A circulating water treatment agent storage device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-23
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]可是在储存时,如果旋盖受到外力碰撞时,会造成旋盖自身出现转动情况,进而会出现旋盖和液管之间漏气,又由于循环水处理剂具有挥发性,进而会造成储存的循环水处理剂从液管中挥发情况,降低了循环水处理剂用储存桶上旋盖的防自转防挥发稳定性
[0019] 1. This utility model, by creating a locking groove on the cap and setting a horizontally guiding sliding rod structure on the handle, along with a vertical elastic locking and positioning structure, allows the cap to be horizontally locked and locked after being screwed onto the liquid pipe, while simultaneously locking and positioning the sliding rod vertically. This effectively prevents the cap from rotating due to external impact, thus preventing the circulating water treatment agent from leaking and evaporating between the cap and the liquid pipe. Overall, this improves the anti-rotation and anti-evaporation stability of the cap on the circulating water treatment agent storage tank.
Smart Images

Figure CN224618461U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water treatment agent storage technology, and in particular to a circulating water treatment agent storage device. Background Technology
[0002] Circulating water treatment agent is a water treatment agent used in circulating cooling water treatment systems. It is mainly used in industrial circulating water treatment, industrial boiler water treatment, municipal and drinking water treatment, sewage and wastewater treatment and other fields.
[0003] Currently, existing circulating water treatment agents are generally liquid at room temperature and are stored in rectangular PVC storage tanks. The storage tanks are equipped with liquid pipes, and the outer wall of the liquid pipes is threaded with external threads. A screw cap with internal threads is matched and closed when not in use.
[0004] However, if the cap is subjected to an external impact during storage, it may cause the cap to rotate, which may lead to air leakage between the cap and the liquid pipe. Since the circulating water treatment agent is volatile, it may also cause the stored circulating water treatment agent to evaporate from the liquid pipe, thus reducing the anti-rotation and anti-evaporation stability of the cap on the circulating water treatment agent storage tank.
[0005] In addition, existing storage tanks for circulating water treatment agents have significantly reduced oil resistance if the bottom surface of the storage tank is stained with oil.
[0006] Therefore, we designed a circulating water treatment agent storage device to meet the needs of practical applications. Utility Model Content
[0007] The purpose of this invention is to address the aforementioned shortcomings in the existing technology by proposing a circulating water treatment agent storage device.
[0008] To achieve the above objectives, the present invention adopts the following technical solution:
[0009] Design a circulating water treatment agent storage device, including a storage tank, a handle and a liquid pipe on the storage tank, a screw cap threaded on the liquid pipe, a locking groove on the screw cap, an adhesive seat on the handle, a guide slide and a through opening on the adhesive seat, a slide rod slidably connected to the adhesive seat, a damping sleeve on the slide rod, a first slot and a second slot on the slide rod, and a lever and a baffle on the slide rod;
[0010] The adhesive base has a fixed block, the fixed block has a slidable locking pin, the locking pin has a spring and a pin handle, and the pin handle has a finger pressure block;
[0011] The storage tank is equipped with a support base, and the support base is equipped with an oil-resistant layer.
[0012] In detail, the locking groove is located at the left end of the cap, and the slide bar is a rectangular long bar structure that is inserted into the locking groove.
[0013] In detail, the support base is located at the left end of the handle, the first slot and the second slot are both opened at the bottom of the slide rod, and the locking pin slides vertically with the fixed block and engages with the first slot.
[0014] In detail, the guide opening is a longitudinal through-hole and communicates with the through-hole, and the through-hole is slidably sleeved with the slide rod.
[0015] In detail, the pusher blocks are two symmetrical, elongated structures, and the pusher blocks slide in contact with the inner wall of the guide port. There is a gap between the lower end of the pin handle and the storage tank.
[0016] In detail, the two ends of the spring are fixedly set to the fixed block and the pin handle respectively, and the finger pressure blocks are two symmetrical ones.
[0017] In detail, the support base is a trapezoidal structure and is located at the bottom of the storage tank, and the oil-resistant layer is located on the bottom surface of the support base.
[0018] The design scheme proposed in this utility model has the following beneficial effects in application:
[0019] 1. This utility model, by creating a locking groove on the cap and setting a horizontally guiding sliding rod structure on the handle, along with a vertical elastic locking and positioning structure, allows the cap to be horizontally locked and locked after being screwed onto the liquid pipe, while simultaneously locking and positioning the sliding rod vertically. This effectively prevents the cap from rotating due to external impact, thus preventing the circulating water treatment agent from leaking and evaporating between the cap and the liquid pipe. Overall, this improves the anti-rotation and anti-evaporation stability of the cap on the circulating water treatment agent storage tank.
[0020] 2. This utility model effectively improves the oil resistance of the bottom surface of the storage tank by setting a support base structure at the bottom of the storage tank and setting an oil-resistant layer structure at the bottom of the support base. Attached Figure Description
[0021] Figure 1 This is a first-view perspective perspective view of the overall structure of this utility model;
[0022] Figure 2 For the present utility model Figure 1 A three-dimensional schematic diagram of a screw cap with a locking groove and a sliding rod;
[0023] Figure 3 For the present utility model Figure 2 A three-dimensional schematic diagram of the middle card pin structure;
[0024] Figure 4 For the present utility model Figure 2 A top view of the overall structure;
[0025] Figure 5 This is a second-view perspective perspective view of the overall structure of this utility model.
[0026] In the diagram: 1 Storage tank; 11 Support base; 12 Oil-resistant layer; 13 Lifting handle; 14 Liquid pipe; 2 Screw cap; 21 Locking groove; 3 Adhesive base; 31 Guide slide; 32 Through port; 4 Slide rod; 40 Damping sleeve; 41 First slot; 42 Second slot; 43 Toggle block; 44 Stop plate; 5 Fixed block; 6 Locking pin; 61 Spring; 7 Pin handle; 71 Finger pressure block. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0028] Reference Figures 1-5 A circulating water treatment agent storage device includes a storage tank 1, a handle 13 and a liquid pipe 14 on the storage tank 1, a screw cap 2 threaded on the liquid pipe 14, a locking groove 21 on the screw cap 2, an adhesive seat 3 on the handle 13, a guide slide 31 and a through 32 on the adhesive seat 3, a slide rod 4 slidably connected to the adhesive seat 3, a damping sleeve 40 on the slide rod 4, a first slot 41 and a second slot 42 on the slide rod 4, a lever 43 and a baffle 44 on the slide rod 4;
[0029] A fixing block 5 is provided on the adhesive base 3, a locking pin 6 is slidably connected on the fixing block 5, a spring 61 and a pin handle 7 are provided on the pin handle 6, and a finger pressure block 71 is provided on the pin handle 7.
[0030] The storage tank 1 is provided with a support base 11, and the support base 11 is provided with an oil-resistant layer 12. The damping sleeve 40 is made of phenyl silicone rubber, which has high damping elasticity and a certain thickness. It is glued to the slide rod 4. When the slide rod 4 is inserted into the locking groove 21, the damping sleeve 40 will be squeezed and will produce a damping friction anti-slip effect with the inner groove wall of the locking groove 21.
[0031] When the slide bar 4 exits the locking groove 21, the left end face of the toggle block 43 will fit against the left end face of the inner wall of the guide slide 31, achieving a limiting effect.
[0032] The structures described in this patent are all made of hard silicone, which is corrosion-resistant and durable, and can be firmly bonded together with epoxy resin.
[0033] It should be further noted that the locking groove 21 is located at the left end of the cap 2, and the slide rod 4 is a rectangular long rod structure that is inserted into the locking groove 21 to lock the cap 2.
[0034] It should be further noted that the base 11 is located at the left end of the handle 13, and the first slot 41 and the second slot 42 are both opened at the bottom of the slide rod 4. The locking pin 6 slides vertically with the fixing block 5 and engages with the first slot 41 to achieve lateral positioning of the slide rod 4.
[0035] It should be further explained that the guide slide 31 is a longitudinal through-hole and is connected to the through-hole 32. The through-hole 32 is slidably sleeved with the slide rod 4 to prevent the slide rod 4 from rotating, thereby ensuring the locking effect of the locking pin 6 in the first locking groove 41 and the second locking groove 42 respectively.
[0036] It should be further noted that there are two symmetrical paddle blocks 43, which are elongated structures. The paddle blocks 43 slide in contact with the inner wall of the guide port 31, making it convenient for the fingers to move the paddle blocks 43 horizontally.
[0037] There is a gap between the lower end of the pin 7 and the storage tank 1 to ensure the downward movement distance of the locking pin 6.
[0038] It should be further noted that the two ends of the spring 61 are fixedly set to the fixed block 5 and the pin handle 7 respectively, and there are two acupressure blocks 71 that are symmetrical in front and behind, and the acupressure blocks 71 make it convenient for the fingers to press down.
[0039] It should be further noted that the support base 11 has a trapezoidal structure and is located at the bottom of the storage bucket 1. The support base 11 is made of hard silicone material. The trapezoidal structure increases the area of the bottom of the storage bucket 1, which further improves the placement stability of the storage bucket 1.
[0040] The oil-resistant layer 12 is provided on the bottom surface of the support base 11. The oil-resistant layer 12 is a PTFE polytetrafluoroethylene coating, which has extremely low surface energy and hardly adheres to any substance. It is wear-resistant and durable, thus having excellent anti-fouling performance. At the same time, it also has excellent chemical corrosion resistance and high temperature resistance.
[0041] Operating method: Press down on the acupressure block 71, causing the locking pin 6 to slide downwards and exit the first locking groove 41. At this time, the spring 61 stretches and deforms. Then, the slide rod 4 moves horizontally to the left and exits the locking groove 21. At this time, the locking pin 6 is aligned with the second locking groove 42. Release the acupressure block 71, and the spring 61 causes the locking pin 6 to slide upwards and engage in the second locking groove 42, which can position the slide rod 4.
[0042] Then, rotate the cap 2 counterclockwise to open it, and inject a certain amount of circulating water treatment agent into the storage tank 1 through the liquid pipe 14. Then, rotate the cap 2 clockwise and lock it with the liquid pipe 14 through the preset thread. At this time, the locking groove 21 is horizontally aligned with the slide rod 4. Next, press down on the acupressure block 71, which drives the locking pin 6 to slide down and exit the second locking groove 42. At this time, the spring 61 is stretched and deformed. Then, move the slide rod 4 to the right and insert it into the locking groove 21. At the same time, the first locking groove 41 is vertically aligned with the locking pin 6. Release the acupressure block 71, and the spring 61 drives the locking pin 6 to slide upward and lock into the first locking groove 41, which can position the slide rod 4.
[0043] The above operation can lock the cap 2 horizontally and lock the slide rod 4 vertically to prevent the cap 2 from rotating when it is hit by external force, thereby preventing the circulating water treatment agent from leaking and evaporating between the cap 2 and the liquid pipe 14. This improves the overall stability of the cap 2 on the circulating water treatment agent storage tank 1 in preventing self-rotation and evaporation.
[0044] In addition, by providing a support base 11 structure at the bottom of the storage tank 1 and an oil-resistant layer 12 structure at the bottom of the support base 11, the oil resistance of the bottom surface of the storage tank 1 is improved.
[0045] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A circulating water treatment agent storage device, comprising a storage tank (1), characterized in that: The storage tank (1) is provided with a handle (13) and a liquid pipe (14). A screw cap (2) is threaded on the liquid pipe (14). A locking groove (21) is provided on the screw cap (2). A bonding seat (3) is provided on the handle (13). A guide slide (31) and a through-hole (32) are provided on the bonding seat (3). A slide rod (4) is slidably connected to the bonding seat (3). A damping sleeve (40) is provided on the slide rod (4). A first slot (41) and a second slot (42) are provided on the slide rod (4). A lever (43) and a baffle (44) are provided on the slide rod (4). The adhesive base (3) is provided with a fixing block (5), and a locking pin (6) is slidably connected to the fixing block (5). The locking pin (6) is provided with a spring (61) and a pin handle (7), and a finger pressure block (71) is provided on the pin handle (7). The storage tank (1) is provided with a support base (11), and the support base (11) is provided with an oil-resistant layer (12).
2. The circulating water treatment agent storage device according to claim 1, characterized in that: The locking groove (21) is located at the left end of the cap (2), and the slide bar (4) is a rectangular long bar structure that is inserted into the locking groove (21).
3. The circulating water treatment agent storage device according to claim 1, characterized in that: The base (11) is located at the left end of the handle (13). The first slot (41) and the second slot (42) are both opened at the bottom of the slide rod (4). The pin (6) slides vertically with the block (5) and engages with the first slot (41).
4. The circulating water treatment agent storage device according to claim 1, characterized in that: The guide opening (31) is a longitudinal through opening and is connected to the through opening (32). The through opening (32) is slidably sleeved with the slide rod (4).
5. The circulating water treatment agent storage device according to claim 1, characterized in that: The push block (43) consists of two symmetrical, elongated structures. The push block (43) slides in contact with the inner wall of the guide port (31). The lower end of the pin (7) has a gap with the storage tank (1).
6. The circulating water treatment agent storage device according to claim 1, characterized in that: The two ends of the spring (61) are fixedly set to the fixed block (5) and the pin handle (7) respectively, and the finger pressure block (71) consists of two symmetrical front and back.
7. The circulating water treatment agent storage device according to claim 1, characterized in that: The support base (11) is a trapezoidal structure and is located at the bottom of the storage tank (1). The oil-resistant layer (12) is located on the bottom surface of the support base (11).