CN212225627U - Component for siphon - Google Patents

Component for siphon Download PDF

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Publication number
CN212225627U
CN212225627U CN202020525141.6U CN202020525141U CN212225627U CN 212225627 U CN212225627 U CN 212225627U CN 202020525141 U CN202020525141 U CN 202020525141U CN 212225627 U CN212225627 U CN 212225627U
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China
Prior art keywords
pipe
ball
inlet
siphon
liquid
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Active
Application number
CN202020525141.6U
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Chinese (zh)
Inventor
李国津
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Guangdong Jinmei Household Products Co ltd
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Guangdong Jinmei Household Products Co ltd
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Priority to CN202020525141.6U priority Critical patent/CN212225627U/en
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Publication of CN212225627U publication Critical patent/CN212225627U/en
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Abstract

A component for siphon is characterized by comprising a pipe body with a pipe joint, a ball and a spring ring, wherein the ball and the spring ring are freely arranged in a pipe hole of the pipe body, an inlet of the pipe body is a circular inlet, the diameter of the pipe hole of a pipe body part is larger than that of the inlet of the pipe body, the pipe joint is arranged at an outlet of the pipe body, the diameter of the ball is smaller than that of the pipe hole of the pipe body part, meanwhile, the diameter of the ball is larger than that of the inlet of the pipe body, and the spring ring is stopped between the outlet of the pipe. Compared with the prior art, the utility model, have need not to soak the pipe in liquid the inside or through suction just can realize siphon effect, convenient to use, advantage with low costs.

Description

Component for siphon
Technical Field
The utility model relates to a siphon technology.
Background
The prior siphon using a pipe is used for siphoning so as to conveniently extract liquid in a cavity by a simple and convenient mode of filling the pipe with liquid, closing a pipe orifice, extending one end of the pipe orifice into the liquid in the cavity, crossing the cavity by the other end of the pipe orifice and enabling an outlet of the pipe orifice to be lower than a liquid inlet of one end of the pipe orifice, and opening the pipe orifice, so that the liquid in the cavity can be extracted by using a siphon principle. In the technology, firstly, the pipe needs to be filled with liquid, and the pipe needs to be filled with the liquid generally in two modes, one mode is to soak the pipe into the liquid, the other mode is to suck the liquid, under the condition of no suction tool, people often use the outlet end of the suction pipe to realize suction, the use environment is limited, or the pipe is not easy to soak into the liquid, or the siphoned liquid is harmful to human body and can not be sucked by mouth, under the condition, people are not easy to use the siphoning mode to simply and conveniently use the pipe to suck the liquid in the container, in order to avoid the injury caused by suction, some technologies adopt a suction mechanism, such as a balloon or a piston type suction cylinder, the volume of the balloon is limited, the liquid quantity which can be sucked is limited, when the diameter of the siphon is larger, the balloon cannot be squeezed and then loosened, the siphon is filled by suction formed by re-expanding the balloon, and the siphon cannot be realized from a container with a deeper liquid level far away from the container opening due to the limited suction amount, while the piston type suction cylinder is adopted, so that the piston type suction cylinder with a longer length is required, which is practically infeasible, high in cost and inconvenient to carry and use.
Disclosure of Invention
The invention aims to provide a component for siphon, which can realize siphon effect without soaking a pipe in liquid or sucking the pipe, is convenient to use and has low cost.
The utility model discloses a realize like this, including the body that has the coupling, freely set up ball and the spring ring in the tube orifice of body, the import of body is circular import, and the tube hole diameter ratio of body portion is big than the diameter of the import of body, and the coupling setting is in the body exit, and the tube hole diameter of the diameter ratio of body portion of ball is little, and simultaneously, the diameter of the diameter ratio of ball body import is big, and the spring ring locking is between body export and ball.
When in use, one end of the siphon (including the hose and the hard pipe) is sealed and connected on the pipe joint, the other end is downward and is lower than one end of the siphon, the utility model is put into the liquid of the container and moves back and forth in the liquid, when moving down, the liquid entering from the inlet can move up relatively and move down the pipe body, the ball is washed away from the inlet, the liquid can enter the pipe body, because the spring ring is arranged above the ball, the ball is stopped in front of the spring ring under the separation of the spring ring, and can not move up to the outlet to block the outlet, moreover, a large gap is arranged between the steel wires forming the spring ring, the entering liquid can continue to move up relatively to the pipe body and wash out the outlet to enter the siphon, until the utility model stops moving down, when the utility model discloses technology moves up, the pipe body moving up relatively can move down, the relative body of drive ball moves down, before the import was reachd to the ball, liquid was gone out from the import, until the ball leaned on in the import and plugged up the import, at this moment, the liquid of body the inside just can not follow outside the import flush tube body of body below, until the utility model discloses the technique removes to the top and down moves again, along with the utility model discloses the technique is repeated to make a round trip to reciprocate, and liquid constantly gets into in body, siphon, fills the siphon and becomes the siphon condition until liquid, and liquid will come out from the container siphon. Because only need with the union coupling after, just can carry out the siphon operation, moreover, as long as last removal from top to bottom the utility model discloses the technique just can be continuously toward intraductal filling liquid, until realizing the siphon, consequently, carries and convenient to use, and is with low costs. Here, the inner side surface of the inlet connected with the inlet of the pipe body is an inner convex cambered surface. The inward convex cambered surface is adopted, so that the ball is easily guided into an inlet along the inward convex cambered surface and the inlet is blocked, and the inlet is effectively blocked by the ball.
The outer side of the inlet of the tube body is trumpet-shaped. The horn-shaped inlet is adopted to increase the area of the water suction port, so that more liquid can enter the pipe body when the pipe body is moved downwards.
Compared with the prior art, the utility model, have need not to soak the pipe in liquid the inside or through suction just can realize siphon effect, convenient to use, advantage with low costs.
Drawings
Fig. 1 is a schematic view of a partial structure of an inward opening door according to the present invention;
fig. 2 is a schematic diagram of the utility model.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings and examples:
as shown in fig. 1, the utility model discloses a body 2 with coupling 1, the cross-section of freely setting at body 2 is ball 4 and spring coil 5 in the circular shape tube hole 3, the import 6 of body 2 is circular import, the diameter of the 3 diameters of tube hole of body 2 body is big than the diameter of the import 6 of body 2, coupling 1 sets up in body 2 export 7 department, the diameter of ball 4 is less than the 3 diameters of tube hole of body 2 body, and simultaneously, the diameter of ball 4 is big than the diameter of body 2 import 6, spring coil 5 is little towards the diameter ratio ball 4 of the end of ball 4, spring coil 5 is little towards the diameter ratio export 7 of the end of body 2 export 7, make spring coil 5 stop between body 2 export 7 and ball 4.
The spring ring 5 is a tower spring ring or a cylindrical spring ring. When the cylindrical spring ring 5 is used, the diameter of the cylindrical spring ring 5 is smaller than the diameter of the ball and larger than the diameter of the outlet 7 of the tube body 2.
The inner side surface 8 of the inlet 6 connected with the inlet 6 of the pipe body 2 is an inward convex cambered surface.
The outer side 9 of the inlet 6 of the tube body 2 is trumpet-shaped.
As shown in fig. 2, when in use, one end 10a of the siphon 10 (including the hose and the hard pipe) is sleeved on the pipe joint 1 in a sealing way, the other end 10b is downward and is lower than one end 10a of the siphon 10, the siphon is put into the liquid in the container 11 and moves back and forth in the liquid, as shown in (a) of fig. 2, when moving down, the liquid entering from the inlet 6 moves up relative to the pipe 2 moving down, the ball 4 is flushed from the inlet 6, the liquid enters the pipe 2, because the spring ring 5 is arranged above the ball 4, under the obstruction of the spring ring 5, the ball 4 stops in front of the spring ring 5, the ball cannot move up to the outlet 7 to block the outlet 7, and the steel wires forming the spring ring 5 have a large gap, the entering liquid can continuously move up relative to the pipe 2 and flush out of the outlet 7 to enter the siphon 10, until the utility model discloses the technique stops to move down, like the (b) picture of figure 2, and work as the utility model discloses when the technique moved up, body 2 that liquid in the body 2 can shift up relatively moved down, drive ball 4 relative body 2 and move down, before ball 4 reachs import 6, liquid from import 6 dashes out, until ball 4 leans on and blocks up import 6 on import 6, at this moment, the liquid of body 2 the inside just can not follow the import 6 of body 2 below and dash out outside body 2, until the utility model discloses the technique is removed to the top and is moved down again, like figure 2 (c) picture, along with the utility model discloses the technique is repeated to make a round trip to reciprocate, and liquid constantly gets into in body 2, siphon 10, fills siphon 10 and becomes the siphon condition until liquid, and liquid will follow siphon and come out in the container 11.

Claims (5)

1. A component for siphon is characterized by comprising a pipe body with a pipe joint, a ball and a spring ring, wherein the ball and the spring ring are freely arranged in a pipe hole of the pipe body, an inlet of the pipe body is a circular inlet, the diameter of the pipe hole of a pipe body part is larger than that of the inlet of the pipe body, the pipe joint is arranged at a pipe outlet, the diameter of the ball is smaller than that of the pipe hole of the pipe body part, meanwhile, the diameter of the ball is larger than that of the pipe inlet, and the spring ring is stopped between the pipe outlet and the ball.
2. A member for siphon according to claim 1, wherein the inner side surface of the inlet connected to the inlet of the pipe body is an inwardly convex curved surface.
3. A member for siphon according to claim 1 or 2, characterised in that the outside of the inlet of the pipe is flared.
4. The member for siphon according to claim 1 or 2, wherein the end of the spring coil facing the ball has a smaller diameter than the ball, the end of the spring coil facing the outlet of the tube has a smaller diameter than the outlet, and the spring coil is a tower-type spring coil or a cylindrical spring coil.
5. The member for siphon according to claim 3, wherein the end of the spring coil facing the ball has a smaller diameter than the ball, the end of the spring coil facing the outlet of the tube has a smaller diameter than the outlet, and the spring coil is a tower-type spring coil or a cylindrical spring coil.
CN202020525141.6U 2020-04-11 2020-04-11 Component for siphon Active CN212225627U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020525141.6U CN212225627U (en) 2020-04-11 2020-04-11 Component for siphon

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020525141.6U CN212225627U (en) 2020-04-11 2020-04-11 Component for siphon

Publications (1)

Publication Number Publication Date
CN212225627U true CN212225627U (en) 2020-12-25

Family

ID=73906223

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020525141.6U Active CN212225627U (en) 2020-04-11 2020-04-11 Component for siphon

Country Status (1)

Country Link
CN (1) CN212225627U (en)

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