CN202092482U - Multilayer thin cavity type heat exchanger with heat collecting pieces - Google Patents

Multilayer thin cavity type heat exchanger with heat collecting pieces Download PDF

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Publication number
CN202092482U
CN202092482U CN2011200912841U CN201120091284U CN202092482U CN 202092482 U CN202092482 U CN 202092482U CN 2011200912841 U CN2011200912841 U CN 2011200912841U CN 201120091284 U CN201120091284 U CN 201120091284U CN 202092482 U CN202092482 U CN 202092482U
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CN
China
Prior art keywords
recessed basin
basin
recessed
metallic plate
sheet
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Expired - Lifetime
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CN2011200912841U
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Chinese (zh)
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戴佩裕
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F3/00Plate-like or laminated elements; Assemblies of plate-like or laminated elements
    • F28F3/08Elements constructed for building-up into stacks, e.g. capable of being taken apart for cleaning
    • F28F3/086Elements constructed for building-up into stacks, e.g. capable of being taken apart for cleaning having one or more openings therein forming tubular heat-exchange passages
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F1/00Tubular elements; Assemblies of tubular elements
    • F28F1/10Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses
    • F28F1/12Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element
    • F28F1/24Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending transversely
    • F28F1/26Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending transversely the means being integral with the element
    • F28F1/28Tubular elements and assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with projections, with recesses the means being only outside the tubular element and extending transversely the means being integral with the element the element being built-up from finned sections

Abstract

The utility model relates to the technical field of heat exchangers, in particular to a multilayer thin cavity type heat exchanger, which comprises a first layer metal plate, a tail layer metal plate and a plurality of middle layer metal plates which are arranged between the first layer metal plate and the tail layer metal plate. The first layer metal plate comprises a first concave tub and a peripheral metal plate integrated with the first concave tub, the tail layer metal plate comprises a third concave tub and a peripheral metal plate integrated with the third concave tub, and each middle layer metal plate comprises a second concave tub and a peripheral metal plate integrated with the second concave tub. The first layer metal plate, the plurality of middle layer metal plates and the tail layer metal plate are sequentially and fixedly connected in an overlaying mode through the first concave tub, the second concave tubs and the third concave tub, and heat collecting pieces are embedded between the peripheral metal thin plate of each concave tub. The heat exchanger effectively improves structures of the heat collecting pieces and heat absorption and heat transfer effects.

Description

The multi-layer thin cavate heat exchanger of band heat collecting sheet
Technical field
The utility model relates to the heat exchanger technical field, particularly a kind of multi-layer thin cavate heat exchanger with heat collecting sheet.
Background technology
Along with people's living standard improve constantly, water heater has been come into huge numbers of families, has become one of daily necessities indispensable in the people life, by people are known.The heat exchanger of water heater is one of critical component wherein, and its quality quality is the quality of decision water heater quality directly.The heat exchanger of existing water heater mainly adopts the circuitous all types of heat collecting sheets of copper pipe overcoat, to the heat collecting sheet heating, heat collecting sheet is heated by the burner baking, heat again by heat collecting sheet heat conduction to copper pipe, again by copper pipe heat conduction in water, with water generation heat exchange.The heat exchanger of existing water heater is because there is irrationality in structure setting, water can only the copper pipe of circle in flow, little with the contact area of copper pipe, so water can not carry out heat exchange with the copper pipe wall fully, so a large amount of heat energy is outdoor along with Hot air quilt forced-ventilated function is discharged to, and causes heat-energy losses.In addition, the setting of heat collecting sheet also exists structure that irrational problem is set, and can not fully effectively transmit heat, is necessary it is carried out architecture advances.
The utility model content
The purpose of this utility model is at the defective of prior art and deficiency, provides a kind of structure to be provided with rationally, can effectively to improve the multi-layer thin cavate heat exchanger of the band heat collecting sheet of utilization efficiency of heat energy.
For achieving the above object, the utility model is by the following technical solutions:
The multi-layer thin cavate heat exchanger of the utility model band heat collecting sheet comprises first floor metallic plate, tail layer metallic plate, is located at the multilayer middle level metallic plate between first floor metallic plate and the tail layer metallic plate; Described first floor metallic plate comprises the first recessed basin and is connected in the sheet metal on all edges of the first recessed basin basin mouth that the described first recessed basin is provided with water inlet; Described tail layer metallic plate comprises the 3rd recessed basin and is connected in the sheet metal on all edges of the 3rd recessed basin basin mouth that the described the 3rd recessed basin is provided with delivery port; Described middle level metallic plate comprises the second recessed basin and is connected in the sheet metal on all edges of the second recessed basin basin mouth that the described second recessed basin is provided with through hole; The size shape of the described first recessed basin, the second recessed basin and the 3rd recessed basin is identical, described first floor metallic plate, multilayer middle level metallic plate and tail layer metallic plate be by the first recessed basin, the second recessed basin and the equidirectional successively stack fixed seal connection of the 3rd recessed basin, and between the first recessed basin and the second recessed basin of adjacent stack, form cavity between two the second recessed basins of adjacent stack and between second recessed basin of adjacent stack and the 3rd recessed basin; Described water inlet, through hole and delivery port form water stream channel.
Further, the described first recessed basin, the second recessed basin, the 3rd recessed basin and to be connected in the sheet metal on the week of basin mouth separately edge one-body molded, sheet metal forms heat collecting sheet, and is embedded with the collector metal sheet between adjacent two sheet metals.
Further, described collector metal sheet is some parallel metal thin plates or some bending metals thin plates, is vertical between the sheet metal.
Further, described collector metal sheet is a monoblock waveform sheet metal, is arranged between the sheet metal.
Further, described collector metal sheet is some " U " fonts or " C " font or " Z " font sheet metal, is arranged between the sheet metal.
Further, described collector metal sheet is embedded between the sheet metal by welding manner.
Further, the described first recessed basin, the second recessed basin and the 3rd recessed basin include recessed basin sidewall and recessed basin bottom surface, formed interior angle is greater than 90 ° between described recessed basin sidewall and the recessed basin bottom surface, the integral planar of described recessed basin bottom surface is shaped as circle, square or triangle, and described water inlet, through hole and delivery port are located on the recessed basin bottom surface; The recessed basin bottom periphery of the described second recessed basin is provided with some thin through holes.
Further, the described first recessed basin, the second recessed basin and the 3rd recessed basin are by the parallel successively stack of its recessed basin sidewall, and the recessed basin sidewall contact position of adjacent stack is by the welding manner fixing seal.
Further, be equipped with decoration on the described first recessed basin, the second recessed basin and the 3rd recessed basin inside and outside wall.
Further, described through hole is to be located at the macropore of recessed basin bottom surface one side or dispersion to be located at some apertures on the recessed basin bottom surface; Described first floor metallic plate, tail layer metallic plate and middle level metallic plate are made by copper, aluminium or steel, and the thickness of described first floor metallic plate and tail layer metallic plate is greater than the thickness of middle level metallic plate; There is connecting rod to be connected and fixed between described first floor metallic plate and the tail layer metallic plate in the periphery.
The utility model beneficial effect is: the present invention includes first floor metallic plate, middle level metallic plate and tail layer metallic plate, first floor metallic plate of the present invention, multilayer middle level metallic plate and tail layer metallic plate superpose successively by the first recessed basin provided thereon respectively, the second recessed basin and the 3rd recessed basin and fixedly connected, and between the first recessed basin and the second recessed basin of adjacent stack, form cavity between two the second recessed basins of adjacent stack and between second recessed basin of adjacent stack and the 3rd recessed basin, the sealing of cavity periphery.Cavity thickness size and peripheral around the heat collecting sheet size can be as required with the heat exchange effect and design decision, so the cavity effect has greatly increased the contact area of the unit water yield and metal, consubstantiality metal heat-conducting effect makes heat exchange more rapidly fully, so improve heat exchange efficiency greatly, reduce heat energy loss.The utility model has carried out effective architecture advances to the heat collecting sheet of being located between each recessed basin circumferential perimeter metallic plate simultaneously, has strengthened heat absorption of the present utility model and transmission effect effectively.
Description of drawings
Fig. 1 is an overall structure schematic diagram of the present utility model;
Fig. 2 is a front view of the present utility model;
Fig. 3 is the cutaway view of Y-Y among Fig. 2;
Fig. 4 is a K place structure for amplifying schematic diagram among Fig. 3;
Fig. 5 is the cutaway view of X-X among Fig. 2;
Fig. 6 is the structural representation of the utility model middle level metallic plate when being provided with the vertical bar shaped heat collecting sheet;
Fig. 7 is the structural representation during " Z " shape heat collecting sheet in the metallic plate of the utility model middle level.
Among the figure:
1, first floor metallic plate; 2, middle level metallic plate; 3, tail layer metallic plate; 4, water inlet;
5, delivery port; 6, through hole; 7, sheet metal; 8, the first recessed basin;
9, collector metal sheet; 10, cavity; 28, the second recessed basin; 38, the 3rd recessed basin;
81, recessed basin bottom surface; 82, recessed basin sidewall.
The specific embodiment
Below in conjunction with accompanying drawing the utility model is further described.
To shown in Figure 7, the multi-layer thin cavate heat exchanger of the utility model band heat collecting sheet comprises first floor metallic plate 1, tail layer metallic plate 3, is located at the multilayer middle level metallic plate 2 between first floor metallic plate 1 and the tail layer metallic plate 3 as Fig. 1.Described first floor metallic plate 1, middle level metallic plate 2 and tail layer metallic plate 3 constitute main member of the present utility model, by thermal conductivity preferably metal materials such as copper, aluminium or steel make, certainly the utility model is not limited to above several metal material, helps realizing that other metal material of the utility model purpose also can naturally.
Described first floor metallic plate 1 comprises that the first recessed basin 8 and the recessed basin bottom surface 81 of sheet metal 7, the first recessed basins 8 that are connected in all edges of the first recessed basin 8 basin mouths are provided with water inlet 4; The described sheet metal 7 and the first recessed basin 8 are integrated, and described recessed basin bottom surface 81 can be one-body molded with water inlet 4, and also can be mutually permanently connected forms.Described tail layer metallic plate 3 comprises that the 3rd recessed basin 38 and the recessed basin bottom surface 81 of sheet metal 7, the three recessed basins 38 that are connected in all edges of the 3rd recessed basin 38 basin mouths are provided with delivery port 5; Described sheet metal 7 and the 3rd recessed basin 38 are integrated, and described recessed basin bottom surface 81 can be one-body molded with delivery port 5, and also can be mutually permanently connected forms.Described middle level metallic plate 2 comprises that the second recessed basin 28 and sheet metal 7, the second recessed basins 28 that are connected in all edges of the second recessed basin 28 basin mouths are provided with through hole 6, and the described sheet metal 7 and the second recessed basin 28 and through hole 6 all are integrated.
The shape size of described first recessed basin 8, the second recessed basin 28 and the 3rd recessed basin 38 is identical, the position is corresponding, described first floor metallic plate 1, multilayer middle level metallic plate 2 and tail layer metallic plate 3 link to each other by first recessed basin 8, the second recessed basin 28 and the parallel successively stack fixing seal of the 3rd recessed basin 38, and at formation cavity 10 between the first recessed basin 8 and the second recessed basin 28 of adjacent stack, between two the second recessed basins 28 of adjacent stack and between second recessed basin 28 of adjacent stack and the 3rd recessed basin 38.
In the utility model, described first recessed basin 8, second recessed basin the 28, the 3rd recessed basin 38 is formed by connecting by recessed basin bottom surface 81 and recessed basin sidewall 82, and the interior angle that is become between described recessed basin sidewall 82 and the recessed basin bottom surface 81 is greater than 90 °.Be provided with like this, be mainly and be convenient to superpose better between first recessed basin 8, the second recessed basin 28 and the 3rd recessed basin 38 and form cavity, angle is big more, and the cavity of formation is thin more.It is circular, square or triangle that described recessed basin bottom surface 81 integral planar are shaped as, and is not limited to above several shape certainly, and other is any to help realizing that the utility model purpose and the shape that is convenient to manufacture all can.
In the utility model, have only between described first recessed basin 8, the second recessed basin 28 and the 3rd recessed basin 38 by between the recessed basin sidewall 82 successively contact in twos connect, the degree of depth of recessed basin to make enough can contact between the recessed basin sidewall 82 overlapping; Adopt the welding fixed seal connections in two recessed basin sidewall 82 contact positions of adjacent stack, help certainly realizing that other connected mode of the utility model purpose also can naturally.Described water inlet 4, through hole 6 and delivery port 5 form water stream channel, referring to Fig. 5.
Described through hole 6 is for being located at the macropore of recessed basin bottom surface 81 1 sides, through hole 6 between two the second recessed basins 28 of each the adjacent stack in multilayer middle level metallic plate 2 staggers relatively and sets up, to prolong water stream channel, make current flow through more metal coverings as much as possible, enlarge the contact area of water and each cavity 10, to realize heat exchange more fully, as shown in Figure 5.In addition, through hole 6 also can be for evenly being distributed in the some aperture (not shown)s on the recessed basin bottom surface 81, to disperse water body as much as possible, reaches the purpose that cavity 10 and water body fully contact.In addition, described recessed basin bottom surface 81 peripheries are provided with some pore (not shown)s, and recessed basin bottom surface 81 top pores can play scavenging action in order to be horizontally disposed with because of the utility model is whole, and recessed basin bottom surface 81 bottom pores can effectively stop incrustation scale to produce.
Be equipped with decoration on described first recessed basin 8, the second recessed basin 28 and the 3rd recessed basin 38 inside and outside walls, be provided with like this, can effectively increase the contact-making surface of water body and each cavity 10, heat exchanger effectiveness will further improve.
In the utility model, be embedded with collector metal sheet 9 between described each adjacent two recessed basin circumferential perimeter sheet metal 7.Collector metal sheet 9 can be vertical between the sheet metal 7 for some parallel metal thin plates; Also can be some bending metals thin plates, be vertical between the sheet metal 7; Can also be the waveform sheet metal, be arranged between sheet metal 7; Also can be some " U " fonts or " C " font or " Z " font sheet metal, be arranged between sheet metal 7; The contact method of collector metal sheet 9 between sheet metal 7 can be used welding manner, also can utilize the elastic performance of collector metal sheet 9 to block mode.In a word, the concrete shape of collector metal sheet 9 and structure is set can be unrestricted, it is provided with structure can be parallel with the hot-air ascent direction, also can with hot-air ascent direction angulation, its objective is to make hot-air in uphill process, contact all collector metal sheets 9 more fully, better realize heat exchange and heat transmission.
First floor metallic plate 1 of the present utility model and tail layer metallic plate 3 active force bigger because of need bear, its thickness also can be connected and fixed in the periphery with connecting rod between the head and the tail metallic plate greater than middle level metallic plate 2.
The above only is a better embodiment of the present utility model, so all equivalences of doing according to the described structure of the utility model patent claim, feature and principle change or modify, is included in the utility model patent claim.

Claims (10)

1. the multi-layer thin cavate heat exchanger of band heat collecting sheet is characterized in that: comprise first floor metallic plate (1), tail layer metallic plate (3), be located at the multilayer middle level metallic plate (2) between first floor metallic plate (1) and the tail layer metallic plate (3); Described first floor metallic plate (1) comprises the first recessed basin (8) and is connected in the sheet metal (7) on first recessed basin (8) basin mouth week edge that the described first recessed basin (8) is provided with water inlet (4); Described tail layer metallic plate (3) comprises the 3rd recessed basin (38) and is connected in the sheet metal (7) on the 3rd recessed basin (38) basin mouth week edge that the described the 3rd recessed basin (38) is provided with delivery port (5); Described middle level metallic plate (2) comprises the second recessed basin (28) and is connected in the sheet metal (7) on second recessed basin (28) basin mouth week edge that the described second recessed basin (28) is provided with through hole (6); The size shape of the described first recessed basin (8), the second recessed basin (28) and the 3rd recessed basin (38) is identical, described first floor metallic plate (1), multilayer middle level metallic plate (2) and tail layer metallic plate (3) be by the first recessed basin (8), the second recessed basin (28) and the equidirectional successively stack fixed seal connection of the 3rd recessed basin (38), and between the first recessed basin (8) and the second recessed basin (28) of adjacent stack, form cavity (10) between two the second recessed basins (28) of adjacent stack and between second recessed basin (28) of adjacent stack and the 3rd recessed basin (38); Described water inlet (4), through hole (6) and delivery port (5) form water stream channel.
2. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 1, it is characterized in that: the described first recessed basin (8), the second recessed basin (28), the 3rd recessed basin (38) and to be connected in the sheet metal (7) on the week of basin mouth separately edge one-body molded, sheet metal (7) forms heat collecting sheet, and is embedded with collector metal sheet (9) between adjacent two sheet metals (7).
3. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 2 is characterized in that: described collector metal sheet (9) is some parallel metal thin plates or some bending metals thin plates, is vertical between the sheet metal (7).
4. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 2 is characterized in that: described collector metal sheet (9) is a monoblock waveform sheet metal, is arranged between the sheet metal (7).
5. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 2 is characterized in that: described collector metal sheet (9) is some " U " fonts or " C " font or " Z " font sheet metal, is arranged between the sheet metal (7).
6. according to the multi-layer thin cavate heat exchanger of the arbitrary described band heat collecting sheet of claim 2-5, it is characterized in that: described collector metal sheet (9) is embedded between the sheet metal (7) by welding manner.
7. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 6, it is characterized in that: the described first recessed basin (8), the second recessed basin (28) and the 3rd recessed basin (38) include recessed basin sidewall (82) and recessed basin bottom surface (81), formed interior angle is greater than 90 ° between described recessed basin sidewall (82) and the recessed basin bottom surface (81), the integral planar of described recessed basin bottom surface (81) is shaped as circle, square or triangle, and described water inlet (4), through hole (6) and delivery port (5) are located on the recessed basin bottom surface (81); Recessed basin bottom surface (81) periphery of the described second recessed basin (28) is provided with some thin through holes.
8. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 7, it is characterized in that: the described first recessed basin (8), the second recessed basin (28) and the 3rd recessed basin (38) are by the parallel successively stack of its recessed basin sidewall (82), and recessed basin sidewall (82) contact position of adjacent stack is by the welding manner fixing seal.
9. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 7 is characterized in that: be equipped with decoration on the described first recessed basin (8), the second recessed basin (28) and the 3rd recessed basin (38) inside and outside wall.
10. the multi-layer thin cavate heat exchanger of band heat collecting sheet according to claim 7 is characterized in that: described through hole (6) is located at some apertures on the recessed basin bottom surface (81) for being located at the macropore of recessed basin bottom surface (81) one sides or dispersion; Described first floor metallic plate (1), tail layer metallic plate (3) and middle level metallic plate (2) are made by copper, aluminium or steel, and the thickness of described first floor metallic plate (1) and tail layer metallic plate (3) is greater than the thickness of middle level metallic plate (2); There is connecting rod to be connected and fixed between described first floor metallic plate (1) and the tail layer metallic plate (3) in the periphery.
CN2011200912841U 2010-05-21 2011-03-31 Multilayer thin cavity type heat exchanger with heat collecting pieces Expired - Lifetime CN202092482U (en)

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CN201020208562 2010-05-21
CN201020208562.2 2010-05-21
CN2011200912841U CN202092482U (en) 2010-05-21 2011-03-31 Multilayer thin cavity type heat exchanger with heat collecting pieces

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CN2011200912911U Expired - Lifetime CN202092495U (en) 2010-05-21 2011-03-31 Multi-channel multi-thin-chamber-layer type heat exchanger
CN2011200912841U Expired - Lifetime CN202092482U (en) 2010-05-21 2011-03-31 Multilayer thin cavity type heat exchanger with heat collecting pieces
CN2011200912926U Expired - Fee Related CN202024635U (en) 2010-05-21 2011-03-31 Combined multi-layer thin cavity type heat exchanger
CN2011200912748U Expired - Lifetime CN202092481U (en) 2010-05-21 2011-03-31 Multilayer thin cavity type heat exchanger
CN2011100800408A Expired - Fee Related CN102200397B (en) 2010-05-21 2011-03-31 Multi-layer thin cavity type heat exchanger

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CN2011200912911U Expired - Lifetime CN202092495U (en) 2010-05-21 2011-03-31 Multi-channel multi-thin-chamber-layer type heat exchanger

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CN2011200912926U Expired - Fee Related CN202024635U (en) 2010-05-21 2011-03-31 Combined multi-layer thin cavity type heat exchanger
CN2011200912748U Expired - Lifetime CN202092481U (en) 2010-05-21 2011-03-31 Multilayer thin cavity type heat exchanger
CN2011100800408A Expired - Fee Related CN102200397B (en) 2010-05-21 2011-03-31 Multi-layer thin cavity type heat exchanger

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CN (5) CN202092495U (en)
WO (1) WO2011143988A1 (en)

Cited By (1)

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Publication number Priority date Publication date Assignee Title
CN102200397A (en) * 2010-05-21 2011-09-28 戴佩裕 Multi-layer thin cavity type heat exchanger

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CN106123013A (en) * 2016-06-30 2016-11-16 刘启端 Modularity corrugated plate-type heat exchangers
CN106969344B (en) * 2017-05-07 2023-05-12 丁新平 Combined device for collecting waste steam and condensed water and generating steam

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Publication number Priority date Publication date Assignee Title
CN102200397A (en) * 2010-05-21 2011-09-28 戴佩裕 Multi-layer thin cavity type heat exchanger
CN102200397B (en) * 2010-05-21 2012-11-28 宁波多贝机械实业有限公司 Multi-layer thin cavity type heat exchanger

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CN202024635U (en) 2011-11-02
CN102200397B (en) 2012-11-28
CN202092495U (en) 2011-12-28
CN102200397A (en) 2011-09-28
CN202092481U (en) 2011-12-28
WO2011143988A1 (en) 2011-11-24

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