Water treatment mixture reaction kettle
By introducing a mixing rod, guide block, and slide bar structure into the water treatment mixing reactor, the problems of simple mixing structure and raw material accumulation are solved, achieving efficient and uniform mixing of water treatment agents, and improving the practicality of the reactor and the wastewater treatment effect.
Patent Information
- Application Number
- CN202422891185.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-26
AI Technical Summary
Existing water treatment mixing reactors have a simple mixing structure, resulting in low mixing efficiency. Furthermore, water treatment agent raw materials tend to accumulate at the bottom of the reactor, further reducing the mixing effect.
It adopts a mixing rod and guide block structure. The mixing rod drives the screw to rotate and interacts with the thread of the guide block to adjust the position of the receiving frame and mixing rod. Combined with the slide bar and limiting head, it ensures stable mixing. It uses a measuring cylinder and weight sensor for precise feeding.
It improves mixing efficiency and uniformity, ensuring uniform mixing of water treatment agent raw materials, and enhances the practicality of the reactor and the effect of wastewater treatment.
Smart Images

Figure CN223530411U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wastewater treatment, and in particular to a water treatment mixing reactor. Background Technology
[0002] Wastewater treatment is an extremely important part of the water conservancy system. Wastewater treatment is generally divided into industrial wastewater treatment and domestic wastewater treatment according to the source of wastewater. In the process of treatment, water treatment agents are needed to treat the wastewater.
[0003] Chinese patent application number CN202322766591.0 provides a stable reactor. This design, through the arrangement of a first shell, connecting rod, limiting plate, handle, fixing block, first push block, first spring, second push block, and second spring, allows for the following operation: When installing a filter screen, firstly, pulling the handle upwards causes the limiting plate to move upwards away from the first limiting groove. The upward movement of the limiting plate then causes the connecting rod to move upwards, stretching the second spring. Finally, rotating the handle causes the limiting plate to rotate, thus extending the filter screen. The rotation of the positioning plate drives the connecting rod to rotate, which in turn drives the second push block to rotate. The rotation of the second push block moves the first push block, which in turn moves the fixing block outward from the first housing. When the limiting plate rotates to directly above the second limiting groove, it stops rotating. When the handle is released, the connecting rod moves downward under the action of the second spring. The downward movement of the connecting rod drives the limiting plate downward into the second limiting groove, and the fixing block enters the fixing housing to fix the first housing. This completes the fixation of the filter screen, enabling quick installation and removal of the filter screen and improving work efficiency.
[0004] Existing water treatment mixing reactors have certain drawbacks in use. First, most water treatment mixing reactors use a single mixing structure, resulting in low mixing efficiency. Furthermore, water treatment agent raw materials tend to accumulate at the bottom of the reactor during the mixing process, making it impossible to uniformly mix the raw materials at the bottom. This leads to a reduction in the mixing efficiency of the water treatment mixing reactor. Therefore, we propose a new water treatment mixing reactor. Utility Model Content
[0005] To overcome the shortcomings of existing technologies, the purpose of this utility model is to provide a water treatment mixing reactor. By setting a mixing rod and a guide block, the mixing rod and multiple blades at its outer end initially mix the internal raw materials. When the water treatment agent raw materials accumulate at the bottom of the device, the rotating mixing rod causes the screw to rotate simultaneously. The screw then interacts with the guide block through a threaded connection, causing the guide block to adjust its position and driving the external receiving frame and mixing rod to adjust their positions as well. This effectively conducts and mixes the raw materials accumulated at the bottom, giving the reactor multiple mixing structures, improving mixing efficiency while ensuring the uniformity of the water treatment agent raw materials, thus enhancing the practicality of the water treatment mixing reactor.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0007] A water treatment mixing reactor includes a main body, with a feeding mechanism connected to the outer end of the main body and a mixing mechanism rotatably connected to the inner end of the main body.
[0008] The mixing mechanism includes a driving component, a mixing rod is installed at the transmission end of the driving component, a blade is fixedly connected to the outer end of the mixing rod, the blade is evenly distributed, a screw is installed at the bottom end of the mixing rod, a guide block is sleeved on the outer end of the screw, a receiving frame is installed at the bottom end of the guide block, and mixing rods are installed at both ends of the receiving frame.
[0009] The practicality of this water treatment mixing reactor was improved by installing a mixing rod and a guide block.
[0010] Furthermore, a second blade is installed at the outer end of the mixing rod, and the second blade is evenly distributed.
[0011] The mixing efficiency of the reactor was further improved by installing blade two.
[0012] Furthermore, a support frame is movably connected above the second blade, and the support frame is located at the outer end of the screw.
[0013] By installing a support frame, a connection structure can be formed at the outer end of the slide bar, allowing the slide bar to be used stably.
[0014] Furthermore, the bottom end of the support frame is equipped with symmetrically distributed sliding rods, the bottom end of the sliding rods is equipped with limiting heads, and the sliding rods are slidably connected to the receiving frame.
[0015] By installing a slide bar and a limiting head, the guide block can drive the mixing rod to perform mixing work more stably, preventing it from falling off or shifting.
[0016] Furthermore, the main body structure includes a reactor body, with multiple supports installed at the bottom end of the reactor body and a feed inlet installed at the top end of the reactor body.
[0017] By installing a support bracket, the reactor body can be made to operate stably.
[0018] Furthermore, a storage tank is movably connected to the outside of the reactor body. The storage tanks are symmetrically distributed, and a transmission component is fixedly connected to the outer end of each storage tank.
[0019] Installing a storage tank makes feeding and mixing in this reactor much more convenient.
[0020] Furthermore, a measuring cylinder is connected to the other end of the transmission component away from the storage bin. The outer end of the measuring cylinder is provided with a scale, and a weight sensor is installed at the bottom end of the measuring cylinder.
[0021] The wastewater treatment efficiency of the device was improved by installing a measuring cylinder and a weight sensor.
[0022] Furthermore, a connecting frame is installed at the bottom of the weight sensor, and a feeding assembly is fixedly connected to the outer end of the measuring cylinder.
[0023] By installing the feeding assembly, the wastewater additives after weighing can be conveniently transferred into the reactor.
[0024] In summary, this utility model has the following beneficial effects:
[0025] By setting up a mixing rod and a guide block, the mixing rod and multiple blades at the outer end initially mix the internal raw materials. When the water treatment agent raw materials accumulate at the bottom of the device, the rotating mixing rod causes the screw to rotate simultaneously. The screw then interacts with the guide block through a threaded action, causing the guide block to adjust its position and driving the external receiving frame and mixing rod to adjust their positions. This effectively conducts and mixes the raw materials accumulated at the bottom, giving the reactor multiple mixing structures. This improves mixing efficiency while ensuring the uniformity of the water treatment agent raw materials, thus enhancing the practicality of the water treatment mixing reactor.
[0026] By setting a sliding rod and a limiting head, the moving guide block and the receiving frame can slide at the outer end of the sliding rod, thus being guided and limited by the sliding rod. The limiting head prevents movement and detachment, which makes the mixing rod more stable when the guide block drives the mixing rod to perform mixing work, and prevents detachment and deviation.
[0027] By setting up a measuring cylinder and a weight sensor, when the reactor is mixing materials, wastewater additives need to be added in a certain proportion. When adding materials, the scale set on the outside of the measuring cylinder can directly observe the feeding of wastewater additives. In addition, the weight sensor at the bottom of the measuring cylinder can accurately sense the wastewater additives fed into the measuring cylinder. This makes the wastewater treatment mixing process in the reactor more accurate and convenient, and improves the wastewater treatment effect of the device. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the overall structure in this embodiment;
[0029] Figure 2 This is a schematic diagram of the planar structure of the mixing mechanism in this embodiment;
[0030] Figure 3 This is in this embodiment Figure 2 A magnified structural diagram of the plane at point A in the middle;
[0031] Figure 4 This is a three-dimensional structural diagram of the guide block in this embodiment;
[0032] Figure 5 This is a three-dimensional structural diagram of the measuring cylinder in this embodiment.
[0033] In the diagram, 1. Main body mechanism; 101. Reactor body; 102. Support; 103. Feed inlet; 2. Feeding mechanism; 201. Storage tank; 202. Transmission assembly; 203. Measuring cylinder; 204. Scale; 205. Weight sensor; 206. Connecting frame; 207. Discharge assembly; 3. Mixing mechanism; 301. Driving component; 302. Mixing rod; 303. Blade 1; 304. Screw; 305. Guide block; 306. Receiving frame; 307. Mixing rod; 308. Blade 2; 309. Support frame; 310. Slide rod; 311. Limiting head. Detailed Implementation
[0034] The present invention will be further described in detail below with reference to the accompanying drawings.
[0035] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "bottom surface," "top surface," "inner," and "outer" refer to directions toward or away from the geometric center of a specific part, respectively.
[0036] Reference Figure 1-5 As shown, a water treatment mixing reactor is provided in a preferred embodiment of the present invention, including a main body mechanism 1, a feeding mechanism 2 connected to the outer end of the main body mechanism 1, and a mixing mechanism 3 rotatably connected to the inner end of the main body mechanism 1.
[0037] The mixing mechanism 3 includes a driving component 301. A mixing rod 302 is installed at the transmission end of the driving component 301. A blade 303 is fixedly connected to the outer end of the mixing rod 302. The blades 303 are evenly distributed. A screw 304 is installed at the bottom end of the mixing rod 302. A guide block 305 is sleeved on the outer end of the screw 304. A receiving frame 306 is installed at the bottom end of the guide block 305. Mixing rods 307 are installed at both ends of the receiving frame 306.
[0038] Reference Figure 2-3 As shown, further, blade 2 308 is installed at the outer end of the mixing rod 307, and blade 2 308 is evenly distributed.
[0039] Reference Figure 2 As shown, a support frame 309 is movably connected above the blade 308, and the support frame 309 is located at the outer end of the screw 304.
[0040] Reference Figure 2 and Figure 4 As shown, further, the bottom end of the support frame 309 is equipped with symmetrically distributed slide rods 310, and the bottom end of the slide rods 310 is equipped with a limiting head 311. The slide rods 310 and the receiving frame 306 are slidably connected.
[0041] The drive unit 301 activates the mixing rod 302 and multiple outer blades 303 to initially mix the internal raw materials. When the water treatment agent raw materials accumulate at the bottom of the device, the rotating mixing rod 302 causes the screw 304 to rotate simultaneously. The screw 304 then engages with the guide block 305 through a threaded action, causing the guide block 305 to adjust its position, which in turn adjusts the position of the outer receiving frame 306 and the mixing rod 307. The blades 308 enhance the mixing effect of the mixing rod 307, increasing the mixing area during mixing adjustments. The moving guide block 305 and the receiving frame 306 can slide at the outer end of the slide rod 310, thus being guided and restricted by the slide rod 310. The restricting head 311 prevents movement and detachment, making the mixing operation of the guide block 305 and the mixing rod 307 more stable. This effectively conducts and mixes the raw materials accumulated at the bottom, giving the reactor multiple mixing structures, improving mixing efficiency while ensuring the uniformity of the water treatment agent raw materials.
[0042] Reference Figure 1 As shown, the main body mechanism 1 further includes a reactor body 101, a plurality of supports 102 are installed at the bottom end of the reactor body 101, and a feed inlet 103 is installed at the top end of the reactor body 101.
[0043] By installing multiple brackets 102, a support structure can be formed at the bottom of the reactor body 101, so that the reactor body 101 can operate stably.
[0044] Reference Figure 2 and Figure 5 As shown, a storage tank 201 is movably connected to the outside of the reactor body 101. The storage tanks 201 are symmetrically distributed, and a transmission component 202 is fixedly connected to the outer end of each storage tank 201.
[0045] Reference Figure 5 As shown, further, the other end of the transmission component 202 away from the storage bin 201 is connected to a measuring cylinder 203, the outer end of the measuring cylinder 203 is provided with a scale 204, and the bottom end of the measuring cylinder 203 is equipped with a weight sensor 205.
[0046] Reference Figure 5 As shown, the bottom end of the weight sensor 205 is further equipped with a connecting bracket 206, and the outer end of the measuring cylinder 203 is fixedly connected with a feeding assembly 207.
[0047] The storage tank 201 can store a certain amount of water treatment raw materials. The raw materials are conveniently transferred to the measuring cylinder 203 by the transfer component 202. After being transferred to the measuring cylinder 203, the wastewater treatment additive needs to be added in a certain proportion. When adding, the scale 204 set on the outside of the measuring cylinder 203 can directly observe the feeding of the wastewater treatment additive. In addition, the weight sensor 205 at the bottom of the measuring cylinder 203 can accurately sense the wastewater treatment additive fed into the inner end of the measuring cylinder 203, which makes the mixing of wastewater treatment materials in the reactor more accurate and convenient.
[0048] Specific implementation process: When using this device, the inner end of the storage tank 201 can first store a certain amount of water treatment raw materials. The raw materials are then conveniently transferred using the transmission component 202. After the wastewater additive enters the measuring cylinder 203, the scale 204 on the outside of the measuring cylinder 203 allows direct observation of the wastewater additive's feeding status. Furthermore, the weight sensor 205 at the bottom of the measuring cylinder 203 accurately senses the wastewater additive being fed into the inner end of the measuring cylinder 203, making the wastewater treatment mixing process in the reactor more precise and convenient. After feeding is completed, the drive component 301 starts, which drives the mixing rod 302 and multiple outer blades 30... 3. The internal raw materials are initially mixed, and when the water treatment agent raw materials are piled up at the bottom of the device, the rotating mixing rod 302 causes the screw 304 to rotate simultaneously. The screw 304 then engages with the guide block 305 through a threaded action, causing the guide block 305 to adjust its position and drive the external receiving frame 306 and mixing rod 307 to adjust their positions. During adjustment, the moving guide block 305 and receiving frame 306 can slide at the outer end of the slide rod 310, thereby being guided and restricted by the slide rod 310. The restricting head 311 prevents movement and detachment, thus making the mixing operation of the guide block 305 and the mixing rod 307 more stable.
[0049] Blade 308 can enhance the mixing effect of mixing rod 307, increasing the mixing area of mixing rod 307 during mixing adjustment, thereby increasing the mixing efficiency of the reactor.
[0050] 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 embodiments and descriptions in the specification 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 the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A water treatment mixing reactor, characterized in that: It includes a main body mechanism (1), the outer end of which is connected to a feeding mechanism (2), and the inner end of which is rotatably connected to a mixing mechanism (3). The mixing mechanism (3) includes a driving component (301), a mixing rod (302) is installed at the transmission end of the driving component (301), a blade (303) is fixedly connected to the outer end of the mixing rod (302), the blade (303) is evenly distributed, a screw (304) is installed at the bottom end of the mixing rod (302), a guide block (305) is sleeved on the outer end of the screw (304), a receiving frame (306) is installed at the bottom end of the guide block (305), and mixing rods (307) are installed at both ends of the receiving frame (306).
2. The water treatment mixing reactor according to claim 1, characterized in that: The mixing rod (307) is equipped with blade two (308) at its outer end, and the blade two (308) is evenly distributed.
3. The water treatment mixing reactor according to claim 2, characterized in that: A support frame (309) is movably connected above the second blade (308), and the support frame (309) is located at the outer end of the screw (304).
4. The water treatment mixing reactor according to claim 3, characterized in that: The bottom end of the support frame (309) is equipped with symmetrically distributed slide rods (310), and the bottom end of the slide rods (310) is equipped with a limiting head (311). The slide rods (310) and the receiving frame (306) are slidably connected.
5. The water treatment mixing reactor according to claim 1, characterized in that: The main body (1) includes a reactor body (101), with multiple supports (102) installed at the bottom end of the reactor body (101) and a feed inlet (103) installed at the top end of the reactor body (101).
6. The water treatment mixing reactor according to claim 5, characterized in that: The outer side of the reactor body (101) is movably connected to a storage tank (201), the storage tanks (201) are symmetrically distributed, and the outer ends of the storage tanks (201) are all fixedly connected to a transmission component (202).
7. The water treatment mixing reactor according to claim 6, characterized in that: The other end of the transmission component (202) away from the storage bin (201) is connected to a measuring cylinder (203). The outer end of the measuring cylinder (203) is provided with a scale (204), and the bottom end of the measuring cylinder (203) is equipped with a weight sensor (205).
8. The water treatment mixing reactor according to claim 7, characterized in that: The bottom end of the weight sensor (205) is equipped with a connecting frame (206), and the outer end of the measuring cylinder (203) is fixedly connected with a feeding assembly (207).
Citation Information
Patent Citations
Reaction kettle capable of working stably
CN220887159U