Protective type liquid rapid diluter
By using the top cover and balance plate to disperse the rotating rod in the liquid rapid diluter, combined with the design of electromagnetic valve and purification tank to remove impurities, the problems of uneven stirring and sedimentation of high-viscosity liquids are solved, the equipment life is extended and the dilution effect is improved.
Patent Information
- Application Number
- CN202422619733.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-29
AI Technical Summary
When existing liquid rapid diluters process liquids with high viscosity or high volatility, mixed impurities are easily attached, resulting in uneven stirring and sedimentation, which shortens the service life of the equipment.
The top cover and balance plate are used to respectively support and install the first rotating rod and the second rotating rod. The flow is controlled by the electromagnetic valve. The purification tank is used to pre-purify the liquid. The disassembly ring and disassembly bolts are used for local disassembly and maintenance. The liquid is diverted and added, and impurities are removed to avoid precipitation and improve the dilution effect.
It achieves uniform stirring of high-viscosity or volatile liquids, extends the service life of the equipment, improves the dilution effect and ensures safety protection performance.
Smart Images

Figure CN223404764U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of diluters, in particular to a protective liquid rapid diluter. Background Art
[0002] Liquid rapid diluter is an instrument used to rapidly dilute liquid samples. It is widely used in disease control, food safety, agriculture, environmental protection, pharmaceuticals, and chemical industries.
[0003] By setting up components such as motors and stirring rods, the device can quickly stir and dilute protective liquids such as cutting fluids. Usually, single-axis stirring is used for mixing and stirring operations. Since high-viscosity liquids or liquids with high volatility in pipeline transportation fluids are prone to mixed impurities, which adhere to the stirring rack, causing uneven stirring and sedimentation, which affects the service life of the entire equipment.
[0004] Therefore, in view of the above, since high-viscosity liquids or liquids with high volatility in pipeline transportation are prone to produce mixed impurities, which adhere to the stirring frame, causing uneven stirring and sedimentation, a protective liquid rapid diluter can be designed. Utility Model Content
[0005] In order to overcome the problem that high viscosity liquid or volatile liquid in pipeline transportation is prone to produce mixed impurities, which adhere to the stirring frame, causing uneven stirring and sedimentation, thus affecting the service life of the entire equipment.
[0006] The technical solution of the utility model is: a protective liquid rapid diluter, comprising a dilution tank, a balancing plate, a bracket, a discharge pipe, a first feeding pipe, a second feeding pipe, an electromagnetic valve and a top cover; the top and bottom of the dilution tank are respectively integrally formed with a top cover and a balancing plate for reinforcement and protection, a plurality of groups of brackets for supporting stable protection are circumferentially provided on the bottom edge of the balancing plate, a discharge pipe for discharging is provided at the bottom center of the balancing plate, a first feeding pipe for filling liquid is provided at the top offset of the top cover, a second feeding pipe for diverting the filling liquid is connected to the outer side of the upper end of the dilution tank, and electromagnetic valves for reducing water impact to form a protective control flow are provided in the center of the discharge pipe, the first feeding pipe and the second feeding pipe.
[0007] Preferably, the top cover and the balance plate are used to respectively support and install the first rotating rod and the second rotating rod, so as to avoid concentrated installation on the dilution tank, form a dispersed force, and increase the overall reinforcement and protection effect. The first feeding pipe and the second feeding pipe can be used to divert the filling liquid. The electromagnetic valve is located in the center of the discharge pipe, the first feeding pipe and the second feeding pipe, which can be used to reduce the impact of the water liquid to form a protective control flow. The purification tank can be used to pre-purify the water liquid to remove impurities to avoid excessive precipitation and damage to the overall structure. The disassembly ring and disassembly bolts can be used for local disassembly and maintenance to improve the overall dilution effect.
[0008] Preferably, two groups of rotating rods are symmetrically provided on the balancing plate with the discharge pipe as the center, and multiple groups of first stirring frames are arranged in a circular manner from bottom to top on the rotating rods. A first servo drive motor is provided at the bottom of the rotating rods, and the first servo drive motor drives the rotating rods to drive the first stirring frames to rotate.
[0009] Preferably, a sieve plate is provided at the top center of the discharge pipe, a plurality of sieve holes are provided on the surface of the sieve plate in an annular direction, the surface of the sieve plate is covered with a one-way filter membrane for downward flow of liquid, and a meter is provided at the center of the electromagnetic valve.
[0010] Preferably, a purification tank is provided at the center bottom of the top cover, a disassembly ring corresponding to the disassembly of the purification tank is provided on the top cover, and a disassembly bolt is circumferentially provided on the disassembly ring.
[0011] Preferably, a plurality of groups of liquid flow holes are provided in a circumferential direction from bottom to top on the top of the purification tank, a steering rod passing through the top cover is provided in the center of the purification tank, a plurality of groups of second stirring frames are provided in a circumferential direction from bottom to top on the outer end of the steering rod, a second servo drive motor is provided on the top of the steering rod, and the second servo drive motor drives the steering rod to drive the second stirring frame to rotate.
[0012] Preferably, a rotating disk is provided at the bottom center of the purification tank, a plurality of groups of curved baffles corresponding to the liquid flow holes are provided around the outer end of the rotating disk, and a battery pack is provided at the center of the rotating disk.
[0013] Preferably, a signaler is electrically provided at the bottom of the battery pack, a built-in antenna is electrically provided at the outer end of the signaler, sealing strips are symmetrically covered on both sides of the curved baffle edge, the battery pack drives the rotating disk to drive the curved baffle to rotate, and an angle sensor is provided between the rotating disk and the battery pack.
[0014] Beneficial effects of the utility model:
[0015] 1. According to the previous single-axis stirring for mixing and stirring operations, due to the high viscosity liquid or the liquid with high volatility in the pipeline transmission liquid, it is easy to produce mixed impurities, which adhere to the stirring frame, making it unevenly stirred and causing sedimentation, affecting the service life of the entire equipment. What is different is that the top cover and the balance plate are used to respectively carry and install the first rotating rod and the second rotating rod, avoiding centralized installation on the dilution tank, forming a force dispersion, and increasing the overall reinforcement and protection effect. The first feeding pipe and the second feeding pipe can be used to divert the filling liquid. The electromagnetic valve is located in the center of the discharge pipe, the first feeding pipe and the second feeding pipe, which can be used to reduce the impact of the water liquid to form a protective control flow. The purification tank can be used to pre-purify the water liquid to remove impurities to avoid excessive precipitation and damage to the overall structure. The disassembly ring and disassembly bolts can be used for local disassembly and maintenance to improve the overall dilution effect and ensure the overall safety and protection performance. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the overall structure of the diluter of the present utility model;
[0017] Figure 2 Shown is a schematic diagram of the diluter balancing disk structure of the present utility model;
[0018] Figure 3 Shown is a schematic diagram of the structure of the diluter meter of the present utility model;
[0019] Figure 4 Shown is a schematic diagram of the explosion structure of the diluter purification tank of the utility model;
[0020] Figure 5 Shown is a schematic diagram of the curved baffle structure of the diluter of the present invention.
[0021] Explanation of the accompanying drawings: 1. Dilution tank; 2. Balance plate; 3. Bracket; 4. Discharge pipe; 5. First feeding pipe; 6. Second feeding pipe; 7. Solenoid valve; 8. Top cover; 201. Rotating rod; 202. First stirring frame; 203. First servo drive motor; 401. Sieve plate; 402. One-way filter membrane; 701. Meter; 801. Disassembly ring; 802. Second servo drive motor; 803. Disassembly bolt; 804. Purification tank; 805. Liquid flow hole; 806. Steering rod; 807. Second stirring frame; 808. Rotating disk; 809. Built-in antenna; 810. Battery pack; 811. Curved baffle; 812. Sealing strip. DETAILED DESCRIPTION
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] See also Figure 1-Figure 5The utility model provides an embodiment: a protective liquid rapid diluter, comprising a dilution tank 1, a balancing plate 2, a bracket 3, a discharge pipe 4, a first feeding pipe 5, a second feeding pipe 6, an electromagnetic valve 7 and a top cover 8; the top and bottom of the dilution tank 1 are respectively integrally formed with a top cover 8 and a balancing plate 2 for reinforcement and protection, a plurality of groups of brackets 3 for supporting stable protection are circumferentially provided on the bottom edge of the balancing plate 2, a discharge pipe 4 for discharging is provided at the bottom center of the balancing plate 2, a first feeding pipe 5 for filling liquid is provided at the top offset of the top cover 8, a second feeding pipe 6 for diverting the filling liquid is connected to the outer side of the upper end of the dilution tank 1, and an electromagnetic valve 7 for reducing the impact of water to form a protective control flow is provided in the center of the discharge pipe 4, the first feeding pipe 5 and the second feeding pipe 6.
[0024] See also Figure 2-Figure 3 In this embodiment, two groups of rotating rods 201 are symmetrically provided on the balancing plate 2 with the discharge pipe 4 as the center. The rotating rods 201 are circumferentially provided with multiple groups of first stirring frames 202 from bottom to top. A first servo drive motor 203 is provided at the bottom of the rotating rod 201. The first servo drive motor 203 drives the rotating rod 201 to drive the first stirring frame 202 to rotate. A sieve plate 401 is provided at the top center of the discharge pipe 4. Multiple groups of sieve holes are circumferentially provided on the surface of the sieve plate 401. The surface of the sieve plate 401 is covered with a one-way filter membrane 402 for downward liquid flow. A meter 701 is provided at the center of the electromagnetic valve 7.
[0025] See also Figure 3-Figure 4 In this embodiment, a purification tank 804 is provided at the center bottom of the top cover 8, and a disassembly ring 801 corresponding to the disassembly of the purification tank 804 is provided on the top cover 8. A disassembly bolt 803 is circumferentially provided on the disassembly ring 801. A plurality of liquid flow holes 805 are circumferentially provided on the top of the purification tank 804 from bottom to top. A steering rod 806 passing through the top cover 8 is provided in the center of the purification tank 804. A plurality of second stirring frames 807 are circumferentially provided on the outer end of the steering rod 806 from bottom to top. A second servo drive motor 802 is provided on the top of the steering rod 806. The second servo drive motor 802 drives the steering rod 806 to drive the second stirring frame 807 to rotate.
[0026] See also Figure 4-Figure 5In this embodiment, a rotating disk 808 is provided at the bottom center of the purification tank 804. Multiple groups of curved baffles 811 corresponding to the liquid flow holes 805 are circumferentially provided at the outer end of the rotating disk 808. A battery pack 810 is provided at the center of the rotating disk 808. A signal device is electrically provided at the bottom of the battery pack 810. A built-in antenna 809 is electrically provided at the outer end of the signal device. The built-in antenna 809 model is pRRU5936. Sealing strips 812 are symmetrically covered on both sides of the curved baffle 811. The battery pack 810 drives the rotating disk 808 to rotate the curved baffle 811. An angle sensor is provided between the rotating disk 808 and the battery pack 810. The angle sensor model is SCA610-CA1H1G.
[0027] During operation, materials are added respectively through the first feeding pipe 5 and the second feeding pipe 6, the electromagnetic valve 7 is opened, and the meter 701 controls the inflow. Part of the liquid enters the purification tank 804, and part of the liquid enters the dilution tank 1. The first servo drive motor 203 drives the rotating rod 201 to drive the first stirring frame 202 to rotate to mix and stir the solution. Synchronously, the second servo drive motor 802 drives the steering rod 806 to drive the second stirring frame 807 to rotate. When stirring for a certain time, the built-in antenna 809 receives the signal and transmits the signal. The battery pack 810 drives the rotating disk 808 to drive the curved baffle 811 to rotate, and the control angle sensor gradually deflects so that the liquid inside the purification tank 804 enters the dilution tank 1 from small to large amounts through the liquid flow hole 805 in sequence. Both sides are in a rotating state, which can better dilute and fuse, avoid internal precipitation adhesion, and finally be discharged through the discharge pipe 4.
[0028] Through the above steps, the top cover 8 and the balance plate 2 are used to respectively support and install the first rotating rod 201 and the second rotating rod 201, avoiding centralized installation on the dilution tank 1, forming a dispersed force, and increasing the overall reinforcement and protection effect. The first feeding pipe 5 and the second feeding pipe 6 can be used to divert the filling liquid. The electromagnetic valve 7 is located at the center of the discharge pipe 4, the first feeding pipe 5 and the second feeding pipe 6, which can be used to reduce the impact of the water to form a protective control flow. The purification tank 804 can be used to pre-purify the water to remove impurities to avoid excessive precipitation and damage to the overall structure. The disassembly ring 801 and the disassembly bolt 803 can be used for local disassembly and maintenance to improve the overall dilution effect and ensure the overall safety and protection performance.
Claims
1. A protective liquid rapid diluter, comprising a dilution tank (1); characterized in that: The invention also includes a balancing plate (2), a bracket (3), a discharge pipe (4), a first feeding pipe (5), a second feeding pipe (6), an electromagnetic valve (7) and a top cover (8); the top and bottom of the dilution tank (1) are respectively integrally formed with a top cover (8) and a balancing plate (2) for reinforcement and protection, a plurality of brackets (3) for supporting and stabilizing protection are provided in a circumferential direction on the bottom edge of the balancing plate (2), a discharge pipe (4) for discharging is provided in the center of the bottom of the balancing plate (2), a first feeding pipe (5) for filling liquid is provided in a biased manner on the top of the top cover (8), a second feeding pipe (6) for diverting the filling liquid is provided on the outer side of the upper end of the dilution tank (1), and the centers of the discharge pipe (4), the first feeding pipe (5) and the second feeding pipe (6) are all provided with an electromagnetic valve (7) for reducing the impact of water to form a protective control flow.
2. The protective liquid rapid diluter according to claim 1, characterized in that: Two groups of rotating rods (201) are symmetrically provided on the balancing plate (2) with the discharge pipe (4) as the center. The rotating rods (201) are provided with a plurality of groups of first stirring racks (202) in a circular manner from bottom to top. A first servo drive motor (203) is provided at the bottom of the rotating rods (201). The first servo drive motor (203) drives the rotating rods (201) to drive the first stirring racks (202) to rotate.
3. The protective liquid rapid diluter according to claim 1, characterized in that: A sieve plate (401) is provided at the top center of the discharge pipe (4). A plurality of sieve holes are provided on the surface of the sieve plate (401) in a circumferential direction. The surface of the sieve plate (401) is covered with a one-way filter membrane (402) for downward flow of liquid. A meter (701) is provided at the center of the electromagnetic valve (7).
4. The protective liquid rapid diluter according to claim 1, characterized in that: A purification tank (804) is provided at the center bottom of the top cover (8), a disassembly ring (801) corresponding to the disassembly of the purification tank (804) is provided on the top cover (8), and a disassembly bolt (803) is provided in an annular direction on the disassembly ring (801).
5. The protective liquid rapid diluter according to claim 4, characterized in that: The purification tank (804) is provided with a plurality of groups of liquid flow holes (805) in a circumferential direction from bottom to top. A steering rod (806) passing through the top cover (8) is provided in the center of the purification tank (804). The outer end of the steering rod (806) is provided with a plurality of groups of second stirring frames (807) in a circumferential direction from bottom to top. A second servo drive motor (802) is provided on the top of the steering rod (806). The second servo drive motor (802) drives the steering rod (806) to drive the second stirring frame (807) to rotate.
6. The protective liquid rapid diluter according to claim 5, characterized in that: A rotating disk (808) is provided at the bottom center of the purification tank (804), and multiple groups of curved baffles (811) corresponding to the liquid flow holes (805) are provided in an annular direction at the outer end of the rotating disk (808). A battery pack (810) is provided at the center of the rotating disk (808).
7. The protective liquid rapid diluter according to claim 6, characterized in that: The bottom of the battery pack (810) is electrically provided with a signal device, and the outer end of the signal device is electrically provided with a built-in antenna (809). The edges of both sides of the curved baffle (811) are symmetrically covered with sealing strips (812). The battery pack (810) drives the rotating disk (808) to drive the curved baffle (811) to rotate, and an angle sensor is provided between the rotating disk and the battery pack (810).