a) to perform the inlet washing (as shown in fig. 2 b) and the outlet dewatering (as shown in fig. 2 c) of the folding flat mop T, and to be separated from the pivoting type washing water tub 100 after the inlet washing and the outlet dewatering of the folding flat mop T are completed.
The above-mentioned operation can be performed by providing a single pivoting device in the tub 1 (as shown in fig. 1, 2a, 2b, and 2 c), or by providing two pivoting devices in the tub 1 (as shown in fig. 3). In the pivoting type washing water tub 100a according to another embodiment of the present invention shown in fig. 3, in the case where two pivoting means are provided, one pivoting means 2a (hereinafter, referred to as a first pivoting means) has a shorter height with respect to the other pivoting means 2b (hereinafter, referred to as a second pivoting means) as a means for supporting the folding flat mop T to perform the entry washing of the folding flat mop T, and the second pivoting means has a longer height with respect to the first pivoting means as a means for supporting the folding flat mop T to perform the exit dewatering of the folding flat mop T.
As shown in fig. 1, 3 and 4, the shaft rotation device 2 has a pair of blocking members 23a, 23b, and the blocking members 23a, 23b are provided around the upper surface of the shaft rotation device 2 at intervals to form the pair of receiving recesses 22a, 22b at the intervals. The holding recesses 22a, 22b are used for holding the folding flat mop T, so that the mop head T3 of the folding flat mop T is rotated to drive the pivoting device 2 to pivot, thereby performing washing and dewatering.
As shown in fig. 4, the shaft rotation device 2 has a bearing seat 24, the bearing seat 24 has a pair of engaging portions 241a, 241b, the pair of engaging portions 241a, 241b are engaged with the pair of blocking members 23a, 23b, so that the bearing seat 24 is disposed between the pair of blocking members 23a, 23 b. In the case where a single pivot means is provided in the tub 1, the bearing housing 24 is displaced in a positioning displacement manner with respect to the pair of blocking members 23a, 23 b. The positioning displacement is implemented as follows.
As shown in fig. 4, 5a, 5b and 5c, each side of the bearing seat 24 has a displacement recess 242, the inner peripheral surface of each of the blocking members 23a and 23b has a positioning recess 230, the displacement recess 242 is connected to the positioning recess 230 by a roller 243, the positioning recess 230 has a longitudinal recess 231, and a guiding recess 232, a parking recess 233 and a reset guiding recess 234 formed by extending from the longitudinal recess 231, and the longitudinal recess 231, the guiding recess 232, the parking recess 233 and the reset guiding recess 234 are sequentially communicated. When the loading base 24 is pressed down by the roller 243 in the displacement recess 242, the roller 243 is displaced downward in the longitudinal recess 231 to position the loading base 24 at a first positioning position P1 (as shown in fig. 5 a). Then, the carriage body 24 is moved upward to move the roller 243 upward along the longitudinal recess 231 and to move and position the roller at the parking recess 233 through the guiding recess 232, so that the carriage body 24 is positioned at a second positioning position P2 (as shown in fig. 5 b). Moreover, by continuously moving the loading base 24, the roller 243 is continuously moved downward from the parking recess 233 through the reset guiding recess 234 and the longitudinal recess 231 to return the loading base 24 to the first positioning position P1 (as shown in fig. 5 c), so that the loading base 24 can be cyclically moved and positioned between the first positioning position P1 and the second positioning position P2.
As shown in fig. 6, in an pivoting type washing water tub 100b according to still another embodiment of the present invention, each pivoting means 2a, 2b is spaced apart from each other by a spacer member 3 to perform the entry washing of the folding type flat mop T in the pivoting means 2a in which the height is short and the exit dewatering of the folding type flat mop T in the pivoting means 2b in which the height is long.
With the above structure, the pivoting type washing water bucket of the folding flat mop of the invention can provide the operation that the folding flat mop T carries out cotton cloth washing and cotton cloth dewatering of the mop head T3 at different positions in the pivoting type washing water buckets 100, 100a and 100b respectively according to the use requirements. In addition, the pivoting type washing water buckets 100, 100a and 100b of the folding flat mop are used for the folding flat mop T, so that the bucket diameter and the whole volume of the bucket can be effectively and greatly reduced, and the effects of saving space and facilitating carrying are achieved.
While the foregoing description and description are of the preferred embodiment of the present invention, other modifications will be apparent to those skilled in the art from this description and it is intended that all such modifications be included within the spirit and scope of the present invention.

Claims (8)

1. An axial washing water bucket of a folding flat mop, comprising:
a barrel body having a bottom;
a shaft rotating device coupled to the bottom of the tub, the shaft rotating device having a shaft rotating member and a pair of receiving recesses, the shaft rotating member being axially rotated with respect to the tub at an axial center,
the pair of bearing concave parts are used for bearing the folded folding flat mop, and when the folding flat mop is pivoted, the pivoting member of the pivoting device is driven by the pivoting force of the folding flat mop to enable the pivoting device to pivot in the bucket body.
2. An pivotable washing water container for a folding flat mop as claimed in claim 1 wherein said pivoting means has a pair of blocking members, each of said blocking members being spaced from each other around the upper surface of said pivoting means to form said pair of receiving recesses at the spaced locations.
3. The pivoting-type washing water tub for a folding flat mop as claimed in claim 1, further comprising a frame ring member provided at an upper edge of the tub body, the frame ring member having a through hole for allowing the folding flat mop to be folded and collapsed by being abutted by the frame ring member when the folding flat mop is inserted into the tub body through the through hole.
4. An pivoting washing water tub for a folding flat mop as claimed in claim 2, wherein the pivoting means has a bearing seat body disposed between the pair of blocking members to be displaced in a positioning displacement manner with respect to the pair of blocking members.
5. An axial washing water tank for a folding flat mop as claimed in claim 3, wherein each side of the holder body has a displacement recess, the inner circumferential surface of each blocking member has a positioning recess, the displacement recess is engaged with the positioning recess by a roller, the positioning recess has a longitudinal recess and a guide recess, a parking recess and a returning guide recess formed by extending from the longitudinal recess, the guide recess, the parking recess and the returning guide recess are sequentially communicated,
when the bearing seat body is pressed down, the roller body moves downwards in the longitudinal concave part to position the bearing seat body at a first positioning position, then the bearing seat body is moved upwards by moving the bearing seat body so that the roller body moves upwards along the longitudinal concave part and is positioned at the parking concave part by moving the roller body through the guide concave part so that the bearing seat body is positioned at a second positioning position, and the bearing seat body is moved continuously so that the roller body continues to move downwards from the parking concave part through the reset guide concave part and the longitudinal concave part so that the bearing seat body returns to be positioned at the first positioning position, and the circulation is realized between the first positioning position and the second positioning position.
6. The pivoting type washing water tub for a folding flat mop as claimed in claim 1, wherein said pivoting means are plural and coupled to said bottom of said tub, and at least two of said pivoting means are different in height from each other.
7. An pivotable washing water container for a folding flat mop according to claim 5 wherein said pivoting means are spaced apart by a spacer.
8. The pivoting type washing water tub of a folding flat mop as claimed in claim 1, wherein the folding flat mop is a simultaneous folding flat mop, and when the folding flat mop is separated from the pair of receiving recesses, the folding flat mop is self-folded to be unfolded by a centrifugal force generated by pivoting.
CN201810742528.4A 2018-07-09 2018-07-09 Shaft-rotating type washing water bucket of folding flat mop Active CN110693405B (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201810742528.4A CN110693405B (en) 2018-07-09 2018-07-09 Shaft-rotating type washing water bucket of folding flat mop
PCT/CN2019/092910 WO2020011018A1 (en) 2018-07-09 2019-06-26 Axial rotation-type cleaning water bucket of folding flat mop

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810742528.4A CN110693405B (en) 2018-07-09 2018-07-09 Shaft-rotating type washing water bucket of folding flat mop

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CN110693405A true CN110693405A (en) 2020-01-17
CN110693405B CN110693405B (en) 2021-06-25

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WO (1) WO2020011018A1 (en)

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JP2022187780A (en) 2021-06-08 2022-12-20 トヨタ自動車株式会社 Multi-agent simulation system and multi-agent simulation method

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JP2011125475A (en) * 2009-12-17 2011-06-30 Interport International Kk Draining device of mop
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WO2020011018A1 (en) 2020-01-16

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