CN211012650U - Rubber ball flow dividing device - Google Patents
Rubber ball flow dividing device Download PDFInfo
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- CN211012650U CN211012650U CN201921378251.8U CN201921378251U CN211012650U CN 211012650 U CN211012650 U CN 211012650U CN 201921378251 U CN201921378251 U CN 201921378251U CN 211012650 U CN211012650 U CN 211012650U
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Abstract
The utility model relates to a rubber ball shunt device, which comprises a cylindrical cavity, a main service pipe flange, a left branch service pipe flange and a right branch service pipe flange; a main branch pipeline, a left branch pipeline and a right branch pipeline which form a certain included angle are arranged on the cylindrical cavity; a main ball serving pipe flange is welded with the main branch pipeline, a left branch ball serving pipe flange is welded with the left branch pipeline, and a right branch ball serving pipe flange is welded with the right branch pipeline; the both ends of cylindrical cavity are equipped with the opening, are provided with glass-carrying flange, toughened glass and glass gland on every opening at cylindrical cavity both ends, and the glass gland passes through fastening screw and carries glass flange joint, fixes toughened glass between glass gland and glass-carrying flange. The utility model discloses increase the main pipeline of serve and branch the main pipeline of serve, divide a plurality of angles and condenser inlet channel to connect to realize the short time, many branches, centralized outburst serve, condenser pipe just can obtain more effectual washing like this.
Description
Technical Field
The utility model relates to a gluey ball washs the field, especially relates to a gluey ball diverging device.
Background
In order to keep the inside of a condenser tube bundle always in a clean state, improve the economical efficiency of unit operation, prevent or reduce corrosion of copper tubes of the condenser, prolong the service life of the condenser tube bundle and improve the labor conditions, when the unit operates, cooling water of the condenser needs to be purified and the copper tubes of the condenser need to be cleaned regularly, and a condenser rubber ball automatic cleaning device is a device widely used for cleaning the copper tubes at present. When the power plant unit is smaller, the diameter of a cooling circulating water circulating pipeline of the condenser pipe is smaller, the condenser pipe of the condenser can be effectively cleaned by directly sending a rubber ball to a water inlet pipeline of a main condenser circulating pipeline through a ball sending pipeline when a rubber ball cleaning system is adopted, but when the power plant unit is larger, the diameter of the circulating pipeline of the condenser is larger at the moment, the minimum general diameter reaches 1.8 meters, the diameter of the ball sending pipeline and the diameter proportion of the water inlet pipe of the condenser are too different, and if the above ball sending pipeline is adopted, the cleaning effect of the condenser pipe is very unsatisfactory.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve the above-mentioned weak point that exists among the prior art.
In order to achieve the above object, an embodiment of the present invention provides a rubber ball shunt device, which includes a cylindrical cavity, a main service pipe flange, a left branch service pipe flange and a right branch service pipe flange; a main branch pipeline, a left branch pipeline and a right branch pipeline which form a certain included angle are arranged on the cylindrical cavity; a main ball serving pipe flange is welded with the main branch pipeline, a left branch ball serving pipe flange is welded with the left branch pipeline, and a right branch ball serving pipe flange is welded with the right branch pipeline; the both ends of cylindrical cavity are equipped with the opening, are provided with the glass carrying flange on every opening at cylindrical cavity both ends, and the outside of glass carrying flange is provided with toughened glass and glass gland, and the glass gland passes through fastening screw and carries glass flange joint, fixes toughened glass between glass gland and glass carrying flange.
In a possible embodiment, a triangular prism-shaped flow distribution plate is welded inside the cylindrical cavity, wherein one ridge of the triangular prism-shaped flow distribution plate vertically corresponds to the main branch pipeline, and two triangular bottom surfaces of the triangular prism-shaped flow distribution plate are sealed to prevent rubber balls from entering the triangular prism-shaped flow distribution plate.
In a possible embodiment, the two sides of the toughened glass are also provided with an O-shaped sealing ring and an outer sealing gasket.
In one possible embodiment, the angle between the main branch duct, the left branch duct and the right branch duct is 120 degrees.
The utility model discloses increase the service main line and branch the service main line, divide a plurality of angles and condenser inlet channel to connect, a large amount of glueballs will be through each main line when the service like this, send out from dividing collection ware lateral line again through the reposition of redundant personnel ware reposition of redundant personnel to realize the short time, the multi-branch, centralized outburst service, condenser pipe just can obtain more effectual washing like this.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the description below are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of a rubber ball shunt device provided in an embodiment of the present invention;
FIG. 2 is an exploded view of FIG. 1;
fig. 3 is a schematic position diagram of a cylindrical cavity and a triangular prism-shaped splitter plate according to an embodiment of the present invention;
fig. 4 is a schematic position diagram of the cylindrical cavity and the triangular prism-shaped splitter plate at another viewing angle according to the embodiment of the present invention;
description of reference numerals:
1-cylindrical cavity, 2-main serve pipe flange, 31-left branch serve pipe flange, 32-right branch serve pipe flange, 4-glass-carrying flange, 5-O-shaped sealing ring, 6-toughened glass, 7-outer sealing gasket, 8-glass gland, 9-fastening screw, 11-main branch pipeline, 12-left branch pipeline, 13-right branch pipeline and 14-triangular prism-shaped splitter plate.
Detailed Description
The technical solution of the present invention will be described in further detail with reference to the accompanying drawings and embodiments.
As shown in fig. 1-4, the embodiment of the utility model provides a rubber ball diverging device, including cylindrical cavity 1, main service bulb flange 2, left branch service bulb flange 31 and right branch service bulb flange 32, be provided with main branch road pipeline 11, left branch road pipeline 12 and right branch road pipeline 13 on the cylindrical cavity 1.
The main service pipe flange 2 is welded with the main branch pipeline 11, the upper portion of the main service pipe flange is connected with the front end service pipe through bolts, the left branch service pipe flange 31 is welded with the left branch pipeline 12, and the right branch service pipe flange 32 is welded with the right branch pipeline 13.
When the ball distributing pipe is installed on a circulating system, the left branch ball distributing pipe flange 31 and the right branch ball distributing pipe flange 32 are respectively connected with the flanges of the corresponding ball distributing pipe branches through bolts.
In one example, the angle between the main branch conduit 11, the left branch conduit 12 and the right branch conduit 13 is 120 degrees.
The both ends of cylindrical cavity 1 are equipped with the opening, are provided with on every opening at cylindrical cavity both ends and carry glass flange 4, and the outside of carrying glass flange 4 has set gradually toughened glass 6 and glass gland 8 to glass gland 8 passes through fastening screw 9 and is connected with carrying glass flange 4, fixes toughened glass 6 between glass gland 8 and carrying glass flange 4.
In one example, the tempered glass 6 is further provided with an O-ring 5 and an outer gasket 7 on both sides.
As shown in the attached drawing 2, a triangular prism-shaped splitter plate 14 is welded inside the branch collector, the two ends of the triangular prism-shaped splitter plate 14 are blocked to prevent the rubber balls from entering the triangular prism-shaped splitter plate 14, the triangular prism-shaped splitter plate 14 forms an angle, and the highest point of the support plate is lower than the center of the branch collector, so that the rubber balls can be better split and cannot be damaged.
The utility model discloses increase service main line and branch service main line, divide a plurality of angles and condenser inlet channel to connect, a large amount of glueballs will be through each main line when service like this, send out from dividing collection ware lateral line again through the reposition of redundant personnel of collection ware to realize the short time, the multi-branch, centralized outburst service, condenser pipe just can obtain more effectual washing like this
Compared with the prior art, the beneficial effects of the utility model are that: 1, a service pipeline of a large-diameter circulating pipeline of a power plant is an indispensable component of a rubber ball cleaning system; 2, the triangular prism-shaped splitter plate can well split the rubber balls; 3, arranging toughened glass as an observation window, and conveniently observing the running condition of the rubber ball from each direction; 4, the structural design is simple and practical, and the manufacturing cost is low.
The above embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above embodiments are only specific embodiments of the present invention, and are not intended to limit the scope of the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.
Claims (4)
1. The rubber ball shunt device is characterized by comprising a cylindrical cavity (1), a main ball serving pipe flange (2), a left branch ball serving pipe flange (31) and a right branch ball serving pipe flange (32);
a main branch pipeline (11), a left branch pipeline (12) and a right branch pipeline (13) which form a certain included angle are arranged on the cylindrical cavity (1);
the main ball serving pipe flange (2) is welded with a main branch pipeline (11), the left branch ball serving pipe flange (31) is welded with the left branch pipeline (12), and the right branch ball serving pipe flange (32) is welded with the right branch pipeline (13);
the two ends of the cylindrical cavity (1) are provided with openings, a glass carrying flange (4) is arranged on each opening at the two ends of the cylindrical cavity, tempered glass (6) and a glass gland (8) are arranged on the outer side of the glass carrying flange (4), the glass gland (8) is connected with the glass carrying flange (4) through fastening screws (9), and the tempered glass (6) is fixed between the glass gland (8) and the glass carrying flange (4).
2. A rubber ball shunt device according to claim 1, wherein a triangular prism-shaped shunt plate (14) is welded inside the cylindrical cavity (1), wherein one edge of the triangular prism-shaped shunt plate (14) vertically corresponds to the main branch pipeline (11), and two triangular bottom surfaces of the triangular prism-shaped shunt plate (14) are sealed to prevent rubber balls from entering the triangular prism-shaped shunt plate (14).
3. The rubber ball shunt device according to claim 1, wherein an O-shaped sealing ring (5) and an outer sealing gasket (7) are further arranged on two sides of the toughened glass (6).
4. A rubber ball diversion device according to claim 1, wherein the angle between said main branch duct (11), said left branch duct (12) and said right branch duct (13) is 120 degrees.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921378251.8U CN211012650U (en) | 2019-08-23 | 2019-08-23 | Rubber ball flow dividing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921378251.8U CN211012650U (en) | 2019-08-23 | 2019-08-23 | Rubber ball flow dividing device |
Publications (1)
Publication Number | Publication Date |
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CN211012650U true CN211012650U (en) | 2020-07-14 |
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Family Applications (1)
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CN201921378251.8U Active CN211012650U (en) | 2019-08-23 | 2019-08-23 | Rubber ball flow dividing device |
Country Status (1)
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CN (1) | CN211012650U (en) |
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2019
- 2019-08-23 CN CN201921378251.8U patent/CN211012650U/en active Active
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