Ball passing type finished oil gathering pipe
By designing a ball-type finished oil collection pipe, flexible connections between multiple sources and destinations are achieved, solving the problems of difficult connection and fixation and removal of residual liquid in traditional devices, and improving the flexibility and safety of finished oil transportation.
Patent Information
- Application Number
- CN202520619324.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Traditional refined oil conveying devices have relatively fixed connections between multiple sources and multiple destinations, making it difficult to adjust flexibly. Furthermore, the ability to remove residual liquid from pipelines is poor, which can easily lead to the risk of cross-contamination and excessively long adjustment time for conveying routes.
A ball-type finished oil manifold was designed, which adopts a combination structure of multiple inlet pipes, outlet pipes, three-way valves and connecting pipes. The rotation of the three-way valve can realize arbitrary combination connection of multiple sources and destinations, and the sealing performance is ensured by connecting flanges and sealing rings. Residual liquid is removed in conjunction with the cleaning ball.
It enables flexible connection of multiple sources and destinations, improves the flexibility and efficiency of the transportation path, reduces the risk of liquid residue and cross-contamination, and ensures the stability and safety of the transportation process.
Smart Images

Figure CN223953854U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of oil manifold technology, and more specifically, it relates to a ball-type finished oil manifold. Background Technology
[0002] The refined oil conveying and distribution system is a key piece of equipment that enables directional fluid transport through a pipeline network. It connects the source and destination through pre-set pipeline connections and is widely used in fluid transport scenarios in petrochemical, food processing, and chemical industries. However, traditional equipment structures are mostly statically laid out with fixed valve switching logic, making it difficult to achieve various combinations of connections between multiple sources and multiple destinations. When it is necessary to switch transport paths, it is not possible to freely pair any source with any destination, resulting in excessively long transport path adjustments and reducing the transport capacity of traditional equipment. In addition, when cleaning residual liquid in the pipeline, fluid stagnation zones are easily formed at the valve-pipeline connection points, increasing the difficulty of cleaning and increasing the risk of cross-contamination between different oil products, thus affecting the consistency of product quality of traditional equipment. Utility Model Content
[0003] To address the aforementioned technical problems, this utility model provides a ball-type finished oil collection pipe, which solves the technical problems in the prior art where the connection between multiple sources and multiple destinations in traditional devices is relatively fixed and the ability to remove residual liquid from pipelines is poor.
[0004] The purpose and function of this utility model's ball-type finished oil manifold are achieved by the following specific technical means:
[0005] A ball-type finished oil manifold includes a base, a support frame on top of the base, a manifold assembly on the support frame, and a manifold assembly including multiple sets of inlet pipes, multiple sets of outlet pipes on one side of the multiple sets of inlet pipes, multiple sets of three-way valves between the multiple sets of outlet pipes and the multiple sets of inlet pipes, and multiple sets of connecting pipes between the multiple sets of three-way valves and the multiple sets of outlet pipes and the multiple sets of inlet pipes.
[0006] According to a preferred embodiment, multiple sets of the inlet pipes are disposed at one end of the support frame, and the multiple sets of the inlet pipes are arranged in a vertical sequence.
[0007] According to a preferred embodiment, multiple sets of the outlet pipes are all disposed on one side of the support frame, and the multiple sets of the outlet pipes are arranged in a horizontal sequence.
[0008] According to a preferred embodiment, multiple sets of the three-way valves are all disposed on the support frame, and the multiple sets of the three-way valves are respectively located at the intersection of multiple sets of inlet pipes and multiple sets of outlet pipes.
[0009] According to a preferred mode, a plurality of groups of the three-way valves are arranged in a matrix, and the plurality of groups of the three-way valves are connected with the plurality of groups of the inlet pipelines and the plurality of groups of the outlet pipelines through the plurality of groups of the connecting pipelines.
[0010] According to a preferred mode, a valve core is arranged in each of the plurality of groups of the three-way valves, and the valve core is rotatably connected with the three-way valve.
[0011] According to a preferred mode, a connecting flange is detachably connected at one end of each of the plurality of groups of the inlet pipelines and the plurality of groups of the outlet pipelines, and a sealing ring is arranged at one end of the connecting flange.
[0012] According to a preferred mode, the base is arranged on a horizontal plane, the base is higher than the horizontal plane, the support frame adopts a cuboid frame structure, and the top area of the base is greater than the bottom area of the support frame.
[0013] Compared with the prior art, the utility model has the advantages of the following beneficial effects:
[0014] 1、The utility model discloses a plurality of groups of three-way valves are arranged, so that the user can combine the plurality of groups of inlet pipelines and the plurality of groups of outlet pipelines arbitrarily, the user can communicate the plurality of groups of external sources and the plurality of groups of external destinations through the rotation of the valve core, realize the simultaneous communication of the plurality of groups of inlet pipelines and the plurality of groups of outlet pipelines with the plurality of groups of connecting pipelines, so that the user can flexibly cope with different conveying requirements, improve the connection flexibility and conveying efficiency of the device.
[0015] 2、When using the device, the user can change the three-way valve connection state through the switching of the valve core, so that the user does not interfere with each other when conveying different liquids, so that the device can make the sweeping ball not jammed from beginning to end when cleaning the pipeline, reduce the liquid residue in the pipeline, improve the compatibility of the device for coping with various liquid conveying tasks, then, through the connecting flange and the sealing ring, the device can ensure the sealing performance during operation, the liquid does not contact the outside world, avoids the pollution and leakage of the liquid, improves the reliability and safety of the device, and guarantees the stability of the conveying process. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the front view structure schematic drawing of the utility model;
[0017] Figure 2 It is the first side view structure schematic drawing of the utility model;
[0018] Figure 3 It is the second side view structure schematic drawing of the utility model;
[0019] Figure 4 It is the top view structure schematic drawing of the utility model;
[0020] Figure 5 is the utility model Figure 2 A region structure schematic diagram.
[0021] In the drawing, the corresponding relationship of component name and drawing number is:
[0022] 11, base; 12, support frame; 101, inlet pipeline; 102, outlet pipeline; 103, three-way valve; 104, connecting pipeline; 105, connecting flange; 106, sealing ring. DETAILED DESCRIPTION
[0023] The embodiment of the utility model will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the technical scheme of the utility model, but cannot be used to limit the protection scope of the utility model.
[0024] Embodiment:
[0025] As Figures 1 to 5 indicated, the utility model provides a ball-passing type finished product oil gathering pipe, including base 11, through the setting of base 11, can provide stable support base for the device, so that the user can place the device in the required position, base 11 top is provided with support frame 12, support frame 12 is provided with manifold assembly, manifold assembly includes multiple sets of inlet pipeline 101, through the setting of support frame 12, can bear manifold assembly, provides reliable mounting architecture for manifold assembly, so that the user can conveniently install manifold assembly, improves the convenience of the device structure construction, multiple sets of inlet pipeline 101 are all set up in support frame 12 one end, multiple sets of inlet pipeline 101 are sequentially arranged in vertical direction, can orderly integrate multiple liquid input sources, so that the user can clearly, orderly connect the liquid input pipeline of different sources, improves the management efficiency of multiple source liquid input of the device, facilitates the centralized control and deployment of the user.
[0026] Multiple sets of outlet pipeline 102 are provided on one side of multiple sets of inlet pipeline 101, multiple sets of outlet pipeline 102 are all set up in support frame 12 one side, multiple sets of outlet pipeline 102 are sequentially arranged in horizontal direction, through the structure, can provide multiple orderly channels for liquid output, so that the user can plan to transport different sources of liquid to multiple destinations, improves the rationality and convenience of the device liquid transport planning, multiple sets of three-way valve 103 are respectively arranged between multiple sets of outlet pipeline 102 and multiple sets of inlet pipeline 101, the user can adjust the flow direction of liquid through three-way valve 103, so that the device can realize the diversified connection combination between multiple sets of inlet pipeline 101 and multiple sets of outlet pipeline 102, improves the flexibility of the device in the selection of liquid transport path, improves the ability of the user to control the liquid transport path according to actual demand.
[0027] The plurality of three-way valves 103 are arranged on the support frame 12, and are respectively located at intersection points of the plurality of inlet pipelines 101 and the plurality of outlet pipelines 102. Through this structure, the user can control the communication state between the inlet pipeline 101 and the outlet pipeline 102, so that the user can flexibly determine the flow direction of the liquid of different inlets to which group of outlet pipelines 102, thereby improving the accuracy of the device in controlling the liquid conveying path. The plurality of three-way valves 103 are each provided with a valve core, and the plurality of valve cores are rotatably connected with the three-way valve 103. The user can change the conduction direction of the three-way valve 103 by rotating the valve core, so that the device can realize a plurality of different connection modes to meet a variety of liquid conveying needs and improve the adaptability of the device to diversified conveying tasks.
[0028] The plurality of three-way valves 103 are arranged in a matrix. Through this structure, the orderly connection and efficient allocation between the plurality of inlet pipelines 101 and the plurality of outlet pipelines 102 can be realized in a limited space, so that the user can more clearly understand and operate the entire manifold system, thereby improving the rationality of the pipeline connection layout of the device. The plurality of three-way valves 103 and the plurality of outlet pipelines 102 and the plurality of inlet pipelines 101 are respectively provided with a plurality of connection pipelines 104. When conveying different liquids needs to be switched, the user can use the structure in cooperation with the wire sweeping ball, so that the wire sweeping ball can pass smoothly, ensuring that there is no liquid residue in the pipeline, thereby avoiding pollution and leakage of the liquid.
[0029] The plurality of three-way valves 103 are connected with the plurality of inlet pipelines 101 and the plurality of outlet pipelines 102 through the plurality of connection pipelines 104. The plurality of connection pipelines 104 ensure smooth flow of the liquid between parts. The user can control the three-way valve 103 according to actual production changes, and realize arbitrary combination communication of a plurality of sources and a plurality of destinations through the three-way valve 103 based on the connection pipeline 104, thereby realizing flexible conveying of the liquid.
[0030] One end of the plurality of inlet pipelines 101 and the plurality of outlet pipelines 102 is detachably connected with a connection flange 105. Through the arrangement of the connection flange 105, a convenient and standardized way for connection between pipelines can be provided, so that the user can quickly and conveniently connect or detach different pipeline assemblies, thereby improving the operability of the device. One end of the plurality of connection flanges 105 is provided with a sealing ring 106. Through the arrangement of the sealing ring 106, leakage of the liquid at the pipeline connection can be effectively prevented, so that the device can ensure the sealing property during the liquid conveying process, thereby improving the reliability of the device during the liquid conveying process and avoiding waste and environmental pollution caused by liquid leakage.
[0031] The base 11 is arranged on the horizontal plane, and the base 11 is higher than the horizontal plane, which can effectively reduce the damage caused by ground water stains, sundries and other factors to the device, reduce the erosion of the ground environment to the bottom components of the device, improve the protection performance of the device, the support frame 12 adopts a cuboid frame structure, which can provide a regular and stable support space for the device, making it more convenient for users to install and arrange the device, improving the rationality and orderliness of the internal structure layout of the device, and the top area of the base 11 is larger than the bottom area of the support frame 12, which can provide a bearing base for the support frame 12, so that the whole device can maintain good stability during operation, improving the stability of the device in different working environments and ensuring the stable operation of the device.
[0032] The specific use mode and effect of the embodiment are as follows:
[0033] In actual application scenarios, such as finished oil delivery and distribution, the device is put into use, first, based on the field layout and use demand, the base 11 is placed at a suitable position higher than the horizontal plane, the base 11 ensures that the device can be stably placed, the support frame 12 provides a regular and reliable mounting structure, a plurality of inlet pipelines 101 can be connected to different liquid input sources such as finished oil storage tanks, improving the management efficiency of multi-source liquid input, a plurality of inlet pipelines 101 can be connected to different liquid output destinations such as filling lines, and the user can transport liquid in the inlet pipeline 101 to the corresponding inlet pipeline 101, realize planned liquid output, improve the rationality and convenience of liquid output planning, and the user can change the conduction direction of the three-way valve 103 by rotating the valve core in the three-way valve 103 according to the demand, easily realize the connection combination between the plurality of inlet pipelines 101 and the plurality of outlet pipelines 102, which makes the device can flexibly cope with different delivery tasks, realize the simultaneous connection of multiple pipelines, and the multiple connection pipelines 104 ensure the smooth flow of liquid between parts, the user can control the three-way valve 103 according to the actual production change, realize the arbitrary combination connection of multiple sources and multiple destinations based on the connection pipeline 104 through the three-way valve 103, so as to realize the flexible delivery of liquid, the connecting flange 105 provides a convenient and standardized dismounting mode, and the sealing ring 106 ensures the sealing property of the liquid delivery process, when different liquids need to be switched, the three-way valve 103, the inlet pipeline 101, the outlet pipeline 102 and the connection pipeline 104 are arranged in a switchable cross structure, so that the sweep ball can pass through smoothly, and the liquid in the pipeline is not left, avoiding the pollution and leakage of the liquid.
[0034] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and it is obvious for those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments.
Claims
1. A pigging-type finished product gathering pipeline, characterized by; The utility model relates to a kind of manifold assemblies, including base (11), the top of the base (11) is provided with support frame (12), the support frame (12) is provided with manifold assembly, the manifold assembly includes multiple groups of inlet pipeline (101), multiple groups of the inlet pipeline (101) are provided with multiple groups of outlet pipeline (102) on one side, multiple groups of the outlet pipeline (102) and multiple groups of the inlet pipeline (101) between respectively are provided with multiple groups of three-way valve (103), multiple groups of the three-way valve (103) and multiple groups of the outlet pipeline (102) and multiple groups of the inlet pipeline (101) between respectively are provided with multiple groups of connecting pipeline (104).
2. The pig launch and receive flowline of claim 1, wherein: Multiple groups of the inlet pipeline (101) are arranged at one end of the support frame (12), and multiple groups of the inlet pipeline (101) are arranged in vertical direction in sequence.
3. The pig launch and receive flowline of claim 2, wherein: Multiple groups of the outlet pipeline (102) are arranged at one side of the support frame (12), and multiple groups of the outlet pipeline (102) are arranged in horizontal direction in sequence.
4. A pig launch and receive flowline according to claim 2 or 3, characterised in that: Multiple groups of the three-way valve (103) are arranged on the support frame (12), and multiple groups of the three-way valve (103) are respectively located at the intersection of multiple groups of the inlet pipeline (101) and multiple groups of the outlet pipeline (102).
5. The pig launch and receive flowline of claim 4, wherein: Multiple groups of the three-way valve (103) are arranged in matrix, and multiple groups of the three-way valve (103) are connected with multiple groups of the inlet pipeline (101) and multiple groups of the outlet pipeline (102) through multiple groups of the connecting pipeline (104).
6. The pig launch and receive piping of claim 1, wherein: Multiple groups of the three-way valve (103) are arranged in matrix, and multiple groups of the three-way valve (103) are connected with multiple groups of the inlet pipeline (101) and multiple groups of the outlet pipeline (102) through multiple groups of the connecting pipeline (104).
7. The pig launch and receive flowline of claim 6, wherein: Multiple groups of the three-way valve (103) are provided with valve core, and multiple groups of the valve core are rotatably connected with the three-way valve (103).
8. The pig launch and receive piping of claim 1, wherein: Multiple groups of the inlet pipeline (101) and multiple groups of the outlet pipeline (102) are detachably connected with connecting flange (105) at one end, and multiple groups of the connecting flange (105) are provided with sealing ring (106) at one end. The base (11) is arranged on horizontal plane, the base (11) is higher than the horizontal plane, the support frame (12) adopts cuboid frame structure, and the top area of the base (11) is greater than the bottom area of the support frame (12).