WO2015169114A1 - 一种清洁工具 - Google Patents

一种清洁工具 Download PDF

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Publication number
WO2015169114A1
WO2015169114A1 PCT/CN2015/071381 CN2015071381W WO2015169114A1 WO 2015169114 A1 WO2015169114 A1 WO 2015169114A1 CN 2015071381 W CN2015071381 W CN 2015071381W WO 2015169114 A1 WO2015169114 A1 WO 2015169114A1
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WO
WIPO (PCT)
Prior art keywords
mop
pump
head
water
bucket
Prior art date
Application number
PCT/CN2015/071381
Other languages
English (en)
French (fr)
Inventor
黄智勇
Original Assignee
黄智勇
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 黄智勇 filed Critical 黄智勇
Priority to EP15788558.3A priority Critical patent/EP3108790B1/en
Priority to JP2017504219A priority patent/JP6279807B2/ja
Priority to US15/120,296 priority patent/US10238263B2/en
Publication of WO2015169114A1 publication Critical patent/WO2015169114A1/zh

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Classifications

    • 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
    • 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
    • A47L13/20Mops

Definitions

  • the invention relates to a cleaning tool.
  • the general structure of the hand-pressing rotary tow (ie, the mop head is circular) includes: a mop bucket and a mop lever; the lower end of the mop lever is provided with a mop head capable of wiping; the mop lever includes inner rods that are sleeved with each other and The outer rod, the inner and outer rods are provided with a driving mechanism for converting the telescopic movement of the mop rod into the rotation movement of the inner rod; the mop barrel has a rotatable dehydration frame, and the center of the dehydration frame is provided with a central shaft, when dehydrating Place the mop head in the dewatering frame and spin the head to spin.
  • the hand-pressing rotary tow is more convenient to use, it is not as convenient to use as the flatbed mop (that is, the mop head has a flat mop), especially when cleaning the corner and sweeping along the wall, the circular drag is more inconvenient.
  • the flat-panel trailer products in the prior art such as the flat-panel tow provided by the Chinese invention patent ZL201320275150.4.
  • the main reason is that the market is still based on round towing.
  • the main reason is that when the flatbed is dragged, it needs to be folded.
  • the folded flat mop head has a certain height. Therefore, if the flatbed is towed, the dewatering basket needs to be used. It is made higher to accommodate the folded flat mop head; at the same time, the barrel also needs to be increased in height, and the storage of the dewatering basket also requires a certain space under the dewatering basket to accommodate the water that has fallen down. Therefore, if you want to make the flat mop head a little longer, the price paid is the increase in the height of the barrel. As a result, the mop bucket will become very large and very inconvenient to use. Therefore, in order to reduce the volume of the barrel, the flat-panel drag on the market can only sacrifice the length of the flatbed.
  • the present invention provides a cleaning tool which can use a long flat mop head and has a small barrel size.
  • a cleaning tool comprising a mop bucket and a mop rod, wherein the lower end of the mop rod is provided with a mop head capable of wiping;
  • the mop bar includes inner and outer rods that are sleeved with each other, and a driving mechanism for converting the telescopic movement of the mop rod into a rotary motion of the mop rod is disposed between the inner and outer rods;
  • the mop bucket has one or more volume bodies, and further comprises a rotatable dewatering frame, at least one volume body is provided with a rotatable dewatering frame, a center axis of the dewatering frame is provided, and the mop bucket is further provided There is a pumping device, the water inlet of the pumping device is located below the rotatable dewatering frame, and the mop head is placed in the dewatering frame during dehydration, and the pumping device is driven by the driving mechanism to install the dewatering frame The water in the volume is discharged.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may be: the driving mechanism drives the dehydration frame to rotate, and the bottom surface of the dewatering frame is provided with a driving gear;
  • the pumping device is a vane pump
  • the impeller pump includes a pump body located in a volume body in which the dewatering frame is mounted,
  • the pump body has a pump chamber communicating with the outside, the pump chamber has an impeller, a center of the impeller is provided with a pump shaft, and a head of the pump shaft extends from an upper end surface of the pump body, the pump shaft The head is provided with a driven gear that meshes with the drive gear.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may also be: the driving mechanism drives the central shaft to rotate, the middle shaft is provided with a gear sleeve, and the gear sleeve is provided with Drive gear
  • the pumping device is an impeller pump
  • the impeller pump comprises a pump body in a volume body in which the dewatering frame is mounted, the pump body has a pump chamber communicating with the outside, the pump chamber has an impeller, and the impeller has A pump shaft is disposed at a center thereof, and a head of the pump shaft extends from an upper end surface of the pump body, and a head of the pump shaft is provided with a driven gear, and the driven gear meshes with the driving gear.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may also be: the head of the middle shaft is sleeved with a head sleeve, the driving mechanism drives the head sleeve to rotate, and the head sleeve is provided with a gear downward. a sleeve, the gear sleeve is provided with a driving gear;
  • the pumping device is an impeller pump
  • the impeller pump comprises a pump body in a volume body in which the dewatering frame is mounted, the pump body has a pump chamber communicating with the outside, the pump chamber has an impeller, and the impeller has A pump shaft is disposed at a center thereof, and a head of the pump shaft extends from an upper end surface of the pump body, and a head of the pump shaft is provided with a driven gear, and the driven gear meshes with the driving gear.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may also be: the driving mechanism drives the rotation of the dewatering frame, and the pumping device comprises: a bottom surface of the dewatering frame is provided with a threaded sleeve, the thread The sleeve is sleeved outside the central shaft, and the thread sleeve is sleeved with a water pumping sleeve, and the lower end of the water pumping sleeve is connected with the mop bucket;
  • the pumping sleeve is provided with a pumping hole below the dewatering frame.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may also be: the driving mechanism drives the central shaft to rotate, and the pumping device comprises: a thread sleeve on the central shaft, the thread sleeve Further, a water jacket is sleeved, and the lower end of the water pumping sleeve is connected with the mop bucket;
  • the pumping sleeve is provided with a pumping hole below the dewatering frame.
  • the structure of the pumping device and the specific driving method and structure of the driving mechanism may also be: the head of the middle shaft is sleeved with a head sleeve, and the driving mechanism drives the head sleeve to rotate;
  • the pumping device comprises: the sleeve is provided with a threaded sleeve downwardly, and the threaded sleeve is further provided with a water pumping sleeve, and the lower end of the water pumping sleeve is connected with the mop bucket;
  • the pumping sleeve is provided with a pumping hole below the dewatering frame.
  • a cleaning bucket is further provided, wherein the cleaning bucket is provided with a cleaning basket, and a cleaning rotating shaft is disposed in the center of the cleaning basket, and the cleaning basket is installed in the cleaning bucket through the cleaning rotating shaft.
  • the utility model further includes a cleaning dewatering bucket, wherein the dewatering bucket is also provided with the dewatering frame and the water pumping device;
  • the pumping device of the mop bucket can drain water into the washing and dewatering tub, and the pumping device of the washing and dewatering tub can drain water into the volume body of the dewatering frame.
  • a cleaning tool comprising a mop bucket and a mop rod, wherein the lower end of the mop rod is provided with a mop head capable of wiping;
  • the mop bar includes inner and outer rods that are sleeved with each other, and a driving mechanism for converting the telescopic movement of the mop rod into a rotary motion of the mop rod is disposed between the inner and outer rods;
  • the mop bucket has one or more volume bodies, and further comprises a rotatable dewatering frame, at least one volume body is provided with a rotatable dewatering frame, a center axis of the dewatering frame is provided, and the mop bucket is further provided There is a water pump, the water inlet of the water pump is located below the rotatable dewatering frame, and the mop bucket is provided with a switch for controlling the operation of the pump, and the pumping work will install the volume body of the dewatering frame. The water is drained.
  • the switch is a water level switch located below the dewatering frame, and the water level switch is located in a volume body of the dewatering frame.
  • the switch is a float switch located below the dewatering frame, and the float switch is located in a volume body in which the dewatering frame is mounted.
  • a cleaning bucket is further provided, wherein the cleaning bucket is provided with a cleaning basket, and a cleaning rotating shaft is disposed in the center of the cleaning basket, and the cleaning basket is installed in the cleaning bucket through the cleaning rotating shaft.
  • the utility model further includes a cleaning dewatering bucket, wherein the dewatering bucket is also provided with the dewatering frame, the water pump and the switch;
  • the pump of the mop bucket can drain water into the washing and dewatering tub, and the pump of the washing and dewatering tub can drain the water into the volume body of the dewatering frame.
  • Another technical solution of the present invention does not have a dehydration frame, and spins and dehydrates directly on the central axis during dehydration. Specifically, there are three schemes:
  • a cleaning tool comprising a mop bucket and a mop rod, the mop head having a mop head with a wiper at the lower end;
  • the mop bar includes inner and outer rods that are sleeved with each other, and a driving mechanism for converting the telescopic movement of the mop rod into a rotary motion of the mop rod is disposed between the inner and outer rods;
  • the mop bucket has one or more volume bodies, at least one volume body is provided with a rotating shaft, and the rotating shaft is provided with a turntable.
  • the mop head When the water is dehydrated, the mop head is placed at the upper end of the rotating shaft, and the mop head is rotated and dehydrated.
  • a rib corresponding to the mop head is disposed on the turntable to drive the turntable to rotate by the mop head;
  • the mop bucket is further provided with a pumping device.
  • a pumping device When the mop head is placed at the upper end of the rotating shaft, the water inlet of the pumping device is located below the mop head, and when the dehydration is driven, the pumping device is driven by the rotating disc, and the rotating shaft is provided. The volume of water in the body is drained.
  • a cleaning tool comprising a mop bucket and a mop bar, the lower end of the mop bar being provided with a mop head capable of wiping;
  • the mop bar includes inner and outer rods that are sleeved with each other, and a driving mechanism for converting the telescopic movement of the mop rod into a rotary motion of the mop rod is disposed between the inner and outer rods;
  • the mop bucket has one or more volume bodies, at least one volume body is provided with a rotating shaft, the upper end of the rotating shaft is sleeved with a head cover, and the mop head is placed on the head cover when dehydrating, and the mop head is rotated and dehydrated.
  • the driving mechanism drives the head cover to rotate;
  • the mop bucket is further provided with a water pumping device, and the water inlet of the water pumping device is located below the mop head when the mop head is placed on the head cover, and the water pumping device is driven by the head cover when dehydrating, and the rotating shaft is provided The volume of water in the body is drained.
  • a cleaning tool comprising a mop bucket and a mop rod, wherein the lower end of the mop rod is provided with a mop head capable of wiping;
  • the mop bar includes inner and outer rods that are sleeved with each other, and a driving mechanism for converting the telescopic movement of the mop rod into a rotary motion of the mop rod is disposed between the inner and outer rods;
  • the mop bucket has one or more volume bodies, at least one volume body is provided with a rotating shaft, and when the dehydration is performed, the mop head is placed at an upper end of the rotating shaft, and the mop head is rotationally dehydrated, and the driving mechanism drives the Rotating shaft
  • the mop bucket is further provided with a pumping device.
  • a pumping device When the mop head is placed at the upper end of the rotating shaft, the water inlet of the pumping device is located below the mop head, and when the dehydration is driven, the pumping device is driven by the rotating shaft, and a rotating shaft is provided. The volume of water in the body is drained.
  • the mop head of the mop is placed in the dewatering frame, which can be cleaned and dehydrated.
  • the mop rod is pressed, the dehydration frame and the mop head are rotated to dry the water.
  • the water that has been pumped out is contained in the volume body in which the dewatering frame is installed, and the pumping device is driven by the driving mechanism, and the water in the volume body in which the dewatering frame is installed is taken out by the water pumping device. In this way, the height of the barrel can be shortened, and it is not necessary to provide a water storage space under the dewatering frame as in the prior art barrel;
  • dewatering and washing can be carried out in the volume in which the dewatering frame is installed, and the pumping device can pump water in the volume of the volume in which the dewatering frame is installed into the washing tub.
  • the cleaning bucket can be cleaned, the mop head of the mop is directly placed in the cleaning basket, and the mop head is immersed in the water.
  • the mop rod is pressed, and the cleaning basket and the mop head are rotated to achieve cleaning and cleaning.
  • the water in the bucket can be transferred from the mop bucket to save water.
  • Another working principle of the present invention is similar to the foregoing working principle, except that the pumping water is pumped, and the pump is used to realize the working of the pump.
  • the same mop head When there is no dewatering frame, the same mop head can be spin-dried, but the dehydration frame is less constrained.
  • the utility model has the beneficial effects that it is not necessary to provide a water storage space under the dewatering frame as in the prior art barrel body, so that the height of the barrel body can be shortened, and the mop head of the flat plate drag can be correspondingly increased, and Suitable for flat drag and its use.
  • Figure 1 is a schematic view of the structure of the mop.
  • Fig. 2 is a schematic structural view of the first embodiment.
  • FIG 3 is a schematic structural view of a dewatering frame driven pumping device in the first embodiment.
  • Fig. 4 is a view showing the internal structure of the water pumping device of the first embodiment.
  • Fig. 5 is a view showing a state in which the mop head of the flatbed is placed in the dehydration frame.
  • Fig. 6 is a schematic view showing the structure of a mop bucket having a plurality of volume bodies.
  • Fig. 7 is a schematic structural view of another water storage mode.
  • Figure 8 is a schematic view showing the structure of the central axis driving pumping device in the second embodiment.
  • FIG. 9 is a schematic structural view of a headgear driving pumping device in the third embodiment.
  • Figure 10 is a schematic view showing the structure of another water pumping device driven by the dehydration frame in the fourth embodiment.
  • Fig. 11 is a view showing the internal structure of another water pumping device.
  • Figure 12 is a schematic view showing the structure of another pumping device driven by the center shaft in the fifth embodiment.
  • Figure 13 is a schematic view showing the structure of another water pumping device driven by the headgear in the sixth embodiment.
  • Figure 14 is a schematic view showing the structure of the present invention having a washing tub in the seventh embodiment.
  • Figure 15 is a schematic view showing the structure of the present invention having a washing and dewatering bucket in the eighth embodiment.
  • Figure 16 is a schematic view showing the structure of the present invention using a water pump in the ninth embodiment.
  • Figure 17 is a schematic view showing the structure of the fourteenth embodiment.
  • Figure 18 is a schematic view showing the structure of the fifteenth embodiment.
  • Figure 19 is a schematic view showing the structure of the sixteenth embodiment.
  • a cleaning tool includes a mop bucket 1 and a mop lever 2, and the lower end of the mop lever 2 is provided with a mop head 3 with a wiper.
  • the mop bar 2 includes an inner rod and an outer rod that are sleeved with each other, and the mop head 2 is connected to the lower end of the inner rod, and the inner and outer rods are provided between the inner and outer rods for converting the telescopic movement of the mop rod into the inner rod.
  • Rotating motion drive mechanism 4 If the inner rod is on the upper rod and the outer rod is on the lower side, the mop head is connected to the lower end of the outer rod, and the telescopic movement of the mop rod is converted into the rotary motion of the outer rod, but the inner rod is on the upper and the outer rod is in the lower structure. Basically will not be used).
  • the specific structural form of the driving mechanism 4 is a conventional technique in the art, and details are not described herein again.
  • the mop bucket 1 has one or more volume bodies, and further comprises a rotatable dewatering frame 5, at least one of which is provided with a rotatable dewatering frame 5, and a central axis 6 is arranged in the center of the dewatering frame 5.
  • the mop bucket 1 has only one volume body, and the mop bucket 1 itself is a volume body.
  • the mop bucket 1 is further provided with a water pumping device, the water inlet of the water pumping device is located below the rotatable dewatering frame 5, and the mop head 3 is placed in the dewatering frame 5 during dehydration, and the water pumping device is
  • the drive mechanism 4 drives the water in the mop bucket 1 on which the dewatering frame 5 is mounted.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are:
  • the driving mechanism drives the dewatering frame 5 to rotate, and the dewatering frame 5 drives the pumping device to work: the bottom surface of the dewatering frame 5 is provided with a driving gear 7; the pumping device is an impeller pump, and the impeller pump includes a pump
  • the pump body 8 has a pump chamber communicating with the outside, the pump chamber has an impeller 9 therein, and a center of the impeller 9 is provided with a pump shaft, and a head of the pump shaft protrudes from the pump
  • the upper end surface of the body 8 is provided with a driven gear 10 at the head of the pump shaft, and the driven gear 10 meshes with the driving gear 7.
  • the dehydration frame 5 rotates to drive the driving gear 7 to rotate, thereby driving the pump shaft and the impeller 9 to rotate by the driven gear 10, thereby realizing pumping, and discharging water through the water suction pipe 11.
  • the rotation of the dewatering frame 5 is driven by a driving mechanism.
  • the driving mechanism drives the dehydrating frame 5 to rotate.
  • the pumping device is located at the bottom of the mop bucket 1, that is, the pump body 8 is located at the bottom of the mop bucket 1, and the bottom surface of the pump body 8 can extend downwardly out of the lower drum 12, and is extended.
  • the cylinder 12 is provided with an opening, and the water is pumped through the opening. After the lower extension tube 12 is set, the pumping is more thorough.
  • the water suction pipe 11 may protrude from the upper end of the mop bucket 1, or may directly protrude from the bottom of the mop bucket 1 as shown in Fig. 7, and a drain hole may be provided at the bottom of the side wall of the mop bucket 1, and the drain port is provided
  • the plug 14 plugs the drain port with a plug 14 when no water is pumped.
  • the impeller pump is used.
  • the gear pump, the volume pump, and the like may be used.
  • the dehydration frame 5 may also be rotated as shown in the embodiment.
  • the mechanism transmits power to the pump.
  • the transmission mechanism can be in the form of a gear transmission mechanism as described in the embodiment, and other power transmission mechanisms can be used. The design of the transmission mechanism is easily realized by those skilled in the art, and will not be enumerated here.
  • an impeller pump is used, so the pumping device is located in the barrel.
  • a self-priming pump or the like can also be used, and the pumping device can be installed outside the barrel at this time.
  • the mop bucket 1 has only one volume body.
  • the mop bucket can also have a plurality of volume bodies 13. As shown in FIG. 6, at least one volume body 13 is provided with a rotatable dewatering frame 5, using a water pumping device. The water in the volume inside the dewatering frame 5 is discharged.
  • the mop head 3 of the mop When used, the mop head 3 of the mop is placed in the dewatering frame 5, which can be cleaned and dehydrated.
  • Figure 5 shows the condition of using a flatbed, and of course the mop of the disc-shaped mop head can also be used.
  • the mop lever is pressed, the dehydration frame 5 and the mop head 3 are rotated to dry the water.
  • the water that has been pumped out is contained in the mop bucket 1, and the pumping device is driven by the driving mechanism, and the water in the mop bucket 1 is drawn out by the pumping device. In this way, the height of the barrel can be shortened, and it is not necessary to provide a water storage space under the dewatering frame 5 as in the prior art barrel;
  • the mop head 3 of the mop is directly placed in the dehydration frame 5, and the mop head 3 is immersed in water, as in the prior art, the mop head, the mop head 3 and the dewatering frame 5 are pressed.
  • the cleaning can be realized by turning; at the same time, during the cleaning, the pumping device is driven by the driving mechanism, and the water in the mop bucket 1 is taken out by the pumping device, so that the dehydration after the cleaning can be achieved.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are:
  • the driving mechanism 4 drives the middle shaft 6 to rotate, and the middle shaft 6 drives the pumping device to operate: the middle shaft 6 is provided with a gear sleeve 15, and the gear sleeve 15 is provided with a driving gear 7;
  • the pumping device is a impeller pump, and the impeller pump includes a pump body 8 located in the mop bucket 1.
  • the pump body 8 has a pump chamber communicating with the outside, and the pump chamber has an impeller therein.
  • a pump shaft is disposed at a center thereof, a head of the pump shaft extends from an upper end surface of the pump body, a head of the pump shaft is provided with a driven gear 10, and the driven gear 10 and the driving gear 7 are Engage.
  • the rotation of the center shaft 6 causes the driving gear 7 to rotate, thereby driving the pump shaft and the impeller to rotate by the driven gear 10, thereby realizing pumping, and discharging the water through the water suction pipe 11.
  • the rotation of the center shaft 6 is driven by the drive mechanism 4.
  • the manner in which the drive mechanism 4 drives the center shaft to rotate is prior art.
  • a head cover 16 is provided on the head of the center shaft 6, and a card slot is provided on the back of the mop head 3. The card slot is inserted into the head cover 16, and the mop head 3 is connected with the inner rod of the mop rod.
  • the inner rod of the mop rod drives the mop head 3 to rotate, the mop head 3 drives the head sleeve 16 and the middle shaft 6 to rotate; or the middle shaft 6 Integral with the dewatering frame, the middle shaft 6 is rotated by the rotation of the dewatering frame.
  • a sleeve 17 is preferably arranged on the bottom surface of the mop bucket, the middle shaft 6 is inserted into the seat cover 17, a steel ball is arranged at the bottom of the seat sleeve 17, and the lower end of the middle shaft 6 is placed on the steel ball for smoother rotation. And the middle shaft 6 is relatively stable during the rotation.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are as follows:
  • the head of the middle shaft 6 is sleeved with a head sleeve 16, the driving mechanism drives the head cover 16 to rotate, and the head cover 16 drives the pumping device to work: the head cover 16 is downwardly provided with a gear sleeve 15, the The gear sleeve 15 is provided with a driving gear 7; the pumping device is an impeller pump, and the impeller pump comprises a pump body 8 located in the mop barrel, the pump body 8 has a pump chamber communicating with the outside, the pump An impeller is disposed in the cavity, a pump shaft is disposed at a center of the impeller, a head of the pump shaft extends from an upper end surface of the pump body, and a head of the pump shaft is provided with a driven gear 10, and the driven The gear 10 meshes with the drive gear 7.
  • the head sleeve 16 rotates to drive the driving gear 7 to rotate, so that the pump shaft and the impeller rotate by the driven gear 10, thereby pumping water and discharging the water through the water pumping pipe 11.
  • the rotation of the head cover 16 is driven by the driving mechanism 4.
  • the driving mechanism 4 drives the head cover to rotate in the prior art.
  • the prior art center shaft 6 generally has a head cover 16, for example, a card is provided on the back of the mop head 3.
  • the groove and the card slot are inserted into the head cover 16, and the mop head 3 is connected with the inner rod of the mop rod.
  • the inner rod of the mop rod drives the mop head 3 to rotate, and the mop head 3 drives the head cover 16 to rotate.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are:
  • the driving mechanism 4 drives the dewatering frame 5 to rotate, and the dewatering frame 5 drives the pumping device to operate.
  • the pumping device comprises: a bottom surface of the dewatering frame 5 is provided with a threaded sleeve 18, the threaded sleeve 18 is sleeved outside the middle shaft 6, and the threaded sleeve 18 is further provided with a water pumping sleeve 19, the pumping water The lower end of the sleeve 19 is connected to the mop bucket; the pumping sleeve 19 is provided with a pumping hole 20 below the dewatering frame 5. In order to clean the water, the pumping hole 20 is opened at the tail of the pumping sleeve 19.
  • the dewatering frame 5 rotates to drive the threaded sleeve 18 to rotate.
  • the threaded sleeve 18 rotates, the water can be pumped into the water pumping sleeve 19 through the water pumping hole 20, thereby realizing pumping, and the water can be discharged through the water pumping pipe 11.
  • the rotation of the dewatering frame 5 is driven by the driving mechanism 4.
  • the driving mechanism 4 drives the rotation of the dewatering frame 5 in the prior art.
  • the existing cleaning tool can realize the function, and details are not described herein.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are as follows:
  • the drive mechanism 4 drives the central shaft 6 to rotate, and the central shaft 6 drives the pumping device to operate.
  • the pumping device comprises: a threaded sleeve on the middle shaft 6, and a pumping sleeve 19 on the outside of the threaded sleeve, the lower end of the pumping sleeve 19 is connected with the mop bucket; the pumping sleeve 19 is A pumping hole 20 is provided below the dewatering frame, and in order to clean the water, the pumping hole 20 is opened at the tail of the pumping sleeve.
  • the middle shaft 6 rotates to drive the screw sleeve to rotate, and the thread sleeve rotates through the water suction hole 20 to pump water into the water pumping sleeve 19, thereby realizing pumping, and discharging water through the water suction pipe 11.
  • the rotation of the center shaft 6 is driven by the drive mechanism 4, and the drive mechanism 4 drives the center shaft 6 to rotate in the prior art.
  • a head cover 16 is provided on the head of the center shaft 6, and a card is provided on the back of the mop head 3.
  • a sleeve 17 is preferably arranged on the bottom surface of the mop bucket, the middle shaft 6 is inserted into the seat cover 17, a steel ball is arranged at the bottom of the seat sleeve 17, and the lower end of the middle shaft 6 is placed on the steel ball for smoother rotation. And the middle shaft 6 is relatively stable during the rotation.
  • the structure of the water pumping device and the specific driving mode and structure of the driving mechanism are:
  • the head of the center shaft 6 is sleeved with a head cover 16, and the driving mechanism 4 drives the head cover 16 to rotate, and the head cover 16 drives the pumping device to work.
  • the pumping device comprises: a sleeve 16 is provided with a threaded sleeve, and the threaded sleeve is further provided with a water pumping sleeve 19, the lower end of the water pumping sleeve 19 is connected with the mop bucket; and the water pumping sleeve 19 is provided There is a pumping hole 20 located below the dewatering frame, and in order to clean the water, the pumping hole 20 is opened at the tail of the pumping sleeve.
  • the head sleeve 16 rotates to drive the thread sleeve to rotate, and the thread sleeve rotates through the water suction hole 20 to pump water into the water pumping sleeve 19, thereby realizing pumping, and discharging water through the water suction pipe 11.
  • the rotation of the head cover 16 is driven by the driving mechanism 4.
  • the driving mechanism 4 drives the head cover 16 to rotate in the prior art.
  • the center shaft 6 of the prior art generally has a head cover 16, for example, the back of the mop head 3 is provided.
  • the card slot is inserted into the head cover 16, and the mop head 3 is connected with the inner rod of the mop rod.
  • the inner rod of the mop rod drives the mop head 3 to rotate, and the mop head 3 drives the head sleeve 16 to rotate.
  • a cleaning bucket 21 is further included, and the cleaning bucket 21 is provided with a cleaning basket 22 for cleaning.
  • a cleaning shaft is disposed in the center of the basket 22, and the washing basket 22 is installed in the washing tub 21 through the washing shaft.
  • the connection relationship between the cleaning basket 22 and the cleaning shaft, and the connection relationship between the cleaning shaft and the cleaning tub 21 are all conventional techniques, and are not described herein again.
  • the dewatering and washing can be performed in the mop bucket 1, and the water pumping device can draw the water in the mop bucket 1 into the washing tub 21.
  • the washing bucket 21 can be cleaned, and the mop head 3 of the mop is directly placed in the washing basket 22, and the mop head 3 is immersed in the water.
  • the mop rod is pressed to drive the washing basket 22 and the mop head 3 to rotate. The cleaning can be achieved, and the water in the washing tub 21 can be transferred from the mop bucket 1 to save water.
  • a washing and dewatering bucket 23 is further included.
  • the washing and dewatering bucket 23 is also provided with the dewatering frame 5 and the water pumping device.
  • the pumping device of the mop bucket 1 can drain the water to the water tank.
  • the water pumping device of the washing and dewatering tank 23 can discharge water into the mop drum 1.
  • two identical mop buckets are provided, and dehydration and cleaning can be performed in the mop bucket 1 and the washing dewatering bucket 23, and the water in the mop bucket 1 can be transferred to the washing dewatering bucket 23 to be washed and dehydrated.
  • the water in the tub 23 can be transferred to the mop bucket 1.
  • the water pumping device is used to pump water.
  • the pumping water is pumped, and the pump is used to realize the working of the pump.
  • a cleaning tool includes a mop bucket 1 and a mop lever 2, and the lower end of the mop lever 2 is provided with a mop head 3 with a wiper.
  • the mop bar 2 includes inner and outer rods that are sleeved with each other, and the mop head 3 is connected to the lower end of the inner rod, and the inner and outer rods are provided between the inner and outer rods for converting the telescopic movement of the mop rod into the inner rod.
  • Rotating motion drive mechanism 4 If the inner rod is on the upper rod and the outer rod is on the lower side, the mop head is connected to the lower end of the outer rod, and the telescopic movement of the mop rod is converted into the rotary motion of the outer rod, but the inner rod is on the upper and the outer rod is in the lower structure. Basically will not be used).
  • the specific structural form of the driving mechanism 4 is a conventional technique in the art, and details are not described herein again.
  • the mop bucket 1 has one or more volume bodies, and further comprises a rotatable dewatering frame 5, at least one of which is provided with a rotatable dewatering frame 5, and a central axis 6 is arranged in the center of the dewatering frame 5.
  • the mop bucket 1 has only one volume body, and the mop bucket 1 itself is a volume body.
  • the water pumping bucket 24 is further provided with a water pump 24, and the water inlet of the water pump 24 is located below the rotatable dewatering frame 5, and the mop bucket 1 is provided to control whether the water pump 24 works or not.
  • the switch, the pump 24 works to drain the water in the bucket 1 .
  • the pump is located at the bottom of the mop bucket 1.
  • the switch is a water level switch 25 located below the dewatering frame 5, and the water level switch 25 is located in the mop bucket 1. Since the water level switch is installed, only the dehydration can be performed in the mop bucket 1. When the water level rises to the water level switch during dehydration, the water level switch 25 instructs the water pump to start pumping water, and the water can be discharged through the water suction pipe 11.
  • the water pump 24 is located inside the barrel. Of course, you can use a self-priming pump, etc. Installed outside the barrel.
  • the mop bucket 1 has only one volume body.
  • the mop bucket 1 may also have a plurality of volume bodies. At least one volume body is provided with a rotatable dewatering frame, and the water in the volume of the dewatering frame is installed by using a water pump. discharge.
  • the switch is a float switch located below the dewatering frame, and the float switch is located in a volume body in which the dewatering frame is mounted. Since the float switch is installed, the mop bucket can only be dehydrated. When the water level rises to the float switch after the dehydration, the float switch commands the pump to start pumping.
  • the switch is an ordinary electric switch located on the outer wall of the mop bucket, and the mop bucket can be dehydrated or cleaned for dehydration, and the pump is directly pumped by operating an ordinary electric switch.
  • the cleaning bucket further includes a washing basket, and the washing basket is provided with a washing shaft in the center thereof, and the washing basket is installed in the washing tub through the washing shaft.
  • the cleaning bucket can be cleaned, the mop head of the mop is directly placed in the cleaning basket, and the mop head is immersed in the water.
  • the mop rod is pressed, and the cleaning basket and the mop head are rotated to achieve cleaning and cleaning.
  • the water in the bucket can be transferred from the mop bucket to save water.
  • the utility model further includes a cleaning dewatering bucket, wherein the cleaning dewatering bucket is also provided with the dewatering frame, the water pump and the switch; and the pump of the mop bucket can discharge water into the cleaning dewatering bucket, The pump that cleans the dewatering bucket drains the water into the mop bucket.
  • two identical mop buckets are provided, and the water in the mop bucket can be transferred to the washing and dewatering bucket, and the water in the washing dewatering bucket can be transferred into the mop bucket.
  • a cleaning tool includes a mop bucket 1 and a mop lever 2, and the lower end of the mop lever 2 is provided with a mop head 3 with a wiper.
  • the mop bar 2 includes an inner rod and an outer rod that are sleeved with each other, and the mop head 2 is connected to the lower end of the inner rod, and the inner and outer rods are provided between the inner and outer rods for converting the telescopic movement of the mop rod into the inner rod.
  • Rotating motion drive mechanism 4 If the inner rod is on the upper rod and the outer rod is on the lower side, the mop head is connected to the lower end of the outer rod, and the telescopic movement of the mop rod is converted into the rotary motion of the outer rod, but the inner rod is on the upper and the outer rod is in the lower structure. Basically will not be used).
  • the specific structural form of the driving mechanism 4 is a conventional technique in the art, and details are not described herein again.
  • the mop bucket 1 has one or more volume bodies. In this embodiment, the mop bucket 1 has only one volume body.
  • the mop bucket 1 itself is a volume body.
  • the mop barrel is provided with a rotating shaft 26, and the rotating shaft 26 is provided with a turntable 27.
  • the mop head 3 is placed at the upper end of the rotating shaft 26, and the mop head 3 is rotated and dehydrated, and the turntable 27 is provided.
  • a retaining rib 28 that abuts the mop head 3 to thereby rotate the dial 27 driven by the mop head 3;
  • the mop bucket is further provided with a pumping device.
  • the water inlet of the pumping device is located below the mop head 3.
  • the pumping device is driven by the turntable 27, The water in the mop bucket 1 is discharged.
  • the specific structure of the water pumping device and the specific driving manner of the turntable are: the bottom surface of the turntable 27 is provided with a driving gear 7; the pumping device is an impeller pump, and the impeller pump includes a pump body 8, the pump The body 8 has a pump chamber communicating with the outside, the pump chamber has an impeller, a center of the impeller is provided with a pump shaft, and a head of the pump shaft extends from an upper end surface of the pump body 8, the pump shaft The head is provided with a driven gear 10, and the driven gear 10 meshes with the drive gear 7.
  • the turntable 27 rotates to drive the driving gear 7 to rotate, thereby driving the pump shaft and the impeller to rotate by the driven gear 10, thereby realizing pumping, and discharging water through the water suction pipe 11.
  • the pumping device is located at the bottom of the mop bucket 1, that is, the pump body 8 is located at the bottom of the mop bucket 1, and the bottom surface of the pump body 8 can extend downwardly out of the lower drum 12, and is extended.
  • the cylinder 12 is provided with an opening, and the water is pumped through the opening. After the lower extension tube 12 is set, the pumping is more thorough.
  • the water suction pipe 11 may protrude from the upper end of the mop bucket 1 or directly from the bottom of the mop bucket 1, and a drain port may be provided at the bottom of the side wall of the mop bucket 1, and a plug is provided in the drain port, and is used when no water is pumped. The plug plug plugs the drain.
  • an impeller pump is used, and of course, a gear pump, a volumetric pump, or the like may be used.
  • a gear pump, a volume pump, or the like When a gear pump, a volume pump, or the like is used, the turntable may be rotated as described in the embodiment, and the transmission mechanism is adopted. Power is transferred to the pump.
  • the transmission mechanism can be in the form of a gear transmission mechanism as described in the embodiment, and other power transmission mechanisms can be used. The design of the transmission mechanism is easily realized by those skilled in the art, and will not be enumerated here.
  • an impeller pump is used, so the pumping device is located in the barrel.
  • a self-priming pump or the like can also be used, and the pumping device can be installed outside the barrel at this time.
  • the mop bucket 1 has only one volume body.
  • the mop bucket can also have a plurality of volume bodies, and at least one volume body is provided with a rotating shaft, and the water in the volume body of the mounting shaft is discharged by using a water pumping device.
  • a cleaning tool includes a mop bucket 1 and a mop lever 2, and the lower end of the mop lever 2 is provided with a mop head 3 with a wiper.
  • the mop bar 2 includes an inner rod and an outer rod that are sleeved with each other, and the mop head 2 is connected to the lower end of the inner rod, and the inner and outer rods are provided between the inner and outer rods for converting the telescopic movement of the mop rod into the inner rod.
  • Rotating motion drive mechanism 4 (if the inner rod is on, When the outer rod is below, the mop head is connected to the lower end of the outer rod, and the telescopic movement of the mop rod is converted into the rotary motion of the outer rod, but the inner rod is on the upper and the lower rod structure is basically not used in practice).
  • the specific structural form of the driving mechanism 4 is a conventional technique in the art, and details are not described herein again.
  • the mop bucket 1 has one or more volume bodies.
  • the mop bucket 1 has only one volume body, and the mop bucket 1 itself is a volume body.
  • a rotating shaft is disposed in the mop barrel, and the upper end of the rotating shaft 26 is sleeved with a head sleeve 16, and the mop head 3 is placed on the head cover 16 during dehydration, and the mop head 3 is rotationally dehydrated, and the driving mechanism drives the The head cover 16 is rotated;
  • the mop bucket is further provided with a pumping device.
  • the water inlet of the pumping device is located below the mop head 3.
  • the pumping device is driven by the head cover, and the mop is used. The water in the bucket is drained.
  • the structure of the water pumping device and the specific driving manner of the head cover are: the driving mechanism drives the head cover 16 to rotate, and the head cover 16 drives the water pumping device to work: the head cover 16 is provided with the gear sleeve 15 downward.
  • the gear sleeve 15 is provided with a driving gear 7;
  • the pumping device is an impeller pump, and the impeller pump comprises a pump body 8 located in the mop barrel, and the pump body 8 has a pump chamber communicating with the outside.
  • the pump chamber has an impeller therein, a center of the impeller is provided with a pump shaft, a head of the pump shaft protrudes from an upper end surface of the pump body, and a head of the pump shaft is provided with a driven gear 10
  • the driven gear 10 is meshed with the drive gear 7.
  • the head sleeve 16 rotates to drive the driving gear 7 to rotate, so that the pump shaft and the impeller rotate by the driven gear 10, thereby pumping water and discharging the water through the water pumping pipe 11.
  • the rotation of the head cover 16 is driven by the driving mechanism 4.
  • the driving mechanism 4 drives the head cover to rotate in the prior art.
  • the prior art center shaft 6 generally has a head cover 16, for example, a card is provided on the back of the mop head 3.
  • the groove and the card slot are inserted into the head cover 16, and the mop head 3 is connected with the inner rod of the mop rod.
  • the inner rod of the mop rod drives the mop head 3 to rotate, and the mop head 3 drives the head cover 16 to rotate.
  • the pumping device is located at the bottom of the mop bucket 1, that is, the pump body 8 is located at the bottom of the mop bucket 1, and the bottom surface of the pump body 8 can extend downwardly out of the lower drum 12, and is extended.
  • the cylinder 12 is provided with an opening, and the water is pumped through the opening. After the lower extension tube 12 is set, the pumping is more thorough.
  • the water suction pipe 11 may protrude from the upper end of the mop bucket 1 or directly from the bottom of the mop bucket 1, and a drain port may be provided at the bottom of the side wall of the mop bucket 1, and a plug is provided in the drain port, and is used when no water is pumped. The plug plug plugs the drain.
  • an impeller pump is used, and of course, a gear pump, a volumetric pump, or the like may be used.
  • a gear pump, a volume pump, or the like When a gear pump, a volume pump, or the like is used, the turntable may be rotated as described in the embodiment, and the transmission mechanism is adopted. Power is transferred to the pump.
  • the transmission mechanism can be in the form of a gear transmission mechanism as described in the embodiment, and other power transmission mechanisms can be used. The design of the transmission mechanism is easily realized by those skilled in the art, and will not be enumerated here.
  • an impeller pump is used, so the pumping device is located in the barrel.
  • a self-priming pump or the like can also be used, and the pumping device can be installed outside the barrel at this time.
  • the mop bucket 1 has only one volume body.
  • the mop bucket can also have a plurality of volume bodies, and at least one volume body is provided with a rotating shaft, and the water in the volume body of the mounting shaft is discharged by using a water pumping device.
  • a cleaning tool includes a mop bucket 1 and a mop lever 2, and the lower end of the mop lever 2 is provided with a mop head 3 with a wiper.
  • the mop bar 2 includes an inner rod and an outer rod that are sleeved with each other, and the mop head 2 is connected to the lower end of the inner rod, and the inner and outer rods are provided between the inner and outer rods for converting the telescopic movement of the mop rod into the inner rod.
  • Rotating motion drive mechanism 4 If the inner rod is on the upper rod and the outer rod is on the lower side, the mop head is connected to the lower end of the outer rod, and the telescopic movement of the mop rod is converted into the rotary motion of the outer rod, but the inner rod is on the upper and the outer rod is in the lower structure. Basically will not be used).
  • the specific structural form of the driving mechanism 4 is a conventional technique in the art, and details are not described herein again.
  • the mop bucket 1 has one or more volume bodies. In the present embodiment, the mop bucket 1 has only one volume body, and the mop bucket 1 itself is a volume body.
  • the mop barrel is provided with a rotating shaft. When the dehydration is performed, the mop head is placed at the upper end of the rotating shaft 26, and the mop head 3 is rotated and dehydrated, and the driving mechanism drives the rotating shaft 26 to rotate;
  • the mop bucket is further provided with a pumping device.
  • the water inlet of the pumping device is located below the mop head 3.
  • the pumping device is driven by the rotating shaft 26, The water in the mop bucket 1 is discharged.
  • the structure of the water pumping device that is, the specific driving mode of the rotating shaft, is: the rotating shaft 26 is provided with a gear sleeve 15, and the gear sleeve 15 is provided with a driving gear 7; the pumping device is a vane pump
  • the impeller pump includes a pump body 8 located in the mop bucket 1 , the pump body 8 has a pump chamber communicating with the outside, the pump chamber has an impeller therein, and a center of the impeller is provided with a pump shaft.
  • a head of the pump shaft extends from an upper end surface of the pump body, and a head of the pump shaft is provided with a driven gear 10, and the driven gear 10 meshes with the driving gear 7.
  • the rotating shaft 26 rotates to drive the driving gear 7 to rotate, thereby driving the pump shaft and the impeller to rotate by the driven gear 10, thereby realizing pumping, and discharging the water through the water suction pipe 11.
  • the rotation of the rotating shaft 26 is driven by the driving mechanism 4.
  • the driving mechanism 4 drives the rotating shaft to rotate.
  • a head sleeve 16 is disposed at the head of the rotating shaft 26, and the back of the mop head 3 is provided with a card slot and a card slot.
  • the mop head 3 is connected to the inner rod of the mop rod, and by pressing the mop rod, the inner rod of the mop rod drives the mop head 3 to rotate, the mop head 3 drives the head sleeve 16 and the rotating shaft 26 to rotate; when the rotating shaft 26 rotates, preferably in the mop A sleeve 17 is arranged on the bottom surface of the barrel, and the middle shaft 6 is inserted into the seat cover 17. A steel ball is arranged at the bottom of the seat sleeve 17. The lower end of the rotating shaft 26 is placed on the steel ball for smoother rotation, and the rotating shaft 26 is relatively stable during rotation.
  • the pumping device is located at the bottom of the mop bucket 1, that is, the pump body 8 is located at the bottom of the mop bucket 1, and the bottom surface of the pump body 8 can extend downwardly from the lower extension cylinder, in the lower extension cylinder An opening is provided, and water is pumped through the opening. After setting the extension tube, the pumping is more thorough.
  • the water suction pipe 11 may protrude from the upper end of the mop bucket 1 or directly from the bottom of the mop bucket 1, and a drain port may be provided at the bottom of the side wall of the mop bucket 1, and a plug is provided in the drain port, and is used when no water is pumped. The plug plug plugs the drain.
  • an impeller pump is used, and of course, a gear pump, a volumetric pump, or the like may be used.
  • a gear pump, a volume pump, or the like When a gear pump, a volume pump, or the like is used, the turntable may be rotated as described in the embodiment, and the transmission mechanism is adopted. Power is transferred to the pump.
  • the transmission mechanism can be in the form of a gear transmission mechanism as described in the embodiment, and other power transmission mechanisms can be used. The design of the transmission mechanism is easily realized by those skilled in the art, and will not be enumerated here.
  • an impeller pump is used, so the pumping device is located in the barrel.
  • a self-priming pump or the like can also be used, and the pumping device can be installed outside the barrel at this time.
  • the mop bucket 1 has only one volume body.
  • the mop bucket can also have a plurality of volume bodies, and at least one volume body is provided with a rotating shaft, and the water in the volume body of the mounting shaft is discharged by using a water pumping device.

Landscapes

  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

一种清洁工具,包括拖把桶(1)和拖把杆(2),拖把杆的下端设有可带擦拭物的拖把头(3);拖把杆包括相互套接的内、外杆,内、外杆之间设有用于将拖把杆的伸缩运动转化为旋转运动的驱动机构(4);拖把桶具有一个或多个容积体(13),还包括可旋转的脱水框架(5),至少一个容积体内设有可旋转的脱水框架,脱水框架的中央设有中轴(6),脱水时将拖把头置于脱水框架中,拖把头旋转脱水,拖把桶还设有抽水装置,脱水时抽水装置由驱动机构驱动,将安装脱水框架的容积体内的水排出。本清洁工具不必如现有技术中的桶体一样还需在脱水框架的下方设置一储水空间,故可将桶体的高度减短,平板拖的拖把头可相应增长,更加适合平板拖与其配合使用。

Description

一种清洁工具 技术领域
本发明涉及一种清洁工具。
背景技术
手压式旋转圆拖(即拖把头呈圆形)的一般结构为:包括拖把桶和拖把杆,拖把杆的下端设有可带擦拭物的拖把头;拖把杆包括相互套接的内杆和外杆,内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构;拖把桶内具有可旋转的脱水框架,脱水框架的中央设有中轴,脱水时将拖把头置于脱水框架中,拖把头旋转脱水。
手压式旋转圆拖虽然使用比较方便,但是在使用时还是不如平板拖(即拖把头呈平板状的拖把)方便,尤其是在清理角落和沿墙边拖扫时,圆拖更加不方便。现有技术中也有平板拖产品,例如中国发明专利ZL201320275150.4等提供的平板拖。
但是目前市场上还是以圆拖为主,主要原因在于:平板拖在脱水时,需要进行折叠,折叠后的平板拖把头产生一定的高度,因此若要将平板拖甩干,则需要将脱水篮做得较高以容纳折叠后的平板拖把头;同时桶体也需要相应增加高度,容纳脱水篮的同还需要在脱水篮的下方留出一定的空间用来容纳甩下来的水。因此若要将平板拖把头做得稍长,付出的代价就是桶身高度的增高,如此一来拖把桶将变得十分庞大,使用非常不方便。因此市场上的平板拖为了减小桶身体积,只能牺牲平板拖的长度。
发明内容
为克服现有清洁工具的上述不足,本发明提供一种可使用较长平板拖把头,并且桶身尺寸有较小的清洁工具。
本发明解决其技术问题的技术方案是:一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
所述的拖把桶具有一个或多个容积体,还包括可旋转的脱水框架,至少一个容积体内设有可旋转的脱水框架,所述脱水框架的中央设有中轴,所述拖把桶还设有抽水装置,所述抽水装置的进水口位于所述可旋转的脱水框架的下方,脱水时将所述拖把头置于脱水框架中,抽水装置由所述的驱动机构驱动,将安装脱水框架的容积体内的水排出。
抽水装置的结构、驱动机构驱动的具体驱动方式及结构可以为:所述的驱动机构驱动所述的脱水框架转动,所述脱水框架的底面设有主动齿轮;
所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述 的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
抽水装置的结构、驱动机构驱动的具体驱动方式及结构也可以为:所述的驱动机构驱动所述的中轴转动,所述的中轴上设有齿轮套,所述的齿轮套上设有主动齿轮;
所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
抽水装置的结构、驱动机构驱动的具体驱动方式及结构也可以为:所述中轴的头部套有头套,所述的驱动机构驱动所述的头套转动,所述的头套向下设有齿轮套,所述的齿轮套上设有主动齿轮;
所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
抽水装置的结构、驱动机构驱动的具体驱动方式及结构也可以为:所述的驱动机构驱动所述的脱水框架转动,所述抽水装置包括:脱水框架的底面设有螺纹套,所述的螺纹套套于所述的中轴外,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
所述的抽水套上设有位于所述脱水框架下方的抽水孔,
抽水装置的结构、驱动机构驱动的具体驱动方式及结构也可以为:所述的驱动机构驱动所述的中轴转动,所述抽水装置包括:中轴上设有螺纹套,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
所述的抽水套上设有位于所述脱水框架下方的抽水孔,
抽水装置的结构、驱动机构驱动的具体驱动方式及结构也可以为:所述中轴的头部套有头套,所述的驱动机构驱动所述的头套转动;
抽水装置包括:所述的头套向下设有螺纹套,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
所述的抽水套上设有位于所述脱水框架下方的抽水孔,
进一步,还包括一清洗桶,所述的清洗桶内设有清洗篮,所述清洗篮的中央设有清洗转轴,该清洗篮通过所述的清洗转轴安装于所述的清洗桶内。
进一步,还包括一清洗脱水桶,所述的清洗脱水桶内亦设有所述的脱水框架、抽水装置;
所述拖把桶的抽水装置可将水排至所述的清洗脱水桶内,所述清洗脱水桶的抽水装置可将水排至安装脱水框架的容积体内。
本发明的另一技术方案为:一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
所述的拖把桶具有一个或多个容积体,还包括可旋转的脱水框架,至少一个容积体内设有可旋转的脱水框架,所述脱水框架的中央设有中轴,所述拖把桶还设有抽水泵,所述抽水泵的进水口位于所述可旋转的脱水框架的下方,所述的拖把桶设有控制所述抽水泵工作与否的开关,抽水泵工作将安装脱水框架的容积体内的水排出。
具体的,所述的开关为位于所述脱水框架下方的水位开关,该水位开关位于安装脱水框架的容积体内。或者:所述的开关为位于所述脱水框架下方的浮球开关,该浮球开关位于安装脱水框架的容积体内。
进一步,还包括一清洗桶,所述的清洗桶内设有清洗篮,所述清洗篮的中央设有清洗转轴,该清洗篮通过所述的清洗转轴安装于所述的清洗桶内。
进一步,还包括一清洗脱水桶,所述的清洗脱水桶内亦设有所述的脱水框架、抽水泵、开关;
所述拖把桶的抽水泵可将水排至所述的清洗脱水桶内,所述清洗脱水桶的抽水泵可将水排至安装脱水框架的容积体内。
本发明的另一种技术方案不具有脱水框架,在脱水时直接在中轴上旋转脱水,具体来说有三种方案:
一.通过拖把头来驱动抽水装置抽水:一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,所述的转轴上设有转盘,脱水时将所述的拖把头置于所述的转轴上端,拖把头旋转脱水,所述的转盘上设有与所述的拖把头相抵的挡筋从而由所述的拖把头驱动所述的转盘转动;
所述拖把桶还设有抽水装置,拖把头置于所述的转轴上端时所述抽水装置的进水口位于所述拖把头的下方,脱水时抽水装置由所述的转盘驱动,将设有转轴的容积体内的水排出。
二.通过头套来驱动抽水装置:一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,所述的转轴上端套有头套,脱水时将所述的拖把头置于所述的头套上,拖把头旋转脱水,所述的驱动机构驱动所述的头套转动;
所述拖把桶还设有抽水装置,拖把头置于所述的头套上时所述抽水装置的进水口位于所述拖把头的下方,脱水时抽水装置由所述的头套驱动,将设有转轴的容积体内的水排出。
三.通过转轴来驱动抽水装置:一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,脱水时将所述的拖把头置于所述转轴的上端,拖把头旋转脱水,所述的驱动机构驱动所述的转轴转动;
所述拖把桶还设有抽水装置,拖把头置于所述的转轴上端时所述抽水装置的进水口位于所述拖把头的下方,脱水时抽水装置由所述的转轴驱动,将设有转轴的容积体内的水排出。
在不具有清洗桶、清洗脱水桶时:将拖把的拖把头置于脱水框架内,既可进行清洗又可进行脱水。在脱水时,安装脱水框架的容积体内没有水,将拖把的拖把头置于脱水框架内,与现有技术中相同,按压拖把杆,脱水框架及拖把头转动将水甩干。甩出来的水盛于安装脱水框架的容积体内,抽水装置由驱动机构驱动,通过抽水装置将安装脱水框架的容积体内的水抽出。如此即可将桶体的高度减短,不必如现有技术中的桶体一样还需在脱水框架的下方设置一储水空间;
在清洗时,在安装脱水框架的容积体内注水,直接将拖把的拖把头置于脱水框架内,拖把头浸入到水中,如现有技术中相同,按压拖把杆,拖把头及脱水框架转动即可实现清洗;同时在清洗时,抽水装置由驱动机构驱动,通过抽水装置将安装脱水框架的容积体内的水抽出,可实现清洗完后的脱水。
在具有桶体和清洗桶时:如前所述,可在安装脱水框架的容积体内进行脱水和清洗,抽水装置可将安装脱水框架的容积体内的水抽到清洗桶内。在清洗桶内可进行清洗,直接将拖把的拖把头置于清洗篮内,拖把头浸入到水中,如现有技术中相同,按压拖把杆,带动清洗篮和拖把头转动即可实现清洗,清洗桶内的水可从拖把桶内转移而来,节约用水。
在具有桶体和清洗脱水桶时:相当于设置了两个相同的安装脱水框架的容积体,在安装脱水框架的容积体和清洗脱水桶内均可进行脱水和清洗,安装脱水框架的容积体内的水可转移到清洗脱水桶内,清洗脱水桶内的水可转移到安装脱水框架的容积体内。
本发明的另一种工作原理与前述工作原理相似,只不过抽水采用的是抽水泵,通过开关来实现抽水泵工作与否。
在不具有脱水框架时,同样拖把头可进行旋转脱水,只是少了脱水框架的束缚而已。
本发明的有益效果在于:不必如现有技术中的桶体一样还需在脱水框架的下方设置一储水空间,故可将桶体的高度减短,平板拖的拖把头可相应增长,更加适合平板拖与其配合使用。
附图说明
图1是拖把的结构示意图。
图2是实施例一的结构示意图。
图3是实施例一中脱水框架驱动抽水装置的结构示意图。
图4是实施例一中抽水装置的内部结构图。
图5是将平板拖的拖把头置于脱水框架内的状态示意图。
图6是具有多个容积体的拖把桶的结构示意图。
图7是另一种储水方式的结构示意图。
图8是实施例二中中轴驱动抽水装置的结构示意图。
图9是实施例三中头套驱动抽水装置的结构示意图。
图10是实施例四中脱水框架驱动另一抽水装置的结构示意图。
图11是另一抽水装置的内部结构图。
图12是实施例五中中轴驱动另一抽水装置的结构示意图。
图13是实施例六中头套驱动另一抽水装置的结构示意图。
图14是实施例七中具有清洗桶的本发明的结构示意图。
图15是实施例八中具有清洗脱水桶的本发明的结构示意图。
图16是实施例九中采用抽水泵的本发明的结构示意图。
图17是实施例十四的结构示意图。
图18是实施例十五的结构示意图。
图19是实施例十六的结构示意图。
具体实施方式
下面结合附图和具体实施方式对本发明作进一步详细说明。
实施例一
参照图1~图7,一种清洁工具,包括拖把桶1和拖把杆2,所述拖把杆2的下端设有可带擦拭物的拖把头3。
所述的拖把杆2包括相互套接的内杆和外杆,拖把头2连接在内杆的下端,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构4(若内杆在上,外杆在下则拖把头连接在外杆下端,拖把杆的伸缩运动转化为外杆的旋转运动,但是内杆在上,外杆在下的结构在实际中基本上不会采用)。驱动机构4的具体结构形式是本领域的常规技术,在此不再赘述。
所述的拖把桶1具有一个或多个容积体,还包括可旋转的脱水框架5,至少一个容积体内设有可旋转的脱水框架5,所述脱水框架5的中央设有中轴6。本实施例中,拖把桶1只具有一个容积体,拖把桶1本身即为容积体。
所述拖把桶1还设有抽水装置,所述抽水装置的进水口位于所述可旋转的脱水框架5的下方,脱水时将所述拖把头3置于脱水框架5中,抽水装置由所述的驱动机构4驱动,将安装脱水框架5的拖把桶1内的水排出。
本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述的驱动机构驱动所述的脱水框架5转动,脱水框架5再驱动抽水装置工作:所述脱水框架5的底面设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮9,所述叶轮9的中央设有泵轴,所述泵轴的头部伸出所述泵体8的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。脱水框架5转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮9转动,从而实现抽水,并可通过抽水管11将水排出。脱水框架5的转动是由驱动机构来驱动的,驱动机构驱动脱水框架5转动的方式是现有常规技术,现有的清洁工具均可实现该功能,在此不再赘述。
为了能将水抽干净,所述的抽水装置位于所述拖把桶1的底部,即:泵体8位于拖把桶1的底部,泵体8的底面可向下延伸出下延筒12,在下延筒12上设开孔,通过开孔抽水。设置下延筒12后抽水更彻底。抽水管11可从拖把桶1的上端伸出,也可如图7所示,直接从拖把桶1的底部伸出,可在拖把桶1的侧壁的底部设有一排水口,排水口内设塞子14,不抽水时采用塞子14将排水口塞住。
本实施例中,采用的是叶轮泵,当然也可以采用齿轮泵、容积泵等形式,采用齿轮泵、容积泵等形式时,也可如本实施例中所述,脱水框架5转动,通过传动机构将动力传输至泵内。传动机构的形式可采用如本实施例中所述的齿轮传动机构,也可采用其他动力传输机构,这种传动机构的设计是本领域技术人员容易实现的,在此不一一列举。
本实施例中,采用的是叶轮泵,因此抽水装置位于桶体内。当然也可以采用自吸泵等,此时即可将抽水装置安装于桶体外。
本实施例中,拖把桶1只具有一个容积体,当然拖把桶也可以具有多个容积体13,如图6所示,至少一个容积体13内设有可旋转的脱水框架5,使用抽水装置将安装脱水框架5的容积体内的水排出。
使用时将拖把的拖把头3置于脱水框架5内,既可进行清洗又可进行脱水。图5所示是使用平板拖的状况,当然圆盘形拖把头的拖把也可使用。在脱水时,拖把桶1内没有水,将拖把的拖把头3置于脱水框架5内,与现有技术中相同,按压拖把杆,脱水框架5及拖把头3转动将水甩干。甩出来的水盛于拖把桶1内,抽水装置由驱动机构驱动,通过抽水装置将拖把桶1内的水抽出。如此即可将桶体的高度减短,不必如现有技术中的桶体一样还需在脱水框架5的下方设置一储水空间;
在清洗时,在拖把桶1内注水,直接将拖把的拖把头3置于脱水框架5内,拖把头3浸入到水中,如现有技术中相同,按压拖把杆,拖把头3及脱水框架5转动即可实现清洗;同时在清洗时,抽水装置由驱动机构驱动,通过抽水装置将拖把桶1内的水抽出,可实现清洗完后的脱水。
实施例二
参照图1、图8,本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述的驱动机构4驱动所述的中轴6转动,中轴6再驱动抽水装置工作:所述的中轴6上设有齿轮套15,所述的齿轮套15上设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括位于拖把桶1内的泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。中轴6转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮转动,从而实现抽水,并通过抽水管11将水排出。中轴6的转动是由驱动机构4来驱动的,驱动机构4驱动中轴转动的方式是现有技术,例如在中轴6的头部设一头套16,拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16及中轴6转动;或者中轴6与脱水框架一体,通过脱水框架的转动带动中轴6转动。中轴6转动时,优选在拖把桶的底面设一座套17,中轴6插入到座套17内,座套17底部设一钢球,中轴6下端顶在钢球上,转动更顺畅,且中轴6转动过程中较为稳固。
其余结构和实施方式与实施例一相同,在此不再赘述。
实施例三
参照图1、图9,本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述中轴6的头部套有头套16,所述的驱动机构驱动所述的头套16转动,头套16再驱动抽水装置工作:所述的头套16向下设有齿轮套15,所述的齿轮套15上设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括位于拖把桶内的泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。头套16转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮转动,从而实现抽水,并通过抽水管11将水排出。头套16的转动是由驱动机构4来驱动的,驱动机构4驱动头套转动的方式是现有技术,现有技术中的中轴6上一般都具有头套16,例如拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16转动。
其余结构和实施方式与实施例一相同,在此不再赘述。
实施例四
参照图1、图10、图11,本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述的驱动机构4驱动所述的脱水框架5转动,脱水框架5再驱动抽水装置工作。所述抽水装置包括:脱水框架5的底面设有螺纹套18,所述的螺纹套18套于所述的中轴6外,所述的螺纹套18外还套有抽水套19,所述抽水套19的下端与所述的拖把桶连接;所述的抽水套19上设有位于所述脱水框架5下方的抽水孔20。为了能将水抽干净,抽水孔20开设在抽水套19的尾部。
脱水框架5转动,带动螺纹套18转动,螺纹套18转动则通过抽水孔20即可将水抽进抽水套19内,从而实现抽水,并可通过抽水管11将水排出。脱水框架5的转动是由驱动机构4来驱动的,驱动机构4驱动脱水框架5转动的方式是现有技术,现有的清洁工具均可实现该功能,在此不再赘述。
其余结构和实施方式与实施例一相同,在此不再赘述。
实施例五
参照图1、图12,本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述的驱动机构4驱动所述的中轴6转动,中轴6再驱动抽水装置工作。所述抽水装置包括:中轴6上设有螺纹套,所述的螺纹套外还套有抽水套19,所述抽水套19的下端与所述的拖把桶连接;所述的抽水套19上设有位于所述脱水框架下方的抽水孔20,为了能将水抽干净,抽水孔20开设在抽水套的尾部。
中轴6转动,带动螺纹套转动,螺纹套转动则通过抽水孔20即可将水抽进抽水套19内,从而实现抽水,并可通过抽水管11将水排出。中轴6的转动是由驱动机构4来驱动的,驱动机构4驱动中轴6转动的方式是现有技术,例如在中轴6的头部设一头套16,拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16及中轴6转动;或者中轴6与脱水框架一体,通过脱水框架的转动带动中轴6转动。中轴6转动时,优选在拖把桶的底面设一座套17,中轴6插入到座套17内,座套17底部设一钢球,中轴6下端顶在钢球上,转动更顺畅,且中轴6转动过程中较为稳固。
其余结构和实施方式与实施例一相同,在此不再赘述。
实施例六
参照图1、图13,本实施例中,抽水装置的结构、驱动机构驱动的具体驱动方式及结构为:
所述中轴6的头部套有头套16,所述的驱动机构4驱动所述的头套16转动,头套16再驱动抽水装置工作。所述抽水装置包括:头套16上设有螺纹套,所述的螺纹套外还套有抽水套19,所述抽水套19的下端与所述的拖把桶连接;所述的抽水套19上设有位于所述脱水框架下方的抽水孔20,为了能将水抽干净,抽水孔20开设在抽水套的尾部。
头套16转动,带动螺纹套转动,螺纹套转动则通过抽水孔20即可将水抽进抽水套19内,从而实现抽水,并可通过抽水管11将水排出。头套16的转动是由驱动机构4来驱动的,驱动机构4驱动头套16转动的方式是现有技术,现有技术中的中轴6上一般都具有头套16,例如拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16转动。
其余结构和实施方式与实施例一相同,在此不再赘述。
实施例七
参照图1、图14,还包括一清洗桶21,所述的清洗桶21内设有清洗篮22,所述清洗 篮22的中央设有清洗转轴,该清洗篮22通过所述的清洗转轴安装于所述的清洗桶21内。清洗篮22与清洗转轴之间的连接关系,清洗转轴与清洗桶21之间的连接关系均为现有常规技术,在此不再赘述。
如前所述,可在拖把桶1内进行脱水和清洗,抽水装置可将拖把桶1内的水抽到清洗桶21内。在清洗桶21内可进行清洗,直接将拖把的拖把头3置于清洗篮22内,拖把头3浸入到水中,如现有技术中相同,按压拖把杆,带动清洗篮22和拖把头3转动即可实现清洗,清洗桶21内的水可从拖把桶1内转移而来,节约用水。
其余结构和实施方式与实施例一~实施例六之一相同,在此不再赘述。
实施例八
参照图1、图15,还包括一清洗脱水桶23,所述的清洗脱水桶23内亦设有所述的脱水框架5、抽水装置;所述拖把桶1的抽水装置可将水排至所述的清洗脱水桶23内,所述清洗脱水桶23的抽水装置可将水排至拖把桶1内。
本实施例中,相当于设置了两个相同的拖把桶,在拖把桶1和清洗脱水桶23内均可进行脱水和清洗,拖把桶1内的水可转移到清洗脱水桶23内,清洗脱水桶23内的水可转移到拖把桶1内。
其余结构和实施方式与实施例一~实施例六之一相同,在此不再赘述。
实施例九
前述实施例都是通过机械驱动抽水装置来进行抽水,本实施例中,抽水采用的是抽水泵,通过开关来实现抽水泵工作与否。
参照图1、图16,一种清洁工具,包括拖把桶1和拖把杆2,所述拖把杆2的下端设有可带擦拭物的拖把头3。
所述的拖把杆2包括相互套接的内杆和外杆,拖把头3连接在内杆的下端,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构4(若内杆在上,外杆在下则拖把头连接在外杆下端,拖把杆的伸缩运动转化为外杆的旋转运动,但是内杆在上,外杆在下的结构在实际中基本上不会采用)。驱动机构4的具体结构形式是本领域的常规技术,在此不再赘述。
所述的拖把桶1具有一个或多个容积体,还包括可旋转的脱水框架5,至少一个容积体内设有可旋转的脱水框架5,所述脱水框架5的中央设有中轴6。本实施例中,拖把桶1只具有一个容积体,拖把桶1本身即为容积体。
所述拖把桶1内还设有抽水泵24,所述抽水泵24的进水口位于所述可旋转的脱水框架5的下方,所述的拖把桶1设有控制所述抽水泵24工作与否的开关,抽水泵24工作将拖把桶1内的水排出。为了达到抽水彻底的效果,所述的抽水泵位于所述拖把桶1的底部。
本实施例中,所述的开关为位于所述脱水框架5下方的水位开关25,该水位开关25位于拖把桶1内。由于安装的是水位开关,因此拖把桶1内只能进行脱水,脱水时水位上升至水位开关后,水位开关25指令抽水泵启动抽水,并可通过抽水管11将水排出。
本实施例中抽水泵24位于桶体内。当然可以采用自吸泵等,此时即可将抽水泵24安 装于桶体外。
本实施例中,拖把桶1只具有一个容积体,当然拖把桶1也可以具有多个容积体,至少一个容积体内设有可旋转的脱水框架,使用抽水泵将安装脱水框架的容积体内的水排出。
实施例十
所述的开关为位于所述脱水框架下方的浮球开关,该浮球开关位于安装脱水框架的容积体内。由于安装的是浮球开关,因此拖把桶内只能进行脱水,脱水时水位上升至浮球开关后,浮球开关指令抽水泵启动抽水。
其余结构和实施方式与实施例九相同。
实施例十一
所述的开关为位于拖把桶外壁上的普通电开关,拖把桶内既可进行脱水也可进行清洗进行脱水,直接通过操作普通电开关来启动抽水泵抽水。
其余结构和实施方式与实施例九相同。
实施例十二
还包括一清洗桶,所述的清洗桶内设有清洗篮,所述清洗篮的中央设有清洗转轴,该清洗篮通过所述的清洗转轴安装于所述的清洗桶内。
在清洗桶内可进行清洗,直接将拖把的拖把头置于清洗篮内,拖把头浸入到水中,如现有技术中相同,按压拖把杆,带动清洗篮和拖把头转动即可实现清洗,清洗桶内的水可从拖把桶内转移而来,节约用水。
其余结构和实施方式与实施例九~实施例十一之一相同,在此不再赘述。
实施例十三
还包括一清洗脱水桶,所述的清洗脱水桶内亦设有所述的脱水框架、抽水泵、开关;所述拖把桶的抽水泵可将水排至所述的清洗脱水桶内,所述清洗脱水桶的抽水泵可将水排至拖把桶内。
本实施例中,相当于设置了两个相同的拖把桶,拖把桶内的水可转移到清洗脱水桶内,清洗脱水桶内的水可转移到拖把桶内。
其余结构和实施方式与实施例九~实施例十一之一相同,在此不再赘述。
实施例十四
参照图1、图17,一种清洁工具,包括拖把桶1和拖把杆2,所述拖把杆2的下端设有可带擦拭物的拖把头3。
所述的拖把杆2包括相互套接的内杆和外杆,拖把头2连接在内杆的下端,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构4(若内杆在上,外杆在下则拖把头连接在外杆下端,拖把杆的伸缩运动转化为外杆的旋转运动,但是内杆在上,外杆在下的结构在实际中基本上不会采用)。驱动机构4的具体结构形式是本领域的常规技术,在此不再赘述。
所述的拖把桶1具有一个或多个容积体,本实施例中,拖把桶1只具有一个容积体, 拖把桶1本身即为容积体。拖把桶内设有转轴26,所述的转轴26上设有转盘27,脱水时将所述的拖把头3置于所述的转轴26上端,拖把头3旋转脱水,所述的转盘27上设有与所述的拖把头3相抵的挡筋28从而由所述的拖把头3驱动所述的转盘27转动;
所述拖把桶还设有抽水装置,拖把头3置于所述的转轴上端时所述抽水装置的进水口位于所述拖把头3的下方,脱水时抽水装置由所述的转盘27驱动,将拖把桶1内的水排出。
本实施例中,抽水装置具体结构及转盘的具体驱动方式为:所述转盘27的底面设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体8的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。转盘27转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮转动,从而实现抽水,并可通过抽水管11将水排出。
为了能将水抽干净,所述的抽水装置位于所述拖把桶1的底部,即:泵体8位于拖把桶1的底部,泵体8的底面可向下延伸出下延筒12,在下延筒12上设开孔,通过开孔抽水。设置下延筒12后抽水更彻底。抽水管11可从拖把桶1的上端伸出,也可直接从拖把桶1的底部伸出,可在拖把桶1的侧壁的底部设有一排水口,排水口内设塞子,不抽水时采用塞子将排水口塞住。
本实施例中,采用的是叶轮泵,当然也可以采用齿轮泵、容积泵等形式,采用齿轮泵、容积泵等形式时,也可如本实施例中所述,转盘转动,通过传动机构将动力传输至泵内。传动机构的形式可采用如本实施例中所述的齿轮传动机构,也可采用其他动力传输机构,这种传动机构的设计是本领域技术人员容易实现的,在此不一一列举。
本实施例中,采用的是叶轮泵,因此抽水装置位于桶体内。当然也可以采用自吸泵等,此时即可将抽水装置安装于桶体外。
本实施例中,拖把桶1只具有一个容积体,当然拖把桶也可以具有多个容积体,至少一个容积体内设转轴,使用抽水装置将安装转轴的容积体内的水排出。
在脱水时如现有技术中相同,按压拖把杆2,拖把头3转动即可实现脱水,通过抽水装置将拖把桶1内的水抽出。如此即可将桶体的高度减短,不必如现有技术中的桶体一样还需在脱水篮的下方设置一储水空间;
在清洗时,在拖把桶1内注水,如现有技术中相同,按压拖把杆,拖把头3转动即可实现清洗;同时在清洗时,抽水装置由驱动机构驱动,通过抽水装置将拖把桶1内的水抽出,可实现清洗完后的脱水。
实施例十五
参照图1、图18,一种清洁工具,包括拖把桶1和拖把杆2,所述拖把杆2的下端设有可带擦拭物的拖把头3。
所述的拖把杆2包括相互套接的内杆和外杆,拖把头2连接在内杆的下端,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构4(若内杆在上, 外杆在下则拖把头连接在外杆下端,拖把杆的伸缩运动转化为外杆的旋转运动,但是内杆在上,外杆在下的结构在实际中基本上不会采用)。驱动机构4的具体结构形式是本领域的常规技术,在此不再赘述。
所述的拖把桶1具有一个或多个容积体,本实施例中,拖把桶1只具有一个容积体,拖把桶1本身即为容积体。拖把桶内设有转轴,所述的转轴26上端套有头套16,脱水时将所述的拖把头3置于所述的头套16上,拖把头3旋转脱水,所述的驱动机构驱动所述的头套16转动;
所述拖把桶还设有抽水装置,拖把头置于所述的头套16上时所述抽水装置的进水口位于所述拖把头3的下方,脱水时抽水装置由所述的头套驱动,将拖把桶内的水排出。
本实施例中,抽水装置的结构、头套的具体驱动方式为:所述的驱动机构驱动所述的头套16转动,头套16再驱动抽水装置工作:所述的头套16向下设有齿轮套15,所述的齿轮套15上设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括位于拖把桶内的泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。头套16转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮转动,从而实现抽水,并通过抽水管11将水排出。头套16的转动是由驱动机构4来驱动的,驱动机构4驱动头套转动的方式是现有技术,现有技术中的中轴6上一般都具有头套16,例如拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16转动。
为了能将水抽干净,所述的抽水装置位于所述拖把桶1的底部,即:泵体8位于拖把桶1的底部,泵体8的底面可向下延伸出下延筒12,在下延筒12上设开孔,通过开孔抽水。设置下延筒12后抽水更彻底。抽水管11可从拖把桶1的上端伸出,也可直接从拖把桶1的底部伸出,可在拖把桶1的侧壁的底部设有一排水口,排水口内设塞子,不抽水时采用塞子将排水口塞住。
本实施例中,采用的是叶轮泵,当然也可以采用齿轮泵、容积泵等形式,采用齿轮泵、容积泵等形式时,也可如本实施例中所述,转盘转动,通过传动机构将动力传输至泵内。传动机构的形式可采用如本实施例中所述的齿轮传动机构,也可采用其他动力传输机构,这种传动机构的设计是本领域技术人员容易实现的,在此不一一列举。
本实施例中,采用的是叶轮泵,因此抽水装置位于桶体内。当然也可以采用自吸泵等,此时即可将抽水装置安装于桶体外。
本实施例中,拖把桶1只具有一个容积体,当然拖把桶也可以具有多个容积体,至少一个容积体内设转轴,使用抽水装置将安装转轴的容积体内的水排出。
在脱水时如现有技术中相同,按压拖把杆2,拖把头3转动即可实现脱水,通过抽水装置将拖把桶1内的水抽出。如此即可将桶体的高度减短,不必如现有技术中的桶体一样还需在脱水篮的下方设置一储水空间;
在清洗时,在拖把桶1内注水,如现有技术中相同,按压拖把杆,拖把头3转动即可实现清洗;同时在清洗时,抽水装置由驱动机构驱动,通过抽水装置将拖把桶1内的水抽出,可实现清洗完后的脱水。
实施例十六
参照图1、图18,一种清洁工具,包括拖把桶1和拖把杆2,所述拖把杆2的下端设有可带擦拭物的拖把头3。
所述的拖把杆2包括相互套接的内杆和外杆,拖把头2连接在内杆的下端,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为内杆的旋转运动的驱动机构4(若内杆在上,外杆在下则拖把头连接在外杆下端,拖把杆的伸缩运动转化为外杆的旋转运动,但是内杆在上,外杆在下的结构在实际中基本上不会采用)。驱动机构4的具体结构形式是本领域的常规技术,在此不再赘述。
所述的拖把桶1具有一个或多个容积体,本实施例中,拖把桶1只具有一个容积体,拖把桶1本身即为容积体。拖把桶内设有转轴,脱水时将所述的拖把头置于所述转轴26的上端,拖把头3旋转脱水,所述的驱动机构驱动所述的转轴26转动;
所述拖把桶还设有抽水装置,拖把头置于所述的转轴26上端时所述抽水装置的进水口位于所述拖把头3的下方,脱水时抽水装置由所述的转轴26驱动,将拖把桶1内的水排出。
本实施例中,抽水装置的结构即转轴的具体驱动方式为:所述的转轴26上设有齿轮套15,所述的齿轮套15上设有主动齿轮7;所述的抽水装置为叶轮泵,该叶轮泵包括位于拖把桶1内的泵体8,所述的泵体8具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮10,所述的从动齿轮10与所述的主动齿轮7啮合。转轴26转动,带动主动齿轮7转动,从而通过从动齿轮10带动泵轴及叶轮转动,从而实现抽水,并通过抽水管11将水排出。转轴26的转动是由驱动机构4来驱动的,驱动机构4驱动转轴转动的方式是现有技术,例如在转轴26的头部设一头套16,拖把头3的背面设有卡槽,卡槽卡入头套16内,拖把头3与拖把杆内杆连接,通过按压拖把杆,拖把杆内杆带动拖把头3转动,拖把头3带动头套16及转轴26转动;转轴26转动时,优选在拖把桶的底面设一座套17,中轴6插入到座套17内,座套17底部设一钢球,转轴26下端顶在钢球上,转动更顺畅,且转轴26转动过程中较为稳固。
为了能将水抽干净,所述的抽水装置位于所述拖把桶1的底部,即:泵体8位于拖把桶1的底部,泵体8的底面可向下延伸出下延筒,在下延筒上设开孔,通过开孔抽水。设置下延筒后抽水更彻底。抽水管11可从拖把桶1的上端伸出,也可直接从拖把桶1的底部伸出,可在拖把桶1的侧壁的底部设有一排水口,排水口内设塞子,不抽水时采用塞子将排水口塞住。
本实施例中,采用的是叶轮泵,当然也可以采用齿轮泵、容积泵等形式,采用齿轮泵、容积泵等形式时,也可如本实施例中所述,转盘转动,通过传动机构将动力传输至泵内。 传动机构的形式可采用如本实施例中所述的齿轮传动机构,也可采用其他动力传输机构,这种传动机构的设计是本领域技术人员容易实现的,在此不一一列举。
本实施例中,采用的是叶轮泵,因此抽水装置位于桶体内。当然也可以采用自吸泵等,此时即可将抽水装置安装于桶体外。
本实施例中,拖把桶1只具有一个容积体,当然拖把桶也可以具有多个容积体,至少一个容积体内设转轴,使用抽水装置将安装转轴的容积体内的水排出。
在脱水时如现有技术中相同,按压拖把杆2,拖把头3转动即可实现脱水,通过抽水装置将拖把桶1内的水抽出。如此即可将桶体的高度减短,不必如现有技术中的桶体一样还需在脱水篮的下方设置一储水空间;
在清洗时,在拖把桶1内注水,如现有技术中相同,按压拖把杆,拖把头3转动即可实现清洗;同时在清洗时,抽水装置由驱动机构驱动,通过抽水装置将拖把桶1内的水抽出,可实现清洗完后的脱水。

Claims (18)

  1. 一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
    所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
    所述的拖把桶具有一个或多个容积体,还包括可旋转的脱水框架,至少一个容积体内设有可旋转的脱水框架,所述脱水框架的中央设有中轴,脱水时将所述拖把头置于脱水框架中,拖把头旋转脱水,其特征在于:所述拖把桶还设有抽水装置,所述抽水装置的进水口位于所述可旋转的脱水框架的下方,脱水时抽水装置由所述的驱动机构驱动,将安装脱水框架的容积体内的水排出。
  2. 如权利要求1所述的清洁工具,其特征在于:所述的抽水装置为叶轮泵或齿轮泵或容积泵。
  3. 如权利要求2所述的清洁工具,其特征在于:所述的驱动机构驱动所述的脱水框架转动,所述脱水框架的底面设有主动齿轮;
    所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
  4. 如权利要求2所述的清洁工具,其特征在于:所述的驱动机构驱动所述的中轴转动,所述的中轴上设有齿轮套,所述的齿轮套上设有主动齿轮;
    所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中 央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
  5. 如权利要求2所述的清洁工具,其特征在于:所述中轴的头部套有头套,所述的驱动机构驱动所述的头套转动,所述的头套向下设有齿轮套,所述的齿轮套上设有主动齿轮;
    所述的抽水装置为叶轮泵,该叶轮泵包括位于安装脱水框架的容积体内的泵体,所述的泵体具有与外界联通的泵腔,所述的泵腔内具有叶轮,所述叶轮的中央设有泵轴,所述泵轴的头部伸出所述泵体的上端面,该泵轴的头部设有从动齿轮,所述的从动齿轮与所述的主动齿轮啮合。
  6. 如权利要求1所述的清洁工具,其特征在于:所述的驱动机构驱动所述的脱水框架转动,所述抽水装置包括:脱水框架的底面设有螺纹套,所述的螺纹套套于所述的中轴外,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
    所述的抽水套上设有位于所述脱水框架下方的抽水孔,
  7. 如权利要求1所述的清洁工具,其特征在于:所述的驱动机构驱动所述的中轴转动,所述抽水装置包括:中轴上设有螺纹套,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
    所述的抽水套上设有位于所述脱水框架下方的抽水孔。
  8. 如权利要求1所述的清洁工具,其特征在于:所述中轴的头部套有头套,所述的驱动机构驱动所述的头套转动;
    抽水装置包括:所述的头套向下设有螺纹套,所述的螺纹套外还套有抽水套,所述抽水套的下端与所述的拖把桶连接;
    所述的抽水套上设有位于所述脱水框架下方的抽水孔。
  9. 如权利要求1~8之一所述的清洁工具,其特征在于:还包括一清洗桶,所述的清洗桶内设有清洗篮,所述清洗篮的中央设有清洗转轴,该清洗篮通过所述的清洗转轴安装于所述的清洗桶内。
  10. 如权利要求1~8之一所述的清洁工具,其特征在于:还包括一清洗脱水桶,所述的清洗脱水桶内亦设有所述的脱水框架、抽水装置;
    所述拖把桶的抽水装置可将水排至所述的清洗脱水桶内,所述清洗脱水桶的抽水装置可将水排至安装脱水框架的容积体内。
  11. 一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
    所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
    所述的拖把桶具有一个或多个容积体,还包括可旋转的脱水框架,至少一个容积体内设有可旋转的脱水框架,所述脱水框架的中央设有中轴,其特征在于:所述拖把桶还设有抽水泵,所述抽水泵的进水口位于所述可旋转的脱水框架的下方,所述的拖把桶设有控制所述抽水泵工作与否的开关,抽水泵工作将安装脱水框架的容积体内的水排出。
  12. 如权利要求11所述的清洁工具,其特征在于:所述的开关为位于所述脱水框架下方的水位开关,该水位开关位于安装脱水框架的容积体内。
  13. 如权利要求11所述的清洁工具,其特征在于:所述的开关为位于所述脱水框架下方的浮球开关,该浮球开关位于安装脱水框架的容积体内。
  14. 如权利要求11~13之一所述的清洁工具,其特征在于:还包括一清洗桶,所述的清洗桶内设有清洗篮,所述清洗篮的中央设有清洗转轴,该清洗篮通过所述的清洗转轴安装于所述的清洗桶内。
  15. 如权利要求11~13之一所述的新型拖把桶,其特征在于:还包括一清洗脱水桶,所述的清洗脱水桶内亦设有所述的脱水框架、抽水泵、开关;
    所述拖把桶的抽水泵可将水排至所述的清洗脱水桶内,所述清洗脱水桶的抽水泵可将水排至安装脱水框架的容积体内。
  16. 一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
    所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
    其特征在于:所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,所述的转轴上设有转盘,脱水时将所述的拖把头置于所述的转轴上端,拖把头旋转脱水,所述的转盘上设有与所述的拖把头相抵的挡筋从而由所述的拖把头驱动所述的转盘转动;
    所述拖把桶还设有抽水装置,拖把头置于所述的转轴上端时所述抽水装置的进水口位于所述拖把头的下方,脱水时抽水装置由所述的转盘驱动,将设有转轴的容积体内的水排出。
  17. 一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
    所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
    其特征在于:所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,所述的转轴上端套有头套,脱水时将所述的拖把头置于所述的头套上,拖把头旋转脱水,所述的驱动机构驱动所述的头套转动;
    所述拖把桶还设有抽水装置,拖把头置于所述的头套上时所述抽水装置的进 水口位于所述拖把头的下方,脱水时抽水装置由所述的头套驱动,将设有转轴的容积体内的水排出。
  18. 一种清洁工具,包括拖把桶和拖把杆,所述拖把杆的下端设有可带擦拭物的拖把头;
    所述的拖把杆包括相互套接的内杆和外杆,所述的内、外杆之间设有用于将拖把杆的伸缩运动转化为拖把杆的旋转运动的驱动机构;
    其特征在于:所述的拖把桶具有一个或多个容积体,至少一个容积体内设有转轴,脱水时将所述的拖把头置于所述转轴的上端,拖把头旋转脱水,所述的驱动机构驱动所述的转轴转动;
    所述拖把桶还设有抽水装置,拖把头置于所述的转轴上端时所述抽水装置的进水口位于所述拖把头的下方,脱水时抽水装置由所述的转轴驱动,将设有转轴的容积体内的水排出。
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