CN217714563U - Gas-liquid double-phase joint connecting assembly - Google Patents
Gas-liquid double-phase joint connecting assembly Download PDFInfo
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- CN217714563U CN217714563U CN202221896263.1U CN202221896263U CN217714563U CN 217714563 U CN217714563 U CN 217714563U CN 202221896263 U CN202221896263 U CN 202221896263U CN 217714563 U CN217714563 U CN 217714563U
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Abstract
The utility model discloses a gas-liquid dual-phase joint connecting component, which is characterized in that a first horizontal rotating connector is respectively arranged on every two adjacent national fixed seats on a fixed pile for realizing the horizontal rotating connection of a liquid joint assembly and a gas joint assembly, so that the liquid joint assembly and the gas joint assembly can respectively swing around the fixed pile integrally, and the integral folding is convenient; the liquid joint assembly is provided with a plurality of flat rotary connecting joints and vertical rotary joints which are mixed and connected with a tail end liquid control valve; a tail end steering joint is arranged between the tail end valve and the bent pipe arranged at the tail end; the structure not only realizes the folding and extension of the liquid joint assembly and the gas joint assembly, but also realizes the connection of the tail end and the interface on the tank body in vertical and horizontal states, thereby avoiding the stress concentration caused by the folding of the pipeline; this device is connected with terminal conveyer pipe and pressure measurement on the terminal gas control valve door of gaseous state joint assembly and is used for testing air feed pressure, prevents to damage because of the booster or the joint that the pressure caused greatly.
Description
Technical Field
The utility model relates to a discharge apparatus technical field, concretely relates to gas-liquid double phase connects coupling assembling.
Background
In the liquid chlorine field of carrying, after delivery vehicle reachd the mill, can adopt piecing devices to carry to jar internal, for convenient to jar internal connection, generally can set up beta structure's the pipeline assembly of unloading on the platform of unloading, but the problem that meets at present is: 1. the existing discharging assembly is fixed and dispersed, and because the space of a discharging platform is narrow, the pipeline joint needs to be fixed in the smallest occupied space; 2. the existing pipeline structure is generally provided with a plurality of horizontal rotating seats, which can realize folding and swinging within a certain range, but the existing structure only has a horizontal extension function and does not have a vertical turnover function, so that stress can be generated on a connecting pipeline when the pipeline structure is connected and used, and the pipeline structure is unfavorable for a conveying pipeline when high-pressure gas is supplied; 3. the existing joint connecting pipeline is mostly used synchronously by gas and liquid, the principle is that high-pressure gas is conveyed into the automobile tank to push out liquid chlorine, but when a liquid outlet is not smooth due to faults in the conveying tank or due to sundries, the pipeline joint is cracked due to continuous high-pressure gas supply, and the operation safety is seriously affected.
Aiming at the defects in the prior art, the existing joint connecting assembly is very necessary to be improved, various using defects of the existing connecting assembly are overcome, and safe and efficient chlorine gas transfer is realized.
Disclosure of Invention
Reference and the shortcoming on the prior art, the utility model aims to provide a gas-liquid double phase connects coupling assembling, it sets up a plurality of levels, vertical rotary joint through the inside cooperation at the connecting tube and combines together, sets up gaseous phase section detection device simultaneously, prevents the various potential safety hazards that atmospheric pressure too high brought.
A gas-liquid two-phase joint connecting component comprises a fixed pile, wherein a liquid joint assembly and a gas joint assembly are arranged on the fixed pile; the gaseous joint assembly is arranged at the upper part; the fixing pile is provided with a plurality of fixing seats, and every two adjacent national fixing seats are respectively provided with a first horizontal rotating connector for realizing horizontal rotating connection of the liquid joint assembly and the gas joint assembly;
the liquid joint assembly is provided with a first extension pipe connected with a first horizontal rotary joint, the first extension pipe is provided with a bent pipe, the bent pipe is connected with a second horizontal rotary joint, the upper part of the second horizontal rotary joint is connected with a first vertical rotary joint through the bent pipe, the rear side of the first vertical rotary joint is provided with a second extension pipe, the tail end of the second extension pipe is connected with the bent pipe through a second vertical rotary joint, and the rear side of the bent pipe is connected with a tail end liquid control valve; a tail end steering joint is arranged between the tail end valve and the bent pipe arranged at the tail end;
the structure of the gas-state joint assembly is the same as that of the front section of the liquid-state joint assembly, and the difference is that a tail end gas control valve is arranged on the rear side of the tail end steering joint, the tail end gas control valve is connected with a tail end conveying pipe, and the tail end conveying pipe is connected with a pressure detection device.
The front side of the tail end gas control valve is provided with a tail end bent pipe, and the tail end bent pipe is used for realizing the steering connection of the tail end gas control valve.
An auxiliary cylinder assembly is arranged between the second extension pipe and the first horizontal rotating joint and used for assisting force application when the whole system at the rear side of the second extension pipe swings.
And a reinforcing plate is arranged between the first extension pipe and the rotating shaft pipeline on the fixed seat.
The utility model has the advantages that: the utility model adopts the above structure arrangement, it realizes the folding of liquid joint assembly and gaseous state joint assembly through the spud pile and fixes, is provided with two fixing bases on the spud pile, through every two adjacent country's fixed seats respectively set up the first horizontal rotation connector and be used for realizing liquid joint assembly and gaseous state joint assembly horizontal rotation and connect, above structure can make liquid joint assembly and gaseous state joint assembly wholly swing around the spud pile respectively, convenient whole folding; the liquid joint assembly is provided with a plurality of horizontal rotary connecting joints and vertical rotary joints which are mixed and connected with a tail end liquid control valve; a tail end steering joint is arranged between the tail end valve and the bent pipe arranged at the tail end; the structure not only realizes the folding and extension of the liquid joint assembly and the gas joint assembly, but also realizes the connection of the tail end and the interface on the tank body in the vertical and horizontal states, avoids the stress concentration caused by the folding of the pipeline and effectively prevents the pipeline from being damaged; moreover, this device is connected with the terminal conveyer pipe on the terminal gas control valve of gaseous state joint assembly, is connected with pressure measurement on the terminal conveyer pipe and is used for testing air feed pressure, prevents to explode the pipe or the joint damage because of too big causing of pressure.
Drawings
The structure of the device of the present invention will be further described with reference to the accompanying drawings.
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of the structure of the present invention;
FIG. 3 is a perspective view of a fluid connector assembly;
FIG. 4 is a schematic perspective view of a gas joint assembly;
1. the device comprises a fixed pile, 11, a fixed seat, 12, a fixed support, 13, an external liquid guide pipe, 14, a first horizontal rotary connector, 15, an external air guide pipe, 2, a liquid joint assembly, 21, a rotating shaft pipeline, 22, a first extension pipe, 23, a reinforcing plate, 24, a second horizontal rotary joint, 25, connecting sections I, 26, a first bent pipe, 27, connecting sections II, 28, a first horizontal rotary joint, 29, a second extension pipe, 30, a second horizontal rotary joint, 31, connecting sections III, 32, connecting sections VI, 33, a tail end steering joint, 34, a tail end liquid control valve, 35, a tail end bent pipe, 36, a tail end gas control valve, 4, an auxiliary cylinder assembly, 41, an auxiliary cylinder base, 42, a cylinder body, 43, a driving end, 5, a tail end conveying pipe, 51 and a pressure detection device.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings.
The gas-liquid two-phase joint connecting assembly comprises a fixing pile 1, four fixing seats 11 are arranged on the fixing pile 2, every two fixing seats 11 are used as a group, a rotating shaft pipeline 21 is arranged between every two fixing seats, a first horizontal rotating connector 14 is arranged on the rotating shaft pipeline 21, and the liquid joint assembly 2 and the gas joint assembly 3 can be fixed through the structure arrangement; in order to be convenient to install and fix, the gas joint assembly 3 is arranged at the upper part of the liquid joint assembly 2; the device is used for realizing the horizontal rotary connection of the liquid joint assembly 2 and the gas joint assembly 3 through the first horizontal rotary connector 14;
liquid joint assembly 2 and gaseous joint assembly 3 structure similar, below through to liquid joint assembly 2 explain in detail to this understanding liquid joint assembly 2 and gaseous joint assembly 3's theory of operation.
The liquid joint assembly 2 is provided with a first extension pipe 22 connected with a rotating shaft pipeline 21, and the rotating shaft pipeline 21 is connected with the first horizontal rotary connector 14 to realize in-situ rotation. The utility model discloses a set up the bended-arc structure on the first extension pipe 22, its bended-arc rear side and second horizontal swivel joint 24 are connected fixedly, second horizontal swivel joint 24 rear side is connected with linkage section I25, linkage section I25 and first return bend 26 are connected, linkage section II 27 is connected to first return bend 26 rear side, linkage section II 27 and first horizontal swivel joint 28 are connected, second extension pipe 29 is connected to first horizontal swivel joint 28 rear side, the rear side of second extension pipe 29 is second horizontal swivel joint 30, the rear side of second horizontal swivel joint 30 is linkage section III 31, linkage section III 31 passes through right angle bending and is connected with linkage section VI 32 and end steering joint 33, through above connection structure after, still be connected with terminal liquid control valve 34 on end steering joint 33, the utility model discloses a after the above structural connection, it can realize terminal liquid control valve 34 and adjust between level, vertical, its usage is realized with the connection of top or lateral part liquid outlet, liquid joint assembly 2 still is connected with outside catheter 13 in the bottom of pivot pipeline 21, it can realize the tank car of liquid chlorine liquid guide outside. The structure not only realizes the integral telescopic folding (in the vertical and horizontal directions) of the liquid joint assembly 2, but also can realize the 360-degree steering of the tail end liquid control valve 34 to match with the tank car for installation and fixation, thereby avoiding the local stress caused by the bending of the pipeline and reducing the use risk of the pipeline.
The structure of the gas joint assembly 3 is the same as the structure of the front section of the liquid joint assembly 2, and the difference and improvement points are as follows: be provided with terminal return bend 35 at terminal steering joint 33's rear side, terminal return bend 35 connects terminal air control valve 36, terminal air control valve 36 on be connected with terminal conveyer pipe 5, terminal conveyer pipe 5 on be connected with pressure measurement device 51, the purpose that this part set up is under the air feed state, if because of in the conveyer tank trouble or because of debris lead to the liquid outlet circulation when not smooth, high-pressure gas's pressure value can be detected by pressure measurement device 51, this device can also be connected alarm device and realize pressure alarm, avoids the high pressure to lead to pipeline joint department to appear bursting apart the risk.
Furthermore, under the advantage of the above structure, the device further provides an auxiliary cylinder assembly 4 between the second extension pipe 29 and the first horizontal rotary joint 28 in the liquid joint assembly 2 and the gas joint assembly 3, respectively, the auxiliary cylinder assembly 4 is provided with an auxiliary cylinder base 41 through the second extension pipe 29, the cylinder body 42 is hinged through the auxiliary cylinder base 41, and the force application end of the cylinder body 42 is connected with the first horizontal rotary joint 28.
In order to improve the strength, a reinforcing plate 23 is arranged between the first extension pipe 22 in the liquid joint assembly 2 and the rotating shaft pipeline 21 on the fixed seat in the gas joint assembly 3 for reinforcing.
In conclusion, the utility model improves the whole structure, realizes 360-degree adjustment of the operation port on the basis of the existing device, and is suitable for connection of various direction interfaces on the tank body; the gas-liquid double-phase joint connecting component overcomes potential safety hazards caused by overhigh gas phase pressure and is an ideal gas-liquid double-phase joint connecting component.
Claims (4)
1. A gas-liquid two-phase joint connecting component comprises a fixed pile, wherein a liquid joint assembly and a gas joint assembly are arranged on the fixed pile; the method is characterized in that: two first horizontal rotating connectors are arranged on the fixed pile and are respectively used for realizing the horizontal rotating connection of the liquid joint assembly and the gas joint assembly;
the rear side of a first extension pipe on the liquid joint assembly is connected with a first horizontal rotating joint, a second horizontal rotating joint, an elbow pipe, a first vertical rotating joint, a second extension pipe and a second vertical rotating joint, and the rear side of the elbow pipe is connected with a tail end liquid control valve; a tail end steering joint is arranged between the tail end valve and the bent pipe arranged at the tail end;
the gas joint assembly is based on the structure of the liquid joint assembly, a tail end gas control valve is arranged on the rear side of the tail end steering joint, a tail end conveying pipe is connected to the tail end gas control valve, and a pressure detection device is connected to the tail end conveying pipe.
2. A gas-liquid two-phase joint connection assembly according to claim 1, wherein: the front side of the tail end gas control valve is provided with a tail end bent pipe, and the tail end bent pipe is connected with the tail end gas control valve in a steering mode.
3. A gas-liquid two-phase joint connection assembly according to claim 1, wherein: an auxiliary cylinder assembly is arranged between the second extension pipe and the first horizontal rotating joint.
4. A gas-liquid two-phase joint connection assembly according to claim 1, wherein: and a reinforcing plate is arranged between the first extension pipe and the rotating shaft pipeline on the fixed seat.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221896263.1U CN217714563U (en) | 2022-07-21 | 2022-07-21 | Gas-liquid double-phase joint connecting assembly |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221896263.1U CN217714563U (en) | 2022-07-21 | 2022-07-21 | Gas-liquid double-phase joint connecting assembly |
Publications (1)
Publication Number | Publication Date |
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CN217714563U true CN217714563U (en) | 2022-11-01 |
Family
ID=83778486
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221896263.1U Active CN217714563U (en) | 2022-07-21 | 2022-07-21 | Gas-liquid double-phase joint connecting assembly |
Country Status (1)
Country | Link |
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CN (1) | CN217714563U (en) |
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2022
- 2022-07-21 CN CN202221896263.1U patent/CN217714563U/en active Active
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