WO2023011061A1 - 一种清洁桶及其清洁套装 - Google Patents
一种清洁桶及其清洁套装 Download PDFInfo
- Publication number
- WO2023011061A1 WO2023011061A1 PCT/CN2022/102572 CN2022102572W WO2023011061A1 WO 2023011061 A1 WO2023011061 A1 WO 2023011061A1 CN 2022102572 W CN2022102572 W CN 2022102572W WO 2023011061 A1 WO2023011061 A1 WO 2023011061A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- cleaning
- water
- bucket
- area
- barrel
- Prior art date
Links
- 238000004140 cleaning Methods 0.000 title claims abstract description 107
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 156
- 238000005086 pumping Methods 0.000 claims abstract description 26
- 238000005192 partition Methods 0.000 claims abstract description 15
- 230000004888 barrier function Effects 0.000 claims description 13
- 238000002347 injection Methods 0.000 claims description 3
- 239000007924 injection Substances 0.000 claims description 3
- 239000010865 sewage Substances 0.000 abstract description 12
- 238000000034 method Methods 0.000 description 14
- 239000004744 fabric Substances 0.000 description 7
- 238000009434 installation Methods 0.000 description 5
- 238000010586 diagram Methods 0.000 description 3
- 238000007790 scraping Methods 0.000 description 3
- 238000000926 separation method Methods 0.000 description 3
- 239000000243 solution Substances 0.000 description 2
- 238000005202 decontamination Methods 0.000 description 1
- 230000003588 decontaminative effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000013589 supplement Substances 0.000 description 1
- 238000005406 washing Methods 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/50—Auxiliary implements
- A47L13/58—Wringers for scouring pads, mops, or the like, combined with buckets
Definitions
- the utility model belongs to the technical field of cleaning tools, and relates to a cleaning barrel and a cleaning suit thereof.
- the existing cleaning tools When the existing cleaning tools are cleaned, clean water is used for cleaning at the beginning. As the cleaning process proceeds, the clean water becomes sewage, and the sewage and clean water cannot be separated, so as the cleaning process proceeds, the mop bucket The water is becoming more and more dirty, and the effect of continuous cleaning cannot be achieved. The water can only be poured out. Now the cleaning bucket is usually used, but the existing cleaning and separation buckets have at least two buckets, the clean water bucket and the sewage bucket, and they are independent. disassembly.
- the purpose of the utility model is to solve the above-mentioned problems in the existing technology, and propose an integrated cleaning and separation bucket that does not need to be disassembled.
- a cleaning bucket including a bucket body, a barrier is provided in the bucket, and the barrier blocks the water storage space in the bucket into a clear water area and the cleaning area
- the barrel body is also provided with a pumping mechanism, the water inlet end of the pumping mechanism communicates with the clean water area, and the water outlet end communicates with the cleaning area.
- Cover plate described cover plate (22) staving is divided into clean water area and cleaning area.
- the water storage space in the barrel is horizontally separated from the clean water area and the cleaning area by setting a barrier, so that the clean water area and the cleaning area are designed in one piece, so that the barrel can independently store clean water and sewage with only one barrel, and No disassembly is required, reducing the cost and labor of disassembly when two barrels are required.
- the barrier further includes a partition arranged at the bottom of the barrel, and the cover, the partition and the barrel form the above-mentioned clean water area.
- the setting of the cover plate makes the top of the clean water area closed, which can effectively prevent the dirty water in the cleaning area from splashing from the top into the clean water area during the cleaning process of the mop, thereby causing the clean water in the clean water area to be polluted.
- the cover plate is bent to form the space for space.
- the setting of the step-off space is used to accommodate and place the mop to be cleaned, so that the space in the cleaning area is larger than the clean water area, so that more dirty water can be stored in the cleaning area.
- the bottom of the cover plate is inclined. It is convenient to clean the components.
- the sewage after cleaning flows into the bottom of the cleaning area through the inclined cover plate to prevent the sewage from accumulating in the space.
- a water injection hole for injecting clean water into the clean water area is opened on the cover plate.
- the pumping mechanism pumps clean water from the clean water area to the bottom of the mop, so that the clean water in the clean water area is continuously reduced. Fill with water.
- the cover plate is clamped to the side of the bucket body through the wrapping provided on its side.
- the cleaning plate can be quickly installed and disassembled, and it is convenient to treat the water in the clean water area and the washing area after disassembly.
- the pumping mechanism includes a water collecting cylinder arranged in the barrel and an upper shaft rotatably connected to the barrel, and the lower side of the upper shaft has a lower shaft rotatably connected to the barrel , the upper shaft is connected with a water intake plate, the water intake plate is arranged in a spiral shape, and a clutch mechanism is connected between the upper shaft and the water intake plate to separate or combine the upper shaft and the water intake plate.
- the clutch mechanism includes two ring gears respectively arranged on the lower end of the upper shaft and the upper end of the lower shaft, the two ring gears can be meshed and connected, and the clutch mechanism also includes a lifting column , the lifting column is hollow and is slidably connected to the water collecting cylinder, the upper shaft is arranged on the top of the lifting column and extends into the water collecting cylinder, and the lower shaft is located in the water collecting cylinder.
- the outer surface of the lifting column is provided with a clamping mechanism, and the clamping mechanism includes a ferrule located on the outside of the lifting column and slidably connected with the lifting column.
- the outer surface is provided with a sliding track, and the sliding track is provided with an upper contact surface and a lower contact surface.
- the abutting block in the track, the abutting block can be abutted against the upper abutment surface and the lower abutment surface.
- Another purpose of the present utility model is to provide a cleaning suit applied to a cleaning bucket, including a cleaning bucket and a cleaning tool.
- the cleaning component inside the bucket of the cleaning bucket is located above the pumping mechanism and can clean the cleaning tool. .
- the cleaning assembly includes a mounting frame arranged on the side of the pumping mechanism, and the mounting frame is provided with a cleaning roller that can rotate around its own central axis.
- the utility model horizontally blocks the clean water area and the cleaning area in the water storage space in the barrel body by setting barriers, so that the clean water area and the cleaning area are designed in one piece, so that the barrel body only needs one barrel Clean water and sewage can be stored independently without disassembly and assembly, reducing the cost and labor of disassembly and assembly when two buckets are required.
- Fig. 1 is the three-dimensional structure schematic diagram of the present utility model
- Fig. 2 is a sectional view of the utility model
- Fig. 3 is a schematic view of the barrel structure of the utility model
- Fig. 4 is a schematic diagram of the overall structure of the utility model
- Fig. 5 is a schematic structural view of the lifting column
- Fig. 6 is a schematic diagram of the connection between the upper shaft and the lower shaft.
- the cleaning barrel includes a barrel body 1, and a barrier 2 is arranged in the barrel body 1, and the barrier 2 blocks the water storage space in the barrel body 1 Form a clear water area 11 and a cleaning area 12, and the water storage space in the barrel body 1 is horizontally separated from the clear water area 11 and the cleaning area 12 by setting the barrier 2, so that the clear water area 11 and the cleaning area 12 are designed in an integrated manner, so that the barrel Body 1 only needs one bucket to store clean water and sewage independently, and does not need to be disassembled, which reduces the cost and labor of disassembling and assembling when two buckets are needed.
- the barrier 2 includes a partition 21 arranged at the bottom of the barrel body 1 and a cover plate 22 arranged on the barrel body 1 , and the cover plate 22 , the partition plate 21 and the barrel body 1 form the above-mentioned clear water area 11 .
- the setting of the cover plate 22 makes the top of the clean water area 11 closed, which can effectively prevent the dirty water in the cleaning area 12 from splashing into the clean water area 11 from the top during the cleaning process of the mop, thereby causing the clean water in the clean water area 11 to be polluted.
- a space 4 is provided above the clean water area 11, and the cover plate 22 is bent to form the space 4 above.
- the setting of make way space 4 is used for accommodating and placing mop to be cleaned, makes the space in the cleaning area 12 greater than the clear water area 11, makes more dirty water can be stored in the cleaning area 12.
- the bottom of the cover plate 22 is inclined. It is convenient for the sewage cleaned by the cleaning unit 7 to flow into the bottom of the cleaning area 12 through the inclined cover plate 22 to prevent the sewage from accumulating in the abdication space 4 .
- a water injection hole 5 for injecting clean water into the clean water area 11 is provided on the cover plate 22 .
- the pumping mechanism 3 pumps clear water into the bottom of the mop from the clear water area 11, so that the clear water in the clear water area 11 is continuously reduced. Continue to inject clean water in the clean water zone 11 .
- the cover plate 22 is clamped to the side of the bucket body 1 through the wrapping 6 provided on its side.
- the cleaning tray can be installed and disassembled quickly, and the water in the clean water area 11 and the cleaning area 12 can be easily treated after disassembly.
- the partition plate 21 is provided with an arc-shaped portion 8 closely attached to the surface of the pumping mechanism 3 .
- the arc portion 8 is in close contact with the surface of the pumping mechanism 3, which can increase the contact area between the pumping mechanism 3 and the partition plate 21, thereby reducing the vibration generated by the pumping mechanism 3 when starting, and improving the cleaning efficiency of the decontamination body. Barrel overall stability.
- the bottom of the clean water area 11 is provided with a mounting plate 9 for installing the pumping mechanism 3.
- the mounting plate 9 is provided with an arc-shaped groove 10 for clamping the pumping mechanism 3.
- the pumping mechanism 3 is fixed to the mounting plate 9 by bolts.
- the arc-shaped groove 10 is used to clamp the bottom of the pumping mechanism 3, and plays a positioning role for the pumping mechanism 3, so that it only needs to snap its bottom into the arc-shaped groove 10 during installation, and fix it by bolts , so as to realize the rapid installation of the pumping mechanism 3 .
- the barrel body 1 is also provided with a water pump mechanism 3, the water pump mechanism 3 includes a water collecting cylinder 16 arranged in the barrel body 1 and an upper shaft 19 rotatably connected to the barrel body 1, and the clutch mechanism is arranged on the upper shaft 19 and the lower shaft 20, the water intake plate 18 is fixedly connected with the lower shaft 20.
- the water pump mechanism 3 includes a water collecting cylinder 16 arranged in the barrel body 1 and an upper shaft 19 rotatably connected to the barrel body 1, and the clutch mechanism is arranged on the upper shaft 19 and the lower shaft 20, the water intake plate 18 is fixedly connected with the lower shaft 20.
- the upper shaft 19 is connected with a water intake plate 18, the bottom of the water collection cylinder 16 is provided with a water inlet 14, the water intake plate 18 is located in the water collection cylinder 16, the water intake plate 18 is spirally arranged, and the upper shaft 19 is connected with the water intake plate 18.
- the lower side of the upper shaft 19 has a lower shaft 20 that is rotatably connected to the barrel body 1.
- the upper shaft 19 can move up and down along its axial direction.
- the upper shaft 19 is positioned at the lower side to abut against the lower shaft 20 and is clamped together with the lower shaft 20.
- the rotation of the upper shaft 19 drives the rotation of the lower shaft 20 so that the water flows upward.
- the upper shaft 19 is located at the upper side and is disconnected from the lower shaft 20. At this time, the rotation of the upper shaft 19 will not drive the lower shaft 20 to rotate.
- the clutch mechanism includes two ring gears 21 respectively arranged on the lower end of the upper shaft 19 and the upper end of the lower shaft 20.
- the two ring gears 21 can be meshed and connected.
- the rings 21 are embedded into each other to form a clamping connection.
- Clutch mechanism also comprises lifting column 23, and lifting column 23 is hollowly arranged and is slidably connected with water collection cylinder 16, and upper shaft 19 is arranged in the top of lifting column 23 and extends into water collection cylinder 16, and lower shaft 20 is in water collection cylinder 16.
- the water collecting cylinder 16 acts as a baffle plate and a water outlet channel, and the outer end surface of the water collecting plate 18 is in contact with the inner wall of the water collecting cylinder 16.
- the water is pushed upward by the spiral structure of the water collecting plate 18, And water flows into the water collecting tube 16 from the bottom of the water collecting tube 16 through the water inlet 14 .
- the upper shaft 19 is detached from and connected to the lower shaft 20 by lifting the lifting column 23 up and down.
- the outer surface of the lifting column 23 is provided with a clamping mechanism, and the clamping mechanism includes a ferrule 28 which is located on the outside of the lifting column 23 and is slidably connected with the lifting column 23.
- the outer surface of the lifting column 23 is provided with a sliding track, and the sliding track is provided with an upper
- the abutment surface 29 and the lower abutment surface 30, the upper abutment surface 29 and the lower abutment surface 30 are connected by a connecting channel 31, and the inner wall of the ferrule 28 is provided with an abutment block 32 which slides in the sliding track, and the abutment block 32 can be abutted against the upper abutment surface 29 and the lower face 30 upper.
- the lifting column 23 and the ferrule 28 are clamped together by the clamping mechanism, thereby restricting the lifting column 23 to prevent it from moving up and down during work .
- the connecting channel 31 is arranged obliquely, and the upper abutting surface 29 and the lower abutting surface 30 are respectively located at the upper end and the lower end of the connecting channel 31 .
- the lifting column 23 moves downward with the upper shaft 19, so that the contact block 32 slides on the connecting channel 31, and the lifting column 23 is rotated during the sliding process.
- the contact block 32 is in contact with the upper contact surface 29, and then the lifting column 23 is slightly rotated so that the contact block 32 is on the upper contact surface 29 Sliding up and sliding the resisting block 32 into the lifting column 23 to form a locking connection with the lifting column 23 .
- the lifting column 23 moves upward with the upper shaft 19, so that the contact block 32 slides on the connecting channel 31, and the lifting column 23 is rotated during the sliding process.
- the contact block 32 is in contact with the lower contact surface 30, and then the lifting column 23 is slightly rotated so that the contact block 32 is on the lower contact surface 30 Slide and make the resisting block 32 slide into the lifting column 23 to form a locking connection with the lifting column 23 .
- the upper shaft 19 is rotatably connected with the lifting column 23, and when the upper shaft 19 is working, no matter whether the upper shaft 19 is in the cleaning state or the scraping state, its rotation direction is the same as the direction in which the block 32 extends into the lifting column 23, The abutment block 32 will not be disconnected from the upper abutment surface 29 or the lower abutment surface 30 , and the abutment block 32 is always engaged with the lifting column 23 .
- the upper end of the lifting column 23 is also protrudingly provided with a mop clip joint 24 , and the mop clip joint 24 is coaxially arranged with the upper shaft 19 .
- the barrel body 1 of the cleaning bucket is positioned at the top of the water pumping mechanism 3 and is provided with a cleaning assembly 7 that can clean the cleaning tool.
- a cleaning roller 72 that rotates about its own central axis.
- the rotational power of the upper shaft 19 comes from the inside of the mop, and the mop head rotates so that Upper shaft 19 rotates.
- the rotation of the mop cloth head can be the mode of manually rotating the mop, and a rotating motor connected with the mop cloth head can also be arranged in the mop.
- the top of the lifting column 23 is provided with a shelving tray 25, and the mop clip joint 24 and the upper shaft 19 are respectively arranged on the upper end surface and the lower end surface of the shelving tray 25.
- the shape of the water outlet 13 is curved, and the outlet of the water outlet 13 is arranged horizontally as much as possible, so that the water can be sprayed to the outer end of the mop head when it flows out of the water outlet 13 .
- the upper shaft 19 is provided with a coaxial slot 26
- the lower shaft 20 is provided with a coaxial rod 27 slidably connected with the coaxial slot 26 .
- the moving direction of the upper shaft 19 can be limited by the coaxial rod 27 sliding in the coaxial groove 26, which is convenient for cooperation and more stable in structure.
- the mop clip joint 24 is fixedly connected with the upper shaft 19, and the upper shaft 19 is slidingly connected with the shelving tray 25.
- the lower end surface of the shelving tray 25 is provided with several buckle rods 35.
- the buckle rods 35 have deformability, and the upper shaft 19 is A plurality of buckle slots 36 corresponding to the buckle rods 35 are provided, and the buckle rods 35 extend into the corresponding buckle slots 36 and form a snap connection with them.
- the upper shaft 19 can be taken out, which is convenient for disassembly and installation, and when the connection part of the upper shaft 19 and the lower shaft 20 is damaged, it is convenient to replace it.
- the working principle of this utility model is as follows: place the mop on the lifting column 23 and form a clamping connection with the mop clamp joint 24, press the mop down with your hand, so that the lifting column 23 moves downward with the upper shaft 19, so that the block 32 Sliding on the connecting channel 31, the lifting column 23 will rotate during the sliding process.
- the lifting column 23 moves to the lower limit position and the upper shaft 19 and the lower shaft 20 are meshed and connected, at this time, the contact block 32 and the upper shaft
- the abutting surface 29 is in contact with each other, and then the lifting column 23 is rotated slightly to make the abutting block 32 slide on the upper abutting surface 29 and slide the abutting block 32 into the lifting column 23 to form a clamping connection with the lifting column 23.
- the upper shaft 19 and the lower shaft 20 is meshed and connected and is in the cleaning state.
- the rotation of the mop cloth head makes the upper shaft 19 rotate with the lower shaft 20, and the rotation of the water intake plate 18 drives the water to flow upward in a spiral, so that the water is splashed on the mop, and the mop head is passed through the cleaning assembly 7. Clean up.
- the water after cleaning can automatically flow into the second water outlet area from the cover plate 22, thereby realizing the automatic separation of cleaning and dirt.
- the block 32 slides on the connecting channel 31, and the lifting column 23 will rotate during the sliding process. When the lifting column 23 moves to the upper limit position and the upper shaft 19 is disconnected from the lower shaft 20, at this time, the block 32 and the lower shaft 20 are disconnected.
- the lower abutment surface 30 is offset, and then the lifting column 23 is rotated slightly to make the abutment block 32 slide on the lower abutment surface 30 and slide the abutment block 32 into the lifting column 23 to form a clamping connection with the lifting column 23.
- the upper shaft 19 and the lower shaft 20 is disconnected, and the mop cloth head will not make the water flow upwards when the mop cloth head is rotated, and the mop cloth head is wiped dry by the wiper part.
- the utility model horizontally blocks the clear water area 11 and the cleaning area 12 in the water storage space in the barrel body 1 by setting the barrier 2, so that the clear water area 11 and the cleaning area 12 are designed in one piece, so that the The bucket body 1 only needs one bucket to store clean water and sewage independently, and does not need to be disassembled, which reduces the cost and labor of disassembling and assembling when two buckets are needed.
Landscapes
- Cleaning By Liquid Or Steam (AREA)
- Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
Abstract
一种清洁桶及其清洁套装,清洁桶包括桶体(1),桶体(1)内设有隔挡物(2),隔挡物(2)将桶体(1)内的储水空间阻隔成清水区(11)和清洗区(12),桶体(1)内还设有泵水机构(3),泵水机构(3)进水端与清水区(11)相通,出水端与清洗区(12)相通,本清洁桶通过设置隔挡物(2)将桶体(1)内的储水空间水平阻隔为清水区(11)和清洗区(12),使清水区(11)与清洗区(12)呈一体式设计,使得该桶体(1)仅需一个桶即可对清水和污水进行独立存储,且无需拆装,减少需要两个桶时的成本和拆装劳动力。
Description
本实用新型属于清洁工具技术领域,涉及一种清洁桶及其清洁套装。
现有的清洁工具在进行清洗时,最开始清洗采用的是清水,随着清洗过程的进行,清水变成污水,而污水与清水之间无法分离,从而随着清洗过程的进行,拖把桶中的水越来越脏,无法达到继续清洗的效果,只能将水倒掉现在通常使用清洁桶,但是现有的清污分离水桶,至少存在2个桶,清水桶和污水桶且各自独立,需要拆装。
实用新型内容
本实用新型的目的是针对现有的技术存在上述问题,提出了一种无需拆装的一体式清污分离水桶。
本实用新型的目的可通过下列技术方案来实现:一种清洁桶,包括桶体,所述的桶体内设有隔挡物,所述的隔挡物将桶体内的储水空间阻隔成清水区和清洗区,所述的桶体内还设有泵水机构,所述的泵水机构进水端与清水区相通,出水端与清洗区相通,所述的隔档物包括设置于桶体上的盖板,所述的盖板(22)将桶体分为清水区和清洗区。
通过设置隔挡物将桶体内的储水空间水平阻隔清水区和清洗区,使清水区与清洗区呈一体式设计,使得该桶体仅需一个桶即可对清水和污水进行独立存储,且无需拆装,减少需要两个桶时的成本和拆装劳动力。
在上述的一种清洁桶中,所述的隔挡物还包括设置在桶体底部的隔板,所述的盖板、隔板与桶体形成上述清水区。盖板的设置使得清水区的顶部封闭,能够有效防止拖布在清洗过程中,清洗区内的脏水从顶部溅射至清水区内,从而导致清水区内的清水受到污染。
在上述的一种清洁桶中,所述的清水区上方设有让位空间,所述的盖板经弯折形成上述让位空间。让位空间的设置用于容纳放置待清洗拖布,使清洗区内的空间大于清水区,使清洗区内能够储存更多的脏水。
在上述的一种清洁桶中,所述的盖板底部呈倾斜设置。方便清洗组件清洗 后的污水经由倾斜的盖板流入清洗区底部,防止污水囤积于让位空间内。
在上述的一种清洁桶中,所述的盖板上开设有将清水注入清水区的注水孔。该桶在清洗过程中,泵水机构将清水从清水区抽入至拖把的底部,使清水区中的内的清水不断减少,注水孔的设置能够使工作人员从注水孔对清水区内进行持续注入清水。
在上述的一种清洁桶中,所述盖板通过设置在其侧部的包边卡接于桶体的侧边。通过将隔板采用包边的方式卡接在桶体的侧边,能够使清洗盘进行快速的安装和拆卸,拆卸后便于对清水区和清洗区内的水进行处理。
在上述的一种清洁桶中,所述的泵水机构包括设置在桶体内的聚水筒和转动连接于桶体内的上轴,所述的上轴的下侧具有与桶体转动连接的下轴,所述的上轴连接有取水板,所述的取水板呈螺旋状设置,所述的上轴与取水板之间连接有能使上轴与取水板分离或结合的离合机构。
在上述的一种清洁桶中,所述的离合机构包括两圈分别设置在上轴的下端和下轴的上端的齿圈,两圈齿圈能啮合连接,所述的离合机构还包括升降柱,所述的升降柱中空设置且与聚水筒滑动连接,所述的上轴设置在升降柱的顶部内且延伸至聚水筒内,所述的下轴位聚水筒内。
在上述的一种清洁桶中,所述的升降柱外表面设有卡接机构,所述的卡接机构包括位于升降柱的外侧且与升降柱滑动连接的套圈,所述的升降柱的外表面设有滑行轨道,所述的滑行轨道上设有上抵面和下抵面,所述的上抵面和下抵面通过连接通道相连,所述的套圈内壁上设有滑动于滑行轨道内的抵块,所述的抵块可抵在上抵面和下抵面上。
本实用新型的另一目的在于提供一种应用于清洁桶的清洁套装,包括清洁桶和清洁工具,所述的清洁桶的桶体内位于泵水机构上方设有可对清洁工具进行清洗的清洗组件。
清洗组件包括设置在泵水机构侧部的安装架,所述的安装架上设有可绕其自身中轴线转动的清洁辊。
与现有技术相比,本实用新型通过设置隔挡物将桶体内的储水空间水平阻隔清水区和清洗区,使清水区与清洗区呈一体式设计,使得该桶体仅需一个桶即可对清水和污水进行独立存储,且无需拆装,减少需要两个桶时的成本和拆 装劳动力。
图1是本实用新型的立体结构示意图;
图2是本实用新型的剖视图;
图3是本实用新型的桶体结构示意图;
图4是本实用新型整体结构示意图;
图5是升降柱的结构示意图;
图6是上轴与下轴连接的示意图。
图中,1、桶体;11、清水区;12、清洗区;2、隔挡物;21、隔板;22、盖板;3、泵水机构;4、让位空间;5、注水孔;6、包边;7、清洗组件;71、安装架;72、清洁辊;8、弧形部;9、安装盘;10、弧形槽;13、出水口;14、进水口;16、聚水筒;18、取水板;19、上轴;20、下轴;21、齿圈;23、升降柱;24、拖把卡接头;25、搁置盘;26、同轴槽;27、同轴杆;28、套圈;29、上抵面;30、下抵面;31、连接通道;32、抵块;35、卡扣杆;36、卡扣槽。
以下是本实用新型的具体实施例并结合附图,对本实用新型的技术方案作进一步的描述,但本实用新型并不限于这些实施例。
如图1至图6所示,一种清洁桶及其清洁套装,清洁桶包括桶体1,桶体1内设有隔挡物2,隔挡物2将桶体1内的储水空间阻隔成清水区11和清洗区12,通过设置隔挡物2将桶体1内的储水空间水平阻隔清水区11和清洗区12,使清水区11与清洗区12呈一体式设计,使得该桶体1仅需一个桶即可对清水和污水进行独立存储,且无需拆装,减少需要两个桶时的成本和拆装劳动力。
隔挡物2包括设置在桶体1底部的隔板21和设置在桶体1上的盖板22,盖板22、隔板21与桶体1形成上述清水区11。盖板22的设置使得清水区11的顶部封闭,能够有效防止拖布在清洗过程中,清洗区12内的脏水从顶部溅射至清水区11内,从而导致清水区11内的清水受到污染。
清水区11上方设有让位空间4,盖板22经弯折形成上述让位空间4。让位空间4的设置用于容纳放置待清洗拖布,使清洗区12内的空间大于清水区 11,使清洗区12内能够储存更多的脏水。
盖板22底部呈倾斜设置。方便清洗组件7清洗后的污水经由倾斜的盖板22流入清洗区12底部,防止污水囤积于让位空间4内。
盖板22上开设有将清水注入清水区11的注水孔5。该桶在清洗过程中,泵水机构3将清水从清水区11抽入至拖把的底部,使清水区11中的内的清水不断减少,注水孔5的设置能够使工作人员从注水孔5对清水区11内进行持续注入清水。
盖板22通过设置在其侧部的包边6卡接于桶体1的侧边。通过将隔板21采用包边6的方式卡接在桶体1的侧边,能够使清洗盘进行快速的安装和拆卸,拆卸后便于对清水区11和清洗区12内的水进行处理。
隔板21上设置有沿泵水机构3表面紧贴的弧形部8。弧形部8与泵水机构3的表面紧贴,能够增加泵水机构3与隔板21之间的接触面积,从而减小泵水机构3在启动时产生的震动,提高该清污分体桶整体稳定性。
清水区11的底部设置有用于安装泵水机构3的安装盘9,安装盘9上设置有用于卡接泵水机构3的弧形槽10,泵水机构3通过螺栓固定于安装盘9。弧形槽10用于卡接泵水机构3的底部,对泵水机构3起到定位作用,使其在安装时只需将其底部卡入弧形槽10内,并通过螺栓将其进行固定,从而实现对泵水机构3的快速安装。
桶体1内还设有泵水机构3,泵水机构3包括设置在桶体1内的聚水筒16和转动连接于桶体1内的上轴19,离合机构设置在上轴19与下轴20上,取水板18与下轴20固定连接。
上轴19连接有取水板18,聚水筒16的底部设有进水口14,取水板18位于聚水筒16内,取水板18呈螺旋状设置,上轴19与取水板18之间连接有能使上轴19与取水板18分离或结合的离合机构。
上轴19的下侧具有与桶体1转动连接的下轴20,在本实用新型中,上轴19能沿着其轴向上下移动。在清洗拖把时,上轴19位于下侧位置与下轴20相抵且与下轴20卡接在一起,上轴19的转动带动下轴20转动从而使水向上流动。在刮擦拖把时,上轴19位于上侧位置与下轴20脱离连接,此时上轴19的转动不会带动下轴20转动。
离合机构包括两圈分别设置在上轴19的下端和下轴20的上端的齿圈21,两圈齿圈21能啮合连接,在本实用新型中,通过上轴19和下轴20两圈齿圈21相互嵌入形成卡接。
离合机构还包括升降柱23,升降柱23中空设置且与聚水筒16滑动连接,上轴19设置在升降柱23的顶部内且延伸至聚水筒16内,下轴20位聚水筒16内。
在本实用新型中,聚水筒16起到挡板以及出水通道,取水板18的外端面与聚水筒16内壁相抵,在取水板18转动过程中,通过取水板18的螺旋结构将水向上推动,且水通过进水口14从聚水筒16的底部流入聚水筒16内。此外,上轴19通过升降柱23的升降来实现与下轴20的脱离和连接。
升降柱23外表面设有卡接机构,卡接机构包括位于升降柱23的外侧且与升降柱23滑动连接的套圈28,升降柱23的外表面设有滑行轨道,滑行轨道上设有上抵面29和下抵面30,上抵面29和下抵面30通过连接通道31相连,套圈28内壁上设有滑动于滑行轨道内的抵块32,抵块32可抵在上抵面29和下抵面30上。
在本实用新型中,在上轴19与下轴20连接与脱离时,都通过卡接机构使升降柱23和套圈28卡接在一起,从而限制住升降柱23防止其在工作时上下移动。连接通道31呈倾斜设置,上抵面29和下抵面30分别位于连接通道31的上端和下端。在使上轴19和下轴20连接的过程中,升降柱23带着上轴19向下移动,使抵块32在连接通道31上滑动,在滑动过程中会使升降柱23旋转,当升降柱23移动至下侧极限位置并使上轴19与下轴20啮合连接后,此时,抵块32与上抵面29相抵,接着轻微旋转升降柱23,使抵块32在上抵面29上滑动并使抵块32滑入升降柱23内与升降柱23形成卡接。在使上轴19和下轴20脱离连接的过程中,升降柱23带着上轴19向上移动,使抵块32在连接通道31上滑动,在滑动过程中会使升降柱23旋转,当升降柱23移动至上侧侧极限位置并使上轴19与下轴20脱离连接后,此时,抵块32与下抵面30相抵,接着轻微旋转升降柱23,使抵块32在下抵面30上滑动并使抵块32滑入升降柱23内与升降柱23形成卡接。此外,上轴19与升降柱23转动连接,并且在上轴19工作时,不管上轴19处于清洗状态或刮干状态,其转动方向都与抵块32延 伸入升降柱23内的方向相同,使抵块32不会与上抵面29或下抵面30脱离连接,始终使抵块32与升降柱23形成卡接。
升降柱23的上端还凸设有拖把卡接头24,拖把卡接头24与上轴19同轴设置。
清洁桶的桶体1内位于泵水机构3上方设有可对清洁工具进行清洗的清洗组件7,清洗组件7包括设置在泵水机构3侧部的安装架71,安装架71上设有可绕其自身中轴线转动的清洁辊72。
在本实用新型中,在对拖把清洗和刮干时,将拖把放置与升降柱23上且与拖把卡接头24形成卡接,上轴19的转动动力来自于拖把内,拖把布头进行转动从而使上轴19转动。拖把布头的转动可以是手动转动拖把的方式,也可以在拖把内设置有与拖把布头连接的转动电机。
升降柱23的顶部设有搁置盘25,拖把卡接头24和上轴19分别设置在搁置盘25的上端面和下端面,拖把卡接头24的外侧设有一圈由若干个出水口13组成且设置在搁置盘25上的出水圈。
在本实用新型中,在进行清洗工作时,聚水筒16内的水随着取水板18的转动向上流动,并通过出水口13流出并被泼在拖把布头上。
可优选的,出水口13的形状呈弯曲设置,出水口13的出口尽可能的呈水平设置,使水在流出出水口13时能喷射至拖把布头的外端。
上轴19内设有同轴槽26,下轴20设有与同轴槽26滑动连接的同轴杆27。
在本实用新型中,通过同轴杆27在同轴槽26内滑动的方式,能够限制上轴19的移动方向,方便配合且结构更加稳定。
拖把卡接头24和上轴19固定连接,且上轴19与搁置盘25滑动连接,搁置盘25的下端面设有若干个卡扣杆35,卡扣杆35具有形变能力,且上轴19上设有若干个与卡扣杆35一一对应的卡扣槽36,卡扣杆35延伸入对应的卡扣槽36内且与其形成卡接。
在本实用新型中,能够将上轴19取出,方便拆卸安装,且当上轴19和下轴20的联机部位损坏时,方便对其进行替换。
该实用新型的工作原理为:将拖把放置与升降柱23上且与拖把卡接头24形成卡接,用手将拖把向下压,使升降柱23带着上轴19向下移动,使抵块32 在连接通道31上滑动,在滑动过程中会使升降柱23旋转,当升降柱23移动至下侧极限位置并使上轴19与下轴20啮合连接后,此时,抵块32与上抵面29相抵,接着轻微旋转升降柱23,使抵块32在上抵面29上滑动并使抵块32滑入升降柱23内与升降柱23形成卡接,此时上轴19与下轴20啮合连接并处于清洗状态,拖把布头旋转使上轴19带着下轴20转动,通过取水板18的旋转带动水螺旋向上流动,从而将水泼在拖把上,并通过清洗组件7对拖把布头进行清洗。清洗后的水能够自动从盖板22上流入第二出水区内,从而实现清污自动分离,清洗完毕后,用手将拖把向上移动,使升降柱23带着上轴19向上移动,使抵块32在连接通道31上滑动,在滑动过程中会使升降柱23旋转,当升降柱23移动至上侧侧极限位置并使上轴19与下轴20脱离连接后,此时,抵块32与下抵面30相抵,接着轻微旋转升降柱23,使抵块32在下抵面30上滑动并使抵块32滑入升降柱23内与升降柱23形成卡接,此时上轴19与下轴20脱离连接,拖把布头转动时不会使水向上流动,并通过刮水件对拖把布头进行刮干。
与现有技术相比,本实用新型通过设置隔挡物2将桶体1内的储水空间水平阻隔清水区11和清洗区12,使清水区11与清洗区12呈一体式设计,使得该桶体1仅需一个桶即可对清水和污水进行独立存储,且无需拆装,减少需要两个桶时的成本和拆装劳动力。
本文中所描述的具体实施例仅仅是对本实用新型精神作举例说明。本实用新型所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本实用新型的精神或者超越所附权利要求书所定义的范围。
Claims (10)
- 一种清洁桶,包括桶体(1),其特征在于,所述的桶体(1)内设有隔挡物(2),所述的隔挡物(2)将桶体(1)阻隔成清水区(11)和清洗区(12),所述的桶体(1)内还设有泵水机构(3),所述的泵水机构(3)进水端与清水区(11)相通,出水端与清洗区(12)相通,所述的隔档物(2)包括设置于桶体上的盖板(22),所述的盖板(22)将桶体分为清水区(11)和清洗区(12)。
- 根据权利要求1所述的一种清洁桶,其特征在于:所述的隔挡物(2)还包括设置在桶体(1)底部的隔板(21),所述的盖板(22)、隔板(21)与桶体(1)形成上述清水区(11)。
- 根据权利要求2所述的一种清洁桶,其特征在于:所述的清水区(11)上方设有让位空间(4),所述的盖板(22)经弯折形成上述让位空间(4)。
- 根据权利要求2或3所述的一种清洁桶,其特征在于:所述的盖板(22)底部呈倾斜设置。
- 根据权利要求2或3所述的一种清洁桶,其特征在于:所述的盖板(22)上开设有将清水注入清水区(11)的注水孔(5)。
- 根据权利要求2或3所述的一种清洁桶,其特征在于:所述盖板(22)通过设置在其侧部的包边(6)卡接于桶体(1)的侧边。
- 根据权利要求1或2或3所述的一种清洁桶,其特征在于:所述的泵水机构(3)包括设置在桶体内的聚水筒(16)和转动连接于桶体(1)内的上轴(19),所述的上轴(19)的下侧具有与桶体(1)转动连接的下轴(20),所述的上轴(19)连接有取水板(18),所述的取水板(18)呈螺旋状设置,所述的上轴(19)与取水板(18)之间连接有能使上轴(19)与取水板(18)分离或结合的离合机构。
- 根据权利要求7所述的一种清洁桶,其特征在于:所述的离合机构包括两圈分别设置在上轴(19)的下端和下轴(20)的上端的齿圈(21),两圈齿圈(21)能啮合连接,所述的离合机构还包括升降柱(23),所述的升降柱(23)中空设置且与聚水筒(16)滑动连接,所述的上轴(19)设置在升降柱(23)的顶部内且延伸至聚水筒(16)内,所述的下轴(20)位聚水筒(16)内。
- 根据权利要求8所述的一种清洁桶,其特征在于:所述的升降柱(23)外表面设有卡接机构,所述的卡接机构包括位于升降柱(23)的外侧且与升降柱(23)滑动连接的套圈(28),所述的升降柱(23)的外表面设有滑行轨道,所述的滑行轨道上设有上抵面(29)和下抵面(30),所述的上抵面(29)和下抵面(30)通过连接通道(31)相连,所述的套圈(28)内壁上设有滑动于滑行轨道内的抵块(32),所述的抵块(32)可抵在上抵面(29)和下抵面(30)上。
- 一种应用如权利要求1-9所述清洁桶的清洁套装,包括清洁桶和清洁工具,所述的清洁桶的桶体(1)内位于泵水机构(3)上方设有可对清洁工具进行清洗的清洗组件(7)。
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CN211130921U (zh) * | 2019-12-03 | 2020-07-31 | 浙江省永康市溯源工贸有限公司 | 一种可升降旋转清洗拖把桶 |
CN215838885U (zh) * | 2021-08-04 | 2022-02-18 | 嘉兴捷顺旅游制品有限公司 | 一种清洁桶及其清洁套装 |
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