CN211070119U - Full life cycle's deionization resin jar - Google Patents
Full life cycle's deionization resin jar Download PDFInfo
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- CN211070119U CN211070119U CN201921807670.9U CN201921807670U CN211070119U CN 211070119 U CN211070119 U CN 211070119U CN 201921807670 U CN201921807670 U CN 201921807670U CN 211070119 U CN211070119 U CN 211070119U
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- tank body
- resin
- life cycle
- deionization
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Abstract
The utility model belongs to the technical field of coolant deionization, and discloses a full-life cycle deionization resin tank, which is provided with a tank body, wherein the lower end of the tank body is provided with a water inlet, and two sub-tank bodies are respectively arranged on two sides of the tank body; the middle part of the tank body is provided with a middle pipe, the outer part of the middle pipe is wrapped with a porous tubular wall, and the outer side of the porous tubular wall is wrapped with non-woven fabrics; the upper end of the tank body is provided with a water collecting plate. This full life cycle's deionization resin jar connects in parallel has two deionization jar bodies, has increased the adsorption capacity of deionization resin jar, has improved jar body mesostructure, is favorable to improving the distribution of fluid, make full use of deionization resin to the flow resistance has been reduced.
Description
Technical Field
The utility model belongs to the technical field of the coolant liquid deionization, especially, relate to a full life cycle's deionization resin jar.
Background
Currently, the current state of the art commonly used in the industry is such that: the traditional deionization tank for the vehicle generally adopts a straight cylinder structure, and anion and cation resin is uniformly mixed and then directly filled into a tank body. The diameter of the anion and cation resin is about 100 μm, and the diameter of the anion and cation resin is reduced to improve the adsorption capacity. The anion and cation resin with small diameter is accumulated in the tank body, the accumulation density is high, and the liquid is discharged after passing through all the resin from the bottom of the tank body, so the fluid resistance is high. In addition, because the adsorption capacity of the ion resin in the tank body is limited, the ion resin tank needs to be replaced after the ion resin tank reaches the service life for a long time.
In summary, the problems of the prior art are as follows:
(1) the service life of the commonly used deionized resin tank is limited, and the deionized resin tank needs to be replaced frequently in the life cycle of the automobile
(2) In the traditional deionization tank, the resin is mixed and directly filled into the tank body, and the liquid is discharged after passing through all the resin from the bottom of the tank body, so that the fluid resistance is high.
Disclosure of Invention
To the problem that prior art exists, the utility model provides a full life cycle's deionization resin jar.
The utility model is realized in such a way that the full life cycle deionized resin tank is provided with a tank body, the lower end of the tank body is provided with a water inlet, and two sub tank bodies are respectively arranged on two sides of the tank body;
the middle part of the tank body is provided with a middle pipe, the outer part of the middle pipe is wrapped with a porous tubular wall, and the outer side of the porous tubular wall is wrapped with non-woven fabrics; the upper end of the tank body is provided with a water collecting plate.
Furthermore, anion and cation resin is filled in the sub-tank body.
Further, a water outlet is spirally arranged at the upper end of the tank body.
Further, the porous tubular wall comprises one of a perforated stainless steel tube, a stainless steel mesh, a perforated plastic tube, and a plastic mesh.
Further, a filter screen is arranged between the tank body and the water collecting end plate.
Furthermore, a reinforcing rib is arranged on the water collecting plate.
Furthermore, a water outlet pipe is installed on the water outlet, and a reinforcing rib is arranged on the water outlet pipe.
In summary, the advantages and positive effects of the invention are: this full life cycle's deionization resin jar connects in parallel has two deionization jar bodies, has increased the adsorption capacity of deionization resin jar, has improved jar body mesostructure, is favorable to improving the distribution of fluid, make full use of deionization resin to the flow resistance has been reduced.
Drawings
Fig. 1 is a schematic view of an internal structure of a deionization tank according to an embodiment of the present invention.
In the figure: 1. a water inlet; 2. a water outlet; 3. filtering with a screen; 4. anion and cation resin; 5. non-woven fabrics; 6. a porous tubular wall.
Fig. 2 is a perspective view of a deionization tank according to an embodiment of the present invention.
Fig. 3 is a schematic diagram of a deionization tank according to an embodiment of the present invention.
Detailed Description
In order to further understand the contents, features and effects of the present invention, the following embodiments are illustrated and described in detail with reference to the accompanying drawings.
In view of the problems of the prior art, the present invention provides a full life cycle deionization resin tank, which is described in detail below with reference to fig. 1.
This full life cycle's deionization resin jar connects in parallel has two deionization jar bodies, has increased the adsorption capacity of deionization resin jar, has improved jar body mesostructure, is favorable to improving the distribution of fluid, make full use of deionization resin to the flow resistance has been reduced. The full life cycle deionized resin tank is composed of a PP plastic tank body, a plastic end cover, a filter screen 3 and non-woven fabrics 5.
This full life cycle's deionization resin jar is provided with a jar body, jar body lower extreme sets up water inlet 1, and the fluid evenly shunts through lower end plate and gets into two branch jar bodies. Tank body division: fluid enters from the middle of the lower end and flows out from the periphery of the upper end, namely, the fluid flows in from the middle pipe, passes through the pipe wall with holes and the non-woven fabric 5, passes through the anion and cation deionization resin on the periphery of the tank body, flows upwards under the water pressure, passes through the filter screen 3 and then is converged to the water outlet 2 on the upper end. Tank body division: the outer wall of the porous tubular wall 6 is tightly attached to the non-woven fabric 5. Wherein the porous tubular wall 6 comprises porous tubular materials such as a porous stainless steel tube, a stainless steel mesh (rolled into a tube), a porous plastic tube, a plastic mesh (rolled into a tube) and the like.
Anion and cation resin 4 which is uniformly mixed is arranged between the non-woven fabric 5 and the inner wall of the tank body. A filter screen 3 is arranged between the upper end of the tank body and the water collecting end plate. The water collecting end plate and the water outlet pipeline are designed with structural reinforcing ribs, and the filter screen 3 can be made of permeable porous materials such as stainless steel meshes, non-woven fabrics 5 and the like.
The working principle part is as follows:
the utility model discloses innovatively improve the structure in the jar body, liquid gets into the intermediate tube from the bottom, passes foraminiferous pipe wall and non-woven fabrics, makes to be full of liquid rapidly in the jar body, has reduced the distance that liquid passed through to the resistance has been reduced. In addition, the two tank bodies are connected in parallel, so that the ion adsorption capacity of the traditional resin tank is twice that of the traditional resin tank, and the effect of the full life cycle is achieved.
In the present invention, fig. 2 is a perspective view of the deionization tank provided by the embodiment.
FIG. 3 is a schematic diagram of an embodiment of a deionization tank.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention in any way, and all the modifications and equivalents of the technical spirit of the present invention to any simple modifications of the above embodiments are within the scope of the technical solution of the present invention.
Claims (7)
1. The full-life cycle deionized resin tank is characterized in that the full-life cycle deionized resin tank is provided with a tank body, the lower end of the tank body is provided with a water inlet, and two sub tank bodies are respectively arranged on two sides of the tank body;
the middle part of the tank body is provided with a middle pipe, the outer part of the middle pipe is wrapped with a porous tubular wall, and the outer side of the porous tubular wall is wrapped with non-woven fabrics; the upper end of the tank body is provided with a water collecting plate.
2. The full-life cycle deionizing resin tank as claimed in claim 1, wherein the interior of said sub-tank body is filled with an anionic and cationic resin.
3. The full life cycle resin deionization tank as claimed in claim 1 wherein the upper end of said tank body is spirally fitted with a water outlet.
4. The full-life cycle deionizing resin tank as claimed in claim 1 wherein said porous tubular wall comprises one of a perforated stainless steel tube, a stainless steel mesh, a perforated plastic tube, a plastic mesh.
5. The full life cycle resin deionization tank as claimed in claim 1 wherein a screen is installed between said tank body and the water collection end plate.
6. The full life cycle resin deionization tank as claimed in claim 1 wherein said water collection sheet is provided with reinforcing ribs.
7. The full-life cycle deionizing resin tank as claimed in claim 3, wherein said water outlet is provided with a water outlet pipe, and said water outlet pipe is provided with a reinforcing rib.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921807670.9U CN211070119U (en) | 2019-10-25 | 2019-10-25 | Full life cycle's deionization resin jar |
Applications Claiming Priority (1)
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CN201921807670.9U CN211070119U (en) | 2019-10-25 | 2019-10-25 | Full life cycle's deionization resin jar |
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CN211070119U true CN211070119U (en) | 2020-07-24 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110586203A (en) * | 2019-10-25 | 2019-12-20 | 萱柯氢能科技(北京)有限公司 | Full-life-cycle deionized resin tank and use method thereof |
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2019
- 2019-10-25 CN CN201921807670.9U patent/CN211070119U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110586203A (en) * | 2019-10-25 | 2019-12-20 | 萱柯氢能科技(北京)有限公司 | Full-life-cycle deionized resin tank and use method thereof |
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