A salting component for a water treatment device
By introducing guiding, displacement, and premixing components into the salting assembly, the problem of insufficient position adjustment of the salting assembly was solved, achieving uniformity and stability of salting and improving water treatment efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN HEAVY IND WATER TREATMENT CO LTD
- Filing Date
- 2025-06-27
- Publication Date
- 2026-06-02
Smart Images

Figure CN224313358U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water treatment technology, specifically to a salting component for a water treatment device. Background Technology
[0002] Water treatment is a process of treating water through a series of physical, chemical and biological methods to remove impurities, pollutants, microorganisms, etc., so that the water meets specific uses or discharge standards. Among them, salting is a key step in the water treatment process. Salting components can be used to add industrial salt to water to soften it.
[0003] Currently, the salt addition components lack a salt addition position adjustment mechanism. Typically, the discharge position and height of the salt addition components are uniform, requiring waiting for the industrial salt to automatically mix with the water during actual salt addition operations. This dissolution and mixing process takes time, thus affecting water treatment efficiency. Therefore, this paper proposes a salt addition component for water treatment equipment that incorporates an auxiliary position adjustment mechanism. Utilizing sliding, lifting, and flow guiding methods, it enables salt addition at different positions and depths to meet diverse usage needs, while simultaneously improving water softening efficiency and thus enhancing the overall performance. Summary of the Invention
[0004] To address the problems in the existing technology, this utility model provides a salting component for a water treatment device, which enables salting at different locations and depths to meet different usage needs and thus improve the performance.
[0005] The technical solution adopted by this utility model to solve its technical problem is a salt addition component of a water treatment equipment, including a guiding component, a displacement component and a premixing component. The guiding component is surrounded by a displacement component, and the displacement component is equidistantly arranged with flow guiding components around it. The top of the guiding component is provided with a premixing component, and the top of the premixing component is provided with a feeding component.
[0006] The displacement component includes a sliding sleeve, a guide groove is provided inside the sliding sleeve, and discharge nozzles are provided at equal intervals on the outer surface of the sliding sleeve, and the discharge nozzles are connected to the guide groove.
[0007] The flow guiding assembly includes a flow guiding plate, and the flow guiding plate is connected to a sliding sleeve by bolts. Both sides of the bottom of the flow guiding plate are connected to a flow splitter plate by bolts.
[0008] By adopting the above technical solution, an auxiliary position adjustment mechanism can be added, which can be used to adjust the salt addition operation at different positions and depths by means of sliding, socketing, and guiding, so as to meet different usage needs.
[0009] Specifically, the premixing component includes a cylinder, and the bottom of the cylinder is connected to a guide channel via a hose. A rotating rod is installed inside the cylinder via a bearing, and stirring blades are bolted to both sides of the rotating rod.
[0010] By adopting the above technical solution, a premixing and stirring mechanism can be added, and the efficiency and quality of salt addition can be improved by premixing and stirring, thereby improving water treatment efficiency.
[0011] Specifically, the bottom of the sliding sleeve is connected to a water collection tank by bolts, the bottom of the water collection tank is provided with a water inlet, and a one-way valve is provided between the guide channel and the discharge nozzle.
[0012] By adopting the above technical solutions, it is easier to divert and recycle water, and to improve the stability and uniformity of the effluent after salting.
[0013] The beneficial effects of this utility model are:
[0014] The salting component of the water treatment equipment described in this utility model, through the setting of a sliding sleeve, a guide channel, a discharge nozzle, a guide plate, and a diverter plate, can increase the auxiliary position adjustment mechanism. By using sliding, sleeve, and guide methods, salting adjustment operations at different positions and depths can be achieved. This not only adapts to different usage needs and improves the uniformity of salting, but also helps to improve the efficiency of salting softened water treatment.
[0015] The salting component of the water treatment equipment described in this utility model, through the setting of a sliding sleeve, a guide channel, a discharge nozzle, a guide plate, and a diverter plate, can increase the premixing and stirring mechanism, thereby improving the salting efficiency and quality and improving the water treatment efficiency by using premixing and stirring. Attached Figure Description
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a cross-sectional view of the displacement component of this utility model;
[0019] Figure 3 This is a schematic diagram of the flow guiding component structure of this utility model;
[0020] Figure 4 This is a cross-sectional view of the premixed component of this utility model;
[0021] Figure 5 This is a cross-sectional view of the guide component of this utility model;
[0022] Figure 6This is a cross-sectional view of the feeding assembly of this utility model;
[0023] In the diagram: 1. Guide assembly; 101. Support frame; 102. Lead screw; 103. Ball bearing slider; 2. Displacement assembly; 201. Sliding sleeve; 202. Flow guide channel; 203. Discharge nozzle; 204. Water collection tank; 205. Water inlet; 206. One-way valve; 3. Flow guide assembly; 301. Flow guide plate; 302. Flow divider plate; 4. Premixing assembly; 401. Cylinder; 402. Rotating rod; 403. Stirring blade; 404. Dual-shaft motor; 405. Fixing frame; 406. Water pump; 407. Flow guide pipe; 5. Feeding assembly; 501. Material cylinder; 502. Rotating roller; 503. Spiral blade; 504. Drive motor; 505. Feeding hopper. Detailed Implementation
[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0025] To facilitate salting at different locations and depths, adapt to diverse usage needs, and thus improve performance, such as... Figure 1-3 As shown, the salt addition component of the water treatment equipment of this utility model includes a guiding component 1, a displacement component 2 and a premixing component 4. The displacement component 2 is sleeved around the guiding component 1. The flow guiding component 3 is equidistantly arranged around the displacement component 2. The premixing component 4 is arranged on the top of the guiding component 1. The feeding component 5 is arranged on the top of the premixing component 4.
[0026] The displacement component 2 includes a sliding sleeve 201, a guide groove 202 is provided inside the sliding sleeve 201, and a discharge nozzle 203 is provided at equal intervals on the outer surface of the sliding sleeve 201, and the discharge nozzle 203 communicates with the guide groove 202.
[0027] The flow guiding assembly 3 includes a flow guiding plate 301, and the flow guiding plate 301 is connected to a sliding sleeve 201 by bolts. Both sides of the bottom of the flow guiding plate 301 are connected to a diverter plate 302 by bolts.
[0028] In use, the auxiliary position adjustment mechanism can be added through the sliding sleeve 201, the guide channel 202, the discharge nozzle 203, the guide plate 301 and the diverter plate 302. By using the sliding, sleeve and guide methods, the salt addition adjustment operation at different positions and depths can be realized to adapt to different usage needs.
[0029] To improve the quality of salting, for example, such as Figure 1 , Figure 4As shown, the present invention also includes a premixing component 4 comprising a cylinder 401, the bottom of which is connected to a guide groove 202 via a hose, and a rotating rod 402 mounted inside the cylinder 401 via a bearing, with stirring blades 403 bolted to both sides of the rotating rod 402.
[0030] In use, the premixing and stirring mechanism can be added through the cylinder 401, rotating rod 402 and stirring blade 403. By using premixing and stirring, the efficiency and quality of salt addition can be improved, thus improving water treatment efficiency.
[0031] For example, such as Figure 2 As shown, the present invention also includes a water collection tank 204 bolted to the bottom of the sliding sleeve 201, an inlet 205 at the bottom of the water collection tank 204, and a one-way valve 206 between the guide channel 202 and the discharge nozzle 203.
[0032] During use, the water collection tank 204 and the water inlet 205 facilitate the diversion and recycling of water, while the one-way valve 206 helps to improve the stability and uniformity of the salted water.
[0033] For example, such as Figure 4 As shown, the present invention also includes a fixing frame 405 bolted to the periphery of the cylinder 401, a water pump 406 bolted to the bottom of the fixing frame 405, the water inlet of the water pump 406 being connected to the water collection tank 204 via a hose, and a guide pipe 407 provided at the water outlet of the water pump 406, and the guide pipe 407 being connected to the cylinder 401.
[0034] In use, water can be pre-mixed by pumping through the fixed frame 405, the water pump 406 and the guide pipe 407.
[0035] For example, such as Figure 4 , Figure 5 As shown, the present invention also includes the following: the guide assembly 1 includes a support frame 101, a lead screw 102 is mounted in the support frame 101 via bearings, a corresponding ball block slider 103 is sleeved around the lead screw 102, and the ball block slider 103 is connected to the sliding sleeve 201 via bolts; a dual-axis motor 404 is bolted to the bottom of the cylinder 401, and the dual-axis motor 404 is connected to the lead screw 102 and the rotating rod 402 via a drive shaft.
[0036] In use, the height and position of the sliding sleeve 201 can be controlled and adjusted by the support frame 101, the lead screw 102 and the ball slider 103, and the dual-axis motor 404 can easily drive the lead screw 102 and the rotating rod 402 to reciprocate.
[0037] For example, such as Figure 6 As shown, the present invention also includes the following: the feeding assembly 5 includes a material cylinder 501, and the material cylinder 501 is connected to the premixing assembly 4; a rotating roller 502 is installed inside the material cylinder 501 through a bearing; a spiral blade 503 is bolted to the periphery of the rotating roller 502; a drive motor 504 is bolted to one side of the material cylinder 501, and the drive motor 504 is connected to the rotating roller 502 through a drive shaft; a feeding hopper 505 is bolted to the top of the material cylinder 501, and the feeding hopper 505 is connected to the material cylinder 501.
[0038] In use, the spiral feeding structure, consisting of a material cylinder 501, a rotating roller 502, a spiral blade 503, a drive motor 504, and a feeding hopper 505, can improve the uniformity and accuracy of salt addition.
[0039] In use, the operator first feeds industrial salt into the feed cylinder 501 through the feeding hopper 505. Then, the operator manually starts the drive motor 504 to drive the rotating roller 502 and the spiral blade 503 to rotate, feeding the industrial salt into the cylinder 401. Simultaneously, the operator can manually start the dual-shaft motor 404 and the water pump 406. Using the water pump 406, water for water treatment is drawn into the cylinder 401 through the water collection tank 204, the water inlet 205, and the guide pipe 407. The cylinder 401 then premixes the industrial salt. The premixed industrial salt is then carried by the water... The salt enters the guide channel 202 and flows into the water body through the outlet 203 to complete the salt addition and mixing process. At the same time, the dual-shaft motor 404 drives the lead screw 102 and the rotating rod 402 to rotate back and forth. The ball block slider 103 can drive the sliding sleeve 401 to slide up and down back and forth, thereby adjusting the working height of the outlet 203, making the salt addition more uniform and reasonable. Moreover, the rotating rod 402 drives the stirring blade 403 to rotate back and forth, which can improve the uniformity of industrial salt premixing, thereby further accelerating water softening. The overall structure is simple and easy to operate, and the use is more reliable and efficient.
[0040] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A salting component for a water treatment device, characterized in that, It includes a guide component (1), a displacement component (2) and a premixing component (4). The guide component (1) is surrounded by a displacement component (2). The displacement component (2) is equidistantly arranged around a flow guide component (3). The guide component (1) is topped by a premixing component (4). The premixing component (4) is topped by a feeding component (5). The displacement component (2) includes a sliding sleeve (201), a guide groove (202) is provided inside the sliding sleeve (201), and a discharge nozzle (203) is provided at equal intervals on the outer surface of the sliding sleeve (201), and the discharge nozzle (203) is connected to the guide groove (202). The flow guiding assembly (3) includes a flow guiding plate (301), and the flow guiding plate (301) is connected to a sliding sleeve (201) by bolts. Both sides of the bottom of the flow guiding plate (301) are connected to a flow splitter plate (302) by bolts.
2. A salt addition assembly for a water treatment apparatus according to claim 1, wherein The premixing component (4) includes a cylinder (401), and the bottom of the cylinder (401) is connected to the guide groove (202) through a hose. A rotating rod (402) is installed inside the cylinder (401) through a bearing. Both sides of the rotating rod (402) are connected to stirring blades (403) by bolts.
3. A salt addition assembly for a water treatment apparatus according to claim 1, wherein The bottom of the sliding sleeve (201) is connected to a water collection tank (204) by bolts. The bottom of the water collection tank (204) is provided with a water inlet (205). A one-way valve (206) is provided between the guide channel (202) and the discharge nozzle (203).
4. The salting component of a water treatment device according to claim 2, characterized in that, The outer periphery of the cylinder (401) is connected to a fixing frame (405) by bolts. The bottom of the fixing frame (405) is connected to a water pump (406) by bolts. The water inlet of the water pump (406) is connected to the water collection tank (204) through a hose. The water outlet of the water pump (406) is provided with a guide pipe (407), and the guide pipe (407) is connected to the cylinder (401).
5. The salting component of a water treatment device according to claim 2, characterized in that, The guide assembly (1) includes a support frame (101), in which a lead screw (102) is mounted via bearings. A corresponding ball block slider (103) is sleeved around the lead screw (102), and the ball block slider (103) is connected to a sliding sleeve (201) via bolts. A dual-axis motor (404) is bolted to the bottom of the cylinder (401), and the dual-axis motor (404) is connected to the lead screw (102) and the rotating rod (402) via a drive shaft.
6. The salting component of a water treatment device according to claim 1, characterized in that, The feeding assembly (5) includes a cylinder (501) and the cylinder (501) is connected to the premixing assembly (4). A rotating roller (502) is installed inside the cylinder (501) through a bearing. A spiral blade (503) is bolted to the periphery of the rotating roller (502). A drive motor (504) is bolted to one side of the cylinder (501) and the drive motor (504) is connected to the rotating roller (502) through a drive shaft. A feeding hopper (505) is bolted to the top of the cylinder (501) and the feeding hopper (505) is connected to the cylinder (501).