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CN111472417B - A wash basin with dredging function - Google Patents

A wash basin with dredging function Download PDF

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Publication number
CN111472417B
CN111472417B CN202010403504.3A CN202010403504A CN111472417B CN 111472417 B CN111472417 B CN 111472417B CN 202010403504 A CN202010403504 A CN 202010403504A CN 111472417 B CN111472417 B CN 111472417B
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Prior art keywords
cavity
wall
block
rotating
cavity wall
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CN111472417A (en
Inventor
苏建辉
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Beijing Blue Elephant Technology Co ltd
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Hangzhou Junchen Performing Arts Equipment Co ltd
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/14Wash-basins connected to the waste-pipe
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/26Object-catching inserts or similar devices for waste pipes or outlets
    • E03C1/264Separate sieves or similar object-catching inserts
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/30Devices to facilitate removing of obstructions in waste-pipes or sinks
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/30Devices to facilitate removing of obstructions in waste-pipes or sinks
    • E03C1/302Devices to facilitate removing of obstructions in waste-pipes or sinks using devices moved through the pipes

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  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Sewage (AREA)

Abstract

本发明公开了一种具有清淤功能的洗漱池,包括底座和池体,所述底座内设有下水管道,所述池体内设有开口向上的蓄水腔,所述蓄水腔上端的左腔壁内设有感应洗漱池堵塞的堵塞感应机构,所述蓄水腔内设有对洗漱池进行全面刷洗的池壁清淤机构,所述下水管道内设有对洗漱池管道进行清淤的管壁清淤机构,该洗漱池具有主动清淤功能和被动清淤功能,主动清淤时,可同时对洗漱池和洗漱池下水管道内壁进行清淤,并且洗漱池具有过筛功能,能将水池内的杂物进行过滤,以防止杂物进入到下水管道造成堵塞,当杂物积累较多造成堵塞时,则会自动开启被动清淤功能,并将积累的杂物送出,以便及时清理。

Figure 202010403504

The invention discloses a wash basin with a dredging function, comprising a base and a pool body, wherein the base is provided with a sewer pipe, the pool body is provided with a water storage cavity with an upward opening, and a left side of the upper end of the water storage cavity is provided. The cavity wall is provided with a clogging sensing mechanism that senses the clogging of the wash basin, the water storage cavity is provided with a pool wall dredging mechanism for comprehensively scrubbing the wash basin, and the sewer pipe is provided with a dredging mechanism for the wash basin pipeline. Pipe wall dredging mechanism, the sink has the function of active dredging and passive dredging. When actively dredging, it can dredging the inner wall of the sink and the sewer pipe of the sink at the same time, and the sink has the function of sieving, which can remove the silt. The debris in the pool is filtered to prevent the debris from entering the sewer pipe and causing blockage. When the debris accumulates and causes blockage, the passive dredging function will be automatically activated, and the accumulated debris will be sent out for timely cleaning.

Figure 202010403504

Description

Wash basin with desilting function
Technical Field
The invention relates to the field of dredging, in particular to a wash basin with a dredging function.
Background
The wash basin is a necessary washing facility for families, and after the wash basin is used for a long time, more sludge can be accumulated on the surface of the wash basin and the inner wall of a sewer pipe, so that the sludge in the wash basin needs to be cleaned regularly to keep the sanitary standard of the wash basin.
At present, most of wash ponds need to be cleaned manually after accumulating sludge, and a common wash pond can not filter sundries and is difficult to dredge when being blocked.
Disclosure of Invention
The invention aims to solve the technical problems of providing a wash basin with a dredging function, overcoming the problems of no automatic dredging function, difficult dredging in blockage and the like, increasing the automatic dredging function and improving the dredging convenience in blockage.
The invention is realized by the following technical scheme.
The invention relates to a wash basin with a dredging function, which comprises a base and a basin body, wherein a sewer pipe is arranged in the base, a water storage cavity with an upward opening is arranged in the basin body, a blockage sensing mechanism for sensing blockage of the wash basin is arranged in the left cavity wall at the upper end of the water storage cavity, a basin wall dredging mechanism for comprehensively scrubbing the wash basin is arranged in the water storage cavity, and a pipe wall dredging mechanism for dredging the pipeline of the wash basin is arranged in the sewer pipe;
the pipe wall dredging mechanism comprises a sewer opening which is positioned in the lower cavity wall of the water storage cavity and is communicated with the sewer pipeline, a lifting cavity with a leftward opening is arranged in the right cavity wall of the sewer opening, a lifting block capable of moving up and down is arranged in the lifting cavity, a tension spring is connected between the upper end surface of the lifting block and the upper cavity wall of the lifting cavity, the upper end surface of the lifting block is connected with one end provided with a pull rope, a push plate capable of moving up and down is arranged at the lower end in the lifting cavity, a supporting spring is connected between the lower end surface of the push plate and the lower cavity wall of the lifting cavity, one end provided with a rope is connected with the lower end surface of the push plate, one end provided with a cord is connected with the right end surface of the push plate, a sundry collecting block positioned in the sewer opening is fixedly arranged on the left end surface of the lifting block, a rotating block capable of moving up and down is arranged at the inner upper end of the lower water outlet, an opening cavity with a downward opening is arranged in the rotating block, a rotating rod is fixedly arranged between the front cavity wall and the rear cavity wall of the opening cavity, a fixed shaft is rotatably connected at the upper end of the rotating rod, the lower end surface of the fixed shaft is fixedly connected with the lower cavity wall of the sundries collecting cavity, a rotating cavity with an inward opening is arranged in the cavity wall of the lower water outlet, a rotatable rotating ring capable of rotating is arranged in the rotating cavity, four scraping plates tightly attached to the cavity wall of the lower water outlet are equidistantly arranged on the inner wall of the rotating ring, a driven cavity with a forward opening is arranged in the rear cavity wall of the rotating cavity, a transmission cavity is arranged in the rear cavity wall of the water storage cavity, a rotating shaft with a lower end extending into the driven cavity is rotatably arranged on the lower cavity wall of the, the friction connection of rotation axis upper end is equipped with and is located the reel of transmission intracavity, the winding is equipped with on the reel the stay cord.
Furthermore, a left-opening check block cavity is arranged in the right cavity wall of the lifting cavity, a check block capable of moving left and right is arranged in the check block cavity, an elastic spring is connected between the right end face of the check block and the right cavity wall of the check block cavity, one end provided with a hemp rope is connected with the right end face of the check block, an upward-opening moving cavity is arranged in the lower cavity wall of the transmission cavity, an upward-opening pressure rod cavity is arranged in the lower cavity wall of the moving cavity, a pressure rod capable of moving up and down is arranged in the pressure rod cavity, a pressure spring is connected between the lower end face of the pressure rod and the lower cavity wall of the pressure rod cavity, and the rear end face of the pressure rod.
Further, the blockage sensing mechanism comprises a water inlet pipeline which is positioned in a lower cavity wall at the left end of the water storage cavity and the lower end of which is communicated with the lower water opening, a floating plate cavity with a rightward opening is arranged in a left cavity wall at the upper end of the water inlet pipeline, a floating plate capable of moving up and down is arranged in the floating plate cavity, an elastic spring is connected between the upper end surface of the floating plate and the upper cavity wall of the floating plate cavity, a sieve plate is arranged at the upper end of the water inlet pipeline, a power-on cavity is arranged at the upper side of the floating plate cavity, a movable conductive block capable of moving left and right is arranged at the left end in the power-on cavity, a compression spring is connected between the left end surface of the movable conductive block and the left cavity wall of the power-on cavity, the left end surface of the movable conductive block is connected with the other end of the rope, an ejector rod with the upper end, the motor front end power connection is equipped with the transmission shaft, the motor electricity is connected with the power supply piece.
Further, the pool wall dredging mechanism comprises a working cavity located in the upper cavity wall of the transmission cavity, a rotary rod is arranged on the rear cavity wall of the working cavity in a rotating mode, a driven gear is arranged at the rear end of the rotary rod, a driving gear is arranged at the front end of the rotary rod, a rotary shaft is arranged on the rear cavity wall of the water storage cavity in a rotating mode, a rotary gear connected with the driving gear in a meshed mode is arranged on the rotary shaft, a fixed fixing rod is fixedly arranged at the right end of the rotary gear, a hinged plate is hinged to the right end of the fixing rod, bristles are arranged on the right end face of the hinged plate and the rear end face of the fixing rod, a driving bevel gear connected with the driven bevel gear in a meshed mode is arranged at the front end of the transmission shaft, a sector gear is arranged at the rear end of the transmission shaft.
Furthermore, a displacement cavity is arranged in the cavity wall at the upper end of the moving cavity, a limiting block capable of moving left and right is arranged in the displacement cavity, a through hole penetrating up and down is formed in the limiting block, the rack penetrates through the through hole, a reset spring is connected between the left end face of the limiting block and the left cavity wall of the displacement cavity, and the left end face of the limiting block is connected with the other end of the wire rope.
The invention has the beneficial effects that: the sink has the advantages that the structure is simple, the operation is convenient, the sink has the active dredging function and the passive dredging function, the inner walls of sewer pipes of the sink and the sink can be simultaneously dredged during active dredging, the sink has the sieving function, sundries in the sink can be filtered to prevent the sundries from entering the sewer pipes to cause blockage, and when more sundries are accumulated to cause blockage, the passive dredging function can be automatically started, and the accumulated sundries are sent out to be timely cleaned.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic structural diagram at A-A in FIG. 1 according to an embodiment of the present invention;
FIG. 3 is a schematic diagram of the structure at B in FIG. 1 according to an embodiment of the present invention;
FIG. 4 is a schematic structural diagram at C in FIG. 1 according to an embodiment of the present invention;
FIG. 5 is a schematic structural diagram at D-D in FIG. 2 according to an embodiment of the present invention.
Detailed Description
The invention will now be described in detail with reference to fig. 1-5, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The wash basin with the dredging function, which is described in conjunction with the attached drawings 1-5, comprises a base 10 and a basin body 21, wherein a sewer pipe 49 is arranged in the base 10, a water storage cavity 22 with an upward opening is arranged in the basin body 21, a blockage sensing mechanism 73 for sensing blockage of the wash basin is arranged in a left cavity wall at the upper end of the water storage cavity 22, a basin wall dredging mechanism 72 for comprehensively scrubbing the wash basin is arranged in the water storage cavity 22, a pipe wall dredging mechanism 71 for dredging the pipeline of the wash basin is arranged in the sewer pipe 49, the pipe wall dredging mechanism 71 comprises a sewer 45 which is arranged in a lower cavity wall of the water storage cavity 22 and is communicated with the sewer pipe 49, a lifting cavity 18 with a leftward opening is arranged in a right cavity wall of the sewer 45, a lifting block 13 capable of moving up and down is arranged in the lifting cavity 18, a spring 19 is connected between an upper end surface of the lifting block 13 and an upper cavity 18, the upper end face of the lifting block 13 is connected with one end provided with a pull rope 20, the lower end of the lifting cavity 18 is provided with a push plate 78 capable of moving up and down, a support spring 77 is connected between the lower end face of the push plate 78 and the lower cavity wall of the lifting cavity 18, the lower end face of the push plate 78 is connected with one end provided with a rope 12, the right end face of the push plate 78 is connected with one end provided with a rope 79, the left end face of the lifting block 13 is fixedly provided with a sundry collecting block 44 positioned in the lower nozzle 45, the sundry collecting block 44 is internally provided with a sundry collecting cavity 43 with an upward opening, the sundry collecting cavity 43 is internally fixedly provided with a fixed shaft 42, the upper end of the lower nozzle 45 is provided with a rotary stop 39 capable of moving up and down, the rotary stop 39 is internally provided with an opening cavity 40 with a downward opening, a rotating rod 41 is fixedly arranged between the, the lower end surface of the fixed shaft 42 is fixedly connected with the lower cavity wall of the sundries collecting cavity 43, a rotating cavity 47 with an inward opening is arranged in the cavity wall of the sewer pipe 49, a rotatable rotary ring 48 is arranged in the rotary cavity 47, four scraping plates 46 tightly attached to the cavity wall of the sewer pipe 49 are equidistantly arranged on the inner wall of the rotary ring 48, a driven cavity 50 with a forward opening is arranged in the rear cavity wall of the rotating cavity 47, a transmission cavity 70 is arranged in the rear cavity wall of the water storage cavity 22, the lower cavity wall of the transmission cavity 70 is rotatably provided with a rotating shaft 52 with a lower end extending into the driven cavity 50, the lower end of the rotating shaft 52 is provided with a rotating gear 51 which is meshed with the rotating ring 48, the upper end of the rotating shaft 52 is provided with a driven bevel gear 54 positioned in the transmission cavity 70, the upper end of the rotating shaft 52 is provided with a reel 85 positioned in the transmission cavity 70 in a friction connection mode, and the pull rope 20 is wound on the reel 85.
Beneficially, a block cavity 16 with a leftward opening is formed in the right cavity wall of the lifting cavity 18, a block 17 capable of moving left and right is arranged in the block cavity 16, an elastic spring 14 is connected between the right end face of the block 17 and the right cavity wall of the block cavity 16, one end of a hemp rope 15 is connected to the right end face of the block 17, a moving cavity 67 with an upward opening is formed in the lower cavity wall of the transmission cavity 70, a pressing rod cavity 63 with an upward opening is formed in the lower cavity wall of the moving cavity 67, a pressing rod 65 capable of moving up and down is arranged in the pressing rod cavity 63, a pressure spring 64 is connected between the lower end face of the pressing rod 65 and the lower cavity wall of the pressing rod cavity 63, and the rear end face of the pressing rod 65 is connected with the other end of the.
Beneficially, the blockage sensing mechanism 73 includes a water inlet pipe 38 located in a lower cavity wall at the left end of the water storage cavity 22, and the lower end of the water inlet pipe 38 is communicated with the lower water gap 45, a floating plate cavity 29 with a rightward opening is arranged in a left cavity wall at the upper end of the water inlet pipe 38, a floating plate 37 capable of moving up and down is arranged in the floating plate cavity 29, an elastic spring 36 is connected between the upper end surface of the floating plate 37 and the upper cavity wall of the floating plate cavity 29, a screen plate 28 is arranged at the upper end of the water inlet pipe 38, a power-on cavity 34 is arranged on the upper side of the floating plate cavity 29, a movable conductive block 32 capable of moving left and right is arranged at the left end of the power-on cavity 34, a compression spring 33 is connected between the left end surface of the movable conductive block 32 and the left cavity wall of the power-on cavity 34, the left end surface of the movable conductive block 32 is connected with the other end of the rope 12, a motor 56 is fixedly arranged in the rear cavity wall at the lower end of the transmission cavity 70, a transmission shaft 57 is arranged at the front end of the motor 56 in a power connection mode, and the motor 56 is electrically connected with a power supply block 31.
Advantageously, the wall dredging means 72 comprises a working chamber 59 located in the upper chamber wall of the drive chamber 70, a rotating rod 60 is rotatably arranged on the rear cavity wall of the working cavity 59, a driven gear 58 is arranged at the rear end of the rotating rod 60, the front end of the rotating rod 60 is provided with a driving gear 61, the rear cavity wall of the water storage cavity 22 is rotatably provided with a rotating shaft 25, a rotating gear 26 engaged with the driving gear 61 is arranged on the rotating shaft 25, a fixing rod 24 is fixedly arranged at the right end of the rotating gear 26, a hinged plate 68 is hinged at the right end of the fixed rod 24, bristles 69 are arranged on the right end surface of the hinged plate 68 and the rear end surface of the fixed rod 24, the front end of the transmission shaft 57 is provided with a drive bevel gear 62 engaged with the driven bevel gear 54, the rear end of the transmission shaft 57 is provided with a sector gear 55, a rack 53 capable of moving up and down is arranged in the moving cavity 67, and a telescopic spring 66 is connected between the lower end surface of the rack 53 and the lower cavity wall of the movable cavity 67.
Advantageously, a displacement cavity 81 is arranged in a cavity wall at the upper end of the moving cavity 67, a limiting block 76 capable of moving left and right is arranged in the displacement cavity 81, a through hole 74 penetrating up and down is arranged in the limiting block 76, the rack 53 penetrates through the through hole 74, a return spring 75 is connected between the left end face of the limiting block 76 and the left cavity wall of the displacement cavity 81, and the other end of the wire rope 79 is connected to the left end face of the limiting block 76.
In the initial state, the push plate 78 pulls the rope 12 and the wire 79 under the action of the supporting spring 77, the limiting block 76 is located at the left side of the sector gear 55 under the action of the pulling force of the wire 79 and is in a disengaged state with respect to the sector gear 55, the press rod 65 is located at the upper end in the press rod cavity 63 under the action of the pressure spring 64 and pulls the hemp rope 15, and the stopper 17 is located in the stopper cavity 16 under the action of the pulling force of the hemp rope 15.
When the wash basin is actively desilted, the middle of the rotary stop 39 is manually pressed and downwards extruded, the rotary stop 39 moves downwards to drive the fixed shaft 42, the sundries collecting block 44 and the lifting block 13 to move downwards, the lifting block 13 moves downwards to push the rope 79 to move downwards and loosen the rope 12 and the rope 79, the movable conductive block 32 loses the tension of the rope 12 and moves rightwards under the elastic force of the compression spring 33 to be contacted with the power supply block 31, the motor 56 is connected with the power supply to start working, the motor 56 works to drive the sector gear 55 and the driving bevel gear 62 to rotate, the limiting block 76 loses the tension of the rope 79 and moves rightwards under the elastic force of the return spring 75, at the moment, the rack 53 moves rightwards to be meshed with the sector gear 55 and the driven gear 58, the sector gear 55 rotates to drive the rack 53 meshed with the sector gear to move upwards and stop extruding the pressure lever 65, the pressing rod 65 moves upwards under the action of the pressure spring 64 to loosen the hemp rope 15, the stop block 17 loses the tension action of the hemp rope 15 and moves leftwards under the elastic force action of the elastic spring 14, at the moment, the stop block 17 is positioned on the upper side of the lifting block 13 to stop the lifting block 13, the lifting block 13 cannot move upwards and return, the motor 56 can be always kept in a working state, the rack 53 moves upwards to drive the driven gear 58 meshed with the rack to rotate, so as to drive the rotating rod 60 and the driving gear 61 on the rotating rod 60 to rotate, the driving gear 61 rotates to drive the rotating gear 26 meshed with the driving gear to rotate, the rotating gear 26 rotates to drive the fixing rod 24 and the hinged plate 68 to rotate, the fixing rod 24 rotates to drive the bristles 69 on the rear end face of the fixing rod 24 to brush the rear end face of the water storage cavity 22, the hinged plate 68 rotates to drive the bristles 69 on the right end, when the sector gear 55 rotates to be disengaged from the rack 53, the rack 53 moves downwards under the action of the elastic force of the expansion spring 66, so as to drive the driven gear 58 to rotate reversely, so as to drive the fixed rod 24 and the hinged plate 68 to rotate reversely and reset through mechanical transmission, when the rack 53 moves downwards, the press rod 65 can extrude again, the press rod 65 moves downwards to strain the hemp rope 15 again, the stop block 17 moves rightwards under the action of the tensile force of the hemp rope 15 to separate from the stop of the lifting block 13, the lifting block 13 moves upwards under the action of the tensile force of the tension spring 19 to reset, the push plate 78 moves upwards under the action of the support spring 77 to reset, so as to strain the rope 12 and the rope 79 again, the movable conductive block 32 moves leftwards under the action of the tensile force of the rope 12 to be disengaged from the power supply block 31, the motor 56 is powered off and stops working, the limiting block 76 moves leftwards under the action of, the rack 53 is disengaged from the sector gear 55 and the driven gear 58, so that the water storage cavity 22 is brushed once, and if the water storage cavity 22 needs to be cleaned again, the same operation is repeated;
in the process of active dredging, the drive bevel gear 62 rotates to drive the driven bevel gear 54 meshed with the drive bevel gear to rotate, so as to drive the rotating shaft 52 and a reel 85 and a rotating gear 51 on the rotating shaft 52 to rotate, the reel 85 rotates to tighten the pull rope 20, the lifting block 13 cannot move upwards because of being blocked by the stop block 17, the reel 85 slips on the rotating shaft 52, the rotating gear 51 rotates to drive a rotating ring 48 meshed with the rotating gear to rotate, so as to drive four scraping plates 46 to rotate, and the scraping plates 46 rotate to rotationally scrape sludge on the cavity wall of the sewer pipe 49;
when sundries are accumulated and blocked in the sundries collecting cavity 43, the sundries collecting block 44 blocks water and cannot flow down smoothly, the water in the water storage cavity 22 begins to accumulate and increase, when the water level in the water storage cavity 22 rises to the sieve plate 28, the water enters the water inlet pipeline 38 and begins to accumulate, the floating plate 37 moves upwards under the buoyancy action of the water in the water inlet pipeline 38, the floating plate 37 moves upwards to drive the ejector rod 35 to move upwards, the ejector rod 35 moves upwards to push the power supply block 31 to move leftwards, the ejector rod 35 moves leftwards to be in contact with the movable conductive block 32 to be electrified, the motor 56 starts to work, the motor 56 works to drive the reel 85 to rotate through mechanical transmission, the pull rope 20 is tightened by the reel 85, the lifting block 13 moves upwards under the pulling force of the pull rope 20 to drive the sundries collecting block 44 to move upwards, the sundries collecting cavity 43 is exposed in the external environment, and sundries in the sundries collecting block 44 can be removed, the water in the water storage cavity 22 can continuously flow downwards, the water in the water inlet pipeline 38 flows out, the floating plate 37 and the ejector rod 35 move downwards under the action of the elastic spring 36, the power supply block 31 loses the extrusion of the ejector rod 35 and moves rightwards to reset under the action of the tension of the extension spring 30, the lifting block 13 moves downwards to reset under the action of the pull rope 20, and the scraper 46 can also desilt the inner wall of the sewer pipe 49 in the process;
when one end of the rotary stop 39 is pushed down manually, the rotary stop 39 can rotate on the rotary rod 41, so that the water in the water storage cavity 22 can be discharged.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (1)

1.一种具有清淤功能的洗漱池,包括底座和池体,其特征在于:所述底座内设有下水管道,所述池体内设有开口向上的蓄水腔,所述蓄水腔上端的左腔壁内设有感应洗漱池堵塞的堵塞感应机构,所述蓄水腔内设有对洗漱池进行全面刷洗的池壁清淤机构,所述下水管道内设有对洗漱池管道进行清淤的管壁清淤机构;所述管壁清淤机构包括位于所述蓄水腔下腔壁内且连通所述下水管道的下水口,所述下水口右腔壁内设有开口向左的升降腔,所述升降腔内设有能上下运动的升降块,所述升降块上端面与所述升降腔上腔壁之间连接设有拉力弹簧,所述升降块上端面连接设有拉绳的一端,所述升降腔内下端设有能上下运动的推板,所述推板下端面与所述升降腔下腔壁之间连接设有支撑弹簧,所述推板下端面连接设有绳索的一端,所述推板右端面连接设有线绳的一端,所述升降块左端面固定设有位于所述下水口内的杂物收集块,所述杂物收集块内设有开口向上的杂物收集腔,所述杂物收集腔内固定设有固定轴,所述下水口内上端设有能上下运动的旋转挡块,所述旋转挡块内设有开口向下的开口腔,所述开口腔前后腔壁之间固定设有转杆,所述转杆上端转动连接有固定轴,所述固定轴下端面与所述杂物收集腔下腔壁固定连接,所述下水管道腔壁内设有开口向内的旋转腔,所述旋转腔内设有能转动的旋转环,所述旋转环内壁等距设有四个紧贴下水管道腔壁的刮板,所述旋转腔后腔壁内设有开口向前的从动腔,所述蓄水腔后腔壁内设有传动腔,所述传动腔下腔壁转动设有下端伸入所述从动腔内的旋转轴,所述旋转轴下端设有与所述旋转环啮合连接的旋转齿轮,所述旋转轴上端设有位于所述传动腔内的从动锥齿轮,所述旋转轴上端摩擦连接设有位于所述传动腔内的绕线轮,所述绕线轮上缠绕设有所述拉绳;所述升降腔右腔壁内设有开口向左的挡块腔,所述挡块腔内设有能左右运动的挡块,所述挡块右端面与所述挡块腔右腔壁之间连接设有弹力弹簧,所述挡块右端面连接设有麻绳的一端,所述传动腔下腔壁内设有开口向上的移动腔,所述移动腔下腔壁内设有开口向上的压杆腔,所述压杆腔内设有能上下运动的压杆,所述压杆下端面与所述压杆腔下腔壁之间连接设有压力弹簧,所述压杆后端面连接有所述麻绳的另一端;所述堵塞感应机构包括位于所述蓄水腔左端的下腔壁内且下端与所述下水口连通的进水管道,所述进水管道上端的左腔壁内设有开口向右的浮板腔,所述浮板腔内设有能上下运动的浮板,所述浮板上端面与所述浮板腔上腔壁之间连接设有弹性弹簧,所述进水管道上端设有筛板,所述浮板腔上侧设有通电腔,所述通电腔内左端设有能左右运动的移动导电块,所述移动导电块左端面与所述通电腔左腔壁之间连接设有压缩弹簧,所述移动导电块左端面连接有所述绳索的另一端,所述浮板上端面固定设有一个上端伸入所述通电腔内的顶杆,所述传动腔下端的后腔壁内固定设有电机,所述电机前端动力连接设有传动轴,所述电机电连接有电源块;所述池壁清淤机构包括位于所述传动腔上腔壁内的工作腔,所述工作腔后腔壁上转动设有旋转杆,所述旋转杆后端设有从动齿轮,所述旋转杆前端设有主动齿轮,所述蓄水腔后腔壁转动设有转轴,所述转轴上设有与所述主动齿轮啮合连接的转动齿轮,所述转动齿轮右端固定设有固定杆,所述固定杆右端铰接有铰接板,所述铰接板右端面和所述固定杆后端面均设有刷毛,所述传动轴前端设有与所述从动锥齿轮啮合连接的主动锥齿轮,所述传动轴后端设有扇形齿轮,所述移动腔内设有能上下运动的齿条,所述齿条下端面与所述移动腔下腔壁之间连接设有伸缩弹簧;所述移动腔上端的腔壁内设有位移腔,所述位移腔内设有能左右运动的限制块,所述限制块内设有上下贯穿的贯穿孔,所述齿条穿过所述贯穿孔,所述限制块左端面与所述位移腔左腔壁之间连接设有复位弹簧,所述限制块左端面连接有所述线绳的另一端。1. a wash basin with a dredging function, comprising a base and a pool body, characterized in that: the base is provided with a sewer pipe, the pool body is provided with a water storage cavity with an upward opening, and the upper end of the water storage cavity is provided with A blockage sensing mechanism for sensing the clogging of the wash basin is provided in the left cavity wall of the sump, the pool wall cleaning mechanism for comprehensively brushing the wash basin is provided in the water storage cavity, and the sewer pipe is provided with a wash basin pipe cleaning mechanism. The silt removal mechanism of the pipe wall; the pipe wall dredging mechanism comprises a water outlet located in the lower cavity wall of the water storage cavity and communicated with the sewer pipe, and the right cavity wall of the water outlet is provided with a left opening. Lifting cavity, a lifting block that can move up and down is arranged in the lifting cavity, a tension spring is connected between the upper end surface of the lifting block and the upper cavity wall of the lifting cavity, and a pulling rope is connected to the upper end surface of the lifting block The lower end of the lift cavity is provided with a push plate that can move up and down, a support spring is connected between the lower end surface of the push plate and the lower cavity wall of the lift cavity, and a rope is connected to the lower end surface of the push plate The right end face of the push plate is connected to the end of the wire rope, the left end face of the lifting block is fixed with a sundries collecting block located in the water outlet, and the sundry collecting block is provided with sundries with an upward opening. A collection cavity, a fixed shaft is fixed in the sundries collection cavity, a rotating block capable of moving up and down is set at the upper end of the water outlet, and an opening cavity with an opening downward is set in the rotating block, and the opening cavity A rotating rod is fixed between the front and rear cavity walls, the upper end of the rotating rod is rotatably connected with a fixed shaft, the lower end surface of the fixed shaft is fixedly connected with the lower cavity wall of the sundries collection cavity, and the cavity wall of the sewer pipe is provided with A rotating cavity with an inward opening, a rotatable rotating ring is arranged in the rotating cavity, and four scrapers are arranged on the inner wall of the rotating ring at equal distances, which are closely attached to the cavity wall of the sewer pipe. There is a driven cavity with an opening forward, a transmission cavity is arranged in the rear cavity wall of the water storage cavity, and the lower cavity wall of the transmission cavity is rotated with a rotating shaft whose lower end extends into the driven cavity. The lower end is provided with a rotating gear meshed with the rotating ring, the upper end of the rotating shaft is provided with a driven bevel gear located in the transmission cavity, and the upper end of the rotating shaft is frictionally connected with a winding ring located in the transmission cavity. The wire pulley is wound with the pull rope; the right cavity wall of the lifting cavity is provided with a block cavity with an opening to the left, and the block cavity is provided with a block that can move left and right, An elastic spring is connected between the right end surface of the block and the right cavity wall of the block cavity, the right end surface of the block is connected with one end of the hemp rope, and the lower cavity wall of the transmission cavity is provided with an upward opening. A moving cavity, the lower cavity wall of the moving cavity is provided with a pressure rod cavity with an upward opening, the pressure rod cavity is provided with a pressure rod that can move up and down, and the lower end surface of the pressure rod is connected to the lower cavity wall of the pressure rod cavity There is a pressure spring connected between them, and the rear end surface of the pressure rod is connected with the other end of the hemp rope; the blockage sensing mechanism includes a lower cavity wall located at the left end of the water storage cavity, and the lower end communicates with the water outlet The water inlet pipe, the left cavity wall of the upper end of the water inlet pipe is provided with a floating plate cavity with an opening to the right, the floating plate cavity is provided with a floating plate that can move up and down, and the upper surface of the floating plate is connected to the A spring is connected between the upper cavity walls of the floating plate cavity. The upper end of the water inlet pipe is provided with a sieve plate, the upper side of the floating plate cavity is provided with a energization cavity, and the left end of the energization cavity is provided with a movable conductive block that can move left and right, and the left end surface of the movable conductive block is connected to the A compression spring is connected between the walls of the left cavity of the energization cavity, the other end of the rope is connected to the left end surface of the moving conductive block, and the upper end of the floating board is fixedly provided with an upper end extending into the energization cavity. The ejector rod, a motor is fixed in the rear cavity wall at the lower end of the transmission cavity, a transmission shaft is provided in the power connection at the front end of the motor, and a power supply block is electrically connected to the motor; A working cavity in the upper cavity wall of the cavity, a rotating rod is rotated on the rear cavity wall of the working cavity, a driven gear is set at the rear end of the rotating rod, a driving gear is set at the front end of the rotating rod, and the water storage cavity is The rear cavity wall is rotated with a rotating shaft, the rotating shaft is provided with a rotating gear engaged with the driving gear, the right end of the rotating gear is fixed with a fixed rod, and the right end of the fixed rod is hinged with a hinge plate, the hinge plate Both the right end surface and the rear end surface of the fixed rod are provided with bristles, the front end of the transmission shaft is provided with a driving bevel gear meshed with the driven bevel gear, the rear end of the transmission shaft is provided with a sector gear, and the moving cavity There is a rack that can move up and down, and a telescopic spring is connected between the lower end surface of the rack and the lower cavity wall of the moving cavity; the cavity wall at the upper end of the moving cavity is provided with a displacement cavity, and the displacement cavity There is a restriction block that can move left and right, the restriction block is provided with a through hole that penetrates up and down, the rack passes through the through hole, and the left end face of the restriction block and the left cavity wall of the displacement cavity are arranged between The connection is provided with a return spring, and the left end face of the restriction block is connected with the other end of the wire rope.
CN202010403504.3A 2020-05-13 2020-05-13 A wash basin with dredging function Active CN111472417B (en)

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CN112160385B (en) * 2020-09-14 2021-10-26 黄世业 Automatic dirt-removing and anti-blocking mechanism for drainage U-shaped pipe

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GB191228174A (en) * 1912-12-06 1913-05-01 Andrew Alexander-Todd An Improved Device for Automatically Shutting Off, at a Pre-determined Level, of Water Supplied to Baths and Lavatory Basins and Water and other Liquids Supplied to Storage Tanks and other Receptacles whose Inflow or Supply Control is Operated by Hand or other than by Automatic Means.
CN105926731B (en) * 2016-05-18 2017-11-21 新昌县羽林街道维新机械厂 Semi-automatic easy draining sink
CN108193746A (en) * 2018-02-12 2018-06-22 许景垣 A kind of device for dredging sewer
CN109252567B (en) * 2018-09-21 2020-05-26 重庆工程职业技术学院 a drainage device
CN111119292B (en) * 2019-12-30 2021-04-02 杭州昕华信息科技有限公司 Integral kitchen appliance with water tank

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