WO2024130933A1 - 一种可调节污水盖组件、水箱及清洁设备 - Google Patents
一种可调节污水盖组件、水箱及清洁设备 Download PDFInfo
- Publication number
- WO2024130933A1 WO2024130933A1 PCT/CN2023/092128 CN2023092128W WO2024130933A1 WO 2024130933 A1 WO2024130933 A1 WO 2024130933A1 CN 2023092128 W CN2023092128 W CN 2023092128W WO 2024130933 A1 WO2024130933 A1 WO 2024130933A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- sewage
- cover
- assembly
- roller brush
- water
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
Links
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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/29—Floor-scrubbing machines characterised by means for taking-up dirty liquid
- A47L11/30—Floor-scrubbing machines characterised by means for taking-up dirty liquid by suction
- A47L11/302—Floor-scrubbing machines characterised by means for taking-up dirty liquid by suction having rotary tools
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/29—Floor-scrubbing machines characterised by means for taking-up dirty liquid
- A47L11/30—Floor-scrubbing machines characterised by means for taking-up dirty liquid by suction
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4002—Installations of electric equipment
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4011—Regulation of the cleaning machine by electric means; Control systems and remote control systems therefor
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/4013—Contaminants collecting devices, i.e. hoppers, tanks or the like
- A47L11/4016—Contaminants collecting devices, i.e. hoppers, tanks or the like specially adapted for collecting fluids
-
- 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
- A47L11/00—Machines for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L11/40—Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
- A47L11/408—Means for supplying cleaning or surface treating agents
- A47L11/4083—Liquid supply reservoirs; Preparation of the agents, e.g. mixing devices
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D47/00—Closures with filling and discharging, or with discharging, devices
- B65D47/04—Closures with discharging devices other than pumps
- B65D47/06—Closures with discharging devices other than pumps with pouring spouts or tubes; with discharge nozzles or passages
Definitions
- the invention relates to the field of floor cleaning, and in particular to an adjustable sewage cover assembly, a water tank and cleaning equipment.
- the commonly used floor cleaning equipment on the market uses a suction device to suck sewage and dirt into a sewage tank.
- the sewage tank is set on the main body of the equipment.
- the sewage tank is disassembled, it is more laborious due to its large size and firm installation.
- the sewage and dirt in the sewage tank often splash out through the sewage outlet, which is not only time-consuming and laborious, but also brings a very bad experience to users.
- the mainstream technology of existing floor scrubbers or mops is a vacuum cleaner mechanism plus a roller brush structure.
- products of this technology route often need to use high-speed motors in order to pursue strong suction. Because the air negative pressure is used to suck out sewage and dirt, high-speed motors cause the product to be noisy. If a silent motor is used, the cost is high. The complex structure further increases the cost.
- the product itself is also relatively heavy, which is not conducive to user movement and is easy to break. Due to the high power consumption of high-speed motors, battery life is a big problem. In order to improve battery life, the number of battery packs is increased, which increases costs and increases product weight.
- This patent provides an adjustable sewage cover assembly, a water tank and a cleaning device.
- the solution is cleverly designed to avoid the problem of sewage and dirt in the water tank leaking during disassembly.
- the disassembly and assembly are linked with the opening and closing of the sewage outlet, making the operation simpler.
- the specific technical solution is as follows:
- the patent provides an adjustable sewage cover assembly, the end cover assembly is sealed and covered on the sewage tank, the end cover assembly includes an end cover body and an end cover adjustment member; the end cover body includes an inner cover and a fixed cover, and the end cover adjustment member includes a regulating valve and a regulating button;
- the inner cover surface is provided with a sewage outlet
- the fixed cover surface is provided with a second through hole, the sewage outlet and the second through hole correspond to each other, and the fixed cover is installed on the inner cover;
- the regulating valve is placed between the inner cover and the fixed cover, and a through hole and a shielding part are provided on the regulating valve.
- the button is arranged on a side of the fixed cover away from the regulating valve, and the regulating button is configured to be able to rotate and adjust the through hole on the regulating valve to correspond to the sewage outlet or the shielding part on the regulating valve to correspond to the sewage outlet.
- the regulating valve is provided with a fastening component connected to the cleaning equipment.
- the through hole on the regulating valve corresponds to the sewage outlet;
- the shielding portion on the regulating valve corresponds to the sewage outlet.
- the sewage cover assembly described in this patent also includes at least one adjustment structure, which includes a first adjustment structure and a second adjustment structure.
- the first adjustment structure is arranged on the inner cover or the fixed cover, and the second adjustment structure is arranged on the regulating valve.
- the second adjustment structure cooperates with the first adjustment structure, and the regulating valve can rotate to adjust the through hole on the regulating valve to correspond to the sewage outlet or the shielding part on the regulating valve to correspond to the sewage outlet.
- the sewage cover assembly described in this patent also includes at least one limiting structure, which can limit the rotation angle of the end cover adjustment member along the end cover body.
- the first adjustment structure includes a first clamping groove and a second clamping groove
- the second adjustment structure includes a clamping protrusion.
- the fastening component is a clip arranged on the regulating valve, and a mounting port is opened on the fixed cover.
- the regulating valve is rotated until the clip on the regulating valve corresponds to the mounting port, and when the clip is engaged with the cleaning equipment, the through hole on the regulating valve corresponds to the sewage outlet; when the regulating valve is rotated until the clip is removed from the mounting port, and when the clip is separated from the fixed plate of the cleaning equipment, the shielding portion on the regulating valve corresponds to the sewage outlet.
- the limiting structure includes a stop bar, a first stop block and a second stop block, the stop bar is arranged on the inner cover, and the first stop block and the second stop block are both arranged on the regulating valve;
- the first stop block conflicts with an end of the stop bar close to the first stop block; when the shielding portion corresponds to the sewage outlet, the second stop block conflicts with an end of the stop bar close to the second stop block.
- the regulating valve is a special-shaped regulating valve, and an arc-shaped portion is provided on the side of the regulating valve close to the bottom of the inner cover, and the first card groove, the second card groove, the first stop block and the second stop block are all provided on the arc-shaped portion, and the clamping strip is close to the side wall of the inner cover.
- the regulating button is fixedly installed on the regulating valve through the fixed cover, the regulating valve can rotate together with the regulating button, and the fixed cover does not rotate together with the regulating button.
- the port of the end cover body is circular, and a circular sewage cover sealing ring sealed with the water tank is provided on the end cover body.
- the regulating button is non-circular along the cross section, and/or the side surface of the regulating button is an anti-slip surface.
- annular sealing groove is provided on the end cover body, the annular sealing groove is arranged around the outside of the sewage outlet, and a sealing ring is fixedly accommodated in the annular sealing groove.
- this patent provides a water tank, including a shell and a sewage cover assembly as described in the above scheme, the shell includes at least one accommodating cavity and an opening, the opening is connected to an accommodating cavity, and the sewage cover assembly is sealed and covered on the opening.
- the patent provides a cleaning device, including a roller brush assembly, a screw assembly, a device body, a power module and a control module; the roller brush assembly and the screw assembly are both installed on the device body;
- a dirt holding tank is provided on the main body of the equipment, and the screw assembly can be rotatably installed in the dirt holding tank.
- the screw assembly is closely fitted or closely arranged in the dirt holding tank.
- the dirt holding tank is provided with a long strip dirt receiving port facing the roller brush assembly.
- a sewage outlet is provided at one end of the dirt holding tank, and the sewage outlet is communicated with the sewage cavity.
- the screw assembly is arranged in extrusion contact with the roller brush assembly, and the screw assembly can squeeze the water and dirt on the roller brush assembly.
- the roller brush assembly cooperates with the dirt holding tank and the screw assembly to transmit water and dirt to the sewage outlet, and the sewage outlet is connected to the sewage tank;
- the control module can control the operation of the cleaning device, and the power module can provide electrical energy to the cleaning device.
- a roller brush detection structure is also provided, which can detect whether there is water in the roller brush layer on the roller brush assembly.
- the roller brush detection structure includes two conductive contacts arranged at intervals, which are arranged in contact with the roller brush layer on the roller brush assembly.
- the two conductive contacts are connected to the power module through wires respectively, and whether there is water in the roller brush layer can be detected by whether the two conductive contacts are conductive.
- a plurality of first water replenishment holes are opened on the floor brush module, the first water replenishment holes face the roller brush assembly, and the first water replenishment holes are connected to the clean water chamber through a water pump;
- the sewage tank is provided with a second water replenishment hole, which is arranged at one end of the sewage tank away from the sewage outlet, and the second water replenishment hole is connected to the clean water tank through a water suction pipe.
- air holes are provided on the sewage tank.
- a shielding groove is provided on the inner wall of the sewage tank, and one side wall of the shielding groove corresponds to the air vent;
- the air holes are covered with a waterproof and breathable membrane.
- water-blocking cotton is placed in the shielding groove.
- the roller brush assembly, the screw assembly and the dirt holding tank combination, and the sewage tank are arranged in sequence in the horizontal direction, the height of the screw assembly and the dirt holding tank combination is lower than the height of the roller brush assembly and the sewage tank, and at least one is arranged in the recessed position between the roller brush assembly and the sewage tank.
- the connection between the water pump and the operating lever is arranged in sequence in the horizontal direction, the height of the screw assembly and the dirt holding tank combination is lower than the height of the roller brush assembly and the sewage tank, and at least one is arranged in the recessed position between the roller brush assembly and the sewage tank.
- this patent provides a floor cleaning device, including a roller brush assembly, a transmission motor, a power module and a control module, wherein the control module can control the power module to connect to the transmission motor, and the transmission motor drives the roller brush assembly to rotate.
- the floor cleaning equipment also includes a clean water tank, a sewage tank, an equipment body, and a screw assembly;
- a first cover body and a second cover body are provided on both sides of the device body, and the roller brush assembly is installed in the floor brush module through the first cover body and the second cover body;
- the inner side of the equipment body is a sewage tank that matches the shape of the screw assembly.
- the sewage tank is a semi-enclosed structure that is greater than 180 degrees.
- a sewage outlet is provided at one end of the sewage tank along the direction in which the screw assembly transmits sewage and garbage.
- the screw assembly is installed in the dirt storage tank of the floor brush module through the second cover body and the first cover body, the screw assembly is provided with a thread group, the thread edge of the thread group and the inner wall of the dirt storage tank are less than 5 mm apart, and the clean water tank transports clean water to the end of the screw assembly away from the sewage outlet through the water pump;
- a portion of the screw assembly is in extrusion contact with the roller brush surface of the roller brush assembly through the semi-enclosed structure of the dirt holding tank, and the relative rotation between the screw assembly and the roller brush assembly can transfer the sewage and garbage adsorbed by the roller brush to the sewage outlet through the dirt holding tank;
- the sewage outlet is arranged corresponding to the sewage outlet of the sewage tank.
- the screw body of the screw assembly is provided with a first thread group and a second thread group, the thread diameter of the second thread group is larger than the thread diameter of the first thread group, the thread pitch of the second thread group is smaller than the thread pitch of the first thread group, the second thread group is arranged corresponding to the sewage outlet, and the first thread group and the second thread group are flexible threads.
- the distance between the thread edge of the screw assembly and the inner wall of the dirt holding tank is less than 1 mm, or the interval is 0.2-0.5 mm.
- the screw assembly rotates passively, and the rotation of the roller brush assembly drives the screw assembly to rotate passively; or, the screw assembly is connected to a motor for active rotation.
- the lower edge of the drain outlet is higher than the horizontal position of the central axis of the screw, and the upper edge of the drain outlet is higher than the upper edge of the thread of the screw assembly; the width of the drain outlet is less than or equal to the width of the second thread group.
- the sewage outlet of the sewage tank is provided with a top block, and the top block pushes open the water inlet cover of the sewage tank.
- the diameter ratio of the roller brush assembly to the screw assembly ranges from 4:1 to 1:1.
- the right cover of the floor brush bracket and the left cover of the floor brush bracket are respectively provided with a roller brush handle mounting groove, and the inner wall of at least one roller brush handle mounting groove is provided with an elastic conductive component, the roller brush assembly is installed from top to bottom, and a conductive component is installed on the side of at least one roller brush handle, the conductive component matches the elastic conductive component, and bearings are provided on both sides of the roller brush assembly.
- the first cover body and the second cover body are respectively provided with a screw rotating head mounting groove and a screw mounting port, the screw rotating head at one end of the screw assembly matches the screw rotating head mounting groove, the screw end cap is tightly connected to the screw mounting port, and the screw assembly A bearing is arranged on at least one side of the screw end cover.
- the water suction pipe sprays clean water directly onto the surface of the roller brush.
- the present patent provides a sewage cover assembly, including an end cover body and an end cover adjustment member;
- the end cover body is provided with a sewage outlet
- the end cover adjusting member is movably connected to the end cover body
- the end cover adjusting member is provided with a through hole and a shielding portion
- the end cover adjusting member is configured to be rotatably adjusted so that the through hole corresponds to the sewage outlet or the shielding portion corresponds to the sewage outlet.
- the end cover adjusting member is provided with a fastening component connected to the cleaning equipment.
- the through hole on the end cover adjusting member corresponds to the sewage outlet; when the water tank provided with the sewage cover assembly is separated from the cleaning equipment through the fastening component, the shielding portion on the end cover adjusting member corresponds to the sewage outlet.
- a first adjustment structure is provided on the end cover body, and a second adjustment structure matching the first adjustment structure is provided on the end cover adjustment member, and the end cover adjustment member can be rotated and adjusted to make the through hole correspond to the sewage outlet or the shielding part corresponds to the sewage outlet.
- the first adjustment structure includes a first buckle groove and a second buckle groove
- the second adjustment structure includes a buckle block
- the first adjustment structure includes a buckle block, and the second adjustment structure includes a first buckle slot and a second buckle slot;
- the buckle block When the end cover adjusting piece is rotated to the point where the through hole corresponds to the sewage outlet, the buckle block is buckled in the first buckle groove; when the end cover adjusting piece is rotated to the point where the shielding portion corresponds to the sewage outlet, the buckle block is buckled in the second buckle groove.
- the limiting structure includes a stop bar, a first stop block and a second stop block, the stop bar is arranged on the inner cover, and the first stop block and the second stop block are both arranged on the regulating valve; the second limiting structure cooperates with the first limiting structure, and the end cover adjustment member can adjust its rotation angle through the cooperation of the first limiting structure and the second limiting structure.
- the end cover body is provided with a first stop block and a second stop block
- the end cover adjustment member is provided with a protruding block, and when the end cover adjustment member is rotated to the point where the through hole corresponds to the sewage outlet, the first stop block and the end of the protruding block close to the first stop block collide;
- the second limiting block conflicts with an end of the protruding block close to the second limiting block.
- annular sealing groove is provided on the end cover body, the annular sealing groove is arranged around the outside of the sewage outlet, and a sealing ring is fixedly accommodated in the annular sealing groove.
- the end cover adjustment member is provided with a mounting groove and a mounting plate
- the fastening component is a mounting plate
- the mounting plate extends into the mounting groove or is arranged above the mounting groove
- the outer diameter of the mounting plate is smaller than the inner diameter of the mounting groove
- the port of the end cover body is circular, and the end cover body is provided with a circular sewage cover sealing ring which is sealed with the water tank.
- the end cover body includes an inner cover and The outer cover, the end cover adjusting piece is placed between the inner cover and the outer cover, the end cover adjusting piece is movably sleeved on the inner cover, and the outer cover passes through the end cover adjusting piece and is fixedly connected to the inner cover.
- the first buckle groove and the second buckle groove are both arranged on the outer cover; and/or
- the end cover adjusting member is provided with a spring sheet, and the buckle block is provided on the spring sheet;
- the end cover adjustment member is a screw cap.
- the patent provides a water tank for a floor scrubber, comprising a shell, a sewage cover assembly and a clean water cover assembly, wherein the water tank is placed horizontally along the length direction, and the sewage outlet of the sewage cover assembly is connected to the sewage outlet of the cleaning equipment;
- the shell comprises a partition, a first accommodating chamber and a second accommodating chamber, wherein the partition divides the interior of the shell into a first accommodating chamber and a second accommodating chamber, wherein the first accommodating chamber can accommodate sewage and dirt, and the second accommodating chamber can accommodate clean water;
- the second accommodating chamber is connected with a clean water cover assembly, and the clean water cover assembly is provided with a conveying hole; the first accommodating chamber is connected with a dirty water cover assembly.
- a vent hole is provided on the sewage cover assembly, and the vent hole is communicated with the first accommodating cavity.
- the sewage outlet and/or the air vent are both arranged on the upper part of the sewage cover assembly.
- the end of the partition close to the sewage cover assembly is arranged at the upper part of the inner wall of the shell, and the end of the partition close to the clean water cover assembly is arranged at the lower part of the inner wall of the shell, and the partition extends from the upper part close to the sewage cover assembly to the lower part close to the clean water cover assembly.
- the air holes of the sewage cover assembly are covered with a waterproof and breathable film, and/or the inner wall of the sewage cover assembly is provided with a shielding groove, the air holes correspond to the shielding groove, and the opening direction of the shielding groove is perpendicular to the air holes.
- water-blocking cotton is placed in the shielding groove
- a filter screen is arranged in the first accommodating chamber, and the filter screen can accommodate dirt.
- the sewage cover assembly includes an inner cover, an adjusting cover and a fixing member, the adjusting cover is sleeved on the inner cover, and the fixing member passes through the adjusting cover and is fixedly connected to the inner cover;
- the inner cover is provided with a sewage outlet
- the adjusting cover is provided with a through hole and a shielding part
- the adjusting cover is configured to be rotatably adjusted so that the through hole on the adjusting cover corresponds to the sewage outlet or the shielding part on the adjusting cover corresponds to the sewage outlet.
- a plurality of first air holes are provided on the adjusting cover, an air groove is provided on the inner cover surface, a plurality of second air holes are provided at the bottom of the air groove, and a second water-blocking cotton is placed in the air groove.
- a second sealing groove is opened on the surface of the inner cover, the second sealing groove is arranged around the outside of the air permeable groove, and a second sealing ring is placed in the second sealing groove.
- the shell is a cylindrical structure, and the sewage cover assembly is connected to the first accommodating cavity of the shell through a circular port;
- the clean water cover assembly is connected to the second accommodating chamber of the shell through a circular port.
- the partition is arranged in a curved structure or an inclined structure.
- the partition is close to one end of the sewage cover assembly and
- the ratio of the distance of the shell close to the port of the sewage cover assembly to the length of the shell is in the range of 1/5-1/3;
- the ratio of the distance between one end of the partition close to the clean water cover assembly and the port of the shell close to the clean water cover assembly to the length of the shell is in the range of 1/5-1/3.
- the end of the partition close to the sewage cover is a first partition part, and the bottom of the first partition part is not higher than the bottom of the sewage outlet of the sewage cover assembly.
- the partition includes a first partition part, a second partition part and a third partition part, and the partition transitions from the curved surface of the first partition part to the second partition part, and the curved surface of the second partition part transitions to the third partition part;
- the first partition portion and/or the third partition portion are arranged perpendicular to the axial direction of the shell, and the second partition portion is consistent with the axial direction of the shell or forms an angle less than 90 degrees.
- the sewage cover assembly is sealed and connected to the shell through a circular sealing ring;
- the clean water cover assembly is sealed and connected to the housing via a circular sealing ring.
- a filter screen is arranged in the first accommodating chamber, and the filter screen can accommodate dirt.
- the clean water cover assembly includes a clean water cover body; the clean water cover body is provided with a conveying channel, a conveying hole is opened on the clean water cover body, the conveying hole is connected with the conveying channel, one end of the conveying channel extends to the bottom of the clean water cover assembly or the bottom of the second accommodating chamber, and the other end of the conveying channel is connected to the pumping device of the cleaning equipment through the conveying hole.
- An elastic member and a sealing block are provided in the conveying channel, and the sealing block can seal the conveying hole under the elastic force of the elastic member.
- the sewage cover assembly includes an end cover body and an end cover adjustment member
- the end cover body is provided with a sewage outlet
- the adjusting member end cover adjusting member is movably connected to the end cover body
- the end cover adjusting member is provided with a through hole and a shielding portion
- the end cover adjusting member is configured to be rotatably adjusted so that the through hole corresponds to the sewage outlet or the shielding portion corresponds to the sewage outlet.
- the end cover adjustment member is provided with a fastening member connected to the equipment body of the cleaning equipment.
- the through hole of the end cover adjustment member is connected to the sewage outlet;
- the shielding portion of the end cover adjusting member corresponds to the sewage outlet.
- the present patent provides another water tank for cleaning equipment, comprising a shell, a sewage cover assembly and a clean water cover assembly, wherein the water tank is placed horizontally along the length direction, and the sewage outlet of the sewage cover assembly is connected to the sewage outlet of the cleaning equipment;
- the shell comprises a partition, a first accommodating chamber and a second accommodating chamber, wherein the partition is arranged perpendicular to the axial direction of the shell, and the partition can divide the interior of the shell into a first accommodating chamber and a second accommodating chamber, wherein the first accommodating chamber and the second accommodating chamber are not connected, wherein the first accommodating chamber can accommodate sewage and dirt, and the second accommodating chamber can accommodate clean water;
- the second accommodating chamber is connected to a clean water cover assembly, and the clean water cover assembly is provided with a conveying hole;
- the first accommodating chamber is connected with a sewage cover assembly, and the sewage outlet of the sewage cover assembly is arranged at the upper part of the sewage cover assembly.
- the present invention provides a cleaning device, including a motor assembly, a control module, a power module, a cleaning module and a device body, wherein the cleaning module and a water tank are both installed on the device body, and the water tank is configured to store sewage and dirt cleaned by the cleaning module and to provide clean water for the cleaning module;
- the cleaning module comprises a roller brush assembly, a screw assembly and a dirt holding tank;
- the screw assembly can be rotatably installed in the dirt holding tank, the screw assembly is closely fitted or closely arranged in the inner cavity of the dirt holding tank, the dirt holding tank is provided with a long strip dirt receiving port facing the roller brush assembly, a sewage outlet is provided on one side of the sewage holding tank, the sewage outlet is communicated with the first accommodating chamber, the screw assembly is closely arranged with the roller brush assembly, the screw assembly can squeeze the water and dirt on the roller brush assembly, the dirt holding tank cooperates with the screw assembly to transmit water and dirt to the sewage outlet, and the sewage outlet is connected with the first accommodating chamber;
- the motor assembly can drive the roller brush assembly in the cleaning module to rotate
- the control module can control the operation of the cleaning device
- the power module can provide electrical energy for the cleaning device.
- a water suction pipe is provided on the equipment body.
- the water suction pipe can extend into the delivery hole of the clean water cover assembly and push the sealing block so that the delivery channel of the clean water cover assembly is connected with the water suction pipe.
- a fastening component is provided on the sewage cover assembly, and a fixing plate is provided on the equipment body.
- the water tank can be installed on the cleaning equipment or disassembled from the self-cleaning equipment through the fastening component and the fixing plate.
- the cleaning device described in this patent also includes a water tank as described in the above technical solution;
- the distance between the axis of the screw assembly and the axis of the roller brush assembly is less than the sum of the radii of the screw assembly and the roller brush assembly;
- the water tank is provided with a fastening component, and the equipment body is provided with a first mounting structure.
- the water tank can be mounted on the cleaning equipment or disassembled from the cleaning equipment through the fastening component and the first mounting structure.
- the surface of the sewage cover assembly is provided with a mounting groove and a slot
- the mounting groove is a U-shaped mounting groove arranged around the outside of the sewage outlet, and the opening of the mounting groove faces the slot;
- the first mounting structure is a convex edge arranged around the end of the sewage outlet.
- the convex edge can extend into the slot and move from the slot and snap into the mounting slot by rotating the adjusting cover.
- the water tank is installed on the equipment body, and the through hole on the adjusting cover corresponds to the sewage outlet.
- a receiving groove is provided at one end of the roller brush assembly, the motor assembly is fixedly arranged on the equipment body, and the roller brush assembly is sleeved on the motor assembly through the receiving groove;
- the motor assembly includes a driving motor, and the output end of the driving motor is fixedly connected to a roller brush joint, and an installation groove matching the roller brush joint is provided in the receiving groove, and the motor assembly is configured to drive the roller brush assembly to rotate through the roller brush joint and the installation groove.
- the roller brush joint is provided with a convex
- the angle between the length direction of the convex strip and the length direction of the roller brush assembly is less than 90 degrees, and along the direction from one end of the convex strip close to the driving motor toward the end of the convex strip away from the driving motor, the axial direction of the convex strip is inclined toward the rotation direction of the roller brush assembly when it moves forward.
- the product structure is complex, which further leads to high costs; the design space of the product is limited, and it is often necessary to set the water tank on the rod body, and even the sewage tank and the clean water tank must be set on the rod body, resulting in an unstable center of gravity and easy to fall; the complex structure makes the product itself heavier, which is not conducive to user movement.
- the floor scrubber product of Dishui Company does not have a vacuum cleaner structure.
- Its product structure is a roller brush plus a scraper assembly, and the scraper is used to scrape the sewage and dirt on the roller brush into the sewage tank.
- the scraper since the scraper is used to scrape the entire roller brush surface, the dirt and sewage are allowed to flow into the sewage tank by gravity.
- the opening of the sewage tank will be very large, otherwise it will not be able to dock with the scraper.
- the capacity of the sewage tank is limited, and the position of the sewage outlet needs to be set lower to allow the sewage and dirt to flow into the sewage tank.
- the sewage cover assembly of this patent is mainly used to cover the sewage tank, and the sewage outlet provided therein can be adjusted to open and close.
- the sewage outlet When in use, the sewage outlet is open, and sewage and dirt are stored in the sewage tank through the sewage outlet; when disassembling to dump the sewage and dirt in the sewage tank, the regulating valve and the regulating knob can adjust the sewage outlet to a closed state to prevent sewage and dirt from leaking, which brings a lot of trouble to the cleaning and maintenance of the cleaning equipment.
- the regulating valve is cleverly designed.
- the sewage outlet can be adjusted to be open or closed, and the sewage cover assembly can be installed on or removed from the equipment.
- the end cover adjusting piece is rotated, and when the sewage cover assembly is installed on the equipment, the sewage outlet is in an open state.
- the end cover adjusting piece is rotated in the opposite direction, and the sewage cover assembly is removed from the cleaning equipment.
- the cover of the end cover adjusting piece is closed.
- the blocking part also seals and blocks the sewage outlet, so that the sewage outlet is in a closed state.
- Sewage cover assembly The sewage cover assembly is provided with an adjustment structure, which can adjust and position the sewage outlet to be in an open or closed state.
- the port of the sewage cover assembly is circular, and the sewage cover assembly is provided with a sewage cover sealing ring that is sealed with the water tank.
- the circular port is easy to seal and the seal is firm.
- the circular sealing ring is very cheap, reduces the manufacturing cost, is strong and durable, and makes the water tank seal more durable and firm.
- the fastening component can be used to install the end cover assembly on the equipment or remove it from the equipment under the adjustment of the adjustment structure.
- the sewage cover assembly is provided with a limit structure to limit the rotation angle of the end cover adjustment part to prevent the user from accidentally operating and damaging the cover assembly by twisting it too hard.
- a sewage chamber for accommodating sewage and dirt and a clean water chamber for accommodating clean water are provided in the water tank, forming a water tank for cleaning equipment, which is convenient for cleaning the sewage chamber and the clean water chamber, replacing or replenishing clean water, and at the same time occupies a small volume, which is convenient for miniaturization and lightness of the cleaning equipment.
- the water tank is provided with an adjustment structure and a fastening component, and the adjustment structure can be used to open and close the sewage chamber and to install the water tank on or remove it from the equipment.
- the design structure is ingenious and the operation is simple.
- the clean water chamber is provided with an elastic member and a sealing block, so that when the water tank is installed on the cleaning equipment, the conveying hole of the clean water chamber is connected to the cleaning equipment. After the water tank is removed from the cleaning equipment, the sealing block can seal the conveying hole under the action of the elastic member to prevent the clean water in the clean water chamber from leaking.
- the water tank is further preferably designed to be cup-shaped, and the ports of the sewage cover assembly and the clean water cover assembly are therefore designed to be circular, and a circular sealing ring can be used to seal the sewage cover assembly and the clean water cover assembly.
- the circular sealing ring has a better sealing effect and a longer service life than sealing rings of other shapes.
- the circular sealing ring is cheaper than sealing rings of other shapes.
- the water tank adopts a cup-shaped design, which is convenient for opening the sewage cover assembly and the clean water cover assembly, cleaning the sewage chamber and replenishing clean water into the clean water chamber.
- a filter is set in the sewage chamber to accommodate dirt, thereby separating the sewage and dirt in the sewage chamber.
- the sewage outlet of the sewage chamber is opened at the same time and communicated with the sewage outlet, so the assembly is convenient.
- a unique partition is used to set the space above the sewage chamber as a clean water chamber.
- the advantage of this setting is that we do not need to design a complex sewage discharge structure, and only use the head naturally thrown out by the screw assembly to throw the sewage and dirt into the sewage chamber.
- the upper part of the sewage chamber is divided into two parts by a unique curved or inclined partition, namely a clean water chamber (i.e., the second chamber) and a sewage chamber (i.e., the first chamber).
- the clean water chamber can be directly connected to the main body of the equipment.
- the clean water pipe of the clean water chamber is very short, making the structure of the entire cleaning equipment simpler.
- the water in the clean water chamber is sucked by the suction device to supply water to the roller brush surface.
- the cleverness of this equipment lies in that the cleaning module throws the sewage and dirt into the sewage chamber through the lift driven by the screw assembly, without the need for additional drive, but due to the limited natural lift, the sewage outlet and sewage
- the height of the inlet is low, so a unique partition is used to divide the upper part of the sewage chamber into a clean water chamber to fully utilize the volume of the water tank.
- the unique cleaning module and the unique partition isolation of the water tank enable the water tank to be fully utilized.
- the water tank of the present patent and the cleaning module with a screw assembly are more compatible.
- the cleaning module of the present patent only needs to drive the driving component of the roller brush.
- the screw assembly in close contact with the roller brush can rotate with the roller brush.
- the rotation of the screw assembly can drive the sewage and dirt to the sewage outlet, and the rotation of the screw assembly generates centrifugal force. Under the action of the centrifugal force, a lift is generated.
- the sewage and dirt are thrown into the sewage cavity through the lift.
- This sewage discharge method is extremely simple, cost-saving, simple and efficient. It also makes full use of the internal space of the water tank through a unique partition design.
- the combination of the above characteristics, the screw assembly sewage discharge method and the water tank design method constitute a significant innovation compared to the prior art, produce unexpected effects, further reduce the complexity of the cleaning equipment structure, while maintaining cleaning efficiency, reducing product costs, and improving user experience.
- Water-blocking cotton is set in the shielding groove to better prevent surges, and can prevent dirt from overflowing from the vent, and also prevent foreign objects from falling into the sewage tank from the vent.
- the roller brush assembly is sleeved on the motor assembly, and the motor assembly drives the roller brush assembly to rotate through the rotating joint and the mounting groove.
- the motor assembly is fixedly installed on the device body. When the roller brush assembly is disassembled, the motor assembly is not disassembled together with the roller brush assembly, so that the structural design is simple, the disassembly and assembly are convenient, and the operation is easy.
- a convex strip meshing with the mounting groove is provided on the rotating joint, and the angle between the length direction of the convex strip and the length direction of the roller brush assembly is less than 90 degrees.
- the convex strip is inclined toward the rotation direction of the roller brush assembly when it moves forward, so that when the cleaning device is used, the roller brush assembly rotates forward, and when the roller brush body rotates, there is a force toward the direction of the motor assembly, so that when the roller brush body rotates, it is more tightly sleeved on the motor assembly to ensure that the roller brush assembly will not loosen from the device body when the device is used.
- the end of the roller brush assembly away from the motor assembly can be attached to the device body by magnetic adsorption, which is convenient for disassembly and installation, labor-saving, and is particularly suitable for female users with weak strength.
- the screw assembly is arranged in contact with the roller brush assembly. During the rotation of the roller brush assembly and the screw assembly, a negative pressure zone is formed in the dirt tank.
- the screw assembly squeezes the water and dirt on the rubber cotton roller brush of the roller brush assembly into the dirt tank. Since the thread group on the screw assembly has a rotation direction and the screw assembly and the dirt tank are arranged in coordination, the screw assembly will drive the water, dirt and gas in the dirt tank to be transported to the sewage outlet of the dirt tank, and then be thrown into the sewage tank through the high-speed rotation of the second thread group.
- the sewage tank is provided with air holes. After the water, dirt and gas in the sewage tank enter the sewage tank, the gas in the sewage tank is discharged through the air holes to balance the air pressure inside and outside the sewage tank.
- the inner wall of the sewage tank is provided with a shielding groove to block the air vents and sewage and dirt, so as to prevent the air vents from being blocked by the surging sewage and dirt in the sewage tank or the sewage and dirt thrown into the sewage tank from the sewage outlet, causing sewage
- the gas in the water tank cannot be discharged, the air pressure in the sewage tank cannot be released, or sewage and dirt overflow from the vents.
- Water-blocking cotton is set in the shielding groove to better prevent surges, and can prevent dirt from overflowing from the vents, and also prevent foreign objects from falling into the sewage tank from the vents.
- the present invention is provided with a roller brush detection structure, which can detect whether there is water on the roller brush, and prevent the hard roller brush layer, especially the rubber cotton roller brush, from being unable to clean the ground, making the cleaning equipment more intelligent.
- the roller brush detection structure first detects whether there is water on the roller brush. If there is water, it means that the rubber cotton roller brush is in a soft state and can directly clean the ground. If there is no water on the roller brush, it means that the rubber cotton roller brush is in a dry state.
- the control module controls the first water pump to send water to the rubber cotton roller brush. If the roller brush detection structure detects that there is water on the rubber cotton roller brush, the first water pump stops sending water to the rubber cotton roller brush, and the cleaning equipment starts the cleaning operation.
- control module controls the second water pump to send water to the dirt storage tank installed with a screw assembly.
- the screw assembly installed in the dirt storage tank squeezes the rubber cotton roller brush while rotating to transport water and dirt, which can not only play the role of squeezing and cleaning the roller brush, but also play the role of transporting and cleaning sewage and dirt.
- the floor cleaning device of a floor scrubber or mop involved in the technical solution of this patent is suitable for hard floors such as floor tiles, wooden floors, and cement floors. It cleverly utilizes the principle of the Archimedean screw water pump, innovates the principle, and develops a unique cleaning module that combines a screw with a dirt trough and a roller brush.
- the roller brush assembly, the screw assembly, and the dirt trough assembly arranged in sequence in the horizontal direction are closely matched and interact with each other.
- the sewage and dirt on the roller brush can be removed.
- the interaction between the screw assembly, the roller brush assembly, and the dirt trough assembly can be used to quickly transfer the sewage and dirt to the sewage outlet.
- the screw When the screw is driven by the roller brush or the motor, the screw rotates around its own axis on the one hand, and the screw thread rolls along the inner surface of the dirt tank on the other hand, thus forming a sealed chamber similar to a pump.
- the liquid or dirt in the sealed chamber is pushed forward by one pitch.
- the water and dirt removed from the roller brush by the thread are pressed from one sealed chamber to another sealed chamber through the spiral transmission method, and finally squeezed out of the dirt tank and into the sewage outlet.
- a certain adsorption pressure will be formed, which is conducive to transmission.
- the sealed chamber here does not specifically refer to a completely sealed state, but is just a figurative expression.
- the cleaning module of this patent has the advantages of simple structure, safe and reliable operation, easy use and maintenance. Since the vacuum cleaner module is cancelled, it does not require a large-capacity battery to support the operation. It has a long working endurance and low working noise.
- the product structure is simple and the product can be made light enough, which is conducive to users moving the product.
- FIG1 is a schematic diagram of the three-dimensional structure of a sewage cover assembly of the present application.
- FIG2 is a schematic diagram of the exploded structure of the sewage cover assembly of FIG1 ;
- FIG3 is a perspective structural diagram of another sewage cover assembly of the present application.
- FIG4 is a schematic diagram of a three-dimensional structure of another sewage cover assembly of the present application from another perspective;
- FIG5 is a schematic diagram of the exploded structure of the sewage cover assembly described in FIG3;
- FIG6 is a schematic diagram of the three-dimensional structure of the inner cover and the regulating valve in the sewage cover assembly of FIG3 ;
- FIG7 is a schematic diagram of the three-dimensional structure of the regulating valve in FIG3 from one viewing angle
- FIG8 is a schematic diagram of the three-dimensional structure of the regulating valve in FIG3 from another perspective
- FIG9 is a schematic diagram of the exploded structure of the inner cover in FIG3 ;
- FIG10 is a schematic diagram of the three-dimensional structure of the fixed cover in FIG3 ;
- FIG11 is a schematic diagram of the three-dimensional structure of the adjustment button in FIG3 ;
- FIG12 is a schematic diagram of a three-dimensional structure of another sewage cover assembly of the present application.
- FIG13 is a schematic diagram of the exploded structure of the sewage cover assembly of FIG12;
- FIG14 is a schematic diagram of a three-dimensional structure of the sewage cover assembly in section A of FIG12;
- FIG15 is a schematic diagram of the three-dimensional structure of the inner cover in FIG12;
- FIG16 is a schematic diagram of a partially enlarged structure of the R portion in FIG15;
- FIG17 is a schematic diagram of the three-dimensional structure of the rotary cover in FIG3 from one viewing angle
- FIG18 is a schematic diagram of the three-dimensional structure of the rotary cover in FIG3 from another viewing angle
- FIG19 is a schematic diagram of the three-dimensional structure of the outer cover in FIG3;
- FIG20 is a schematic diagram of the three-dimensional structure of a clean water cover assembly described in the present application.
- FIG21 is a schematic diagram of the exploded structure of the clean water cover assembly of FIG20;
- FIG22 is a schematic diagram of a three-dimensional cross-sectional structure of the clean water cover assembly of FIG20 taken along line B;
- FIG23 is a schematic diagram of the three-dimensional structure of another clean water cover assembly described in the present application.
- FIG24 is a schematic diagram of a three-dimensional structure of the clean water cover assembly in FIG23 taken along the C direction;
- FIG25 is a schematic diagram of the exploded structure of the clean water cover assembly of FIG23;
- FIG26 is a schematic diagram of the three-dimensional structure of the sealing block in the assembly for conveying the sealing block described in the present application;
- FIG27 is a schematic diagram of a three-dimensional structure of a water tank described in the present application.
- FIG28 is a schematic diagram of the exploded structure of the water tank described in FIG27;
- FIG29 is a schematic diagram of a three-dimensional cross-sectional structure of the water tank in FIG27 along the D direction;
- FIG30 is a schematic diagram of a three-dimensional structure of another water tank described in the present application from one viewing angle;
- FIG31 is a schematic diagram of a three-dimensional structure of another water tank described in the present application from another perspective;
- FIG32 is a schematic diagram of the exploded structure of the cleaning device described in the present application.
- FIG33 is a schematic diagram of a partially enlarged structure of the K portion of FIG32;
- FIG34 is a schematic diagram of a partially enlarged structure of the N portion of FIG32;
- FIG35 is a schematic diagram of the exploded structure of the device body, cleaning module and water tank in FIG32;
- FIG36 is a schematic cross-sectional view of the device body, cleaning module and water tank in FIG32;
- FIG37 is a schematic diagram of a three-dimensional structure of another sewage cover assembly of the present application.
- FIG38 is a cross-sectional structural schematic diagram of another sewage cover assembly of the present application.
- FIG39 is a schematic diagram of the exploded structure of the cleaning device described in this patent.
- FIG40 is a partial enlarged structural schematic diagram of the Q portion of FIG39;
- FIG41 is a schematic diagram of another exploded structure of the cleaning device described in this patent.
- FIG42 is a schematic diagram of the three-dimensional structure of the roller brush assembly and the motor assembly described in this patent;
- FIG43 is a schematic cross-sectional perspective view of the structure of FIG23;
- FIG44 is a schematic diagram of the exploded structure of the roller brush assembly and the motor assembly described in this patent.
- FIG45 is a cross-sectional perspective structural diagram of the roller brush assembly in FIG25;
- FIG46 is a schematic diagram of an exploded structure of the floor cleaning device of the present invention from one perspective
- FIG47 is a schematic cross-sectional view of the floor cleaning device of the present invention.
- FIG48 is a schematic diagram of an exploded structure of the floor cleaning device of the present invention from another perspective
- FIG49 is a schematic diagram of the exploded structure of the upper cover in FIG48;
- FIG50 is a partial enlarged structural schematic diagram of the Y portion in FIG49;
- FIG52 is a schematic diagram of the three-dimensional structure of a floor cleaning device according to another embodiment of the present invention.
- FIG53 is a schematic diagram of the three-dimensional structure of a floor cleaning device (excluding the operating rod module) according to another embodiment of the present invention.
- FIG54 is a schematic side plan view of the structure of FIG53;
- Fig. 55 is a schematic diagram of the cross-sectional structure taken along the line A-A of Fig. 54;
- Fig. 56 is a schematic diagram of the cross-sectional structure taken along line B-B of Fig. 54;
- FIG57 is a schematic diagram of the top plan structure of FIG53.
- Fig. 58 is a schematic diagram of the cross-sectional structure taken along the line C-C of Fig. 57;
- FIG59 is a schematic diagram of an exploded structure of FIG53 in a manner
- FIG60 is a schematic diagram of a three-dimensional structure of an example of an upper cover according to an embodiment of the present invention from one viewing angle;
- FIG61 is a schematic diagram of a three-dimensional structure of an example of an upper cover according to an embodiment of the present invention from another viewing angle;
- FIG62 is a schematic diagram of the cross-sectional structure of FIG60 in the cross-sectional direction
- FIG63 is a schematic diagram of a three-dimensional structure of another example of a floor brush flap according to an embodiment of the present invention.
- FIG64 is a schematic diagram of the three-dimensional structure of a roller brush assembly according to an embodiment of the present invention.
- FIG65 is a schematic diagram of a radial cross-sectional three-dimensional structure of FIG64;
- FIG66 is a perspective structural diagram of a roller brush handle, a transmission motor assembly and a roller brush joint according to an embodiment of the present invention
- FIG67 is a schematic cross-sectional structure diagram of FIG66 in the cross-sectional direction
- FIG68 is a schematic diagram of the three-dimensional structure of a roller core, a flexible cleaning layer and a roller brush handle according to an embodiment of the present invention.
- FIG69 is a schematic diagram of the explosion structure of FIG53 in another manner
- FIG70 is an exploded structural diagram of the equipment body, the screw assembly and the sewage tank from one perspective;
- FIG71 is an exploded structural diagram of the equipment body, the screw assembly and the sewage tank from another perspective;
- FIG72 is a schematic diagram of a three-dimensional structure of a screw assembly according to an embodiment of the present invention.
- FIG73 is a schematic diagram of the three-dimensional structure of the sewage tank of the present invention.
- Figure 74 is a schematic cross-sectional structural diagram of the sewage tank described in the present invention.
- 1-cleaning module 6-equipment body, 7-water tank, 8-sewage cover assembly, 9-clean water cover assembly, 11-roller brush assembly, 110-accommodation groove, 111-roller brush body, 112-installation handle, 113-connecting shaft, 114-roller brush bearing, 115-installation groove, 116-roller core, 117-flexible cleaning layer, 118-magnet, 12-screw assembly, 121-thread group, 122-first thread group, 123-second thread group, 120-sealing ring, 124-screw body, 125-screw end cover, 126-screw handle, 127-locking mechanism, 128-screw rotating head, 129-anti-shock plug, 13-sewage tank, 131-sewage port, 132-sewage outlet, 133- Screw mounting port, 134-convex edge, 180-first water supply hole, 181-first water pump, 182-second water pump, 221-upper cover, 222-first upper cover, 2
- the terms “provided with”, “equipped with”, “connected”, “installed with”, “set”, “opened”, “fixed” and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements.
- the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
- this embodiment provides a sewage cover assembly, which is mainly used in the sewage cavity of the water tank of the cleaning equipment.
- the sewage cover assembly is sealed on the sewage cavity of the water tank.
- the water tank is installed on the cleaning equipment.
- the sewage cavity can collect sewage and dirt on the cleaning equipment.
- the sewage cover assembly 8 includes an end cover body 80 and an end cover adjustment member; a sewage port 801 is provided on the end cover body 80, the end cover adjustment member is movably connected to the end cover body 80, a through hole 831 and a shielding portion 832 are provided on the end cover adjustment member, and the end cover adjustment member is configured to be rotatably adjusted so that the through hole 831 on the end cover adjustment member corresponds to the sewage port 801 or the shielding portion 832 on the end cover adjustment member corresponds to the sewage port 801.
- the end cover body includes an inner cover 81 and a fixed cover 84
- the end cover adjustment member includes a regulating valve 85 and a regulating button 86
- the end cover assembly is sealed and covered on the sewage tank
- a sewage outlet 801 is opened on the surface of the inner cover 81
- a second through hole 841 is opened on the surface of the fixed cover 84, the sewage outlet 801 and the second through hole 841 correspond to each other
- the fixed cover 84 is installed on the inner cover 81
- the regulating valve 85 is placed between the inner cover 81 and the fixed cover 84, a through hole 831 and a shielding portion 832 are provided on the regulating valve 85
- the regulating button 86 is arranged on a side of the fixed cover 84 away from the regulating valve 85, and the regulating button 86 is configured to be able to rotate and adjust the through hole 831 on the regulating valve 85 to correspond to the sewage outlet 801 or the shielding portion 832 on the regulating valve 85 to correspond to the
- the sewage cover assembly 8 also includes at least one adjustment structure, which includes a first adjustment structure and a second adjustment structure.
- the first adjustment structure is arranged on the end cover body 80
- the second adjustment structure is arranged on the end cover adjustment piece.
- the second adjustment structure cooperates with the first adjustment structure.
- the end cover adjustment piece can be rotated and adjusted so that the through hole 831 on the end cover adjustment piece corresponds to the sewage outlet 801 or the shielding portion 832 on the end cover adjustment piece corresponds to the sewage outlet 801.
- the end cap adjusting member is also provided with a connection with the main body of the cleaning device.
- the through hole 831 of the end cover adjusting component corresponds to the sewage outlet 801; when the water tank is separated from the cleaning equipment through the fastening components, the shielding portion 832 of the end cover adjusting component corresponds to the sewage outlet 801.
- annular sealing groove 802 is provided on the end cover body, the annular sealing groove 802 is arranged around the outside of the sewage outlet, and a sealing ring 803 is fixedly accommodated in the annular sealing groove 802.
- the sealing ring in the annular sealing groove can make the shielding part seal and shield the sewage outlet or the through hole and the sewage outlet are sealed and connected, so as to prevent the liquid contained in the cover body, that is, the sewage and dirt in the example from leaking and dirtying the water tank or cleaning equipment.
- At least one limiting structure is further included, and the limiting structure can limit the rotation angle of the end cap adjusting member along the end cap body 80.
- the limiting structure includes a first limiting structure and a second limiting structure, the first limiting structure is arranged on the end cap body 80, and the second limiting structure is arranged on the end cap adjusting member, the second limiting structure cooperates with the first limiting structure, and the end cap adjusting member can limit the rotation angle of the end cap adjusting member.
- the end cap body 80 is an integrated end cap body or a split end cap body.
- the end cap adjustment piece is movably sleeved on the end cap body 80, for example, the end cap adjustment piece is snap-fitted on the end cap body 80, that is, as long as the end cap adjustment piece can be installed on the end cap body and can rotate along the end cap body, it is within the protection scope of this patent.
- the end cover body 80 is a split end cover body, and the end cover adjusting member is also a split end cover adjusting member.
- the end cover body includes an inner cover 81 and a fixed cover 84, and the end cover adjusting member includes a regulating valve 85 and a regulating button 86;
- the inner cover 81 has a sewage outlet 801 on its surface, and the fixed cover 84 has a second through hole 841 on its surface.
- the sewage outlet 801 corresponds to the second through hole 841, and the fixed cover 84 is mounted on the inner cover 81; preferably, the fixed cover 84 is buckled on the inner cover 81;
- the regulating valve 85 is placed between the inner cover 81 and the fixed cover 84.
- the regulating valve 85 is provided with a through hole 831 and a blocking portion 832.
- the regulating button 86 is provided on a side of the fixed cover 84 away from the regulating valve 85. By rotating the regulating button 86, the through hole 831 on the regulating valve 85 is adjusted to correspond to the sewage outlet 801 or the blocking portion 832 on the regulating valve 85 is adjusted to correspond to the sewage outlet 801.
- the inner cover 81 is a cylindrical cover structure with one end open.
- the fixed cover 84 is a cylindrical cover structure with one end open.
- an adjustment structure which includes a first adjustment structure arranged on the surface of the inner cover 81 or the fixed cover 84 and a second adjustment structure arranged on the regulating valve 85, the second adjustment structure cooperates with the first adjustment structure, and the regulating valve can be rotated along the inner cover 81 to be positioned so that the through hole 831 on the regulating valve corresponds to the water outlet 801 or the blocking portion 832 on the regulating valve corresponds to the water outlet 801.
- the first adjustment structure includes a first slot 852 and a second slot 853, and the second adjustment structure includes a protrusion 872.
- the regulating valve is rotated to the point where the through hole 831 corresponds to the sewage outlet 801, the protrusion 872 is snapped into the first slot 852; or when the end cover adjustment member is rotated to the point where the shielding portion 832 corresponds to the sewage outlet 801, the protrusion 872 is snapped into the second slot 853.
- the first slot 852 and the second slot 853 are provided on the regulating valve 85, and the protrusion 872 is provided on the inner cover 81.
- an arc-shaped portion 851 is provided on the regulating valve 85, and the first slot 852 and the second slot 853 are provided on the arc-shaped surface of the arc-shaped portion 851; and the surface of the inner cover 81 is provided with a protrusion corresponding to the arc-shaped portion 851.
- a protrusion 872 is provided on one side of the baffle 871 close to the arc portion 851.
- the baffle is an arc-shaped baffle.
- the first adjustment structure can be provided on the inner cover or on the outer cover, or the first adjustment structure and the second adjustment structure can be interchangeable, etc., and various forms can be changed as long as they can play an adjustment role.
- the adjustment structure is not limited to adjustment by buckle, but can also be adjusted by magnetic suction, etc.
- the first limiting structure includes a first stop block 854 and a second stop block 855.
- the through hole 831 corresponds to the sewage outlet 801, that is, when the locking protrusion 872 is buckled in the first locking groove 852, the first stop block 854 and the end of the stop bar 871 close to the first stop block 854 collide with each other; or when the shielding portion 832 corresponds to the sewage outlet 801, the second stop block 855 and the end of the stop bar 871 close to the second stop block 855 collide with each other.
- the present patent is not limited to this, as long as it can limit the rotation of the regulating valve, it is within the protection scope of the present patent.
- the first stop block 854 and the second stop block 855 are both arranged on the arc surface of the arc portion 851, and the first locking groove 852 and the second locking groove 853 are both arranged between the first stop block 854 and the second stop block 855.
- the fastening component is a clip 856 provided on the regulating valve, and a mounting port 842 is provided on the fixing cover 84.
- the regulating valve is rotated until the clip 856 on the regulating valve corresponds to the mounting port 842.
- the through hole 831 on the regulating valve corresponds to the water outlet 801.
- the regulating valve is rotated until the clip is removed from the mounting port 842, the clip 856 is separated from the fixing plate of the cleaning device, and the blocking portion 832 on the regulating valve corresponds to the water outlet 801.
- a fixing plate 601 is provided on the cleaning device.
- the fixing plate When the water tank provided with the sewage cover assembly is installed on the cleaning device, the fixing plate extends into the installation port, the regulating valve is rotated, the clamping strip moves to a position corresponding to the installation port 842, and the clamping strip is placed on the side of the fixing plate away from the water tank, so that the clamping strip clamps the fixing plate in the installation port.
- the through hole 831 on the regulating valve corresponds to the sewage port 801, and the clamping protrusion 872 is clamped in the first clamping groove 852.
- the regulating valve When the water tank provided with the sewage cover assembly is removed from the cleaning device, the regulating valve is rotated in the opposite direction, the clamping strip moves to a position not corresponding to the fixing plate, the water tank can be removed from the cleaning device, the fixing plate is removed from the installation port, and the clamping protrusion 872 is clamped in the second clamping groove 853, and the shielding portion 832 on the regulating valve is rotated to correspond to the sewage port 801.
- the clamping strip 856 is provided on the regulating valve 85.
- the regulating button 86 is fixedly mounted on the regulating valve 85, and the regulating valve 85 can rotate with the regulating button 86.
- the regulating button 86 passes through the fixed cover 84 and is fixedly mounted on the regulating valve 85 by bolts.
- a connecting portion 857 is provided on the side of the regulating valve 85 close to the fixed cover 84, and a limiting groove 858 and a threaded hole 859 are provided on the connecting portion 857 facing the side of the regulating button 86.
- a connecting hole 861 corresponding to the threaded hole and a limiting column 862 matching the limiting groove 858 are provided on the regulating button 86, and the limiting column 862 is limited in the limiting groove 858.
- the regulating valve 85 can rotate with the regulating button 86.
- a through hole 843 is provided on the surface of the fixed cover 84, and the bolts pass through the connecting hole 861 and the through hole 843 in sequence and are fixed in the threaded hole 859, so that the regulating button 86 is fixedly connected to the regulating valve 85.
- the threaded hole 859 is provided at the bottom of the limiting groove 858
- the connecting hole 861 is a through hole penetrating the limiting column 862.
- a cover 863 is also provided on the adjusting button 86, and the cover 863 is provided above the bolt. In the example, the cover 863 is buckled on the adjusting button 86.
- the fixed cover 84 is fixedly installed on the inner cover 81, and the fixed cover 84 does not rotate with the adjusting button 86.
- the adjusting button 86 is non-circular along the cross section, and/or the adjusting button 86 is The side of the button 86 is an anti-skid surface.
- the side of the adjusting button 86 is provided with a plurality of anti-skid convex ribs, and the length direction of the anti-skid convex ribs is not perpendicular to the axial direction of the sewage cover assembly.
- the sewage cover assembly is sealed and connected to the housing, and preferably, the inner cover 81 is threadedly connected to the housing.
- a sewage cover sealing ring 819 is fixedly provided near the thread position of the inner cover 81, and the inner cover 81 is sealed and connected to the housing 7 through the sewage cover sealing ring.
- the regulating valve is a special-shaped regulating valve.
- the arc portion is close to the bottom of the inner cover, and the clamping strip is close to the side wall of the inner cover.
- this patent provides a water tank, which is mainly used in cleaning equipment.
- the clean water chamber of the water tank provides clean water for the cleaning equipment, and the sewage chamber of the water tank collects sewage and dirt generated by the cleaning equipment to better clean the floor.
- the cleaning equipment includes a cleaning module 1, an equipment body 6, a water tank 7, a drive motor, a control module and a power module;
- the cleaning module 1 and the water tank 7 are both installed on the equipment body 6.
- the water tank 7 is configured to store sewage and dirt cleaned by the cleaning module and to provide clean water for the cleaning module.
- the water tank is configured to collect sewage and dirt cleaned by the cleaning module and to provide clean water for the cleaning module;
- the driving motor can drive the roller brush assembly in the cleaning module to rotate,
- the control module can control the operation of the cleaning device, and the power module can provide electrical energy for the cleaning device.
- the cleaning module 1 includes a roller brush assembly 11, a screw assembly 12 and a dirt holding tank 13; the screw assembly 12 is fitted or arranged close to a side of the roller brush assembly 11 close to the water tank 7, and the screw assembly 12 can be rotatably installed in the dirt holding tank 13, and the inner cavity of the dirt holding tank 13 is closely fitted or arranged close to the screw assembly 12;
- the dirt holding tank 13 is provided with a dirt receiving port 131 and a dirt discharge port 132, the dirt receiving port 131 faces the roller brush 11, the dirt and sewage on the roller brush assembly 11 can be collected in the dirt holding tank 13 through the dirt receiving port 131, the dirt discharge port 132 is connected to the dirt port 801 of the dirt cover assembly 8, the screw assembly 12 can transport the dirt and sewage to the dirt discharge port 132 and throw the dirt and sewage into the first accommodating chamber 702 through the dirt discharge port 132 and the dirt port 801 of the dirt cover assembly 8.
- a water suction pipe 602 is provided on the equipment body 6.
- the water suction pipe 602 can extend into the delivery hole 921 of the clean water cover assembly 9 and push the sealing block 9122 so that the delivery channel of the clean water cover assembly 9 is connected with the water suction pipe 602.
- the water suction pipe can transport the clean water in the second accommodating chamber to the roller brush surface in the roller brush assembly.
- the screw body of the screw assembly 12 is provided with a thread group 121, and the thread group 121 is in extrusion contact with the surface of the roller brush assembly.
- the thread group is preferably a flexible thread group, for example, the screw is encapsulated to form a flexible thread group.
- One of the advantages of flexibility is that the screw assembly cooperates with the dirt tank, and the screw assembly is not easy to get stuck when the dirt is spirally transmitted.
- the screw body is preferably provided with a first thread group 122 and a second thread group 123, and the diameter of the second thread group 123 is larger than the first thread group 122.
- the thread pitch of the second thread group 123 is preferably smaller than that of the first thread group 122, and the second thread group 123 corresponds to the sewage outlet 132 of the dirt tank 13.
- the first thread group 122 can transport water and dirt from one end to the other end of the screw assembly 12.
- the water and dirt are switched from the first thread group to the second thread group. Since the thread diameter of the second thread group is larger than that of the first thread group, better transport and centrifugal force are formed, so that the sewage and dirt can be better thrown into the first accommodating cavity through the sewage outlet 132 of the sewage tank 13 and the sewage outlet 801 of the sewage cover assembly.
- the water tank 7 includes a shell 70, a sewage cover assembly 8 and a clean water cover assembly 9.
- the water tank is placed horizontally along the length direction, and the sewage outlet of the sewage cover assembly 8 is connected to the sewage outlet of the cleaning equipment;
- the shell 70 includes a partition 701, a first accommodating chamber 702 and a second accommodating chamber 703.
- the end of the partition 701 close to the sewage cover assembly 8 is arranged at the upper part of the inner wall of the shell 70, and the end of the partition 701 close to the clean water cover assembly 9 is arranged at the lower part of the inner wall of the shell 70.
- the partition 701 extends from the upper part close to one end of the sewage cover assembly 8 to the lower part close to one end of the clean water cover assembly, thereby dividing the interior of the shell into a first accommodating chamber 702 and a second accommodating chamber 703.
- the first accommodating chamber 702 is not connected to the second accommodating chamber 703.
- the first accommodating chamber 702 can accommodate sewage and dirt
- the second accommodating chamber 703 can accommodate clean water, that is, the first accommodating chamber 702 is a sewage chamber, and the second accommodating chamber 703 is a clean water chamber;
- the second accommodating chamber 703 is connected to a clean water cover assembly, and the clean water cover assembly 9 is provided with a conveying hole 921 ;
- the first accommodating chamber 702 is connected to a sewage cover assembly 8 , and the sewage outlet of the sewage cover assembly 8 is arranged at the upper part of the sewage cover assembly 8 .
- a unique partition is used to set the space above the sewage chamber as a clean water chamber.
- the advantage of this setting is that we do not need to design a complex sewage discharge structure, and only use the head naturally thrown out by the screw assembly to throw the sewage and dirt into the sewage chamber.
- the upper part of the sewage chamber is divided into two parts by a unique curved or inclined partition, which is a clean water chamber (i.e., the second accommodating chamber) and a sewage chamber (i.e., the first accommodating chamber).
- the clean water chamber can be directly connected to the main body of the equipment.
- the clean water pipe of the clean water chamber is very short, which makes the structure of the entire cleaning equipment simpler.
- the water in the clean water chamber is sucked by the suction device to supply water to the roller brush surface.
- the cleverness of this equipment lies in that the cleaning module throws the sewage and dirt into the sewage chamber through the lift driven by the screw assembly, without the need for additional drive.
- the height of the sewage outlet and the sewage outlet is relatively low, so a unique partition is used to divide the upper part of the sewage chamber into the clean water chamber to make full use of the volume of the water tank.
- the unique function of the cleaning module and the unique partition isolation of the water tank enable the water tank to be fully utilized.
- the water tank of most cleaning equipment is set on the operating rod, which makes the operating rod thick and bulky.
- the water tank of this patent is set on the main body of the equipment instead of the operating rod. In this way, the water tank can increase the water volume under certain circumstances. More importantly, the structural design is simple, which saves the driving components for sewage discharge and has lower energy consumption.
- the water tank of the present invention and the cleaning module with the screw assembly are better matched.
- the cleaning module of the present invention only needs to drive the driving component of the roller brush.
- the screw assembly tightly contacting the roller brush can rotate with the roller brush.
- the rotation of the screw assembly drives the sewage and dirt to be transported to the sewage outlet, and the rotation of the screw assembly generates centrifugal force, which generates a lift.
- the sewage and dirt are thrown into the sewage cavity through the lift.
- This sewage discharge method is extremely simple, cost-saving, simple and efficient. Through the unique partition design, the internal space of the water tank is fully utilized.
- the combination of the above features, the sewage discharge method of the screw assembly and the water tank design method constitute a significant innovation compared to the existing technology, producing unexpected effects, further reducing the complexity of the cleaning equipment structure, while maintaining cleaning efficiency, reducing product costs and improving user experience.
- the housing 70 is a cylindrical structure
- the sewage cover assembly 8 is connected to the first accommodating chamber 702 of the housing through a circular port
- the clean water cover assembly is connected to the second accommodating chamber 703 of the housing through a circular port.
- the sewage cover assembly 8 is sealed and connected to the housing 70 through a circular sealing ring; the clean water cover assembly is sealed and connected to the housing 70 through a circular sealing ring.
- the partition is arranged in a curved structure or an inclined structure.
- the partition includes a first partition portion 707, a second partition portion 708 and a third partition portion 709. Further preferably, the bottom of the first partition portion 707 is not higher than the bottom of the sewage outlet of the sewage cover assembly 8.
- the partition transitions from the first partition portion 707 to the second partition portion 708 on a curved surface, and the second partition portion 708 transitions to the third partition portion 709 on a curved surface; the first partition portion 707 and/or the third partition portion 709 are arranged perpendicular to the axial direction of the shell, and the second partition portion 708 is consistent with the axial direction of the shell or forms an angle less than 90 degrees.
- the distance between one end of the partition 701 close to the sewage cover assembly 8 and the port of the shell 70 close to the sewage cover assembly 8 accounts for a ratio of 1/5-1/3 of the length of the shell; the distance between one end of the partition 701 close to the clean water cover assembly and the port of the shell 70 close to the sewage and clean water cover assembly accounts for a ratio of 1/5-1/3 of the length of the shell.
- the partition 701 is integrally formed and connected to the shell 70 .
- the partition can also be placed vertically.
- the water tank includes a shell 70, a sewage cover assembly 8 and a clean water cover assembly 9.
- the water tank is placed horizontally along the length direction, and the sewage outlet of the sewage cover assembly 8 is connected to the sewage outlet of the cleaning equipment;
- the shell 70 includes a partition 701, a first accommodating chamber 702 and a second accommodating chamber 703.
- the partition 701 is perpendicular to the axial direction of the shell.
- the partition 701 divides the interior of the shell into a first accommodating chamber 702 and a second accommodating chamber 703.
- the first accommodating chamber 702 can accommodate sewage and dirt, and the second accommodating chamber 703 can accommodate clean water; the second accommodating chamber 703 is connected to the clean water cover assembly 9, and the clean water cover assembly 9 is provided with a conveying hole 921; the first accommodating chamber 702 is connected to the sewage cover assembly 8, and the sewage outlet of the sewage cover assembly 8 is arranged at the upper part of the sewage cover assembly 8.
- a filter screen 706 is provided in the first accommodating chamber 702 , and filter holes are provided on the filter screen 706 , and the filter screen 706 can accommodate dirt.
- a first opening 704 is provided at one end of the first accommodating chamber 702 connected to the sewage cover assembly, and the sewage cover assembly is sealed and covered on the first opening 704 , and the filter screen 706 is installed on the side of the first accommodating chamber 702 close to the first opening 704 .
- a placement table is provided on the first opening 704 , and an outer edge is provided on the outer surface of one end of the filter screen 706 close to the filter screen opening , and the outer edge is placed on the installation table.
- a filter screen handle is provided at one end of the filter screen 706 close to the filter screen opening , and the filter screen handle is a rotatable filter screen handle.
- the filter screen handle can be rotated to the direction in which the filter screen is pulled out, and the filter screen can be pulled out of the first accommodating chamber 702 by pulling the filter screen handle; when the filter screen 706 is installed on the first opening 704 , the filter screen handle can be rotated to be accommodated in the filter screen 706 .
- the filter handle is rotatable, which is convenient for pulling out when taking out, and can be accommodated in the filter after being placed, without taking up other space, and is easy to assemble and use.
- it also includes a clean water cover assembly 9; the surface of the housing 70 is also provided with a second opening 705, the second opening 705 is connected to the second accommodating chamber 703, and the clean water cover assembly 9 is sealed and closed On the second opening 705 .
- the end cover body 80 is another type of split end cover body, the end cover adjustment member is an integrated end cover adjustment member, and the end cover body includes an inner cover 81 and an outer cover 82; the inner cover 81 is a cylindrical cover-like structure with one end open, and the sewage port 801 is opened on the inner cover 81.
- the outer cover 82 is a plate-like structure.
- the end cover adjustment member is a cylindrical cover-like structure with one end open.
- the end cover adjustment member is a rotary cover 83.
- the sewage cover assembly has a compact design structure, uses fewer parts, is easy to assemble, is easy and quick to operate, and has a beautiful appearance.
- the sewage port provided in the sewage cover assembly can be adjusted to open and close.
- the sewage port When in use, the sewage port is open, and sewage and dirt are stored in the first accommodating chamber of the water tank through the sewage port; when disassembling and dumping the sewage and dirt therein, the end cover adjustment member can adjust the sewage port to a closed state to avoid leakage of sewage and dirt, which brings a lot of trouble to the cleaning and maintenance of the cleaning equipment.
- the first adjustment structure includes a first buckle groove 821 and a second buckle groove 822
- the second adjustment structure includes a buckle block 833, as shown in FIG17 .
- first adjustment structure and the second adjustment structure can also be arranged in the opposite manner, that is, the buckle block 833 is arranged on the end cover body 80, and the first buckle groove 821 and the second buckle groove 822 are arranged on the end cover adjustment member. Further preferably, the first buckle groove 821 and the second buckle groove 822 are both arranged on the outer cover 82.
- a spring piece 834 is provided on the rotary cover 83, and a buckle block 833 is provided on the side of the spring piece 834 close to the outer cover 82.
- the buckle block 833 can be buckled in the first buckle groove 821 or the second buckle groove 822.
- the first buckle groove 821 and the second buckle groove 822 are not limited to being provided on the outer cover 82, but can also be provided on the inner cover 81.
- the first limiting structure includes a first limiting block 811 and a second limiting block 812
- the second limiting structure includes a protruding block 835.
- first limiting block 811 and the second limiting block 812 can also be arranged on the end cover adjustment member, and the protruding block 835 can also be arranged on the end cover body. Further preferably, the first limiting block 811 and the second limiting block 812 are both arranged on the inner cover 81. Of course, the first limiting block 811 and the second limiting block 812 can also be arranged on the outer cover.
- the fastening component is a mounting piece 836; a mounting groove 836 is provided on the rotary cover 83, the outer diameter of the mounting piece 837 is smaller than the inner diameter of the mounting groove 836, the mounting piece 837 corresponds to the mounting groove 836, the mounting piece 837 extends into the mounting groove 836 or is arranged above the mounting groove 836, and the water tank is installed on the cleaning device through the mounting piece.
- a fixing piece 601 that cooperates with the mounting piece is provided on the cleaning device, and when the water tank provided with a sewage cover assembly is installed on the cleaning device, the fixing piece extends into the mounting groove, and the rotary cover is rotated until the mounting piece on the rotary cover is snapped onto the fixing piece, so that the water tank is installed on the cleaning device.
- the through hole on the rotary cover is rotated to correspond to the sewage outlet, and the snap block 833 is snapped into the first snap groove 821.
- the rotary cover is rotated in the opposite direction until the mounting piece does not correspond to the fixing piece, and the water tank can be taken out of the cleaning device, so that the fixing piece is removed from the mounting groove.
- the shielding portion on the rotary cover rotates to correspond to the sewage outlet, and the buckle block 833 is buckled in the second buckle groove 822.
- a first connecting ring 813 is provided on the inner cover 81, and at least one connecting groove 814 is provided on the side wall of the first connecting ring 813, and the connecting groove 814 includes a connecting portion 815 and a fixing portion 816, and an insertion opening 817 is provided on the side of the connecting portion 815 close to the outer cover 82, and a protrusion 818 is provided in the fixing portion 816.
- a connecting groove 814 includes a connecting portion 815 and a fixing portion 816, and an insertion opening 817 is provided on the side of the connecting portion 815 close to the outer cover 82, and a protrusion 818 is provided in the fixing portion 816.
- a second connecting ring 823 is provided on the side of the outer cover 82 close to the inner cover 81, and the second connecting ring 823 is provided with at least one fixing block 824, and the fixing block 824 is provided with a groove 825 matching the protrusion 818.
- the fixing block 824 extends from the extension port 817 into the connecting portion of the connecting groove 814 , and the decorative cover is rotated so that the fixing block 824 moves to the fixing portion 816 of the connecting groove 814 , and the protrusion 818 of the fixing portion 816 is accommodated in the groove 825 on the fixing block 824 , and the outer cover 82 is fixedly connected to the inner cover 81 .
- the sewage cover assembly is sealed and mounted on the housing, and further, the sewage cover assembly is threadedly connected to one end of the housing near the first accommodating chamber 702.
- the present invention is not limited to this, and the sewage cover assembly can also be snap-connected to one end of the housing near the first accommodating chamber 702, etc.
- a sewage cover sealing ring 819 is fixedly provided near the thread position of the inner cover 81 to seal the inner cover 81 of the sewage cover assembly to the housing.
- the water tank is provided with a second accommodating chamber for holding clean water, and the clean water cover assembly is sealed and covered on the clean water chamber.
- the clean water cover assembly 9 is threadedly connected to the second opening 705.
- this patent is not limited to this, and other sealing connection methods such as snaps and adhesives are within the scope of protection of this patent.
- the conveying cover body 90 is fixedly provided with a clean water cover sealing ring 901 near the threaded position, and the clean water cover assembly 9 is sealed and connected to the housing 7 through the clean water cover sealing ring.
- the clean water cover assembly 9 includes a clean water cover body 90; the clean water cover body 90 is provided with a conveying channel, and a shielding member is provided at one end of the conveying channel near the clean water cover body 90, and a conveying hole 921 is provided on the shielding member, and the inner diameter of the conveying hole 921 is smaller than the inner diameter of the conveying channel, and an elastic member 9121 and a sealing block 9122 are provided in the conveying channel, and the sealing block 9122 can be sealed to the conveying hole 921 under the elastic force of the elastic member 9121.
- the clean water cover assembly can automatically block the conveying hole when not in use to prevent liquid from spilling by providing the elastic member and the sealing block; when in use, the sealing block can be abutted against the conveying hole to form a gap between the sealing block and the conveying hole, so that the liquid can be conveyed through the conveying hole. It is convenient to use and easy to operate.
- a stop surface is provided in the conveying channel, one end of the elastic member 9121 is connected to the stop surface, and the other end of the elastic member 9121 is connected to the sealing block 9122.
- the stop surface is an annular spring seat 9126, and one end of the elastic member 9121 is placed on the annular spring seat 9126.
- the elastic member 9121 can be movably placed on the annular spring seat 9126, or can be fixedly arranged on the annular spring seat 9126. The other end of the elastic member 9121 is connected to the sealing block 9122.
- the other end of the elastic member 9121 can be fixedly connected to the sealing block 9122, or can be movably connected to the sealing block 9122, for example, it abuts against the sealing block 9122 or is inserted into the sealing block 9122; in short, the elastic member can play an elastic adjustment role on the sealing block 9122, which is within the protection scope of this patent.
- the elastic member 9121 is a spring.
- the outer diameter of the spring end near the annular spring seat 9126 is greater than the outer diameter of the spring end near the sealing block 9122, and the outer diameter of the spring gradually decreases from the end near the annular spring seat 9126 to the end near the sealing block 9122.
- the delivery channel includes a first delivery channel and a second delivery channel, the inner diameter of the second delivery channel is larger than the inner diameter of the first delivery channel, and one end of the elastic member 9121 is in conflict with the end of the first delivery channel.
- a water hole 9124 is provided on the sealing block 9122, and the water hole 9124 does not correspond to the delivery hole 921.
- a stopper 9123 is provided around the sealing block 9122, and the outer diameter of the stopper 9123 is larger than the inner diameter of the delivery hole 921, and the water hole 9124 is provided on the stopper 9123.
- a sealing end 9125 is provided at one end of the sealing block 9122 close to the delivery hole 921, and the sealing end 9125 is sealed and accommodated in the delivery hole 921.
- the sealing end 9125 is an elastic sealing end or the shielding member is an elastic shielding member, so that the sealing end is sealed in the delivery hole 921.
- the shielding member is a sealing silicone tube
- the sealing block is a sealing plug.
- the stopper 9123 is integrally connected to the sealing block 9122.
- a pressure regulating valve 922 is provided on the water clean cover body 90, and the pressure regulating valve 922 can adjust the pressure difference on both sides of the water clean cover assembly to avoid the situation where the liquid cannot be transported due to negative pressure.
- the pressure regulating valve is a duckbill valve to ensure that there is no negative pressure in the water tank, so that the water in the water tank cannot be transported outside the water tank or the water outside the water tank cannot be transported into the water tank.
- a filter 9111 is provided at one end of the delivery channel away from the shielding member, and the filter 9111 can filter the liquid entering the delivery channel.
- the filter 9111 is a water outlet cotton, which can filter the water in the water tank and then transport it to the outside of the water tank through the delivery channel.
- the water outlet cotton plays the role of filtering impurities in the water, preventing impurities from entering the cleaning device and causing damage to parts, thereby extending the service life of the device.
- the conveying cover includes a first conveying cover 91 and a second conveying cover 92 connected to the first conveying cover 91; a conveying hole 921 is provided on the second conveying cover 92, and the second conveying channel 912 is sealed and connected to the conveying hole 921.
- the second conveying cover 92 is detachably buckled on the first conveying cover 91.
- the present invention is not limited thereto, and the second conveying cover 92 can be detachably connected or fixedly connected to the first conveying cover 91.
- the second conveying cover is buckled on the first conveying cover, which can not only firmly seal the shielding member at one end of the conveying channel, but also make the structure more stable and the appearance more beautiful.
- the first conveying cover 91 is of split design, and the first conveying cover 91 includes a conveying cover 913 and a connecting cover 914, the connecting cover 914 is connected to the conveying cover 913, and the second conveying cover 92 is installed on the side of the connecting cover away from the conveying cover 913; preferably, the connecting cover 914 is threadedly connected or snap-connected to the conveying cover 913.
- the connecting cover 914 is threadedly connected to the conveying cover 913.
- the connecting cover 914 is sealed and connected to the conveying cover 913 through a sealing ring.
- the second conveying cover 92 is snap-connected to the connecting cover 914.
- the side of the connecting cover 914 is provided with an anti-slip structure to facilitate the installation and removal of the connecting cover.
- the delivery channel includes a first delivery channel 911 and a second delivery channel 912.
- the first delivery channel 911 is arranged on the delivery cover 913
- the second delivery channel 912 is arranged on the connection cover 914.
- the first delivery channel 911 is sealed and connected to the second delivery channel 912.
- the second delivery channel 912 is sealed and installed on the first delivery channel 911 through a sealing ring.
- the elastic member 9122, the sealing block 9122 and the annular spring seat 9126 are all arranged in the second delivery channel 912, and the water outlet sponge is arranged at one end of the first delivery channel 911 away from the second delivery channel 912.
- the first delivery channel 911 is an L-shaped first delivery channel, When in use, the end of the first delivery channel 911 away from the second delivery channel 912 is close to the bottom of the liquid in the first accommodating chamber, so that the first delivery channel can fully transport the liquid in the second accommodating chamber 703.
- the first delivery channel 911 can also be a hose, so that when in use, the end of the first delivery channel 911 away from the second delivery channel 912 naturally hangs down to or close to the bottom of the liquid in the first accommodating chamber.
- the delivery cover 913 is a split design, and the delivery cover 913 also includes a matching cover 915.
- the delivery cover 913 is detachably mounted on the matching cover 915.
- the delivery cover 913 is snapped on the matching cover 915, and the connection cover 914 is connected to the matching cover 915.
- the matching cover 915 is connected to the second opening of the shell through a thread.
- the matching cover 915 is sealed and connected to the second opening of the shell through a sealing ring.
- a water outlet hole is set on the surface of the delivery cover, which is conducive to the back and forth flow of water in the liquid when the clean water cover assembly is closed on the water tank, and does not occupy the space of the second accommodating chamber to accommodate the liquid.
- the present embodiment also provides a floor cleaning device, including a roller brush assembly 11, a screw assembly 12, a device body 6, a water tank 7, a control module and a power module; the roller brush assembly and the screw assembly are both installed on the device body, the control module can control the operation of the cleaning device, and the power module can provide power to the cleaning device;
- a dirt holding trough is provided on the equipment body 6, and the screw assembly 12 can be rotatably installed in the dirt holding trough 13.
- the screw assembly 12 is tightly fitted or closely arranged in the dirt holding trough 13.
- the dirt holding trough 13 is provided with a long strip dirt receiving port 131 facing the roller brush assembly.
- a sewage outlet 132 is provided on one side of the dirt holding trough 13, and the sewage outlet is communicated with the sewage cavity.
- the screw assembly is arranged in pressing contact with the roller brush assembly, and the screw assembly can squeeze the water and dirt on the roller brush assembly.
- the dirt holding trough and the screw assembly cooperate to transmit water and dirt to the sewage outlet 132 of the dirt holding trough, that is, the structure in which the dirt holding trough and the screw assembly are arranged in cooperation can enable the screw assembly to transmit water and dirt to the sewage outlet of the dirt holding trough, and the sewage outlet is connected to the sewage tank.
- a floor cleaning device provided in this embodiment includes related components such as a roller brush assembly and a screw assembly.
- the floor cleaning device includes a roller brush assembly, a device body for installing the roller brush assembly, a transmission motor, a power module and a control module, wherein the control module can control the power module to connect to the transmission motor, and the transmission motor drives the roller brush assembly to rotate:
- the floor cleaning device also includes a clean water tank, a sewage tank, and a screw assembly; a first cover body 61 and a second cover body 62 are provided on both sides of the device body, and the roller brush assembly is installed in the device body through the first cover body 61 and the second cover body 62;
- the inner side of the device body is a dirt holding tank 13 that matches the shape of the screw assembly 12, and the dirt holding tank 13 is a semi-enclosed structure, and the dirt holding tank 13 is semi-enclosed.
- the surrounding structure is greater than 180 degrees, and a sewage outlet 132 is provided at one end of the sewage tank 13 along the direction in which the screw assembly 12 transmits sewage and garbage;
- the screw assembly 12 is installed in the sewage tank 204 of the equipment body, and the screw assembly 400 is provided with a thread group, and the interval between the thread edge of the thread group and the inner wall of the sewage tank 204 is less than 5 mm, and the clean water tank 103 transports clean water to the end of the screw assembly 12 away from the sewage outlet through the suction pipe 602;
- a part of the screw assembly 12 is squeezed and contacted with the roller brush surface of the roller brush assembly 11 through the semi-enclosed structure of the sewage tank 13, and the contact between the screw assembly 12 and the roller brush assembly 11
- the rotation can transfer the sewage and garbage absorbed by the roller brush to the sewage outlet 132 through the sewage tank 13 ;
- the sewage outlet 132 of the sewage tank 13 is arranged corresponding to the sewage outlet 801 of the
- the clean water tank and the sewage tank can be designed separately or as an integrated water tank.
- a clean water chamber is provided in the clean water tank, and a sewage chamber is provided in the sewage tank.
- the distance between the axis of the screw assembly and the axis of the roller brush assembly is less than the sum of the radii of the screw assembly and the roller brush assembly.
- the screw assembly 12 is closely arranged on a side of the roller brush assembly 11 close to the water tank 7 , and the screw assembly 12 can be rotatably installed in a dirt holding tank 13 , and the dirt holding tank 13 is fixedly installed on the equipment body 6 .
- the inner cavity of the dirt holding tank 13 is tightly fitted or arranged close to the screw assembly 12; the dirt holding tank 13 is provided with a dirt receiving port 131 and a dirt discharge port 132, the dirt receiving port 131 faces the roller brush 11, the dirt and sewage on the roller brush assembly 11 can be squeezed by the screw assembly 12 and collected in the dirt holding tank 13 through the dirt receiving port 131, the dirt discharge port 132 is connected to the dirt port 801 of the dirt cover assembly 8, the screw assembly 12 can transport the dirt and sewage to the dirt discharge port 132 and throw the dirt and sewage into the first accommodating cavity 702 through the dirt discharge port 132 and the dirt port 801 of the dirt cover assembly 8.
- a first cover 61 is provided on one side of the device body 6, and a second cover 62 is provided on the other side of the device body 6, as shown in FIG41.
- a motor assembly 63 is fixedly mounted on the second cover 62, and a receiving groove 110 is provided at one end of the roller brush assembly 11.
- One end of the roller brush assembly 11 is sleeved on the motor assembly 63 through the receiving groove 110, and the driving motor can drive the roller brush assembly to rotate.
- the screw assembly provided by the present invention includes a screw body 124 and a screw end cover 125, the screw body 124 is provided with a first thread group 122 and a second thread group 123, the thread diameter of the second thread group 123 is larger than the thread diameter of the first thread group 122, the thread pitch of the second thread group 123 is smaller than the thread pitch of the first thread group 122, and the length of the first thread group 122 is greater than the length of the second thread group 123.
- the second thread group 123 corresponds to the sewage outlet 132 of the sewage tank 13 .
- the technical solution of adopting different thread pitches between the first thread group and the second thread group is the result of multiple physical experimental tests.
- the thread groups with different pitches are used to rotate quickly, and the first thread group is switched to the second thread group in the area near the sewage outlet. Since the thread pitch of the first thread group is larger than that of the second thread group, the pushing amount of the first thread group per rotation is larger than that of the second thread group per rotation.
- the pressure generated by the rotational pushing will increase in the second thread group area. The pressure increases, forming a greater conveying and centrifugal force, thereby better transmitting sewage and garbage through the sewage outlet 132 of the sewage tank 13 to the sewage outlet 801 of the sewage tank.
- the technical solution of adopting different thread diameters for the first thread group and the second thread group is also the result of multiple physical experimental tests.
- the first thread group is switched to the second thread group. Since the thread diameter of the second thread group is larger than that of the first thread group, better conveying and centrifugal force are formed, thereby better transmitting sewage and garbage through the sewage outlet 132 of the sewage trough 13 to the sewage outlet 801 of the sewage tank.
- a screw end cover 125 is provided at one end of the screw body 124, and the screw end cover is provided with a sealing ring and a locking mechanism 127, and the locking mechanism 127 can be locked with the equipment body.
- the threaded end cover 125 is provided with a bearing.
- the screw end cap 125 is provided with a screw handle 126, and the screw handle 126 is rotatable. Dynamic storage structure.
- a screw rotating head 128 is provided at one end of the screw body, and the screw rotating head 128 is sleeved on the end of the screw body 124, and the screw rotating head 128 has a bearing built in it, and the screw rotating head is provided with a sealing ring.
- the screw rotating head 128 is installed in the screw rotating head installation groove of the first cover body 61.
- a shock-proof plug 129 is provided on the end surface of the screw rotating head 128 .
- the second thread group 123 is disposed corresponding to the sewage outlet 132 of the sewage tank.
- one end of the screw body 124 is a screw rotating head 128, the screw rotating head 128 has a built-in bearing, the screw rotating head is provided with a sealing component, the screw body is provided with a first thread group and a second thread group in sequence, a screw end cap 125 is provided near one end of the second thread group, the screw end cap 125 has a built-in bearing, and the screw end cap 125 is provided with a locking mechanism 127 and a sealing component.
- the sealing ring described in this patent can also be sealed by end face compression.
- the thread group of the screw body is in extrusion contact with the roller brush surface, and the screw body can be driven by the roller brush surface to rotate passively, and the screw body can also be connected to the transmission mechanism to rotate actively.
- the thread group of the screw body is in extrusion contact with the roller brush surface, and the thread group is in extrusion contact with the roller brush surface and rotates.
- the sewage and dirt on the roller brush surface can be scraped or squeezed out, and at the same time, the scraped or squeezed sewage and dirt are transmitted to one end through the rotation of the screw in the semi-enclosed dirt tank; on the other hand, when the screw and the roller brush surface are in working state, they maintain real-time kneading action, thereby realizing the function of real-time kneading self-cleaning while working; at the same time, since no vacuum cleaner is required, it has low energy consumption and low noise.
- the passive working mode of the screw assembly has lower costs and simpler structural design.
- the clearance between the thread edge of the screw assembly 12 and the inner wall of the dirt holding tank 13 in the present invention is less than 5 mm, preferably less than 1 mm, and more preferably 0.2-0.5 mm. If the clearance between the thread edge and the inner wall of the dirt holding tank 13 is too large, the screw will not be able to rotate and transfer the dirt effectively. If the clearance between the thread edge and the inner wall of the dirt holding tank 13 is too small, for example, the thread edge is tangent to or in contact with the inner wall of the dirt holding tank 13, the friction will increase, which will also affect the transfer.
- a screw bearing is provided on at least one side of the screw assembly, and preferably screw bearings are provided on both ends of the screw assembly, which is more conducive to the stable rotation of the screw.
- the thread group of the screw rotates under the extrusion state with the surface of the roller brush.
- the thread group on the screw and the roller brush perform a rotational extrusion motion to take away the dirt, sewage and sewage on the roller brush and transmit them to the sewage outlet through the spiral.
- the thread group on the screw also rubs and squeezes the roller brush all the time, which is similar to the working principle of a washboard and plays a self-cleaning role.
- the present invention provides a roller brush assembly
- the roller brush assembly 11 includes a roller brush body 111 and a mounting handle 112.
- the mounting handle 112 is rotatably connected to one end of the roller brush body 111 away from the motor assembly 63.
- the mounting handle 112 is rotatably connected to one end of the roller brush body 111 through a connecting shaft 113 and a roller brush bearing 114.
- the mounting handle 112 extends outward in a direction perpendicular to the axis of the roller brush body 111.
- the mounting handle 112 is magnetically mounted on the first cover body 61. Specifically, a magnet 118 is provided on the mounting handle 112, and a magnetic material is provided on the first cover body 61. The magnet is adsorbed on the magnetic material.
- Ribs or disassembly grooves are provided on the mounting handle 112. When disassembling the roller brush body, the ribs or disassembly grooves are pinched by hand to overcome the magnetic force and take out the roller brush body.
- magnetic material can also be provided on the mounting handle 112, and a magnet can be provided on the first cover body 61. As long as the roller brush assembly 11 can be magnetically mounted on On the main body of the device.
- the motor assembly 63 includes a driving motor 631, a gearbox, a roller brush joint 633 and a motor housing 634.
- the gearbox is a planetary gearbox.
- the driving motor 631 is fixedly mounted on the second cover body.
- the control system can control the motor assembly 63 to be electrically connected to the power module.
- the output end of the driving motor is fixedly connected to the roller brush joint through the gearbox.
- the roller brush joint is provided with a convex strip 635 in the radial direction. The angle between the length direction of the convex strip 635 and the length direction of the roller brush assembly is less than 90 degrees. From the end of the convex strip 635 close to the driving motor 631 to the end of the convex strip 635 away from the driving motor 631, the convex strip 635 is inclined toward the rotation direction of the roller brush assembly 11 when it moves forward.
- the accommodating groove 110 is provided with a mounting groove 115 matching the roller brush joint.
- the roller brush assembly 11 rotates forward. Since the inclination direction of the convex strip on the roller brush joint is consistent with the rotation direction of the roller brush assembly when it moves forward, there is a force toward the motor assembly when the roller brush body rotates, so that the roller brush body is more tightly mounted on the motor assembly when it rotates. Therefore, the roller brush body can be installed on the device body only by magnetic attraction, and the roller brush body will not loosen from the device body or the motor assembly.
- the roller brush body 111 includes a roller 116 and a flexible cleaning layer 117 disposed on the roller.
- the flexible cleaning layer is a collodion layer or a plush cotton layer.
- the present invention also provides another roller brush assembly.
- the roller brush assembly includes a roller brush body 111: the roller brush body 111 includes a roller core 116 and a flexible cleaning layer 117, the flexible cleaning layer 117 is sleeved on the roller core, and a roller brush handle 301 is provided on at least one side of the roller brush assembly; the roller brush handle 301 on one side of the roller brush assembly is rotatably connected to the roller brush end cover 307 of the roller core 116; the roller core 116 is internally provided with an installation groove 316 that can match the roller brush joint 310, and the roller core 116 can be driven to rotate by the roller brush joint 310 through the installation groove 316.
- roller brush handles 301 are provided on both sides of the roller brush assembly, and at least one roller brush handle 301 is installed with a conductive component 315.
- the conductive component 315 is, for example, a conductive sheet with a groove.
- the roller brush handle 301 on the other side of the roller brush assembly which is equipped with a conductive component 315, is connected to the transmission gearbox motor 303 through the first roller brush shaft 305, the roller brush bearing seat 306 and the roller brush bearing 304;
- the first roller brush shaft 305 is provided with a through hole, and the circuit of the transmission gearbox motor 303 passes through the through hole built into the first roller brush shaft 305 and is connected to the conductive component 315 of the roller brush handle 301;
- the transmission gearbox motor 303 is built into the roller core, and a roller brush connector 310 is provided at the end of the motor output shaft 311 of the transmission gearbox motor 303.
- the roller brush body 302 is driven by a transmission motor.
- the roller brush body 302 is built with a transmission gearbox motor 303.
- One end of the transmission gearbox motor 303 is installed in the transmission motor frame 312, and the other end of the transmission gearbox motor 303 is installed in the roller brush bearing seat 306.
- One end of the roller brush bearing seat 306 is sleeved on the transmission gearbox motor 303, and the outer surface of the other end is matched and fixedly installed with a roller brush bearing 304.
- the roller brush handle 301 is provided with a first roller brush shaft connecting tube 317, and the front end of the first roller brush shaft connecting tube 317 extends into the inner side of the roller brush bearing seat 306, and then the first roller brush shaft 305 passes through the first roller brush shaft connecting tube 317 and extends into the inner side of the roller brush bearing seat 306, and the roller brush handle is fastened and connected with the roller brush bearing seat by bolts.
- the diameter of the first roller brush shaft 305 is larger than the roller brush sleeve bearing 309 .
- the speed of the roller brush motor is controlled at 200-400RPM to meet the normal use state.
- the screw and the roller brush can be driven passively or actively.
- the screw and roller brush diameter ratio is preferably 20:100-20:20, and the screw speed is between 367-735.
- the top of the transmission gearbox motor 303 is set There is a roller brush joint 310, which matches with the installation groove 316 of the roller brush joint in the roller core.
- the roller brush assembly 300 is installed by placing it into the roller brush handle installation groove 205 from top to bottom, preferably directly placed in the vertical direction.
- the inventor has proposed a single-side installation technical solution in the earlier patent technical solution. Compared with the technical solution of installing the roller brush assembly on one side first and then installing the roller brush assembly on the other side, the advantage of this patent is that the force is more uniform and the product is more reliable. Because the screw rod and the roller brush surface are in extrusion contact, when the cleaning device is working, the screw rod will apply a certain pressure to the roller brush surface. Roller brush handles are set on both sides, which not only makes the roller brush force uniform, but also makes installation and disassembly more convenient.
- the roller brush handle 301 on one side of the roller brush assembly is connected to the roller brush end cover 307 of the roller core 116 via a roller brush sleeve bearing 309 and a second roller brush shaft 308 .
- one end of the transmission gearbox motor 303 is mounted on the transmission motor frame 312, and the other end of the transmission gearbox motor 303 is partially sleeved in the roller brush bearing seat 306, and the outer surface of the other end of the roller brush bearing seat 306 is installed with a roller brush bearing 304, and the other end of the roller brush bearing seat 306 is provided with a through hole;
- a first roller brush shaft connecting tube is provided inside the roller brush handle, and the front end portion of the first roller brush shaft connecting tube 317 extends into the through hole of the roller brush bearing seat 306.
- the first roller brush shaft 305 passes through the first roller brush shaft connecting tube 317 and extends into the interior of the roller brush bearing seat 306, thereby firmly connecting the roller brush handle 301 and the roller brush bearing seat 306.
- a shock-proof plug 129 is provided on the top of the roller brush joint 310 .
- a conductive component 315 is provided on the side of the roller brush handle 301, and a concave groove is provided on the surface of the conductive component 315, and the concave groove matches the elastic conductive component 209 of the device body.
- At least one side wall of the roller brush handle installation slot is provided with an elastic conductive component 209.
- the elastic conductive component is a retractable elastic conductive component.
- the elastic conductive component is a pogopin conductive spring pin.
- a conductive component 315 is correspondingly provided on the side of the roller brush handle.
- a recessed groove is provided on the conductive component 315 to match the retractable elastic conductive component. This setting can prompt the user that the installation has been completed and improved the user experience.
- a shock-proof plug 129 is provided on the end surface of the roller brush handle 301 .
- the end face of the roller brush handle is provided with a flexible anti-shock plug 129, such as a silicone pad, so that the roller brush handle will have a certain damping effect during installation to avoid direct collision installation.
- a flexible anti-shock plug 129 such as a silicone pad
- the anti-shock plugs at both ends help reduce the noise of the cleaning equipment during operation, reduce vibration and axial movement, and improve product stability and service life.
- the flexible cleaning layer 117 is a collodion roller brush.
- the cleaning device further comprises an operating rod 64, and the battery module may be arranged in the device body or on the operating rod.
- the dirt holding tank 13 is opened on the equipment body. Further preferably, the dirt holding tank 13 is a semi-enclosed structure, and the semi-enclosed structure of the dirt holding tank 13 is greater than 180 degrees. Further preferably, the semi-enclosed closed angle of the dirt holding tank 13 is preferably 270 degrees to 300 degrees.
- the sewage and dirt transmission mechanism formed by the semi-enclosed structure of the dirt tank 13 and the screw assembly 12 is significantly different from the existing technology in terms of transmission principle and transmission effect, and the cost is relatively low, eliminating the vacuum cleaner module.
- the screw assembly and the roller brush surface realize real-time rubbing self-cleaning. At the same time, Low energy consumption and low noise; the core components and equipment body are preferably made of aluminum alloy extrusion, and the product is reliable and durable.
- the device body is provided with a number of reinforcing ribs to increase the strength and stability of the device body.
- the device body is preferably made of aluminum alloy material, so that the core component of the device body can be produced by extrusion molding, the product is reliable and durable, and the cost is low.
- an upper cover is also provided on the device body, and the upper cover is provided above the roller brush assembly, or the upper cover is provided above the roller brush assembly and the device body.
- the front end of the upper cover is provided with an anti-collision strip 603, such as a silicone strip.
- an inner stop bar 604 is provided on the inner side of the front end of the upper cover.
- the anti-collision strip and the inner stop strip are preferably integrated, the anti-collision strip 603 is a U-shaped snap-fit installation structure, the inner side of the anti-collision strip 603 is the inner stop strip 604, and the inner stop strip is preferably inclined toward the surface of the roller brush and in contact with the surface of the roller brush.
- the anti-collision strip can prevent the cleaning device from being damaged if it accidentally hits a wall or furniture when it is working.
- the inner stop strip set on the inner side of the front end of the upper cover can prevent some dirt or sewage that has not been transported away in time from being thrown into the forward direction of the roller brush assembly when the roller brush rotates, further improving the cleaning effect.
- the second cover body 62 is provided with a screw mounting opening 133 and a roller brush handle mounting groove 205 , and the screw end cover 125 is locked and fixed to the screw mounting opening 133 .
- a pressure roller 65 is provided on the inner side of the upper cover, and the pressure roller 65 contacts the surface of the roller brush.
- springs are installed at both ends of the pressure roller, so that there is an elastic extrusion between the pressure roller and the roller brush.
- a pressure strip is provided on the inner side of the upper cover, and the pressure strip contacts the surface of the roller brush.
- the water tank 7 is arranged on one side of the equipment body away from the roller brush assembly.
- the sewage outlet 132 of the sewage tank 13 is arranged at the end of the thread group rotating to transmit the sewage, and the sewage outlet 132 cooperates with the second thread group 123 .
- the sewage tank 500 is provided with a sewage tank water inlet cover 502, the sewage outlet 132 of the sewage tank corresponds to the sewage outlet 801, and a sewage outlet top block 213 is provided on the upper edge of the sewage outlet 132 of the equipment body in the direction of the sewage tank, and the sewage outlet top block 213 can push open the sewage tank water inlet cover 502.
- the sewage tank water inlet cover 502 will automatically close due to the torsion spring 503.
- a torsion spring 503 is provided on the top of the sewage tank water inlet cover.
- a magnet 504 is provided on the lower side of the sewage outlet 801, and the corresponding sewage tank water inlet cover and the magnet 504 can be magnetically adsorbed.
- a larger capacity clean water tank and sewage tank can be replaced according to actual needs.
- the lower edge of the drain outlet 132 is higher than the horizontal position of the central axis of the screw, and the upper edge of the drain outlet is higher than the upper edge of the thread of the screw assembly; the width of the drain outlet is less than or equal to the width of the second thread group.
- the lower edge of the drain outlet will affect the actual capacity of the sewage tank. If the lower edge of the drain outlet is set higher, the effective capacity of the sewage tank will be expanded.
- the sewage outlet 132 of the sewage tank 13 is provided with a top block 213, and the top block 213 pushes open the sewage tank water inlet cover 502.
- the sewage tank water inlet cover 502 can be kept in a normally open state, otherwise the sewage tank water inlet cover 502 is easily blocked by dirt, thereby affecting the normal use of the product.
- the diameter ratio of the roller brush assembly to the screw assembly is in the range of 4:1 to 1:1. Such a diameter ratio is more conducive to screw transmission.
- the first cover body 61 and the second cover body 62 are respectively provided with a roller brush handle mounting groove 205, and the inner wall of at least one roller brush handle mounting groove 205 is provided with an elastic conductive component 209. 11 is installed from top to bottom, and a conductive component 315 is installed on the side of at least one roller brush handle, and the conductive component 315 matches the elastic conductive component 209, and bearings are arranged on both sides of the roller brush assembly.
- This design facilitates the removal and installation of the roller brush, and the conductivity is stable.
- the first cover 61 is provided with a screw rotating head mounting groove 206
- the second cover 62 is provided with a screw mounting port 133
- the screw rotating head at one end of the screw assembly matches the screw rotating head mounting groove 206
- the screw end cap 125 is tightly connected to the screw mounting port 133
- at least one side of the screw end cap of the screw assembly is provided with a bearing.
- the water suction pipe 602 sprays clean water directly onto the surface of the roller brush.
- the device body is provided with an upper cover 61, and the upper cover 61 is buckled on the device body.
- This design is conducive to disassembly and replacement of the roller brush assembly.
- a roller brush handle mounting groove 205 is provided on the second cover body 62, and a pair of elastic conductive components 209, such as conductive spring pins, are provided on the inner side wall of the roller brush handle mounting groove 205.
- the elastic conductive components are provided corresponding to the side conductive components 315 of the roller brush handle 301, so as to achieve electrical connection.
- the elastic conductive component 209 such as a conductive spring pin, can be just inserted into the surface groove of the conductive component 315, which can facilitate the installation of the roller brush handle in place on the one hand, and enhance the conductive stability on the other hand.
- the present embodiment provides a floor cleaning device capable of detecting whether there is water on the collodion roller brush of a roller brush assembly, including the roller brush assembly, the device body and other related components.
- the roller brush assembly 11 includes a roller core 116 and a flexible cleaning layer 117.
- the flexible cleaning layer 117 is sleeved on the roller core 116.
- the flexible cleaning layer 117 is preferably a rubber cotton roller brush.
- the roller brush assembly can be detachably mounted on the device body 6.
- the device body 6 is provided with a roller brush detection structure.
- the roller brush detection structure is provided in contact with the rubber cotton roller brush on the roller brush assembly 300.
- the roller brush detection structure can detect whether there is water on the rubber cotton roller brush on the roller brush assembly 300. As is well known, the rubber cotton will become hard after being dried for a long time, and will only become soft after adding water. Therefore, a roller brush detection structure is provided.
- the water tank includes a clean water chamber and a sewage chamber, or the clean water tank and the sewage tank of the water tank are designed separately.
- the roller brush detection structure is a conductive contact 320, and at least one group of conductive contacts 320 is arranged on the device body 6, and each group of conductive contacts includes two conductive contact heads arranged at intervals, and the two conductive contacts are respectively connected to the power module through wires, and whether there is water in the rubber cotton roller brush 314 is detected by whether the two conductive contacts are conductive, and the two conductive contact heads of each group of conductive contacts are in contact with the rubber cotton roller brush.
- the two conductive contact heads cannot form a closed circuit, and the detected resistance is very large; when there is water on the rubber cotton roller brush, the two conductive contact heads form a closed circuit, and the detected resistance becomes smaller.
- the control module sets an upper limit value.
- the control module controls the roller brush detection structure to detect the resistance value. If the resistance value is greater than the upper limit value, it means that there is no water on the rubber cotton roller brush, and the rubber cotton roller brush cannot clean the floor at this time; the control module controls the clean water tank to supply water to the rubber cotton roller brush and/or to the dirt tank equipped with the screw assembly; when the roller brush detection structure detects a resistance value less than the lower limit value, it means that the rubber cotton roller brush has been replenished with water or there is water on the rubber cotton roller brush, that is, the rubber cotton roller brush is a soft roller brush and can be used to clean the floor. At this time, the control The module controls the clean water tank to stop supplying water to the rubber cotton roller brush or the cleaning device to start the cleaning mode.
- the roller brush detection structure can also be a sensor, which is arranged in contact with the rubber cotton roller brush of the roller brush assembly, and the sensor can detect whether there is water or no water on the rubber cotton roller brush.
- the sensor includes a water immersion sensor or other detection sensors and the like.
- roller brush assembly 11 and the device body 6 are the same as those in embodiment A.
- the conductive contact 320 is fixedly mounted on the first cover 61 of the device body.
- the present embodiment provides a floor cleaning device, wherein the clean water chamber can deliver water to the roller brush assembly as well as to the dirt storage tank on which the screw assembly is installed.
- the cleaning device includes a roller brush assembly 11, a screw assembly 12, a device body 6, a water tank, a control module and a power module; a dirt holding tank is provided on the device body, the screw assembly 12 can be rotatably installed in the dirt holding tank 13, the screw assembly 12 is tightly fitted or closely arranged in the dirt holding tank 13, the dirt holding tank 13 is provided with a long strip dirt receiving port 131 facing the roller brush assembly, a sewage outlet 132 is provided on one side of the dirt holding tank 13, the sewage outlet is connected to the sewage cavity, the screw assembly is arranged in pressing contact with the roller brush assembly, the screw assembly can squeeze the water and dirt on the roller brush assembly, the dirt holding tank and the screw assembly cooperate to transmit water and dirt to the sewage outlet 132, that is, the structure in which the dirt holding tank and the screw assembly are arranged in cooperation can enable the screw assembly to transmit water and dirt to the sewage outlet, and the sewage outlet is connected to the sewage cavity.
- the clean water cavity and the sewage cavity of the water tank can be designed as
- the cleaning device is provided with two water pumps, namely a first water pump 181 and a second water pump 182.
- the first water pump can deliver water to the roller brush assembly, and the second water pump can deliver water to the dirt storage tank where the screw assembly is installed.
- a plurality of first water replenishment holes 180 are opened on the device body, the first water replenishment hole 180 faces the roller brush assembly, the first water replenishment hole 180 is located above the roller brush assembly, the first water replenishment hole 180 is connected to the clean water chamber through a suction pipe, and a first water pump 181 is installed on the suction pipe.
- the first water pump 181 can suck the clean water in the clean water chamber and replenish water to the rubber cotton roller brush of the roller brush assembly through the first water replenishment hole 180.
- the device body is the same as that in embodiment A or embodiment B, including the device body, the first cover body and the second cover body, and further including an upper cover 221, which is detachably arranged above the roller brush assembly, and includes a first upper cover 222 and a second upper cover 223, the second upper cover is arranged on the side of the first upper cover close to the roller brush assembly, and a groove 224 is provided on the second upper cover, and a water supply bar 225 is sealed on the groove 224, and a return-shaped water channel cavity is formed in the water supply bar and the groove, and the water pump is connected to the return-shaped water channel cavity, and a plurality of first water supply holes are provided at the bottom of the groove, and the water supply holes face the collodion roller brush so that water is evenly supplied to the surface of the collodion roller brush.
- the water supply bar is detachably installed in the groove.
- the first water replenishment hole 180 is located on a side of the roller brush assembly close to the screw assembly.
- the plurality of first water replenishment holes are evenly arranged at equal intervals along the length direction of the roller brush assembly.
- the second upper cover is detachably fixedly mounted on the device body, and the first upper cover is buckled and mounted on the device body and the second upper cover.
- the dirt holding tank is opened on the device body.
- the clean water chamber can also provide clean water to the dirt tank 204 where the screw assembly 12 is installed.
- a second water replenishment hole 226 is opened on the sewage tank.
- the hole 226 is connected to the clean water chamber through a water suction pipe, and a second water pump 182 is installed on the water suction pipe.
- the second water pump 182 can transport the water in the clean water tank to the sewage tank through the water suction pipe and the second water replenishment hole.
- the second water replenishment hole is located at an end of the sewage tank away from the sewage outlet 132.
- the screw assembly 12 is the same as that in Embodiment A or Embodiment B.
- the roller brush assembly 11 is the same as that in Embodiment A or Embodiment B.
- the control module When the cleaning device is turned on, the control module first controls the first water pump to supply water to the roller brush assembly for a certain period of time so that the rubber cotton roller brush absorbs water and becomes soft. Then the control module controls the first water pump to stop supplying water to the roller brush assembly. After the cleaning device starts to clean the ground or surface, the control module controls the second water pump to supply water to the sewage tank.
- the screw assembly squeezes the sewage and dirt on the roller brush assembly and rotates with the roller brush assembly. The sewage and dirt are transported to one end of the sewage outlet as the screw assembly rotates, and then thrown into the sewage cavity; at the same time, the clean water transported in the second water supply hole is also transported to the sewage outlet.
- the clean water contacts the rubber cotton roller brush of the roller brush assembly, which can play a role in cleaning the rubber cotton roller brush.
- the clean water from the second water supply hole to one end of the sewage outlet, it also plays a role in cleaning the sewage tank, cleaning the sewage and dirt in the sewage tank to one end of the sewage outlet, and then throwing it into the sewage tank.
- the roller brush detection structure of Example C can also be combined to detect whether there is water in the rubber cotton roller brush.
- the control module controls the first water pump to supply water to the roller brush assembly for a certain period of time.
- the control module controls the first water pump to stop supplying water to the roller brush assembly.
- the control module controls the second water pump to supply water to the dirt tank, and at the same time plays the role of cleaning the roller brush and the dirt tank. Clean the roller brush to achieve a better effect of cleaning the ground and avoid stains on the ground after cleaning.
- the sewage chamber provided in this embodiment is the same as that in embodiment A or B.
- the clean water chamber and sewage chamber included in the water tank can be designed as one piece or separately.
- the sewage tank is designed separately, it can be a square sewage tank or a cylindrical sewage tank.
- the sewage chamber is also provided with an air hole 804, which is connected to the sewage chamber.
- the sewage port 801 and the air hole 804 are both arranged at the upper part of the water tank.
- the inner wall of the sewage chamber is provided with a blocking groove 805, and one side wall of the blocking groove 805 corresponds to the vent hole 804.
- the vent hole 804 corresponds to the blocking groove 805, and the opening direction of the blocking groove 805 is arranged perpendicular to the vent hole 804.
- the blocking groove is arranged on the inner wall of the sewage chamber to block the vent hole and sewage and dirt, so as to prevent the vent hole from being blocked by the surging sewage and dirt in the sewage chamber or the sewage and dirt thrown into the sewage chamber from the sewage outlet, so as to prevent the gas in the sewage chamber from being discharged, the air pressure in the sewage chamber from being released, or the sewage and dirt from overflowing from the vent hole.
- the shielding groove 805 contains water-blocking cotton 806.
- the water-blocking cotton is arranged in the shielding groove, which has a better effect of preventing surges, and can prevent dirt from overflowing from the vents, and can also prevent external foreign matter from falling into the sewage tank from the vents.
- a flange 134 is provided at the end of the sewage outlet, and the fastening member is an annular groove 838 arranged around the outside of the sewage outlet, and the mounting groove 836 is connected to the annular groove 838.
- the flange 134 is configured to extend into the mounting groove 836 and move and snap into the annular groove 838 by rotating the adjustment cover, so that the water tank is installed on the cleaning device. The water tank is removed from the cleaning device. At this time, the through hole on the adjusting cover is rotated to correspond to the sewage outlet, and the buckle block 833 is buckled in the first buckle groove 821.
- the adjusting cover When the water tank is taken out, the adjusting cover is rotated in the opposite direction until the convex edge 134 is moved out of the annular groove 838, so that the water tank can be taken out of the cleaning device.
- the shielding part on the adjusting cover is rotated to correspond to the sewage outlet, and the buckle block 833 is buckled in the second buckle groove 822.
- a sealing ring is fixedly provided at one end of the sewage outlet close to the sewage outlet so that the sewage outlet is sealed and connected with the sewage outlet.
- the fastening component and the mounting groove constitute the mounting structure of the water tank.
- the mounting structure is arranged at the sewage outlet, and the sewage outlet and the sewage outlet can be firmly and tightly fastened together, and there will be no leakage of sewage and dirt.
- the mounting structure is not arranged at the sewage outlet. If the water tank shakes on the equipment, a gap will appear between the sewage outlet and the sewage outlet, which is easy to cause leakage of sewage and dirt.
- a positioning piece is provided on the clean water cover assembly, and when the water tank is installed on the device body, the positioning piece is positioned on the device body. The positioning piece serves to position the water tank to prevent the water tank from rotating with the adjustment cover when the water tank is installed, thereby avoiding installation difficulties and causing extremely poor consumer experience for users.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Sewage (AREA)
- Cleaning By Liquid Or Steam (AREA)
Abstract
一种可调节污水盖组件、水箱及清洁设备,包括壳体(70)和污水盖组件(8),壳体包括至少一个容纳腔(702)和开口(704),污水盖组件(8)密封盖合于开口(704)上,污水盖组件(8)包括端盖主体和调节件;端盖主体包括内盖(81)和固定盖(84),端盖调节件包括调节阀(85)和调节钮(86),端盖组件密封盖合于污水箱(500)上;内盖(81)表面开设有污水口(801),固定盖(84)表面开设有第二通孔(841),固定盖(84)安装于内盖(81)上;调节阀(85)置于内盖(81)和固定盖(84)之间,调节阀(85)上设置有通孔(831)和遮挡部(832),调节钮(86)设置于固定盖(84)远离调节阀(85)的一侧,调节钮(86)被配置得能够旋转调节通孔(831)与污水口(801)相对应或遮挡部(832)与污水口(801)相对应。避免了拆卸时水箱内污水污物洒漏的问题,且通过联动设计,拆装与污水口的开闭相联动,操作更为简单。
Description
本发明涉及地面清洁领域,尤其涉及一种可调节污水盖组件、水箱及清洁设备。
目前市场上常用地面清洁设备采用抽吸装置将污水污物吸入污水箱中,污水箱设置于设备主体上,污水箱拆卸时,由于污水箱体积较大,安装牢固,所以拆卸更为费力,且用力拆卸时污水箱内的污水污物经常通过污水口溅洒出来,不仅费时费力,且给用户带来很差的体验感。
另外污水箱经过长时间的使用,在连接处很容易渗水洒漏,影响水箱甚至清洁设备的使用寿命。
现有洗地机或拖地机的主流技术是吸尘器机构加上滚刷结构,但是这种技术路线的产品,往往为了追求大吸力,需要采用高转速电机,因为要利用空气负压来抽吸污水污物,高转速电机导致产品噪声大,如果静音电机,成本又高;复杂结构使得成本进一步提高,产品本身也比较重,不利于用户移动,容易坏。由于高速电机的功耗较大,使得电池的续航能力是一个大问题,为了提升续航能力,加大电池包数量,增加成本,增加了产品重量。
现有产品也有一种技术路线产品,其产品结构为滚刷加上刮板组件,但由于没有形成负压,除污效果较差;由于利用刮板对整个滚刷表面进行刮除动作,从而让污物和污水利用重力原理顺势流入到污水箱,则一方面,污水箱的开口会非常大,否则无法和刮板进行对接,另一方面,污水箱的容量受到限制,排污口的位置需要设置的较低才行,才能让污水污物利用顺势流到污水箱。
因此,现有产品普遍存在污水箱难清洁,产品结构复杂,成本高,耗电多,产品重、噪音大等问题。针对上述存在的技术问题,本专利有必要提供一种新的技术方案。
发明内容
本专利的目的在于至少解决现有技术中存在的技术问题之一,本专利提供一种可调节污水盖组件、水箱及清洁设备,该方案设计巧妙,既避免了拆卸时水箱内污水污物洒漏的问题,且通过联动设计,拆装与污水口的开闭相联动,操作更为简单。具体技术方案如下所述:
一方面,本专利提供一种可调节污水盖组件,所述端盖组件密封盖合于污水箱上,所述端盖组件包括端盖主体和端盖调节件;所述端盖主体包括内盖和固定盖,所述端盖调节件包括调节阀和调节钮;
所述内盖表面开设有污水口,所述固定盖表面开设有第二通孔,所述污水口和第二通孔相对应,固定盖安装于内盖上;
所述调节阀置于内盖和固定盖之间,调节阀上设置有通孔和遮挡部,调节
钮设置于固定盖远离调节阀的一侧,调节钮被配置得能够旋转调节调节阀上的通孔与污水口相对应或调节阀上的遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,所述调节阀上设置有与清洁设备连接的固紧部件,设置有污水盖组件的水箱通过固紧部件安装于清洁设备上时,所述调节阀上的通孔与污水口相对应;设置有污水盖组件的水箱通过固紧部件自清洁设备上分离时,所述调节阀上的遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,还包括至少一个调节结构,所述调节结构包括第一调节结构和第二调节结构,第一调节结构设置于内盖或固定盖上,第二调节结构设置于调节阀上,所述第二调节结构与第一调节结构相配合,所述调节阀能够旋转调节调节阀上的通孔与污水口相对应或调节阀上的遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,还包括至少一个限位结构,限位结构能够限制端盖调节件沿端盖主体旋转的角度。
作为本专利所述的污水盖组件的一种优选方案,所述第一调节结构包括第一卡槽和第二卡槽,所述第二调节结构包括卡凸。当调节阀旋转至通孔与污水口相对应时,卡凸卡扣于第一卡槽内;当调节阀旋转至遮挡部与污水口相对应时,卡凸卡扣于第二卡槽内。
作为本专利所述的污水盖组件的一种优选方案,所述固紧部件为设置于调节阀上的卡条,所述固定盖上开设有安装口,所述调节阀旋转至调节阀上的卡条与安装口相对应,卡条卡合于清洁设备上时,所述调节阀上的通孔与污水口相对应;调节阀旋转至卡条自安装口内移开时,卡条自清洁设备的固定片上分离时,调节阀上的遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,限位结构包括挡条、第一止挡块和第二止挡块,挡条设置于内盖上,第一止挡块和第二止挡块均设置于调节阀上;
当通孔与污水口相对应时,第一止挡块与挡条靠近第一止挡块的一端相抵触;当遮挡部与污水口相对应时,第二止挡块与挡条靠近第二止挡块的一端相抵触。
作为本专利所述的污水盖组件的一种优选方案,所述调节阀为异形调节阀,所述调节阀靠近内盖底部一侧设置有弧形部,第一卡槽、第二卡槽、第一止挡块和第二止挡块均设置于弧形部上,所述卡条靠近内盖的侧壁。
作为本专利所述的污水盖组件的一种优选方案,所述调节钮穿过固定盖固定安装于调节阀上,所述调节阀能够跟随调节钮一起转动,所述固定盖不随调节钮一起转动。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体的端口为圆形,所述端盖主体上设置有与水箱密封连接的圆形的污水盖密封圈。
作为本专利所述的污水盖组件的一种优选方案,所述调节钮沿横截面呈非圆形,和/或所述调节钮侧面为防滑面。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体上设置有环形密封槽,环形密封槽绕设于污水口外侧,环形密封槽内固定容置有密封圈。
一方面,本专利提供一种水箱,包括壳体和如上述方案所述的污水盖组件,所述壳体包括至少一个容纳腔和开口,所述开口与一个容纳腔相连通,所述污水盖组件密封盖合于开口上。
一方面,本专利提供一种清洁设备,包括滚刷组件、螺杆组件、设备主体,电源模块和控制模块;滚刷组件和螺杆组件均安装于设备主体上;
设备主体上开设有盛污槽,螺杆组件可转动安装于盛污槽内,螺杆组件紧密贴合或贴近设置于盛污槽内,所述盛污槽开设有朝向滚刷组件的长条形接污口,所述盛污槽的一端设置有排污口,所述排污口与污水腔相连通,所述螺杆组件与所述滚刷组件挤压接触设置,所述螺杆组件能够挤压滚刷组件上的水和污物,所述滚刷组件与盛污槽及所述螺杆组件配合能够传输水和污物至排污口,所述排污口与污水箱相连接;
所述控制模块能够控制清洁设备运行,所述电源模块能够为清洁设备提供电能。
作为本专利所述的清洁设备的一种优选方案,还设置有滚刷检测结构,滚刷检测结构能够检测滚刷组件上的滚刷层是否有水。
作为本专利所述的清洁设备的一种优选方案,滚刷检测结构包括两个间隔设置的导电触点,导电触点与滚刷组件上的滚刷层相接触设置,两个导电触点分别通过导线与电源模块的连通,通过两个导电触点之间是否导电检测滚刷层是否有水。
作为本专利所述的清洁设备的一种优选方案,地刷模块上开设有多个第一补水孔,第一补水孔朝向滚刷组件,第一补水孔通过抽水管与清水腔连接;
所述盛污槽上开设有第二补水孔,所述第二补水孔设置于盛污槽远离排污口的一端,所述第二补水孔通过抽水管与清水箱连接。
作为本专利所述的清洁设备的一种优选方案,污水箱上设置开设有透气孔。
作为本专利所述的清洁设备的一种优选方案,污水箱内壁设置有遮挡槽,所述遮挡槽的一个侧壁与透气孔相对应;或
所述透气孔上覆盖有防水透气膜。
作为本专利所述的清洁设备的一种优选方案,遮挡槽内容置有阻水棉。
作为本专利所述的清洁设备的一种优选方案,所述滚刷组件、螺杆组件及盛污槽的组合、污水箱沿水平方向依次设置,螺杆组件及盛污槽的组合高度低于滚刷组件与污水箱的高度,滚刷组件与污水箱之间凹部位置设置有至少一个
水泵和操作杆的连接部。
一方面,本专利提供一种地面清洁设备,包括滚刷组件、传动马达,电源模块及控制模块,所述控制模块能控制电源模块连通传动马达,所述传动马达带动滚刷组件旋转,
所述地面清洁设备还包括清水箱、污水箱、设备主体、螺杆组件;
所述设备主体两侧设置有第一盖体与第二盖体,所述滚刷组件通过第一盖体与第二盖体安装在地刷模块中;
所述设备主体的内侧为与螺杆组件形状相匹配的盛污槽,所述盛污槽为半包围结构,所述盛污槽半包围结构大于180度,所述盛污槽沿着螺杆组件传输污水及垃圾的方向的一端设置有排污口;
所述螺杆组件通过第二盖体与第一盖体安装在地刷模块的盛污槽内,所述螺杆组件设置有螺纹组,所述螺纹组的螺纹边缘与盛污槽的内壁间歇小于5毫米,所述清水箱通过抽水管将清水输送到螺杆组件远离排污口的一端;
所述螺杆组件的一部分通过盛污槽的半包围结构与滚刷组件的滚刷表面挤压接触,所述螺杆组件与滚刷组件之间的相对转动,能将滚刷吸附的污水及垃圾通过盛污槽传输到排污口;
所述排污口与污水箱的污水口对应设置。
作为本专利所述地面清洁设备的一种优选方案:所述螺杆组件的螺杆本体设置有第一螺纹组和第二螺纹组,所述第二螺纹组的螺纹直径大于第一螺纹组的螺纹直径,所述第二螺纹组的螺纹间距小于第一螺纹组的螺纹间距,所述第二螺纹组与排污口对应设置,所述第一螺纹组和第二螺纹组为柔性的螺纹。
作为本专利所述地面清洁设备的一种优选方案:螺杆组件的螺纹边缘与盛污槽的内壁小于1毫米,或间歇为0.2-0.5毫米。
作为本专利所述地面清洁设备的一种优选方案:所述螺杆组件为被动旋转,所述滚刷组件旋转带动所述螺杆组件进行被动旋转;或,所述螺杆组件连接马达,进行主动旋转。
作为本专利所述地面清洁设备的一种优选方案:所述排污口的下边沿高于螺杆中心轴的水平位置,所述排污口的上边沿高于螺杆组件的螺纹上边沿;所述排污口的宽度小于或等于第二螺纹组的宽度。
作为本专利所述地面清洁设备的一种优选方案:所述盛污槽的排污口设置有顶块,所述顶块将污水箱进水口盖顶开。
作为本专利所述地面清洁设备的一种优选方案:所述滚刷组件与螺杆组件的直径比范围为4:1~1:1。
作为本专利所述地面清洁设备的一种优选方案:所述地刷支架右盖与地刷支架左盖分别设置有滚刷提手安装槽,至少一个滚刷提手安装槽的内壁设置有弹性导电部件,所述滚刷组件从上往下安装,至少一个滚刷提手的侧面安装有导电部件,所述导电部件与弹性导电部件匹配,所述滚刷组件两侧设置有轴承。
作为本专利所述地面清洁设备的一种优选方案:所述第一盖体与第二盖体分别设置有螺杆旋转头安装槽与螺杆安装口,所述螺杆组件一端的螺杆旋转头与螺杆旋转头安装槽匹配,所述螺杆端盖与螺杆安装口紧固连接,所述螺杆组
件至少螺杆端盖一侧设置有轴承。
作为本专利所述地面清洁设备的一种优选方案:所述抽水管将清水直接喷洒到滚刷表面。
一方面,本专利提供一种污水盖组件,包括端盖主体和端盖调节件;
所述端盖主体上开设有污水口,所述端盖调节件活动连接于端盖主体上,所述端盖调节件上设置有通孔和遮挡部,所述端盖调节件被配置得能够旋转调节使通孔与污水口相对应或遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,所述端盖调节件上设置有与清洁设备连接的固紧部件,设置有污水盖组件的水箱通过固紧部件安装于清洁设备上时,所述端盖调节件上的通孔与污水口相对应;设置有污水盖组件的水箱通过固紧部件自清洁设备上分离时,所述端盖调节件上的遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体上设置有第一调节结构,所述端盖调节件上设置有与第一调节结构相配合的第二调节结构,所述端盖调节件能够旋转调节使通孔与污水口相对应或遮挡部与污水口相对应。
作为本专利所述的污水盖组件的一种优选方案,第一调节结构包括第一卡扣槽和第二卡扣槽,第二调节结构包括卡扣块;或
第一调节结构包括卡扣块,第二调节结构包括第一卡扣槽和第二卡扣槽;
当端盖调节件旋转至通孔与污水口相对应时,卡扣块卡扣于第一卡扣槽内;当端盖调节件旋转至遮挡部与污水口相对应时,卡扣块卡扣于第二卡扣槽内。
作为本专利所述的污水盖组件的一种优选方案,还包括至少一个限位结构,限位结构包括挡条、第一止挡块和第二止挡块,挡条设置于内盖上,第一止挡块和第二止挡块均设置于调节阀上;所述第二限位结构与第一限位结构相配合,所述端盖调节件能够通过第一限位结构和第二限位结构的配合来调节其旋转的角度。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体上设置有第一限止块和第二限止块,所述端盖调节件上设置有凸起块,当端盖调节件旋转至通孔与污水口相对应时,第一限止块与凸起块靠近第一限止块的一端相抵触;或
当遮挡部与污水口相对应时,第二限止块与凸起块靠近第二限止块的一端相抵触。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体上设置有环形密封槽,环形密封槽绕设于污水口外侧,环形密封槽内固定容置有密封圈。
作为本专利所述的污水盖组件的一种优选方案,所述端盖调节件上设有安装槽和安装片,所述固紧部件为安装片,所述安装片伸入至安装槽内或设置于安装槽上方,所述安装片的外径小于安装槽内径。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体的端口为圆形,所述端盖主体上设置有与水箱密封连接的圆形的污水盖密封圈。
作为本专利所述的污水盖组件的一种优选方案,所述端盖主体包括内盖和
外盖,所述端盖调节件置于内盖和外盖之间,所述端盖调节件活动套设于内盖上,所述外盖穿过端盖调节件固定连接于内盖上。
作为本专利所述的污水盖组件的一种优选方案,所述第一卡扣槽和第二卡扣槽均设置于外盖上;和/或
所述端盖调节件上设置有弹片,卡扣块设置于弹片上;和/或
所述端盖调节件为旋盖。一方面,本专利提供一种洗地机用水箱,包括壳体、污水盖组件和清水盖组件,所述水箱沿长度方向水平放置,污水盖组件的污水口与清洁设备的排污口相连接;所述壳体包括隔板、第一容纳腔和第二容纳腔,所述隔板将壳体内部分割为第一容纳腔和第二容纳腔,第一容纳腔能够容纳污水污物,第二容纳腔能够容纳清水;
第二容纳腔连接有清水盖组件,清水盖组件开设有输送孔;第一容纳腔连接有污水盖组件。
作为本专利所述水箱的一种优选方案,污水盖组件上开设有透气孔,透气孔与第一容纳腔相连通。
作为本专利所述水箱的一种优选方案,污水口和/或透气孔均设置于污水盖组件的上部。
作为本专利所述水箱的一种优选方案,所述隔板靠近污水盖组件的一端设置于壳体内壁的上部,所述隔板靠近清水盖组件的一端设置于壳体内壁的下部,所述隔板自靠近污水盖组件一端的上部延伸至靠近清水盖组件一端的下部,
所述污水盖组件的透气孔上覆盖有防水透气膜,和/或所述污水盖组件内壁设置有遮挡槽,所述透气孔与遮挡槽相对应,所述遮挡槽的开口方向与透气孔相垂直设置。
作为本专利所述水箱的一种优选方案,遮挡槽内容置有阻水棉;或
第一容纳腔内设置有过滤网,所述过滤网能够容纳污物。
作为本专利所述水箱的一种优选方案,污水盖组件包括内盖、调节盖和固定件,调节盖套设于内盖上,固定件穿过调节盖与内盖固定连接;
内盖上开设有污水口,调节盖上设置有通孔和遮挡部,调节盖被配置得能够旋转调节使调节盖上的通孔与污水口相对应或调节盖上的遮挡部与污水口相对应。
作为本专利所述水箱的一种优选方案,所述调节盖上开设有多个第一透气孔,内盖表面开设有透气槽,透气槽底部开设有多个第二透气孔,透气槽内容置有第二阻水棉。
作为本专利所述水箱的一种优选方案,所述内盖表面开设有第二密封槽,第二密封槽绕设于透气槽外侧,第二密封槽内容置有第二密封圈。
作为本专利所述水箱的一种优选方案,所述壳体呈圆筒状结构,所述污水盖组件与所述壳体的第一容纳腔通过圆形端口连接;和/或
所述清水盖组件与所述壳体的第二容纳腔通过圆形端口连接。
作为本专利所述水箱的一种优选方案,所述隔板呈曲面结构或斜面结构设置。
作为本专利所述水箱的一种优选方案,所述隔板靠近污水盖组件的一端与
所述壳体靠近污水盖组件端口的距离占所述壳体长度的比例范围为1/5-1/3;和/或
所述隔板靠近清水盖组件的一端与所述壳体靠近清水盖组件端口的距离占所述壳体长度的比例范围为1/5-1/3。
作为本专利所述水箱的一种优选方案,所述隔板靠近污水盖的一端为第一隔断部,所述第一隔断部底部不高于污水盖组件的污水口的底部。
作为本专利所述水箱的一种优选方案,所述隔板包括第一隔断部、第二个隔断部和第三隔断部,所述隔板自第一隔断部曲面过渡至第二个隔断部,第二个隔断部曲面过渡至第三隔断部;
所述第一隔断部和/或第三隔断部与所述壳体的轴线方向相垂直设置,所述第二个隔断部与所述壳体的轴线方向相一致或呈小于90度的夹角。
作为本专利所述水箱的一种优选方案,所述污水盖组件与壳体通过圆形密封圈密封连接;
所述清水盖组件与壳体通过圆形密封圈密封连接。
作为本专利所述水箱的一种优选方案,第一容纳腔内设置有过滤网,所述过滤网能够容纳污物。
作为本专利所述水箱的一种优选方案,所述清水盖组件包括清水盖主体;所述清水盖主体设置有输送通道,所述清水盖主体上开设有输送孔,所述输送孔与输送通道相连通,所述输送通道的一端伸入至清水盖组件底部或第二容纳腔底部,所述输送通道的另一端通过输送孔与清洁设备的抽水装置相连接,所述输送通道内设置有弹性件和密封块,所述密封块能够在弹性件的弹力作用下密封输送孔。
作为本专利所述水箱的一种优选方案,污水盖组件包括端盖主体和端盖调节件;
所述端盖主体上开设有污水口,所述调节件端盖调节件活动连接于端盖主体上,所述端盖调节件上设置有通孔和遮挡部,所述端盖调节件被配置得能够旋转调节使通孔与污水口相对应或遮挡部与污水口相对应。
作为本专利所述水箱的一种优选方案,所述端盖调节件上设置有与清洁设备的设备主体连接的固紧部件,
所述水箱通过固紧部件安装于清洁设备上时,所述端盖调节件的通孔与污水口相连通;
所述水箱通过固紧部件自清洁设备上分离时,所述端盖调节件的遮挡部与污水口相对应。
另一方面,本专利提供又一种清洁设备用水箱,包括壳体、污水盖组件和清水盖组件,所述水箱沿长度方向水平放置,污水盖组件的污水口与清洁设备的排污口相连接;所述壳体包括隔板、第一容纳腔和第二容纳腔,所述隔板与所述壳体的轴线方向相垂直设置,所述隔板能够将壳体内部分割为第一容纳腔和第二容纳腔,第一容纳腔和第二容纳腔不相连通,第一容纳腔能够容纳污水污物,第二容纳腔能够容纳清水;
第二容纳腔连接有清水盖组件,清水盖组件开设有输送孔;
第一容纳腔连接有污水盖组件,污水盖组件的污水口设置于污水盖组件的上部。
又一方面,本专利提供一种清洁设备,包括电机组件、控制模块、电源模块、清洁模块和设备主体,清洁模块和水箱均安装于设备主体上,水箱被配置的能够存储清洁模块清洁的污水污物及能够为清洁模块提供清水;
所述清洁模块包括滚刷组件、螺杆组件和盛污槽;所述螺杆组件可转动安装于盛污槽内,螺杆组件紧密贴合或贴近设置于盛污槽的内腔内,所述盛污槽开设有朝向滚刷组件的长条形接污口,所述盛污槽的一侧开设有排污口,所述排污口与第一容纳腔相连通,所述螺杆组件与所述滚刷组件相贴紧设置,所述螺杆组件能够挤压滚刷组件上的水和污物,所述盛污槽与所述螺杆组件配合能够传输水和污物至排污口,所述排污口与第一容纳腔相连接;
所述电机组件能够驱动清洁模块中的滚刷组件转动,所述控制模块能够控制清洁设备运行,所述电源模块能够为清洁设备提供电能。
作为本专利所述清洁设备的一种优选方案,所述设备主体上设置有抽水管,水箱安装于设备主体上时,所述抽水管能够伸入清水盖组件的输送孔内并推动密封块从而使得清水盖组件的输送通道与抽水管相连通。
作为本专利所述清洁设备的一种优选方案,所述污水盖组件上设置固紧部件,所述设备主体上设置固定片,所述水箱能够通过固紧部件和固定片安装于清洁设备上或自清洁设备上拆卸。
作为本专利所述清洁设备的一种优选方案,还包括如上述技术方案所述的水箱;
所述螺杆组件的轴心与所述滚刷组件的轴心之间的距离小于所述螺杆组件和所述滚刷组件的半径之和;
所述水箱上设置有固紧部件,所述设备主体上设置第一安装结构,所述水箱能够通过固紧部件和第一安装结构安装于清洁设备上或自清洁设备上拆卸。
作为本专利所述清洁设备的一种优选方案,所述污水盖组件表面设置有安装槽和插槽,安装槽为绕设于污水口外侧的U型安装槽,安装槽的开口朝向插槽;
第一安装结构为绕设于排污口端部的凸沿,凸沿能够伸入至插槽内并通过旋转调节盖而使凸沿自插槽移动并卡扣于安装槽内,水箱安装于设备主体上,调节盖上的通孔与污水口相对应。
作为本专利所述清洁设备的一种优选方案,所述滚刷组件的一端设置有容置槽,所述电机组件固定设置于设备主体上,所述滚刷组件通过容置槽套设于电机组件上;所述电机组件包括驱动电机,所述驱动电机的输出端固定连接有滚刷接头,所述容置槽内设置有与滚刷接头相匹配的安装凹槽,所述电机组件被配置为通过滚刷接头和安装凹槽驱动滚刷组件旋转。
作为本专利所述清洁设备的一种优选方案,所述滚刷接头沿径向设置有凸
条,所述凸条的长度方向与滚刷组件的长度方向的夹角小于90度,沿所述凸条靠近驱动电机的一端朝向所述凸条远离驱动电机的一端的方向,所述凸条的轴线方向朝向滚刷组件前进时的旋转方向倾斜。
与现有技术相比,本专利所述的技术方案至少具有如下一个或多个有益效果:
现有洗地机或拖地机虽然有很多种产品,但是其主要技术方案为一种是吸尘器机构加上滚刷结构,比较典型的是添可公司和追觅公司的各种产品。但是这种技术路线的产品,往往为了追求大吸力,需要采用高转速电机,因为要利用空气负压来抽吸污水污物,高转速电机导致产品噪声大,如果静音电机,成本又高;同时,又要对污水污物进行分离,设置相关结构防止污水进入电机导致损坏,产品结构复杂,进一步导致成本高;产品的设计空间有限,往往需要要水箱设置在杆体上,甚至需要将污水箱和清水箱均设置在杆体上,导致产品重心不稳,容易摔倒;复杂结构使得产品本身也比较重,不利于用户移动。
更重要的是由于高速电机的功耗较大,使得电池的续航能力是一个大问题,通常市场上的产品在大功率工作状态下,能够续航60分钟的是非常少见的,为了提升续航能力,加大电池包数量,一方面增加成本,一方面进一步增加了产品的重量。
现有产品也有一种技术路线产品,例如滴水公司的洗地机产品就没有吸尘器结构,其产品结构为滚刷加上刮板组件,利用刮板将滚刷上的污水污物刮倒污水箱中。这种技术路线虽然省去了吸尘器空气负压的结构,但由于没有形成负压,除污效果较差;并且刮板一方面针对污物的刮除效率较差,另一方面,也不能有效去除滚刷上的水分,从而地面留下较多的水渍;如果刮板对滚刷施加加大的压力,可能对滚刷挤压除水的效果有所提升,但是,部件之间的阻力较大,容易损坏,转动容易卡住,并且会将纤维类的滚刷表面压得过于“平整”,不利于滚刷吸附地面垃圾。同时,由于利用刮板对整个滚刷表面进行刮除动作,从而让污物和污水利用重力原理顺势流入到污水箱,则一方面,污水箱的开口会非常大,否则无法和刮板进行对接,另一方面,污水箱的容量受到限制,排污口的位置需要设置的较低才行,才能让污水污物利用顺势流到污水箱。
本专利污水盖组件主要用于盖合污水箱,其设置的污水口可调节开闭。使用时污水口敞开,污水污物通过污水口存储于污水箱内;拆卸倾倒污水箱内的污水污物时,调节阀及调节钮能够调节污水口至闭合状态,避免污水污物漏洒,给清洁设备的清洁维护带来很多麻烦。
同时更为巧妙的是,调节阀设计巧妙,通过旋转调节阀,既能够调节污水口的敞开与闭合,同时还能使污水盖组件安装于设备上或从设备上拆卸。具体地,旋转端盖调节件,污水盖组件安装于设备上时,污水口处于敞开状态,反向旋转端盖调节件,污水盖组件从清洁设备上取出,与此同时端盖调节件的遮
挡部也密封遮挡污水口,使污水口处于闭合状态。
污水盖组件污水盖组件设置调节结构,能够调节并定位污水口处于敞开或闭合状态。
污水盖组件设置的的端口为圆形,污水盖组件设置有与水箱密封连接的污水盖密封圈,圆形端口容易密封,且密封牢固。圆形密封圈相较于其他形状的密封圈,价格很低,降低制造成本,结实耐用,使水箱密封更持久更牢固。
固紧部件,在调节结构的调节下,能够通过固紧部件将端盖组件安装于设备上或从设备上拆下。
污水盖组件设置限位结构,限制端盖调节件旋转的角度,避免用户操作不慎,用力过猛拧坏盖体组件。
水箱内同时设置容纳污水污物的污水腔和容纳清水的清水腔,构成清洁设备用水箱,方便清洗污水腔和清水腔、更换或补充清水,同时占用体积小,便于清洁设备小型化、轻便化。水箱设置调节结构和固紧部件,通过调节结构既能够实现污水腔开闭,又能够实现水箱安装于设备上或从设备上拆卸,设计结构巧妙,操作简单。清水腔通过弹性件和密封块的设置,使得水箱安装于清洁设备上时,清水腔的输送孔与清洁设备相连通,水箱自清洁设备上拆卸后,在弹性件的作用下密封块能够密封输送孔,避免清水腔内清水出现洒漏。
水箱进一步优选设计成杯状,污水盖组件和清水盖组件的端口因此设计成圆形,可以使用圆形密封圈密封污水盖组件和清水盖组件,圆形密封圈相对于其他形状的密封圈密封效果更好,使用寿命更久,同时圆形密封圈与其他形状的密封圈相比,价格更为便宜。水箱采用杯状设计,方便污水盖组件和清水盖组件打开,清洁污水腔及向清水腔补充清水。同时污水腔内设置过滤件,容纳污物,从而将污水腔内的污水和污物分离。
水箱通过固紧部件卡合于设备主体上时,污水腔的污水口同时打开并与排污口相连通,装配方便。
现有二合一水箱很少,并且水箱越做越大,太大的话让大家使用不方便,本专利通过设计独特的隔板以尽量缩减水箱的体积,节省空间。水箱和清洁模块水平放置时,污水腔的排污口与清洁模块的排污口相连接,污水腔的排污口设置于污水腔的侧壁,这样收集污水污物时污水腔只能利用污水口一以下的体积空间,污水口以上的体积空间造成浪费。或者污水口经过特殊设计设置于污水腔的上部,以充分利用污水腔的体积,否则的话,利用螺杆组件将污水污物甩出来的话因为自然的甩力,扬程只能甩一半,污水口以上的空间则被浪费。鉴于上述情况,采用独特的隔板将污水腔上部的空间设置为清水腔,这样设置的好处使得我们无需设计复杂的排污结构,仅利用螺杆组件自然甩出的扬程即可将污水污物甩入至污水腔。另外,污水腔上半部分通过独特的曲面或斜面隔板将水箱一分为二成清水腔(即第二容纳腔)和污水腔(即第一容纳腔),清水腔可以直接与设备主体相连接,清水腔的清水管道很短,使得整个清洁设备的结构更加简约,当然通过抽吸装置抽吸清水腔内的水以给滚刷表面供水。通过以上设计,本设备的巧妙之处在于,清洁模块通过螺杆组件带动的扬程将污水污物甩入污水腔,无需额外提供驱动,但由于自然扬程有限,排污口及污水
口的高度较低,所以利用独特隔板将污水腔上部分割为清水腔,以充分利用水箱体积。独特的清洁模块的作用和水箱独特的隔板隔离,使得水箱能够充分利用。
若本专利的二合一水箱匹配于其他类似的吸尘器或洗地机上,不如本专利的水箱和带有螺杆组件的清洁模块的配合度更高,本专利的清洁模块只要驱动滚刷的驱动部件即可,紧密接触于滚刷上的螺杆组件能够跟随滚刷转动,螺杆组件转动能够驱动污水污物输送至排污口,且螺杆组件转动产生离心力,在离心力的作用下产生扬程,污水污物通过扬程甩入污水腔内,这种排污方式极度简单、节省成本,又简约高效,又通过独特的隔板设计充分利用水箱内部空间,上述特征相结合,螺杆组件排污方式及水箱设计方式,相对于现有技术构成了明显的创新,产生意想不到的效果,进一步降低了清洁设备结构的复杂程度,同时又能够维持清洁效率,降低产品成本,提升用户体验。
水箱进水口甩进污水箱内的污水污物封堵,造成污水箱内气体无法排出,污水箱内气压无法释放,或污水污物从透气孔溢出。遮挡槽内设置阻水棉,防止浪涌的效果更好,并且能够防止污物一起从透气孔溢出,同时也能防止外部异物从透气孔掉入污水箱内。
滚刷组件套设于电机组件上,电机组件通过旋转接头和安装凹槽驱动滚刷组件旋转,电机组件固定安装于设备主体上,滚刷组件拆卸时电机组件不随滚刷组件一起拆卸,使得结构设计简单,拆装方便,容易操作。旋转接头上设置与安装凹槽相啮合的凸条,所述凸条的长度方向与滚刷组件的长度方向的夹角小于90度,沿所述凸条靠近驱动电机的一端至所述凸条远离驱动电机的一端的方向,所述凸条朝向滚刷组件前进时的旋转方向倾斜,从而清洁设备使用时,滚刷组件向前转动,滚刷本体旋转时有朝向电机组件方向的力,使得滚刷本体旋转时更紧密地套设于电机组件上,以确保设备使用时滚刷组件不会从设备主体上松脱。同时,在滚刷组件远离电机组件的一端通过磁吸附于设备主体上即可,拆卸、安装方便,省力,尤其适合力气弱小的女性用户的使用。
螺杆组件与滚刷组件压着接触设置,滚刷组件和螺杆组件在转动过程中,在盛污槽内形成负压区,螺杆组件将滚刷组件的胶棉滚刷上的水和污物挤压入盛污槽内。由于螺杆组件上螺纹组具有旋转方向及螺杆组件与盛污槽的配合设置螺杆组件会带动盛污槽内的水、污物和气体向盛污槽的污水口输送,然后通过第二螺纹组高速旋转甩入至污水箱内。当盛污槽内水、污物和气体向污水口输送后,盛污槽内形成负压,滚刷组件滚动清洁的水、污物和空气会补充进入负压区,这样周而循环。污水污物和气体进入污水箱后,会占据污水箱内的体积,污水箱内的空气需要排出,便于污水污物和气体持续进入污水箱。因此在污水箱外壳上开一个透气孔。若污水箱内气体压力释放不出,盛污槽内水、污物和气体无法继续进入污水箱,从而造成清洁设备漏水。
污水箱上设置透气孔,盛污槽内的水、污物和气体进入污水箱后,通过透气孔排出污水箱内的气体,以平衡污水箱内部与外部的气压。
污水箱内壁设置遮挡槽,起到隔挡透气孔和污水污物的作用,避免透气孔被污水箱内浪涌的污水污物或从污水口甩进污水箱内的污水污物封堵,造成污
水箱内气体无法排出,污水箱内气压无法释放,或污水污物从透气孔溢出。遮挡槽内设置阻水棉,防止浪涌的效果更好,并且能够防止污物一起从透气孔溢出,同时也能防止外部异物从透气孔掉入污水箱内。
本发明设置滚刷检测结构,能够检测滚刷上是否有水,防止硬的滚刷层,特别是胶棉滚刷无法清洁地面,使得清洁设备更加智能化。清洁设备启动后,滚刷检测结构首先检测滚刷上是否有水,若有水,则说明胶棉滚刷为柔软状态,可直接清洁地面。若滚刷上无水,说明胶棉滚刷为干燥状态,控制模块控制第一水泵向胶棉滚刷上送水,若滚刷检测结构检测到胶棉滚刷上有水,则第一水泵停止向胶棉滚刷上送水,清洁设备开始清洁作业。清洁设备清洁过程中,控制模块控制第二水泵向安装有螺杆组件的盛污槽内送水,安装于盛污槽内的螺杆组件边挤压胶棉滚刷边转动输送水和污物,既能起到挤压、清洗滚刷的作用,还能起到输送、清洁污水污物的作用。
本专利技术方案所涉及的洗地机或拖地机的地面清洁装置,适合于地砖、木地板、水泥地等硬质地面,巧妙利用阿基米德螺旋水泵的原理,将该原理予以创新,开发出独特的螺杆与盛污槽及滚刷结合起来清洁模块,其采用水平方向上依次设置的滚刷组件与螺杆组件及盛污槽组件之间紧密配合,互相作用,一方面可以将滚刷上的污水、污物去除,同时,可以利用螺杆组件与滚刷组件及盛污槽组件之间相互作用将污水污物迅速传输到排污口。
当螺杆被滚刷带动转动时或螺杆被电机带动转动时,螺杆一方面绕本身的轴线旋转,另一方面螺杆的螺纹又沿盛污槽的内表面滚动,于是形成类似于泵的密封腔室,螺杆每转动一圈,密封腔内的液体或污物向前推进一个螺距,随着螺杆的连续转动,螺纹从滚刷上去除下来的水、污物就通过螺旋传输方式从一个密封腔压向另一个密封腔,最后挤出盛污槽,进入排污口,工作中会形成一定吸附压力,有利于传输。此处密封腔并非特指完全密封的状态,只是一个形象化的表达。
本专利的清洁模块具有结构简单、工作安全可靠,使用维修方便等优点,由于取消了吸尘器模块,所以不需要大容量电池支撑工作,工作续航时间长,工作噪音地,产品结构简单,产品能够做到足够轻量化,有利于用户移动产品。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
为了更清楚地说明本发明的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提
下,还可以根据这些附图获得其它附图。
图1是本申请的一种污水盖组件的立体结构示意图;
图2是图1所述污水盖组件的爆炸结构示意图;
图3是本申请的另一种污水盖组件的一个视角的立体结构示意图;
图4是本申请的另一种污水盖组件的另一个视角的立体结构示意图;
图5是图3所述污水盖组件的爆炸结构示意图;
图6是图3污水盖组件中内盖和调节阀的立体结构示意图;
图7是图3中调节阀的一个视角的立体结构示意图;
图8是图3中调节阀的另一个视角的立体结构示意图;
图9是图3中内盖的爆炸结构示意图;
图10是图3中固定盖的立体结构示意图;
图11是图3中调节钮的立体结构示意图;
图12是本申请的又一种污水盖组件的立体结构示意图;
图13是图12所述污水盖组件的爆炸结构示意图;
图14是图12污水盖组件的A向剖面立体结构示意图;
图15是图12中内盖的立体结构示意图;
图16是图15中的R部局部放大结构示意图;
图17是图3中旋盖的一个视角的立体结构示意图;
图18是图3中旋盖的另一个视角的立体结构示意图;
图19是图3中外盖的立体结构示意图;
图20是本申请所述的一种清水盖组件的立体结构示意图;
图21是图20所述清水盖组件的爆炸结构示意图;
图22是图20清水盖组件的B向剖面立体结构示意图;
图23是本申请所述的另一种清水盖组件的立体结构示意图;
图24是图23清水盖组件的C向剖面立体结构示意图;
图25是图23所述清水盖组件的爆炸结构示意图;
图26是本申请所述输送该组件中的密封块的立体结构示意图;
图27是本申请所述的一种水箱的立体结构示意图;
图28是图27所述水箱的爆炸结构示意图;
图29是图27水箱的D向剖面立体结构示意图;
图30是本申请所述的另一种水箱的一个视角的立体结构示意图;
图31是本申请所述的另一种水箱的另一个视角的立体结构示意图;
图32是本申请所述的清洁设备的爆炸结构示意图;
图33是图32的K部局部放大结构示意图;
图34是图32的N部局部放大结构示意图;
图35是图32中设备主体、清洁模块和水箱的爆炸结构示意图;
图36是图32中设备主体、清洁模块和水箱的剖面结构示意图;
图37是本申请的再一种污水盖组件的立体结构示意图;
图38是本申请的再一种污水盖组件的剖视结构示意图;
图39是本专利所述的清洁设备的爆炸结构示意图;
图40是图39的Q部的局部放大结构示意图;
图41是本专利所述的清洁设备的又一种爆炸结构示意图;
图42是本专利所述的滚刷组件和电机组件的立体结构示意图;
图43是图23的剖视立体结构示意图;
图44是本专利所述的滚刷组件和电机组件的爆炸结构示意图;
图45是图25中滚刷组件的剖视立体结构示意图;
图46是本发明所述地面清洁设备的一个视角的爆炸结构示意图;
图47是本发明所述地面清洁设备的剖视结构示意图;
图48是本发明所述地面清洁设备的另一个视角的爆炸结构示意图;
图49是图48中上盖的爆炸结构示意图;
图50是图49中Y部的局部放大结构示意图;
图51是本发明所述第二水泵和地刷支架本体的爆炸结构示意图;
图52是本发明又一个实施例所述的地面清洁设备的立体结构示意图;
图53是本发明又一个实施例所述的地面清洁设备(不含操作杆模块)的立体结构示意图;
图54是图53的侧视平面结构示意图;
图55是图54的A-A向剖面结构示意图;
图56是图54的B-B向剖面结构示意图;
图57是图53的俯视平面结构示意图;
图58是图57的C-C向剖面结构示意图;
图59是图53的一种方式的爆炸结构示意图;
图60是本发明一个实施例所述的上盖的一个示例的一个视角的立体结构示意图;
图61是本发明一个实施例所述的上盖的一个示例的另一个视角的立体结构示意图;
图62是图60的横截面方向的剖面结构示意图;
图63是本发明一个实施例所述的地刷翻盖的另一个示例的立体结构示意图;
图64是本发明一个实施例所述的滚刷组件的立体结构示意图;
图65是图64的径向剖面立体结构示意图;
图66是本发明一个实施例所述的滚刷提手、传动马达总成及滚刷接头的立体结构示意图;
图67是图66的横截面方向的剖面结构示意图;
图68是本发明一个实施例所述的滚芯、柔性清洁层和滚刷提手的立体结构示意图;
图69是图53的另一种方式的爆炸结构示意图;
图70是设备主体、螺杆组件和污水箱的一个视角的爆炸结构示意图;
图71是设备主体、螺杆组件和污水箱的另一个视角的爆炸结构示意图;
图72是本发明一个实施例所述的螺杆组件的立体结构示意图;
图73是本发明所述污水箱的立体结构示意图;
图74是本发明所述污水箱的剖视结构示意图。
其中,1-清洁模块,6-设备主体,7-水箱,8-污水盖组件,9-清水盖组件,11-滚刷组件,110-容置槽,111-滚刷本体,112-安装把手,113-连接轴,114-滚刷轴承,115-安装凹槽,116-滚芯,117-柔性清洁层,118-磁体,12-螺杆组件,121-螺纹组,122-第一螺纹组,123-第二螺纹组,120-密封圈,124-螺杆本体,125-螺杆端盖,126-旋拧把手,127-锁紧机构,128-螺杆旋转头,129-防震塞,13-盛污槽,131-接污口,132-排污口,133-螺杆安装口,134-凸沿,180-第一补水孔,181-第一水泵,182-第二水泵,221-上盖,222-第一上盖,223-第二上盖,224-凹槽,225-送水条,226-第二补水孔,301-滚刷提手,303-传动变速箱马达,304-滚刷轴承,305-第一滚刷轴,306-滚刷轴承座,307-滚刷端盖,308-第二滚刷轴,309-滚刷套轴承,310-滚刷接头,311-马达输出轴,312-传动马达架,315-导电部件,316-安装凹槽,317-第一滚刷轴连接管,320-导电触点,500-污水箱,
103-清水箱,104-转接头,205-滚刷提手安装槽,206-螺旋杆旋转头安装槽,209-弹性导电部件,213-排污口顶块,214-磁吸侧板,501-污水箱排水盖,502-污水箱进水口盖,503-扭簧,504-磁铁,601-固定片,602-抽水管,603-防撞条,604-内挡条,61-第一盖体,62-第二盖体,63-电机组件,631-驱动电机,633-滚刷接头,634-电机壳体,635-凸条,64-操作杆,65-压辊,70-壳体,701-隔板,702-第一容纳腔,703-第二容纳腔,704-第一开口,705-第二开口,706-过滤网,707-第一隔断部,708-第二隔断部,709-第三隔断部,80-端盖主体,801-污水口,802-环形密封槽,803-密封圈,804-透气孔,805-遮挡槽,806-阻水棉,81-内盖,82-外盖,83-旋盖,84-固定盖,85-调节阀,86-调节钮,811-第一限止块,812-第二限止块,813-第一连接环,814-连接槽,815-连接部,816-固定部,817-伸入口,818-凸块,819-污水盖密封圈,821-第一卡扣槽,822-第二卡扣槽,823-第二连接环,824-固定块,825-凹槽,831-通孔,832-遮挡部,833-卡扣块,834-弹片,835-凸起块,836-安装槽,837-安装片,838-环形槽,841-第二通孔,842-安装口,843-穿孔,851-弧形部,852-第一卡槽,853-第二卡槽,854-第一止挡块,855-第二止挡块,856-卡条,857-连接部,858-限位槽,859-螺纹孔,861-连接孔,862-限位柱,863-罩盖,871-挡条,872-卡凸,90-清水盖主体,901-清水盖密封圈,91-第一输送盖,911-第一输送通道,9111-过滤件,912-第二输送通道,9121-弹性件,9122-密封块,9123-止挡部,9124-过水孔,9125-密封端,9126-环形弹簧座,913-输送盖,914-连接盖,915-配合盖,92-第二输送盖,921-输送孔,922-压力调节阀。
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不
能理解为对本发明的限制。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
在本发明的描述中,需要理解说明的是,术语“上”、“下”、“顶”、“底”、“内”、“外”、“前端”、“后端”、“两端”、“一端”、“另一端”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或者元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本发明的描述中,除非另有明确的规定和限定,术语“设置有”、“设有”、“连接”、“安装有”、“套设”、“开设”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
实施例A
请参阅1-11,如图1-11所示,本实施例提供一种污水盖组件,所述污水盖组件主要应用于清洁设备的水箱的污水腔,污水盖组件密封盖合于水箱的污水腔上,水箱安装于清洁设备上,所述污水腔能够收集清洁设备上的污水污物。所述污水盖组件8包括端盖主体80和端盖调节件;所述端盖主体80上开设有污水口801,所述端盖调节件活动连接于端盖主体80上,所述端盖调节件上设置有通孔831和遮挡部832,所述端盖调节件被配置得能够旋转调节使所述端盖调节件上的通孔831与污水口801相对应或端盖调节件上的遮挡部832与污水口801相对应。
具体地,所述端盖主体包括内盖81和固定盖84,所述端盖调节件包括调节阀85和调节钮86,所述端盖组件密封盖合于污水箱上;所述内盖81表面开设有污水口801,所述固定盖84表面开设有第二通孔841,所述污水口801和第二通孔841相对应,固定盖84安装于内盖81上;所述调节阀85置于内盖81和固定盖84之间,调节阀85上设置有通孔831和遮挡部832,调节钮86设置于固定盖84远离调节阀85的一侧,调节钮86被配置得能够旋转调节调节阀85上的通孔831与污水口801相对应或调节阀85上的遮挡部832与污水口801相对应。
污水盖组件8还包括至少一个调节结构,调节结构包括第一调节结构和第二调节结构,第一调节结构设置于端盖主体80上,第二调节结构设置于端盖调节件上,所述第二调节结构与第一调节结构相配合,所述端盖调节件能够旋转调节使所述端盖调节件上的通孔831与污水口801相对应或端盖调节件上的遮挡部832与污水口801相对应。
在优选的实施例中,所述端盖调节件上还设置有与清洁设备的设备主体连
接的固紧部件,所述水箱通过固紧部件安装于清洁设备上时,所述端盖调节件的的通孔831与污水口801相对应;所述水箱通过固紧部件自清洁设备上分离时,所述端盖调节件的遮挡部832与污水口801相对应。
在优选的实施例中,所述端盖主体上设置有环形密封槽802,环形密封槽802绕设于污水口的外侧,环形密封槽802内固定容置有密封圈803。环形密封槽内的密封圈能够使遮挡部密封遮挡于污水口上或通孔与污水口密封连通,避免盖体内容置的液体,即示例中的污水污物渗漏而弄脏水箱或清洁设备。
在优选的实施例中,还包括至少一个限位结构,限位结构能够限制端盖调节件沿端盖主体80旋转的角度。限位结构包括第一限位结构和第二限位结构,第一限位结构设置于端盖主体80上,第二限位结构设置于端盖调节件上,所述第二限位结构与第一限位结构相配合,所述端盖调节件能够限定端盖调节件旋转的角度。
所述端盖主体80为一体式端盖主体或分体式端盖主体。优选的,所述端盖主体80为一体式端盖主体时,所述端盖调节件活动套设于端盖主体80上,例如端盖调节件卡扣套设于端盖主体80上,即只要能够实现端盖调节件安装于端盖主体上同时又能够沿端盖主体旋转均在本专利的保护范围之内。
具体的实施例
如图1-11所示,端盖主体80为分体式端盖主体,所述端盖调节件也为分体式端盖调节件。所述端盖主体包括内盖81和固定盖84,所述端盖调节件包括调节阀85和调节钮86;
所述内盖81表面开设有污水口801,所述固定盖84表面开设有第二通孔841,所述污水口801和第二通孔841相对应,固定盖84安装于内盖81上;优选的,所述固定盖84卡扣于内盖81上;
所述调节阀85置于内盖81和固定盖84之间,调节阀85上设置有通孔831和遮挡部832,调节钮86设置于固定盖84远离调节阀85的一侧,通过旋转调节钮86,调节调节阀85上的通孔831与污水口801相对应或调节阀85上的遮挡部832与污水口801相对应。
所述内盖81为一端开口的筒形盖状结构。示例中,所述固定盖84为一端开口的筒形盖状结构。
还包括调节结构,所述调节结构包括内盖81或固定盖84表面设置的第一调节结构和调节阀85上设置的第二调节结构,所述第二调节结构与第一调节结构相配合,所述调节阀能够沿内盖81旋转定位至调节阀上的通孔831与水口801相对应或调节阀上的遮挡部832与水口801相对应。
在优选的示例中,如图5-9所示,所述第一调节结构包括第一卡槽852和第二卡槽853,所述第二调节结构包括卡凸872。当调节阀旋转至通孔831与污水口801相对应时,卡凸872卡扣于第一卡槽852内;或当端盖调节件旋转至遮挡部832与污水口801相对应时,卡凸872卡扣于第二卡槽853内。优选的,第一卡槽852和第二卡槽853设置于调节阀85上,卡凸872设置于内盖81上。进一步优选的,所述调节阀85上设置弧形部851,所述弧形部851的弧形面上开设有第一卡槽852和第二卡槽853;所述内盖81表面设置有与弧形部851相
对应的挡条871,所述挡条871靠近弧形部851的一侧设置有卡凸872。示例中,所述挡条为弧形挡条。当然,第一调节结构可设置于内盖也可以设置于外盖上,或者第一调节结构与第二调节结构可以互换等等,可以变换各种形式,只要能够起到调节作用即可。另外,调节结构不限于通过卡扣调节,也可以通过磁吸调节等等。
在优选的示例中,如图5-9所示,第一限位结构包括第一止挡块854和第二止挡块855,当通孔831与污水口801相对应时,即卡凸872卡扣于第一卡槽852内时,第一止挡块854与挡条871靠近第一止挡块854的一端相抵触;或当遮挡部832与污水口801相对应时,第二止挡块855与挡条871靠近第二止挡块855的一端相抵触。当然本专利并不局限于此,只要能够对调节阀的旋转起到限位作用的均在本专利的保护范围之内。优选的,第一止挡块854和第二止挡块855均设置于弧形部851的弧形面上,第一卡槽852和第二卡槽853均设置于第一止挡块854和第二止挡块855之间。
在优选的示例中,如图5-8和图10所示,所述固紧部件为设置于调节阀上的卡条856,所述固定盖84上开设有安装口842,所述调节阀旋转至调节阀上的卡条856与安装口842相对应,卡条856卡合于清洁设备的固定片上时,所述调节阀上的通孔831与水口801相对应;调节阀旋转至卡条自安装口842内移开时,卡条856自清洁设备的固定片上分离,调节阀上的遮挡部832与水口801相对应。具体地,清洁设备上设置有固定片601,当设置有污水盖组件的水箱安装于清洁设备上时,固定片伸入至安装口内,旋转调节阀,所述卡条移动至与安装口842相对应的位置,且卡条置于固定片远离水箱的一侧,从而卡条卡扣固定片于安装口内,与此同时,所述调节阀上的通孔831与污水口801相对应,此时卡凸872卡扣于第一卡槽852内。当设置有污水盖组件的水箱自清洁设备上取下时,反方向旋转调节阀,所述卡条移动至与固定片不相对应的位置,水箱能够自清洁设备上移出,固定片自安装口内移出,此时卡凸872卡扣于第二卡槽853内,调节阀上的遮挡部832旋转至与污水口801相对应。优选的,所述卡条856设置于调节阀85上。
如图7和11所示,所述调节钮86固定安装于调节阀85上,所述调节阀85能够跟随调节钮86一起转动。优选的,所述调节钮86穿过固定盖84通过螺栓固定安装于调节阀85上。所述调节阀85靠近固定盖84的一侧设置有连接部857,所述连接部857朝向调节钮86的一侧开设有限位槽858和螺纹孔859,所述调节钮86上设置有与螺纹孔相对应的连接孔861和与限位槽858相匹配的限位柱862,所述限位柱862限位于限位槽858内,所诉调节阀85能够跟随调节钮86一起转动,所述固定盖84表面开设有穿孔843,螺栓依次穿过连接孔861和穿孔843并固定于螺纹孔859内,从而调节钮86固定连接于调节阀85上。优选的,所述螺纹孔859设置于限位槽858底部,所述连接孔861为贯穿限位柱862的贯通孔。优选的,所述调节钮86上还设置有罩盖863,罩盖863罩设于螺栓上方。示例中,罩盖863卡扣于调节钮86上。示例中,所述固定盖84固定安装于内盖81上,所述固定盖84不随调节钮86一起转动。
优选的,如图1-5所示,所述调节钮86沿横截面呈非圆形,和/或所述调节
钮86侧面为防滑面。在一个示例中,所述调节钮86侧面设置有多个防滑凸筋,所述防滑凸筋的长度方向与所述污水盖组件的轴线方向不相垂直。
所述污水盖组件密封连接于壳体上,优选的,所述内盖81螺纹连接于壳体上。示例中,所述内盖81靠近螺纹位置固定设置有污水盖密封圈819,所述内盖81通过污水盖密封圈密封连接于壳体7上。
示例中,如图2和图5-8所示,所述调节阀为异形调节阀。所述弧形部靠近内盖的底部,所述卡条靠近内盖的侧壁。
另一方面,本专利提供了一种水箱,水箱主要应用于清洁设备上,水箱的清水腔为清洁设备提供清水,水箱的污水腔收纳清洁设备产生的污水污物,用以更好地清洁地面。如图32-36所示,清洁设备包括清洁模块1、设备主体6、水箱7、驱动电机、控制模块和电源模块;
清洁模块1和水箱7均安装于设备主体6上,水箱7被配置的能够存储清洁模块清洁的污水污物及能够为清洁模块提供清水。水箱被配置的能够通过收集清洁模块清洁的污水污物及能够为清洁模块提供清水;所述驱动电机能够驱动清洁模块中的滚刷组件转动,所述控制模块能够控制清洁设备运行,所述电源模块能够为清洁设备提供电能。
所述清洁模块1包括滚刷组件11、螺杆组件12和盛污槽13;所述螺杆组件12相贴合或贴近设置于所述滚刷组件11靠近水箱7的一侧,所述螺杆组件12可转动安装于盛污槽13内,所述盛污槽13的内腔与螺杆组件12紧密贴合或贴近设置;
所述盛污槽13开设有接污口131和排污口132,所述接污口131朝向滚涮11,所述滚刷组件11上的污水污物能够通过接污口131收集于盛污槽13内,所述排污口132与所述污水盖组件8的污水口801相连接,所述螺杆组件12能够输送污水污物至排污口132并通过排污口132和污水盖组件8的污水口801将污水污物甩入至第一容纳腔702内。
所述设备主体6上设置有抽水管602,水箱7安装于设备主体6上时,所述抽水管602能够伸入清水盖组件9的输送孔921内并推动密封块9122从而使得清水盖组件9的输送通道与抽水管602相连通,抽水管能够将第二容纳腔内的清水输送至滚刷组件中的滚刷表面。
所述螺杆组件12的螺杆本体上设置有螺纹组121,所述螺纹组121与滚刷组件表面挤压接触,所述螺纹组优选为柔性螺纹组,例如螺杆进行包胶制成柔性螺纹组,柔性的优点之一在于,螺杆组件与盛污槽配合,螺杆组件螺旋传输污物时不易卡死。螺杆本体优选设置有第一螺纹组122和第二螺纹组123,第二螺纹组123的直径大于第一螺纹组122。第二螺纹组123的螺纹间距优选小于第一螺纹组122,第二螺纹组123对应盛污槽13的排污口132。
螺杆组件12转动时,第一螺纹组122能够将水和污物自螺杆组件12的一端输送至另一端。水和污物从第一螺纹组切换到第二螺纹组,由于第二螺纹组的螺纹直径大于第一螺纹组的螺纹直径,形成更好的输送及离心力,因此能够更好的将污水污物通过盛污槽13的排污口132、污水盖组件的污水口801甩入至第一容纳腔内。
如图1-11和图20-31所示,所述水箱7包括壳体70、污水盖组件8和清水盖组件9,所述水箱沿长度方向水平放置,污水盖组件8的污水口与清洁设备的排污口相连接;所述壳体70包括隔板701、第一容纳腔702和第二容纳腔703所述隔板701靠近污水盖组件8的一端设置于壳体70内壁的上部,所述隔板701靠近清水盖组件9的一端设置于壳体70内壁的下部,所述隔板701自靠近污水盖组件8一端的上部延伸至靠近清水盖组件一端的下部,从而将壳体内部分割为第一容纳腔702和第二容纳腔703,第一容纳腔702与第二容纳腔703不相连通,第一容纳腔702能够容纳污水污物,第二容纳腔703能够容纳清水,即第一容纳腔702为污水腔,第二容纳腔703为清水腔;
第二容纳腔703连接有清水盖组件,清水盖组件9开设有输送孔921;第一容纳腔702连接有污水盖组件8,污水盖组件8的污水口设置于污水盖组件8的上部。
现有二合一水箱很少,现在的水箱越做越大,太大的话让大家使用不方便,本专利通过设计独特的隔板以尽量缩减水箱的体积,节省空间。水箱和清洁模块水平放置时,污水腔的排污口与清洁模块的排污口相连接,污水腔的排污口设置于污水腔的侧壁,这样收集污水污物时污水腔只能利用污水口一以下的体积空间,污水口以上的体积空间造成浪费。或者污水口经过特殊设计设置于污水腔的上部,以充分利用污水腔的体积,否则的话,利用螺杆组件将污水污物甩出来的话因为自然的甩力,扬程只能甩一半,污水口以上的空间则被浪费。鉴于上述情况,采用独特的隔板将污水腔上部的空间设置为清水腔,这样设置的好处使得我们无需设计复杂的排污结构,仅利用螺杆组件自然甩出的扬程即可将污水污物甩入至污水腔。另外,污水腔上半部分通过独特的曲面或斜面隔板将水箱一分为二成清水腔(即第二容纳腔)和污水腔(即第一容纳腔),清水腔可以直接与设备主体相连接,清水腔的清水管道很短,使得整个清洁设备的结构更加简约,当然通过抽吸装置抽吸清水腔内的水以给滚刷表面供水。通过以上设计,本设备的巧妙之处在于,清洁模块通过螺杆组件带动的扬程将污水污物甩入污水腔,无需额外提供驱动,但由于自然扬程有限,排污口及污水口的高度较低,所以利用独特隔板将污水腔上部分割为清水腔,以充分利用水箱体积。独特的清洁模块的作用和水箱独特的隔板隔离,使得水箱能够充分利用。
大部分的清洁设备的水箱都是设置于操作杆上,这样会使得操作杆粗大笨重,本专利的水箱设置于设备主体上,而非操作杆上,这样水箱在一定的情况下能够提升水量,更关键的是结构设计简单,节省了用于排污的驱动部件,能耗更低。
若本专利的二合一水箱匹配于其他类似的吸尘器或洗地机上,不如本专利的水箱和带有螺杆组件的清洁模块的配合度更高,本专利的清洁模块只要驱动滚刷的驱动部件即可,挤紧密接触于滚刷上的螺杆组件能够跟随滚刷转动,螺杆组件转动驱动污水污物输送至排污口,且螺杆组件转动产生离心力,在离心力的作用下产生扬程,污水污物通过扬程甩入污水腔内,这种排污方式极度简单、节省成本,又简约高效,又通过独特的隔板设计,充分利用水箱内部空间,
上述特征相结合,螺杆组件排污方式及水箱设计方式,相对于现有技术构成了明显的创新,产生意想不到的效果,进一步降低了清洁设备结构的复杂程度,同时又能够维持清洁效率,降低产品成本,提升用户体验。
优选的,所述壳体70呈圆筒状结构,所述污水盖组件8与所述壳体的第一容纳腔702通过圆形端口连接;所述清水盖组件与所述壳体的第二容纳腔703通过圆形端口连接。进一步优选的,所述污水盖组件8与壳体70通过圆形密封圈密封连接;所述清水盖组件与壳体70通过圆形密封圈密封连接。
优选的,如图29所示,所述隔板呈曲面结构或斜面结构设置。所述隔板包括第一隔断部707、第二个隔断部708和第三隔断部709。进一步优选的,所述第一隔断部707的底部不高于污水盖组件8的污水口的底部。再一步优选的,所述隔板自第一隔断部707曲面过渡至第二个隔断部708,第二个隔断部708曲面过渡至第三隔断部709;所述第一隔断部707和/或第三隔断部709与所述壳体的轴线方向相垂直设置,所述第二个隔断部708与所述壳体的轴线方向相一致或呈小于90度的夹角。
优选的,所述隔板701靠近污水盖组件8的一端与所述壳体70靠近污水盖组件8端口的距离占所述壳体长度的比例范围为1/5-1/3;所述隔板701靠近清水盖组件的一端与所述壳体70靠近污清水盖组件的端口的距离占所述壳体长度的比例范围为1/5-1/3。
优选的,所述隔板701一体成型连接于壳体70内。
当然,在次优的实施例中,所述隔板还可以竖向放置。具体地,所述水箱包括壳体70、污水盖组件8和清水盖组件9,所述水箱沿长度方向水平放置,污水盖组件8的污水口与清洁设备的排污口相连接;所述壳体70包括隔板701、第一容纳腔702和第二容纳腔703,所述隔板701与所述壳体的轴线方向相垂直,所述隔板701将壳体内部分割为第一容纳腔702和第二容纳腔703,第一容纳腔702能够容纳污水污物,第二容纳腔703能够容纳清水;第二容纳腔703连接有清水盖组件9,清水盖组件9开设有输送孔921;第一容纳腔702连接有污水盖组件8,污水盖组件8的污水口设置于污水盖组件8的上部。
如图29所示,第一容纳腔702内设置有过滤网706,过滤网706上设置有过滤孔,所述过滤网706能够容纳污物。优选的,第一容纳腔702与污水盖组件相连接的一端开设有第一开口704,污水盖组件密封盖合于第一开口704上,所述过滤网706安装于第一容纳腔702靠近第一开口704一侧。示例中,第一开口704上设置有放置台,所述过滤网706靠近过滤网口一端外表面设置有外沿,所述外沿放置于安装台上。所述过滤网706靠近过滤网口一端设置有过滤网把手,所述过滤网把手为可旋转的过滤网把手,取出过滤网706时,过滤网把手能够转动至过滤网拉出的方向,通过拉过滤网把手即可将过滤网自第一容纳腔702内拉出;过滤网706安装至第一开口704上时,过滤网把手能够转动至容纳于过滤网706内。过滤网把手设置可旋转,方便取出时拉出,及放置好后容纳于过滤网内,不占用其他空间,装配及使用方便。
在优选的实施例中,还包括清水盖组件9;所述壳体70表面还开设有第二开口705,所述第二开口705与第二容纳腔703相连通,清水盖组件9密封盖合
于第二开口705上。
其他的实施例
本其他的实施例中,如图12-19所示,端盖主体80为另一种方式的分体式端盖主体,所述端盖调节件为一体式端盖调节件,所述端盖主体包括内盖81和外盖82;所述内盖81为一端开口的筒形盖状结构,污水口801开设于内盖81上。示例中,所述外盖82为板状结构。优选的,所述端盖调节件为一端开口的筒形盖状结构。示例中,所述端盖调节件为旋盖83。污水盖组件设计结构紧凑、零部件使用较少,装配方便,操作方便快捷,外形美观。污水盖组件设置的污水口可调节开闭。使用时污水口敞开,污水污物通过污水口存储于水箱的第一容纳腔内;拆卸倾倒其内的污水污物时,端盖调节件能够调节污水口至闭合状态,避免污水污物漏洒,给清洁设备的清洁维护带来很多麻烦。
在优选的示例中,如图19所示,第一调节结构包括第一卡扣槽821和第二卡扣槽822,第二调节结构包括卡扣块833,如图17所示。当端盖调节件旋转至通孔831与污水口801相对应时,卡扣块833卡扣于第一卡扣槽821内;或当端盖调节件旋转至遮挡部832与污水口801相对应时,卡扣块833卡扣于第二卡扣槽822内。需要说明的是,第一调节结构和第二调节结构还可以相反设置,即所述端盖主体80上设置卡扣块833,所述端盖调节件上设置第一卡扣槽821和第二卡扣槽822。进一步优选的,第一卡扣槽821和第二卡扣槽822均设置于外盖82上。优选的,所述旋盖83上设置弹片834,所述弹片834靠近外盖82一侧设置有卡扣块833,通过旋转旋盖83,卡扣块833可卡扣于第一卡扣槽821内或卡扣于第二卡扣槽822内。当然,第一卡扣槽821和第二卡扣槽822不局限于设置于外盖82上,还可以设置于内盖81上。
在优选的示例中,如图15和18所示,第一限位结构包括第一限止块811和第二限止块812,第二限位结构包括凸起块835,当端盖调节件旋转至通孔831与污水口801相对应时,第一限止块811与凸起块835靠近第一限止块811的一端相抵触;或当遮挡部832与污水口801相对应时,第二限止块812与凸起块835靠近第二限止块812的一端相抵触。需要说明的是,本专利并不局限于此,第一限止块811和第二限止块812还可以设置于端盖调节件上,凸起块835还可以设置于端盖主体上。进一步优选的,所述第一限止块811和第二限止块812均设置于内盖81上。当然,第一限止块811和第二限止块812还可以设置于外盖上。
在优选的示例中,如图17所示,所述固紧部件为安装片836;所述旋盖83上开设有安装槽836,所述安装片837的外径小于安装槽836内径,所述安装片837与安装槽836相对应,所述安装片837伸入至安装槽836内或设置于安装槽836上方,所述水箱通过安装片安装于清洁设备上。具体地,清洁设备上设置有与安装片相配合的固定片601,设置有污水盖组件的水箱安装于清洁设备上时,所述固定片伸入至安装槽内,旋转旋盖至旋盖上的安装片卡扣于固定片上,从而水箱安装于清洁设备上,此时旋盖上的通孔旋转至与污水口相对应,且卡扣块833卡扣于第一卡扣槽821内。当取出水箱时,朝相反方向旋转旋盖至安装片与固定片不相对应,即可将水箱自清洁设备上取出,从而固定片自安装槽内
移出,与此同时,旋盖上的遮挡部旋转至与污水口相对应,且卡扣块833卡扣于第二卡扣槽822内。
优选的,如图15-16所示,所述内盖81上设置第一连接环813,所述第一连接坏813侧壁上开设有至少一个连接槽814,所述连接槽814包括连接部815和固定部816,所述连接部815靠近外盖82的一侧开设有伸入口817,所述固定部816内设置凸块818。如图19所示,所述外盖82靠近内盖81的一侧设置有与第一连接环813的第二连接环823,第二连接环823上设置有至少一个固定块824,固定块824上设置有与凸块818相匹配的凹槽825。所述固定块824自伸入口817伸入至连接槽814的连接部,旋转装饰盖,固定块824移动至连接槽814的固定部816,固定部816的凸块818容置于固定块824上的凹槽825内,外盖82固定连接于内盖81上。
优选的,所述污水盖组件密封安装于壳体上,进一步的,所述污水盖组件螺纹连接于壳体靠近第一容纳腔702的一端。当然本专利并不局限于此,还可以卡扣连接于壳体靠近第一容纳腔702的一端等等。示例中,内盖81靠近螺纹位置固定设置有污水盖密封圈819,用以将污水盖组件的内盖81密封连接于壳体上。
清水盖组件
水箱上设有盛放清水的第二容纳腔,清水盖组件密封盖合于清水腔上。如图29所示,清水盖组件9螺纹连接于第二开口705上。当然本专利并不局限于此,卡扣、胶粘等其他密封连接方式均在本专利保护范围之内。示例中,所述输送盖主体90靠近螺纹位置固定设置有清水盖密封圈901,所述清水盖组件9通过清水盖密封圈密封连接于壳体7上。
如图20-26所示,清水盖组件9包括清水盖主体90;所述清水盖主体90设置有输送通道,所述输送通道靠近清水盖主体90一端设置有遮挡件,所述遮挡件上开设有输送孔921,所述输送孔921内径小于所述输送通道内径,所述输送通道内设置有弹性件9121和密封块9122,所述密封块9122能够在弹性件9121的弹力作用下密封于输送孔921。清水盖组件通过设置弹性件和密封块,在未使用时可自动封堵输送孔,避免液体洒漏;使用时,可通过抵触密封块,使密封块与输送孔形成空隙,即可使液体通过输送孔输送。使用方便,容易操作。
在优选的示例中,如图22和图24所示,所述输送通道内设置有止挡面,所述弹性件9121一端与止挡面相连接,所述弹性件9121的另一端与密封块9122相连接。优选的,所述止挡面为环形弹簧座9126,所述弹性件9121的一端置于环形弹簧座9126上。当然,弹性件9121可活动放置于环形弹簧座9126上,也可以固定设置于环形弹簧座9126上。弹性件9121的另一端连接于密封块9122上,同样,弹性件9121的另一端可固定连接于密封块9122上,也可以活动连接于密封块9122上,例如抵触于密封块9122上或卡套于密封块9122上;总之,弹性件对密封块9122起到弹性调节作用即可,均在本专利的保护范围。优选的,弹性件9121为弹簧。示例中,弹簧靠近环形弹簧座9126的一端外径大于弹簧靠近密封块9122的一端的外径,弹簧自靠近环形弹簧座9126的一端朝向靠近密封块9122的一端,弹簧外径逐渐减小。示例中,环形弹簧座9126一体连接
于输送通道内。在其他的示例中,所述输送通道包括第一输送通道和第二输送通道,第二输送通道内径大于第一输送通道内径,所述弹性件9121一端与第一输送通道的端部相抵触。
在优选的实施例中,如图22、图24和图26所示,所述密封块9122上开设有过水孔9124,所述过水孔9124与输送孔921不相对应。优选的,所述密封块9122上绕设有止挡部9123,所述止挡部9123外径大于输送孔921内径,过水孔9124开设于止挡部9123上。优选的,所述密封块9122靠近输送孔921的一端设置有密封端9125,所述密封端9125密封容置于输送孔921内。进一步优选的,所述密封端9125为弹性密封端或所述遮挡件为弹性遮挡件,以便于密封端密封于输送孔921内。示例中,遮挡件为密封硅胶管,密封块为密封塞。示例中,止挡部9123一体连接于密封块9122上。
优选的,如图21-25所示,所述清水盖主体90上设置有压力调节阀922,所述压力调节阀922能够调节清水盖组件两侧的压力差,避免存在负压而造成液体无法输送的情况。优选的,所述压力调节阀为鸭嘴阀,以保证水箱内不会出现负压而使水箱内的水无法输送至水箱外或水箱外的水无法输送入水箱内。
优选的,如图23-25所示,所述输送通道远离遮挡件的一端设置有过滤件9111,过滤件9111能够过滤进入输送通道内的液体。示例中,所述过滤件9111为出水棉,出水棉能够将水箱内的水过滤后通过输送通道输送至水箱外,出水棉起到过滤水中杂质的作用,避免杂质进入清洁设备内造成零部件的损坏,延长设备的使用寿命。
在优选的实施例中,如图21-22和图24-25所示,所述输送盖包括第一输送盖91和与第一输送盖91相连接的第二输送盖92;输送孔921设置于第二输送盖92上,第二输送通道912与输送孔921密封连接。示例中,第二输送盖92可拆卸卡扣于第一输送盖91上,当然,本专利并不局限于此,第二输送盖92可拆卸连接或固定连接于第一输送盖91上均可。第二输送盖卡扣于第一输送盖,既能够稳固地使遮挡件密封于输送通道一端,结构更稳定,同时外观看起来也更美观。
进一步优选的,所述第一输送盖91为分体设计,所述第一输送盖91包括输送盖913和连接盖914,连接盖914连接于输送盖913上,第二输送盖92安装于连接盖远离输送盖913的一侧;优选的,连接盖914螺纹连接或卡扣连接于输送盖913上。示例中,连接盖914螺纹连接于输送盖913上。优选的,连接盖914通过密封圈密封连接于输送盖913上。示例中,所述第二输送盖92卡扣连接于连接盖914上。示例中,所述连接盖914的侧面设置有防滑结构,以便于连接盖安装和拆卸。
输送通道包括第一输送通道911和第二输送通道912,第一输送通道911设置于输送盖913上,第二输送通道912设置于连接盖914上,第一输送通道911与第二输送通道912密封连接。优选的,第二输送通道912通过密封圈密封安装于第一输送通道911上。示例中,弹性件9122、密封块9122和环形弹簧座9126均设置于第二输送通道912内,出水棉设置于第一输送通道911远离第二输送通道912的一端。优选的,所述第一输送通道911为L型第一输送通道,
使用时,所述第一输送通道911远离第二输送通道912的一端接近第一容纳腔内液体的底部,以利于第一输送通道充分输送第二容纳腔703内的液体。当然,第一输送通道911也可以为软管,以便于使用时,第一输送通道911远离第二输送通道912的一端自然下垂于或接近于第一容纳腔内液体的底部。
进一步的,所述输送盖913为分体设计,所述输送盖913还包括配合盖915,所述输送盖913可拆卸安装于配合盖915上,示例中,输送盖913卡扣于配合盖915上,所述连接盖914连接于配合盖915上。所述配合盖915通过螺纹连接于壳体的第二开口上,示例中,所述配合盖915通过密封圈密封连接于壳体的第二开口上。示例中,所述输送盖表面设置出水孔,其有利于清水盖组件盖合于水箱时液体内水来回流动,不占用第二容纳腔容纳液体的空间。
需要说明的是,在不冲突的情况下,以上清水盖组件的所有技术特征可以任意自由组合,其自由组合或简单变型、变化及修改均在本专利的保护范围之内。
本实施例还提供的一种地面清洁设备,包括滚刷组件11、螺杆组件12、设备主体6、水箱7、控制模块和电源模块;滚刷组件和螺杆组件均安装于设备主体上,所述控制模块能够控制清洁设备运行,所述电源模块能够为清洁设备提供电能;
设备主体6上开设有盛污槽,螺杆组件12可转动安装于盛污槽13内,螺杆组件12紧密贴合或贴近设置于盛污槽13内,所述盛污槽13开设有朝向滚刷组件的长条形接污口131,所述盛污槽13的一侧开设有排污口132,所述排污口与污水腔相连通,所述螺杆组件与所述滚刷组件压着接触设置,所述螺杆组件能够挤压滚刷组件上的水和污物,所述盛污槽与所述螺杆组件配合能够传输水和污物至盛污槽的排污口132,即所述盛污槽与所述螺杆组件相配合设置的结构能够使得螺杆组件传输水和污物至盛污槽的排污口,所述排污口与污水箱相连接。
实施例B
本实施例提供的一种地面清洁设备包括滚刷组件、螺杆组件等相关部件。优选的,所述地面清洁设备,包括滚刷组件、安装滚刷组件的设备主体,传动马达,电源模块及控制模块,所述控制模块能控制电源模块连通传动马达,所述传动马达带动滚刷组件旋转:所述地面清洁设备还包括清水箱、污水箱、和螺杆组件;所述设备主体两侧设置有第一盖体61与第二盖体62,所述滚刷组件通过第一盖体61和第二盖体62安装在设备主体中;所述设备主体的内侧为与螺杆组件12形状相匹配的盛污槽13,所述盛污槽13为半包围结构,所述盛污槽13半包围结构大于180度,所述盛污槽13沿着螺杆组件12传输污水及垃圾的方向的一端设置有排污口132;所述螺杆组件12安装在设备主体的盛污槽204内,所述螺杆组件400设置有螺纹组,所述螺纹组的螺纹边缘与盛污槽204的内壁间歇小于5毫米,所述清水箱103通过抽水管602将清水输送到螺杆组件12远离排污口的一端;所述螺杆组件12的一部分通过盛污槽13的半包围结构与滚刷组件11的滚刷表面挤压接触,所述螺杆组件12与滚刷组件11之间的相
对转动,能将滚刷吸附的污水及垃圾通过盛污槽13传输到排污口132;所述盛污槽13的排污口132与污水箱500的污水口801对应设置。
当然,清水箱和污水箱可以分体设计,也可以一体设计为一体的水箱。清水箱内设置有清水腔,污水箱内设置有污水腔。优选的,所述螺杆组件的轴心与所述滚刷组件的轴心之间的距离小于所述螺杆组件和所述滚刷组件的半径之和。
优选的,所述螺杆组件12贴紧设置于所述滚刷组件11靠近水箱7的一侧,所述螺杆组件12可转动安装于盛污槽13内,所述盛污槽13固定安装于设备主体6上。
所述盛污槽13的内腔与螺杆组件12紧密贴合或贴近设置;所述盛污槽13开设有接污口131和排污口132,所述接污口131朝向滚涮11,所述滚刷组件11上的污水污物能够被螺杆组件12挤压的通过接污口131收集于盛污槽13内,所述排污口132与所述污水盖组件8的污水口801相连接,所述螺杆组件12能够输送污水污物至排污口132并通过排污口132和污水盖组件8的污水口801将污水污物甩入至第一容纳腔702内。
所述设备主体6的一侧设置有第一盖体61,设备主体6的另一侧设置有第二盖体62,如图41所示。第二盖体62上固定安装有电机组件63,所述滚刷组件11的一端开设有容置槽110,滚刷组件11的一端通过容置槽110套设于电机组件63上,驱动电机能够驱动滚刷组件转动。
本发明提供的螺杆组件包括螺杆本体124及螺杆端盖125,所述螺杆本体124设置有第一螺纹组122和第二螺纹组123,所述第二螺纹组123的螺纹直径大于第一螺纹组122的螺纹直径,所述第二螺纹组123的螺纹间距小于第一螺纹组122的螺纹间距,所述第一螺纹组122的长度大于第二螺纹组123的长度。
示例中,第二螺纹组123对应盛污槽13的排污口132。
采取第一螺纹组和第二螺纹组不同螺纹间距的技术方案,是经过多次实物实验测试的结果,利用不同螺距的螺纹组快速旋转,在靠近排污口的区域,从第一螺纹组切换到第二螺纹组,由于第一螺纹组的螺纹间距大于第二螺纹组的螺纹间距,因此第一螺纹组每圈旋转时的推送量大于第二螺纹组每圈旋转时的推送量,在靠近排污口的区域切换为第二螺纹组时,因此旋转推送产生的压力会在第二螺纹组区域变大,压强变大,形成更大的输送及离心力,从而能够更好的将污水及垃圾通过盛污槽13的排污口132传输到污水箱的污水口801。
采取第一螺纹组和第二螺纹组不同螺纹直径的技术方案,也是经过多次实物实验测试的结果,在靠近排污口的区域,从第一螺纹组切换到第二螺纹组,由于第二螺纹组的螺纹直径大于第一螺纹组的螺纹直径,形成更好的输送及离心力,因此能够更好的将污水及垃圾通过盛污槽13的排污口132传输到污水箱的污水口801。
优选的,所述螺杆本体124的一端设置有螺杆端盖125,所述螺杆端盖设置有密封圈以及锁紧机构127,所述锁紧机构127能与设备主体进行锁紧。
优选的,所述螺纹端盖125设置有轴承。
优选的,所述螺杆端盖125设置有螺杆提手126,所述螺杆提手126为可转
动收纳结构。
优选的,所述螺杆本体一端设置有螺杆旋转头128,所述螺杆旋转头128套设在螺杆本体124的端部,所述螺杆旋转头128内置有轴承,所述螺杆旋转头设有密封圈。示例中,螺杆旋转头128安装在第一盖体61的螺杆旋转头安装槽内。
优选的,所述螺杆旋转头128的端面设置有防震塞129。
优选的,所述第二螺纹组123与盛污槽的排污口132对应设置。
优选的,所述螺杆本体124一端为螺杆旋转头128,所述螺杆旋转头128内置轴承,所述螺杆旋转头设置有密封部件,螺杆本体依次设置有第一螺纹组和第二螺纹组,靠近第二螺纹组一端设置有螺杆端盖125,所述螺杆端盖125内置轴承,所述螺杆端盖125设置有锁紧机构127及密封部件。本专利所述密封圈,也可以采用端面紧压密封。
螺杆本体的螺纹组与滚刷表面挤压接触,螺杆本体可以被滚刷表面带动,进行被动旋转,螺杆本体也可以与传动机构连接,进行主动旋转。螺杆本体的螺纹组与滚刷表面挤压接触,螺纹组与滚刷表面挤压接触旋转,一方面可以将滚刷表面的污水及污物刮除或挤出,同时,刮除或挤出的污水及污物在半封闭的盛污槽通过螺杆旋转向一端传输;另一方面,螺杆与滚刷表面工作状态时,保持实时揉搓动作,从而在工作的同时实现实时揉搓自清洁的功能;同时由于不需要吸尘器,因此低能耗,低噪音。
螺杆组件采取被动工作方式的成本更低,结构设计更加简约。
本专利中的螺杆组件12的螺纹边缘与盛污槽13的内壁间隙小于5毫米,优选小于1毫米,更优选为0.2-0.5毫米。如果螺纹边缘与盛污槽13的内壁间隙过大,将会导致螺杆旋转传输污物效果不良,如果螺纹边缘与盛污槽13的内壁间隙过小,例如螺纹边缘与盛污槽13的内壁相切或接触,则会增大摩擦力,也会影响传输。
螺杆组件至少一侧设置有螺杆轴承,优选螺杆组件两端均设有螺杆轴承,更有利于螺杆稳定的旋转。
螺杆的螺纹组与滚刷表面挤压状态下的旋转动作,一方面螺杆上的螺纹组与滚刷进行旋转挤压运动,将滚刷上的脏东西、污物、污水带走,并通过螺旋传输至排污口;另一方面,螺杆上的螺纹组还时刻对滚刷进行揉搓、挤压,类似与搓衣板的工作原理,起到自清洁的作用。
如图41-46所示,本发明提供的一种滚刷组件,
滚刷组件11包括滚刷本体111和安装把手112,安装把手112转动连接于滚刷本体111远离电机组件63的一端,安装把手112通过连接轴113和滚刷轴承114转动连接于滚刷本体111的一端,安装把手112沿垂直于滚刷本体111轴线方向向外伸出,安装把手112磁吸安装于第一盖体61上。具体地,安装把手112上设置有磁体118,第一盖体61上设置有磁性材料,磁体吸附于磁性材料上,安装把手112上设置有筋条或拆装凹槽,拆卸滚刷本体时,手捏住筋条或拆装凹槽处,克服磁力,将滚刷本体取出。当然,还可以安装把手112上设置磁性材料,第一盖体61上设置磁体,只要能够实现滚刷组件11磁吸安装于
设备主体上即可。
如图41-44所示,电机组件63包括驱动电机631、变速箱、滚刷接头633和电机壳体634,变速箱为行星变速箱。驱动电机631固定安装于第二盖体上,控制系统能够控制电机组件63与电源模块电连接,驱动电机的输出端通过变速箱与滚刷接头固定连接,滚刷接头沿径向设置有凸条635,所述凸条635的长度方向与滚刷组件的长度方向的夹角小于90度,沿所述凸条635靠近驱动电机631的一端至所述凸条635远离驱动电机631的一端的方向,所述凸条635朝向滚刷组件11前进时的旋转方向倾斜。
所述容置槽110内设置有与滚刷接头相匹配的安装凹槽115,清洁设备使用时,滚刷组件11向前转动,由于滚刷接头上凸条的倾斜方向与滚刷组件前进时的旋转方向一致,滚刷本体旋转时有朝向电机组件方向的力,使得滚刷本体旋转时更紧密地套设于电机组件上,故仅靠磁吸即可将滚刷本体安装于设备本体上,滚刷本体也不会从设备本体或电机组件上松脱。
滚刷本体111包括滚轴116和设置于滚轴上的柔性清洁层117,柔性清洁层为胶棉层或毛绒类棉层。
如图64-71所示,本发明还提供另一种滚刷组件。
滚刷组件包括滚刷本体111:所述滚刷本体111包括滚芯116和柔性清洁层117,所述柔性清洁层117套设在滚芯上,所述滚刷组件的至少一侧设置有滚刷提手301;所述滚刷组件一侧的滚刷提手301与滚芯116的滚刷端盖307可转动连接;所述滚芯116内部设置有能与滚刷接头310匹配的安装凹槽316,所述滚芯116能通过安装凹槽316被滚刷接头310带动旋转。
优选的,所述滚刷组件两侧设置有滚刷提手301,至少一个滚刷提手301安装有导电部件315。导电部件315例如为带凹槽的导电片。
优选的,滚刷组件另一侧的安装有导电部件315的滚刷提手301通过第一滚刷轴305及滚刷轴承座306、滚刷轴承304与传动变速箱马达303连接;所述第一滚刷轴305内置有贯通孔,所述传动变速箱马达303的电路穿过第一滚刷轴305内置的贯通孔与滚刷提手301导电部件315连接;传动变速箱马达303内置在滚芯内,所述传动变速箱马达303的马达输出轴311端设置滚刷接头310。
滚刷本体302通过传动马达驱动。优选所述滚刷本体302内置有传动变速箱马达303。所述传动变速箱马达303一端安装在传动马达架312内,所述传动变速箱马达303另一端安装在滚刷轴承座306内,所述滚刷轴承座306的一端套设在传动变速箱马达303上,另一端的外表面配合固定安装有滚刷轴承304,所述滚刷提手301内部设置有第一滚刷轴连接管317,所述第一滚刷轴连接管317的前端部分伸入到滚刷轴承座306的内侧,然后第一滚刷轴305穿过第一滚刷轴连接管317,伸入到滚刷轴承座306内侧,通过螺栓固紧将滚刷提手与滚刷轴承座固紧连接。所述第一滚刷轴305内部有贯通孔,以便马达电路可以穿过与滚刷提手导电件电连接。所述第一滚刷轴305的直径大于所述滚刷套轴承309。
通常,滚刷马达的转速控制在200-400RPM即可满足正常的使用状态,螺杆与滚刷之间可以被动传动,也可以主动传动,螺杆与滚刷直径比优选为20:100~20:20,螺杆转速在367-735之间。所述传动变速箱马达303的顶部设置
有滚刷接头310,所述滚刷接头310与滚芯内的滚刷接头的安装凹槽316互相匹配,所述滚刷接头310的顶部也有防震塞129,防震以及防止轴向上的窜动,提升产品的稳定性。
滚刷组件300的安装方式:从上往下放置入滚刷提手安装槽205,优选为竖直方向直接放置。发明人在更早申请的专利技术方案中曾经提出过单侧安装的技术方案,相对于单侧先安装滚刷组件,然后再安装另一侧滚刷组件的技术方案,本专利的优势在于受力更均匀,产品更可靠,因为螺杆与滚刷表面为挤压接触,清洁设备在工作时,螺杆会给滚刷表面施加一定压力,两侧均设置滚刷提手,不仅使滚刷受力均匀,而且安装拆卸更方便。
优选的,所述滚刷组件一侧的滚刷提手301与滚芯116的滚刷端盖307通过滚刷套轴承309及第二滚刷轴308连接。
优选的,所述传动变速箱马达303一端安装在传动马达架312上,传动变速箱马达303另一端部分套设于滚刷轴承座306内,所述滚刷轴承座306的另一端的外表面安装有滚刷轴承304,所述滚刷轴承座306的另一端设置有通孔;
所述滚刷提手内部设置有第一滚刷轴连接管,所述第一滚刷轴连接管317的前端部分伸入到滚刷轴承座306的通孔内,第一滚刷轴305穿过第一滚刷轴连接管317,伸入到滚刷轴承座306的内部,将滚刷提手301与滚刷轴承座306固紧连接。
优选的,所述滚刷接头310的顶部设有防震塞129。
优选的,所述滚刷提手301的侧面设置有导电部件315,所述导电部件315的表面设置有凹陷槽,所述凹陷槽与设备主体的弹性导电部件209相匹配。
至少一个滚刷提手安装槽内的侧壁设置有弹性导电部件209。优选的,所述弹性导电部件为可伸缩的弹性导电部件。例如弹性导电部件为pogopin导电弹簧针。滚刷提手的侧面对应设置有导电部件315,优选的,所述导电部件315上设置有凹陷槽,与可伸缩的弹性导电部件进行匹配,这种设置可以提示用户已经卡合安装到位,提升用户体验。
优选的,滚刷提手301的端面设置有防震塞129。
滚刷提手的端面设置有柔性的防震塞129,例如硅胶垫,这样滚刷提手在安装时,会有一定阻尼的效果,避免直接碰撞式安装,同时,两端设置防震塞有助于减小清洁设备工作时的噪音,减小震动和轴向上的窜动,提升产品稳定性与使用寿命。
优选的,所述柔性清洁层117为胶棉滚刷。
优选的,清洁设备还包括操作杆64,电池模块可设置于设备主体内,还可设置于操作杆上。
优选的,盛污槽13开设于设备主体上。进一步优选的,所述盛污槽13为半包围结构,所述盛污槽13半包围结构大于180度。更进一步优选的,盛污槽13的半包围封闭角度优选为270度~300度。
采用半包围结构的盛污槽13与螺杆组件12互相配合形成的污水污物传输机构在传输原理及传输效果上都与现有技术形成显著差异,并且成本相对而言较低,省去了吸尘器模块。螺杆组件与滚刷表面实现了实时揉搓自清洁,同时,
低能耗,低噪音;核心零部件设备主体优选为铝合金挤压一体成型,产品可靠持久。
设备主体上设置有若干加强筋,以便增加设备主体的强度以及稳定性。设备主体优选为铝合金材料,这样设备主体这一核心零部件可以通过挤压成型生产,产品可靠持久,且成本较低。
优选的,设备主体上还设置有上盖,上盖罩设于滚刷组件上方,或上盖罩设于滚刷组件和设备主体上方。
优选的,上盖前端设置有防撞条603。例如为硅胶条。
优选的,上盖的前端内侧设置有内挡条604。
优选的,所述防撞条和内挡条优选为一体的,防撞条603为u型卡合安装结构,所述防撞条603的内侧为内挡条604,所述内挡条优选朝向滚刷表面倾斜,并与滚刷表面接触。一方面,防撞条可以在清洁设备工作时,如果一不小心撞到墙体或家具时,避免撞坏,另一方面,上盖的前端内侧设置的内挡条,可以避免滚刷转动时将一些未被及时传输走的污物或污水甩到滚刷组件的前进方向,进一步提升清洁效果。
第二盖体62上设置有螺杆安装口133和滚刷提手安装槽205,所述螺杆端盖125与螺杆安装口133锁紧固定。
优选的,上盖的内侧设置有压辊65,所述压辊65与滚刷表面接触。优选的,所述压辊两端安装设置有弹簧,这样压辊与滚刷之间为弹性挤压方式。另一种优选的示例,上盖的内侧设置有压条,所述压条与滚刷表面接触。
水箱7设置于设备主体远离滚刷组件的一侧。盛污槽13的排污口132设置在螺纹组旋转传输污物的端部,所述排污口132与第二螺纹组123配合。
所述污水箱500设置有污水箱进水口盖502,盛污槽的排污口132与污水口801相互对应,且设备主体的排污口132的上侧边沿朝向污水箱的方向设置有排污口顶块213,所述排污口顶块213能顶开污水箱进水口盖502,当污水箱500从设备主体分离时,污水箱进水口盖502会因为扭簧503而自动关闭。污水箱进水口盖的顶部设置有扭簧503。一种实施例为,污水口801下侧设置有磁体504,对应的污水箱进水口盖与磁体504可以磁性吸附。可以根据实际需要更换更大容量的清水箱与污水箱。
优选的,所述排污口132的下边沿高于螺杆中心轴的水平位置,所述排污口的上边沿高于螺杆组件的螺纹上边沿;所述排污口的宽度小于或等于第二螺纹组的宽度。排污口下边沿会影响污水箱的实际容量,排污口下边沿设置较高,将会扩大污水箱的有效容量。
优选的,所述盛污槽13的排污口132设置有顶块213,所述顶块213将污水箱进水口盖502顶开。这样就可以保持污水箱进水口盖502处于常开状态,否则容易在污水箱进水口盖502处发生污物堵塞,从而影响产品正常使用。
优选的,所述滚刷组件与螺杆组件的直径比范围为4:1~1:1。这种直径比更有利于螺杆传输。
优选的,所述第一盖体61与第二盖体62分别设置有滚刷提手安装槽205,至少一个滚刷提手安装槽205的内壁设置有弹性导电部件209,所述滚刷组件
11从上往下安装,至少一个滚刷提手的侧面安装有导电部件315,所述导电部件315与弹性导电部件209匹配,所述滚刷组件两侧设置有轴承。这种设计便于滚刷的拆卸取出与安装,同时导电稳定。
优选的,所述第一盖体61设置有螺杆旋转头安装槽206,第二盖体62设置有螺杆安装口133,所述螺杆组件一端的螺杆旋转头与螺杆旋转头安装槽206匹配,所述螺杆端盖125与螺杆安装口133紧固连接,所述螺杆组件的至少螺杆端盖一侧设置有轴承。这种安装结构,便于螺杆组件的拆卸,以及稳定旋转。
优选的,所述抽水管602将清水直接喷洒到滚刷表面。
优选的,所述设备主体设置有上盖61,所述上盖61卡扣于设备主体上。这种设计有利于拆卸、更换滚刷组件。
示例中,如图58、图64和图71所示,第二盖体62上设置有滚刷提手安装槽205,所述滚刷提手安装槽205的槽内侧壁设置有一对弹性导电部件209,例如为导电弹簧针,所述弹性导电部件与滚刷提手301的侧面导电部件315对应设置,从而实现电连接。所述弹性导电部件209,例如为导电弹簧针,可以正好卡嵌到导电部件315的表面凹槽中,一方面可以有利于滚刷提手安装到位,另一方面,可以增强导电稳定性。
实施例C
本实施例提供的一种能够检测滚刷组件的胶棉滚刷上是否有水的地面清洁设备。包括滚刷组件和设备主体等相关部件。
所述滚刷组件11包括滚芯116和柔性清洁层117,柔性清洁层117套设于滚芯116上,柔性清洁层117优选为胶棉滚刷,所述滚刷组件可拆卸安装于设备主体6上,设备主体6上设置有滚刷检测结构,滚刷检测结构与滚刷组件300上的胶棉滚刷相接触设置,滚刷检测结构能够检测滚刷组件300上的胶棉滚刷是否有水。众所周知,胶棉长久干燥放置后会变硬,只有加水后才会变软。故设置滚刷检测结构,在清洁设备开始清洁前,先检测一下胶棉滚刷上是否有水,若无水则预先给胶棉滚刷补水后再开始清洁地面或物面,避免硬的胶棉滚刷无法清洁。水箱包括清水腔和污水腔,或水箱的清水箱和污水箱分体设计。
优选的,如图46-47所示,滚刷检测结构为导电触点320,设备主体6上设置至少一组导电触点320,每组导电触点包括两个间隔设置的导电接触头,所述两个导电触点分别通过导线与电源模块的连通,通过两个导电触点之间是否导电检测胶棉滚刷314是否有水,每组导电触点的两个导电接触头均与胶棉滚刷相接触。当胶棉滚刷上无水时,两个导电接触头无法形成闭合电路,检测的电阻很大;当胶棉滚刷上有水时,两个导电接触头形成闭合电路,检测的电阻变小。
工作原理:控制模块设置上限值,清洁设备使用时,控制模块控制滚刷检测结构检测电阻值,若电阻值大于上限值,则说明胶棉滚刷上无水,此时胶棉滚刷无法清洁地面;控制模块控制清水箱给胶棉滚刷送水和/或给安装有螺杆组件的盛污槽送水;待滚刷检测结构检测电阻值小于下限值,说明胶棉滚刷补水完成或胶棉滚刷上有水,即胶棉滚刷为柔软滚刷,可用于清洁地面,此时控制
模块控制清水箱停止向胶棉滚刷送水或清洁设备开启清洁模式。
当然,滚刷检测结构还可以为传感器,传感器与滚刷组件的胶棉滚刷相接触设置,传感器能够检测胶棉滚刷上有水或没有水。传感器包括水浸传感器或其他的检测传感器等等。
优选的,滚刷组件11和设备主体6同实施例A一样。
优选的,导电触点320固定安装于设备主体的第一盖体61上。
实施例D
本实施例提供的一种地面清洁设备,清水腔既能够向滚刷组件送水,也能够向安装有螺杆组件的盛污槽内送水。
清洁设备包括滚刷组件11、螺杆组件12、设备主体6、水箱、控制模块和电源模块;设备主体上开设有盛污槽,螺杆组件12可转动安装于盛污槽13内,螺杆组件12紧密贴合或贴近设置于盛污槽13内,所述盛污槽13开设有朝向滚刷组件的长条形接污口131,所述盛污槽13的一侧开设有排污口132,所述排污口与污水腔相连通,所述螺杆组件与所述滚刷组件压着接触设置,所述螺杆组件能够挤压滚刷组件上的水和污物,所述盛污槽与所述螺杆组件配合能够传输水和污物至排污口132,即所述盛污槽与所述螺杆组件相配合设置的结构能够使得螺杆组件传输水和污物至排污口,所述排污口与污水腔相连接。同样,水箱的清水腔和污水腔可一体设计,也可分体设计。
清洁设备上设置有两个水泵,分别为第一水泵181和第二水泵182,通过第一水泵能够向滚刷组件送水,通过第二水泵能够向向安装有螺杆组件的盛污槽内送水。
如图48-50所示,示例中,设备主体上开设有多个第一补水孔180,第一补水孔180朝向滚刷组件,第一补水孔180位于滚刷组件上方,第一补水孔180通过抽水管与清水腔连接,抽水管上安装有第一水泵181,第一水泵181能够抽吸清水腔内的清水并通过第一补水孔180向滚刷组件的胶棉滚刷上补水。
示例中,设备主体同实施例A或实施例B一样,包括设备主体、第一盖体和第二盖体,另外还包括上盖221,上盖可拆卸盖设于滚刷组件上方,上盖包括第一上盖222和第二上盖223,第二上盖设置于第一上盖靠近滚刷组件的一侧,第二上盖上开设有凹槽224,凹槽224上密封设置有送水条225,送水条和凹槽内形成有回型水路腔,抽水管与回型水路腔相连通,凹槽底部开设有多个第一补水孔,所述补水孔朝向胶棉滚刷,以使胶棉滚刷表面均匀送水。优选的,送水条可拆卸安装于凹槽内。
优选的,第一补水孔180位于滚刷组件靠近螺杆组件的一侧。
优选的,多个第一补水孔沿滚刷组件的长度方向等间距均匀排布。
示例中,第二上盖可拆卸固定安装于设备主体,第一上盖卡扣安装于设备主体及第二上盖上。示例中,盛污槽开设于设备主体上。
在优选的实施例中,所述清水腔还能够向安装有螺杆组件12的盛污槽204内提供清水。
如图48和图51所示,示例中,盛污槽上开设有第二补水孔226,第二补水
孔226通过抽水管与清水腔相连接,抽水管上安装有第二水泵182,第二水泵182能够将清水箱内的水通过抽水管和第二补水孔输送至盛污槽内。
优选的,第二补水孔位于盛污槽远离排污口132的一端。
优选的,螺杆组件12同实施例A或实施例B一样。优选的,滚刷组件11同实施例A或实施例B一样。
工作原理:清洁设备开启时,控制模块先通过控制第一水泵向滚刷组件送一定时间的水,以使胶棉滚刷吸水变软,然后控制模块控制第一水泵停止向滚刷组件供水,清洁设备开始清洁地面或物面后,控制模块控制第二水泵向盛污槽内供水,螺杆组件挤压滚刷组件上的污水污物并跟随滚刷组件一起转动,污水污物随着螺杆组件的转动输送至排污口一端,然后甩入至污水腔内;同时,第二补水孔内输送的清水也一起向排污口输送,清水输送过程中与滚刷组件的胶棉滚刷接触,能够起到清洗胶棉滚刷的作用。另一方面,清水自第二补水孔输送至排污口一端的输送过程中,还起到清洗盛污槽的作用,将盛污槽内的污水污物清理至排污口的一端,然后甩入至污水箱内。
当然,还可以结合实施例C的滚刷检测结构检测胶棉滚刷是否有水,无水时,控制模块通过控制第一水泵向滚刷组件送一定时间的水,待滚刷检测结构检测到胶棉滚刷有水时,控制模块控制第一水泵停止向滚刷组件供水,清洁设备开始清洁地面或物面后,控制模块控制第二水泵向盛污槽内供水,同时起到清洁滚刷和盛污槽的作用。清洁滚刷以达到更好清洁地面的效果,避免清洁后地面产生污渍印迹。
实施例E
本实施例提供的污水腔同实施例A或B一样,当然,水箱包括的清水腔和污水腔可以一体设计,也可以分体设计。分体设计时污水箱可以为方形污水箱或圆筒形污水箱。
如图37-38和图73-74所示,污水腔上还开设有透气孔804,透气孔804与污水腔相连通。优选的,污水口801和透气孔804均设置于水箱的上部。
优选的,所述污水腔内壁设置有遮挡槽805,所述遮挡槽805的一个侧壁与透气孔804相对应。示例中,所述透气孔804与遮挡槽805相对应,所述遮挡槽805的开口方向与透气孔804相垂直设置。污水腔内壁设置遮挡槽,起到隔挡透气孔和污水污物的作用,避免透气孔被污水腔内浪涌的污水污物或从污水口甩进污水腔内的污水污物封堵,造成污水腔内气体无法排出,污水腔内气压无法释放,或污水污物从透气孔溢出。
进一步优选的,遮挡槽805内容置有阻水棉806。遮挡槽内设置阻水棉,防止浪涌的效果更好,并且能够防止污物一起从透气孔溢出,同时也能防止外部异物从透气孔掉入污水箱内。
一个优选的实施例,如图39-40所示,所述排污口的端部设置有凸沿134,所述固紧部件为绕设于污水口外侧的环形槽838,安装槽836与环形槽838相连通。水箱安装于清洁设备上时,所述凸沿134被配置为伸入至安装槽836内并通过旋转调节盖使凸沿134移动并卡扣于环形槽838内,从而水箱安装于清洁
设备上。此时调节盖上的通孔旋转至与污水口相对应,且卡扣块833卡扣于第一卡扣槽821内。当取出水箱时,朝相反方向旋转调节盖至凸沿134自环形槽838内移出,从而可将水箱自清洁设备上取出,与此同时,调节盖上的遮挡部旋转至与污水口相对应,且卡扣块833卡扣于第二卡扣槽822内。优选的,所述排污口靠近污水口的一端固定设置有密封圈,以使排污口与污水口密封连通。固紧部件和安装槽构成水箱的安装结构,安装结构设置于污水口处,能够牢固又紧密地将排污口和污水口紧固在一起,不会出现污水污物泄露。现有技术中安装结构未设置于污水口处,水箱如果在设备上晃动则会使排污口和污水口之间出现缝隙,容易造成污水污物渗漏。优选的,所述清水盖组件上设置定位件,水箱安装于设备主体上时,所述定位件定位于设备主体上,所述定位件起到定位水箱的作用,防止安装水箱时所述水箱跟随调节盖一起转动,避免安装困难而使用户消费体检极差。
以上所有部件的所有技术特征在不冲突的情况下可以任意自由组合,其自由组合或简单变型、变化和修改均在本专利的保护范围之内。
需要说明的是,在不冲突的情况下,以上所有部件的所有技术特征可以任意自由组合,其自由组合或简单变型、变化和修改均在本专利的保护范围之内。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“又一实施例”、“另一实施例”、“其他实施例”、“示例”、“具体示例”或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不必针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。此外,本领域人员可以将本说明书中描述的不同实施例或示例进行接合和组合。
尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改和变型。
Claims (20)
- 一种可调节污水盖组件,其特征在于,所述端盖组件密封盖合于污水箱上,所述端盖组件包括端盖主体和端盖调节件;所述端盖主体包括内盖(81)和固定盖(84),所述端盖调节件包括调节阀(85)和调节钮(86);所述内盖(81)开设有污水口(801),所述固定盖(84)开设有第二通孔(841),所述污水口(801)和第二通孔(841)相对应,固定盖(84)安装于内盖(81)上;所述调节阀(85)置于内盖(81)和固定盖(84)之间,调节阀(85)上设置有通孔(831)和遮挡部(832),调节钮(86)设置于固定盖(84)远离调节阀(85)的一侧,调节钮(86)被配置得能够旋转调节所述调节阀(85)上的通孔(831)与污水口(801)相对应或调节阀(85)上的遮挡部(832)与污水口(801)相对应。
- 根据权利要求1所述的污水盖组件,其特征在于,所述调节阀上设置有与清洁设备连接的固紧部件,设置有污水盖组件的水箱通过固紧部件安装于清洁设备上时,所述调节阀上的通孔(831)与污水口(801)相对应;设置有污水盖组件的水箱通过固紧部件自清洁设备上分离时,所述调节阀上的遮挡部(832)与污水口(801)相对应。
- 根据权利要求2所述的污水盖组件,其特征在于,还包括至少一个调节结构,所述调节结构包括第一调节结构和第二调节结构,第一调节结构设置于内盖(81)或固定盖(84)上,第二调节结构设置于调节阀(85)上,所述第二调节结构与第一调节结构相配合,所述调节阀能够旋转调节调节阀上的通孔(831)与污水口(801)相对应或调节阀上的遮挡部(832)与污水口(801)相对应。
- 根据权利要求3所述的污水盖组件,其特征在于,还包括至少一个限位结构,限位结构能够限制端盖调节件沿端盖主体(80)旋转的角度。
- 根据权利要求4所述的污水盖组件,其特征在于,所述第一调节结构包括 第一卡槽(852)和第二卡槽(853),所述第二调节结构包括卡凸(872),当调节阀旋转至通孔(831)与污水口(801)相对应时,卡凸(872)卡扣于第一卡槽(852)内;当调节阀旋转至遮挡部(832)与污水口(801)相对应时,卡凸(872)卡扣于第二卡槽(853)内。
- 根据权利要求5所述的污水盖组件,其特征在于,所述固紧部件为设置于调节阀(85)上的卡条(856),所述固定盖(84)上开设有安装口(842),所述调节阀旋转至调节阀上的卡条(856)与安装口(842)相对应,卡条(856)卡合于清洁设备上时,所述调节阀上的通孔(831)与污水口(801)相对应;调节阀旋转至卡条自安装口(842)内移开时,卡条(856)自清洁设备的固定片上分离时,调节阀上的遮挡部(832)与污水口(801)相对应。
- 根据权利要求6所述的污水盖组件,其特征在于,限位结构包括挡条(871)、第一止挡块(854)和第二止挡块(855),挡条(871)设置于内盖(81)上,第一止挡块(854)和第二止挡块(855)均设置于调节阀(85)上;当通孔(831)与污水口(801)相对应时,第一止挡块(854)与挡条(871)靠近第一止挡块(854)的一端相抵触;当遮挡部(832)与污水口(801)相对应时,第二止挡块(855)与挡条(871)靠近第二止挡块(855)的一端相抵触。
- 根据权利要求7所述的污水盖组件,其特征在于,所述调节阀为异形调节阀,所述调节阀靠近内盖底部一侧设置有弧形部(851),第一卡槽(852)、第二卡槽(853)、第一止挡块(854)和第二止挡块(855)均设置于弧形部(851)上,所述卡条靠近内盖的侧壁。
- 根据权利要求1所述的污水盖组件,其特征在于,所述调节钮(86)穿过固定盖(84)固定安装于调节阀(85)上,所述调节阀(85)能够跟随调节钮(86)一起转动,所述固定盖(84)不随调节钮(86)一起转动。
- 根据权利要求1所述的污水盖组件,其特征在于,所述端盖主体的端口为圆形,所述端盖主体上设置有与水箱密封连接的圆形污水盖密封圈。
- 根据权利要求6所述的污水盖组件,其特征在于,所述调节钮(86)沿横截面呈非圆形,和/或所述调节钮(86)侧面为防滑面。
- 根据权利要求1所述的污水盖组件,其特征在于,所述端盖主体(80)上设置有环形密封槽(802),环形密封槽(802)绕设于污水口外侧,环形密封槽内固定容置有密封圈(803)。
- 一种水箱,其特征在于,包括壳体(70)和如权利要求1-12任一项所述的污水盖组件,所述壳体(70)包括至少一个容纳腔和开口,所述开口与一个容纳腔相连通,所述污水盖组件密封盖合于开口上。
- 一种清洁设备,其特征在于,包括滚刷组件、螺杆组件、设备主体,电源模块和控制模块;滚刷组件和螺杆组件均安装于设备主体上;设备主体(6)上开设有盛污槽,螺杆组件(12)可转动安装于盛污槽(13)内,螺杆组件(12)紧密贴合或贴近设置于盛污槽(13)内,所述盛污槽(13)开设有朝向滚刷组件的长条形接污口(131),所述盛污槽(13)的一端设置有排污口(132),所述排污口与污水腔相连通,所述螺杆组件与所述滚刷组件挤压接触设置,所述螺杆组件能够挤压滚刷组件上的水和污物,所述滚刷组件与盛污槽与及所述螺杆组件配合能够传输水和污物至排污口(132),所述排污口与污水箱相连接;所述控制模块能够控制清洁设备运行,所述电源模块能够为清洁设备提供电能。
- 根据权利要求14所述的清洁设备,其特征在于:还设置有滚刷检测结构,滚刷检测结构能够检测滚刷组件(300)上的滚刷层是否有水。
- 根据权利要求15所述的地面清洁设备,其特征在于:滚刷检测结构包括两个间隔设置的导电触点,导电触点与滚刷组件(300)上的滚刷层相接触设置,两个导电触点分别通过导线与电源模块的连通,通过两个导电触点之间是否导电检测滚刷层是否有水。
- 根据权利要求14、15或16任一项所述的清洁设备,其特征在于:地刷模块上开设有多个第一补水孔(110),第一补水孔(110)朝向滚刷组件, 第一补水孔(110)通过抽水管与清水腔连接;所述盛污槽上开设有第二补水孔(226),所述第二补水孔(226)设置于盛污槽远离排污口(132)的一端,所述第二补水孔(226)通过抽水管与清水箱连接。
- 根据权利要求14所述的清洁设备,其特征在于:污水箱上设置开设有透气孔(804)。
- 根据权利要求18所述的清洁设备,其特征在于:污水箱内壁设置有遮挡槽(805),遮挡槽(805)内容置有阻水棉(806),所述遮挡槽(805)的一个侧壁与透气孔(804)相对应;或所述透气孔(804)上覆盖有防水透气膜。
- 根据权利要求14所述的清洁设备,其特征在于:所述滚刷组件、螺杆组件及盛污槽的组合、污水箱沿水平方向依次设置,螺杆组件及盛污槽的组合高度低于滚刷组件与污水箱的高度,滚刷组件与污水箱之间凹部位置设置有水泵和操作杆的连接部。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202223459757 | 2022-12-23 | ||
| CN202223459757.6 | 2022-12-23 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2024130933A1 true WO2024130933A1 (zh) | 2024-06-27 |
Family
ID=89643286
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2023/092128 Ceased WO2024130933A1 (zh) | 2022-12-23 | 2023-05-05 | 一种可调节污水盖组件、水箱及清洁设备 |
Country Status (2)
| Country | Link |
|---|---|
| CN (2) | CN118236007A (zh) |
| WO (1) | WO2024130933A1 (zh) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119413984A (zh) * | 2025-01-08 | 2025-02-11 | 泰州市成兴环境检测技术有限公司 | 一种用于环境水质检测的检测装置以及方法 |
| CN120926141A (zh) * | 2025-10-10 | 2025-11-11 | 台州金湖机电有限公司 | 高稳定性潜水泵 |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119915442B (zh) * | 2025-03-20 | 2025-07-11 | 仪征威业油泵油嘴有限公司 | 一种汽车油泵阀门测试装置 |
Citations (14)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2002205757A (ja) * | 2000-10-30 | 2002-07-23 | Yoshino Kogyosho Co Ltd | 注出キャップ |
| AU2003213300A1 (en) * | 2002-08-19 | 2004-03-04 | Breville Pty Ltd | Steam cap |
| CN107651302A (zh) * | 2017-10-27 | 2018-02-02 | 宁夏大健康科技产业有限公司 | 肉苁蓉粉分装装置 |
| CN112450084A (zh) * | 2019-12-31 | 2021-03-09 | 丰疆智能(深圳)有限公司 | 清粪机和其水箱 |
| CN112568824A (zh) * | 2020-11-20 | 2021-03-30 | 江苏美的清洁电器股份有限公司 | 清洁设备及其控制方法和装置、电子设备和存储介质 |
| CN215383730U (zh) * | 2021-04-27 | 2022-01-04 | 中山市仁器互联技术有限公司 | 洗地机水箱结构及洗地机 |
| ES1285316U (es) * | 2021-11-03 | 2022-01-24 | Zenit Estudio De Diseno E Innovacion S L | Tapa actuadora con tambor interior |
| CN114158990A (zh) * | 2021-12-17 | 2022-03-11 | 珠海格力电器股份有限公司 | 污水箱及洗地机 |
| CN216020834U (zh) * | 2021-07-14 | 2022-03-15 | 尚科宁家(中国)科技有限公司 | 一种清洁效果好的表面清洁机 |
| CN114275333A (zh) * | 2020-07-02 | 2022-04-05 | 中山市华宝勒生活用品实业有限公司 | 一种旋转封闭盖 |
| CN216628441U (zh) * | 2021-12-17 | 2022-05-31 | 珠海格力电器股份有限公司 | 污水箱及洗地机 |
| CN216628435U (zh) * | 2021-11-29 | 2022-05-31 | 东莞芯速科技有限公司 | 一种用于洗地机的污水箱及其洗地机 |
| FR3117462A1 (fr) * | 2020-12-10 | 2022-06-17 | L'oreal | Dispositif de conditionnement d’un produit, notamment cosmétique, comprenant un capot verrouillé et déverrouillé par appui axial. |
| CN217852768U (zh) * | 2022-03-03 | 2022-11-22 | 苏州新清松智能科技有限公司 | 一种洗刷组件及清洁设备 |
-
2023
- 2023-05-05 CN CN202310491587.XA patent/CN118236007A/zh active Pending
- 2023-05-05 CN CN202321038727.XU patent/CN220403913U/zh active Active
- 2023-05-05 WO PCT/CN2023/092128 patent/WO2024130933A1/zh not_active Ceased
Patent Citations (14)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2002205757A (ja) * | 2000-10-30 | 2002-07-23 | Yoshino Kogyosho Co Ltd | 注出キャップ |
| AU2003213300A1 (en) * | 2002-08-19 | 2004-03-04 | Breville Pty Ltd | Steam cap |
| CN107651302A (zh) * | 2017-10-27 | 2018-02-02 | 宁夏大健康科技产业有限公司 | 肉苁蓉粉分装装置 |
| CN112450084A (zh) * | 2019-12-31 | 2021-03-09 | 丰疆智能(深圳)有限公司 | 清粪机和其水箱 |
| CN114275333A (zh) * | 2020-07-02 | 2022-04-05 | 中山市华宝勒生活用品实业有限公司 | 一种旋转封闭盖 |
| CN112568824A (zh) * | 2020-11-20 | 2021-03-30 | 江苏美的清洁电器股份有限公司 | 清洁设备及其控制方法和装置、电子设备和存储介质 |
| FR3117462A1 (fr) * | 2020-12-10 | 2022-06-17 | L'oreal | Dispositif de conditionnement d’un produit, notamment cosmétique, comprenant un capot verrouillé et déverrouillé par appui axial. |
| CN215383730U (zh) * | 2021-04-27 | 2022-01-04 | 中山市仁器互联技术有限公司 | 洗地机水箱结构及洗地机 |
| CN216020834U (zh) * | 2021-07-14 | 2022-03-15 | 尚科宁家(中国)科技有限公司 | 一种清洁效果好的表面清洁机 |
| ES1285316U (es) * | 2021-11-03 | 2022-01-24 | Zenit Estudio De Diseno E Innovacion S L | Tapa actuadora con tambor interior |
| CN216628435U (zh) * | 2021-11-29 | 2022-05-31 | 东莞芯速科技有限公司 | 一种用于洗地机的污水箱及其洗地机 |
| CN114158990A (zh) * | 2021-12-17 | 2022-03-11 | 珠海格力电器股份有限公司 | 污水箱及洗地机 |
| CN216628441U (zh) * | 2021-12-17 | 2022-05-31 | 珠海格力电器股份有限公司 | 污水箱及洗地机 |
| CN217852768U (zh) * | 2022-03-03 | 2022-11-22 | 苏州新清松智能科技有限公司 | 一种洗刷组件及清洁设备 |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN119413984A (zh) * | 2025-01-08 | 2025-02-11 | 泰州市成兴环境检测技术有限公司 | 一种用于环境水质检测的检测装置以及方法 |
| CN120926141A (zh) * | 2025-10-10 | 2025-11-11 | 台州金湖机电有限公司 | 高稳定性潜水泵 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN118236007A (zh) | 2024-06-25 |
| CN220403913U (zh) | 2024-01-30 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2024130933A1 (zh) | 一种可调节污水盖组件、水箱及清洁设备 | |
| CN101657135B (zh) | 干湿两用地板清洁装置 | |
| CN111989018B (zh) | 清洁器的吸嘴 | |
| WO2023213278A1 (zh) | 一种地面清洁装置 | |
| CN114869170B (zh) | 清洁器 | |
| CN114376483B (zh) | 具有电池装置的湿式表面清洁设备 | |
| US20240081602A1 (en) | Cleaning devices | |
| KR20240013789A (ko) | 클리닝 장치 | |
| EP4298977A1 (en) | Mopping apparatus for use in floor cleaning and cleaning device | |
| EP1602306B1 (en) | Complex type suction cleaner | |
| WO2022218411A1 (zh) | 一种吸尘前置的地面清洁设备 | |
| CN114468885B (zh) | 表面清洁设备 | |
| CN219353791U (zh) | 清洁设备 | |
| CN219353790U (zh) | 清洁设备 | |
| CN217744265U (zh) | 表面清洁设备 | |
| CN116784716A (zh) | 一种一体式支撑架、模块化结构及清洁设备 | |
| CN116807304A (zh) | 一种洗刷组件及清洁设备 | |
| WO2024160017A1 (zh) | 清洁设备 | |
| CN216454826U (zh) | 一种可抽吸的地面清洁设备 | |
| CN118557097A (zh) | 一种便于拆卸清洗的清洁机器人 | |
| CN118892285A (zh) | 一种洗地机清洁设备 | |
| RU2830844C2 (ru) | Устройство для уборки | |
| CN116942024A (zh) | 一种具有污物切割组件的清洁设备 | |
| WO2024131920A1 (zh) | 一种清洁设备用水箱及清洁设备 | |
| CN115067817A (zh) | 一种可抽吸的地面清洁设备 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 23905124 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 23905124 Country of ref document: EP Kind code of ref document: A1 |