Shower column soap dispenser

By designing a rotatable rotating seat and a soap dispensing device on the shower column, the problem of inconvenience in replenishing cleaning liquid in the existing shower column is solved, and an aesthetically pleasing and convenient cleaning liquid replenishing effect is achieved.

CN116327020BActive Publication Date: 2025-09-12PURITY XIAMEN SANITARY WARE CO LTD
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Patent Information

Application Number
CN202111595834.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-24
Publication Date
2025-09-12
Estimated Expiration
2041-12-24

AI Technical Summary

Technical Problem

The existing shower column's platform for placing bath or shampoo bottles is prone to falling due to collisions, has an unsightly appearance, and lacks a reasonable way to replenish cleaning liquids.

Method used

A shower column soap dispenser is designed, which includes a rotatable rotating seat and a soap dispensing device. The soap bottle can be installed with the bottle mouth facing upward, and the soap bottle can be inverted through the rotating seat to facilitate the replenishment of cleaning liquid.

Benefits of technology

The dual functions of the soap dispenser and the shower column are realized, the appearance is beautiful, the waste of cleaning liquid and environmental pollution are avoided, and a convenient liquid replenishment method is provided.

✦ Generated by Eureka AI based on patent content.

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Abstract

A shower column soap dispenser comprises a soap dispensing device, a fixing seat, and a lifting rod connected between the two and used to set up a bathroom structure. The soap dispensing device is internally provided with a soap liquid extrusion structure and is provided with a pivoting structure on each of its left and right sides. A rotating seat is rotatably coupled to each of the pivoting structures. The inner end of each rotating seat has a connecting port, each of which leads to the soap liquid extrusion structure. A soap liquid bottle is detachably coupled to the periphery of each rotating seat. The soap liquid flowing into the soap dispenser from each soap liquid bottle can be squeezed out for use through the soap liquid extrusion structure. The rotating seat of the present invention is rotatable, so the soap liquid bottle can be easily replaced and has the dual function of a shower column and a soap dispensing device.
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Description

Technical Field

[0001] The invention relates to bathroom equipment, and in particular to a shower column soap dispenser. Background Art

[0002] Existing shower columns are mounted on the wall of the bathroom. Their structure mainly includes a lifting rod combined between two fixed seats spaced apart in an upper and lower position, or a lifting rod combined between a faucet and a fixed seat above it. By combining the lifting rod with a platform or a shower head hanger and other bathroom structures, a shower head can be hung or a bath or shampoo bottle can be placed.

[0003] Because the aforementioned shower column only has a platform for placing bath or shampoo bottles, when using bath or shampoo, the user must first place the bath or shampoo bottles on the platform before taking the cleansing liquid from the bottles. However, the bottles placed on the platform are easily knocked over and the appearance is unsightly, thus requiring further improvement. Summary of the Invention

[0004] In view of this, an object of the present invention is to provide a bathroom fixture that is equipped with a rotatable rotating seat for dispensing a soap bottle, thereby achieving the dual functions of dispensing soap and providing a bathroom structure. The feature is that the soap bottle can be installed on the rotating seat with the bottle mouth facing upward and then rotated to an inverted usage position, thereby making it convenient for the user to replenish the cleaning liquid.

[0005] To achieve the above-mentioned objectives, the present invention provides a shower column soap dispenser comprising a housing, a soap dispensing device, and a shower column device connected to the soap dispensing device. The soap dispensing device is internally provided with a soap liquid extrusion structure. The soap dispensing device is provided with a first fixing structure disposed at the rear end of the housing and having a lateral hole on at least one of its left and right sides. A pivoting structure is provided in the lateral hole. A rotating base is rotatably coupled to the pivoting structure. The rotating base has a soap liquid bottle coupling opening on its circumference and a connection opening on the side facing the lateral hole that communicates with the soap liquid bottle coupling opening. The connection opening leads to the soap liquid extrusion structure. A soap liquid bottle is detachably coupled to the soap liquid bottle coupling opening.

[0006] The shower column device has a fixing seat, and the fixing seat is provided with a second fixing structure. A lifting rod for combining with a bathroom structure is connected between the shell of the soap dispensing device and the fixing seat.

[0007] Preferably, the present invention also includes a valve core, which is arranged in the outer shell, and at least one of the left and right sides of the valve core has a side hole, and the side hole is located on the inner side of the lateral hole, the connecting port of the rotating seat is sealedly connected to the side hole of the valve core, and the front end face of the valve core has at least one front hole, and the front hole is communicated with the side hole; the soap liquid extrusion structure is arranged in the outer shell, and a soap liquid retention chamber is provided inside to match the front hole, a first one-way valve is provided between the soap liquid retention chamber and the front hole, and a pressing element that resets after being pressed is provided to match the soap liquid retention chamber, and the pressing element compresses the soap liquid retention chamber when pressed, so that the liquid in the soap liquid retention chamber is discharged from a liquid outlet, and a second one-way valve is provided between the liquid outlet and the soap liquid retention chamber.

[0008] Preferably, the soap liquid extrusion structure of the present invention is provided with a compression piece in conjunction with the front hole, the compression piece is an elastic block and forms the soap liquid retention chamber inside, the periphery of the front end surface of the compression piece forms a flange portion, and the second one-way valve is connected to the middle of the front end of the compression piece; the pressing element has a front guide hole, the front guide hole has a rear end and a bottom end, the rear end of the front guide hole is nested in the second one-way valve and abuts against the flange portion, the bottom end of the front guide hole is connected to a liquid outlet pipe, and the liquid outlet is provided at the bottom end of the liquid outlet pipe.

[0009] Preferably, the valve core of the present invention has a buckle groove on each of the top and bottom surfaces, the front end portion of the front hole forms a accommodating section with a diameter wider than the rear side, the first one-way valve is arranged in the accommodating section, and has an annular flange protruding toward the periphery at the rear end, and the annular flange is abutted against the rear end periphery of the accommodating section; a rear buckle is provided, and the rear buckle is provided with a rear plate, the rear plate abuts against the front end surface of the valve core and cooperates with the front hole to pass through a rear through-hole respectively, and a rear tube extends backward at the periphery of the rear through-hole respectively, the rear tube penetrates the accommodating section and abuts against the annular flange with the end to fix the first one-way valve in the accommodating section, and a rear hook extends backward from the top edge and the bottom edge of the rear plate, and the two rear hooks are hooked in the two buckle grooves.

[0010] Preferably, the rear end of the compression member of the present invention is an open end and has a covering sheet protruding toward the surrounding, and the covering sheet sealingly covers the rear plate so that the rear perforation communicates with the soap liquid retention chamber; a front buckle is provided, and the front buckle is provided with a front plate, and the front plate abuts against the front of the covering sheet and cooperates with the compression member to pass through a front perforation so that the compression member passes forward through the front perforation, and a front hook extends backward from the top edge and the bottom edge of the front plate, and the two front hooks are hooked into the two buckle grooves.

[0011] Preferably, the pressing element of the present invention includes a front flow guide piece and a button nested in the front flow guide piece, the front flow guide hole is formed in the front flow guide piece, and the back of the front flow guide piece has a rest flange, which surrounds the rear end of the front flow guide hole and rests on the flange part.

[0012] Preferably, the shell of the present invention has a tube body and a vertical tube connected to the front end of the tube body, the tube body is a tube body extending in the front-to-back direction, the lateral hole is provided on at least one of the left and right sides of the tube body, the valve core and the soap liquid extrusion structure are respectively provided in the tube body, the vertical tube is a vertically arranged tube body and the interior of the vertical tube is communicated with the interior of the tube body, the front of the vertical tube has at least one button through-hole, the button passes through the button through-hole forward, and the bottom end of the liquid outlet pipe extends against the bottom end of the vertical tube for positioning.

[0013] Preferably, the tube body of the present invention has at least one convex buckle hole in the rear part of the lateral hole, and a positioning seat is fitted inside the rear end of the tube body, and the contour around the positioning seat matches the inner wall contour of the rear end of the tube body. The first fixing structure is a lock hole and is passed through the positioning seat, and at least one elastic convex buckle is provided on the positioning seat, and the elastic convex buckle is embedded in the convex buckle hole to position the positioning seat in the rear end of the tube body.

[0014] Preferably, the fixing seat of the present invention is located directly above the soap dispensing device, the second fixing structure is a lock hole, and the lifting rod is connected between the front end of the fixing seat and the top end of the vertical pipe.

[0015] Preferably, the pivot structure of the present invention has a fixing ring, which is embedded in the lateral hole and fixed, and the middle of the fixing ring is provided with an axial tube through-hole, and a lateral hook protrudes outwards on opposite sides of the periphery of the axial tube through-hole; the rotating seat has a rotating shell, and the rotating shell has a side opening on the side facing the lateral hole, and the rotating shell forms a tube portion around it, and the inner wall of the tube portion has an internal thread portion, and the soap bottle coupling port is formed on the inner side of the internal thread portion, and a side guide is fixed in the rotating shell. A flow piece, wherein the side flow guide piece extends in the direction of the side hole to form a shaft tube passing through the side port, and a side flow guide hole is formed in the side flow guide piece, one end of the side flow guide hole is communicated with the soap bottle coupling port, and the other end extends into the shaft tube and forms the connecting port at the outer end of the shaft tube, the shaft tube passes through the shaft tube perforation and is rotatably inserted into the side hole of the valve core, and an annular groove is formed on the outer circumferential surface of the portion of the shaft tube that is not inserted into the side hole, and the two side hooks of the pivot structure are hooked in the annular groove.

[0016] Preferably, the soap liquid bottle of the present invention comprises a bottle body and a bottleneck connected to the bottle body, an external thread portion is formed on the outer circumferential surface of the bottleneck, and the external thread portion is screwed into the internal thread portion for fixation.

[0017] The present invention has the advantage that the soap dispenser and the lifting rod for installing the bathroom structure can provide the dual functions of the soap dispenser and the shower column, and the integrated appearance is more beautiful. In addition, because the rotating seat for the soap dispenser to be coupled to the soap bottle can rotate, when replenishing cleaning liquid, the rotating seat can be first rotated to a position where the soap bottle coupling opening faces downward, so that the soap bottle can be installed on the rotating seat with the opening facing upward. Then, the soap bottle and the rotating seat are rotated to a position where the soap bottle is inverted, so that the liquid in the soap bottle can flow out smoothly downward. Since the liquid in the soap bottle does not overflow from the opening during the installation process, liquid loss and waste can be avoided, and the surrounding environment can be prevented from being contaminated, making it convenient for the user to replenish cleaning liquid. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a perspective view of a preferred embodiment of the present invention.

[0019] Figure 2 It is a top view of the above preferred embodiment of the present invention.

[0020] Figure 3 It is an exploded view of the soap dispensing device according to the preferred embodiment of the present invention.

[0021] Figure 4 It is an exploded view of the valve core and soap liquid extrusion structure of the above preferred embodiment of the present invention.

[0022] Figure 5 This invention Figure 4 Exploded view from another angle.

[0023] Figure 6 It is a side sectional view of the soap dispensing device of the preferred embodiment of the present invention.

[0024] Figure 7 It is an exploded view of the rotating seat part of the above preferred embodiment of the present invention.

[0025] Figure 8 It is a front sectional view of the soap dispensing device according to the preferred embodiment of the present invention.

[0026] Figure 9 Schematic diagram of replacing the soap bottle according to the preferred embodiment of the present invention.

[0027] Figure 10 It is a schematic diagram of the preferred embodiment of the present invention in which the soap bottle is turned upside down. DETAILED DESCRIPTION

[0028] In order to explain the present invention more clearly, preferred embodiments are given and described in detail with reference to the accompanying drawings. Figures 1 to 6 1 is a shower column soap dispenser 100 according to a preferred embodiment of the present invention, comprising a soap dispensing device 10 and a shower column device 70 connected to the soap dispensing device 10 .

[0029] The soap dispensing device 10 includes a housing 20, a valve core 30, a soap extrusion structure 40, two rotating seats 50, and two soap bottles 60. A first fixing structure 231 is provided at the rear end of the housing 20. In this preferred embodiment, the first fixing structure 231 comprises two locking holes. The housing 20 has a lateral hole 211 on each of its left and right sides. The two lateral holes 211 are non-circular holes, and a pivot structure 24 is provided in each of the lateral holes 211. The valve core 30 is disposed within the housing 20 and has a lateral hole 31 on each of its left and right sides. Each of the lateral holes 31 is located inside each of the lateral holes 211. The front end of the valve core 30 has a front hole 32 on each of its left and right sides. Each of the front holes 32 communicates with each of the lateral holes 31.

[0030] The soap liquid extrusion structure 40 is disposed in the housing 20 and connected to the front side of the valve core 30. The soap liquid extrusion structure 40 is provided with a soap liquid retention chamber 431 in the interior in conjunction with each of the front holes 32. A first one-way valve 41 is provided between each of the soap liquid retention chambers 431 and each of the front holes 32. A pressing element 45 that resets after being pressed is provided in conjunction with each of the soap liquid retention chambers 431. When pressed, each of the pressing elements 45 compresses each of the soap liquid retention chambers 431, so that the liquid in each of the soap liquid retention chambers 431 is discharged through a liquid outlet 4531. A second one-way valve 433 is provided between each of the liquid outlets 4531 and each of the soap liquid retention chambers 431.

[0031] The two rotating seats 50 are respectively connected to the pivot structures 24 in a rotatable manner. Each rotating seat 50 rotates along a rotation axis A passing through each rotating seat 50. Figure 7 As shown, the rotation axis A is a long axis extending in the left-right direction, and the rotation axis A passes through the center of each side hole 31. A soap bottle coupling opening 53 is provided on the periphery of each rotating seat 50, and each rotating seat 50 has a connecting opening 561 on the side facing each side hole 31. Each connecting opening 561 is sealedly connected to each side hole 31 of the valve core 30; the two soap bottles 60 are each detachably coupled to each soap bottle coupling opening 53.

[0032] Please see Figure 1As shown, the shower column device 70 includes a fixing base 71, a lifting rod 72, and a bathroom structure 73. A second fixing structure 711 is provided at the rear end of the fixing base 71. In this preferred embodiment, the second fixing structure 711 is a lock hole. The lifting rod 72 is a long straight rod connected between the housing 20 of the soap dispenser 10 and the fixing base 71 of the shower column device 70. In this preferred embodiment, the bathroom structure 73 is a shower head hanger that is coupled to the lifting rod 72 and provides a shower head for hanging. The height of the shower head hanger 73 can be adjusted relative to the lifting rod 72. In other preferred embodiments, the bathroom structure 73 can be a hanging basket, a platform, or an overhead shower head coupled to the top of the lifting rod 72.

[0033] When the present invention is used, please refer to Figure 1 and Figure 6 As shown, each of the soap bottles 60 stores liquids such as soap, hand soap, shower gel, or shampoo. When the user needs to use the aforementioned liquids to wash their hands or body, they press each pressing element 45, which compresses each of the soap holding chambers 431, causing the liquid in each of the soap holding chambers 431 to be discharged through the second one-way valves 433 at the front to the liquid outlets 4531 for use. The user then releases each of the pressing elements 45, causing the pressing elements 45 to return to their original positions. As each of the soap holding chambers 431 returns to its original size, a vacuum is generated, causing the liquid in each of the soap bottles 60 to be drawn through the connection ports 561 of the rotating base 50, the side holes 31, and the first one-way valves 41 into the soap holding chambers 431 for use.

[0034] When the cleaning liquid in each soap bottle 60 is exhausted and needs to be replenished or replaced with a new soap bottle 60, please refer to Figure 9 、 Figure 10 As shown, first rotate each of the rotating seats 50 to a position where the soap bottle coupling openings 53 face downward, then remove each of the soap bottles 60 from the soap bottle coupling openings 53, and then couple the soap bottles 60 filled with cleaning liquid to the soap bottle coupling openings 53 of each of the rotating seats 50 with their openings facing upward. Finally, rotate each of the soap bottles 60 together with each of the rotating seats 50 to a state where the soap bottles 60 are inverted, so that the liquid in each of the soap bottles 60 can flow smoothly to the soap bottle coupling openings 53 of each of the rotating seats 50 under the action of gravity, thereby completing the installation of each of the soap bottles 60.

[0035] In addition to the preferred embodiment described above, in which a lateral hole 211 is respectively provided on the left and right sides of the housing 20, and two pivot structures 24 are respectively provided in the two lateral holes 211, in other preferred embodiments, a lateral hole 211 may be provided on only one of the left and right sides of the housing 20, and the pivot structure 24 may be provided in the lateral hole 211, and a rotating seat 50 may be rotatably coupled to the pivot structure 24.

[0036] In conjunction with the aforementioned single rotating seat 50, the valve core 30 has a side hole 31 on only one of its left and right side surfaces, so that the connecting port 561 of the rotating seat 50 is sealedly connected to the side hole 31. The front end surface of the valve core 30 has only a front hole 32, which communicates with the side hole 31. The soap liquid extrusion structure 40 is equipped with a soap liquid retention chamber 431, a first one-way valve 41, a pressing element 45 that resets after being pressed, a liquid outlet 4531, and a second one-way valve 433 to cooperate with the single front hole 32. The connection and actuation of the aforementioned components of the soap liquid extrusion structure 40 are the same as those described in the preferred embodiment.

[0037] The detailed structure of the soap dispensing device 10 will be further described using the aforementioned preferred embodiment. The preferred embodiment takes as an example a configuration in which a rotating seat 50 is provided on each of the left and right sides of the soap dispensing device 10. As in the other preferred embodiments described above, the soap dispensing device 10 may include the rotatable rotating seat 50 on only one of the left and right sides, with only one rotating seat 50 being used to connect to a soap bottle 60. In this case, the valve core 30 and the soap extrusion mechanism 40, described in detail below, can be adjusted from a configuration capable of simultaneously cooperating with two rotating seats 50 to a configuration capable of cooperating with only a single rotating seat 50. This configuration can be achieved by converting the configuration into a soap dispensing device 10 having a single rotating seat 50. The soap dispensing device 10 having a single rotating seat 50 can then be connected to the shower column device 70 to form the shower column soap dispenser 100.

[0038] Please see Figures 1 to 6As shown, in the preferred embodiment described above, the housing 20 comprises a tubular body 21 and a vertical tube 22 connected to the front end of the tubular body 21. The tubular body 21 is a circular tubular body extending in the front-to-back direction. The lateral holes 211 are provided on the left and right sides of the tubular body 21. The tubular body 21 has a button hole 212 on each side of the rear portion of the two lateral holes 211. The vertical tube 22 is a vertically disposed tubular body whose interior communicates with the interior of the tubular body 21. The vertical tube 22 has a button hole 221 on each side of the front end. The fixing base 71 of the shower column device 70 is located directly above the soap dispenser 10, and the lifting rod 72 is connected between the front end of the fixing base 71 and the top end of the vertical tube 22.

[0039] The valve core 30 is disposed within the tube body 21. The front half of the valve core 30 has a buckle groove 33 on each of its top and bottom surfaces. The front end of each front hole 32 forms a receiving section 321 with a wider diameter than the rear end. The rear end of the valve core 30 has an embedded section 34 with a non-circular outer contour. The soap liquid extrusion structure 40 is disposed within the tube body and connected to the front side of the valve core 30. To secure the two first one-way valves 41 and the two second one-way valves 433 to the front side of the valve core 30, the soap liquid extrusion structure 40 is equipped with a rear buckle 42 and a front buckle 44, respectively.

[0040] Each first one-way valve 41 is a nozzle valve and is arranged in each of the accommodating sections 321. Each of the first one-way valves 41 has an annular flange 411 protruding toward the periphery at the rear end of each of the accommodating sections 321, and each of the annular flanges 411 is abutted against the periphery of the rear end of each of the accommodating sections 321. The rear buckle 42 is provided with a rear plate 421, and the rear plate 421 abuts against the front end surface of the valve core 30 and cooperates with each of the front holes 32 to pass through a rear through-hole 422, and a rear tube 423 is extended backward at the periphery of each of the rear through-holes 422. Each of the rear tubes 423 penetrates into each of the accommodating sections 321 and abuts against each of the annular flanges 411 at its end to fix each of the first one-way valves 41 in each of the accommodating sections 321. A rear hook 424 is extended backward from the top edge and the bottom edge of the rear plate 421, and the two rear hooks 424 are hooked into the two buckle grooves 33 for positioning.

[0041] A compression member 43 is provided in conjunction with each front hole 32. Each compression member 43 is an elastic block made of a polymer such as rubber, silicone, or plastic. A soap retention chamber 431 is formed within each compression member 43. A flange portion 432 is formed around the periphery of the front end surface of each compression member 43. Each second one-way valve 433 is a nozzle valve and is connected to the middle of the front end of each compression member 43. The rear end of each second one-way valve 433 communicates with the front end of each soap retention chamber 431. The rear end of each compression member 43 is open and has a covering piece 434 protruding toward the periphery. In this preferred embodiment, the covering pieces 434 at the rear ends of the two compression members 43 are connected to form a single piece. In other preferred embodiments, the covering pieces 434 at the rear ends of the compression members 43 may be separate. The covering piece 434 sealingly covers the front of the rear plate 421, connecting each rear through-hole 422 with the rear end of each soap retention chamber 431.

[0042] The front buckle 44 is provided with a front plate 441, which abuts against the front of the covering plate 434 and cooperates with each compression member 43 to pass through a front through-hole 442 respectively, so that each compression member 43 passes forward through each front through-hole 442, and a front hook 443 extends backward from the top edge and the bottom edge of the front plate 441. In this preferred embodiment, each front hook 443 is a pair of hook bodies and is located on the left and right sides of each rear hook 424 to avoid interference between the position of each front hook 443 and each rear hook 424. The two front hooks 443 are hooked in the two buckle slots 33 for positioning.

[0043] Each of the pressing elements 45 includes a front guide member 451 and a button 452 nested in each of the front guide members 451. Each of the buttons 452 passes forward through each of the button through-holes 221 of the vertical pipe 22. A front guide hole 4511 is formed in each of the front guide members 451. Each of the front guide holes 4511 has a rear end and a bottom end. A back of each of the front guide members 451 has a supporting flange 4512. Each of the supporting flanges 4512 surrounds each of the front guide holes. Around the rear end of 4511, each front flow guide member 451 is nested around each second one-way valve 433 with the rear end of each front flow guide hole 4511, and each abutting flange 4512 is abutted against the flange portion 432 on the front side of each compression member 43, and the bottom end of each front flow guide hole 4511 is connected to a liquid outlet pipe 453, and the bottom end of each liquid outlet pipe 453 extends to the bottom end of the vertical pipe 22 for positioning, and each liquid outlet 4531 is provided at the bottom end of each liquid outlet pipe 453.

[0044] The rear end of the tube body 21 is fitted with a positioning seat 23 for fixing to a wall. The contour of the positioning seat 23 matches the contour of the inner wall of the rear end of the tube body 21. Two locking holes of the first fixing structure 231 are provided on the rear side of the positioning seat 23. An elastic protrusion 232 is provided on each of the left and right side surfaces of the positioning seat 23. A positioning groove 233 is formed in the front of the positioning seat 23, which matches the shape of the embedding section 34. Each of the pivot structures 24 has a fixing ring 241, which is fixedly inserted into each of the lateral holes 211. Each fixing ring 241 has an axle tube through-hole 242 in the middle. A lateral hook 243 protrudes outward from opposite sides of the periphery of each axle tube through-hole 242. The two lateral hooks 243 extend in a direction parallel to the direction of the rotation axis A.

[0045] When the housing 20 is fixed to the wall via the positioning seat 23, the positioning seat 23 is first fixed to the wall by passing each fixing member through the locking hole of the first fixing structure 231. Then, the rear end of the tube body 21 is inserted into the positioning seat 23. The rear end surface of the positioning seat 23 is aligned front-to-back with the rear end edge of the vertical tube 22, and the two elastic protrusions 232 are respectively inserted into the two protrusion holes 212 for fixing. This achieves the effect of quickly installing the soap dispensing device 10 and facilitating disassembly and maintenance. In other preferred embodiments, only one or more protrusion holes 212 can be provided to accommodate the same number of elastic protrusions 232, thereby quickly fixing the soap dispensing device 10. When the housing 20 is inserted into the positioning seat 23, the embedding section 34 of the valve core 30 is embedded in the positioning embedding groove 233 on the front side of the positioning seat 23, so that the valve core 30 is fixed in position and cannot rotate. The soap liquid extrusion structures 40 provided on the front and rear sides of the valve core 30 and the positioning seat 23 limit the position of the valve core 30, so that the valve core 30 is positioned between the two lateral holes 211 in the vertical pipe 22.

[0046] Please see Figures 7 and 8 As shown, each of the rotating seats 50 has a rotating shell 51, and each of the rotating shells 51 has a side opening 511 on the side facing each of the side holes 211. A tube portion 52 is formed around each of the rotating shells 51 and communicates with the interior thereof. The inner wall of each of the tube portions 52 has an internal threaded portion 521, and each of the soap bottle coupling openings 53 is formed on the inner side of the internal threaded portion 521. A side guide member 54 is fixed in each of the rotating shells 51, and each of the side guide members 54 extends toward the direction of each of the side holes 211 to pass through each of the side openings 511. The axis of each of the axis tubes 55 overlaps with the rotation axis A.

[0047] A side guide hole 56 is formed in each of the side guide members 54. One end of each side guide hole 56 communicates with the soap bottle connection port 53, and the other end extends into each of the shaft tubes 55. A connection port 561 is formed at the outer end of each of the shaft tubes 55. Each of the shaft tubes 55 passes through the shaft tube through-holes 242 and is rotatably inserted into the side holes 31 of the valve core 30. An annular groove 57 is formed on the outer circumferential surface of the portion of each of the shaft tubes 55 that is not inserted into the side holes 31. The two side hooks 243 of each of the pivot structures 24 are hooked in the annular groove 57 for positioning.

[0048] Each of the soap bottles 60 has a body 61 and a bottleneck 62 connected to the body 61 . An external thread 621 is formed on the outer circumference of each bottleneck 62 . Each of the soap bottles 60 is fixed by screwing the external thread 621 into the internal thread 521 .

[0049] To further illustrate the usage of the detailed structure of the above-mentioned preferred embodiment, when in use, the user presses each of the buttons 452 exposed forward from the housing 20. After being pressed, each of the buttons 452 will compress each of the front flow guides 451 to move backward, so that the abutting flanges 4512 of each of the front flow guides 451 abut against each of the flange portions 432, compressing the volume of each of the compression members 43 and the space of each of the soap liquid retention chambers 431 therein backward. At this time, the liquid in each of the soap liquid retention chambers 431 will be discharged from each of the second one-way valves 433 through each of the front flow guide holes 4511 and each of the liquid outlet pipes 453, and finally from each of the liquid outlets 4531.

[0050] When the user releases the buttons 452, the compression members 43 and the soap storage chambers 431 therein return to their original shapes and generate vacuum attraction, so that the liquid in the soap bottles 60 is drawn into the soap storage chambers 431 through the side holes 31, the front holes 32, and the first one-way valves 41 for use. Figures 9 and 10 As shown, first rotate each of the rotating seats 50 to a position where each of the tube portions 52 faces downward, then remove each of the soap bottles 60, and then couple the soap bottles 60 filled with cleaning liquid and with their openings facing upward to the tube portions 52 of each of the rotating seats 50 by screwing each of the external threaded portions 621 into each of the internal threaded portions 521. Finally, rotate each of the soap bottles 60 together with each of the rotating seats 50 to a position where the soap bottles 60 are inverted to complete the installation of the soap bottles 60.

[0051] The above description is only a preferred embodiment of the present invention. Any equivalent changes made by applying the present description and the scope of the patent application should be included in the patent scope of the present invention.

[0052] Description of Reference Numerals

[0053] [The present invention]

[0054] A: Rotation axis

[0055] 100: Shower column soap dispenser

[0056] 10: Soap dispensing device

[0057] 20: Shell

[0058] 21: Tube body

[0059] 211: Side hole

[0060] 212: Button hole

[0061] 22: Vertical pipe

[0062] 221: Button perforation

[0063] 23: Positioning seat

[0064] 231: First fixed structure

[0065] 232: Elastic buckle

[0066] 233: Positioning groove

[0067] 24: Pivot structure

[0068] 241: Fixed ring

[0069] 242: Axle tube perforation

[0070] 243: Side Hook

[0071] 30: Valve core

[0072] 32: front hole

[0073] 321: Accommodation section

[0074] 33: Buckle slot

[0075] 34: Embedded segment

[0076] 40: Soap liquid extrusion structure

[0077] 41: First one-way valve

[0078] 411: Annular flange

[0079] 42: Rear buckle

[0080] 421: rear plate

[0081] 422: rear piercing

[0082] 423: rear pipe

[0083] 424: Back Hook

[0084] 43: Compression parts

[0085] 431: Soap retention cavity

[0086] 432: Flange

[0087] 433: Second one-way valve

[0088] 434: Cover sheet

[0089] 44: Front buckle

[0090] 441: Front plate

[0091] 442: Front piercing

[0092] 443: Front Hook

[0093] 45: Pressing element

[0094] 451: Front guide

[0095] 4511: Front guide hole

[0096] 4512: against flange

[0097] 452: Button

[0098] 453: Liquid outlet pipe

[0099] 4531: Liquid outlet

[0100] 50: Rotating seat

[0101] 51: Rotate the shell

[0102] 511: Side port

[0103] 52: Management Department

[0104] 521: Internal thread

[0105] 53: Soap bottle joint

[0106] 54: Side guide

[0107] 55: Axle tube

[0108] 56: Side guide hole

[0109] 561: Connector

[0110] 57: Annular groove

[0111] 60: Soap bottle

[0112] 61: Bottle

[0113] 62: Bottleneck

[0114] 621: External thread

[0115] 70: Shower column device

[0116] 71: Fixed seat

[0117] 711: Second fixed structure

[0118] 72: Lifting rod

[0119] 73: Bathroom structure

Claims

1. A shower column soap dispenser, comprising: A soap dispensing device is provided with a shell, a valve core and a soap liquid extrusion structure inside, the soap dispensing device is provided with a first fixing structure, the first fixing structure is provided at the rear end of the shell, and has a lateral hole on at least one of the left and right sides, and a pivot structure is provided on the lateral hole; a rotating seat is combined with the pivot structure in a rotatable manner, the circumference of the rotating seat is provided with a soap liquid bottle coupling port, and a connecting port is provided on the side facing the lateral hole that communicates with the soap liquid bottle coupling port, the connecting port leads to the soap liquid extrusion structure; a soap liquid bottle is detachably coupled to the soap liquid bottle coupling port; the valve core is provided in the shell, and the left and right sides of the valve core are provided with a connecting port. At least one side surface has a side hole, the side hole is located on the inner side of the lateral hole, the connecting port of the rotating seat is sealedly connected to the side hole of the valve core, the front end surface of the valve core has at least one front hole, the front hole is communicated with the side hole; the soap liquid extrusion structure is arranged in the shell, and a soap liquid temporary retention chamber is provided inside to match the front hole, a first one-way valve is provided between the soap liquid temporary retention chamber and the front hole, a pressing element that resets after being pressed is provided to match the soap liquid temporary retention chamber, the pressing element compresses the soap liquid temporary retention chamber when pressed, so that the liquid in the soap liquid temporary retention chamber is discharged from a liquid outlet, and a second one-way valve is provided between the liquid outlet and the soap liquid temporary retention chamber; as well as A shower column device has a fixing seat with a second fixing structure. A lifting rod for combining with a bathroom structure is connected between the shell of the soap dispenser and the fixing seat. The lifting rod is combined with a bathroom structure.

2. The shower column soap dispenser according to claim 1, wherein: The soap liquid extrusion structure is equipped with a compression piece in conjunction with the front hole. The compression piece is an elastic block and forms the soap liquid retention chamber inside. The periphery of the front end surface of the compression piece forms a flange portion, and the second one-way valve is connected to the middle of the front end of the compression piece; the pressing element has a front guide hole, and the front guide hole has a rear end and a bottom end. The rear end of the front guide hole is nested in the second one-way valve and abuts against the flange portion. The bottom end of the front guide hole is connected to a liquid outlet pipe, and the liquid outlet is provided at the bottom end of the liquid outlet pipe.

3. The shower column soap dispenser according to claim 2, wherein: The top and bottom surfaces of the valve core each have a buckle groove, the front end portion of the front hole forms a accommodating section with a diameter wider than the rear side, the first one-way valve is arranged in the accommodating section, and has an annular flange protruding toward the periphery at the rear end, with the annular flange abutting against the rear end periphery of the accommodating section; a rear buckle is provided, and the rear buckle is provided with a rear plate, the rear plate abuts against the front end surface of the valve core and cooperates with the front hole to pass through a rear through-hole, a rear tube extends backward at the periphery of the rear through-hole, the rear tube penetrates into the accommodating section and abuts against the annular flange at the end to fix the first one-way valve in the accommodating section, a rear hook extends backward from the top edge and the bottom edge of the rear plate, and the two rear hooks are hooked in the two buckle grooves.

4. The shower column soap dispenser according to claim 3, wherein: The rear end of the compression piece is an open end and has a covering piece protruding toward the periphery, and the covering piece is sealingly covered on the rear plate so that the rear through-hole communicates with the soap liquid retention chamber; a front buckle is provided, and the front buckle is provided with a front plate, and the front plate abuts against the front of the covering piece and cooperates with the compression piece to pass through a front through-hole so that the compression piece passes forward out of the front through-hole, and a front hook extends backward from the top edge and the bottom edge of the front plate, and the two front hooks are hooked in the two buckle grooves.

5. The shower column soap dispenser according to claim 4, wherein: The pressing element includes a front flow guide and a button nested in the front flow guide. The front flow guide hole is formed in the front flow guide. The rear of the front flow guide has a rest flange that surrounds the rear end of the front flow guide hole and rests on the flange.

6. The shower column soap dispenser according to any one of claims 2 to 5, wherein: The shell has a tube body and a vertical tube connected to the front end of the tube body. The tube body is a tube body extending in the front-to-back direction. The lateral hole is provided on at least one of the left and right sides of the tube body. The valve core and the soap liquid extrusion structure are respectively provided in the tube body. The vertical tube is a vertically arranged tube body and its interior is communicated with the interior of the tube body. The front of the vertical tube has at least one button through-hole, the button passes through the button through-hole forward, and the bottom end of the liquid outlet pipe extends against the bottom end of the vertical tube for positioning.

7. The shower column soap dispenser according to claim 6, wherein: The tube body has at least one convex buckle hole in the rear part of the lateral hole, and a positioning seat is fitted inside the rear end of the tube body. The contour around the positioning seat matches the inner wall contour of the rear end of the tube body. The first fixing structure is a lock hole and is passed through the positioning seat. At least one elastic convex buckle is provided on the positioning seat, and the elastic convex buckle is embedded in the convex buckle hole to position the positioning seat in the rear end of the tube body.

8. The shower column soap dispenser according to claim 6, wherein: The fixing seat is located directly above the soap dispensing device, the second fixing structure is a lock hole, and the lifting rod is connected between the front end of the fixing seat and the top end of the vertical pipe.

9. The shower column soap dispenser according to claim 6, wherein: The pivot structure has a fixing ring, which is embedded in the lateral hole and fixed. The middle of the fixing ring has an axial tube through-hole, and a lateral hook protrudes outward on opposite sides of the periphery of the axial tube through-hole; the rotating seat has a rotating shell, and the rotating shell has a side opening on the side facing the lateral hole. The rotating shell forms a tube portion around it, and the inner wall of the tube portion has an internal thread portion. The soap bottle joint is formed on the inner side of the internal thread portion, and a side guide is fixed in the rotating shell. The side guide piece extends in the direction of the side hole to form a shaft tube passing through the side port, and a side guide hole is formed in the side guide piece. One end of the side guide hole is communicated with the soap bottle connection port, and the other end extends into the shaft tube and forms the connection port at the outer end of the shaft tube. The shaft tube passes through the shaft tube through-hole and can be rotatably inserted into the side hole of the valve core. An annular groove is formed on the outer circumferential surface of the shaft tube that is not inserted into the side hole, and the two side hooks of the pivot structure are hooked in the annular groove.

Citation Information

Patent Citations

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