Reverse osmosis water treatment equipment for processing laundry detergent
The clamping strip and sliding strip structure, combined with the spring and driving mechanism, solves the problem of loose fixation of the reverse osmosis equipment, and achieves a simple and stable fixing effect.
Patent Information
- Application Number
- CN202422097585.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-08-28
AI Technical Summary
In the prior art, the reverse osmosis device is not firmly fixed to the frame and requires the use of tools through a clamp, which is inconvenient to operate.
The clamping bar and sliding bar structure is adopted. Through the cooperation of the arc grooves and sliding bars of the first clamping bar and the second clamping bar, combined with the spring and the driving mechanism, the reverse osmosis tank is firmly fixed, avoiding the use of clamps.
The reverse osmosis tank is firmly fixed on the mounting plate, the operation is simple and does not require the use of tools, which improves the installation convenience and stability of the equipment.
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Figure CN223480852U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of reverse osmosis water treatment equipment, and relates to a reverse osmosis water treatment device, particularly a reverse osmosis water treatment device for laundry detergent processing. Background Technology
[0002] Our reverse osmosis water treatment equipment uses components from renowned international manufacturers and employs advanced foreign technologies such as multi-stage pre-filtration, reverse osmosis, nuclear-grade mixed-bed resin purification, and dual-wavelength ultraviolet digestion, along with our unique process design, to ensure superior performance and stability. Our laboratory ultrapure water system features an integrated design, combining a pretreatment system, RO system, ultrapure water system, and post-treatment system, making it easy to operate and maintain. Functional upgrades can also be easily implemented according to user needs.
[0003] A search revealed a Chinese patent document that discloses a reverse osmosis water treatment device for praziquantel processing [Application No.: 202022965101.6; Publication No.: CN 213834648 U]. This reverse osmosis water treatment equipment for praziquantel processing includes a frame, a booster pump and control box located inside the frame, and a reverse osmosis unit connected to the booster pump via a water pipe. A support mechanism is fitted around the outside of the water pipe. The support mechanism includes a retaining ring fitted around the outside of the water pipe. A fixing rod is located outside the retaining ring, and a sliding rod passes through one side of the fixing rod. A limit block is located at one end of the sliding rod. A push plate is fitted around the outside of the sliding rod, and a spring for pushing the push plate is fitted around the outside of the sliding rod. A positioning hole is provided on one side of the frame to cooperate with the sliding rod. By designing the fixing rod outside the retaining ring, the sliding rod passing through one side of the fixing rod, and the spring for pushing the push plate, the sliding rod cooperates with the positioning hole, allowing the retaining ring to support the water pipe. This facilitates support of the water pipe, prevents vibration of the water pipe, and ensures the stability of the water pipe connection.
[0004] While the sliding rod and positioning hole disclosed in the patent facilitate the support of the water pipe and prevent the water pipe from vibrating, thus affecting the stability of the water pipe connection, the fixation of the reverse osmosis equipment and the frame is not secure. Furthermore, in the prior art, tools are usually required to fix the reverse osmosis equipment to the frame with clamps, which is inconvenient to operate. Utility Model Content
[0005] The purpose of this utility model is to address the aforementioned problems in the existing technology by proposing a reverse osmosis water treatment device for laundry detergent processing. The technical problem to be solved by this utility model is: how to achieve the reverse osmosis device being fixed to the frame without the need for clamps.
[0006] The purpose of this utility model can be achieved through the following technical solutions:
[0007] A reverse osmosis water treatment device for laundry detergent processing includes a reverse osmosis tank and a mounting plate. The reverse osmosis tank is placed on the mounting plate, and a fixing frame is fixed on the mounting plate. Two fixing strips are fixed on the fixing frame, and two displacement grooves are formed on the fixing strips. An arc-shaped clamping strip one and a clamping strip two are slidably connected in the displacement grooves. Both clamping strip one and clamping strip two have arc-shaped grooves. An arc-shaped slide bar is slidably connected in the arc-shaped groove of clamping strip two. The slide bar is inserted into the arc-shaped groove of clamping strip one, and a fixing mechanism is provided between clamping strip one and slide bar.
[0008] The working principle of this utility model is as follows: The reverse osmosis tank is placed on the mounting plate. According to the diameter of the reverse osmosis tank, the distance between the upper and lower clamping strips is adjusted so that the clamping strips clamp the reverse osmosis tank and fix it on the mounting plate. Then, the sliding strip is inserted into the arc-shaped groove of the clamping strip and fixed in the arc-shaped groove of the clamping strip by the fixing mechanism, so that the reverse osmosis tank is more firmly fixed on the mounting plate and the operation is convenient.
[0009] Two springs are fixed inside the displacement groove, and a slider is fixed to the other end of each spring. A bidirectional threaded rod is rotatably connected inside the displacement groove. Threaded posts are threaded to both ends of the bidirectional threaded rod, and the threaded posts are in contact with the slider. An installation groove is provided inside the displacement groove, and an installation block is slidably connected inside the installation groove. The installation block is fixedly connected to the threaded posts. A driving mechanism is provided between the bidirectional threaded rod and the displacement groove.
[0010] Using the above structure, a rear-mounted spring drives a bidirectional threaded rod to rotate via a drive mechanism. The two threaded posts on the bidirectional threaded rod move in opposite directions, pushing the slider and causing clamp strips one and two to move. This allows the reverse osmosis tank to be placed on the mounting plate first, and then the bidirectional threaded rod is rotated in the opposite direction, causing the two threaded posts to move in corresponding directions. The spring force causes the slider to reset clamp strips one and two. The distance between clamp strips one and two can be adjusted according to the diameter of the reverse osmosis tank to clamp and fix the reverse osmosis tank on the mounting plate, making operation convenient.
[0011] The drive mechanism includes a square opening at the lower end of the displacement groove, a gear one fixed on the bidirectional threaded rod, a motor fixed in the displacement groove, a gear two fixed at the output shaft end of the motor, and the gear one and gear two meshing with each other.
[0012] With the above structure, by installing gear one and gear two, starting the motor, driving gear two to rotate, gear two to drive gear one to rotate, and gear one to drive the bidirectional threaded rod to rotate, the distance between clamping bar one and clamping bar two can be adjusted according to the diameter of the reverse osmosis tank, thus clamping and fixing the reverse osmosis tank on the mounting plate, which is convenient to operate.
[0013] The fixing mechanism includes a mounting base fixed on the first clamping bar, an inclined bar rotatably connected to the mounting base, a pin fixed to the other end of the inclined bar, a fixing groove through the sliding bar on the first clamping bar, the pin being inserted into the fixing groove, and a tension spring fixed between the inclined bar and the first clamping bar.
[0014] By adopting the above structure, through the installation of the insertion column and the opening of the fixing groove, the inclined bar is first pulled upward to make the insertion column leave the fixing groove on the clamping bar. After the sliding bar is inserted into the arc-shaped groove of the clamping bar, the inclined bar is released. Through the elastic force of the tension spring, the insertion column is reset and inserted into the fixing groove in the sliding bar, thus fixing the sliding bar in the arc-shaped groove of the clamping bar. This enhances the stability of the reverse osmosis tank placed on the mounting plate and makes the installation more secure.
[0015] The second clamping strip has an arc-shaped sliding opening, and a movable block extending out of the sliding opening is fixed on the sliding strip. An arc-shaped limiting groove is provided at the lower end of the arc-shaped groove of the second clamping strip, and a limiting block is slidably connected in the limiting groove. The limiting block is fixedly connected to the sliding strip.
[0016] By adopting the above structure, by opening a limiting groove and a sliding opening, by pushing the moving block to slide on the sliding opening, the moving block drives the limiting block on the slide bar to slide in the limiting groove, thus realizing the sliding of the slide bar and allowing the slide bar to be inserted into the arc-shaped groove of the clamping bar.
[0017] Compared with existing technologies, this reverse osmosis water treatment equipment for laundry detergent processing has the following advantages:
[0018] 1. Place the reverse osmosis tank on the mounting plate. Adjust the distance between the upper and lower clamping strips (one and two) according to the diameter of the reverse osmosis tank. This will clamp and fix the reverse osmosis tank to the mounting plate. Then, insert the sliding strip into the arc-shaped groove of clamping strip one. Fix the sliding strip in the arc-shaped groove of clamping strip one through the fixing mechanism. This will make the reverse osmosis tank more firmly fixed to the mounting plate and facilitate operation.
[0019] 2. The bidirectional threaded rod is driven to rotate by the drive mechanism. The two threaded posts on the bidirectional threaded rod move in opposite directions. The threaded posts push the slider, which drives clamp strip one and clamp strip two to move. This makes it convenient to place the reverse osmosis tank on the mounting plate first, and then rotate the bidirectional threaded rod in the opposite direction, so that the two threaded posts move in the corresponding directions. The spring force causes the slider to drive clamp strip one and clamp strip two to reset. The distance between clamp strip one and clamp strip two can be adjusted according to the diameter of the reverse osmosis tank to clamp and fix the reverse osmosis tank on the mounting plate. The operation is convenient.
[0020] 3. By installing the insert post and opening the fixing groove, first pull the inclined bar to pull the insert post upward, so that the insert post is away from the fixing groove on the clamping bar. After inserting the slide bar into the arc groove of the clamping bar, release the inclined bar. Through the elastic force of the tension spring, the insert post is reset and inserted into the fixing groove in the slide bar. The slide bar is fixed in the arc groove of the clamping bar, which enhances the stability of the reverse osmosis tank placed on the mounting plate and makes the installation more secure. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0022] Figure 2 This is a schematic diagram of the structure of the fixing block in this utility model.
[0023] Figure 3 This is a schematic diagram of the structure of clamping strip one and clamping strip two in this utility model.
[0024] Figure 4 This is a cross-sectional view of the second clamping strip in this utility model.
[0025] In the diagram, 1. Mounting plate; 2. Fixing frame; 3. Fixing strip; 4. Displacement groove; 5. Clamping strip one; 6. Clamping strip two; 7. Reverse osmosis tank; 8. Spring; 9. Limiting block; 10. Slider; 11. Bidirectional threaded rod; 12. Threaded column; 13. Square opening; 14. Gear one; 15. Motor; 16. Gear two; 17. Arc groove; 18. Sliding strip; 19. Inclined strip; 20. Insertion column; 21. Fixing groove; 22. Tension spring; 23. Sliding opening; 24. Moving block; 25. Limiting groove; 26. Mounting groove; 27. Mounting block. Detailed Implementation
[0026] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
[0027] like Figure 1-Figure 4 As shown, this reverse osmosis water treatment equipment for laundry detergent processing includes a reverse osmosis tank 7 and a mounting plate 1. The reverse osmosis tank 7 is placed on the mounting plate 1. A fixing frame 2 is fixed on the mounting plate 1. Two fixing strips 3 are fixed on the fixing frame 2. Two displacement grooves 4 are opened on the fixing strips 3. Arc-shaped clamping strip 1 5 and clamping strip 2 6 are slidably connected in the displacement grooves 4. Arc-shaped grooves 17 are opened in both clamping strip 1 5 and clamping strip 2 6. Arc-shaped sliding strip 18 is slidably connected in the arc-shaped groove 17 of clamping strip 2 6. The sliding strip 18 is inserted into the arc-shaped groove 17 of clamping strip 1 5. A fixing mechanism is provided between clamping strip 1 5 and sliding strip 18.
[0028] Place the reverse osmosis tank 7 on the mounting plate 1. Adjust the distance between the upper and lower clamping strips 5 and 6 according to the diameter of the reverse osmosis tank 7 so that the clamping strips 5 and 6 clamp the reverse osmosis tank 7 on the mounting plate 1. Then insert the slide bar 18 into the arc groove 17 of the clamping strip 5. Fix the slide bar 18 in the arc groove 17 of the clamping strip 5 through the fixing mechanism, so that the reverse osmosis tank 7 is more firmly fixed on the mounting plate 1 and the operation is convenient.
[0029] Two springs 8 are fixed inside the displacement groove 4, and a slider 10 is fixed to the other end of the springs 8. A bidirectional threaded rod 11 is rotatably connected inside the displacement groove 4. Threaded posts 12 are threaded to both ends of the bidirectional threaded rod 11. The threaded posts 12 fit against the slider 10. An installation groove 26 is opened inside the displacement groove 4. An installation block 27 is slidably connected inside the installation groove 26. The installation block 27 is fixedly connected to the threaded posts 12. A driving mechanism is provided between the bidirectional threaded rod 11 and the displacement groove 4.
[0030] With the above structure, the double-threaded rod 11 is driven to rotate by the drive mechanism via the rear-mounted spring 8. The two threaded posts 12 on the double-threaded rod 11 move in opposite directions. The threaded posts 12 push the slider 10, causing the clamping strips 5 and 6 to move. This allows the reverse osmosis tank 7 to be placed on the mounting plate 1 first. Then, the double-threaded rod 11 is rotated in the opposite direction, causing the two threaded posts 12 to move in corresponding directions. The spring force of the spring 8 causes the slider 10 to reset the clamping strips 5 and 6. The distance between the clamping strips 5 and 6 can be adjusted according to the diameter of the reverse osmosis tank 7 to clamp and fix the reverse osmosis tank 7 on the mounting plate 1. The operation is convenient.
[0031] The drive mechanism includes a square opening 13 at the lower end of the displacement groove 4, a gear 14 fixed on the bidirectional threaded rod 11, a motor 15 fixed in the displacement groove 4, and a gear 2 16 fixed at the output shaft end of the motor 15. The gear 14 and the gear 2 16 are meshed and connected.
[0032] With the above structure, by installing gear 14 and gear 2 16, starting motor 15, driving gear 2 16 to rotate, gear 2 16 drives gear 14 to rotate, and gear 14 drives bidirectional threaded rod 11 to rotate, thus realizing the adjustment of the distance between clamping bar 1 5 and clamping bar 2 6 according to the diameter of reverse osmosis tank 7, and clamping and fixing reverse osmosis tank 7 on mounting plate 1, which is convenient to operate.
[0033] The fixing mechanism includes a mounting base fixed on the clamping bar 5, an inclined bar 19 rotatably connected to the mounting base, a plug 20 fixed to the other end of the inclined bar 19, a fixing groove 21 through the sliding bar 18 is provided on the clamping bar 5, the plug 20 is inserted into the fixing groove 21, and a tension spring 22 is fixed between the inclined bar 19 and the clamping bar 5.
[0034] By adopting the above structure, by installing the insertion post 20 and opening the fixing groove 21, the inclined bar 19 first pulls the insertion post 20 upward, so that the insertion post 20 leaves the fixing groove 21 on the clamping bar 5. After inserting the slide bar 18 into the arc groove 17 of the clamping bar 5, the inclined bar 19 is released. Through the elastic force of the tension spring 22, the insertion post 20 is reset and inserted into the fixing groove 21 in the slide bar 18, thus fixing the slide bar 18 in the arc groove 17 of the clamping bar 5. This enhances the stability of the reverse osmosis tank 7 placed on the mounting plate 1, making the installation more secure.
[0035] The second clamping bar 6 has an arc-shaped sliding opening 23. The sliding bar 18 has a moving block 24 extending out of the sliding opening 23. The lower end of the arc-shaped groove 17 of the second clamping bar 6 has an arc-shaped limiting groove 25. The limiting groove 25 is slidably connected to the limiting block 9, and the limiting block 9 is fixedly connected to the sliding bar 18.
[0036] By adopting the above structure, by opening the limiting groove 25 and the sliding opening 23, by pushing the moving block 24 to slide on the sliding opening 23, the moving block 24 drives the limiting block 9 on the slide bar 18 to slide in the limiting groove 25, thereby realizing the sliding of the slide bar 18 and allowing the slide bar 18 to be inserted into the arc groove 17 of the clamping bar 5.
[0037] The working principle of this utility model is as follows: Starting motor 15 drives gear 2 16 to rotate, gear 2 16 drives gear 14 to rotate, gear 14 drives the bidirectional threaded rod 11 to rotate, and the two threaded posts 12 on the bidirectional threaded rod 11 move in opposite directions. The threaded posts 12 push the slider 10, causing clamping strips 1 5 and 2 6 to move, facilitating the placement of the reverse osmosis tank 7 on the mounting plate 1. Then, the bidirectional threaded rod 11 rotates in the opposite direction, causing the two threaded posts 12 to move in corresponding directions. The spring force of spring 8 causes the slider 10 to move... Clamping bar 5 and clamping bar 6 are reset. The distance between clamping bar 5 and clamping bar 6 is adjusted according to the diameter of the reverse osmosis tank 7. The reverse osmosis tank 7 is clamped and fixed on the mounting plate 1. First, the inclined bar 19 drives the insertion post 20 upward, so that the insertion post 20 leaves the fixing groove 21 on clamping bar 5. After inserting the slide bar 18 into the arc groove 17 of clamping bar 5, the inclined bar 19 is released. Through the elastic force of the tension spring 22, the insertion post 20 is reset and inserted into the fixing groove 21 in the slide bar 18, thus fixing the slide bar 18 in the arc groove 17 of clamping bar 5.
[0038] In summary, by using clamping strip one and clamping strip two, the function of fixing the reverse osmosis equipment to the frame without using clamps can be achieved.
[0039] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
Claims
1. A reverse osmosis water treatment device for laundry detergent processing, comprising a reverse osmosis tank (7) and a mounting plate (1), characterized in that, The reverse osmosis tank (7) is placed on the mounting plate (1). A fixing frame (2) is fixed on the mounting plate (1). Two fixing strips (3) are fixed on the fixing frame (2). Two displacement grooves (4) are opened on the fixing strips (3). Arc-shaped clamping strip one (5) and clamping strip two (6) are slidably connected in the displacement grooves (4). Arc-shaped grooves (17) are opened in both clamping strip one (5) and clamping strip two (6). Arc-shaped sliding strip (18) is slidably connected in the arc-shaped groove (17) of clamping strip two (6). The sliding strip (18) is inserted into the arc-shaped groove (17) of clamping strip one (5). A fixing mechanism is provided between clamping strip one (5) and sliding strip (18).
2. The reverse osmosis water treatment equipment for laundry detergent processing according to claim 1, characterized in that, Two springs (8) are fixed inside the displacement groove (4). A slider (10) is fixed to the other end of the springs (8). A bidirectional threaded rod (11) is rotatably connected inside the displacement groove (4). Threaded columns (12) are threaded to both ends of the bidirectional threaded rod (11). The threaded columns (12) are in contact with the slider (10). An installation groove (26) is provided inside the displacement groove (4). An installation block (27) is slidably connected inside the installation groove (26). The installation block (27) is fixedly connected to the threaded column (12). A driving mechanism is provided between the bidirectional threaded rod (11) and the displacement groove (4).
3. The reverse osmosis water treatment equipment for laundry detergent processing according to claim 2, characterized in that, The drive mechanism includes a square opening (13) at the lower end of the displacement groove (4), a gear one (14) fixed on the bidirectional threaded rod (11), a motor (15) fixed in the displacement groove (4), a gear two (16) fixed at the output shaft end of the motor (15), and the gear one (14) and gear two (16) meshing.
4. The reverse osmosis water treatment equipment for laundry detergent processing according to claim 1, characterized in that, The fixing mechanism includes a mounting base fixed on the clamping bar (5), an inclined bar (19) is rotatably connected to the mounting base, a plug (20) is fixed at the other end of the inclined bar (19), a fixing groove (21) through the sliding bar (18) is provided on the clamping bar (5), the plug (20) is inserted into the fixing groove (21), and a tension spring (22) is fixed between the inclined bar (19) and the clamping bar (5).
5. The reverse osmosis water treatment equipment for laundry detergent processing according to claim 1, characterized in that, The second clamp (6) has an arc-shaped sliding opening (23), and the slide (18) has a moving block (24) extending out of the sliding opening (23). The lower end of the arc-shaped groove (17) of the second clamp (6) has an arc-shaped limiting groove (25), and a limiting block (9) is slidably connected in the limiting groove (25). The limiting block (9) is fixedly connected to the slide (18).
Citation Information
Patent Citations
Reverse osmosis water treatment equipment for praziquantel processing
CN213834648U