CN206410364U - Heat exchanger - Google Patents
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- CN206410364U CN206410364U CN201621253925.8U CN201621253925U CN206410364U CN 206410364 U CN206410364 U CN 206410364U CN 201621253925 U CN201621253925 U CN 201621253925U CN 206410364 U CN206410364 U CN 206410364U
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- heat exchanger
- exchanger tube
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- way pipe
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Abstract
The utility model discloses a kind of heat exchanger, including:Heat exchanger tube is arranged, and heat exchanger tube row includes two heat exchanger tubes, and at least a portion of each heat exchanger tube, which is bent to form at serpentine configuration and serpentine configuration, is provided with heat exchange fin;At least one three-way pipe, three-way pipe has three openends and two of which openend corresponds to be connected or correspond with the heat exchange port of export of two heat exchanger tubes with the heat exchange entrance point of two heat exchanger tubes and is connected respectively.Make the flow path increase of the heat transferring medium in heat exchanger tube row according to heat exchanger of the present utility model, the length of flow path reduces, pressure drop reduces, flow resistance is reduced, heat transferring medium flowing is more smooth, and heat transfer effect is improved, and the processing and manufacturing of heat exchanger tube row is more convenient, heat exchanger tube can be made large-size, increase the application of heat exchanger.
Description
Technical field
The utility model is related to a kind of Oil Temperature Controlling Technigue field, more particularly, to a kind of heat exchanger.
Background technology
As Thermal Performance of Micro Channels technology is more and more wider in the application of field of household appliances, heat exchanger is made to highly integrated pattern
Have begun to.Microchannel coil heat exchanger relies on the features such as cost is low, heat exchange property is strong to be widely used in family expenses and commercialization
Appliance field.
In fields such as refrigerator, refrigerator, dehumidifiers, microchannel coil heat exchanger obtains relatively broad application.Related skill
The heat exchanger processing made in art by single micro-channel flat produces inconvenient, and pressure drop is larger, heat exchanging device performance and is
System can have undesirable effect, and be restricted its application.
Utility model content
The utility model is intended at least solve one of technical problem in correlation technique to a certain extent.Therefore, this reality
A kind of heat exchanger, the convenient processing of the heat exchanger and heat transfer effect lifting are proposed with new.
According to heat exchanger of the present utility model, including:Heat exchanger tube is arranged, and the heat exchanger tube row includes two heat exchanger tubes, each
At least a portion of the heat exchanger tube, which is bent to form at serpentine configuration and the serpentine configuration, is provided with heat exchange fin;At least one three
Siphunculus, the three-way pipe enters with heat exchange of the openend respectively with two heat exchanger tubes described in three openends and two of which
Mouth end, which corresponds to be connected or correspond with the heat exchange ports of export of two heat exchanger tubes, to be connected.
According to heat exchanger of the present utility model, make the flow path increase of the heat transferring medium in heat exchanger tube row, flow path
Length reduce, pressure drop reduces, and flow resistance reduction, heat transferring medium flowing is more smooth, and heat transfer effect is improved, and the quantity of heat exchanger tube
Increase, size reduces, the processing and manufacturing of heat exchanger tube row is more convenient, and also heat exchanger tube can be made into large-size, is increased and is changed
The application of hot device.
In addition, can also have technical characteristic additional as follows according to heat exchanger of the present utility model:
According to some embodiments of the present utility model, the three-way pipe includes two, and the heat exchange of two heat exchanger tubes is entered
Mouthful end is corresponded with two openends of three-way pipe one of them described to be connected, the heat exchange port of export of two heat exchanger tubes and
Two openends of three-way pipe described in other in which, which are corresponded, to be connected.
According to some embodiments of the present utility model, two three-way pipes be located at heat exchanger tube row's homonymy or offside and
The middle part arranged positioned at the heat exchanger tube.
According to some embodiments of the present utility model, the edge of the heat exchanger tube row, which is provided with, to be used to avoid the three-way pipe
Breach is avoided, two three-way pipes are spaced in the vertical direction to be opened in the avoidance breach.
According to some embodiments of the present utility model, two heat exchanger tubes are arranged and each heat exchange in the horizontal direction
Pipe includes:Straight length;Pipeline section is bent, one end of the bending pipeline section is connected with one end of the straight length and along the straight length
Bearing of trend be bent to form the serpentine configuration, its in the other end of the other end of the straight length and the bending pipeline section
In one be formed as the heat exchanger tube heat exchange entrance point, in the other end of the other end of the straight length and the bending pipeline section
Other in which be formed as the heat exchange port of export of the heat exchanger tube.
According to some embodiments of the present utility model, two heat exchanger tubes extend and are formed as symmetrical in the same plane
Structure.
According to some embodiments of the present utility model, the flat tube that the straight length and the bending pipeline section are formed as one.
According to some embodiments of the present utility model, the three-way pipe includes:House steward, the openend shape of the house steward
Entrance point or the port of export as the heat exchanger;Two branch pipes of connection corresponding with two heat exchanger tubes, each branch
One openend of pipe and the corresponding heat exchanger tube are connected, and another openend of each branch pipe is another with the house steward's
One openend is connected.
According to some embodiments of the present utility model, each heat exchanger tube includes vertical pipeline section, and the heat exchanger tube row is also
Including the installing plate vertically extended, the installing plate be located between two vertical pipeline sections and with two heat exchange
Heat exchange fin is respectively equipped between pipeline section, the openend of two vertical pipeline sections is corresponding with two branch pipes respectively to be connected.
One openend of two branch pipes is respectively formed as setting respectively on the side wall of blind end and two branch pipes
Have and correspond the opening connected with two heat exchanger tubes.
According to some embodiments of the present utility model, heat exchanger tube row include it is arranged side by side and spaced multiple, each
Be respectively equipped with the side wall of the branch pipe along its axially spaced-apart set multiple openings, it is multiple it is described be open with it is multiple described
The heat exchanger tube in heat exchanger tube row corresponds connection.
Additional aspect and advantage of the present utility model will be set forth in part in the description, partly by from following description
In become obvious, or by it is of the present utility model practice recognize.
Brief description of the drawings
Fig. 1 is the structural representation of the heat exchanger according to the utility model embodiment;
Fig. 2 is the front view of the heat exchanger according to the utility model embodiment;
Fig. 3 is the top view of the heat exchanger according to the utility model embodiment;
Fig. 4 is the left view of the heat exchanger according to the utility model embodiment;
Fig. 5 is the structural representation of the three-way pipe of the heat exchanger according to the utility model embodiment.
Reference:
Heat exchanger 100;
Heat exchanger tube row 10;Avoid breach 101;Heat exchanger tube 11;Straight length 111;Bend pipeline section 112;Heat exchange fin 12;Install
Plate 13;
Three-way pipe 20;House steward 21;Branch pipe 22;Opening 221;Curved pipe 23.
Embodiment
Embodiment of the present utility model is described below in detail, the example of the embodiment is shown in the drawings.Below by
The embodiment being described with reference to the drawings is exemplary, it is intended to for explaining the utility model, and it is not intended that new to this practicality
The limitation of type, one of ordinary skill in the art can be changed to above-described embodiment in the range of the utility model, repair
Change, replace and modification.
The heat exchanger 100 according to the utility model embodiment is described in detail below in conjunction with the accompanying drawings.
Referring to figs. 1 to shown in Fig. 5, according to the heat exchanger 100 of the utility model embodiment including heat exchanger tube row 10 and at least
One three-way pipe 20.Heat exchanger tube row 10 includes two heat exchanger tubes 11, and at least a portion of each heat exchanger tube 11 is bent to form snakelike
Heat exchange fin 12 is provided with structure, and serpentine configuration.Here, serpentine configuration can be understood as end to end generally'S '-shaped knot
Structure.
Three-way pipe 20 have two of which openend in three openends, three openends respectively with two heat exchanger tubes 11
Heat exchange entrance point correspond and be connected, or two of which openend in three openends respectively with two heat exchanger tubes 11
The port of export that exchanges heat, which is corresponded, to be connected.
Specifically, when three-way pipe 20 is one, two openends of the three-way pipe 20 can be with two heat exchanger tubes 11
The entrance point that exchanges heat, which is corresponded, to be connected, and now, another openend of three-way pipe 20 can be formed as the import of heat exchanger 100
End, or, two openends of the three-way pipe 20 can be corresponded with the heat exchange port of export of two heat exchangers 11 to be connected, this
When, another openend of three-way pipe 20 can be formed as the port of export of heat exchanger 100.When three-way pipe 20 is two, wherein
Two openends of one three-way pipe 20 are corresponded with the heat exchange entrance point of two heat exchanger tubes 11 respectively to be connected, other in which
Two openends of three-way pipe 20 are corresponded with the heat exchange port of export of two heat exchanger tubes 11 respectively to be connected.Now, heat exchanger 100
It can easily be realized and be connected with inlet tube and outlet by two three-way pipes 20.
According to the heat exchanger 100 of the utility model embodiment, by setting three-way pipe 20 and with two heat exchanger tubes 11
Heat exchanger tube row 10, allows the heat transferring mediums such as refrigerant to be flowed simultaneously in two heat exchanger tubes 11, forms single multipaths structure,
And can simultaneously it be entered in two heat exchanger tubes 11 or by three-way pipe 20 simultaneously from two by three-way pipe 20 from inlet tube
Individual heat exchanger tube 11 is flow in outlet, and the flow path increase of heat transferring medium in heat exchanger tube row 10, the length of flow path reduces,
Pressure drop reduces, and flow resistance reduction, heat transferring medium flowing is more smooth, and heat transfer effect is improved, and constitutes the heat exchanger tube of heat exchanger tube row 10
11 quantity increase, for the heat exchanger tube row of same size, the size of single heat exchanger tube 11 can be reduced, and heat exchanger tube is arranged 10
Manufacture is more convenient, also, when the size of heat exchanger tube 11 is not reduced, the size of final obtained heat exchanger tube row 10 can become big,
Increase the application of heat exchanger 100.
As depicted in figs. 1 and 2, three-way pipe 20 includes two, and two three-way pipes 20 are arranged on the homonymy of heat exchanger tube row 10, and
And 10 middle part is arranged positioned at heat exchanger tube.Now, two heat exchanger tubes 11 are located at the both sides of three-way pipe 20 respectively, and heat transferring medium can be therefrom
Portion enters, and is flowed to both sides, last again from middle part outflow, good fluidity, and convenient for assembly and two heat exchanger tubes 11 of manufacture.
Further, the edge of heat exchanger tube row 10 can be provided with the avoidance breach 101 for being used for avoiding three-way pipe 20, two threeways
Pipe 20 is spaced in the vertical direction to be opened in avoidance breach 101.Thus, the overall structure of heat exchanger 100 is made more to concentrate, and
And make the installation of three-way pipe 20 more accurate and firm.As depicted in figs. 1 and 2, avoiding breach 101 can be by two He of heat exchanger tube 11
Heat exchange fin 12, which coordinates, to be limited, and the heat exchange entrance point of two heat exchanger tubes 11 can be towards breach 101 be avoided, to facilitate and three
The connection of siphunculus 20.
Certainly, the set location not limited to this of three-way pipe 20, for example, in some unshowned embodiments of the present utility model
In, three-way pipe 20 is two, and two three-way pipes 20 are arranged on the offside of heat exchanger tube row 10, i.e., relative both sides, for example, one is changed
Heat pipe 11 is arranged on the upside of heat exchanger tube row 10, and another heat exchanger tube 11 is arranged on the downside of heat exchanger tube row 10.Now, heat exchanger tube
The edge of the relative both sides of row 10, for example, upper edge and lower edge, can set avoidance breach 101, three-way pipe 20 can respectively
In corresponding avoidance breach 101.Wherein, the three-way pipe 20 being connected with inlet tube can be arranged under heat exchanger tube row 10
Portion, can also be arranged on the top of heat exchanger tube row 10.
In a specific example of the present utility model, the middle part of the upper edge of heat exchanger tube row 10 is provided with substantially cube shape
Avoidance breach 101, heat exchanger tube row 10 lower edge middle part provided with one substantially be in cube shape avoidance breach 101, each
Avoid in breach 101 and be respectively arranged with a three-way pipe 20, to realize heat exchanger tube row 10 and the connection of inlet tube and outlet.
According to some embodiments of the present utility model, two heat exchanger tubes 11 are arranged in the horizontal direction, and each heat exchanger tube 11 can
Including straight length 111 and bending pipeline section 112, one end of bending pipeline section 112 is connected with one end of straight length 111, and bending tube
Section 112 is bent to form serpentine configuration along the bearing of trend of straight length 111, the other end of straight length 111 and bending pipeline section 112 it is another
One of them in one end is formed as the heat exchange entrance point of heat exchanger tube 11, the other end of straight length 111 and bending pipeline section 112 it is another
Other in which in one end is formed as the heat exchange port of export of heat exchanger tube 11.
That is, when the other end (one end not being connected with bending pipeline section 112) of straight length 111 is formed as heat exchanger tube
During 11 heat exchange entrance point, the other end (one end not being connected with straight length 111) of bending pipeline section 112 is then formed as heat exchanger tube
The 11 heat exchange port of export;When the other end of straight length 111 is formed as the heat exchange port of export of heat exchanger tube 11, bending pipeline section 112
The other end is then formed as the heat exchange entrance point of heat exchanger tube 11.Thus, not only facilitate manufacture and install, and heat transferring medium flowing is more
Stable and smooth, good effect of heat exchange.
As shown in Fig. 2 a heat exchanger tube 11 is in left, another heat exchanger tube 11 is in right.With positioned at the heat exchanger tube of left
Exemplified by 11, the heat exchanger tube 11 includes straight length 111 and bending pipeline section 112, and straight length 111 is horizontally extending, bends pipeline section
112 left end is connected with the left end of straight length 111, and bending pipeline section 112 is bent to form serpentine configuration, serpentine configuration in the horizontal direction
With vertical pipeline section, upper arc pipeline section and arc lower pipeline section, the right-hand member of straight length 111 and one in the right-hand member of bending pipeline section 112
Other in which in the individual heat exchange entrance point for heat exchanger tube 11, the right-hand member of straight length 111 and the right-hand member of bending pipeline section 112 is to change
The heat exchange port of export of heat pipe 11.
Preferably, two heat exchanger tubes 11 can extend in the same plane, such as extend in same vertical plane.Also,
Two heat exchanger tubes 11 are formed as symmetrical structure, that is to say, that the structure of two heat exchanger tubes 11 is identical, and set towards phase
Instead.Thus, not only facilitate manufacture, transport and install, and heat transferring medium flowing is evenly, and heat transfer effect is more preferable.
As depicted in figs. 1 and 2, the flat tube that straight length 111 and bending pipeline section 112 are formed as one.Changed thus, it is possible to increase
Hot area, improves heat exchange efficiency, and the better tightness of heat exchanger tube 11, and manufacture is more convenient.
The structure to three-way pipe 20 is described below.Referring to figs. 1 to shown in Fig. 5, three-way pipe 20 may include the He of house steward 21
Two branch pipes 22, house steward 21 includes two openends:Entrance point and the port of export.
When three-way pipe 20 connects inlet tube and two heat exchanger tubes 11, the entrance point of the house steward 21 of three-way pipe 20 can be with import
Pipe is connected, and the port of export of house steward 21 can be connected with the entrance point of two branch pipes 22, the ports of export of two branch pipes 22 respectively with two
Heat exchanger tube 11 corresponds connection, the heat transferring medium flowed out from inlet tube is realized by three-way pipe 20 and shunts;Work as three-way pipe
When 20 connection outlet pipes and two heat exchanger tubes 11, the entrance point of two branch pipes 22 can be corresponded with two heat exchanger tubes 11 to be connected,
The port of export of two branch pipes 22 is connected with the entrance point of house steward 21, and the port of export of house steward 21 can be connected with outlet, makes two to change
Heat transferring medium in heat pipe 11 can be realized by three-way pipe 20 to be collected, and is flowed into outlet.The three-way pipe 20 of this kind of structure
More convenient manufacture and installation, heat transferring medium flowing property are preferable.
Advantageously, house steward 21 is identical with the bearing of trend of two branch pipes 22, and two branch pipes 22 are in same level
It is interior, that is, set highly identical, as shown in Figure 5.Thus, it is possible to further reduce flow resistance, heat transferring medium can be more swimmingly from total
Pipe 21 is flowed into two branch pipes 22, and heat transferring medium shunting evenly, make the heat exchange effect of two heat exchanger tubes 11 substantially
Quite, the overall heat exchange of heat exchanger 100 is good.
Referring to figs. 1 to shown in Fig. 5, an openend being connected with heat exchanger tube 11 for two branch pipes 22 can be respectively formed as envelope
Opening 221, the connection corresponding with heat exchanger tube 11 of opening 221 are respectively equipped with closed end, and the side wall of two branch pipes 22.Thus, more
Facilitate the arrangement of heat exchanger tube 11 and the connection with three-way pipe 20, heat transferring medium flowing property is preferable.As shown in Fig. 2 heat exchanger tube 11
One end may pass through opening and 221 extend into inside branch pipe 22.Certainly, the side wall that one end of heat exchanger tube 11 can also only with branch pipe 22
Connection, the inside without extending into branch pipe 22 can be configured as the case may be.
In some embodiments of the present utility model, heat exchanger tube row 10 includes multiple, and multiple heat exchanger tubes row 10 is simultaneously
Row are set, for example, multiple heat exchanger tubes row 10 is one in front and one in back set in the horizontal direction.Wherein, two adjacent heat exchanger tubes row 10
It is spaced apart and sets, with the influence for the heat transfer effect for reducing exchange heat pipe row 10.It is respectively equipped with the side wall of each branch pipe 22 multiple
Opening 221, axially spaced setting of multiple openings 221 along branch pipe 22, multiple openings 221 arrange changing in 10 with multiple heat exchanger tubes
Heat pipe 11 corresponds connection.
Thus, the heat transferring medium flowed out from inlet tube can be diverted into the heat exchanger tube of multiple heat exchanger tube rows 10 by three-way pipe 20
In 11, or the heat transferring medium flowed in multiple heat exchanger tubes row 10 can be pooled in outlet by three-way pipe 20, formed multiple rows of
Multipaths structure, increases the size of heat exchanger tube 11 and uses scope, flow resistance is further reduced, heat transfer effect is lifted and structure is simpler
Single, it is more reasonable to arrange, processes eased reliable
As shown in figure 4, three-way pipe 20 may also include the curved pipe 23 that dorsad house steward 21 bends, the middle part of curved pipe 23 with it is total
One end of pipe 21 is connected, and the two ends of curved pipe 23 are connected with two branch pipes 22 respectively.Thus, from house steward 21 to the transition of branch pipe 22
It is more round and smooth, flow resistance can be further reduced, and the profile of three-way pipe 20 is more attractive in appearance, also allows for manufacture.
Alternatively, three-way pipe 20 may be integrally formed, and to facilitate manufacture, improve sealing.When three-way pipe 20 is by the He of house steward 21
When two branch pipes 22 are constituted, house steward 21 and two branch pipes 22 can be formed in one part;When three-way pipe 20 is by house steward 21, two branch
When pipe 22 and the composition of curved pipe 23, house steward 21, two branch pipes 22 and curved pipe 23 can be formed in one part.
As depicted in figs. 1 and 2, each heat exchanger tube 11 may include vertical pipeline section 111, as shown in figure 1, vertical pipeline section 111 can
Think a part for bending structure, that is, the structure for bending a part for pipeline section 112 or being separately provided.Heat exchanger tube row 10
Also include installing plate 13, installing plate 13 vertically extends, and installing plate 13 is located at the vertical pipeline section of two heat exchanger tubes 11
Between 111, heat exchange fin 12, the openend difference of two vertical pipeline sections 111 are provided between installing plate 13 and two vertical pipeline sections
It is corresponding with two branch pipes 22 to be connected.Thus, it is possible to insert two heat exchange fins 12 and sealing is fixed in installing plate 13, pass through peace
Dress plate 13 links together two heat exchanger tubes 11, installs more convenient, and structure is compared with firm and heat transfer effect is preferable.
Further, the central axis of each branch pipe 22 can be in same vertical plane with corresponding vertical pipeline section 111, tool
Body, the central axis of each branch pipe 22 is in same vertical plane with the central axis of corresponding vertical pipeline section 111.Thus,
Vertical pipeline section 111 can be connected with the middle part of branch pipe 22, and connection effect is good, and heat transferring medium flowing property is more preferable.Alternatively, VERTICAL TUBE
The thickness that section 111 is formed as flat tube and vertical pipeline section 111 is identical with the thickness of installing plate 13, now, two branch pipes 22
Horizontal range between central axis is equal to the height (size extended in horizontal direction) of heat exchange fin 12 and the thickness of flat tube
Twice.
According to the heat exchanger 100 of the utility model embodiment other constitute and operate for this area ordinary skill
It is knowable for personnel, is not described in detail herein.
In description of the present utility model, it is to be understood that term " " center ", " thickness ", " on ", " under ", " preceding ",
The orientation or position relationship of the instruction such as " rear ", "left", "right", " vertical ", " level ", " top ", " bottom ", " interior ", " outer ", " axial direction "
Described based on orientation shown in the drawings or position relationship, to be for only for ease of description the utility model and simplifying, without referring to
Show or imply that the device or element of meaning there must be specific orientation, with specific azimuth configuration and operation, therefore can not manage
Solve as to limitation of the present utility model.
In description of the present utility model, " multiple " are meant that at least two, such as two, three etc., unless otherwise
It is clearly specific to limit.In the utility model, unless otherwise clearly defined and limited, fisrt feature second feature " on "
Can be that the first and second features are directly contacted, or the first and second features pass through intermediary mediate contact.
In the utility model, unless otherwise clearly defined and limited, term " installation ", " connected ", " connection ", " Gu
It is fixed " etc. term should be interpreted broadly, for example, it may be fixedly connected or be detachably connected, or integrally;Can be
Mechanically connect or electrically connect or can communicate each other;Can be joined directly together, the indirect phase of intermediary can also be passed through
Even, can be two element internals connection or two elements interaction relationship, unless otherwise clear and definite restriction.For this
For the those of ordinary skill in field, concrete meaning of the above-mentioned term in the utility model can be understood as the case may be.
In the description of this specification, the description of reference term " embodiment " or " example " etc. mean to combine the embodiment or
Specific features, structure, material or the feature of example description are contained at least one embodiment of the present utility model or example.
In this manual, identical embodiment or example are necessarily directed to the schematic representation of above-mentioned term.Moreover, description
Specific features, structure, material or feature can in an appropriate manner be combined in any one or more embodiments or example.
In addition, in the case of not conflicting, those skilled in the art can by the not be the same as Example described in this specification or
The feature of example and non-be the same as Example or example is combined and combined.
Claims (11)
1. a kind of heat exchanger, it is characterised in that including:
Heat exchanger tube is arranged, and the heat exchanger tube row includes two heat exchanger tubes, and at least a portion of each heat exchanger tube is bent to form snake
Heat exchange fin is provided with shape structure and the serpentine configuration;
At least one three-way pipe, the three-way pipe have openend described in three openends and two of which respectively with described in two
The heat exchange entrance point of heat exchanger tube, which corresponds to be connected or correspond with the heat exchange port of export of two heat exchanger tubes, to be connected.
2. heat exchanger according to claim 1, it is characterised in that the three-way pipe includes two, two heat exchanger tubes
Heat exchange entrance point with one of them described three-way pipe two openends correspond be connected, the heat exchange of two heat exchanger tubes
The port of export is corresponded with two openends of three-way pipe described in other in which to be connected.
3. heat exchanger according to claim 2, it is characterised in that two three-way pipes are located at the same of the heat exchanger tube row
Side or offside and the middle part arranged positioned at the heat exchanger tube.
4. heat exchanger according to claim 3, it is characterised in that the edge of the heat exchanger tube row is provided with described for avoiding
The avoidance breach of three-way pipe, two three-way pipes are spaced in the vertical direction to be opened in the avoidance breach.
5. the heat exchanger according to any one of claim 1-4, it is characterised in that two heat exchanger tubes are in the horizontal direction
Arrange and each heat exchanger tube includes:
Straight length;
Pipeline section is bent, one end of the bending pipeline section is connected with one end of the straight length and along the bearing of trend of the straight length
It is bent to form the serpentine configuration, one of formation in the other end of the other end of the straight length and the bending pipeline section
For the heat exchange entrance point of the heat exchanger tube, the other in which in the other end of the straight length and the bending pipeline section is formed as
The heat exchange port of export of the heat exchanger tube.
6. heat exchanger according to claim 5, it is characterised in that two heat exchanger tubes extend and shape in the same plane
As symmetrical structure.
7. heat exchanger according to claim 5, it is characterised in that the straight length and the bending pipeline section are formed as one
Flat tube.
8. the heat exchanger according to any one of claim 1-4, it is characterised in that each three-way pipe includes:
House steward, the openend of the house steward is formed as the port of export or entrance point of the heat exchanger;
Two branch pipes of connection corresponding with two heat exchanger tubes a, openend of each branch pipe described is changed with corresponding
Heat pipe is connected, and each another openend of the branch pipe is connected with another openend of the house steward.
9. heat exchanger according to claim 8, it is characterised in that each heat exchanger tube includes vertical pipeline section, described to change
Heat pipe row also includes the installing plate that vertically extends, the installing plate be located between two vertical pipeline sections and with two
Be respectively equipped with heat exchange fin between the heat exchange pipeline section, the openends of two vertical pipeline sections respectively with two branch pipes pair
It should be connected.
10. heat exchanger according to claim 8 a, it is characterised in that openend of two branch pipes is formed respectively
It is respectively equipped with side wall for blind end and two branch pipes and corresponds the opening connected with two heat exchanger tubes.
11. heat exchanger according to claim 10, it is characterised in that the heat exchanger tube row includes arranged side by side and spaced
It is multiple, it is respectively equipped with the multiple openings set along its axially spaced-apart, multiple openings on the side wall of each branch pipe
Correspond and connect with the heat exchanger tube in multiple heat exchanger tube rows.
Priority Applications (1)
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CN201621253925.8U CN206410364U (en) | 2016-11-15 | 2016-11-15 | Heat exchanger |
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CN201621253925.8U CN206410364U (en) | 2016-11-15 | 2016-11-15 | Heat exchanger |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108916843A (en) * | 2018-09-28 | 2018-11-30 | 扬中市诺贝电气有限公司 | A kind of integrated form is without vessel vapor generator |
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2016
- 2016-11-15 CN CN201621253925.8U patent/CN206410364U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108916843A (en) * | 2018-09-28 | 2018-11-30 | 扬中市诺贝电气有限公司 | A kind of integrated form is without vessel vapor generator |
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Effective date of registration: 20191104 Address after: 310018, No. 289-1, No. 12, Poplar Street, Hangzhou economic and Technological Development Zone, Zhejiang Patentee after: Sanhua Micro Channel Heat Exchanger Inc. Address before: 310018 289-3, Hangzhou economic and Technological Development Zone, Zhejiang, No. 12, No. Patentee before: HANGZHOU SANHUAJIA ELECTROTHERMAL MANAGEMENT SYSTEM CO., LTD. |