CN203042160U - Pull type spin mop - Google Patents

Pull type spin mop Download PDF

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Publication number
CN203042160U
CN203042160U CN 201220652044 CN201220652044U CN203042160U CN 203042160 U CN203042160 U CN 203042160U CN 201220652044 CN201220652044 CN 201220652044 CN 201220652044 U CN201220652044 U CN 201220652044U CN 203042160 U CN203042160 U CN 203042160U
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CN
China
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mop
sheave
pull
clutch
handle
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Expired - Fee Related
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CN 201220652044
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Chinese (zh)
Inventor
李凰宁
李品学
李亭蓉
李汶珈
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Individual
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Priority to CN 201220652044 priority Critical patent/CN203042160U/en
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Publication of CN203042160U publication Critical patent/CN203042160U/en
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Abstract

The utility model discloses a pulling force formula spin mop, it contains: a mop body, a handle and a unidirectional driving device, wherein the mop body is pivoted with a cloth strip coil seat for assembling and wiping the floor by the lower end of a mop rod, the handle is arranged above the mop rod, a shell seat is assembled between the handle and the mop rod, the unidirectional driving device is arranged in the shell seat and comprises: one end of the pull rope is linked with the clutch piece, the other end of the pull rope penetrates out of the shell seat, and the clutch piece is used for linking and controlling the mop body to rotate in one direction. Through the mode of pulling the stay cord, the one-way driving mop body generates stable and smooth spinning, and can pull the stay cord back and forth to continuously accelerate, so that the cloth strips cleaned by the mop body are quickly dried in a centrifugal force mode, the dewatering operation is simple and convenient, the integral structure is simple, and the failure rate is low.

Description

Tensile force type spin mop
Technical field
The utility model relates to a kind of mop, refers to a kind of mode by the pulling stay cord especially, and the unidirectional drive type of mop body is rotated, thereby reaches the tensile force type spin mop of dehydration purpose by centrifugal force.
Background technology
Mop is a kind of use cleaning appliance quite widely, traditional mop mainly by a holding rod front end in conjunction with a holder, establish a plurality of cloths in this holder group, grip this holding rod during use and draw the application of force, drive cloth and make wiping action on the ground, to reach the purpose of cleaning, but because after the cleaning of the cloth of this conventional mop, must wring out by armrest, so not only quite effort and trouble inconvenience are gone up in operation, and hand needs directly to contact with the strip mop cloth and the sewage that contain a large amount of bacteriums, and is very undesirable.
For improving above-mentioned disappearance, there is the dealer to utilize the centrifugal principle development and Design to go out rotary dewater unit, establish dehydration basket in the inner bogie side frame of dehydration barrel, drive this dehydration basket by the mode of trampling and do rotation at a high speed, mop holder and the cloth put in dehydration basket are rotated thereupon, and then make the adsorbed water of cloth be able to get rid of with its centrifugal force that rotates at a high speed removing, reach the effect of dehydration.Yet, this kind foot-driven pattern, troublesome poeration effort not only, mechanism's complexity, fault rate height, and the volume of this dehydration barrel is big uses and all takes up room when collecting, thereby causes sizable inconvenience.Therefore recently there is the dealer further to design the novel patent of TaiWan, China that is called " self-rotating mop () " as the name of announcing M386045 number in addition, it is by linear drives mop rod drive holder and cloth rotation up and down, make holder and cloth can drive dehydration basket and follow rotation, and then make cloth because of centrifugal water dumping, this kind drives the water dumping mode, dehydration barrel is simple in structure, does not need the pedal driving mechanism is installed in addition, so gradually accepted by the user.
But, this known mop of pressing spin, its rotary body inside arranges a threaded hole that axially runs through, screw rod for coarse pitch wears, so this rotary body generally turns over the molded type that causes by screw rod, so not only mould molding is difficult for, the manufacturing cost height, and the threaded hole of rotary body contacts as face with screw rod when using, causing slip to have some setbacks and easily produce to interfere, the operational failure rate is still high, moreover its structure includes unilateral bearing, this unilateral bearing not only causes the package count quantitative change many, and unilateral bearing cost height is unfavorable for competitiveness of product, and the necessity that is improved is arranged.
The utility model content
The technical problems to be solved in the utility model provides a kind of tensile force type spin mop, to solve dehydrating operations trouble effort that mop of the prior art exists, complex structure, problem that fault rate is high.
In order to solve the problems referred to above of prior art, the utility model provides a kind of tensile force type spin mop, and it comprises:
One type of mop body is established the dish seat that cloth is used on wiping ground by mop rod lower end pivot joint one in order to group;
One handle is arranged at this mop rod top, and group is provided with a shell block between this handle and mop rod; And
One unidirectional drive device, be arranged in this shell block, comprise: a rope sheave, a stay cord, an elastic component, a clutch part and a moving part, wherein this rope sheave keeps flat setting, periphery is concaved with an annular groove provides this stay cord to reel, this stay cord one end connects this rope sheave, and the other end passes this shell block in conjunction with a pull handle; But this elastic component is arranged between this rope sheave and shell block so that automatic reverse revolution after the rope sheave rotation; But be arranged to this clutch part oscilaltion this rope sheave downside, and keep interlock with this rope sheave; This moving part is arranged at this clutch part downside and rotated by this clutch part unidirectional drive in ratchet interlock mode, and this moving part passes this shell block and the combination of this mop rod upper end is fixing.
In order to solve the problems referred to above of prior art, the utility model also provides another kind of tensile force type spin mop, and it comprises:
One type of mop body is established the dish seat that cloth is used on wiping ground by mop rod lower end pivot joint one in order to group;
One handle is arranged at this mop rod top, and group is provided with a shell block between this handle and mop rod; And
One unidirectional drive device, be arranged in this shell block, comprise: a stay cord and a clutch part, wherein this stay cord one end and clutch part interlock, the other end passes outside the shell block, this clutch part is in order to interlock and control this type of mop body one-directional rotation, drives the type of mop body rotation by clutch part when stay cord is pulled out, the interlock when stay cord is return between clutch part disengaging and type of mop body.
Compared with prior art, the utlity model has following beneficial effect:
1) by spurring the mode of stay cord, the unidirectional drive type of mop body produces the spin of steady and smooth, and is spurred stay cord back and forth and lasting the acceleration, and the cloth after type of mop body is cleaned is dried fast by the centrifugal force mode, make dehydrating operations easy, and overall structure is simple, fault rate is low;
2) tensile force type spin mop of the present utility model need not use the high unilateral bearing of unit price, and can reduce manufacturing cost.
Description of drawings
Fig. 1 is the stereoscopic figure of tensile force type spin mop of the present utility model;
Fig. 2 is the sectional perspective exploded view of tensile force type spin mop of the present utility model;
Fig. 3 is another sectional perspective exploded view of tensile force type spin mop of the present utility model;
Fig. 4 is the part sectioned view of tensile force type spin mop of the present utility model;
The use view that Fig. 5 dewaters in conjunction with dehydration barrel for tensile force type spin mop of the present utility model;
Stereoscopic motion schematic diagram when Fig. 6 dewaters for tensile force type spin mop of the present utility model;
Fig. 7 pulls out the section action schematic diagram of stay cord when dewatering for tensile force type spin mop of the present utility model;
The section action schematic diagram that stay cord was oppositely return when Fig. 8 dewatered for tensile force type spin mop of the present utility model.
Main description of reference numerals:
1 type of mop body
11 mop rods
12 dish seats
13 cloths
2 handles
3 shell blocks
31 upper shell covers
311 rope holes
32 lower covers
321 positioning seats
3211 perforation
3212 clamping slots
322 sleeve pipes
33 accommodation chambers
4 unidirectional drive devices
41 rope sheaves
411 annular grooves
42 stay cords
421 pull handles
412 circular grooves
413 first linkage part
43 elastic components
44 clutch parts
441 second linkage part
442 first ratchet faces
45 moving parts
451 fastening parts
4,511 second ratchet faces
5 dehydration barrels
51 columns
52 bearings
The specific embodiment
Below in conjunction with accompanying drawing specific embodiment of the utility model is elaborated.
As shown in Figure 1, Figure 2, Figure 3 and Figure 4, tensile force type spin mop of the present utility model comprises: one dragging body 1, a handle 2, a shell block 3 and a unidirectional drive device 4, wherein:
This type of mop body 1 is established dish seat 12 that wiping ground use cloth 13 can swing form pivot joint one in order to group by a mop rod 11 lower ends.
This handle 2 is mounted on mop rod 11 tops of type of mop body 1 by this shell block 3 and this unidirectional drive device 4.
This shell block 3 is by a upper shell cover 31 and 32 involutory compositions an of lower cover, the inner accommodation chamber 33 that forms, this upper shell cover 31 is one-body molded or be mounted on this handle 2 lower ends, these upper shell cover 31 1 sides are provided with a rope hole 311, these lower cover 32 centre are provided with a positioning seat 321 that up extends, these positioning seat 321 inside are provided with the perforation 3211 of always wearing cap 32, these 3211 upper end hole walls of boring a hole are provided with an annular clamping slot 3212, and these lower cover 32 bottom surfaces are provided with a sleeve pipe 322 that down extends in perforation 3211 peripheries in addition.
This unidirectional drive device 4 is arranged in the accommodation chamber 33 of this shell block 3, comprise: a rope sheave 41, one stay cord 42, one elastic component 43, one clutch part 44 and a moving part 45, wherein this rope sheave 41 keeps flat setting, periphery is concaved with an annular groove 411 provides this stay cord 42 to reel, these stay cord 42 1 ends connect this rope sheave 41, the other end passes the rope hole 311 of these shell block 3 upper shell covers 31 in conjunction with a pull handle 421, these rope sheave 41 bottom surface central authorities are provided with a circular groove 412 in addition, the groove face of this circular groove 412 is provided with one first linkage part 413, this elastic component 43 can be spiral spring or torque spring, it is installed in 31 of the upper shell covers of this rope sheave 41 and this shell block 3, and these elastic component 43 1 ends are fixed in this rope sheave 41, the other end then is fixed in this upper shell cover 31, but automatic reverse turns round after making these rope sheave 41 rotations, but be arranged in the circular groove 412 of this rope sheave 41 to these clutch part 44 oscilaltions, end face has one second linkage part 441, with no matter clutch part 44 is positioned at and rises or down position all keeps engaging interlock with first linkage part 413 of this circular groove 412 this second linkage part 441, these clutch part 44 bottom surfaces are provided with one first ratchet face 442 in addition, this moving part 45 is cylindric, the upper end is provided with one and enlarges footpath fastening part 451, these fastening part 451 end faces are provided with one second ratchet face 4511, this moving part 45 is arranged in the perforation 3211 of these shell block 3 lower covers 32 from top to bottom, and wear in conjunction with fixing with these mop rod 11 upper ends, make the fastening part 451 of this moving part 45 be sticked in location in the clamping slot 3212 of these shell block 3 lower covers 32, this moving part 45 just is positioned at clutch part 44 downsides, second ratchet face 4511 of this moving part 45 is relative with first ratchet face 442 of this clutch part 44, and these mop rod 11 upper ends are arranged in the sleeve pipe 322 of these shell block 3 lower covers 32, and be able to be kept when support by this sleeve pipe 322 makes type of mop body 1 rotation preferable stability.
When after the cloth 13 of this type of mop body 1 cleans, desiring to dewater, as Fig. 5, Fig. 6 and shown in Figure 7, the dish seat 12 of this mop main body 1 is placed in the dehydration barrel 5 together with cloth 13, these dehydration barrel 5 center of inside are provided with a column 51 that is up extended by the bottom surface, these column 51 tops are provided with a bearing 52, make this dish seat 12 bottom surfaces central authorities and these column 51 upper end fits, form the location of a movable rotation, the user grips this handle 2 on the other hand, another hand grips this pull handle 421 and pulls out the 41 generation rotations of stay cord 42 drive rope sheaves, make elastic component 43 furl or reverse, this moment, clutch part 44 descended because the weight of itself is past, first ratchet face 442 that makes clutch part 44 and second ratchet face 4511 of moving part 45 are because of forward rotational automatic engagement, and be able to drive moving part 45 and the rotation of type of mop body 1 synchronous high-speed by rope sheave 41 by clutch part 44, dry by the cloth 13 of centrifugal force with type of mop body 1.
In addition when pull handle 421 is oppositely return, as shown in Figure 8, elasticity recovery by elastic component 43 drive rope sheave 41 counter-rotatings with stay cord 42 rollback annular grooves 411 inner rings around, simultaneously by 44 counter-rotatings of rope sheave 41 interlock clutch parts, first ratchet face 442 by clutch part 44 breaks away from during with second ratchet face, 4511 counter-rotatings of moving part 45 automatically, clutch part 44 is up passed, moving part 45 and type of mop body 1 are not affected continue to rotate, whereby, the user can constantly back and forth be pulled out, return stay cord 42, drive this type of mop body 1 and keep unidirectional acceleration rotation, to improve the effect of dehydration, reach the purpose of quick drying type of mop body 1 cloth 13.
By the structure of above-mentioned specific embodiment, can obtain following benefit:
1. tensile force type of the present utility model spin mop, mode with pull handle 421 pulling stay cords 42, the spin that unidirectional drive type of mop body 1 produces steady and smooth, and spurred stay cord 42 back and forth and make type of mop body 1 continue to carry out unidirectional acceleration rotation, to improve dehydrating effect, the cloth 13 after type of mop body 1 is cleaned is dried fast by the centrifugal force mode, easy to reach dehydrating operations, and overall structure is simple, fault rate is low, and can meet economic benefit, promotes competitiveness of product.
2. tensile force type spin mop of the present utility model need not use the high unilateral bearing of unit price, and can reduce manufacturing cost.
Above embodiment is exemplary embodiment of the present utility model only, is not used in restriction the utility model, and protection domain of the present utility model is defined by the claims.Those skilled in the art can make various modifications or be equal to replacement the utility model in essence of the present utility model and protection domain, this modification or be equal to replacement and also should be considered as dropping in the protection domain of the present utility model.

Claims (10)

1.一种拉力式自旋拖把,其特征在于,其包含:1. A pull-type spin mop, characterized in that it comprises: 一拖把本体,由一拖把杆下端枢接一用以组设擦地用布条的盘座;A mop body, pivotally connected with a lower end of a mop rod to a disc seat for assembling cloth strips for mopping the floor; 一握把,设置于该拖把杆上方,该握把与拖把杆间组设有一壳座;及a handle, which is arranged above the mop rod, and a shell seat is arranged between the handle and the mop rod; and 一单向驱动装置,设置于该壳座内,包含:一绳轮、一拉绳、一弹性件、一离合件及一连动件,其中该绳轮平放设置,周缘凹设有一环槽提供该拉绳卷绕,该拉绳一端连接该绳轮,另一端穿出该壳座结合一拉柄;该弹性件设置于该绳轮与壳座间以使绳轮旋转后可自动反向回转;该离合件可上下升降地设置于该绳轮下侧,且与该绳轮保持连动;该连动件设置于该离合件下侧以棘齿连动方式受该离合件单向驱动旋转,且该连动件穿过该壳座与该拖把杆上端结合固定。A one-way driving device, set in the housing seat, including: a sheave, a pull cord, an elastic member, a clutch and a moving member, wherein the sheave is placed horizontally, and a ring groove is recessed on the periphery The pull cord is provided for winding, one end of the pull cord is connected to the sheave, and the other end is passed through the housing seat and combined with a pull handle; the elastic member is arranged between the sheave wheel and the housing seat so that the sheave can automatically reverse after rotation Swivel; the clutch part can be set up and down on the lower side of the sheave, and keeps interlocking with the sheave; the linkage part is set on the lower side of the clutch part and is driven by the clutch part in a ratchet-linked manner Rotate, and the linking member passes through the shell seat and is fixedly combined with the upper end of the mop rod. 2.如权利要求1所述的拉力式自旋拖把,其特征在于,该壳座由一上壳盖与一下壳盖对合组成,该上壳盖一体成型或组设于该握把下端,该下壳盖中央处设有一穿孔。2. The pull-type spin mop as claimed in claim 1, characterized in that, the shell seat is composed of an upper shell cover and a lower shell cover, and the upper shell cover is integrally formed or assembled at the lower end of the handle, A perforation is arranged at the center of the lower case cover. 3.如权利要求2所述的拉力式自旋拖把,其特征在于,该壳座的上壳盖一侧设有一供拉绳穿设的绳孔,该壳座的下壳盖底面于该穿孔周缘设有一往下延伸的套管。3. The pull-type spin mop as claimed in claim 2, characterized in that, one side of the upper shell cover of the housing base is provided with a rope hole for the pull cord to pass through, and the bottom surface of the lower shell cover of the housing base is at the through hole. A sleeve tube extending downward is arranged on the periphery. 4.如权利要求1所述的拉力式自旋拖把,其特征在于,该单向驱动装置的绳轮底面中央设有一圆槽,该圆槽的槽面设有一第一连动部,该离合件可上下升降地设置于该绳轮的圆槽内,该离合件顶面有一第二连动部与该圆槽的第一连动部卡合连动。4. The pull-type spin mop as claimed in claim 1, wherein a circular groove is provided in the center of the bottom surface of the sheave of the one-way driving device, and a first linkage part is provided on the groove surface of the circular groove, and the clutch The part can be arranged in the circular groove of the sheave up and down, and the top surface of the clutch part has a second linkage part which engages and interlocks with the first linkage part of the circular groove. 5.如权利要求2所述的拉力式自旋拖把,其特征在于,该单向驱动装置的弹性件为蜗形弹簧或扭力弹簧,该弹性件一端固定于该绳轮,另一端固定于该上壳盖,该单向驱动装置的离合件底面设有一第一棘齿面,该单向驱动装置的连动件呈圆柱状,该连动件顶面设有一可与该离合件第一棘齿面啮合连动的第二棘齿面。5. The pull-type spin mop according to claim 2, wherein the elastic member of the one-way driving device is a volute spring or a torsion spring, one end of the elastic member is fixed to the sheave, and the other end is fixed to the pulley. The upper case cover, the bottom surface of the clutch part of the one-way drive device is provided with a first ratchet surface, the linkage part of the one-way drive device is cylindrical, and the top surface of the linkage part is provided with a first ratchet surface that can be connected with the clutch part. The tooth surface meshes with the interlocking second ratchet surface. 6.一种拉力式自旋拖把,其特征在于,其包含:6. A pull type spin mop, characterized in that it comprises: 一拖把本体,由一拖把杆下端枢接一用以组设擦地用布条的盘座;A mop body, pivotally connected with a lower end of a mop rod to a disc seat for assembling cloth strips for mopping the floor; 一握把,设置于该拖把杆上方,该握把与拖把杆间组设有一壳座;及a handle, which is arranged above the mop rod, and a shell seat is arranged between the handle and the mop rod; and 一单向驱动装置,设置于该壳座内,包含:一拉绳及一离合件,其中该拉绳一端与离合件连动,另一端穿出壳座外,该离合件用以连动及控制该拖把本体单向转动,当拉绳拉出时通过离合件带动拖把本体旋转,拉绳退回时离合件脱离与拖把本体间的连动,使拖把本体得以持续进行旋转。A one-way driving device is arranged in the housing, including: a pull cord and a clutch, wherein one end of the pull cord is linked with the clutch, and the other end passes out of the housing, and the clutch is used for linkage and The mop body is controlled to rotate in one direction. When the pull cord is pulled out, the clutch part drives the mop body to rotate. When the pull cord is retracted, the clutch part breaks away from the linkage with the mop body, so that the mop body can continue to rotate. 7.如权利要求6所述的拉力式自旋拖把,其特征在于,该壳座由一上壳盖与一下壳盖对合组成,该上壳盖一体成型或组设于该握把下端,该下壳盖中央处设有一穿孔。7. The pull-type spin mop as claimed in claim 6, wherein the shell seat is composed of an upper shell cover and a lower shell cover, and the upper shell cover is integrally formed or assembled at the lower end of the handle, A perforation is arranged at the center of the lower case cover. 8.如权利要求7所述的拉力式自旋拖把,其特征在于,该壳座的上壳盖一侧设有一供拉绳穿设的绳孔,该壳座的下壳盖底面于该穿孔周缘设有一往下延伸的套管。8. The pull-type spin mop as claimed in claim 7, characterized in that, one side of the upper shell cover of the shell base is provided with a rope hole for the pull cord to pass through, and the bottom surface of the lower shell cover of the shell base is in the through hole. A sleeve tube extending downward is arranged on the periphery. 9.如权利要求7所述的拉力式自旋拖把,其特征在于,该单向驱动装置还包含有一绳轮、一弹性件及一连动件,其中该绳轮平放设置,周缘凹设有一环槽提供该拉绳卷绕,该拉绳一端连接该绳轮,另一端穿出该壳座结合一拉柄;该弹性件设置于该绳轮与壳座间以使绳轮旋转后可自动反向回转;该离合件可上下升降地设置于该绳轮下侧,且与该绳轮保持连动;该连动件设置于该离合件下侧以棘齿连动方式受该离合件单向驱动旋转,且该连动件穿过该壳座的下壳盖与该拖把杆上端结合固定。9. The pull-type spin mop as claimed in claim 7, wherein the one-way driving device further comprises a sheave, an elastic member and a moving member, wherein the sheave is placed horizontally, and the periphery is recessed There is a ring groove for winding the stay cord, one end of the stay cord is connected to the sheave, and the other end passes through the housing seat to join a pull handle; the elastic member is arranged between the sheave and the housing seat so that the sheave can rotate Automatic reverse rotation; the clutch part can be set up and down on the lower side of the sheave, and keeps interlocking with the sheave; The one-way drive rotates, and the linkage piece passes through the lower shell cover of the shell base and is combined and fixed with the upper end of the mop rod. 10.如权利要求9所述的拉力式自旋拖把,其特征在于,该单向驱动装置的绳轮底面中央设有一圆槽,该圆槽的槽面设有一第一连动部,该单向驱动装置的离合件可上下升降地设置于该绳轮的圆槽内,该离合件顶面有一第二连动部与该圆槽的第一连动部卡合连动,该离合件底面设有一第一棘齿面,该单向驱动装置的连动件的呈圆柱状,该连动件顶面设有一可与该离合件第一棘齿面啮合连动的第二棘齿面,该单向驱动装置的弹性件为蜗形弹簧或扭力弹簧,该弹性件一端固定于该绳轮,另一端固定于该上壳盖。10. The pull-type spin mop as claimed in claim 9, characterized in that, a circular groove is provided in the center of the bottom surface of the sheave of the one-way driving device, and a first linkage part is provided on the surface of the circular groove, and the single The clutch part of the driving device is arranged in the circular groove of the sheave up and down. The top surface of the clutch part has a second interlocking part which engages and interlocks with the first interlocking part of the circular groove. The bottom surface of the clutch part There is a first ratchet surface, the link of the one-way driving device is cylindrical, and the top surface of the link is provided with a second ratchet surface that can mesh with the first ratchet surface of the clutch, The elastic part of the one-way driving device is a volute spring or a torsion spring. One end of the elastic part is fixed to the sheave, and the other end is fixed to the upper case cover.
CN 201220652044 2012-11-30 2012-11-30 Pull type spin mop Expired - Fee Related CN203042160U (en)

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CN 201220652044 CN203042160U (en) 2012-11-30 2012-11-30 Pull type spin mop

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Application Number Priority Date Filing Date Title
CN 201220652044 CN203042160U (en) 2012-11-30 2012-11-30 Pull type spin mop

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106667395A (en) * 2017-02-19 2017-05-17 吴玉顺 Rotary dewatering mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106667395A (en) * 2017-02-19 2017-05-17 吴玉顺 Rotary dewatering mechanism
CN106667395B (en) * 2017-02-19 2018-10-30 苏建林 A kind of rotary dewatering mechanism

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