Solution shunting mechanism of liquid tank
Through the design of the main structure, including the combination of the main pipe, the diversion seat and the sealing nut, the problems of complex assembly and difficult maintenance of existing liquid tank solution diversion mechanisms are solved, and precise flow and flow control are achieved, which is suitable for the solution diversion needs of chemical production and laboratories.
Patent Information
- Application Number
- CN202520126173.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing liquid tank solution distribution mechanisms are complex to assemble and difficult to maintain, making it difficult to meet the needs for precise distribution in chemical production and laboratories.
A liquid tank solution distribution mechanism was designed, which includes a main structure and adopts a combination structure of main pipe, distribution seat, sealing nut and distribution pipe. The precise distribution and stable connection of solution are achieved through main connection port, distribution hole and sealing gasket.
It achieves precise solution splitting and stable connection, enhancing the versatility and convenience of the device, and is suitable for fluid transport and distribution in various application scenarios.
Smart Images

Figure CN223635684U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a shunting mechanism technical field, especially a solution shunting mechanism of liquid tank. BACKGROUND
[0002] In many industrial and laboratory applications, the solution in the liquid tank often needs to be shunted according to a certain proportion or demand. In chemical production, multiple raw material solutions need to be accurately shunted before mixing. In the laboratory, the accurate shunting of reagent solutions is crucial to the accuracy of experimental results.
[0003] A solution shunting mechanism of a liquid tank can refer to the utility model patent with the patent number CN211245548U. It discloses a solution shunting mechanism of a liquid evaporation tank, which belongs to the field of evaporators. To solve the problem of poor shunting effect of the existing evaporation tank liquid in the prior art, an opening is provided inside the liquid evaporation tank. A shunting plate is installed on one side of the inside of the liquid evaporation tank. A fixed sleeve is installed on one side of the shunting plate. A first shunting pipe is installed on one side of the fixed sleeve. A second shunting pipe is installed below the first shunting pipe. A third shunting pipe is installed below the second shunting pipe. A fourth shunting pipe is installed below the third shunting pipe. A confluence plate is installed at one end of the first, second, third, and fourth shunting pipes. Connection plates are installed at the lower end and both sides of the confluence plate. Connection sleeve pipes are installed outside the connection plates. A confluence pipe is installed at one end of the connection pipe. A four-way pipe is installed at the other end of the connection pipe.
[0004] However, during actual use, it was found that although the above device can shunt the solution, the device assembly is complex and difficult to maintain. Therefore, the present application provides a solution shunting mechanism of a liquid tank to meet the needs. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is to provide a solution shunting mechanism of a liquid tank to solve the problem of complex device assembly and difficult maintenance.
[0006] To solve the above technical problems, the utility model provides the following technical scheme:
[0007] A solution shunting mechanism of a liquid tank, comprising: a main body structure, the main body structure comprising a main pipe, connection holes being formed on the upper and lower end faces of the main pipe, an installation seat being fixedly arranged on the upper end face of the main pipe, an installation hole being formed on the edge position of the upper end face of the installation seat, a second sealing nut being threadedly connected to the inner surface of the installation hole, a second shunting pipe being fixedly connected to the edge position of the inner wall of the second sealing nut, a shunting structure being fixedly arranged on the lower end face of the main pipe, the shunting structure comprising a shunting seat.
[0008] The main pipe is fixedly provided with a main connecting port on one side, and sealing pads are clamped on the other side of the connecting holes.
[0009] The other side of the main pipe is fixedly provided with a first sealing nut, and the other side of the first sealing nut is fixedly provided with a first shunt pipe.
[0010] The shunt seat is provided with a shunt hole at the edge of the lower end surface on both sides, and connecting bolts are threadedly connected on both sides of the shunt seat.
[0011] The lower end surface of the shunt seat is threadedly connected with a third sealing nut on one side, and the third sealing nut is fixedly connected with a third shunt pipe on the other side.
[0012] The lower end surface of the shunt seat is threadedly connected with a fourth sealing nut on the other side, and the fourth sealing nut is fixedly connected with a fourth shunt pipe on the other side.
[0013] The connecting bolts are threadedly connected with mounting seats on the outer surface edges.
[0014] Compared with the prior art, the utility model has at least the following beneficial effects:
[0015] 1. In the above-mentioned scheme, the shunt hole provided at the edge of the lower end surface of the shunt seat provides a clear channel for the shunting of the solution, and the structural design of the shunt seat can shunt the solution flowing into the main pipe into the third shunt pipe and the fourth shunt pipe according to the predetermined proportion or requirement. This shunting design can play an important role in many application scenarios, and can accurately shunt raw materials with different components in chemical production or distribute according to different flow directions or flow requirements in a fluid conveying system.
[0016] 2. In the above-mentioned scheme, the main connecting port on one side of the main pipe provides a universal interface for the connection of the main pipe with other devices or pipelines, so that the whole structure can be conveniently connected to different systems, connected with other devices according to actual requirements, and the universality of the whole structure is enhanced. The main pipe can be connected with different input sources or output devices according to different production processes or experimental requirements, so as to realize the combination and expansion of multiple functions. DRAWINGS
[0017] The drawings incorporated herein and forming part of the specification show embodiments of the present disclosure and, together with the specification, further serve to explain the principles of the present disclosure and to enable one skilled in the relevant art to practice and use the same.
[0018] Figure 1 The three-dimensional structure of the solution shunting mechanism of the liquid tank is shown in the figure.
[0019] Figure 2Another perspective view of the solution shunting mechanism for liquid tank;
[0020] Figure 3 Connection structure of the solution shunting mechanism for liquid tank;
[0021] Figure 4 Another perspective view of the connection structure of the solution shunting mechanism for liquid tank;
[0022] Figure 5 Main structure of the solution shunting mechanism for liquid tank;
[0023] Figure 6 Another perspective view of the main structure of the solution shunting mechanism for liquid tank.
[0024] [Reference signs]
[0025] 1, main structure; 101, main pipe; 102, connecting hole; 103, main connecting port; 104, first sealing nut; 105, first shunting pipe; 106, sealing gasket; 2, mounting seat; 3, second sealing nut; 4, second shunting pipe; 5, shunting structure; 501, shunting seat; 502, third sealing nut; 503, third shunting pipe; 504, fourth sealing nut; 505, fourth shunting pipe; 506, shunting hole; 6, connecting bolt; 7, mounting hole.
[0026] As shown in the drawings, in order to clearly realize the structure of the embodiments of the present application, specific structures and devices are marked in the drawings, but this is only for the need of illustration, and is not intended to limit the present application in the specific structure, device and environment, according to the specific needs, the ordinary skilled in the art can adjust or modify these devices and environment, the adjustment or modification still includes in the scope of the appended claims. DETAILED DESCRIPTION
[0027] The solution shunting mechanism for liquid tank provided by the present application will be described in detail below in combination with the drawings and specific embodiments. It should be noted that, in order to make the embodiments more detailed, the following embodiments are the best and preferred embodiments, and other alternative ways can also be adopted by some skilled in the art; and the drawings are only used to describe the embodiments in more detail, and are not intended to limit the present application specifically.
[0028] As Figures 1 to 6As shown, the utility model discloses a liquid tank's solution shunt mechanism, including: main body structure 1, main body structure 1 includes main pipe 101, and the upper and lower both ends of main pipe 101 are provided with connecting hole 102, and the upper end of main pipe 101 is fixedly provided with mounting seat 2, and the upper end of mounting seat 2 is provided with mounting hole 7 at the edge position, and the inner surface of mounting hole 7 is threadedly connected with second sealing nut 3, and the inner wall edge position of second sealing nut 3 is fixedly connected with second shunt pipe 4, and the lower end of main pipe 101 is fixedly provided with shunt structure 5, and shunt structure 5 includes shunt seat 501, and main pipe 101 is the main component of main body structure 1, plays the core support and connecting effect, and the existence of connecting hole 102 is to facilitate the connection of main pipe 101 with other components, realizes shunt effect, and mounting seat 2 provides the platform for the installation of other components and is equivalent to an intermediate connecting piece, links main pipe 101 with other components that need to be installed on the upper side of main pipe 101, and mounting hole 7 has a specific function, and second sealing nut 3 is convenient to disassemble and install, and second shunt pipe 4 is connected with mounting seat 2 through second sealing nut 3, which not only ensures the sealing of the connection, but also can stably install second shunt pipe 4 on mounting seat 2, so that specific fluid transmission is realized, and the existence of shunt structure 5 is to carry out shunt operation to the liquid through main pipe 101, and shunt seat 501 is used to realize the shunt of solution.
[0029] As Figure 5 And Figure 6 shown, one side of main pipe 101 is fixedly provided with main connecting port 103, and the other side of connecting hole 102 is fixedly provided with sealing gasket 106, and main connecting port 103 is used for connecting liquid tank, and sealing gasket 106 is used for enhancing the sealing property.
[0030] As Figure 5 And Figure 6 shown, the other side of main pipe 101 is fixedly provided with first sealing nut 104, and the other side of first sealing nut 104 is fixedly provided with first shunt pipe 105, and first sealing nut 104 is used for connecting first shunt pipe 105 with main pipe 101, and first shunt pipe 105 is used for shunt.
[0031] As Figure 2 And Figure 4 shown, shunt seat 501 is provided with shunt hole 506 at the lower end of both sides of the edge, and the both sides of shunt seat 501 are threadedly connected with connecting bolt 6, and shunt hole 506 is used for the shunt of shunt seat 501. Connecting bolt 6 is used for fixing the position of shunt seat 501.
[0032] As Figure 2 And Figure 4As shown, a third sealing nut 502 is threadedly connected to one side of the lower end face of the flow divider 501, and a third flow divider pipe 503 is fixedly connected to the other side of the third sealing nut 502. The third sealing nut 502 is used to connect the third flow divider pipe 503 to the flow divider 501, and the third flow divider pipe 503 is also used for flow division.
[0033] like Figure 2 and Figure 4 As shown, a fourth sealing nut 504 is threadedly connected to the other side of the lower end face of the flow divider 501. A fourth flow divider pipe 505 is fixedly connected to the other side of the fourth sealing nut 504. The fourth sealing nut 504 is used to connect the fourth flow divider pipe 505 and the flow divider 501. The fourth flow divider pipe 505 is also used for flow division.
[0034] like Figure 1 and Figure 2 As shown, a mounting base 2 is threadedly connected to the outer edge of the connecting bolt 6, and the mounting base 2 is fixedly connected to the diverter seat 501 by the connecting bolt 6.
[0035] The technical solution provided by this utility model, during operation, allows the solution to enter the main pipe 101 from the main connection port 103 on one side. A portion of the solution entering the main pipe 101 flows out through the first diversion pipe 105, depending on the connection status at the first sealing nut 104 and the overall system's requirements for solution flow direction. The other portion of the solution flows downwards to the diversion structure 5. In the diversion seat 501, the solution flows to the diversion holes 506 on both sides according to the internal structure of the diversion seat 501. Through the diversion holes 506, the solution enters the third diversion pipe 503 and the fourth diversion pipe 505 respectively, achieving solution diversion. Throughout the entire operation, the sealing gasket 106 ensures the seal at the connection hole 102, the second sealing nut 3, the third sealing nut 502, and the fourth sealing nut 504 ensure the sealing of the pipe connection at their respective connection points to prevent solution leakage, the connecting bolt 6 stabilizes the connection between the diversion seat 501 and the mounting seat 2, the first sealing nut 104 ensures the stability of the connection between the first diversion pipe 105 and the main pipe 101, and the second sealing nut 3 ensures the stability of the connection between the second diversion pipe 4 and the mounting seat 2, so that the entire device can maintain the structural integrity and stability during operation, and ensure that the solution flows and diverts according to the predetermined path.
[0036] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A solution diversion mechanism for a liquid tank, characterized by, Include: The main body structure (1), the main pipe (101) is provided with connecting hole (102) on both ends, the mounting seat (2) is fixedly arranged on the upper end surface of the main pipe (101), the mounting hole (7) is arranged on the upper end surface edge position of the mounting seat (2), the second sealing nut (3) is screwed on the inner surface of the mounting hole (7), the second shunt pipe (4) is fixedly connected on the inner wall edge position of the second sealing nut (3), the shunt structure (5) is fixedly arranged on the lower end surface of the main pipe (101), the shunt structure (5) includes shunt seat (501).
2. The solution diversion mechanism of a liquid tank according to claim 1, characterized by, The main pipe (101) is fixedly provided with main connecting port (103) on one side, and the connecting hole (102) is provided with sealing gasket (106) on the other side.
3. The solution diversion mechanism of a liquid tank according to claim 1, wherein, The first sealing nut (104) is fixedly arranged on the other side of the main pipe (101), and the first shunt pipe (105) is fixedly arranged on the other side of the first sealing nut (104).
4. The solution diversion mechanism of a liquid tank according to claim 1, wherein The shunt seat (501) is provided with shunt hole (506) on both sides of the lower end surface edge, and the connecting bolt (6) is screwed on both sides of the shunt seat (501).
5. The solution diversion mechanism of a liquid tank according to claim 1, wherein The third sealing nut (502) is screwed on one side of the lower end surface of the shunt seat (501), and the third shunt pipe (503) is fixedly connected on the other side of the third sealing nut (502).
6. The solution diversion mechanism of a liquid tank according to claim 1, wherein, The fourth sealing nut (504) is screwed on the other side of the lower end surface of the shunt seat (501), and the fourth shunt pipe (505) is fixedly connected on the other side of the fourth sealing nut (504).
7. The solution diversion mechanism of a liquid tank according to claim 4, wherein The mounting seat (2) is screwed on the outer surface edge position of the connecting bolt (6).
Citation Information
Patent Citations
Solution distribution mechanism of liquid evaporation tank
CN211245548U