CN214781304U - Water treatment facilities of high-efficient scale control - Google Patents

Water treatment facilities of high-efficient scale control Download PDF

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Publication number
CN214781304U
CN214781304U CN202020874945.7U CN202020874945U CN214781304U CN 214781304 U CN214781304 U CN 214781304U CN 202020874945 U CN202020874945 U CN 202020874945U CN 214781304 U CN214781304 U CN 214781304U
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filtering
filter element
water
filtering device
pipe
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CN202020874945.7U
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邱瑞
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Zhengzhou Kangningte General Technology Co ltd
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Zhengzhou Kangningte General Technology Co ltd
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Abstract

The utility model provides a water treatment facilities of high-efficient scale control, including first filter equipment, scale removal device, filter tube, ion stick and generator, the scale removal device right side is equipped with circular slot one, and circular slot one internally mounted has the delivery port, and the filter tube lid is installed at scale removal device top, and the filter tube lid internal surface rolls has the internal thread, and the inside food level silicon phosphorus crystal granule that is equipped with of filter tube, eight internally mounted in circular slot have the ion stick, and the ion stick left side is equipped with the generator, and the inlet channel bottom is equipped with the water inlet, compares with prior art, the utility model discloses following beneficial effect has: after the water inlet pipe of the water treatment device is internally provided with the ion bar which is matched with the generator to be electrified, the physical structure of water molecules of water is changed under the action of an electrostatic field, and cations contained in the water cannot tend to the wall of the device, so that the scale prevention effect is achieved.

Description

Water treatment facilities of high-efficient scale control
Technical Field
The utility model relates to a water treatment facilities of high-efficient scale control belongs to the water treatment field.
Background
The way of human beings to treat water has been for many years, and the physical method comprises using various filter materials with different pore sizes, and using adsorption or blocking way to remove impurities in water, the more important one in the adsorption way is adsorption by using active carbon, the blocking way is that water passes through the filter materials, so that the impurities with larger volume can not pass through, further obtaining cleaner water, in addition, the physical method also comprises a precipitation method, namely, impurities with smaller specific gravity are floated on the water surface and fished out, or the impurities with larger specific gravity are precipitated below the water to obtain the water-soluble organic fertilizer, the chemical method is to convert the impurities in the water into substances with smaller harm to human bodies by using various chemicals, or the impurities are concentrated, and the chemical treatment method with the longest history can be that alum is added into water, and after the impurities in the water are collected, the volume is increased, and then the impurities can be removed by a filtration method.
When the traditional water treatment device filters water, dirt is easily accumulated on the inner wall of the device, the cleaning is very troublesome, and the content of mineral elements in the filtered water is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a water treatment facilities of high-efficient scale control, through increasing scale removal device, the problem of proposing in order to solve above-mentioned background art of ion stick and generator to exist to prior art not enough.
In order to achieve the above purpose, the present invention is realized by the following technical solution: a high-efficiency anti-scaling water treatment device comprises a first filtering device, a scaling device, a filtering pipe, an ion bar and a generator, wherein a first circular groove is formed in the right side of the scaling device, a water outlet is formed in the first circular groove, a second circular groove is formed in the top of the scaling device, the filtering pipe is arranged in the second circular groove, external threads are rolled on the outer surface of the filtering pipe, a filtering pipe cover is arranged at the top of the scaling device, internal threads are rolled on the inner surface of the filtering pipe cover, food-grade silicon-phosphorus crystal particles are arranged in the filtering pipe, a third circular groove is formed in the bottom of the scaling device, a third communicating pipeline is arranged in the third circular groove, a third filtering device is arranged on the left side of the scaling device, a fourth circular groove is formed in the bottom of the third filtering device, the left side of the third communicating pipeline is arranged in the fourth circular groove, and a sealing cover is arranged at the top of the third filtering device, the outer surface of the third filtering device is rolled with an external thread, the inner surface of the sealing cover is rolled with an internal thread, the third filtering device is internally provided with a compressed carbon filter element, the inner surface of the compressed carbon filter element is rolled with an internal thread, the sealing cover is internally provided with a sealing interface, the outer surface of the sealing interface is rolled with an external thread, the bottom of the compressed carbon filter element is provided with a rubber sealing ring, the left side of the third filtering device is provided with a second filter, the inside of the second filter is provided with a granular carbon filter element, the bottom of the second filter is provided with a circular groove five, the inside of the circular groove five is provided with a second communicating pipeline, the left side of the second filter is provided with a first filtering device, the inside of the first filtering device is provided with a PP cotton filter element, the bottom of the first filtering device is provided with a circular groove six, the inside of the circular groove six is provided with a first communicating pipeline, and the left side of the first filtering device is provided with a circular groove seven, seven internally mounted in circular groove has a water inlet pipe, the water inlet pipe top is equipped with circular groove eight, eight internally mounted in circular groove have the ion stick, the ion stick left side is equipped with the generator, the water inlet pipe bottom is equipped with the water inlet.
Furthermore, the PP cotton filter element, the granular carbon filter element and the compressed carbon filter element are hollow cylinders.
Further, the water inlet pipeline is communicated with the inside of the first filtering device, the inside of the PP cotton filter element is communicated with the first communicating pipeline, the first communicating pipeline is communicated with the inside of the second filter, the inside of the granular carbon filter element is communicated with the inside of the second communicating pipeline, the second communicating pipeline is communicated with the inside of the third filtering device, and the inside of the compressed carbon filter element is communicated with the inside of the third communicating pipeline.
Furthermore, a plurality of small holes are arranged on the upper surface of the filter pipe.
The utility model has the advantages that: after an ion bar is installed in a water inlet pipe of the water treatment device and is matched with the generator to be electrified, the physical structure of water molecules of water is changed under the action of an electrostatic field, cations contained in the water cannot tend to the wall of the device, so that the scale prevention effect is achieved, food-grade silicon-phosphorus crystal particles are arranged in the installed scale removal device, scale removal substances can be released when the water meets the water, and trace elements required by a human body can be released.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic structural view of a high-efficiency anti-scaling water treatment device of the present invention;
in the figure: the device comprises a water outlet pipe 1, a descaling device 2, a filter pipe 3, a filter pipe cover 4, a filter pipe cover 5, a third filter device 6, a sealing cover 7, a compressed carbon filter element 8, a rubber sealing ring 9, a third communicating pipeline 11, a second filter 12, a first filter device 13, an ion bar 14, a generator 14, a water inlet pipeline 15, a water inlet 16, a second communicating pipeline 17 and a first communicating pipeline 18.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Referring to fig. 1, the present invention provides a technical solution: a high-efficiency anti-scaling water treatment device comprises a first filtering device 12, a scaling device 2, a filtering pipe 3, an ion bar 13 and a generator 14, wherein a first circular groove is arranged on the right side of the scaling device 2, a water outlet pipe 1 is arranged in the first circular groove, a second circular groove is arranged on the top of the scaling device 2, the filtering pipe 3 is arranged in the second circular groove, external threads are rolled on the outer surface of the filtering pipe 3, a filtering pipe cover 4 is arranged on the top of the scaling device 2, internal threads are rolled on the inner surface of the filtering pipe cover 4, food-grade silicon-phosphorus crystal particles are arranged in the filtering pipe 3, a third circular groove is arranged at the bottom of the scaling device 2, a third communicating pipeline 9 is arranged in the third circular groove, a third filtering device 5 is arranged on the left side of the scaling device 2, a fourth circular groove is arranged at the left side of the third communicating pipeline 9, a sealing cover 6 is arranged at the top of the third filtering device 5, the outer surface of the third filtering device 5 is rolled with an external thread, the inner surface of the sealing cover 6 is rolled with an internal thread, the third filtering device 5 is internally provided with a compressed carbon filter element 7, the inner surface of the compressed carbon filter element 7 is rolled with an internal thread, the inner part of the sealing cover 6 is provided with a sealing interface, the outer surface of the sealing interface is rolled with an external thread, the bottom of the compressed carbon filter element 7 is provided with a rubber sealing ring 8, the left side of the third filtering device 5 is provided with a second filter 11, a granular carbon filter element is arranged in the second filter 11, the bottom of the second filter 11 is provided with a circular groove five, a second communicating pipeline 17 is arranged in the circular groove five, the left side of the second filter 11 is provided with a first filtering device 12, the first filtering device 12 is internally provided with a PP cotton filter element, the bottom of the first filtering device 12 is provided with a circular groove six, the first communicating pipeline 18 is arranged in the circular groove six, the left side of the first filtering device 12 is provided with a circular groove seven, and the circular groove seven is internally provided with a water inlet pipeline 15, the top of the water inlet pipeline 15 is provided with eight circular grooves, the eight internal installation of the circular grooves is provided with an ion rod 13, the left side of the ion rod 13 is provided with a generator 14, and the bottom of the water inlet pipeline 15 is provided with a water inlet 16 which is matched with an internal thread through an external thread.
The PP cotton filter element, the granular carbon filter element and the compressed carbon filter element 7 are hollow cylinders, so that the filtering area can be increased.
The water inlet pipeline 15 is communicated with the inside of the first filtering device 12, the inside of the PP cotton filter element is communicated with the first communicating pipeline 18, the first communicating pipeline 18 is communicated with the inside of the second filter 11, the inside of the granular carbon filter element is communicated with the inside of the second communicating pipeline 17, the second communicating pipeline 17 is communicated with the inside of the third filtering device 5, the inside of the compressed carbon filter element 7 is communicated with the inside of the third communicating pipeline 9, and water is filtered to the second filter 11 through the first filtering device 12 and finally filtered to the third filtering device 5.
The upper surface of the filter pipe 3 is provided with a plurality of small holes, so that food-grade silicon-phosphorus crystal particles in the filter pipe can be fully volatilized into the water outlet pipe 1.
As an embodiment of the present invention: in the actual use process, when the water purifier is used, the generator 14 is opened, the ion bar 13 works, the water inlet 16 is connected with a tap water pipe, the ion bar 13 enables water to change the physical structure of water molecules under the action of an electrostatic field, cations contained in the water are prevented from tending to the wall of the water purifier, the water is filtered by the PP cotton filter element in the first filtering device 12, is filtered by the granular carbon filter element in the second filter 11, is filtered by the compressed carbon filter element 7 in the third filtering device 5, and finally is filtered in the descaling device 2, food-grade silicon-phosphorus crystal particles in the filtering pipe 3 release descaling substances and trace elements required by a human body into the water, and the water is discharged from the water outlet pipe 1.
The above description is only a preferred embodiment of the present invention, and the present invention is not limited to the above embodiments, and although the present invention has been disclosed with the preferred embodiments, it is not limited to the present invention, and any skilled person in the art can make some modifications or equivalent embodiments without departing from the scope of the present invention, but all the technical matters of the present invention are within the scope of the present invention.

Claims (4)

1. A high-efficiency anti-scaling water treatment device comprises a first filtering device (12), a scaling device (2), a filtering pipe (3), an ion bar (13) and a generator (14), and is characterized in that: the descaling device comprises a descaling device (2), a round groove I, a water outlet pipe (1) and a filtering pipe cover (4), wherein a round groove II is arranged at the top of the descaling device (2), a filtering pipe (3) is arranged inside the round groove II, an external thread is rolled on the outer surface of the filtering pipe (3), the filtering pipe cover (4) is arranged at the top of the descaling device (2), an internal thread is rolled on the inner surface of the filtering pipe cover (4), food-grade silicon-phosphorus crystal particles are arranged inside the filtering pipe (3), a round groove III is arranged at the bottom of the descaling device (2), a third communicating pipeline (9) is arranged inside the round groove III, a third filtering device (5) is arranged at the left side of the descaling device (2), a round groove IV is arranged at the bottom of the third filtering device (5), a round groove III communicating pipeline (9) is arranged inside the round groove IV at the left side of the third filtering device, and a sealing cover (6) is arranged at the top of the third filtering device (5), the outer surface of the third filtering device (5) is rolled with an external thread, the inner surface of the sealing cover (6) is rolled with an internal thread, the third filtering device (5) is internally provided with a compressed carbon filter element (7), the inner surface of the compressed carbon filter element (7) is rolled with an internal thread, the sealing cover (6) is internally provided with a sealing interface, the outer surface of the sealing interface is rolled with an external thread, the bottom of the compressed carbon filter element (7) is provided with a rubber sealing ring (8), the left side of the third filtering device (5) is provided with a second filter (11), the second filter (11) is internally provided with a granular carbon filter element, the bottom of the second filter (11) is provided with a fifth circular groove, the fifth circular groove is internally provided with a second communicating pipeline (17), the left side of the second filter (11) is provided with a first filtering device (12), and the first filtering device (12) is internally provided with a PP cotton filter element, first filter equipment (12) bottom is equipped with circular slot six, six internally mounted in circular slot have first communicating pipe (18), first filter equipment (12) left side is equipped with circular slot seven, seven internally mounted in circular slot have inlet channel (15), inlet channel (15) top is equipped with circular slot eight, eight internally mounted in circular slot have ion stick (13), ion stick (13) left side is equipped with generator (14), inlet channel (15) bottom is equipped with water inlet (16).
2. A high-efficiency scale control water treatment device according to claim 1, wherein: the PP cotton filter element, the granular carbon filter element and the compressed carbon filter element (7) are hollow cylinders.
3. A high-efficiency scale control water treatment device according to claim 1, wherein: the water inlet pipeline (15) is communicated with the inside of the first filtering device (12), the PP cotton filter element is communicated with the first communicating pipeline (18), the first communicating pipeline (18) is communicated with the inside of the second filter (11), the granular carbon filter element is communicated with the inside of the second communicating pipeline (17), the second communicating pipeline (17) is communicated with the inside of the third filtering device (5), and the compressed carbon filter element (7) is communicated with the inside of the third communicating pipeline (9).
4. A high-efficiency scale control water treatment device according to claim 1, wherein: the upper surface of the filter pipe (3) is provided with a plurality of small holes.
CN202020874945.7U 2020-05-22 2020-05-22 Water treatment facilities of high-efficient scale control Active CN214781304U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020874945.7U CN214781304U (en) 2020-05-22 2020-05-22 Water treatment facilities of high-efficient scale control

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020874945.7U CN214781304U (en) 2020-05-22 2020-05-22 Water treatment facilities of high-efficient scale control

Publications (1)

Publication Number Publication Date
CN214781304U true CN214781304U (en) 2021-11-19

Family

ID=78662853

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020874945.7U Active CN214781304U (en) 2020-05-22 2020-05-22 Water treatment facilities of high-efficient scale control

Country Status (1)

Country Link
CN (1) CN214781304U (en)

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