CN204785233U - Modular water collecting and dividing device - Google Patents

Modular water collecting and dividing device Download PDF

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Publication number
CN204785233U
CN204785233U CN201520356772.9U CN201520356772U CN204785233U CN 204785233 U CN204785233 U CN 204785233U CN 201520356772 U CN201520356772 U CN 201520356772U CN 204785233 U CN204785233 U CN 204785233U
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CN
China
Prior art keywords
cylindrical shell
unit
water collecting
combined type
condensate correcting
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520356772.9U
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Chinese (zh)
Inventor
杨健
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
CHINA OPTIMIZED ENERGY Co Ltd
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CHINA OPTIMIZED ENERGY Co Ltd
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Priority to CN201520356772.9U priority Critical patent/CN204785233U/en
Application granted granted Critical
Publication of CN204785233U publication Critical patent/CN204785233U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a modular water collecting and dividing device, including support, the divide unit and the unit that catchments, the divide water inlet of one end for being connected with pressure gauge, the manual valve of pressure release of unit, its other end for connect in the cecum of support, the catchment return water mouth of one end for being connected with pressure gauge, the manual valve of pressure release of unit, its other end equally for connect in the cecum of support, the unit, the unit that catchments of dividing docks in proper order by a plurality of composite module and forms. The utility model discloses composite module's arbitrary combination can provide the water collecting and dividing device of different specifications, different closures to need not to customize alone according to customer's needs, when having improved the product commonality, reduced manufacturing cost and maintenance cost.

Description

A kind of combined type condensate correcting-distribuing device
Technical field
The utility model relates to condensate correcting-distribuing device field, is especially a kind of combined type condensate correcting-distribuing device.
Background technique
Existing condensate correcting-distribuing device is formed in several bypass duct be communicated with condensate correcting-distribuing device inside of the condensate correcting-distribuing device outside weldings of cylindrical shape usually, when medium temperature in condensate correcting-distribuing device is lower, inevitably there is condensed water in its outer wall, causes condensate correcting-distribuing device working environment to be destroyed; And the lead direction of multiple bypass line of existing condensate correcting-distribuing device is identical, in fact there is each species diversity by the orientation of water end in corresponding each of bypass line, in order to meet the connection request of existing condensate correcting-distribuing device, inevitably need the use increasing corresponding connecting pipeline, the first-class accessory of connecting bending, and need integral replacing when occurring damaged, cause waste.
Summary of the invention
The utility model object is to solve above-mentioned existing condensate correcting-distribuing device Problems existing in use and work progress, provides a kind of combined type condensate correcting-distribuing device, is specifically realized by following technological scheme:
A kind of combined type condensate correcting-distribuing device, comprises support, point water unit and water collecting unit; One end of described point of water unit is the water intake being connected with pressure meter, pressure release manually operated valve, and its other end is the cecum being connected to described support; One end of described water collecting unit is the backwater mouth being connected with pressure meter, pressure release manually operated valve, and its other end is similarly the cecum being connected to described support; Described point of water unit, water collecting unit dock successively by some composite modules and form, the main body of described composite module is the cylindrical shell that inside has passage portion, cylindrical shell be externally connected to a bypass duct, this bypass duct is communicated with described passage portion through the sidewall of cylindrical shell; Between the inwall of described cylindrical shell and outer wall, hollow out forms some condensation-proof chambeies between some gussets and connection chamber, along drum shaft to being distributed with reinforcement dividing plate in the middle part of described condensation-proof chamber; Extend to form two protruding joints in the middle part of the gusset of described connection chamber both sides in opposite directions, the middle part of two joints in same connection chamber has indent and is formed and arc groove symmetrical mutually; Two end faces of described cylindrical shell are respectively arranged with locating column and the positioning groove relative with described locating column; Splicing location is realized in the positioning groove that the locating column of the composite module of described point of water unit, water collecting unit is plugged on adjacent group compound module respectively, thus the passage portion of each composite module interconnects the passage portion being formed and be positioned at a point water unit, water collecting unit, the connection chamber of each composite module interconnects the connecting passage being formed and be positioned at a point water unit, water collecting unit, run through in described connecting passage and have fastening screw, described fastening screw two ends are connected to the two ends of a point water unit, water collecting unit respectively by fastening nuts.
Described combined type condensate correcting-distribuing device, it designs further and is, the end face of described cylindrical shell is regular polygon.
Described combined type condensate correcting-distribuing device, it designs further and is, the end face of described cylindrical shell is square, and correspondingly, described cylindrical shell has the side that four are distributed in described passage portion periphery, and between adjacent two sides, transition is connected with chamfer surface.
Described combined type condensate correcting-distribuing device, it designs further and is, described bypass duct is arranged at the middle part of cylindrical shell one side, and described condensation-proof chamber, connection chamber have four respectively, and each condensation-proof chamber is just right with the middle part of a side respectively, described connection chamber is just right with a chamfer surface respectively.
Described combined type condensate correcting-distribuing device, it designs further and is, the middle part in described condensation-proof chamber is provided with a dividing plate along cylindrical shell radial direction, and described locating column, positioning groove are arranged at the two ends of described dividing plate respectively.
Described combined type condensate correcting-distribuing device, it designs further and is, described reinforcement dividing plate is the circular arc plate coaxial with described passage portion.
Described combined type condensate correcting-distribuing device, it designs further and is, one end away from described cylindrical shell of described bypass duct is connecting end, and this connecting end has all been threaded and has been with valvular pipeline connector; It is domatic that the port that described pipeline connector docks with described connecting end, described connecting end have the connection of fitting mutually, and the domatic middle part of described connection is provided with seal ring.
The combination in any of the utility model composite module can provide the condensate correcting-distribuing device of different size, different connecting direction, thus without the need to needing independent customization according to client, while improve product versatility, reduces cost of production and maintenance cost; The combined type condensate correcting-distribuing device that the utility model provides, owing to being provided with the condensation-proof chamber of thermal insulation in the peripheral hollow out of the passage portion of composite module, decrease working medium heat loss at high operating temperatures and the outer surface that effectively prevent working medium condensate correcting-distribuing device under low-temperature condition forms condensed water.
Accompanying drawing explanation
Fig. 1 is example structure schematic diagram of the present utility model.
Fig. 2 is side direction view embodiment illustrated in fig. 1.
Fig. 3 is the sectional drawing of A-A shown in Fig. 2.
Fig. 4 is the structural representation of composite module.
Fig. 5 is the direction view of B shown in Fig. 4.
Embodiment
Below in conjunction with Figure of description and embodiment, the utility model is further described.
As shown in the figure, this combined type condensate correcting-distribuing device comprises support 1, point water unit 2 and water collecting unit 3; The one end dividing water unit is the water intake 21 being connected with pressure meter, pressure release manually operated valve, and its other end is the cecum being connected to support; One end of water collecting unit 3 is the backwater mouth 31 being connected with pressure meter, pressure release manually operated valve, and its other end is similarly the cecum being connected to support;
Point water unit 2, water collecting unit 3 dock successively by some composite modules 4 and form, the main body of this composite module is the cylindrical shell 41 that inside has passage portion 411, cylindrical shell be externally connected to a bypass duct 42, this bypass duct is communicated with passage portion through the sidewall of cylindrical shell; Between the inwall of cylindrical shell and outer wall, hollow out forms some condensation-proof chambeies 412 between some gussets 414 and connection chamber 413, strengthens dividing plate 415 in the middle part of condensation-proof chamber along drum shaft to being distributed with; Extend to form two protruding joints 43 in the middle part of the gusset of connection chamber both sides in opposite directions, the middle part of two joints in same connection chamber has indent and is formed and arc groove 431 symmetrical mutually; Two end faces of cylindrical shell are respectively arranged with locating column 44 and the positioning groove 45 relative with locating column.
Splicing location is realized in the positioning groove dividing the locating column of the composite module of water unit 2, water collecting unit 3 to be plugged on adjacent group compound module respectively, thus the passage portion of each composite module interconnects the passage portion being formed and be positioned at a point water unit, water collecting unit, the connection chamber of each composite module interconnects the connecting passage being formed and be positioned at a point water unit, water collecting unit, run through in connecting passage and have fastening screw 5, fastening screw two ends are fastenedly connected the two ends in a point water unit, water collecting unit respectively by nut 6.
The end face of cylindrical shell can be arbitrary regular polygon, and further, the end face of the cylindrical shell in the present embodiment is square, and correspondingly, cylindrical shell 41 has the side 416 that four are distributed in passage portion periphery, and between adjacent two sides, transition is connected with chamfer surface 417.
Bypass duct 42 is arranged at the middle part of cylindrical shell one side, and condensation-proof chamber, connection chamber have four respectively, and each condensation-proof chamber is just right with the middle part of a side respectively, and connection chamber is just right with a chamfer surface respectively.
Particularly, the middle part in condensation-proof chamber 412 is provided with a dividing plate 418 along cylindrical shell radial direction, and locating column, positioning groove are arranged at the two ends of dividing plate respectively.
Particularly, strengthening dividing plate 415 is the circular arc plate coaxial with passage portion, strengthens condensation-proof effect further while increasing the structural strength in condensation-proof chamber.
Further, in order to ensure connection sealing effect, one end away from cylindrical shell of bypass duct 42 is connecting end 421, and this connecting end has all been threaded and has been with valvular pipeline connector 7; The port that pipeline connector 7 docks with connecting end, connecting end have mutual connection domatic 71 of fitting, and connect domatic middle part and are provided with seal ring 72.
The combination in any of the utility model composite module can provide the condensate correcting-distribuing device of different size, different connecting direction, thus without the need to needing independent customization according to client, while improve product versatility, reduces cost of production and maintenance cost; The combined type condensate correcting-distribuing device that the utility model provides, owing to being provided with the condensation-proof chamber of thermal insulation in the peripheral hollow out of the passage portion of composite module, decrease working medium heat loss at high operating temperatures and the outer surface that effectively prevent working medium condensate correcting-distribuing device under low-temperature condition forms condensed water.

Claims (7)

1. a combined type condensate correcting-distribuing device, is characterized in that comprising support, point water unit and water collecting unit; One end of described point of water unit is the water intake being connected with pressure meter, pressure release manually operated valve, and its other end is the cecum being connected to described support; One end of described water collecting unit is the backwater mouth being connected with pressure meter, pressure release manually operated valve, and its other end is similarly the cecum being connected to described support; Described point of water unit, water collecting unit dock successively by some composite modules and form, the main body of described composite module is the cylindrical shell that inside has passage portion, cylindrical shell be externally connected to a bypass duct, this bypass duct is communicated with described passage portion through the sidewall of cylindrical shell; Between the inwall of described cylindrical shell and outer wall, hollow out forms some condensation-proof chambeies between some gussets and connection chamber, along drum shaft to being distributed with reinforcement dividing plate in the middle part of described condensation-proof chamber; Extend to form two protruding joints in the middle part of the gusset of described connection chamber both sides in opposite directions, the middle part of two joints in same connection chamber has indent and is formed and arc groove symmetrical mutually; Two end faces of described cylindrical shell are respectively arranged with locating column and the positioning groove relative with described locating column; Splicing location is realized in the positioning groove that the locating column of the composite module of described point of water unit, water collecting unit is plugged on adjacent group compound module respectively, thus the passage portion of each composite module interconnects the passage portion being formed and be positioned at a point water unit, water collecting unit, the connection chamber of each composite module interconnects the connecting passage being formed and be positioned at a point water unit, water collecting unit, run through in described connecting passage and have fastening screw, described fastening screw two ends are connected to the two ends of a point water unit, water collecting unit respectively by fastening nuts.
2. combined type condensate correcting-distribuing device according to claim 1, is characterized in that, the end face of described cylindrical shell is regular polygon.
3. combined type condensate correcting-distribuing device according to claim 2, is characterized in that, the end face of described cylindrical shell is square, and correspondingly, described cylindrical shell has the side that four are distributed in described passage portion periphery, and between adjacent two sides, transition is connected with chamfer surface.
4. combined type condensate correcting-distribuing device according to claim 3, it is characterized in that, described bypass duct is arranged at the middle part of cylindrical shell one side, and described condensation-proof chamber, connection chamber have four respectively, and each condensation-proof chamber is just right with the middle part of a side respectively, described connection chamber is just right with a chamfer surface respectively.
5. combined type condensate correcting-distribuing device according to claim 4, is characterized in that, the middle part in described condensation-proof chamber is provided with a dividing plate along cylindrical shell radial direction, and described locating column, positioning groove are arranged at the two ends of described dividing plate respectively.
6. combined type condensate correcting-distribuing device according to claim 1, is characterized in that, described reinforcement dividing plate is the circular arc plate coaxial with described passage portion.
7. combined type condensate correcting-distribuing device according to claim 1, is characterized in that, one end away from described cylindrical shell of described bypass duct is connecting end, and this connecting end has all been threaded and has been with valvular pipeline connector; It is domatic that the port that described pipeline connector docks with described connecting end, described connecting end have the connection of fitting mutually, and the domatic middle part of described connection is provided with seal ring.
CN201520356772.9U 2015-05-29 2015-05-29 Modular water collecting and dividing device Expired - Fee Related CN204785233U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520356772.9U CN204785233U (en) 2015-05-29 2015-05-29 Modular water collecting and dividing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520356772.9U CN204785233U (en) 2015-05-29 2015-05-29 Modular water collecting and dividing device

Publications (1)

Publication Number Publication Date
CN204785233U true CN204785233U (en) 2015-11-18

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107477229A (en) * 2017-09-22 2017-12-15 比赫电气(太仓)有限公司 A kind of server closed liquid cooling system VCDU distribution water heater structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107477229A (en) * 2017-09-22 2017-12-15 比赫电气(太仓)有限公司 A kind of server closed liquid cooling system VCDU distribution water heater structure

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151118

Termination date: 20200529