High-pressure coarse separation tower

By designing positioning and disassembly components, the problem of complicated connection of the output pipeline of the high-pressure coarse separator is solved, realizing rapid connection and impurity filtration, and improving the convenience and sealing of the connection.

CN223602034UActive Publication Date: 2025-11-28ZHEJIANG HUAJIN NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423153743.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-28
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The existing high-pressure coarse separator has a complicated connection method between the output pipeline and the external pipeline, and the disassembly and assembly are easily affected by bolt damage.

Method used

It employs positioning and disassembly components, enabling quick connection and separation via positioning blocks and return springs. The combination of limiting posts and limiting grooves enhances the movement effect, while the use of filter screens and sealing strips achieves impurity filtration and sealing.

Benefits of technology

It enables rapid disassembly and assembly of the high-pressure coarse separator output pipeline and impurity filtration, improves the convenience and sealing of the connection, and avoids inconvenience caused by bolt damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of high-pressure coarse separation towers, and discloses a high-pressure coarse separation tower which comprises a high-pressure coarse separation tower and two connecting components, raw materials can be processed through the high-pressure coarse separation tower, the two connecting assemblies are rapidly connected with the first output pipeline and the second output pipeline respectively, the connecting pipelines are fixedly connected with the first output pipeline through the positioning assembly, and the connecting pipelines are separated from the first output pipeline through the disassembling assembly. The moving effect of two inclined blocks and a positioning block is improved through limiting columns, the moving effect of two movable blocks, two dismounting rods and two cylinders is improved through limiting grooves, impurities in liquid flowing in a connecting pipeline are filtered through a filter screen, a first clamping block and a second clamping block, and the connecting pipeline and an output pipeline are rapidly dismounted and mounted; impurities in the flowing liquid can be filtered and intercepted, and the problem that the connection mode of the output pipeline of the high-pressure coarse separation tower and the external pipeline is not convenient enough is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to high pressure rough fractionating tower technical field especially relates to a high pressure rough fractionating tower. BACKGROUND

[0002] High pressure rough fractionating tower is a kind of equipment applied in the petroleum exploitation, chemical industry etc., is mainly used to handle liquid raw material, and the different components in raw material are separated by heating and distillation etc.

[0003] The working principle of high pressure rough fractionating tower is relatively simple but efficient, raw material is preheated, enters the inside of high pressure rough fractionating tower, and the heating steam is constantly and evenly passed into the bottom of high pressure rough fractionating tower, due to the action of heating, liquid raw material changes into gas, and low boiling point and volatile impurities also become gaseous, along with the rising of gas, they will meet condenser at different heights in tower, thereby condense into liquid and separate out, the output pipeline of existing high pressure rough fractionating tower is connected with external pipeline in the process of using, thereby raw material is handled, the existing connecting mode is relatively cumbersome, and traditional fixed mode is often fastened and connected by multiple bolts, since it needs to be fixed by multiple bolts, when some bolts are damaged or slide, it will affect dismounting effect, the above-mentioned technology has the problems that: the connecting mode of the output pipeline of high pressure rough fractionating tower and external pipeline is not enough convenient. CONTENT OF UTILITY MODEL

[0004] In view of the problems in the prior art, the utility model provides a high pressure rough fractionating tower that can overcome the above problems or at least partially solve the above problems.

[0005] The utility model discloses a high pressure rough fractionating tower, including high pressure rough fractionating tower and two connecting components, the high pressure rough fractionating tower includes support, jar body, first output pipeline and second output pipeline, the top of support's surface is fixedly connected with jar body surface's bottom, the right side of first output pipeline is fixedly connected with the top of jar body left side, the right side of second output pipeline is fixedly connected with the bottom of jar body left side, two connecting components are arranged respectively in the left side of first output pipeline and second output pipeline, and the connecting component on the top includes connecting pipeline, connecting disc, two plug -in blocks, two mounting blocks and two fixed blocks, the right side of connecting pipeline is fixedly connected with the left side of connecting disc, the right side of connecting disc is pasted with the left side of first output pipeline, the right side of two plug -in blocks is fixedly connected with the top and bottom of first output pipeline left side respectively, the right side of two mounting blocks is fixedly connected with the front side and rear side of first output pipeline left side respectively, the surface of two plug -in blocks and two mounting blocks is all insertedly connected with the inside of connecting disc, the right side of two fixed blocks is fixedly connected with the front side and rear side of connecting disc left side respectively, the inside of fixed block is provided with cavity, and the inside of cavity is provided with positioning assembly and dismounting assembly,

[0006] The high pressure rough fractionating tower is used for treating raw materials.

[0007] Two connecting components are used for quickly connecting with first output pipeline and second output pipeline.

[0008] In order to make connecting pipeline and first output pipeline connect fixedly, preferably, the positioning assembly includes locating block, two reset springs and two inclined blocks, the surface of locating block and two inclined blocks is movably connected with the inside of cavity, the top and bottom of locating block are fixedly connected with the opposite end of two inclined blocks respectively, the rear side of two reset springs is fixedly connected with the front side of locating block, the front side of two reset springs is fixedly connected with the front side of cavity inner wall, the rear side of locating block penetrates fixed block and mounting block in proper order and extends to the inside of mounting block, and through positioning assembly, two reset springs all play the role of fixing and rebounding, after the rear side of locating block is inserted into the inside of fixed block and mounting block in proper order, locating block realizes the fixedness of connecting pipeline and first output pipeline through two reset springs.

[0009] In order to separate the connecting pipe and the first output pipe, preferably, the dismounting assembly comprises two dismounting rods, two movable blocks, two cylinders and two tension springs, the surfaces of the two dismounting rods, the two movable blocks and the two cylinders are movably connected with the inside of the cavity, the opposite ends of the two dismounting rods are fixedly connected with the opposite sides of the two movable blocks, the rear sides of the left sides of the two movable blocks are fixedly connected with the right sides of the two cylinders, the opposite ends of the two tension springs are fixedly connected with the opposite sides of the two movable blocks, the opposite sides of the two tension springs are fixedly connected with the top and bottom of the inner wall of the cavity, the surfaces of the two cylinders are attached to the surfaces of the opposite sides of the two inclined blocks, the positioning block can be moved out of the inside of the mounting block through the dismounting assembly, the two tension springs are used for fixing and rebounding, and the two dismounting rods, the two movable blocks and the two cylinders can automatically rebound to the original positions after use.

[0010] In order to improve the moving effect of the two inclined blocks and the positioning block, preferably, the inside of each of the two inclined blocks is slidably connected with a limiting column, and the front and rear sides of the two limiting columns are fixedly connected with the front and rear sides of the inner wall of the cavity; the two inclined blocks and the positioning block can only move in the forward or rearward direction through the two limiting columns, thereby limiting and maintaining the use effect.

[0011] In order to improve the moving effect of the two movable blocks, the two dismounting rods and the two cylinders, preferably, the front side of the surface of each of the two movable blocks is slidably connected with a limiting groove, and the limiting groove is arranged on the front side of the inner wall of the cavity; the two dismounting rods, the two movable blocks and the two cylinders can only move in the upward or downward vertical direction through the limiting groove, thereby maintaining the use effect.

[0012] In order to filter impurities in the liquid flowing in the connecting pipe, preferably, a filter screen is insertedly connected in the inside of the connecting pipe, a first clamping block is fixedly connected to the right side of the top of the filter screen, a second clamping block is fixedly connected to the right side of the top of the connecting pipe, and the right side of the first clamping block is fixedly connected with the left side of the second clamping block through bolts; after the filter screen is inserted into the inside of the connecting pipe, the filter screen intercepts the impurities after the liquid passes through the filter screen, and the filter screen is fixed in the inside of the connecting pipe through the first clamping block and the second clamping block through bolts.

[0013] In order to avoid the liquid flowing out from the connection between the connecting pipe and the filter screen, preferably, a sealing strip is sleeved on the top of the surface of the filter screen and attached, and the surface of the sealing strip is insertedly connected with the top of the inside of the connecting pipe and attached; the sealing strip plays a sealing and protecting role, and can avoid the liquid flowing out from the gap after the filter screen is inserted into the inside of the connecting pipe.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] The utility model discloses a high -pressure rough fractionating tower, support, jar body and first output pipeline etc. structure part are provided with, through high -pressure rough fractionating tower can handle raw material, two connecting assemblies are connected with first output pipeline and second output pipeline quick -witted respectively, and through positioning assembly makes connecting pipeline and first output pipeline connect fixed, through dismantling subassembly makes connecting pipeline and first output pipeline separate, through the movement effect of two inclined pieces and locating block of limiting post is improved, through the movement effect of two movable block, two dismantling rods and two cylinders of limiting groove is improved, through filter screen, first clamping piece and second clamping piece filter the impurity of flowing liquid in connecting pipeline, the use mode of two connecting assemblies is same, reached the effect that makes connecting pipeline and output pipeline quick assembly and disassembly, and can filter the impurity in flowing liquid. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the three-dimensional structure schematic diagram provided by the utility model embodiment;

[0017] Figure 2 It is the structure three-dimensional view of first output pipeline and connecting pipeline separation provided by the utility model embodiment;

[0018] Figure 3 It is the structure three-dimensional view of filter screen removal provided by the utility model embodiment;

[0019] Figure 4 It is the left view cutaway three-dimensional view of fixed block provided by the utility model embodiment;

[0020] Figure 5 It is the refinement three-dimensional view of partial structure provided by the utility model embodiment.

[0021] In the drawing: 1, high -pressure rough fractionating tower;101, support;102, jar body;103, first output pipeline;104, second output pipeline;2, connecting assembly;201, connecting pipeline;202, connecting disc;203, plug -in block;204, mounting block;205, fixed block;3, cavity;4, positioning assembly;401, locating block;402, return spring;403, inclined piece;5, dismantling subassembly;501, dismantling rod;502, movable block;503, cylinder;504, tension spring;6, limiting post;7, limiting groove;8, filter screen;9, first clamping piece;10, second clamping piece;11, sealing strip. DETAILED DESCRIPTION

[0022] In order to further understand the invention content, characteristics and efficacy of the utility model, the following examples are cited, and the following is described in detail with the help of the drawings.

[0023] The structure of the utility model is described in detail below in combination with the drawings.

[0024] As Figures 1 to 5As shown, the utility model discloses an embodiment provides a kind of high pressure rough fractionator, including high pressure rough fractionator 1 and two connecting components 2, high pressure rough fractionator 1 includes support 101, tank 102, first output pipeline 103 and second output pipeline 104, the top of the surface of support 101 is fixedly connected with the bottom of the surface of tank 102, the right side of first output pipeline 103 is fixedly communicated with the top of left side of tank 102, the right side of second output pipeline 104 is fixedly communicated with the bottom of left side of tank 102, two connecting components 2 are respectively arranged in the left side of first output pipeline 103 and second output pipeline 104, top connecting component 2 includes connecting pipeline 201, connecting disc 202, two plug-in blocks 203, two mounting blocks 204 and two fixed blocks 205, the right side of connecting pipeline 201 is fixedly communicated with the left side of connecting disc 202, the right side of connecting disc 202 is attached with the left side of first output pipeline 103, the right side of two plug-in blocks 203 is respectively fixedly connected with the top and bottom of left side of first output pipeline 103, the right side of two mounting blocks 204 is respectively fixedly connected with the front side and rear side of left side of first output pipeline 103, the surface of two plug-in blocks 203 and two mounting blocks 204 is all insertedly connected with the inside of connecting disc 202, the right side of two fixed blocks 205 is respectively fixedly connected with the front side and rear side of left side of connecting disc 202, the inside of fixed block 205 is provided with cavity 3, the inside of cavity 3 is provided with positioning component 4 and dismounting component 5;High pressure rough fractionator 1 is used to treat raw material;Two connecting components 2 are used to and first output pipeline 103 and second output pipeline 104 are quickly connected, to make connecting pipeline 201 connect fixed with first output pipeline 103, positioning component 4 includes positioning block 401, two reset springs 402 and two inclined blocks 403, the surface of positioning block 401 and two inclined blocks 403 is movably connected with the inside of cavity 3, the top and bottom of positioning block 401 are respectively fixedly connected with the opposite end of two inclined blocks 403, the rear side of two reset springs 402 is fixedly connected with the front side of positioning block 401, the front side of two reset springs 402 is fixedly connected with the front side of the inner wall of cavity 3, the rear side of positioning block 401 is in turn penetrated fixed block 205 and mounting block 204, and extends to the inside of mounting block 204, by positioning component 4, two reset springs 402 all play the role of fixed and rebound, after the rear side of positioning block 401 is in turn inserted into the inside of fixed block 205 and mounting block 204, positioning block 401 realizes connecting pipeline 201 with first output pipeline 103 fixed by two reset springs 402, to make connecting pipeline 201 separate with first output pipeline 103, dismounting component 5 includes two dismounting rods 501, two movable blocks 502, two cylinders 503 and two tension springs 504, the surface of two dismounting rods 501, two movable blocks 502 and two cylinders 503 is movably connected with the inside of cavity 3, the opposite end of two dismounting rods 501 is respectively fixedly connected with the opposite side of two movable blocks 502,The rear sides of the two movable blocks 502 on the left side are fixedly connected with the right sides of the two cylinders 503 respectively, the opposite sides of the two tension springs 504 are fixedly connected with the opposite sides of the two movable blocks 502 respectively, the opposite sides of the two tension springs 504 are fixedly connected with the top and bottom of the inner wall of the cavity 3 respectively, the surfaces of the two cylinders 503 are attached to the surfaces of the opposite sides of the two inclined blocks 403 respectively, the positioning block 401 can be removed from the inside of the mounting block 204 by disassembling the assembly 5, the two tension springs 504 both play the fixing and rebounding roles, so that the two disassembly rods 501, the two movable blocks 502 and the two cylinders 503 can automatically rebound to the original positions after use, in order to improve the moving effect of the two inclined blocks 403 and the positioning block 401, the inside of each of the two inclined blocks 403 is slidably connected with a limiting column 6, the front and back sides of the two limiting columns 6 are fixedly connected with the front and back sides of the inner wall of the cavity 3 respectively, the two inclined blocks 403 and the positioning block 401 can only move in the forward or backward directions through the two limiting columns 6, so that the limiting effect is achieved and the use effect is maintained, in order to improve the moving effect of the two movable blocks 502, the two disassembly rods 501 and the two cylinders 503, the front side of the surface of each of the two movable blocks 502 is slidably connected with a limiting groove 7, the limiting groove 7 is arranged on the front side of the inner wall of the cavity 3, the two disassembly rods 501, the two movable blocks 502 and the two cylinders 503 can only move in the upward or downward vertical directions through the limiting groove 7, so that the use effect is maintained, in order to filter impurities in the liquid flowing in the connecting pipeline 201, the filter screen 8 is inserted into the inside of the connecting pipeline 201, the first clamping block 9 is fixedly connected to the right side of the top of the filter screen 8, the second clamping block 10 is fixedly connected to the right side of the top of the connecting pipeline 201, the right side of the first clamping block 9 is fixedly connected with the left side of the second clamping block 10 through bolts, the filter screen 8 is fixed in the inside of the connecting pipeline 201 through the first clamping block 9 and the second clamping block 10 fixed through bolts, in order to avoid the liquid flowing out from the connecting position of the connecting pipeline 201 and the filter screen 8, the sealing strip 11 is sleeved on the top of the surface of the filter screen 8 and is attached, the surface of the sealing strip 11 is insertedly connected with the top of the inside of the connecting pipeline 201 and is attached, the sealing and protection effects are achieved through the sealing strip 11, so that the liquid can not flow out from the gap after the filter screen 8 is inserted into the inside of the connecting pipeline 201.

[0025] The working principle of the utility model:

[0026] When it is needed to separate the connecting pipe 201 from the first output pipe 103, the two dismounting rods 501 are manually pushed to move towards the opposite end, and the two movable blocks 502 and the two cylinders 503 are moved, in the moving process, the two cylinders 503 extrude the two inclined blocks 403, so that the two inclined blocks 403 drive the positioning block 401 to move forward, and the positioning block 401 is moved out from the inside of the mounting block 204, at this time, the connecting pipe 201 and the connecting disc 202 can be moved to the left and are out of contact with the mounting block 204, the plug-in block 203 and the first output pipe 103, when it is needed to connect the connecting pipe 201 with the first output pipe 103, the connecting disc 202 is plug-in connected with the mounting block 204 and the plug-in block 203, and is attached to the first output pipe 103, the movement of the two movable blocks 502 makes the two tension springs 504 deform and release the two dismounting rods 501, under the elastic action of the two tension springs 504, the two movable blocks 502, the two dismounting rods 501 and the two cylinders 503 are bounced back to the original position, the movement of the positioning block 401 makes the two reset springs 402 deform and release the two dismounting rods 501, at the same time, the positioning block 401 is bounced back to the inside of the mounting block 204 through the two reset springs 402, and the two inclined blocks 403 are bounced back to the original position, the connecting pipe 201 and the first output pipe 103 are fixed, the bolts fixed by the first clamping block 9 and the second clamping block 10 are removed, then the filter screen 8 can be moved upwards and is moved out from the inside of the connecting pipe 201, and the filter screen 8 is removed and cleaned.

[0027] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action without necessarily requiring or implying that there is any such relationship or order between such entities or actions. Also, the terms "comprises", "comprising", or any other variation thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0028] The above only describes preferred embodiments of the present application and is not intended to limit the present application in any form. Although the present application has been disclosed as above with reference to the preferred embodiments, it is not intended to limit the present application, and any person skilled in the art can make modifications without departing from the technical solution of the present application.

Claims

1. A high pressure split column comprising a high pressure split column (1) and two connection assemblies (2), characterized in that: The high-pressure rough fractionating tower (1) comprises a support (101), a tank body (102), a first output pipeline (103) and a second output pipeline (104), the top of the surface of the support (101) is fixedly connected with the bottom of the surface of the tank body (102), the right side of the first output pipeline (103) is fixedly communicated with the top of the left side of the tank body (102), the right side of the second output pipeline (104) is fixedly communicated with the bottom of the left side of the tank body (102), two connecting assemblies (2) are arranged on the left sides of the first output pipeline (103) and the second output pipeline (104) respectively, the connecting assembly (2) on the top comprises a connecting pipeline (201), a connecting disc (202), two plug-in blocks (203), two mounting blocks (204) and two fixing blocks (205), the right side of the connecting pipeline (201) is fixedly communicated with the left side of the connecting disc (202), the right side of the connecting disc (202) is attached to the left side of the first output pipeline (103), the right sides of the two plug-in blocks (203) are fixedly connected with the top and the bottom of the left side of the first output pipeline (103) respectively, the right sides of the two mounting blocks (204) are fixedly connected with the front side and the rear side of the left side of the first output pipeline (103) respectively, the surfaces of the two plug-in blocks (203) and the two mounting blocks (204) are plug-in connected with the inner part of the connecting disc (202), the right sides of the two fixing blocks (205) are fixedly connected with the front side and the rear side of the left side of the connecting disc (202) respectively, the inner part of the fixing block (205) is provided with a cavity (3), and the inner part of the cavity (3) is provided with a positioning assembly (4) and a dismounting assembly (5). The high-pressure rough fractionating tower (1) is used for treating raw materials. The two connecting assemblies (2) are used for quickly connecting with the first output pipeline (103) and the second output pipeline (104).

2. A high pressure coarse column according to claim 1, characterized in that: The positioning assembly (4) comprises a positioning block (401), two reset springs (402) and two inclined blocks (403), the surfaces of the positioning block (401) and the two inclined blocks (403) are movably connected with the inner part of the cavity (3), the top and the bottom of the positioning block (401) are fixedly connected with the opposite ends of the two inclined blocks (403) respectively, the rear sides of the two reset springs (402) are fixedly connected with the front side of the positioning block (401), the front sides of the two reset springs (402) are fixedly connected with the front side of the inner wall of the cavity (3), and the rear side of the positioning block (401) penetrates through the fixing block (205) and the mounting block (204) in sequence and extends into the inner part of the mounting block (204).

3. A high pressure coarse column according to claim 2, characterized in that: Said dismounting component (5) comprises two dismounting rods (501), two movable blocks (502), two cylinders (503) and two tension springs (504), the surfaces of two said dismounting rods (501), two said movable blocks (502) and two said cylinders (503) are movably connected with the inside of the cavity (3), the opposite ends of two said dismounting rods (501) are fixedly connected with the opposite sides of two said movable blocks (502), respectively, the back sides of the left sides of two said movable blocks (502) are fixedly connected with the right sides of two said cylinders (503), respectively, the opposite ends of two said tension springs (504) are fixedly connected with the opposite sides of two said movable blocks (502), respectively, the opposite sides of two said tension springs (504) are fixedly connected with the top and bottom of the inner wall of the cavity (3), respectively, and the surfaces of two said cylinders (503) are attached to the surfaces of the opposite sides of two said inclined blocks (403), respectively.

4. A high pressure coarse column according to claim 2, characterized in that: The inside of two said inclined blocks (403) is slidably connected with a limiting column (6), and the front and back sides of two said limiting columns (6) are fixedly connected with the front and back sides of the inner wall of the cavity (3), respectively.

5. A high pressure coarse column according to claim 3, characterized in that: The front side of the surface of two said movable blocks (502) is slidably connected with a limiting groove (7), and the limiting groove (7) is arranged on the front side of the inner wall of the cavity (3).

6. A high pressure coarse column according to claim 1, characterized in that: The inside of the connecting pipeline (201) is insertedly connected with a filter screen (8), the top right side of the surface of the filter screen (8) is fixedly connected with a first clamping block (9), the top right side of the connecting pipeline (201) is fixedly connected with a second clamping block (10), and the right side of the first clamping block (9) is fixedly connected with the left side of the second clamping block (10) through bolts.

7. A high pressure coarse column according to claim 6, characterized in that: The top of the surface of the filter screen (8) is sleeved with a sealing strip (11), and is attached, the surface of the sealing strip (11) is insertedly connected with the top of the inside of the connecting pipeline (201), and is attached.