Quantitative dosing equipment for flocculant production
By using the combination of open loop, spring rod group, and hole plug in the quantitative dosing equipment, the elastic deformation potential energy and hydraulic cylinder output power are used to drive the reciprocating movement of the piston plate, and the quantitative output is achieved, solving the problem of unbalanced output of the existing equipment and ensuring the constant discharge.
Patent Information
- Application Number
- CN202422222900.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-11
AI Technical Summary
The existing quantitative dosing equipment is prone to uneven output during use, resulting in unconstant discharge of the equipment.
The mutual cooperation of open loop, spring rod group, and hole plugs is adopted, and the elastic deformation potential energy and hydraulic cylinder output power are used to drive the reciprocating movement of the piston plate, and the quantitative output is achieved through the structure of the lower connecting pipe, the quantitative chamber and the output nozzle.
It ensures the discharge consistency of the equipment, realizes quantitative output effect, and solves the problem of unbalanced output of existing equipment.
Smart Images

Figure CN223027129U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of flocculant production, in particular to a quantitative dosing device for flocculant production. Background Technique
[0002] Industrial water treatment flocculant is a water treatment agent, which plays an extremely important role in industrial water treatment. The water treatment flocculant can effectively remove suspended solids and colloidal substances, reduce COD, and at the same time can effectively stabilize and remove bacteria and viruses in water.
[0003] When the existing quantitative dosing device is in use, for example, a quantitative dosing device for industrial wastewater flocculant disclosed in application number CN202120730493.X includes a box body. A plurality of support columns are provided at the lower end of the box body. A wastewater treatment chamber is provided inside the box body. A control panel is installed on the left side of the box body. A power connection port is provided on the right side of the box body. The left space of the wastewater treatment chamber is communicated with the outside through a liquid inlet pipe. The bottom space of the wastewater treatment chamber is communicated with the outside through a liquid outlet pipe. A storage box is fixedly connected to the upper end of the box body. A storage cavity is provided inside the storage box. An adding port is provided at the inner top of the storage cavity. The upper end of the storage box is rotatably connected with a cover plate that matches the adding port. However, in the above technology, it is mainly controlled by a group of pistons, so it is easy to produce uneven output during use. Therefore, the utility model proposes a quantitative dosing device for flocculant production to solve the problems existing in the prior art. Content of the Utility Model
[0004] In view of the above problems, the utility model proposes a quantitative dosing device for flocculant production. The quantitative dosing device for flocculant production mainly utilizes the mutual cooperation of an open loop, a spring rod group, and a hole plug, so that the potential energy of elastic deformation is combined with the output power of a hydraulic cylinder to drive the operation of the output end, and then drive the reciprocating movement of the piston piece, so that the pressure acts to input the object into the quantitative effect under the structure of the lower connecting pipe, the quantitative chamber, and the output nozzle, and can perform quantitative output, and ensure the constant discharge of the device during operation.
[0005] To achieve the purpose of the utility model, the utility model is realized through the following technical solutions: A quantitative dosing device for flocculant production includes a loading and feeding component and a quantitative output component. Stirring and mixing mechanisms sleeved with bolts are arranged on both ends of the loading and feeding component. A quantitative output component sleeved and installed is arranged at the output end of the loading and feeding component.
[0006] The quantitative output component includes a lower connecting pipe, a quantitative chamber, an output nozzle, an open loop, a spring rod group, a hole plug, a hydraulic cylinder and a piston piece. The lower connecting pipe is arranged at the output end of the loading and feeding component. The quantitative chamber for installing the output nozzle is arranged below the lower connecting pipe. The inner side of the lower connecting pipe is provided with an open loop. One side of the open loop is provided with a spring rod group, and one side of the spring rod group is provided with a hole plug. The inner side of the quantitative chamber is provided with a piston piece connecting to the output end of the hydraulic cylinder.
[0007] As a preferred embodiment of the present invention, the open loop has an annular structure, and the hole plug has a porous structure.
[0008] As a preferred embodiment of the present invention, the loading and feeding component includes a pressure reducing pad, a base plate, a support platform plate, a loading chamber, a feeding port, a control valve block, an opening and closing cover and a water inlet valve. The base plate is arranged on the top side of the pressure reducing pad, and the support platform plate is arranged above the base plate. Loading chambers are arranged above both ends of the support platform plate.
[0009] As a preferred embodiment of the present invention, a feeding port is arranged on the top side of the loading chamber. The inner side of the feeding port is provided with a control valve block installed in a sleeved manner. An opening and closing cover is arranged on the top side of the feeding port, and a water inlet valve is arranged on one side above the feeding port.
[0010] As a preferred embodiment of the present invention, the stirring and mixing mechanism includes end plates, a gearbox, a pulley group, a driving motor, a sleeve shaft seat, an output rod and stirring blades. The end plates are arranged at both ends of the loading chamber. The gearbox is arranged on the outer side of the end plates, and the pulley group connecting to the output end of the driving motor is arranged on the outer side of the gearbox.
[0011] As a preferred embodiment of the present invention, the sleeve shaft seat is arranged on the inner side of the end plates, the output rod is arranged on the inner side of the sleeve shaft seat, and the stirring blades are arranged on the side of the output rod.
[0012] The beneficial effects of the present invention are as follows:
[0013] The present invention mainly utilizes the mutual cooperation of the open loop, the spring rod group and the hole plug, so that the potential energy of elastic deformation is combined with the power output by the hydraulic cylinder to drive the operation of the output end, and then drive the reciprocating movement of the piston piece. Under the action of pressure, the object is input into the quantitative effect under the structure of the lower connecting pipe, the quantitative chamber and the output nozzle, and can be quantitatively output, ensuring the constant discharge of the equipment during the operation process. Description of the Drawings
[0014] Figure 1 It is a three-dimensional structural schematic diagram of the present invention;
[0015] Figure 2 It is a bottom-up three-dimensional structural schematic diagram of the present utility model;
[0016] Figure 3 It is a sectional three-dimensional structural schematic diagram of the present utility model;
[0017] Figure 4 It is a structural schematic diagram of the quantitative output component of the present utility model.
[0018] Wherein: 1. Loading and feeding assembly; 101. Pressure reducing pad; 102. Base plate; 103. Support table plate; 104. Loading cabin; 105. Feeding port; 106. Control valve block; 107. Opening and closing cover; 108. Water inlet valve; 2. Stirring and mixing mechanism; 201. End plate; 202. Gearbox; 203. Pulley group; 204. Driving motor; 205. Sleeve shaft seat; 206. Output rod; 207. Stirring blade; 3. Quantitative output component; 301. Lower connecting pipe; 302. Quantitative cabin; 303. Output nozzle; 304. Open loop; 305. Spring rod group; 306. Hole plug; 307. Hydraulic cylinder; 308. Piston piece. Specific embodiments
[0019] To deepen the understanding of the present utility model, the following will further elaborate on the present utility model in combination with embodiments. These embodiments are only used to explain the present utility model and do not constitute a limitation to the protection scope of the present utility model.
[0020] According to Figures 1-4 As shown, this embodiment proposes a quantitative dosing device for flocculant production, including a loading and feeding assembly 1 and a quantitative output component 3. Stirring and mixing mechanisms 2 are arranged on both ends of the loading and feeding assembly 1 in a bolt-socketed manner, and a quantitatively output component 3 is arranged at the output end of the loading and feeding assembly 1 in a socketed installation;
[0021] The quantitative output component 3 includes a lower connecting pipe 301, a quantitative cabin 302, an output nozzle 303, an open loop 304, a spring rod group 305, a hole plug 306, a hydraulic cylinder 307, and a piston piece 308. The lower connecting pipe 301 is arranged at the output end of the loading and feeding assembly 1. A quantitative cabin 302 for installing the output nozzle 303 is arranged below the lower connecting pipe 301. An open loop 304 is arranged on the inner side of the lower connecting pipe 301. A spring rod group 305 is arranged on one side of the open loop 304, and a hole plug 306 is arranged on one side of the spring rod group 305. A piston piece 308 connecting to the output end of the hydraulic cylinder 307 is arranged on the inner side of the quantitative cabin 302.
[0022] The open loop 304 has an annular structure, and the hole plug 306 has a porous structure.
[0023] In this embodiment, when processing is required, the hydraulic cylinder 307 is activated to output power to drive the output end to expand and contract. When the hydraulic cylinder 307 outputs power to drive the piston piece 308 to reciprocate, and then through the reciprocating movement of the piston piece 308 in the quantitative chamber 302, under the elastic deformation of the open loop 304, the spring rod group 305, and the orifice plug 306, with the mutual allocation of the lower connecting pipe 301, the quantitative chamber 302, and the output nozzle 303, the product in the bearing chamber 104 is input into the quantitative chamber 302 and then output through the output nozzle 303 to achieve the function of quantitative output.
[0024] The bearing and feeding assembly 1 includes a pressure reducing pad 101, a base plate 102, a support platform plate 103, a bearing chamber 104, a feeding port 105, a control valve block 106, an opening and closing cover 107, and a water inlet valve 108. The base plate 102 is arranged on the top side of the pressure reducing pad 101, and the support platform plate 103 is arranged above the base plate 102. The bearing chambers 104 are arranged above both ends of the support platform plate 103.
[0025] In this embodiment, first, the pressure reducing pad 101 and the base plate 102 are used to place the equipment at the processing site, and the support platform plate 103 and the bearing chamber 104 are used to achieve the effect of effective support and assembly.
[0026] The feeding port 105 is arranged on the top side of the bearing chamber 104, and the control valve block 106 is sleeved and installed on the inner side of the feeding port 105. The opening and closing cover 107 is arranged on the top side of the feeding port 105, and the water inlet valve 108 is arranged on one side above the feeding port 105.
[0027] In this embodiment, when raw materials need to be added, the opening and closing cover 107 is opened, and the raw materials are input into the feeding port 105. After the control valve block 106 is opened and in cooperation with the operation of the control valve block 106, the raw materials and water are input into the bearing chamber 104 below the feeding port 105 for storage.
[0028] The stirring and mixing mechanism 2 includes end plates 201, a gearbox 202, a pulley group 203, a driving motor 204, a sleeve shaft seat 205, an output rod 206, and stirring blades 207. The end plates 201 are arranged at both ends of the bearing chamber 104, the gearbox 202 is arranged on the outer side of the end plates 201, and the pulley group 203 connecting the output end of the driving motor 204 is arranged on the outer side of the gearbox 202.
[0029] In this embodiment, when the raw materials are fully loaded, the driving motor 204 outputs power to drive the output end to operate. After the driving motor 204 outputs power to drive the pulley group 203 for output transmission, the pulley group 203 drives the gearbox 202 to operate, and the gearbox 202 drives the output transmission of the gearbox 202 through operation.
[0030] On the inner side of the end plate 201, a sleeve shaft seat 205 is provided. On the inner side of the sleeve shaft seat 205, an output rod 206 is provided. On the side of the output rod 206, a stirring blade 207 is provided.
[0031] In this embodiment, when the transmission of the gearbox 202 drives the output, it can drive the sleeve shaft seat 205 connected to the output end to operate. After the sleeve shaft seat 205 operates, the output rod 206 and the stirring blade 207 can effectively stir and mix the raw materials and water to form medicine.
[0032] The working principle of the quantitative medicine adding device for flocculant production is as follows: First, the pressure reducing pad 101 and the base plate 102 are used to place the device at the processing site. Through the support table plate 103 and the bearing chamber 104, an effective support and assembly effect can be achieved. When raw materials need to be added, the opening and closing cover 107 is opened, and the raw materials are input into the feed port 105. After the control valve block 106 is opened and operates, the raw materials and water are input into the bearing chamber 104 below the feed port 105 for storage. When the bearing chamber 104 is full of raw materials, the driving motor 204 outputs power to drive the output end to operate. After the driving motor 204 outputs power to drive the pulley group 203 to perform output transmission, the pulley group 203 drives the gearbox 202 to operate. Through the operation of the gearbox 202, the output transmission of the gearbox 202 is driven. When the gearbox 202 outputs transmission, it can drive the sleeve shaft seat 205 connected to the output end to operate. After the sleeve shaft seat 205 operates, the output rod 206 and the stirring blade 207 can effectively stir and mix the raw materials and water to form medicine. When processing is required, the hydraulic cylinder 307 outputs power to drive the output end to perform telescopic operation. When the hydraulic cylinder 307 outputs power to drive the piston piece 308 to perform reciprocating operation, and then after the piston piece 308 reciprocates in the quantitative chamber 302, under the elastic deformation of the open loop 304, the spring rod group 305, and the hole plug 306, under the mutual cooperation of the lower connecting pipe 301, the quantitative chamber 302, and the output nozzle 303, the product in the bearing chamber 104 is input into the quantitative chamber 302 and then output through the output nozzle 303 to achieve the function of quantitative output.
[0033] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A quantitative dosing device for flocculant production, comprising a load-bearing feed component (1) and a quantitative output component (3), characterized in that: Bolt-sleeved stirring and mixing mechanisms (2) are provided at both ends of the load-bearing feed component (1), and a sleeve-mounted quantitative output component (3) is provided at the output end of the load-bearing feed component (1); The quantitative output component (3) comprises a lower connecting pipe (301), a quantitative chamber (302), an output nozzle (303), an open ring (304), a spring rod group (305), a hole plug (306), a hydraulic cylinder (307) and a piston plate (308); the lower connecting pipe (301) is arranged at the output end of the load-bearing feed component (1); a quantitative chamber (302) on which the output nozzle (303) is installed is arranged below the lower connecting pipe (301); an open ring (304) is arranged on the inner side of the lower connecting pipe (301); a spring rod group (305) is arranged on one side of the open ring (304); a hole plug (306) is arranged on one side of the spring rod group (305); and a piston plate (308) connected to the output end of the hydraulic cylinder (307) is arranged on the inner side of the quantitative chamber (302).
2. The quantitative dosing equipment for flocculant production according to claim 1, characterized in that: The open ring (304) has an annular structure, and the hole plug (306) has a porous structure.
3. The quantitative dosing equipment for flocculant production according to claim 1, characterized in that: The load-bearing feed assembly (1) comprises a pressure-reducing pad (101), a base plate (102), a support platform (103), a load-bearing cabin (104), a feed port (105), a control valve block (106), an opening and closing cover (107) and a water inlet valve (108); the base plate (102) is arranged on the top side of the pressure-reducing pad (101), the support platform (103) is arranged above the base plate (102), and the load-bearing cabins (104) are arranged above both ends of the support platform (103).
4. The quantitative dosing equipment for flocculant production according to claim 3, characterized in that: A feed port (105) is provided on the top side of the carrier cabin (104), and a control valve block (106) is provided on the inner side of the feed port (105) and is sleeve-mounted; an opening and closing cover (107) is provided on the top side of the feed port (105), and a water inlet valve (108) is provided on the upper side of the feed port (105).
5. The quantitative dosing equipment for flocculant production according to claim 3, characterized in that: The stirring and mixing mechanism (2) comprises an end plate (201), a gearbox (202), a pulley group (203), a driving motor (204), a sleeve seat (205), an output rod (206) and a stirring blade (207); the end plate (201) is arranged at both ends of the carrying cabin (104); the gearbox (202) is arranged on the outer side of the end plate (201); and the pulley group (203) connected to the output end of the driving motor (204) is arranged on the outer side of the gearbox (202).
6. The quantitative dosing equipment for flocculant production according to claim 5, characterized in that: A sleeve shaft seat (205) is arranged on the inner side of the end plate (201), an output rod (206) is arranged on the inner side of the sleeve shaft seat (205), and a stirring blade (207) is arranged on the side of the output rod (206).
Citation Information
Patent Citations
Quantitative dosing equipment for industrial wastewater flocculant
CN214765306U