CN218625372U - Multi-head rotating device with extrusion function - Google Patents
Multi-head rotating device with extrusion function Download PDFInfo
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- CN218625372U CN218625372U CN202222161019.7U CN202222161019U CN218625372U CN 218625372 U CN218625372 U CN 218625372U CN 202222161019 U CN202222161019 U CN 202222161019U CN 218625372 U CN218625372 U CN 218625372U
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Abstract
The utility model provides a bull has rotary device of extrusion function, wherein, bull rotary device includes the base, install on the base and hold gear box, the transmission shaft, the bearing cage and a plurality of connecting piece of gear train, the transmission shaft is pegged graft to the base inside, the driving gear and the transmission shaft of gear train are connected, two and more than two driven gears distribute around the driving gear and mesh with the driving gear, the bearing cage is installed on gear box, the connecting piece penetrates the bearing cage after the suit is in driven gear, constitute the bull rotary device that rotates under the transmission of transmission shaft from this; the multi-head rotating device is combined with the driving device, and a working tool is arranged on a connecting piece of the multi-head rotating device, namely the working tool which is powered by the driving device to perform multi-head simultaneous rotating operation is formed. The utility model discloses can utilize different operation utensil to carry out the rotatory operation of different bull, alleviate operation personnel's working strength, improve the operating efficiency, experience for the good use of user.
Description
Technical Field
The utility model relates to a rotary device especially relates to a bull has rotary device who extrudes function, belongs to rotary motion device's manufacturing technical field.
Background
In some jobs and lives, people often need to work in a rotating manner, for example, to wipe, polish or abrade the surface of an object, to scrub or massage certain parts of the body, and so on. These works can be carried out simultaneously through a plurality of rotatory operation heads sometimes, so, not only can improve work efficiency, can also carry out the replenishment and the coordination of mutual operation effect through a plurality of operation heads, obtain better operation effect and higher operating efficiency, consequently, this kind of bull rotary device and bull rotatory operation ware thereof have wide application prospect and huge market potential. For this reason, a corresponding technical scheme needs to be designed for solution.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a bull has rotary device of extruding function to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a multi-headed rotary device with extrusion, comprising:
the device comprises a base, a gear box, a planetary gear box rotating mechanism shell gear box, a transmission shaft mechanism, a planetary gear set, a rotary head bearing cover, a plurality of rotary head connecting pieces, a plurality of cylindrical mechanisms and a plurality of rotary heads;
the base is an annular cylindrical component comprising a bottom part and a top part, a first bearing is installed inside the base, the top part of the base is connected with the planetary gear box rotating mechanism shell, the transmission shaft is inserted in the first bearing, and the top end of the transmission shaft is positioned inside the planetary gear box rotating shell;
the planetary gear set comprises a driving gear and driven gears, one end of a rotating shaft of the driving gear is connected with the top end of the transmission shaft, the driven gears are distributed around the driving gear in a planetary shape, and the driven gears are respectively meshed with the driving gear;
the planetary gear box is provided with a cavity for accommodating the planetary gear set, a shaft lever matched with the driven gear is arranged in the cavity, and second bearings are respectively arranged on the shaft lever;
the rotor bearing cover is provided with a shape capable of being matched with the planetary gear box, the rotor bearing cover is correspondingly installed on the planetary gear box and is matched with a cavity of the planetary gear box, which contains the planetary gear set, to form a cavity which contains the planetary gear set, a third bearing seat is arranged inside the rotor bearing cover and corresponds to the rotating shaft of the driving gear, a rotor inserting hole is arranged on the rotor bearing cover and corresponds to each driven gear, a fourth bearing seat is arranged inside the rotor bearing cover and corresponds to the rotor inserting hole, a third bearing and a fourth bearing are respectively arranged in the third bearing seat and the fourth bearing seat, and the other end of the rotating shaft of the driving gear is inserted into the third bearing;
the rotary joint connecting piece is a cylinder or a step-type cylinder member, a part of the rotary joint connecting piece is sleeved in the fourth bearing after passing through each rotary joint inserting hole respectively and is sleeved with each driven gear, and the end of the rotary joint connecting piece positioned on one side of each driven gear is inserted on the second bearing respectively; the rotary heads are respectively connected to the other end heads of the rotary head connecting pieces positioned outside the rotary head bearing cover;
the transmission shaft can drive the driving gear to rotate, the rotating driving gear drives each driven gear to rotate respectively, each rotating driven gear drives each rotating head connecting piece to rotate respectively, each rotating head connecting piece drives each rotating head to rotate respectively and drives the connecting pieces and the tubular structure to rotate
Further, the device also comprises a driving device with a driving shaft and a working device;
the driving device can output torque to the outside through a driving shaft of the driving device;
the multi-head rotating device with the extrusion function is connected to the driving device through the bottom of the base of the multi-head rotating device, and a transmission shaft of the multi-head rotating device with the extrusion function is connected with a driving shaft of the driving device;
the connecting pieces rotate under the rotation of the transmission shaft driven by the driving shaft of the driving device and through the transmission of the gear set, and the rotating connecting pieces drive the respective working tools to rotate simultaneously.
Further, the working implement is a scrub head;
the scrubbing head comprises a connecting column, a liquid storage box and a scrubbing cover, the connecting column is arranged at the bottom of the liquid storage box and is used for being connected with the connecting piece, the scrubbing cover covers an opening in the top of the liquid storage box, and a liquid outlet hole communicated with the liquid storage box is formed in the edge of the scrubbing cover and is used for discharging bath foam; wherein, an air inlet hole is arranged at the central position of the scrubbing cover and used for balancing air pressure.
Furthermore, the gear box is also provided with a skirt edge which is used for shielding water flow from the side of the bearing seat from directly sputtering the rotating structure, and a drainage groove is arranged at the mutual connection position between the skirt edges on the side walls of the sections of the gear box corresponding to the positions of the gears.
Further, the drainage groove is located at an intermediate position of the adjacent rotating tub; one end of the bearing cover is also provided with a flow baffle which extends outwards and obliquely, and the flow baffle is used for preventing water in the skirt edge from directly shooting to the rotary operation tool from the side surface of the drainage groove.
Furthermore, the gear set comprises a driving gear and driven gears, one end of a rotating shaft of the driving gear is connected with the top end of the transmission shaft, two or more driven gears are distributed around the driving gear, and each driven gear is respectively meshed with the driving gear;
the interactive height of the driving gear and the driven gear is 2.5mm.
Furthermore, the driving gear is connected with the transmission shaft in an inserting mode, or the driving gear and the transmission shaft are manufactured into an integrated combined component in an integral manufacturing mode.
Furthermore, the rotary head bearing cover is connected with the planetary gear box in an inserting mode, and the rotary head is connected with the rotary head connecting piece in an inserting or threaded screwing mode.
Furthermore, the scrubbing cover is provided with attachments for assisting cleaning, the attachments are distributed in a wavy shape or a stalactite shape,
specifically, the outer side of the maximum radius of the liquid outlet is provided with a full circle of attachments in a dam shape.
Compared with the prior art, the beneficial effects of the utility model are that:
1) The utility model provides a bull has rotary device who extrudes the function:
the multi-head rotating device with the extrusion function comprises a base, a gear box, a transmission shaft, a gear set, a bearing cover and a plurality of connecting pieces, wherein the transmission shaft is inserted in a bearing in the base, the gear box is connected to the top of the base, the gear set is accommodated in the gear box, a driving gear of the gear set is connected with the transmission shaft, two or more driven gears are distributed around the driving gear and are meshed with the driving gear, the bearing cover is arranged on the gear box, a part of the connecting pieces penetrates through a rotating head inserting hole in the bearing cover and then are sleeved in the driven gear, each rotating head is respectively connected to the connecting pieces, the transmission shaft can drive the driving gear to rotate, the rotating driving gear drives each driven gear to respectively rotate, and the rotating driven gear respectively drives the connecting pieces to rotate;
the multi-head rotary working device is formed by connecting the multi-head rotary device provided by the scheme with the driving device and then respectively arranging working tools on a plurality of connecting pieces of the multi-head rotary device, wherein the working tools are connected with a transmission shaft of the multi-head rotary device through a driving shaft of the driving device and simultaneously rotate a plurality of working tools through power provided by the driving device.
2) The multi-head rotating device and the multi-head rotating operation device can help people to perform multi-head rotating operation or rotating massage operation, reduce working strength, improve operation efficiency and operation effect, and create better work and life experience for users.
3) The multi-head rotating device and the multi-head rotating operation device thereof have the advantages of novel and unique design, simple and compact structure, convenience in use and reliability in operation, and therefore have great popularization and application values.
Drawings
Fig. 1 is an exploded perspective view of a multi-head rotating device with an extrusion function according to an embodiment of the present invention;
fig. 2 is a schematic bottom perspective view of a bearing housing of a multi-head rotating device with an extrusion function according to an embodiment of the present invention;
fig. 3 is a schematic cross-sectional view of a transmission shaft of a multi-head rotating device with an extrusion function according to an embodiment of the present invention;
fig. 4 is a schematic view of a three-dimensional structure of a multi-head rotating device with an extrusion function, in which a transmission shaft and a driving gear are integrated;
fig. 5 is a schematic perspective view of a three-head rotary working device according to an embodiment of the present invention;
fig. 6 is a schematic perspective view of a double-head rotary working device according to an embodiment of the present invention;
fig. 7 is a schematic perspective view of a dual-head rotary working device using a shower head as a driving device and a plurality of scrubbing heads as working tools according to an embodiment of the present invention.
In the figure: 100-multi-head rotating device; 110-base, 111-first bearing, 112-snap; 120-gear box, 121-shaft, 122-second bearing; 130-a drive shaft; 140-gear set, 141-driving gear, 142-driven gear; 150-bearing cover, 151-third bearing seat, 152-rotor insertion hole, 153-fourth bearing seat, 154-third bearing and 155-fourth bearing; 160-a connector; 171-brush head, 172-massage head, 173-scrub head, 1731-main liquid outlet hole and 1732-inclined liquid outlet hole; 180-skirt edge, 181-drainage groove, 182-baffle plate 200-driving device; 210-rotating shaft, 220-buckle, 230-impeller.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1, an embodiment of the present invention provides an exploded three-dimensional structure schematic view of a multi-head rotating device with an extrusion function, and fig. 2. An embodiment of the present invention provides a multi-head rotating device with an extrusion function, in which a schematic view of a bottom three-dimensional structure of a bearing housing thereof is shown:
a multi-headed extrusion-capable rotary apparatus 100 comprising:
a base 110, a gear box 120, a drive shaft 130, a gear set 140, a bearing housing 150, a plurality of connections 160, and a plurality of swivels 170;
the base 110 is a cylindrical member including a bottom and a top, a first bearing 111 is installed inside the base, the gear box 120 is connected to the top of the base, the transmission shaft 130 is inserted into the first bearing 111, and the top end of the transmission shaft 111 is located inside the gear box 120;
the gear set 140 includes a driving gear 141 and driven gears 142, one end of the rotation shaft of the driving gear 141 is connected to the top end of the transmission shaft 130, two or more driven gears 142 are distributed around the driving gear 141, and each driven gear 142 is engaged with the driving gear 141;
the gear box 120 has a cavity for accommodating the gear set 140, and the interior of the cavity has a shaft 121 mounted to match each driven gear 142, and each shaft 121 has a second bearing 122 mounted thereon;
the bearing housing 150 has a shape capable of being matched with the gear box 120, the bearing housing 150 is correspondingly installed on the gear box 120 and is matched with a cavity of the gear box 120, which accommodates the gear set 140, to form a chamber for accommodating the gear set 140, a third bearing seat 151 is arranged inside the bearing housing 150 and at a position corresponding to a rotating shaft of the driving gear 141, a swivel insertion hole 152 is arranged on the bearing housing 150 at a position corresponding to each driven gear 142, a fourth bearing seat 153 is arranged inside the bearing housing 150 and at a position corresponding to the swivel insertion hole 152, a third bearing 154 and a fourth bearing 155 are further respectively arranged in the third bearing seat 151 and the fourth bearing seat 153, and the other end of the rotating shaft of the driving gear 141 is inserted into the third bearing 154;
the connecting members 160 are cylindrical or stepped cylindrical members, a part of each connecting member 160 passes through each swivel insertion hole 152 and then is sleeved in each fourth bearing 155 and sleeved with each driven gear 142, and the end of each connecting member 160 at one side of each driven gear 142 is inserted in the second bearing 122;
the transmission shaft 130 can drive the driving gear 141 to rotate, the rotating driving gear 141 drives each driven gear 142 to rotate, and the rotating driven gears 142 drive the respective connecting members 160 to rotate.
From the above description, it can be seen that:
the bull rotary device that this embodiment provided, the on-line screen storage device comprises a base, the gear box, the transmission shaft, the gear train, bearing housing and a plurality of connecting piece, wherein, the transmission shaft is being inserted in the inside bearing of base, the gear box is being connected at the top of base, the gear train is being held in the gear box, the driving gear and the transmission shaft of gear train are connected, two and more than two driven gear distribute around the driving gear and with the driving gear meshing, the bearing housing is installed on the gear box, the suit is in driven gear after partly the bull patchhole on the bearing housing is passed to the connecting piece, the transmission shaft can drive the driving gear and rotate, the pivoted driving gear drives each driven gear and rotates respectively, pivoted driven gear drives the connecting piece respectively and rotates, and then can carry out corresponding bull rotation operation.
Further, as fig. 1 the embodiment of the present invention provides an exploded three-dimensional structure schematic diagram and fig. 3 of a multi-head rotating device, an embodiment of the present invention provides a cross-sectional structure schematic diagram of a transmission shaft of a multi-head rotating device, which is shown in the embodiment:
the driving gear 141 is connected with the transmission shaft 130 in an inserting manner; the bearing housing 150 is connected to the gear box 120 by a plug-in connection.
The connection of related parts can be simpler and more convenient by a plug-in mode or a thread screwing mode, thereby facilitating the disassembly and assembly of the multi-head rotating device.
Further, as shown in fig. 4, the three-dimensional structure of the multi-head rotating device provided by the embodiment of the present invention is a schematic diagram of a multi-head rotating device in which a transmission shaft and a driving gear are integrated, in the embodiment of the multi-head rotating device:
the driving gear 141 and the transmission shaft 130 are made into an integrated combined member by an integral manufacturing method.
The driving gear and the transmission shaft are manufactured into an integrated combined component in an integral manufacturing mode, for example, a casting or 3D printing mode, the structure of the multi-head rotating device can be further simplified, the number of parts of the multi-head rotating device is reduced, and the dismounting efficiency and the working reliability are improved.
Example 2
The present embodiment further provides a multi-head rotary working machine in addition to embodiment 1.
As shown in fig. 5, the embodiment of the present invention provides a three-head rotating operation device with a three-head structure, which specifically includes:
a driving device 200 having a driving shaft 210, the multi-head rotating device 100 according to any one of the embodiments 1, and a working implement, such as a bristle 171 shown in fig. 5, connected to the other end of each of the connecting members 160 of the multi-head rotating device 100, wherein:
the driving device 200 can output torque to the outside through the driving shaft 210 thereof;
the multi-head rotating device 100 is connected to the driving device 200 through the bottom of the base, and the transmission shaft 130 of the multi-head rotating device 100 is connected with the driving shaft 210 of the driving device 200;
the respective connecting members 160 are rotated by the rotation of the driving shaft 130 driven by the driving shaft 210 of the driving device 200 and driven by the gear set 140, and the respective rotating connecting members 160 simultaneously rotate the respective working implements, such as the bristles 171 shown in fig. 5.
From the above description, it can be seen that:
the multi-head rotary working device provided by the present embodiment is a working device formed by connecting the multi-head rotary device provided by the above embodiment 1 with a driving device, and then arranging working tools on a plurality of connecting pieces of the multi-head rotary device, wherein the working device is connected with a transmission shaft of the multi-head rotary device through a driving shaft of the driving device, and the driving device provides power to make a plurality of working tools simultaneously perform rotary work;
the rotatory operation ware of bull that this embodiment provided can accomplish different rotatory operation operations through different operation wares, alleviates operation personnel's working strength, improves the operating efficiency, gives user's good use experience.
Further, as an optimization, in this embodiment:
the driving device 200 and the base 110 of the multi-head rotating device 100 are further provided with a connecting mechanism, which is used for fixing the multi-head rotating device 100 on the driving device 200, respectively.
Specifically, as shown in fig. 1 and 5:
the connecting mechanism comprises a buckle 220 which is protruded on the driving device 200 and is positioned on the connecting surface of the driving device 200 and the base 110, and a clamping key 112 which is arranged at the bottom of the base 110 and extends towards the two sides of the base 110, wherein the clamping key 112 is wedge-shaped, and the multi-head rotating device 100 is wedged into the buckle 220 through the wedge-shaped clamping key 112 and is connected with the driving device 200; or
The connecting mechanism comprises an inverted U-shaped card door (not shown in the figure) protruding out of the driving device 200 and a card piece (not shown in the figure) arranged at the bottom of the base 110 and extending towards the two sides of the base, and a cavity (not shown in the figure) is arranged in the middle of the inverted U-shaped card door;
the fastener is an elastic diamond-shaped member (not shown in the figure) or a flat key (not shown in the figure) with an elastic bulge at the top, the multi-head rotating device 100 is clamped into the inverted U-shaped door through the elastic diamond-shaped member or the flat key to be connected with the driving device 200, and the elastic bulge at the diamond-shaped top of the elastic diamond-shaped member or the flat key is clamped into the cavity to lock the fastener in the door.
Obviously, the multi-head rotating device and the driving device are connected through the connecting mechanism, so that the multi-head rotating device and the driving device can be more conveniently and quickly assembled and disassembled.
Of course, the above-mentioned connecting mechanisms are only some of the many alternatives for the fast connection between the multi-head rotating device and the driving device, and for the sake of brevity, the present embodiment does not list more kinds of connecting mechanisms and connecting manners, but it should be understood by those skilled in the art that the multi-head rotating device and the driving device in the present embodiment may be provided with many kinds of connecting mechanisms or adopting many kinds of connecting manners, and in the prior art, as long as the method and the manner for the fast connection between the multi-head rotating device and the driving device in the present embodiment are suitable, the method and the manner should be within the scope of the present invention.
As an alternative embodiment, as shown in fig. 6, a schematic perspective structure diagram of a double-head rotary working device according to an embodiment of the present invention is shown:
in the double-head rotary working device provided by the embodiment, the driving device is a shower head 201 with a driving shaft 210, and the working device is a massage head 172 as shown in fig. 6;
the shower head 201 further comprises an impeller 230, the impeller 230 can rotate under the push of flowing water, and the rotating impeller 230 drives the driving shaft 210 thereof to output torque outwards.
From the above description, it can be seen that:
the shower head which can utilize running water to do work serves as the driving device to drive the multi-head rotating device in the embodiment, and the working device is arranged on the rotating head, as the massage head shown in fig. 6, the shower head can be utilized to massage the body in a bathroom, so that the working intensity of operators can be reduced, the massage working efficiency is improved, unsafe factors such as electric leakage and the like which can possibly occur to the electric driving device in a humid environment can be avoided, the waterpower can be fully utilized, the pleasure of bathing can be enjoyed, and better life experience and body health care can be obtained.
Further, as an optimization, as shown in fig. 7, the embodiment of the present invention provides a schematic three-dimensional structure of a dual-head rotary working device using a shower head as a driving device and a plurality of scrubbing heads as working devices, which is shown in the following drawings:
in the double-headed rotary working machine according to the present embodiment, as shown in fig. 7, the drive shaft 210 of the shower head 201 is located on the water spray surface side of the shower head 201.
As shown in fig. 6 and 7:
the gear box 120 of the multi-head rotating device 100 is further provided with a skirt edge 180, the skirt edge 180 is used for shielding water flow sprayed by the shower head 201, a drainage groove 181 is further arranged at a mutual connection position between the skirt edges 180 on the side walls of the gear boxes of the sections corresponding to the driven gears 142, a baffle plate 182 which extends outwards and obliquely is arranged at one end of the drainage groove 181 on the bearing cover 150 of the multi-head rotating device 100, and the baffle plate 182 is used for blocking direct impact of water flow sprayed by the shower head 201 on a working tool.
Further, in the embodiment shown in fig. 7, the working implement is a scrub head 173;
the scrub head 173 comprises a connection column 1731, a liquid storage box 1732 and a scrub cover 1733, wherein the connection column 1731 is arranged at the bottom of the liquid storage box 1732, the scrub cover 1733 covers an opening at the top of the liquid storage box 1732, a main liquid outlet hole 1734 is arranged at the center point of the scrub cover 1733, and a slant liquid outlet hole 1735 which is obliquely communicated with the liquid storage box 1732 is arranged at the edge of the scrub cover 1733.
In summary, it can be seen that:
firstly, the utility model forms a multi-head rotating device which rotates under the transmission of a transmission shaft through a base, a gear box, the transmission shaft, a gear set, a bearing cover and a plurality of connecting pieces;
secondly, the utility model combines the multi-head rotating device and the driving device, and sets the operation tool on the rotating head of the multi-head rotating device to form the tool for performing multi-head simultaneous rotating operation by providing power through the driving device, so that different operation tools can be utilized to perform different multi-head rotating operations, thereby reducing the working intensity of the operation personnel, improving the operation efficiency and providing good use experience for users;
finally, it can be seen that the utility model provides a bull rotary device and bull rotatory operation ware thereof, novel in design is unique, simple structure is compact, convenient to use, reliable operation have popularization and application value.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. A multi-head rotating device with an extrusion function is characterized by comprising:
the device comprises a base, a gear box, a planetary gear box rotating mechanism shell gear box, a transmission shaft mechanism, a planetary gear set, a rotary head bearing cover, a plurality of rotary head connecting pieces, a plurality of cylindrical mechanisms and a plurality of rotary heads;
the base is an annular cylindrical component comprising a bottom part and a top part, a first bearing is installed inside the base, the top part of the base is connected with the planetary gear box rotating mechanism shell, the transmission shaft is inserted in the first bearing, and the top end of the transmission shaft is positioned inside the planetary gear box rotating mechanism shell;
the planetary gear set comprises a driving gear and driven gears, one end of a rotating shaft of the driving gear is connected with the top end of the transmission shaft, a plurality of driven gears are distributed around the driving gear in a planetary shape, and the driven gears are respectively meshed with the driving gear;
the planetary gear box is provided with a cavity for accommodating the planetary gear set, a shaft lever matched with the driven gear is arranged in the cavity, and second bearings are respectively arranged on the shaft lever;
the rotary head bearing cover is provided with a shape matched with the planetary gear box, the rotary head bearing cover is correspondingly arranged on the planetary gear box and is matched with a cavity of the planetary gear box for accommodating the planetary gear set to form a cavity for accommodating the planetary gear set, a third bearing seat is arranged in the rotary head bearing cover and corresponds to the rotating shaft position of the driving gear, a rotary head inserting hole is arranged in the rotary head bearing cover and corresponds to each driven gear, a fourth bearing seat is arranged in the rotary head bearing cover and corresponds to the rotary head inserting hole, a third bearing and a fourth bearing are respectively arranged in the third bearing seat and the fourth bearing seat, and the other end of the rotating shaft of the driving gear is inserted in the third bearing;
the rotary joint connecting piece is a cylinder or a step-type cylinder member, a part of the rotary joint connecting piece is sleeved in the fourth bearing after passing through each rotary joint inserting hole respectively and is sleeved with each driven gear, and the end of the rotary joint connecting piece positioned on one side of each driven gear is inserted on the second bearing respectively; the rotary heads are respectively connected to the other end of each rotary head connecting piece positioned outside the rotary head bearing cover;
the transmission shaft can drive the driving gear to rotate, the rotating driving gear drives the driven gears to rotate respectively, the rotating driven gears drive the respective swivel connecting pieces to rotate respectively, and the swivel connecting pieces drive the respective swivels to rotate and drive the connecting pieces and the tubular structure to rotate respectively.
2. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein: further comprising: a drive device having a drive shaft and a working implement;
the driving device can output torque to the outside through a driving shaft of the driving device;
the multi-head rotating device with the extrusion function is connected to the driving device through the bottom of the base of the multi-head rotating device, and a transmission shaft of the multi-head rotating device with the extrusion function is connected with a driving shaft of the driving device;
the connecting pieces rotate under the rotation of the transmission shaft driven by the driving shaft of the driving device and through the transmission of the gear set, and the rotating connecting pieces drive the respective working tools to rotate simultaneously.
3. The multi-headed rotary device with extrusion function as set forth in claim 2, wherein:
the working tool is a scrubbing head;
the scrubbing head comprises a connecting column, a liquid storage box and a scrubbing cover, the connecting column is arranged at the bottom of the liquid storage box and is used for being connected with the connecting piece, the scrubbing cover covers an opening in the top of the liquid storage box, and a liquid outlet hole communicated with the liquid storage box is formed in the edge of the scrubbing cover and is used for discharging bath foam; wherein, an air inlet hole is arranged at the central position of the scrubbing cover and used for balancing air pressure.
4. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein:
the gear box is further provided with a skirt edge, the skirt edge is used for blocking water flow from the side of the bearing seat from directly sputtering the water flow onto the rotating structure, and a drainage groove is formed in the mutual connection position between the skirt edges on the side wall of each section of the gear box corresponding to each gear position.
5. The multi-headed rotary device with extrusion function as set forth in claim 4, wherein:
the multi-head rotating device with the extrusion function further comprises a rotating operation tool;
the drainage groove is positioned at the middle position of the adjacent rotary barrel; one end of the bearing cover is also provided with a flow baffle which extends outwards and obliquely, and the flow baffle is used for preventing water in the skirt edge from directly shooting to the rotary operation tool from the side surface of the drainage groove.
6. The multi-head rotating device with extrusion function as claimed in claim 1, wherein: the gear set comprises a driving gear and driven gears, one end of a rotating shaft of the driving gear is connected with the top end of the transmission shaft, two or more driven gears are distributed around the driving gear, and each driven gear is respectively meshed with the driving gear; the interactive height of the driving gear and the driven gear is 2.5mm.
7. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein:
the driving gear is connected with the transmission shaft in an inserting mode, or the driving gear and the transmission shaft are manufactured into an integrated combined component in an integral manufacturing mode.
8. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein:
the rotary head bearing cover is connected with the planetary gear box in an inserting mode, and the rotary head is connected with the rotary head connecting piece in an inserting or threaded screwing mode.
9. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein: the multi-head rotating device with the extrusion function further comprises a scrubbing cover:
the scrubbing cover is provided with attachments for assisting cleaning, and the attachments are distributed in a wavy or stalactite shape.
10. The multi-headed rotary device with extrusion function as set forth in claim 1, wherein: the outer side of the maximum radius of the liquid outlet is provided with a complete circle of attachments.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222161019.7U CN218625372U (en) | 2022-08-17 | 2022-08-17 | Multi-head rotating device with extrusion function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222161019.7U CN218625372U (en) | 2022-08-17 | 2022-08-17 | Multi-head rotating device with extrusion function |
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CN218625372U true CN218625372U (en) | 2023-03-14 |
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CN202222161019.7U Active CN218625372U (en) | 2022-08-17 | 2022-08-17 | Multi-head rotating device with extrusion function |
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2022
- 2022-08-17 CN CN202222161019.7U patent/CN218625372U/en active Active
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