CN215777669U - Novel soap lye sterilizer - Google Patents

Novel soap lye sterilizer Download PDF

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Publication number
CN215777669U
CN215777669U CN202023202768.7U CN202023202768U CN215777669U CN 215777669 U CN215777669 U CN 215777669U CN 202023202768 U CN202023202768 U CN 202023202768U CN 215777669 U CN215777669 U CN 215777669U
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China
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fixed
shell
soap
pressing block
liquid
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CN202023202768.7U
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Chinese (zh)
Inventor
蔡碎弟
戴绍金
肖鲲
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Zhejiang Benke Industrial Co ltd
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Zhejiang Benke Industrial Co ltd
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Priority to CN202023202768.7U priority Critical patent/CN215777669U/en
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Abstract

The utility model discloses a novel soap lye sterilizer, which comprises a shell, wherein a placing notch is formed in the shell, a soap lye storage container is fixed in the shell, a first conical pipe is fixed at the bottom end of the soap lye storage container, a vertical straight pipe is fixed at the bottom end of the first conical pipe, and a blocking mechanism is fixed at the vertical straight pipe; a rotating shaft which is rotatably connected to the shell is arranged on the side portion of the soap liquid storage container, a gear is fixed on the rotating shaft, a pressing block is inserted into the shell, a first rack which is meshed with the left side of the gear is fixed on the pressing block, a second rack which is meshed with the right side of the gear is fixed on the top plate, a compression spring which drives the pressing block to reset is installed on the shell, and a connecting pipe is installed between the extrusion cavity and the cavity of the barrel body; a liquid outlet is arranged on the top of the placing gap, and an ultraviolet lamp is arranged above the placing gap; the utility model has the advantages of ingenious and reasonable structural design, high liquid outlet efficiency, low production cost, more sanitary and safe self-provided disinfection structure and worth of popularization and use.

Description

Novel soap lye sterilizer
Technical Field
The utility model relates to a device, in particular to a novel soap lye sterilizer.
Background
The soap dispenser is a device which is arranged near a faucet of a water tank and used for extruding soap and cleaning hands, the soap dispenser in the prior art extrudes soap by pressing a spray head, the structure is complex, a small spray head opening is easy to block, and the soap can be extruded only by pressing for many times, so that the soap dispenser is not only high in cost and easy to break, is not beneficial to large-area popularization and use, but also has no sterilization and disinfection functions on the existing soap dispenser, so that the surface contacted by many people often has a lot of bacteria and is easy to cause bacteria propagation, therefore, the soap dispenser which is hard to break and easy to take soap to wash hands and can sterilize and disinfect the soap dispenser per se is urgently needed on the market.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects of the prior art, provides a novel soap lye sterilizer which has low production cost and is not easy to damage and can sterilize and disinfect the surface of the soap lye sterilizer, and meets the requirements of people on convenience and easiness in taking soap lye for washing hands when using the soap lye sterilizer.
The utility model adopts the technical scheme for solving the technical problems that: the novel soap lye sterilizer comprises a shell, wherein a placing notch is formed in the shell, a soap lye storage container is fixed in the shell, a first conical pipe is fixed at the bottom end of the soap lye storage container, a vertical straight pipe is fixed at the bottom end of the first conical pipe, and a blocking mechanism is fixed at the vertical straight pipe; the blocking mechanism comprises a valve body, a circular cavity is formed in the valve body, an elastic rubber tube is attached to the circular cavity, the top end of the elastic rubber tube is fixed to the top end of the circular cavity, the bottom end of the elastic rubber tube is fixed to the bottom end of the circular cavity, an extrusion cavity formed in the side end of the elastic rubber tube is provided with an extrusion cavity formed in the valve body, a liquid injection piece is arranged at the side end of the valve body and comprises a cylinder body filled with injection liquid, a rubber piston is inserted into the cavity of the cylinder body, a push rod is fixed to the rubber piston, and a top plate fixed to the top end of the push rod is connected to the shell in a sliding mode; a rotating shaft which is rotatably connected to the shell is arranged on the side portion of the soap liquid storage container, a gear is fixed on the rotating shaft, a pressing block is inserted into the shell, a first rack which is meshed with the left side of the gear is fixed on the pressing block, a second rack which is meshed with the right side of the gear is fixed on the top plate, a compression spring which drives the pressing block to reset is installed on the shell, and a connecting pipe is installed between the extrusion cavity and the cavity of the barrel body; the top of the placing gap is provided with a liquid outlet matched with the bottom end of the vertical straight pipe, and an ultraviolet lamp which is installed and fixed at the shell is arranged above the placing gap. The soap solution storage container is used for storing soap solution; the first taper pipe has the function of enabling the bottom soap liquid to generate downward driving force; the vertical straight pipe is used for discharging soap liquid; the blocking mechanism has the function of opening and closing the vertical straight pipe so as to control whether the soap liquid is discharged or not; the rotating shaft, the pressing block, the first rack, the second rack and the compression spring have the effects that the pressing block is pressed to control the up-and-down displacement of the rubber piston, so that the expansion and contraction of the elastic rubber pipe are controlled, and the opening and closing operation of the vertical straight pipe is further controlled; the ultraviolet lamp is used for irradiating ultraviolet light and then performing ultraviolet sterilization and disinfection on each area at the notch; here the working principle of the blocking mechanism: when the pressing block is not pressed, the pressing block is positioned on the shell through a compression spring, and the rubber piston is in the upward moving trend, thereby presenting a state of extrusion tendency to the extrusion liquid, so that the elastic rubber tube is in an extrusion expansion state, and then the vertical straight pipe is blocked, when the pressing block is pressed, the pressing block moves, thereby the first rack moves upwards, the first rack moves upwards to drive the gear to rotate clockwise, and further synchronously drive the second rack to move downwards, the second rack is fixed at the top plate, so as to drive the push rod and the rubber piston fixed with the push rod to move downwards, and the rubber piston moves downwards to generate negative pressure in the cylinder body, thereby sucking the extrusion liquid in the extrusion cavity and the circular cavity back into the cylinder body to cause the elastic rubber tube to contract, and a gap is created so that the soap in the soap storage container can flow out to the hand quickly by gravity.
Further perfect, according to the inside and outside interval distribution of pressing block and liquid outlet, lay the top of breach and be equipped with the position baffle of fixing in casing department, position baffle is located the inboard of pressing the block. The position baffle plate is used for blocking the position where a hand extends, the palm is unfolded, then when the finger touches the position baffle plate, the pressing block can be pressed on the palm, soap liquid can flow to the palm area, the position baffle plate plays a role in deeply positioning the hand, and the extraction of the soap liquid is convenient to the hand.
Further perfection, the top end of the soap liquid storage container is provided with a liquid guide pipe, the top end of the shell is provided with a liquid filling opening, and the top end of the liquid guide pipe is matched with the liquid filling opening. The liquid guide pipe and the liquid filling port have the function that when the soap liquid is nearly used up, the soap liquid can be filled into the soap liquid storage container through the liquid filling port and the liquid guide pipe.
The utility model has the beneficial effects that: the utility model has the advantages of ingenious and reasonable structural design, utilizes the soap liquid storage container to store the soap liquid, utilizes the first taper pipe to enable the soap liquid at the bottom to generate downward driving force, utilizes the vertical straight pipe to discharge the soap liquid, utilizes the blocking mechanism to open and close the vertical straight pipe, thereby controlling whether the soap liquid is discharged or not, the rotating shaft, the pressing block, the first rack, the second rack and the compression spring are utilized to press the pressing block to control the up-and-down displacement of the rubber piston, thereby controlling the expansion and contraction of the elastic rubber tube and further controlling the opening and closing operation of the vertical straight tube, irradiating ultraviolet light by using an ultraviolet lamp, the utility model has the advantages of ingenious and reasonable structural design, high liquid outlet efficiency, low production cost, difficult damage, self-contained sterilization and disinfection function, higher safety and worth of popularization and application.
Drawings
FIG. 1 is a perspective view of the present invention;
FIG. 2 is a perspective view of the back view of the present invention;
FIG. 3 is a perspective view from another perspective of the present invention;
FIG. 4 is a schematic structural view of the present invention;
FIG. 5 is a schematic structural view of a pressing block region according to the present invention;
FIG. 6 is a cross-sectional view taken along line A-A of FIG. 5;
fig. 7 is a schematic structural view of a valve body region in the present invention.
Description of reference numerals: the device comprises a shell 1, a placement gap 1-1, a liquid outlet 1-2, a liquid filling port 1-3, a soap liquid storage container 2, a first taper pipe 3, a vertical straight pipe 4, a blocking mechanism 5, a valve body 5-1, a circular cavity 5-1a, an elastic rubber pipe 5-2, an extrusion cavity 5-3, a liquid injection part 5-4, a cylinder 5-4a, a rubber piston 5-4b, an ejector rod 5-4c, a top plate 5-4d, a rotating shaft 6, a gear 7, a pressing block 8, a first rack 9, a second rack 10, a compression spring 12, a connecting pipe 13, an ultraviolet lamp 14, a position baffle 15, a liquid guide pipe 16, a soap liquid 17 and an extrusion liquid 18.
Detailed Description
The utility model will be further described with reference to the accompanying drawings in which:
with reference to the accompanying drawings: the novel soap lye sterilizer comprises a shell 1, wherein a placing notch 1-1 is formed in the shell 1, a soap lye storage container 2 is fixed in the shell 1, a first conical pipe 3 is fixed at the bottom end of the soap lye storage container 2, a vertical straight pipe 4 is fixed at the bottom end of the first conical pipe 3, and a blocking mechanism 5 is fixed at the vertical straight pipe 4; the blocking mechanism 5 comprises a valve body 5-1, a circular cavity 5-1a is formed in the valve body 5-1, an elastic rubber tube 5-2 is attached to the circular cavity 5-1a, the top end of the elastic rubber tube 5-2 is fixed to the top end of the circular cavity 5-1a, the bottom end of the elastic rubber tube 5-2 is fixed to the bottom end of the circular cavity 5-1a, a squeezing cavity 5-3 formed in the valve body 5-1 is formed in the side end of the elastic rubber tube 5-2, a liquid injection piece 5-4 is arranged on the side end of the valve body 5-1, the liquid injection piece 5-4 comprises a cylinder 5-4a filled with injection liquid, a rubber piston 5-4b is inserted into the cavity of the cylinder 5-4a, a push rod 5-4c is fixed to the rubber piston 5-4b, and a top plate 5-4d fixed to the top end of the push rod 5-4c is connected to the shell 1 in a sliding mode; a rotating shaft 6 rotatably connected to the shell 1 is arranged on the side part of the soap liquid storage container 2, a gear 7 is fixed on the rotating shaft 6, a pressing block 8 is inserted on the shell 1, a first rack 9 meshed with the left side of the gear 7 is fixed on the pressing block 8, a second rack 10 meshed with the right side of the gear 7 is fixed on the top plate 5-4d, a compression spring 12 driving the pressing block 8 to reset is installed on the shell 1, and a connecting pipe 13 is connected and installed between the extrusion cavity 5-3 and the cavity of the barrel body 5-4 a; a liquid outlet 1-2 matched with the bottom end of the vertical straight pipe 4 is arranged on the top of the placing gap 1-1, and an ultraviolet lamp 14 fixed at the shell 1 is arranged above the placing gap 1-1.
The pressing block 8 and the liquid outlet 1-2 are distributed at intervals inside and outside, a position baffle 15 fixed at the shell 1 is arranged above the placing gap 1-1, and the position baffle 15 is positioned at the inner side of the pressing block 8.
The top end of the soap liquid storage container 2 is provided with a liquid guide pipe 16, the top end of the shell 1 is provided with a liquid filling opening 1-3, and the top end of the liquid guide pipe 16 is matched with the liquid filling opening 1-3.
The working principle of the utility model is as follows: the palm is stretched into the placing gap 1-1 and is determined by the blocking of the position baffle 15, then the palm is integrally moved upwards to press the pressing block 8, the pressing block 8 moves upwards to press the compression spring 12 and enable the compression spring 12 to store energy, the first rack 9 is synchronously moved upwards, the first rack 9 moves upwards to drive the gear 7 to rotate clockwise, and further synchronously drive the second rack 10 to move downwards, the second rack 10 is fixed at the top plate 5-4d, so that the ejector rod 5-4d and the rubber piston 5-4b fixed with the ejector rod 5-4d are driven to move downwards, the rubber piston 5-4b moves downwards to generate negative pressure in the cylinder body 5-4a, and therefore the extrusion liquid 18 in the extrusion cavity 5-3 and the circular cavity 5-1a is sucked back into the cavity body of the cylinder body 5-4a through the connecting pipe 13, so as to cause the elastic rubber tube 5-2 to contract and generate a gap, so that the soap liquid 17 in the soap liquid storage container 2 can flow out rapidly through gravity and flow to the hand through the liquid outlet 1-2, after the pressure on the pressing block 8 is released, the pressing block 8 is reset through the elastic force of the compression spring 12, at this time, the first rack 9 moves downwards to drive the gear 7 to rotate anticlockwise and further drive the second rack 10 to move upwards synchronously, the second rack 10 is fixed at the top plate 5-4d, so as to drive the ejector rods 5-4d and the rubber pistons 5-4b fixed together with the ejector rods 5-4d to move upwards, and the rubber pistons 5-4b can drive the extrusion liquid 18 in the cylinder bodies 5-4a to reach the extrusion cavities 5-3 and the circular cavities 5-1a through the reset force action of the compression spring 12, therefore, the elastic rubber tube 5-2 is expanded to seal the vertical straight tube 4 again, the mode is simple and efficient to operate, compact in structure and low in production cost, the ultraviolet lamp 14 can be used for sterilizing and disinfecting the elastic rubber tube, and the elastic rubber tube is more sanitary and safe and is worthy of popularization and application.
While the utility model has been shown and described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and detail may be made therein without departing from the scope of the appended claims.

Claims (3)

1. A novel soap lye sterilizer comprises a shell (1), wherein a placing notch (1-1) is formed in the shell (1), and is characterized in that: a soap liquid storage container (2) is fixed in the shell (1), a first taper pipe (3) is fixed at the bottom end of the soap liquid storage container (2), a vertical straight pipe (4) is fixed at the bottom end of the first taper pipe (3), and a blocking mechanism (5) is fixed at the vertical straight pipe (4);
the blocking mechanism (5) comprises a valve body (5-1), a circular cavity (5-1a) is formed in the valve body (5-1), an elastic rubber tube (5-2) is attached to the circular cavity (5-1a), the top end of the elastic rubber tube (5-2) is fixed to the top end of the circular cavity (5-1a), the bottom end of the elastic rubber tube (5-2) is fixed to the bottom end of the circular cavity (5-1a), a squeezing cavity (5-3) formed in the valve body (5-1) is arranged at the side end of the elastic rubber tube (5-2), an injection piece (5-4) is arranged at the side end of the valve body (5-1), the injection piece (5-4) comprises a cylinder body (5-4a) filled with injection liquid, and a rubber piston (5-4b) is inserted into the cavity of the cylinder body (5-4a), a top rod (5-4c) is fixed on the rubber piston (5-4b), and a top plate (5-4d) fixed with the top end of the top rod (5-4c) is connected on the shell (1) in a sliding manner;
a rotating shaft (6) rotatably connected to the shell (1) is arranged on the side of the soap liquid storage container (2), a gear (7) is fixed on the rotating shaft (6), a pressing block (8) is inserted into the shell (1), a first rack (9) meshed with the left side of the gear (7) is fixed on the pressing block (8), a second rack (10) meshed with the right side of the gear (7) is fixed on the top plate (5-4d), a compression spring (12) driving the pressing block (8) to reset is installed on the shell (1), and a connecting pipe (13) is connected between the extrusion cavity (5-3) and the cavity of the barrel body (5-4 a);
a liquid outlet (1-2) matched with the bottom end of the vertical straight pipe (4) is formed in the top of the placement notch (1-1), and an ultraviolet lamp (14) fixedly installed at the position of the shell (1) is arranged above the placement notch (1-1).
2. The novel soap sterilizer of claim 1, wherein: the pressing block (8) and the liquid outlet (1-2) are distributed at intervals, a position baffle (15) fixed at the position of the shell (1) is arranged above the placement notch (1-1), and the position baffle (15) is located on the inner side of the pressing block (8).
3. The novel soap sterilizer of claim 1, wherein: a liquid guide pipe (16) is installed at the top end of the soap liquid storage container (2), a liquid filling opening (1-3) is formed in the top end of the shell (1), and the top end of the liquid guide pipe (16) is matched with the liquid filling opening (1-3).
CN202023202768.7U 2020-12-25 2020-12-25 Novel soap lye sterilizer Active CN215777669U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023202768.7U CN215777669U (en) 2020-12-25 2020-12-25 Novel soap lye sterilizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023202768.7U CN215777669U (en) 2020-12-25 2020-12-25 Novel soap lye sterilizer

Publications (1)

Publication Number Publication Date
CN215777669U true CN215777669U (en) 2022-02-11

Family

ID=80125001

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023202768.7U Active CN215777669U (en) 2020-12-25 2020-12-25 Novel soap lye sterilizer

Country Status (1)

Country Link
CN (1) CN215777669U (en)

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