CN203897335U - Heat dissipation clothes - Google Patents

Heat dissipation clothes Download PDF

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Publication number
CN203897335U
CN203897335U CN201420282165.8U CN201420282165U CN203897335U CN 203897335 U CN203897335 U CN 203897335U CN 201420282165 U CN201420282165 U CN 201420282165U CN 203897335 U CN203897335 U CN 203897335U
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China
Prior art keywords
heat radiation
guide duct
vertical passage
radiation clothing
fan
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Expired - Fee Related
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CN201420282165.8U
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Chinese (zh)
Inventor
喻孟华
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Individual
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Individual
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Priority to CN201420282165.8U priority Critical patent/CN203897335U/en
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Abstract

Heat dissipation clothes comprise a front face part, a rear face part and two side face parts. The front face part is composed of a left half part and a right half part. The two side face parts are arranged between the front face part and the rear face part. The left half part and the rear face part form a first longitudinal channel located between surface cloth and inner cloth, the right half part and the rear face part form a first longitudinal channel located between the surface cloth and the inner cloth, and the two side face parts respectively form a second longitudinal channel located between the surface cloth and the inner cloth. A transverse channel is further formed between the surface cloth and the inner cloth and communicated with the upper ends of the first longitudinal channels and the upper ends of the second longitudinal channels. First air guide tubes are arranged in the first longitudinal channels, and second air guide tubes are arranged in the second longitudinal channels and used for guiding external air flows to the transverse channel, so that the air flows flow to the first air guide tubes in the first longitudinal channels from the transverse channel and flow out of openings in the lower ends of the first air guide tubes.

Description

Heat radiation clothing
Technical field
The utility model relates to a kind of heat radiation clothing, particularly relates to a kind of heat radiation clothing with exhaust passage.
Background technology
Conventionally in order to make workplace unlikely too sultry, people can install cold air to reduce room temperature in workplace, but because cold air power consumption is large and can discharge a large amount of hot gas and cause global warming, therefore in order to reduce energy resource consumption and to slow down global warming, U.S. US7,272, No. 946 patent proposes a kind of can heat radiation so that human body feels comfortably cool and the heat radiation clothing of low power consumption.This heat radiation clothing has a lining and a table cloth, and before clothes and the top at the back side is provided with an air inlet, below is provided with a gas outlet, fan can be installed in air inlet and be blown into air in air inlet, or be installed in gas outlet by the air sucking-off in clothes, get rid of whereby the hot gas in clothes, reach the effect of heat radiation.
But the gas outlet of the gas outlet of the air inlet of this heat radiation clothing back side top, below and above below is blocked while easily pressing close to an object because of the people's of dress rear face, waist or belly, and cannot allow air circulate smoothly, so that the effect of impact heat radiation.
Utility model content
The purpose of this utility model is to provide one can allow air enter smoothly in clothes and circulates and discharge, to produce the heat radiation clothing of great heat radiation effect.
A kind of heat radiation of the utility model clothing, comprises a clothing body, three the first guide ducts, two the second guide ducts, two fans and a controller.This clothing body has a table cloth and a lining, and comprise the front face being formed by a left side and a right-hand part, one rear face, two side surface part between this front face and this rear face, and one connect this front face, the bottom of this rear face and these two side surface part, this left side, this right-hand part and this rear face form respectively first vertical passage between this table cloth and this lining, and these two side surface part form respectively second vertical passage between this table cloth and this lining, between this table cloth and this lining, also form an interconnection, it is connected with the upper end of described the second vertical passage with described the first vertical passage, described the first guide duct respectively correspondence is located at respectively this first vertical passage, described the second guide duct respectively correspondence is located at respectively this second vertical passage, these two fans are located at this bottom, and correspond respectively to a lower ending opening of this second guide duct in each this second vertical passage, enter respectively this second guide duct to blow an air-flow, and by each this second guide duct, this air-flow is directed to this interconnection, make to flow to respectively this first guide duct in each this first vertical passage via this interconnection, and flowed out by an each lower ending opening of this first guide duct, this controller is located at this bottom, and with described fan electric coupling, to control the rotating speed of described fan.
Preferably, this heat radiation clothing also comprises the first connector of being located between this left side and this right-hand part, and second connector of being located between this left side, this right-hand part, this rear face, the lower edge of these two side surface part and the upper limb of this bottom, this first connector can be connected this left side or separation with this right-hand part, and this second connector can connect Yu Gai left side, this bottom, this right-hand part, this rear face, these two side surface part or separate.
Preferably, this first connector and this second connector are slide fastener or magic felt.
Preferably, this heat radiation clothing also comprises two cooling chips of being located at respectively on each this fan, and this controller and this two cooling chip electric couplings, to provide power supply to these two cooling chips and to control one and press close to the temperature that the cold junction of this fan produces.
Preferably, this heat radiation clothing also comprises two radiating fins that are arranged on this bottom, and it contacts to dispel the heat with an each hot junction of this cooling chip.
Preferably, this heat radiation clothing also comprises a remote controller, and its remote-controlled this controller makes to control the start of described fan and described cooling chip.
Preferably, on the surface that described the first vertical passage of the formation of this heat radiation clothing is relative with this lining with this table cloth of described the second vertical passage, be also formed with several spacer blocks.
Preferably, in this interconnection, the close respectively both sides of this second vertical passage upper end are also respectively equipped with one the 3rd guide duct.
Preferably, described the first guide duct, described the second guide duct and described the 3rd guide duct are linked and are formed by the hollow pipe fitting of multiple splicings removably.
Or, preferably, described the first guide duct, described the second guide duct and described the 3rd guide duct are pliability air guide members, it comprises the wind guide channel and the multiple alar part that is formed at these relative both sides, wind guide channel bottom surface that take the shape of the letter U without exception, and described alar part is seamed on this lining, make the bottom surface of this wind guide channel press close to this lining, and an opening of this wind guide channel hides towards this table cloth and by this table cloth, and form a wind-guiding pipeline between this wind guide channel and this table cloth.
Preferably, this heat radiation clothing also comprises that two are separately fixed at the respectively fastener of this fan, its can with a joint clamping of an outside airduct, make this outside airduct be sent to respectively this fan from the cold air of a low-temperature receiver, via each this fan, the cold air of this low-temperature receiver is sent in corresponding respectively this second guide duct.
The beneficial effects of the utility model are: by the both sides at heat radiation clothing and the first vertical passage and the second vertical passage that inside middle setting is connected with interconnection, and in first and second vertical passage, insert respectively the first guide duct and the second guide duct, and the air-flow of fan being sent into by the second guide duct is directed to interconnection, make to absorb human chest, after the hot gas that back and oxter produce, again hot gas is disposed to heat radiation clothing outside via the first guide duct, the clothing that makes to dispel the heat is brought into play good radiating effect, and heat radiation clothing can also be by collocation cooling chip, radiating fin, outside airduct or be arranged on the 3rd guide duct in interconnection, further promote its radiating efficiency.
Brief description of the drawings
Fig. 1 is the planar configuration schematic diagram of the first preferred embodiment of the utility model heat radiation clothing.
Fig. 2 shows that the first preferred embodiment heat radiation clothing has the schematic diagram of a table cloth and a lining, wherein goes back the surface that display list cloth is relative with lining and is provided with spacer block.
Fig. 3 is the main circuit block diagram of the first preferred embodiment heat radiation clothing.
Fig. 4 is the organigram of the front face of the first preferred embodiment heat radiation clothing.
Fig. 5 is the organigram of the rear face of the first preferred embodiment heat radiation clothing.
Fig. 6 is the organigram of the side surface part of the first preferred embodiment heat radiation clothing.
Fig. 7 is the organigram of the hollow pipe fitting of the first preferred embodiment heat radiation clothing.
Fig. 8 is the organigram of the first preferred embodiment heat radiation fastener of clothing and the joint of an outer air duct.
Fig. 9 shows the first preferred embodiment heat radiation fastener of clothing and joint phase clamping of outer air duct.
Figure 10 shows that the joint of outer air duct departs from the fastener of the first preferred embodiment heat radiation clothing.
Figure 11 is the planar configuration schematic diagram of the second preferred embodiment of the utility model heat radiation clothing.
Figure 12 is the organigram of the pliability air guide member of the second preferred embodiment heat radiation clothing.
Figure 13 is that the pliability air guide member of the second preferred embodiment seams the schematic diagram at the lining of heat radiation clothing.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is elaborated.
Referring to shown in Fig. 1 to Fig. 3, be the first preferred embodiment of the utility model heat radiation clothing, it at least comprises a clothing body 1, three the first guide duct 2, two the second guide duct 3, two fans 4 and controllers 5.Clothing body 1 has a table cloth 11 and a lining 12, and comprise the front face 13, a rear face 14 and two side surface part 15 between front face 13 and rear face 14 that are formed by a left side 131 and a right-hand part 132, and the bottom 16 of connection front face 13, rear face 14 and these two side surface part 15.Wherein lining 12 adopts hygroscopic sweat-discharging fabric conventionally.And as the internal structure of the clothing body 1 of Fig. 1 demonstration between table cloth 11 and lining 12, left side 131, right-hand part 132 and rear face 14 form respectively one at the first vertical passage 17 of showing between cloth 11 and lining 12, and two side surface part 15 form respectively one at the second vertical passage 18 of showing between cloth 11 and lining 12, and between table cloth 11 and lining 12, also form an interconnection 19, it is connected with the upper end of described the first vertical passage 17 and described the second vertical passage 18.
Described the first guide duct 2 respectively correspondence is located at respectively this first vertical passage 17, and described the second guide duct 3 respectively correspondence be located at respectively this second vertical passage 18.Two fans 4 are located at bottom 16, for example be fixed between the table cloth 11 and lining 12 of bottom 16, and correspond respectively to a lower ending opening 31 of the second guide duct 3 in each this second vertical passage 18, and one air intake vent 41 is outer to be exposed on table cloth 11, an airflow blow in the external world is entered to respectively this second guide duct 3, and by each this second guide duct 3, air-flow is directed to interconnection 19, make after interconnection 19, flow to again respectively this first guide duct 2 in each this first vertical passage 17, and flowed out by an each lower ending opening 21 of this first guide duct 2.
Whereby, in the time of human body dress heat radiation clothing, as shown in Fig. 1 and Fig. 4 to Fig. 6, the interconnection 19 of the present embodiment can the most easily be discharged through human body chest, back and the underarm region of hot gas or moisture (sweat).Therefore, hot gas or moisture (sweat) that the human body that lining 12 absorbs is discharged can penetrate in interconnection 19, and send into the air-flow of interconnection 19 through the second guide duct 3 by fan 4, hot gas in interconnection 19 or moisture are taken away, and respectively this first guide duct 2 of the flow direction, lower ending opening 21 via the first guide duct 2 is discharged, and reaches the effect that makes human-body radiating.And because the second vertical passage 18 and fan 4 are arranged on the left and right sides of heat radiation clothing, even when therefore the people's of dress back, waist or belly are pressed close to an object, the air intake vent 41 of fan 4 can't be blocked, make air still can enter smoothly the second guide duct 3, and due to the lower ending opening 21 of the first guide duct 2 down, therefore air also can successfully be discharged from the lower ending opening 21 of the first guide duct 2, and can not affect the effect of heat radiation.
And preferably, as shown in Figure 1, in order to allow the air flow energy that enters interconnection 19 strengthen heat radiation for privileged sites such as chest, back and the oxters of human body, the present embodiment also can also be distinguished accommodating 1 the 3rd guide duct 6 in the close respectively both sides of these the second vertical passage 18 upper ends in interconnection 19, it can allow the air-flow that enters interconnection 19 concentrate on the privileged sites such as chest, back and oxter with respect to human body, dispels the heat to strengthen the positions such as chest, back and oxter to human body.
Described the first guide duct 2, the second guide duct 3 and the 3rd guide duct 6 of the present embodiment, as shown in Fig. 1 and Fig. 7, are linked and are formed by the hollow pipe fitting 7 of multiple splicings removably again.Hollow pipe fitting 7 mainly comprises a body 71 and is located at a linking part 72 of body 71 both sides.One end of linking part 72 has a lug 73, and the other end has a pothole 74 matching with lug 73.Therefore, hollow pipe fitting 7 can be connected into the first guide duct 2, the second guide duct 3 and the 3rd guide duct 6 with different length by the mutual series connection group of linking part 72.
The controller 5 of the present embodiment is located at bottom 16, be for example fixed between the table cloth 11 and lining 12 of bottom 16, and with described fan 4 electric couplings, to control the rotating speed of described fan 4.And bottom 16 is also provided with a power supply 52, for example rechargeable battery, in order to power to described fan 4 and controller 5.
Shown in Figure 1 again, the heat radiation clothing of the present embodiment also has the first connector 133 of being located between left side 131 and right-hand part 132, and one be located at left side 131, right-hand part 132, rear face 14, the second connector 161 between the upper limb of the lower edge of two side surface part 15 and bottom 16, and the first connector 133 can be connected left side 131 or separation with right-hand part 132, wear off heat radiation clothing with person easy to use, the second connector 161 can be by bottom 16 and left side 131, right-hand part 132, rear face 14 and two side surface part 15 connect or separate, whereby, in the time that heat radiation clothing need to clean, can will fan 4 be set, the bottom 16 of the circuit such as controller 5 and power supply 52 disassembles from heat radiation clothing, to facilitate the cleaning of heat radiation clothing.And preferably, the first connector 133 and the second connector 161 can be the coupling assemblings that slide fastener, magic felt or other can reach identical function.
In addition,, for further improving radiating effect, as shown in Figure 1, also can the cooling chip 50 that a controlled device 5 is controlled be set in the outside wall surface of an exhaust passage 42 of each fan 4.One cold junction (not shown) of cooling chip 50 is pressed close to the outside wall surface of the exhaust passage 42 of fan 4, so that the air-flow cooling (turning cold) of the exhaust passage 42 of flowing through is entered in interconnection 19 via entering the second guide duct 3 again.And when the temperature of the cold junction of cooling chip 50 is lower, the temperature of a hot junction (not shown) of cooling chip 50 will be higher, so if the temperature in the hot junction of cooling chip 50 can be declined, the temperature of its cold junction just can be lower.
Therefore, in order to improve the usefulness of cooling chip 50, as Fig. 1 and as shown in, the present embodiment also can arrange a radiating fin 51 again in the hot junction of each cooling chip 50, being dispelled the heat in hot junction, make hot junction cooling, cold junction can drop to more low temperature, and the clothing that makes to dispel the heat can produce better radiating effect.
And, in order to allow lining 12 and the table cloth 11 of heat radiation clothing can be not bonded to each other and block first, second vertical passage 17,18 and interconnection 19, as shown in Figure 2, the present embodiment is also on table cloth 11 surface relative with lining 12, on the surface that particularly described first, second vertical passage 17,18 is relative with lining 12 with the table cloth 11 at interconnection 19 places, form number spacer block 10.
Moreover, bottom 16 is except being also provided with an operated key 162, start controller 5 for user, this operated key 162 can have been distinguished two operation control surface version (not shown), with the cooling power of regulation and control fan 4 rotating speeds and cooling chip 50, the mixing control of these both patterns, can allow heat radiation clothing freely be adjusted to the exothermic temperature that user likes depending on environment for use, really can allow heat radiation clothing expand the selection in serviceability temperature interval, in addition, as shown in Figure 3, the controller 5 of the present embodiment also can be by a remote controller 100, for example there is the remote control such as mobile phone or universal remote controller of distant control function.
Moreover, shown in Fig. 1 and Fig. 8 to Figure 10, the heat radiation clothing of the present embodiment also can further comprise that two are separately fixed at the respectively fastener 9 of this fan 4, two relative screws 92 that it has a snapping ring 91 and is formed on snapping ring 91 outside wall surface, and the screw 92 of fastener 9 can with the corresponding screw lock of screw 43 of being located at air intake vent 41 lateral borders of fan 4, and fastener 9 is locked on fan 4, and make the opening of its snapping ring 91 aim at the air intake vent 41 of fan 4.And the internal face of snapping ring 91 is provided with a shell fragment 93, therefore, in the time that a joint 201 of an outside airduct 200 has just stretched into snapping ring 91, can compress shell fragment 93, and in the time that joint 201 stretches into snapping ring 91 completely, shell fragment 93 resiliences of snapping ring 91 internal faces also snap in a groove 202 of joint 201 outside wall surface, make joint 201 and the tight clamping of snapping ring 91.Whereby, one external source, for example cold air conditioner equipment can see through outside airduct 200 be transported to respectively this fan 4 by the cold air of generation, then via each this fan 4, cold air is sent in corresponding respectively this second guide duct 3, make cold air be directed to interconnection 19, so that human body is dispelled the heat.Whereby, the radiating effect of heat radiation clothing further.
And in the time outside airduct 200 will being departed from fastener 9, as shown in figure 10, as long as the joint of outside airduct 200 201 is rotated, make the shell fragment 93 of fastener 9 leave the groove 202 of joint 201, joint 201 can be departed from from fastener 9.
Shown in Figure 11 again, it is the second preferred embodiment of the utility model heat radiation clothing, itself and above-mentioned the first embodiment main difference be in: described the first guide duct 2 ', the second guide duct 3 ' and the 3rd guide duct 6 ' are to adopt the integrated pliability air guide member 8 shown in Figure 12, and it comprises the wind guide channel 81 and the multiple alar part 82 that is formed at wind guide channel 81 relative both sides, bottom surface that take the shape of the letter U without exception.And as shown in figure 13, the alar part 82 of pliability air guide member 8 is seamed on the lining 12 that is fixed on heat radiation clothing, make the bottom surface of wind guide channel 81 press close to lining 12, and the opening 83 of wind guide channel 81 hides towards table cloth 11 surface fabric 11, and in wind guide channel 81 with show to form a wind-guiding pipeline 84 between cloth 11.
Whereby, as shown in figure 11, similarly, the air-flow that the second guide duct 3 ' can be sent into fan 4 is directed to interconnection 19, by the 3rd guide duct 6 ' in interconnection 19, air-flow is suitably directed to ad-hoc location again, after being dispelled the heat in the positions such as chest, back and the oxter of reinforcement to human body, the hot gas in interconnection 19 or moisture is taken away, and discharge via the first guide duct 2 ', and reach the effect that makes human body efficiently radiates heat.
In sum, above-described embodiment arranges by the both sides at heat radiation clothing and middle inside the first vertical passage 17 and the second vertical passage 18 that are connected with interconnection 19, and in first and second vertical passage 17,18, insert respectively the first guide duct 2,2 ' and second guide duct 3,3 ', and be directed to interconnection 19 by the second guide duct 3, the 3 ' air-flow that fan 4 is sent into, make to absorb after the hot gas of human chest, back and oxter generation, again hot gas is disposed to heat radiation clothing outside via the first guide duct 2,2 ', heat radiation clothing is brought into play good radiating effect; And heat radiation clothing can also or be arranged on the 3rd guide duct 6,6 ' in interconnection 19 by collocation cooling chip 50, radiating fin 51, outside airduct 200, further promotes its radiating effect, really reaches the purpose of this utility model and effect.

Claims (11)

1. a heat radiation clothing, is characterized in that:
This heat radiation clothing comprises:
One clothing body, there is a table cloth and a lining, and comprise the front face being formed by a left side and a right-hand part, one rear face, two side surface part between this front face and this rear face, and one connect this front face, the bottom of this rear face and these two side surface part, this left side, this right-hand part and this rear face form respectively first vertical passage between this table cloth and this lining, and these two side surface part form respectively second vertical passage between this table cloth and this lining, between this table cloth and this lining, also form an interconnection, it is connected with the upper end of described the second vertical passage with described the first vertical passage,
Three the first guide ducts, correspondence is located at respectively this first vertical passage respectively;
Two the second guide ducts, correspondence is located at respectively this second vertical passage respectively;
Two fans, be located at this bottom and correspond respectively to a lower ending opening of this second guide duct in each this second vertical passage, enter respectively this second guide duct to blow an air-flow, and by each this second guide duct, this air-flow is directed to this interconnection, make to flow to respectively this first guide duct in each this first vertical passage via this interconnection, and flowed out by an each lower ending opening of this first guide duct; And
One controller, is located at this bottom, and with described fan electric coupling, to control the rotating speed of described fan.
2. heat radiation clothing according to claim 1, it is characterized in that: this heat radiation clothing also comprises the first connector of being located between this left side and this right-hand part, and second connector of being located between this left side, this right-hand part, this rear face and the lower edge of these two side surface part and the upper limb of this bottom, this first connector can be connected this left side or separation with this right-hand part, and this second connector can connect Yu Gai left side, this bottom, this right-hand part, this rear face, these two side surface part or separate.
3. heat radiation clothing according to claim 2, is characterized in that: this first connector and this second connector are slide fastener or magic felt.
4. according to the heat radiation clothing described in claim 1,2 or 3, it is characterized in that: this heat radiation clothing also comprises two cooling chips of being located at respectively on each this fan, and this controller and this two cooling chip electric couplings, to provide power supply to these two cooling chips and to control one and press close to the temperature that the cold junction of this fan produces.
5. heat radiation clothing according to claim 4, is characterized in that: this heat radiation clothing also comprises two radiating fins that are arranged on this bottom, and it contacts to dispel the heat with an each hot junction of this cooling chip respectively.
6. heat radiation clothing according to claim 4, is characterized in that: this heat radiation clothing also comprises a remote controller, and its remote-controlled this controller makes to control the start of described fan and described cooling chip.
7. heat radiation clothing according to claim 4, is characterized in that: form on the surface that described the first vertical passage is relative with this lining with this table cloth of described the second vertical passage and be also formed with several spacer blocks.
8. heat radiation clothing according to claim 1, is characterized in that: in this interconnection, the close respectively both sides of this second vertical passage upper end are also respectively equipped with one the 3rd guide duct.
9. heat radiation clothing according to claim 8, is characterized in that: described the first guide duct, described the second guide duct and described the 3rd guide duct are linked and formed by the hollow pipe fitting of multiple splicings removably.
10. heat radiation clothing according to claim 1, it is characterized in that: this heat radiation clothing also comprises that two are separately fixed at the respectively fastener of this fan, its can with a joint clamping of an outside airduct, make this outside airduct be sent to respectively this fan from the cold air of a low-temperature receiver, via each this fan, the cold air of this low-temperature receiver is sent in corresponding respectively this second guide duct.
11. heat radiation clothing according to claim 8, it is characterized in that: described the first guide duct, described the second guide duct and described the 3rd guide duct are pliability air guide members, it comprises the wind guide channel and the multiple alar part that is formed at these relative both sides, wind guide channel bottom surface that take the shape of the letter U without exception, and described alar part is seamed on this lining, make the bottom surface of this wind guide channel press close to this lining, and an opening of this wind guide channel hides towards this table cloth and by this table cloth, and forms a wind-guiding pipeline between this wind guide channel and this table cloth.
CN201420282165.8U 2014-05-29 2014-05-29 Heat dissipation clothes Expired - Fee Related CN203897335U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420282165.8U CN203897335U (en) 2014-05-29 2014-05-29 Heat dissipation clothes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420282165.8U CN203897335U (en) 2014-05-29 2014-05-29 Heat dissipation clothes

Publications (1)

Publication Number Publication Date
CN203897335U true CN203897335U (en) 2014-10-29

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420282165.8U Expired - Fee Related CN203897335U (en) 2014-05-29 2014-05-29 Heat dissipation clothes

Country Status (1)

Country Link
CN (1) CN203897335U (en)

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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

Granted publication date: 20141029

Termination date: 20160529