CN204541999U - Axis lift mop washing barrel and mop - Google Patents

Axis lift mop washing barrel and mop Download PDF

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Publication number
CN204541999U
CN204541999U CN201420680098.5U CN201420680098U CN204541999U CN 204541999 U CN204541999 U CN 204541999U CN 201420680098 U CN201420680098 U CN 201420680098U CN 204541999 U CN204541999 U CN 204541999U
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China
Prior art keywords
track
axis
washing barrel
lifting shaft
mop washing
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CN201420680098.5U
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Chinese (zh)
Inventor
朱雪林
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Jiaxing Jackson Travel Products Co Ltd
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Jiaxing Jackson Travel Products Co Ltd
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Priority to CN201420680098.5U priority Critical patent/CN204541999U/en
Priority to HK15104402.7A priority patent/HK1202215A2/en
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Abstract

The utility model discloses axis lift mop washing barrel and mop, it comprises: staving, and the bottom in described staving is connected with axis; Described axis comprises fixed axis and lifting shaft, the spacing block set that described axis also comprises the track for connecting described fixed axis and described lifting shaft and matches with described track; Described track comprise the kerve hole that connected by link slot and in upper slotted eye; The top of described lifting shaft is provided with rotating shaft holding part, the bottom of described rotating shaft holding part is provided with Lower shaft sleeve, the top of described rotation holding part is provided with Upper shaft sleeve, described Upper shaft sleeve is socketed with rotating shaft, and described rotating shaft has the bottom being resisted against described Lower shaft sleeve and the top supplying to be fixedly connected with mop.Axis lift mop washing barrel of the present utility model does not comprise basket, and when cleaning mop, mop fully can contact with water thus improve the cleaning performance of mop washing barrel like this.

Description

Axis lift mop washing barrel and mop
Technical field
The utility model relates to cleaning device technical field, especially a kind of axis lift mop washing barrel and mop.
Background technology
Traditional mop washing barrel comprises the cleaning part and drying portion that are arranged side by side usually, but this mop washing barrel can take larger space (such as Chinese patent CN201330360846.2).Occurred that being elevated rinsing and spin drying barrel solved the excessive problem that takes up room afterwards, this cleaning lifting spin dryer tube only needs use staving and basket (such as Chinese patent CN201320013544.2).Usually, this basket is coaxially articulated with bracing frame or lifting shaft, this bracing frame or lifting shaft can move up and down along this inner wall of barrel, thus, after this basket rises in company with this bracing frame or lifting shaft, be positioned over mophead in this basket higher than the horizontal plane in staving, the spin-drying operation of mophead can be carried out, after this basket moves down in company with this bracing frame, the mophead be positioned in this basket is positioned under the horizontal plane of staving, can carry out the cleaning operation of mophead.As long as vertically adjust the position of basket when using above-mentioned mop washing barrel, can clean mophead and dry.But in the process of cleaning mop due to basket arrange can cause mophead can not full extension in water, cause the silt in mophead cannot be fully clean; In prior art, basket uses bearing holder (housing, cover) to be connected to bracing frame or lifting shaft usually in addition, and bearing cannot seal usually, therefore can cause getting rusty and wearing and tearing of bearing after sand and sewage enter into Bearing inner in mop-cleaning process, affect the service life of mop washing barrel.
Utility model content
The utility model provides a kind of axis lift mop washing barrel, the problem that the setting that this axis lift mop washing barrel not only can solve basket causes mop to clean, and the problem that the bearing that can solve basket easily weares and teares.
The technical solution of the utility model comprises a kind of axis lift mop washing barrel, and it comprises staving, and the bottom in described staving is connected with axis; Described axis comprises fixed axis and lifting shaft, the spacing block set that described axis also comprises the track for connecting described fixed axis and described lifting shaft and matches with described track; Described track comprise the kerve hole that connected by link slot and in upper slotted eye; The top of described lifting shaft is provided with rotating shaft holding part, and the bottom of described rotating shaft holding part is provided with Lower shaft sleeve, and the top of described rotation holding part is provided with Upper shaft sleeve.
The utility model axis lift mop washing barrel improves further and is: the top of described lifting shaft is provided with rotating shaft holding part, the bottom of described rotating shaft holding part is provided with a Lower shaft sleeve, the top of described rotating shaft holding part is provided with a Upper shaft sleeve, described rotary sleeve is connected to described Upper shaft sleeve, and the bottom of described rotating shaft is resisted against described Lower shaft sleeve.
The utility model axis lift mop washing barrel improves further and is: described axis fixed axis cylindrically, described track is arranged at the inner surface of described axis fixed axis, described spacing block set is arranged at the bottom of described lifting shaft, and described fixed hub is connected to outside described lifting shaft.
The utility model axis lift mop washing barrel improves further and is: described lifting shaft cylindrically, described track is arranged at the outer surface of described fixed axis, described spacing block set is arranged at the bottom inside described lifting shaft, and described lifting shaft is socketed on outside described fixed axis.
The utility model axis lift mop washing barrel improves further and is: described lifting shaft cylindrically, described track is arranged at the inner surface of described lifting shaft, described spacing block set is connected to the top of described fixed axis, and described lifting shaft is socketed on the outside of described fixed axis.
The utility model axis lift mop washing barrel improves further and is: described link slot is apical ring groove, described apical ring groove by described kerve hole and described in upper slotted eye be connected in turn, described kerve hole and in the top of upper slotted eye be provided with guiding surface.
The utility model axis lift mop washing barrel improves further and is: described link slot comprises ascending track, decline track, first turns to track and second to turn to track; The bottom of described ascending track is connected to directly over kerve hole, and the bottom of described decline track is connected to the side at top, described kerve hole; Described first turns to one end of track to be connected to the top of described ascending track, its other end be connected to described in the side at upper slotted eye top; Described second turns to one end of track to be connected to the top of described decline track, its other end be connected to described in directly over upper slotted eye.
The utility model axis lift mop washing barrel improves further and is: described link slot comprises ascending track, decline track, first turns to track and second to turn to track; The top of described decline track be connected to described in immediately below upper slotted eye, the top of described ascending track be connected to described in side bottom upper slotted eye; Described first turns to one end of track to be connected to the bottom of described ascending track, and its other end is connected to immediately below described kerve hole; Described second turns to one end of track to be connected to the bottom of described decline track, its other end be connected to described in side bottom upper slotted eye.
Further improvement of the utility model is: described Upper shaft sleeve is socketed with rotating shaft, and described rotating shaft has the bottom being resisted against described Lower shaft sleeve and the top supplying to be fixedly connected with mop.
The utility model axis lift mop washing barrel improves further and is: the side at described decline track top is provided with turnover breach.
The utility model axis lift mop washing barrel improves further and is: described kerve hole and described in the number of upper slotted eye be the integral multiple of the number of described spacing block set.
The technical solution of the utility model also comprises the mop that a kind of and above-mentioned axis lift mop washing barrel matches, and it comprises mophead, and described mophead comprises groove for being connected with the rotating shaft of axis lift mop washing barrel and claw sheet.
The utility model is owing to have employed above technical scheme, making it have following beneficial effect is: axis lift mop washing barrel of the present utility model does not comprise basket, and when cleaning mop, mop fully can contact with water thus improve the cleaning performance of mop washing barrel like this; Mophead connector is connected to lifting shaft by axle and axle sleeve, and because axle and axle sleeve form the structure of a sealing, in the process of cleaning mop, water and fool can not enter axle and axle sleeve inside, make axle not easily get rusty and wear and tear.
Accompanying drawing explanation
Fig. 1 is the utility model axis lift mop washing barrel and mop explosive view in a first embodiment;
Fig. 2 is the sectional view of the utility model axis lift mop washing barrel when cleaning mop in a first embodiment;
Fig. 3 is the partial enlarged drawing of the axis in Fig. 2;
Fig. 4 is the sectional view of fixed axis in the first embodiment of the utility model axis lift mop washing barrel;
Fig. 5 be connected in the first embodiment of the utility model axis lift mop washing barrel fixed axis inwall track launch after schematic diagram;
Fig. 6 is sectional view when drying mop in the first embodiment of the utility model axis lift mop washing barrel and mop;
Fig. 7 is the utility model axis lift mop washing barrel explosive view in a second embodiment;
Fig. 8 is the sectional view of the utility model axis lift mop washing barrel when cleaning mop in a first embodiment;
Fig. 9 is the partial sectional view of staving and fixed axis in the second embodiment of the utility model axis lift mop washing barrel;
Figure 10 is the schematic diagram after the axis inserted sheet expansion in a second embodiment of the utility model axis lift mop washing barrel;
Figure 11 is the explosive view in the 3rd embodiment of the utility model axis lift mop washing barrel;
Figure 12 is office's sectional view of axis in the 3rd embodiment of the utility model axis lift mop washing barrel; And
Figure 13 is the schematic diagram in the 3rd embodiment of the utility model axis lift mop washing barrel after the expansion of axis inserted sheet.
Detailed description of the invention
Below by way of specific instantiation, embodiment of the present utility model is described, those skilled in the art the content disclosed by this description can understand other advantages of the present utility model and effect easily.The utility model can also be implemented or be applied by detailed description of the invention different in addition, and the every details in this description also can based on different viewpoints and application, carries out various modification or change not deviating under spirit of the present utility model.
Refer to Fig. 1 and Fig. 2, Figure 1 shows that the utility model axis lift mop washing barrel and mop explosive view in a first embodiment, Fig. 2 is the sectional view of the utility model axis lift mop washing barrel when cleaning mop in a first embodiment.As shown in Figure 1 or 2, axis lift mop washing barrel of the present utility model comprises a staving 101, bottom in this staving 101 is formed with a groove, a ringwise thread bush 103 is assembled with in this groove, this thread bush 103 is fixed on the bottom of described staving 101 by self-tapping screw, inwall in this thread bush 103 is provided with internal thread, and this thread bush 103 is for connecting axis 104.This axis 104 comprises a fixed axis 105, three axis inserted sheets 106 and a lifting shaft 107.This fixed axis 105 is cylindrical, and the bottom outside it is provided with the external screw thread being matched with described thread bush 103, and this fixed axis 105 and thread bush 103 are spirally connected by above-mentioned screw thread.Cylindrically, its inwall is provided with draw-in groove to described fixed axis 105, and inner surface arranges reeded described axis inserted sheet 106 and is inserted in above-mentioned draw-in groove.The inside of described fixed axis 105 is inserted with columned lifting shaft 107, and the bottom outside wall of this lifting shaft 107 is provided with spacing block set 112.The quantity of described spacing block set 112 is 3 in the present embodiment, identical with the number of described axis inserted sheet 106.Described spacing block set 112 is slidedly arranged in the groove of described axis inserted sheet 106.
Please continue to refer to the partial enlarged drawing that Fig. 3, Fig. 3 are the axis in Fig. 2.As shown in figures 1 and 3, the top of described lifting shaft 107 is provided with a rotating shaft holding part 113; Accommodate a Lower shaft sleeve 108 in the bottom of this rotation holding part 113, the top of this Lower shaft sleeve 108 is formed with the groove for supporting rotating shaft 110; Be inserted with a Upper shaft sleeve 109 at the opening part of this rotating shaft holding part 113, this Upper shaft sleeve 109 is socketed on the stage casing of described rotating shaft 110.The bottom of this rotating shaft 110 is resisted against the groove at described Lower shaft sleeve 108 top, and its other end extends to the outside of described rotating shaft holding part 113 through described Upper shaft sleeve 109.A mophead connector 111 is connected with at the top of this rotating shaft 110.This mophead connector 111 is fixedly connected with described rotating shaft 110, and when rotating this mophead connector 111, described rotating shaft 110 therewith rotates.Rotating shaft 110 described in the present embodiment and described Upper shaft sleeve 109 fit tightly, the sealing state of described rotating shaft holding part 113 can be kept like this, can prevent sewage and silt from entering the inside of this rotating shaft holding part 113 and causing the wearing and tearing of described rotating shaft 110 like this in the process of cleaning mop.
Mop 120 of the present utility model comprises a mophead 121 as shown in figures 1 and 3, and the central authorities of this mophead 121 bottom surface are provided with a link slot, is provided with the claw sheet 122 with projection inside multiple lower edge around this link slot.Described mop 120 is connected to mophead connector 111 (this is prior art, therefore portion adds to illustrate) by above-mentioned link slot.
It is the sectional view of fixed axis in the first embodiment of the utility model axis lift mop washing barrel please continue to refer to Fig. 4 and Fig. 5, Fig. 4; Fig. 5 be connected in the first embodiment of the utility model axis lift mop washing barrel fixed axis inwall track launch after schematic diagram.As shown in Figure 1 and Figure 4, the inwall of described fixed axis 105 of the present utility model is spliced into by three pieces of axis inserted sheets 106, the inner surface of this axis inserted sheet 106 is prefabricated with groove, and the groove of this axis inserted sheet 106 inner surface is spliced into the track of axis 104 described in the present embodiment.As shown in Fig. 1, Fig. 4 and Fig. 5, described track comprises upper slotted eye 131 in a kerve hole 130 and, this kerve hole 130 and in this upper slotted eye 131 linked together by an apical ring groove 132.In the present embodiment this kerve hole 130 and in this number of upper slotted eye 131 be three, and this kerve hole 130 and in this upper slotted eye 131 arrange at equal intervals.Each this kerve hole 130 and in this top of upper slotted eye 131 be provided with a guiding surface 133, when the spacing block set 112 of described lifting shaft 107 moves upward from a slotted eye, described spacing block set 112 can be guided to adjacent slotted eye by this guiding surface 133.
As shown in Figure 1 and Figure 5, axis lift mop-pail stands of the present utility model in use described spacing block set 112 be slidedly arranged in above-mentioned track.Because spacing block set 112 is rigidly connected in the bottom outside described lifting shaft 107, so the motion mode of described lifting shaft 107 scope of activities is too also by the restriction of above-mentioned track.If the initial position of spacing block set 112 is positioned at bottom described kerve hole 130, when upwards promoting described lifting shaft 107, this spacing block set 112 rises to the top in described kerve hole 130 with described lifting shaft 107, along with lifting shaft 107 continues to be promoted, this spacing block set 112 enters into described apical ring groove 132 and touches the upper surface, the described guiding surface 133 directly over kerve hole 130 that are positioned at described apical ring groove 132, subsequently this spacing block set 112 under the effect of described guiding surface 133 and described lifting shaft 107 to contiguous described on slotted eye fortune 131 motion; If now discharge described lifting shaft 107, described spacing block set 112 can move along apical ring groove 132 by the driving of described lifting shaft 107, and then falls into the upper slotted eye 131 of guiding surface 133 sensing.If when now again upwards promoting spacing block set 112, spacing block set 112 can fall into next kerve hole 130 along similar mode.
As shown in Figure 2 and Figure 5, during cleaning mop 120, first described mophead 121 is connected to the described mophead connector 111 on described lifting shaft 107 top.If now described spacing block set 112 is arranged in described upper slotted eye 131, then need upwards to promote described mop 120 to put down subsequently, described lifting shaft 107 moves along with described mop 120 in this process, and then described limit convex 112 can move in described kerve hole 130 according to aforesaid motion mode, makes the position of described mop 120 reduce.As shown in Figure 2, be now filled in described staving 101 and just do not have described mophead 121, rotate described mop 120 i.e. described mophead 121 capable of washing subsequently.The mop washing barrel of the present embodiment does not have the basket carrying described mophead 121 in traditional design, and described in the process of the described mophead 121 of cleaning, mophead 121 can fully contact with water like this, thus improves the cleaning performance of mop washing barrel.
Shown in Fig. 5 and Fig. 6, Fig. 6 is sectional view when drying mop in the first embodiment of the utility model axis lift mop washing barrel and mop.As shown in Figure 5 and Figure 6, after described mop 120 has cleaned on promote described mop 120 and put down subsequently, the described spacing block set 112 being connected to described lifting shaft 107 in the process promoting described mop 120 move to from described kerve hole 130 described on slotted eye 131.Due in the position of upper slotted eye 131 higher than the position in kerve hole 130, therefore the top of lifting shaft 107 and the mophead 121 that is connected to described lifting shaft 107 top also move upward to more than the water surface.Moisture unnecessary in described mophead 121 can be dried subsequently by rotary mop 120.Now mophead 121 is separated with mophead connector 111, namely completes cleaning and the drying dehydration process of mophead 121.
Please continue to refer to the explosive view that Fig. 7 and Fig. 8, Fig. 7 are the utility model axis lift mop washing barrel axis lift mop washing barrel in a second embodiment; Fig. 8 is the sectional view of the utility model axis lift mop washing barrel when cleaning mop in a first embodiment.As shown in Figure 7 with shown in Fig. 8, axis 203 comprises a fixed axis 205, three axis inserted sheet 206, axis decorative covers 204 and a lifting shaft 207 in the present embodiment.The main distinction of the present embodiment and the first embodiment is the connected mode of lifting shaft 207 and fixed axis 205 in the present embodiment.The bottom inside described staving 201 is fixed in the bottom of described fixed axis 205, and the side of this fixed axis 205 is provided with draw-in groove, and this draw-in groove is used for plugging described axis inserted sheet 206.The number of described axis inserted sheet 206 is three in the present embodiment.Be connected with described axis decorative cover 204 on the top of described fixed axis 205, described axis decorative cover 204 can prevent described axis inserted sheet 206 from sliding along described draw-in groove.The outer surface of described axis inserted sheet 206 is provided with track.Be socketed with lifting shaft 207 cylindrically in the outside of described fixed axis 205, the bottom of this lifting shaft 207 inwall is provided with described spacing block set 212, and spacing block set 212 is slidedly arranged in the track of axis inserted sheet 206.When lifting shaft 207 moves up and down, spacing block set 212 can along the orbital motion outside described axis inserted sheet 206.
It is the partial sectional view of staving and fixed axis in the second embodiment of the utility model axis lift mop washing barrel please continue to refer to Fig. 9 and Figure 10, Fig. 9; Figure 10 is the schematic diagram after the axis inserted sheet expansion in a second embodiment of the utility model axis lift mop washing barrel.As shown in Figure 9 and Figure 10, described track outside described axis inserted sheet 206 comprise kerve hole 230 and in upper slotted eye 231, described kerve hole 230 with described in upper slotted eye 231 by turning to track 234 and the second link slot turning to track 235 to form to be connected by ascending track 232, decline track 233 first.The bottom of described ascending track 232 is connected to directly over described kerve hole 230, and the bottom of described decline track 233 is connected to the side at top, described kerve hole 230.Described first turns to one end of track 234 to be connected to the top of described ascending track 232, its other end be connected to described in the side at upper slotted eye 231 top.Described second turns to one end of track 235 to be connected to the top of described decline track 233, its other end be connected to described in directly over upper slotted eye 231.Described decline track 233 side, top be provided with turnover breach 240, slipping into and skidding off for spacing block set 212.
The movement locus of described spacing block set 212 in the track of described axis inserted sheet 206 is introduced below in conjunction with Fig. 9 and Figure 10.As shown in Figure 9 and Figure 10: when assembled, described spacing block set 212 to be entered in described track by described turnover breach 240 and falls in described kerve hole 230 along 233 of described decline track, so the initial bit set of described spacing block set 212 is in described kerve hole 230, upwards promote described lifting shaft 207, under the effect of described lifting shaft 207, described spacing block set 212 can move upward thus enter the described ascending track 232 be positioned at directly over described kerve hole 230, and described spacing block set 212 continues to move upward along described ascending track 232 subsequently.When described spacing block set 212 move to described first turn to the inside of track 234 after continue to move upward, described spacing block set 212 arrives first and turns to during the peak of track 234 and cannot move up again, described spacing block set 212 moves under turning to the effect of track 234 described first subsequently, and then from described the top of upper slotted eye 231 side slip into described in upper slotted eye 231, if now do not have external force to promote described lifting shaft 207, described limit convex 212 can to fall into described in the bottom of upper slotted eye 231.So far described spacing block set 212 completes the uphill process from described kerve hole 230 to slotted eye 231 upper described.
Decline process and its uphill process of described spacing block set 212 are similar: upwards promote described lifting shaft 207 when described spacing block set 212 is arranged in bottom described upper slotted eye 231, under the drive of described lifting shaft 207 described spacing block set 212 move upward enter be connected to described on described second directly over slotted eye 231 turn to track 235, turn to during the peak of track 235 cannot move up again when described spacing block set 212 arrives described second, described spacing block set 212 moves under turning to the effect of track 235 described second thus enters described decline track 233 subsequently, described spacing block set 212 moves downward along described decline track 233 subsequently, finally slips into the bottom in described kerve hole 230 from the side at top, described kerve hole 230.
If upwards promote described lifting shaft 207 in the decline process of described spacing block set 212 along described decline track 233, so described spacing block set 212 can skid off from the described turnover breach 240 of side, top of be positioned at described decline track 233, because described lifting shaft 207 is slidably connected to described fixed axis 205 by the described limit convex fast 212 being fixedly connected on its inwall, be just separated with lifting shaft 207 so described spacing block set 212 skids off rear described fixed axis 205.Being arranged so that described lifting shaft 207 is dismountable and being connected to described fixed axis 205 of described turnover breach 240, so in use also can remove described lifting shaft 207 to clean described lifting shaft 207 and described fixed axis 205 without special tool(s).
As shown in Figure 7 and Figure 8: the present embodiment and the first embodiment similar, the top of the described lifting shaft 207 of the present embodiment is also connected with described rotating shaft 210, and described rotating shaft 210 is installed in the described rotating shaft holding part at described lifting shaft 207 top by described Upper shaft sleeve 209 and described Lower shaft sleeve 208.Described mophead connector 211 is connected with on the top of described rotating shaft 210.
It is the explosive view in the 3rd embodiment of the utility model axis lift mop washing barrel please continue to refer to Figure 11, Figure 11; As shown in figure 11, axis 303 mainly comprises a fixed axis 305, three axis inserted sheets 306 and a lifting shaft 307 in the present embodiment.The bottom inside described staving 301 is fixed in the bottom of described fixed axis 305, and the top outside described fixed axis 305 is connected with 3 spacing block sets 312.Cylindrically, its inwall is provided with draw-in groove to lifting shaft 307 described in the present embodiment, and this draw-in groove is used for plugging described axis inserted sheet 306.The number of described axis inserted sheet 306 is three in the present embodiment.The inner surface of described axis inserted sheet 306 is provided with track.Described lifting shaft 307 is socketed on the outside of described fixed axis 305.The described spacing block set 312 being connected to described fixed axis 305 is slidedly arranged in the track of described axis inserted sheet 306.When described lifting shaft 307 moves up and down, described spacing block set 312 can along the described orbital motion of described axis inserted sheet 306 inner surface.
It is office's sectional view of axis in the 3rd embodiment of the utility model axis lift mop washing barrel please continue to refer to Figure 12 and Figure 13, Figure 12; Figure 13 shows that the track of the utility model in the third embodiment outside axis inserted sheet 306 launch after schematic diagram.As shown in Figure 12 and Figure 13, described track inside described axis inserted sheet 306 comprise kerve hole 330 and in upper slotted eye 331, described kerve hole 330 with described in upper slotted eye 331 by turning to track 334 and the second link slot turning to track 335 to form to be connected by ascending track 332, decline track 333 first.The top of described ascending track 332 be connected to described in side bottom upper slotted eye 331, the top of described decline track 333 be connected to described in immediately below upper slotted eye 331.Described first turns to one end of track 334 to be connected to the bottom of described ascending track 332, and its other end is connected to the side bottom described kerve hole 330.Described second turns to one end of track 335 to be connected to the bottom of described decline track 333, and its other end is connected to the side bottom described kerve hole 330.Described ascending track 332 side, bottom be provided with a turnover breach 340, slipping into and skidding off for described spacing block set 312.
The movement locus of described spacing block set 312 in the track of described axis inserted sheet 306 is introduced below in conjunction with Figure 12 and Figure 13.As shown in Figure 12 and Figure 13: when assembled, described spacing block set 312 be to be entered in described track by described turnover breach 340 and along 332 of described ascending track rise to described in upper slotted eye 331, so the initial bit set of described spacing block set 312 in described in slotted eye 331, upwards promote described lifting shaft 307, under the effect of described lifting shaft 307 described spacing block set 312 can relatively described track move downward thus enter be arranged in described on described decline track 333 immediately below slotted eye 331, described spacing block set 312 continues to move downward along described decline track 333 subsequently.When described spacing block set 312 move to described second turn to the inside of track 335 after continue to move downward, described spacing block set 312 arrives second and turns to during the minimum point of track 335 and cannot move down again, described spacing block set 312 turns to the minimum point place of track 335 to move up described second subsequently, and then slip into described kerve hole 330 from the side bottom described kerve hole 330, if now do not have external force to promote described lifting shaft 307, described limit convex 312 can rise to relatively described track and then be resisted against the top in described kerve hole 330.So far described spacing block set 312 completes and go up the decline process of slotted eye 331 to described kerve hole 330 from described.
Uphill process and its decline process of described spacing block set 312 are similar: upwards promote described lifting shaft 307 when described spacing block set 312 is positioned at 330 top, described kerve hole, described spacing block set 312 moves downward to enter relative to described track and is connected to described first immediately below described kerve hole 330 and turns to track 334, turn to during the minimum point of track 334 cannot move down again when described spacing block set 312 arrives described first, described spacing block set 312 moves up under turning to the effect of track 334 described first thus enters described ascending track 332 subsequently; Described spacing block set 312 moves upward along described ascending track 332 subsequently, the side finally from described bottom upper slotted eye 331 slip into described in upper slotted eye 330.
If upwards promote described lifting shaft 307 in the uphill process of described spacing block set 312 along described ascending track 332, so described spacing block set 312 can move downward by relatively described track, and then skid off from the described turnover breach 340 of side, bottom of be positioned at described ascending track 332, because described fixed axis 305 is slidably connected to described lifting shaft 307 by the described limit convex fast 312 being fixedly connected on its top, be just separated with lifting shaft 307 so described spacing block set 312 skids off rear described fixed axis 305.
As shown in figure 11: the present embodiment and the first embodiment similar, the top of the described lifting shaft 307 of the present embodiment is also provided with described rotating shaft 310, and described rotating shaft 310 is installed in the described rotating shaft holding part at described lifting shaft 307 top by described Upper shaft sleeve 309 and described Lower shaft sleeve 308.Described mophead connector 311 is connected with on the top of described rotating shaft 310.
The above is only preferred embodiment of the present utility model, not any pro forma restriction is done to the utility model, although the utility model discloses as above with preferred embodiment, but and be not used to limit the utility model, any those skilled in the art, not departing from the scope of technical solutions of the utility model, make a little change when the technology contents of above-mentioned announcement can be utilized or be modified to the Equivalent embodiments of equivalent variations, in every case be the content not departing from technical solutions of the utility model, according to any simple modification that technical spirit of the present utility model is done above embodiment, equivalent variations and modification, all still belong in the scope of technical solutions of the utility model.

Claims (12)

1. an axis lift mop washing barrel, is characterized in that: comprise staving, the bottom in described staving is connected with axis; Described axis comprises socket mutually and can at the fixed axis of axial relative movement and lifting shaft, the spacing block set that described axis also comprises the track for connecting described fixed axis and described lifting shaft and matches with described track; Described track comprise the kerve hole that connected by link slot and in upper slotted eye.
2. axis lift mop washing barrel as claimed in claim 1, it is characterized in that: described fixed axis cylindrically, described track is arranged at the inner surface of described fixed axis, and described spacing block set is arranged at the bottom of described lifting shaft, and described fixed hub is connected to outside described lifting shaft.
3. axis lift mop washing barrel as claimed in claim 1, it is characterized in that: described lifting shaft cylindrically, described track is arranged at the outer surface of described fixed axis, and described spacing block set is arranged at the bottom inside described lifting shaft, and described lifting shaft is socketed on outside described fixed axis.
4. axis lift mop washing barrel as claimed in claim 1, it is characterized in that: described lifting shaft cylindrically, described track is arranged at the inner surface of described lifting shaft, and described spacing block set is connected to the top of described fixed axis, and described lifting shaft is socketed on the outside of described fixed axis.
5. axis lift mop washing barrel as claimed in claim 1, it is characterized in that: described link slot is apical ring groove, described apical ring groove by described kerve hole and described in upper slotted eye be connected in turn, described kerve hole and in the top of upper slotted eye be provided with guiding surface.
6. axis lift mop washing barrel as claimed in claim 1, is characterized in that: described link slot comprises ascending track, decline track, first turns to track and second to turn to track; The bottom of described ascending track is connected to directly over kerve hole, and the bottom of described decline track is connected to the side at top, described kerve hole; Described first turns to one end of track to be connected to the top of described ascending track, its other end be connected to described in the side at upper slotted eye top; Described second turns to one end of track to be connected to the top of described decline track, its other end be connected to described in directly over upper slotted eye.
7. axis lift mop washing barrel as claimed in claim 1, is characterized in that: described link slot comprises ascending track, decline track, first turns to track and second to turn to track; The top of described decline track be connected to described in immediately below upper slotted eye, the top of described ascending track be connected to described in side bottom upper slotted eye; Described first turns to one end of track to be connected to the bottom of described ascending track, and its other end is connected to immediately below described kerve hole; Described second turns to one end of track to be connected to the bottom of described decline track, its other end be connected to described in side bottom upper slotted eye.
8. axis lift mop washing barrel as claimed in claim 7, is characterized in that: the side at described decline track top is provided with turnover breach.
9. axis lift mop washing barrel as claimed in claim 1, is characterized in that: described kerve hole and described in the number of upper slotted eye be the integral multiple of the number of described spacing block set.
10. axis lift mop washing barrel as claimed in claim 1, is characterized in that: the top of described lifting shaft is provided with rotating shaft, and described rotating shaft has the top for connecting mop.
11. axis lift mop washing barrels as claimed in claim 10, it is characterized in that: the top of described lifting shaft is provided with rotating shaft holding part, the bottom of described rotating shaft holding part is provided with a Lower shaft sleeve, the top of described rotating shaft holding part is provided with a Upper shaft sleeve, described rotary sleeve is connected to described Upper shaft sleeve, and the bottom of described rotating shaft is resisted against described Lower shaft sleeve.
12. 1 kinds of mops matched with axis lift mop washing barrel according to claim 1, comprise mophead, it is characterized in that: described mophead comprises groove for being connected with the rotating shaft of axis lift mop washing barrel and claw sheet.
CN201420680098.5U 2014-08-27 2014-11-14 Axis lift mop washing barrel and mop Active CN204541999U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201420680098.5U CN204541999U (en) 2014-08-27 2014-11-14 Axis lift mop washing barrel and mop
HK15104402.7A HK1202215A2 (en) 2014-11-14 2015-05-11 Mop bucket with shiftable central axis and mop

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CN201420484780 2014-08-27
CN2014204847807 2014-08-27
CN201420680098.5U CN204541999U (en) 2014-08-27 2014-11-14 Axis lift mop washing barrel and mop

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11096547B1 (en) 2018-08-24 2021-08-24 Jiangsu Zhou Jijie Intelligent Technology Co., Ltd. Water discharge control structure of washing bucket capable of separating clean water from dirty water for washing cleaning tool

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11096547B1 (en) 2018-08-24 2021-08-24 Jiangsu Zhou Jijie Intelligent Technology Co., Ltd. Water discharge control structure of washing bucket capable of separating clean water from dirty water for washing cleaning tool

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