The present application claims priority to Korean Patent Application No. 10-2021-0121618, filed Sep. 13, 2021, the entire contents of which are incorporated herein for all purposes by this reference.
The present disclosure relates to a drain pump. More particularly, the present disclosure relates to a through-type drain pump for a fluid draining apparatus of a fluid pipe, the through-type drain pump being configured to drain a fluid (for an example, tap water, chemically-treated hot water for heating, and so on) inside a pipe through which the fluid flows, such as an old pipe, by being inserted into the pipe while the pipe is in a state in which the fluid remains therein.
Unless otherwise indicated herein, the content described in this section is not conventional art for the claims of this application, and is not admitted to be the conventional art by inclusion in this section.
Generally, in order to transport various fluids, pipes such as a gas pipe, an oil transport pipe, a heating water pipe, a water supply pipe, and so on are laid underground in a city.
In such pipes, when maintenance work, such as replacement of a valve, installation of the pipe, movement of the pipe, replacement of an old pipe with a new pipe, or the like is performed, non-water blockage piping work that allows the maintenance work to be performed while a fluid can continuously flow except for a portion where the maintenance work is performed is performed when a branch pipe is connected to a main pipe through which the fluid flows or when an old pipe is replaced.
As described above, when repair work is performed on a specific portion of a pipe, the pipe where leakage occurs is replaced while a chemically-treated fluid (as an example, hot water for heating) remaining in the pipe is not discharged to the outside. Therefore, when the repair work of the pipe is performed, the fluid remaining in the pipe may flow into the atmosphere or ground, so that environmental pollution around the workplace may occur.
Particularly, hot water for heating having a high temperature (as an example, about 120° C.) contains harmful substances such as chemicals and so on. Therefore, when the hot water leaks into soil, there is a problem that the hot water may cause pollution of the atmosphere, ground water, and soil.
In Korean Patent No. 10-1550276 (Sep. 7, 2015), a vertical pump has been registered.
An embodiment of the present disclosure relates to a through-type drain pump for a fluid draining apparatus of a fluid pipe, the through-type drain pump being configured to drain a fluid remaining inside a pipe so as to perform maintenance work such as a replacement of an old pipe, connecting a branch pipe or the like to a main pipe, or the like, and the through-type drain pump being configured to increase workability of installing, inserting, and separating of the drain pump to the pipe.
In order to achieve the above objective, according to an embodiment of the present disclosure, there is provided a through-type drain pump for a fluid draining apparatus of a fluid pipe, the drain pump including: a housing formed in a hollow cylindrical shape, the housing being configured such that a fluid inlet port formed at a lower portion of the housing and a fluid outlet port formed at an upper portion of the housing are in communication with each other via a fluid movement path; a rotary shaft which is formed in a long axis shape and which has a driving motor that is mounted on the upper portion of the housing, the rotary shaft being rotatably coupled to an output shaft of the driving motor via a coupler, and the rotary shaft being accommodated in the housing; an impeller formed at a lower end of the rotary shaft, the impeller being configured to move the fluid introduced through the fluid inlet port to the fluid outlet port through the fluid movement path when the impeller is rotated; and a mounter mounted at a lower outer side surface of the housing, the mounter being configured to mount the drain pump on any pipe in which the fluid flows such that the drain pump is capable of being lifted and inserted into the pipe.
The through-type drain pump for the fluid draining apparatus of the fluid pipe according to an embodiment of the present disclosure, which has the configuration as described above, has an advantage as follows.
When the maintenance work such as a replacement of an old pipe, connecting a branch pipe or the like to a main pipe is performed, installing, inserting, and separating of the drain pump to or from the pipe so as to drain the fluid remaining inside the pipe is easily performed, so that an unskilled person in the field may easily use the through-type drain pump.
The above and other objectives, features, and other advantages of the present disclosure will be more clearly understood from the following detailed description when taken in conjunction with the accompanying drawings, in which:
Hereinafter, a through-type drain pump for a fluid draining apparatus of a fluid pipe according to an exemplary embodiment of the present disclosure will be described in detail with reference to the accompanying drawings.
Referring to
According to a more preferred embodiment, an actuator 22 for lifting the drain pump 20 includes: a lower fixing piece 23 mounted at the mounter 21; a lead screw 25 having a lower end rotatably coupled to the lower fixing piece 23 and having an outer side surface provided with a screw portion, the lead screw 25 being configured to lift a supporter 24 that is mounted at an upper outer side surface of the housing 13; a gear box 27 formed on an upper end of the lead screw 25, the gear box 27 being configured to lift the supporter 24 according to a rotation direction of the lead screw 25 by an operation of a handle 26; and at least one guide shaft 28 having a lower end fixed to the lower fixing piece 28 and having an upper end fixed to the gear box 27, the guide shaft 28 being configured to guide a lift movement of the supporter 24 according to a rotation of the lead screw 25.
Further, the through-type drain pump for the fluid draining apparatus of the fluid pipe further includes a shaking prevention flange 29 which is coupled to the outer side surface of the housing 13 and which is mounted on an upper surface of the mounter 21, the shaking prevention flange 29 being configured to prevent shaking of the housing 13 when the drain pump 20 is lifted or when the rotary shaft 17 is rotated.
Accordingly, when the rotary shaft 17 having the long axis is rotated by driving the driving motor 14 that is described above, the housing 13 is capable of being stably supported by the shaking prevention flange 29 which is mounted on the mounter 21 and which supports the outer side surface of the housing 13.
The drain pump 20 described above includes a sleeve bearing 31 including a bushing 30 that is configured to rotatably support the rotary shaft 17 from an arbitrary position inside the housing 13 so that the rotary shaft 17 is prevented from shaking when the rotary shaft 17 is rotated.
The sleeve bearing 31 configured to prevent the shaking of the rotary shaft 17 having the long axis shape is conventionally used in the technical field to which the present disclosure belongs, so that detailed description thereof will be omitted.
In the drawings, reference numeral 39, which is not described, is an O-ring, and the O-ring is configured to guide the lift movement of the housing 13 and is configured such that at least one O-ring is mounted at an inner side surface of the mounter 21.
Hereinafter, the through-type drain pump for the fluid draining apparatus of the fluid pipe according to an embodiment of the present disclosure will be described with reference to the accompanying drawings.
As illustrated in
As illustrated in
As illustrated in
As illustrated in
After a hole is formed in the pipe 19 by passing a cutter (as an example, referring to a wheel cutter that is not illustrated) of the drilling machine 36 through the branch fit 33 and the flange 32, the drilling machine 36 is removed from the flange of the pressure removal valve 35.
After the drilling machine 36 is removed, the pressure removal valve 35 is operated so as to remove the pressure inside the pipe 19, so that the pressure inside the pipe 19 is removed.
At this time, the technical content of forming the hole in the pipe 19 by using the cutter of the drilling machine 36 is conventionally used in the technical field to which the present disclosure belongs, so that the detailed description thereof will be omitted.
As illustrated in
As illustrated in
In detail, as illustrated in
At this time, the technical content of rotating the lead screw 25 in a forward direction or a reverse direction, in which the lead screw 25 is capable of being rotated when the handle 26 is rotated since the first and second gears 37 and 38 are engaged with each other, is conventionally used in the technical field to which the present disclosure belongs, so that the detailed description thereof will be omitted.
The actuator 22, which lifts the supporter 24 by the lead screw 25 that is rotated in conjunction with the rotation of the handle 26 described above so that the housing 13 (i.e. the drain pump 20) is lifted, is described as an example is not limited thereto.
The upper end and the lower end of the lead screw 25 described above are rotatably supported by bearings (reference numeral thereof is not illustrated) that are respectively mounted at the gear box 27 and the lower fixing piece 23.
As illustrated in
Therefore, when the driving motor 14 mounted on the upper end of the housing 13 of the drain pump 20 is operated, the rotary shaft 17 coupled to the output shaft 15 of the driving motor 14 via the coupler 16 may be rotated.
Accordingly, as the impeller 18 mounted at the lower end of the rotary shaft 17 is rotated, the fluid inside the pipe 19 is suctioned to the housing 13 through the fluid inlet port 10 that is formed through the lower end of the housing 13, and the fluid is moved upward through the fluid movement path 12 inside the housing 13, so that the fluid may be discharged to the outside of the drain pump 20 through the fluid outlet port 11 that is formed at the upper end of the housing 13.
Although the exemplary embodiment of the present disclosure has been described above, it may be understood by those skilled in the art that a variety of modifications and changes may be made without departing from the concept and scope of the present disclosure disclosed within the range of the following claims.
Number | Date | Country | Kind |
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10-2021-0121618 | Sep 2021 | KR | national |
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1170512 | Chapman | Feb 1916 | A |
4230440 | Niedermeyer | Oct 1980 | A |
6474962 | Allen | Nov 2002 | B1 |
9291160 | Quam | Mar 2016 | B2 |
11346347 | Smith | May 2022 | B2 |
20130129485 | Kucuk | May 2013 | A1 |
Number | Date | Country |
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211314677 | Nov 2019 | CN |
211314677 | Aug 2020 | CN |
112112839 | Oct 2020 | CN |
1020080011444 | Feb 2008 | KR |
1020110101684 | Sep 2011 | KR |
1012940300000 | Aug 2013 | KR |
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1021361420000 | Jul 2020 | KR |
Entry |
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Office Action for Korean Application No. 10-2021-0121618, dated Mar. 7, 2022, 3 pages. |
Decision to Grant for Korean Application No. 10-2021-0121618, dated Feb. 28, 2022, 1 page. |
Number | Date | Country | |
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20230082156 A1 | Mar 2023 | US |