Titanium dioxide washing device capable of recycling water
By designing a titanium dioxide water washing device that operates in reverse direction between the forward and reverse shafts, the problem of waste of water resources in the water washing process is solved, the recovery of water resources and the efficient separation of impurities are achieved, and the washing efficiency and resource utilization are improved.
Patent Information
- Application Number
- CN202422416242.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The wastewater generated by the washing process during the existing titanium dioxide production process cannot be reused, resulting in a large amount of waste of water resources.
A titanium dioxide water washing device including a forward rotation shaft and a reverse rotation shaft is designed. The forward rotation shaft and the reverse rotation shaft operate in reverse to form a hedge water flow, speed up the water washing process, and separate impurities through the inclined upper filter plate and the inverted trapezoidal lower filter plate to realize the recycling and utilization of water resources.
By hedging the water flow, the water washing progress is accelerated, the accumulation of titanium dioxide is prevented, and the effective recycling of water resources and the centralized treatment of impurities is achieved, reducing water resource waste.
Smart Images

Figure CN223300557U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of titanium dioxide water washing, and more specifically relates to a titanium dioxide water washing device capable of recycling water. Background Art
[0002] Titanium dioxide is an important inorganic pigment with excellent hiding power and tinting strength, widely used in coatings, plastics, paper, and other fields. However, due to the production process of titanium dioxide, especially when using the sulfuric acid method, the post-production washing step is extremely critical, so it is generally carried out after production.
[0003] Based on the above, when titanium dioxide undergoes water washing process, the commonly used water washing process will directly discharge the water from the first and second washes, resulting in a large amount of water resource waste. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a titanium dioxide washing device with recyclable water, so as to solve the problem that the wastewater generated after the existing washing cannot be reused, resulting in a large amount of water resources wasted.
[0005] The utility model provides a titanium dioxide washing device capable of recycling water, which is achieved by the following specific technical means:
[0006] A titanium dioxide washing device capable of recycling water, comprising a housing, a water storage tank, a drive motor A, a forward shaft, a reverse shaft, a sewage tank, a lower filter plate, an upper filter plate, a water pump, a water outlet pipe and a drive motor B;
[0007] The shell is hollow inside, with two groups of inspection cover slots on both sides of the shell, and a group of observation window slots on the front end of the shell; the water tank is hollow inside, with a group of observation window slots on the front end of the water tank corresponding to the shell, and a group of rotating shaft holes are respectively opened on both sides of the water tank, and a group of sewage tank support plates are provided on the left side of the water tank, a group of water pump support plates are provided on the right side of the water tank, a group of water inlet pipe holes are provided on one side of the water pump support plates, and a group of water outlets are provided at the lower left end of the water tank; the driving motor A is fixed to the upper end of the sewage tank support plate by bolts, and a group of pulleys A are provided on the rotating shaft of the driving motor A; the forward rotating shaft is inserted into the rotating shaft hole opened on the left side of the water tank, and the forward rotating shaft is provided with three groups of forward rotating shaft fan blades in the internal part of the water tank; the The reversing shaft is inserted into the rotating shaft hole opened on the right side of the water tank, and the reversing shaft is provided with three groups of reversing shaft blades in the water tank part; the two groups of sewage tanks are fixed to the upper end of the sewage tank support plate by bolts, and the upper ends of the sewage tanks are respectively provided with a group of sewage tank top covers; the lower filter plate is fixed to the lower end of the inner side of the water tank by bolts; the upper filter plate is fixed to the lower end of the inner side of the water tank by bolts; the water pump is fixed to the upper end of the water pump support plate by bolts; the upper end of the water inlet pipe is connected to the water pump, and the lower end of the water inlet pipe is connected to the water outlet at the lower end of the water tank; the lower end of the water outlet pipe is connected to the water pump, and six groups of small water outlet pipes are horizontally provided at the upper end of the water outlet pipe; the drive motor B is fixed to the upper end of the water pump support plate by bolts, and a group of pulleys B is provided on the rotating shaft of the drive motor B.
[0008] Furthermore, a group of pulleys is provided on the left side of the forward shaft, which is connected to pulley A through belt A, and a group of pulleys is provided on the right side of the reverse shaft, which is connected to pulley B through belt B.
[0009] Furthermore, two groups of sewage tank interfaces are provided at the upper end of the left outer side of the water tank, and the sewage tank is connected to the water tank through the corresponding interfaces at its upper end.
[0010] Furthermore, a group of feed ports are provided at the upper end of the shell, and a group of feed port covers are screwed onto the upper ends of the feed ports.
[0011] Furthermore, the upper filter plate is trapezoidal, and the upper filter plate as a whole is inclined toward the sewage outlet.
[0012] Furthermore, the lower filter plate is in an inverted trapezoidal shape, and the pores of the lower filter plate are smaller than those of the upper filter plate.
[0013] Furthermore, the water inlet pipe and the water outlet pipe are chemically corrosion-resistant hoses.
[0014] Furthermore, a group of observation windows are fixed in the observation window grooves opened between the shell and the front end of the water tank by bolts.
[0015] Furthermore, a group of inspection covers are respectively installed in the inspection cover slots on both sides of the shell.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The utility model sets a forward rotating shaft and a reverse rotating shaft. The forward rotating shaft and the reverse rotating shaft operate in opposite directions. The water flow inside the water storage tank is counter-flowed, which can speed up the water washing process and prevent the accumulation of titanium dioxide.
[0018] 2. The utility model sets a lower filter plate and an upper filter plate. The inclined upper filter plate can gather impurities to one side and discharge them uniformly. Moreover, because the lower filter plate is an inverted trapezoid, the concave middle part can store the washed titanium dioxide. After the washing process is completed, the lower filter plate can be directly removed and the titanium dioxide can be dried and poured out, saving time and effort.
[0019] 3. The utility model provides a sewage tank, which can collect impurities and process them uniformly, making transportation and centralized processing more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a structural diagram of the present utility model.
[0021] Figure 2 It is a schematic diagram of the right side top view of the utility model after the right side inspection cover is removed.
[0022] Figure 3 It is a schematic diagram of the left side structure of the utility model after the shell is cut away with the inspection modification version and the observation window removed.
[0023] Figure 4 This utility model will Figure 3 Schematic diagram of the left-side top view of the structure after some components are removed.
[0024] Figure 5 This utility model will Figure 4 Schematic diagram of the left-side top view of the structure after some components are removed.
[0025] Figure 6 It is a schematic diagram of the structure of the utility model when viewed from the right side with the outer shell removed.
[0026] Figure 7 This utility model will Figure 6 Schematic diagram of the right side structure viewed from above after some components are removed.
[0027] Figure 8 The utility model is a forward rotation shaft and a reverse rotation shaft and Figure 7 Schematic diagram of the right side structure viewed from above after some components are removed.
[0028] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:
[0029] 1. Casing; 2. Observation window; 1001. Inspection cover; 3. Water storage tank; 3001. Drain outlet; 301. Drain tank support plate; 302. Water pump support plate; 303. Water outlet; 4. Drive motor A; 401. Pulley A; 402. Belt A; 5. Forward shaft; 501. Forward shaft blades; 5001. Counter shaft; 5002. Counter shaft blades; 6. Drain tank; 601. Drain tank top cover; 7. Lower filter plate; 8. Upper filter plate; 9. Water pump; 901. Water inlet pipe; 902. Water outlet pipe; 10. Drive motor B; 101. Belt B; 102. Pulley B; 11. Feed port; 1101. Feed port cover. DETAILED DESCRIPTION
[0030] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0031] Example: As shown in the attached Figure 1 To the attached Figure 8 As shown:
[0032] The utility model provides a titanium dioxide washing device with recyclable water, comprising a housing 1, a water storage tank 3, a drive motor A4, a forward shaft 5, a reverse shaft 5001, a sewage tank 6, a lower filter plate 7, an upper filter plate 8, a water pump 9 and a drive motor B10;
[0033] The shell 1 is hollow inside, with two groups of inspection cover slots on both sides of the shell 1, and a group of observation window slots on the front end of the shell 1; the water tank 3 is hollow inside, with a group of observation window slots on the front end of the water tank 3 corresponding to the shell 1, and a group of rotating shaft holes are respectively opened on both sides of the water tank 3, and a group of sewage tank support plates 301 are provided on the left side of the water tank 3, a group of water pump support plates 302 are provided on the right side of the water tank 3, a group of water inlet pipe holes are provided on one side of the water pump support plate 302, and a group of water outlet ports 303 are provided at the lower left end of the water tank 3; the driving motor A4 is fixed to the upper end of the sewage tank support plate 301 by bolts, and a group of pulleys A401 are provided on the rotating shaft of the driving motor A4; the forward rotating shaft 5 is inserted into the rotating shaft hole opened on the left side of the water tank 3, and the forward rotating shaft 5 is provided with three groups of forward rotating shaft blades 501 in the internal part of the water tank 3; the reverse rotating shaft 5001 is inserted into In the rotating shaft hole opened on the right side of the water tank 3, the reversing shaft 5001 is provided with three groups of reversing shaft blades 5002 in the water tank 3 part; two groups of sewage tanks 6 are fixed to the upper end of the sewage tank support plate 301 by bolts, and the upper ends of the sewage tanks 6 are respectively provided with a group of sewage tank top covers 601; the lower filter plate 7 is fixed to the lower end of the inner side of the water tank 3 by bolts; the upper filter plate 8 is fixed to the lower end of the inner side of the water tank 3 by bolts; the water pump 9 is fixed to the upper end of the water pump support plate 302 by bolts; the upper end of the water inlet pipe 901 is connected to the water pump 9, and the lower end of the water inlet pipe 901 is connected to the water outlet 303 at the lower end of the water tank 3; the lower end of the water outlet pipe 902 is connected to the water pump 9, and six groups of small water outlet pipes are horizontally provided at the upper end of the water outlet pipe 902; the drive motor B10 is fixed to the upper end of the water pump support plate 302 by bolts, and a group of pulleys B102 is provided on the rotating shaft of the drive motor B10.
[0034] Among them, such as Figure 4 and Figure 7 As shown, a set of pulleys is provided on the left side of the forward shaft 5, which is connected to the pulley A401 through the belt A402, and a set of pulleys is provided on the right side of the reverse shaft 5001, which is connected to the pulley B102 through the belt B101. This makes it easier to repair and replace the belts A402 and B101, and can prevent the belts A402 and B101 from falling off.
[0035] Among them, such as Figure 4 and Figure 5 As shown, two groups of sewage tank interfaces are provided on the upper end of the left side outer side of the water storage tank 3. The sewage tank 6 is connected to the water storage tank 3 through the corresponding interfaces on its upper end, which can more conveniently centrally process the impurities washed out during the washing process.
[0036] Among them, such as Figure 1 As shown, a group of feed ports 11 are provided at the upper end of the shell 1, and a group of feed port covers 1101 are screwed onto the upper end of the feed ports 11, which can more conveniently add materials into the water storage tank 3.
[0037] Among them, such as Figure 4 and Figure 8 As shown, the upper filter plate 8 is trapezoidal, and the upper filter plate 8 is tilted toward the sewage outlet 3001 as a whole, so that the impurities washed out by water can be stored in a centralized manner for subsequent processing.
[0038] Among them, such as Figure 5 and Figure 8 As shown, the lower filter plate 7 is an inverted trapezoid, and the pores of the lower filter plate 7 are smaller than those of the upper filter plate 8. The upper filter plate 8 can filter larger impurities, and the lower filter plate 7 can store titanium dioxide in the recessed part for easy subsequent removal.
[0039] Among them, such as Figure 6 As shown, the water inlet pipe 901 and the water outlet pipe 902 are chemically resistant hoses, which are easy to replace and more durable.
[0040] Among them, such as Figure 2 As shown, a set of observation windows 2 are fixed by bolts in the observation window grooves opened at the front end of the shell 1 and the water tank 3 to facilitate observation of the internal situation of the water tank 3, and after the water system is completed, the observation windows 2 can be opened to more conveniently take out the washed titanium dioxide.
[0041] Among them, such as Figure 1 and Figure 2 As shown, a set of inspection covers 1001 are respectively installed in the inspection cover slots on both sides of the housing 1, which can make it more convenient to repair or replace internal parts.
[0042] The specific usage and function of this embodiment are as follows:
[0043] In the present utility model, the unwashed titanium dioxide is first poured in through the feed port 11, and then water is poured in through the feed port 11. The upper filter plate 8 performs the first filtration. After the filtration, the impurities flow into the sewage tank 6 through the sewage outlet 3001. The driving motor A4 rotates forward to drive the forward rotation shaft 5 to rotate forward, and the driving motor B10 reverses to drive the reverse shaft 5001 to reverse to form a counter-flow water flow, thereby accelerating the washing progress. After the washing is completed, the titanium dioxide will be retained on the upper end of the lower filter plate 7. The water pump 9 draws out the remaining water after the washing is completed from the water storage tank 3, and sprays it out through the small outlet pipe at the upper end of the outlet pipe 902 for recycling.
[0044] Anything not described in detail in the present invention is well known to those skilled in the art.
Claims
1. A titanium dioxide washing device capable of recycling water, characterized in that: It comprises a housing (1), a water storage tank (3), a driving motor A (4), a forward rotation shaft (5), a reverse rotation shaft (5001), a sewage tank (6), a lower filter plate (7), an upper filter plate (8), a water pump (9), a water outlet pipe (902) and a driving motor B (10); The shell (1) is hollow inside, two groups of inspection cover slots are provided on both sides of the shell (1), and a group of observation window slots are provided at the front end of the shell (1); the water tank (3) is hollow inside, a group of observation window slots are provided at the front end of the water tank (3) at positions corresponding to the shell (1), and a group of rotating shaft holes are provided on both sides of the water tank (3), and a group of sewage tank support plates (301) are provided on the left side of the water tank (3), and a group of water pump support plates (302) are provided on the right side of the water tank (3). A group of water inlet pipe holes are provided on the side, and a group of water outlets (303) are provided at the lower end of the left side of the water storage tank (3); the driving motor A (4) is fixed to the upper end of the sewage tank support plate (301) by bolts, and a group of pulleys A (401) are provided on the rotating shaft of the driving motor A (4); the forward rotating shaft (5) is inserted into the rotating shaft hole opened on the left side of the water storage tank (3), and the forward rotating shaft (5) is provided with three groups of forward rotating shaft blades (501) in the inner part of the water storage tank (3); the reverse rotating shaft (5001) is inserted into the water storage tank (3) In the rotating shaft hole opened on the right side, the reversing shaft (5001) is provided with three sets of reversing shaft blades (5002) in the water tank (3); the two sets of the sewage tanks (6) are fixed to the upper end of the sewage tank support plate (301) by bolts, and the upper end of the sewage tank (6) is provided with a set of sewage tank top covers (601); the lower filter plate (7) is fixed to the lower end of the inner side of the water tank (3) by bolts; the upper filter plate (8) is fixed to the lower end of the inner side of the water tank (3) by bolts; the water pump (9) is fixed to the lower end of the inner side of the water tank (3) by bolts. The bolt is fixed to the upper end of the water pump support plate (302); the upper end of the water inlet pipe (901) is connected to the water pump (9), and the lower end of the water inlet pipe (901) is connected to the water outlet (303) at the lower end of the water storage tank (3); the lower end of the water outlet pipe (902) is connected to the water pump (9), and six groups of small water outlet pipes are horizontally provided at the upper end of the water outlet pipe (902); the driving motor B (10) is fixed to the upper end of the water pump support plate (302) by bolts, and a group of pulleys B (102) are provided on the rotating shaft of the driving motor B (10).
2. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: A set of pulleys is provided on the left side of the forward shaft (5) and is connected to pulley A (401) via belt A (402). A set of pulleys is provided on the right side of the reverse shaft (5001) and is connected to pulley B (102) via belt B (101).
3. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: Two groups of sewage tank interfaces are provided at the upper end of the left side outer side of the water storage tank (3), and the sewage tank (6) is connected to the water storage tank (3) via the corresponding interfaces at its upper end.
4. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: A group of feed ports (11) are provided at the upper end of the housing (1), and a group of feed port covers (1101) are screwed onto the upper ends of the feed ports (11).
5. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: The upper filter plate (8) is trapezoidal, and the upper filter plate (8) is tilted toward the sewage outlet (3001) as a whole.
6. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: The lower filter plate (7) is in the shape of an inverted trapezoid, and the pores of the lower filter plate (7) are smaller than those of the upper filter plate (8).
7. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: The water inlet pipe (901) and the water outlet pipe (902) are chemically resistant hoses.
8. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: A set of observation windows (2) are fixed by bolts in the observation window grooves provided at the front ends of the housing (1) and the water tank (3).
9. The titanium dioxide washing device capable of recycling water according to claim 1, characterized in that: A set of inspection covers (1001) is respectively installed in the inspection cover slots on both sides of the housing (1).