CN204229298U - Terminal device - Google Patents

Terminal device Download PDF

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Publication number
CN204229298U
CN204229298U CN201420674797.9U CN201420674797U CN204229298U CN 204229298 U CN204229298 U CN 204229298U CN 201420674797 U CN201420674797 U CN 201420674797U CN 204229298 U CN204229298 U CN 204229298U
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Prior art keywords
wind guide
guide tank
terminal device
wind
air outlet
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CN201420674797.9U
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Chinese (zh)
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李自然
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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Abstract

The utility model is about a kind of terminal device, relates to computer equipment technical field, and fundamental purpose is the utilization factor of the wind improving terminal device fan inside, improves the heat dispersion of terminal device.The technical scheme of main employing is: terminal device, and comprise thermal source, radiating subassembly and housing, housing has accommodation space, and thermal source and radiating subassembly are all arranged in accommodation space, and radiating subassembly comprises fan and web member; Web member is provided with wind guide tank, and wind guide tank comprises air inlet and air outlet, and the air inlet of wind guide tank is communicated with the air outlet of fan; Be provided with flow dividing structure in wind guide tank, flow dividing structure is used for wind guide tank to be isolated into multiple splitter box, and multiple splitter box is used for the wind be blown into by fan in wind guide tank and exports to setting regions along setting track by the air outlet of wind guide tank; Thermal source is arranged in wind guide tank, and passes the sidewall of multiple splitter box.The utility model is mainly used in notebook computer or panel computer etc.

Description

Terminal device
Technical field
The utility model relates to computer equipment technical field, particularly relates to a kind of terminal device.
Background technology
At present, terminal device, as notebook computer or panel computer etc., lightening design becomes a kind of main flow gradually.The thickness of terminal device is thinner, and it is higher to the requirement of cooling system.And along with the continuous lifting of electronic product performance, the power consumption of electronic product also in continuous increase, cause electronic product chip temperature in use and surface temperature all more and more higher.
In prior art, terminal device is generally dispelled the heat to the mode that thermal source is dried by fan.Particularly, the air outlet of fan, directly towards the direction of thermal source, dispels the heat to thermal source blowing after starting fan.Wherein, because the wind of fan outwards disperses blowout, the wind of fan all can not be blown on thermal source, thus cause the utilization factor of the wind of fan to reduce.In addition, because terminal device inside is also provided with other electronic devices and components a lot, the wind of fan is after these appliance components, owing to there is no correct guiding, easily form wadding stream in terminal device inside, make the air flowing of terminal device inside not smooth, thus cause the heat dispersion of terminal device to reduce.
Utility model content
In view of this, the utility model provides a kind of terminal device, and fundamental purpose is the utilization factor of the wind improving terminal device fan inside, improves the heat dispersion of terminal device.
For achieving the above object, the utility model mainly provides following technical scheme:
Embodiment of the present utility model provides a kind of terminal device, comprise thermal source, radiating subassembly and housing, described housing has accommodation space, and described thermal source and described radiating subassembly are all arranged in described accommodation space, and described radiating subassembly comprises fan and web member;
Described web member is provided with wind guide tank, and described wind guide tank comprises air inlet and air outlet, and the air inlet of described wind guide tank is communicated with the air outlet of described fan;
Flow dividing structure is provided with in described wind guide tank, described flow dividing structure is used for described wind guide tank to be isolated into multiple splitter box, and multiple described splitter box is used for the wind be blown into by described fan in described wind guide tank and exports to setting regions along setting track by the air outlet of described wind guide tank;
Described thermal source is arranged in described wind guide tank, and passes the sidewall of multiple described splitter box.
The purpose of this utility model and solve its technical matters and also can be applied to the following technical measures to achieve further.
Aforesaid terminal device, described flow dividing structure comprises the multiple dividing plates be arranged in described wind guide tank, and multiple described dividing plate successively interval is arranged, and forms described splitter box between adjacent two described dividing plates.
Aforesaid terminal device, the quantity of described thermal source and described radiating subassembly is multiple, and multiple described thermal source is arranged in the wind guide tank of different described radiating subassembly respectively.
Aforesaid terminal device, described terminal device comprises the sidewall forming described accommodation space, and described sidewall is provided with the first air outlet being communicated with described accommodation space;
The air outlet of described wind guide tank is arranged towards described first air outlet;
Described radiating subassembly also comprises heat radiator, and described heat radiator is between described first air outlet and the air outlet of described wind guide tank.
Aforesaid terminal device, described web member is metal connecting piece;
Described radiating subassembly also comprises soaking plate, and described soaking plate contacts with described metal connecting piece and described heat radiator respectively.
Aforesaid terminal device, described heat radiator is provided with storage tank, and described soaking plate is inserted in described storage tank.
Aforesaid terminal device, the sidewall of described wind guide tank is provided with opening, and described opening is used for the wind in described wind guide tank to export to outside described wind guide tank.
Aforesaid terminal device, described web member is provided with multiple heat dissipation metal post, and multiple described heat dissipation metal post is arranged at the described opening part outside described wind guide tank.
Aforesaid terminal device, described radiating subassembly also comprises air guide member, described air guide member is arranged in described wind guide tank, described air guide member can move relative to the bottom surface of described wind guide tank, and described air guide member is used for a part of wind in described wind guide tank to be exported to outside described wind guide tank by described opening.
Aforesaid terminal device, described terminal device is notebook computer or panel computer.
By technique scheme, the utility model terminal device at least has following advantages:
Because be provided with wind guide tank on web member, the wind that fan can blow out by wind guide tank exports to setting regions along setting track, flow dividing structure is provided with in wind guide tank, wind guide tank is isolated into multiple splitter box by the flow dividing structure in wind guide tank, the wind that fan is blown out olderly flowage under the guiding of multiple splitter box, effectively can avoid the generation of terminal device interior batt stream, and accelerate the flowing of terminal device inner air, thus improve the heat dispersion of terminal device.In addition, again because thermal source to be arranged in wind guide tank and through the sidewall of multiple splitter box, wind in splitter box can both be blown on thermal source, wherein, the wind that fan blows out is limited in wind guide tank by wind guide tank, and relative to prior art, the unordered of wind direction surrounding reducing fan is dispersed, the wind of fan is concentrated blown out by wind guide tank, thus improve the utilization factor of the wind of fan.
Above-mentioned explanation is only the general introduction of technical solutions of the utility model, in order to better understand technological means of the present utility model, and can be implemented according to the content of instructions, coordinates accompanying drawing to be described in detail as follows below with preferred embodiment of the present utility model.
Accompanying drawing explanation
Fig. 1 is the part-structure schematic diagram of a kind of terminal device that embodiment of the present utility model provides;
Fig. 2 is the radiating subassembly of another kind of terminal device that provides of embodiment of the present utility model and the connection diagram of thermal source.
Embodiment
For further setting forth the utility model for the technological means reaching predetermined utility model object and take and effect, below in conjunction with accompanying drawing and preferred embodiment, to according to the embodiment of the utility model application, structure, feature and effect thereof, be described in detail as follows.In the following description, the not necessarily same embodiment that different " embodiment " or " embodiment " refers to.In addition, special characteristic, structure or feature in one or more embodiment can be combined by any suitable form.
As shown in Figure 1, a kind of terminal device that an embodiment of the present utility model proposes, comprises thermal source 2, radiating subassembly 3 and housing 1.Housing 1 has accommodation space 11, and thermal source 2 and radiating subassembly 3 are all arranged in accommodation space 11.Radiating subassembly 3 comprises fan 31 and web member 32.
Web member 32 is provided with wind guide tank 321, wind guide tank 321 comprises air inlet 3211 and air outlet 3212, the air inlet 3211 of wind guide tank 321 is communicated with the air outlet 311 of fan 31, be provided with flow dividing structure 4 in wind guide tank 321, flow dividing structure 4 is for being isolated into multiple splitter box (not indicating in figure) by wind guide tank 321.Multiple splitter box is used for the wind be blown into by fan 31 in wind guide tank 321 and exports to setting regions along setting track by the air outlet 3212 of wind guide tank 321.Particularly, the well-regulated outer shape of air outlet 311 tool of fan 31, the outer shape of the air inlet 3211 of wind guide tank 321 and the outer shape of fan outlet 311 adapt, the air outlet 311 of fan 31 is arranged mouth to mouth with the air inlet 3211 of wind guide tank 321, the wind energy of fan 31 is blown in wind guide tank 321 enough smoothly, and derives via the air outlet 3212 of wind guide tank 321.Wherein, the outer shape of the two ends sidewall of wind guide tank 321 defines aforesaid setting track, and the sidewall of wind guide tank 321 can be the wind guiding of fan 31, makes the setting track flowing that the wind of fan 31 is formed along sidewall.
Thermal source 2 is arranged in wind guide tank 321, and passes the sidewall of multiple splitter box.
Wherein, because be provided with wind guide tank 321 on web member 32, the wind that fan 31 can blow out by wind guide tank 321 exports to setting regions along setting track, flow dividing structure 4 is provided with in wind guide tank 321, wind guide tank 321 is isolated into multiple splitter box by the flow dividing structure 4 in wind guide tank 321, the wind that fan 31 is blown out olderly flowage under the guiding of multiple splitter box, effectively can avoid the generation of terminal device interior batt stream, the wind preventing fan 31 from blowing out clashes, and accelerate the flowing of terminal device inner air, thus improve the heat dispersion of terminal device.In addition, again because thermal source 2 to be arranged in wind guide tank 321 and through the sidewall of multiple splitter box, make the wind in splitter box can both blow on thermal source 2, wherein, the wind that fan 31 blows out is limited in wind guide tank 321 by wind guide tank 321, and relative to prior art, the unordered of wind direction surrounding reducing fan 31 is dispersed, the wind of fan 31 is concentrated blown out by wind guide tank 321, thus improve the utilization factor of the wind of fan 31.
Further, as depicted in figs. 1 and 2, in order to reduce the resistance of sidewall to wind of wind guide tank 321, the outer shape of the sidewall of wind guide tank 321 is curved.Certainly, in other embodiments, the outer shape of the sidewall of wind guide tank 321 also can be linear, shaped form etc., specifically can arrange according to the actual demand of user.
Further, as depicted in figs. 1 and 2, the quantity of aforesaid thermal source 2 and radiating subassembly 3 is multiple, and multiple thermal source 2 is arranged in the wind guide tank 321 of different radiating subassembly 3 respectively.Wherein, each thermal source 2 is all dispelled the heat by a radiating subassembly 3, thus improves the heat dispersion of terminal device.
Specifically when embodiment, aforesaid terminal device can be notebook computer or panel computer etc., and wherein, thermal source 2 comprises central processing unit (i.e. CPU) and video card (i.e. VGA) etc.In this terminal device, the quantity of radiating subassembly 3 is two, and central processing unit is arranged in the wind guide tank 321 of a radiating subassembly 3, and video card is arranged in the wind guide tank 321 of another radiating subassembly 3.Wherein, central processing unit and video card are high-power chip, a large amount of heat can be produced at work, inner at terminal device, central processing unit and video card dispel the heat respectively by a radiating subassembly 3, thus the working temperature of central processing unit and video card is greatly reduced, and then improve the heat radiation level of terminal device entirety.
Further, as depicted in figs. 1 and 2, aforesaid two radiating subassemblies 3 are symmetrical arranged, and thermal source 2 is arranged between the fan 31 of two radiating subassemblies 3.Wherein, two radiating subassemblies 3 can share a web member 32, thus save a part in terminal device inside, and then save the inner limited installing space of terminal device.
Further, in order to realize the function of aforementioned flow dividing structure 4, as depicted in figs. 1 and 2, the utility model also provides following embodiment: aforesaid flow dividing structure 4 comprises the multiple dividing plates (not indicating in figure) be arranged in wind guide tank 321, multiple dividing plate successively interval is arranged, and forms splitter box between adjacent two dividing plates.Particularly, the outer shape of dividing plate and the outer shape of wind guide tank 321 sidewall adapt, and form the structure of stratiform between multiple dividing plate.Wherein, dividing plate can be die cast metal part or sponge etc., specifically can arrange according to the actual demand of user.
Further, as shown in Figure 1, aforesaid terminal device comprises the sidewall 12 forming accommodation space 11, and sidewall 12 is provided with the first air outlet 121 being communicated with accommodation space 11.The air outlet 3212 of wind guide tank 321 is arranged towards the first air outlet 121; Radiating subassembly 3 also comprises heat radiator 5, and heat radiator 5 is between the first air outlet 121 and the air outlet 3212 of wind guide tank 321.Wherein, the hot blast blown out from wind guide tank 321 blows to heat radiator 5, and heat radiator 5 dispels the heat further to this hot blast, accelerates the air flowing of terminal device inside, improves the heat dispersion of terminal device further.
Further, aforesaid web member 32 is metal connecting piece 32, and metal connecting piece 32 has excellent heat conductivility.Further, this metal connecting piece 32 is aluminum component.As shown in Figure 2, radiating subassembly 3 also comprises soaking plate 6, and soaking plate 6 contacts with metal connecting piece 32 and heat radiator 5 respectively.Wherein, soaking plate 6 has excellent heat conductivity energy, and the heat that thermal source 2 produces conducts to heat radiator 5 by metal connecting piece 32 and soaking plate 6 and dispels the heat, thus improves the heat radiation level of terminal device.The soaking better performances of soaking plate 6, the heat that thermal source 2 can produce by soaking plate 6 exports to rapidly heat radiator 5, even if make the work of thermal source 2 high power consumption also have lower working temperature.Meanwhile, relative to prior art, the thickness of the Thickness Ratio heat pipe of soaking plate 6 is thin, and the space of occupied terminal device interior is less, through rational layout, is more conducive to the air-out of fan 31 relative to heat pipe, and is also conducive to the lightening design of terminal device.
Further, aforesaid heat radiator 5 is provided with storage tank (not indicating in figure), soaking plate 6 is inserted in storage tank, a part for soaking plate 6 is coated by heat radiator 5 institute, the heat of soaking plate 6 can outwards be dispersed by heat radiator 5 fast, be conducive to provide the uniform temperature of heat radiator 5, improve the heat dispersion of heat radiator 5.
Further, also can be arrived by the wind of fan 31 to make terminal device other electronic devices and components inner, reduce the surface temperature of terminal device, as depicted in figs. 1 and 2, the utility model also provides following embodiment: the sidewall 12 of aforementioned wind guide tank 321 is provided with opening 3213, and opening 3213 is for exporting to the wind in wind guide tank 321 outside wind guide tank 321.Wherein, opening 3213 is herein discharge orifice, wind guide tank 321 outside is provided with other electronic devices and components, the wind of the local in wind guide tank 321 blows toward wind guide tank 321 other electronic devices and components outer by opening 3213, thus accelerate the air flowing of accommodation space 11 inside, make terminal device entirety have good heat radiation, the surface temperature of terminal device is also lower simultaneously.
Specifically when implementing, as depicted in figs. 1 and 2, aforesaid web member 32 is provided with multiple heat dissipation metal post 322, multiple heat dissipation metal post 322 is arranged at opening 3213 place outside wind guide tank 321, thus all can through heat dissipation metal post 322 from the wind of opening 3213 blowout, heat dissipation metal post 322 can dispel the heat to terminal device inside further, improves the heat dispersion of terminal device.
Further, as shown in Figure 2, aforesaid radiating subassembly 3 also comprises air guide member 7, and air guide member 7 is arranged in wind guide tank 321, air guide member 7 can move relative to the bottom surface of wind guide tank 321, and air guide member 7 is for exporting to a part of wind in wind guide tank 321 outside wind guide tank 321 by opening.Wherein, in one embodiment, air guide member 7 is sponge, sponge is connected with the bottom surface of wind guide tank 321 is dismantled and assembled by glue etc., user can by the size of adjustment sponge and position, the air quantity flowed out outside wind guide tank 321 by opening is controlled, thus makes the chip temperature of terminal device and surface temperature reach good balance.
The above, it is only preferred embodiment of the present utility model, not any pro forma restriction is done to the utility model, the any simple modification done above embodiment according to technical spirit of the present utility model, equivalent variations and modification, all still belong in the scope of technical solutions of the utility model.

Claims (10)

1. a terminal device, comprises thermal source, radiating subassembly and housing, and described housing has accommodation space, and described thermal source and described radiating subassembly are all arranged in described accommodation space, it is characterized in that, described radiating subassembly comprises fan and web member;
Described web member is provided with wind guide tank, and described wind guide tank comprises air inlet and air outlet, and the air inlet of described wind guide tank is communicated with the air outlet of described fan;
Flow dividing structure is provided with in described wind guide tank, described flow dividing structure is used for described wind guide tank to be isolated into multiple splitter box, and multiple described splitter box is used for the wind be blown into by described fan in described wind guide tank and exports to setting regions along setting track by the air outlet of described wind guide tank;
Described thermal source is arranged in described wind guide tank, and passes the sidewall of multiple described splitter box.
2. terminal device as claimed in claim 1, it is characterized in that, described flow dividing structure comprises the multiple dividing plates be arranged in described wind guide tank, and multiple described dividing plate successively interval is arranged, and forms described splitter box between adjacent two described dividing plates.
3. terminal device as claimed in claim 1, it is characterized in that, the quantity of described thermal source and described radiating subassembly is multiple, and multiple described thermal source is arranged in the wind guide tank of different described radiating subassembly respectively.
4. terminal device as claimed in claim 1, it is characterized in that, described terminal device comprises the sidewall forming described accommodation space, and described sidewall is provided with the first air outlet being communicated with described accommodation space;
The air outlet of described wind guide tank is arranged towards described first air outlet;
Described radiating subassembly also comprises heat radiator, and described heat radiator is between described first air outlet and the air outlet of described wind guide tank.
5. terminal device as claimed in claim 4, it is characterized in that, described web member is metal connecting piece;
Described radiating subassembly also comprises soaking plate, and described soaking plate contacts with described metal connecting piece and described heat radiator respectively.
6. terminal device as claimed in claim 5, it is characterized in that, described heat radiator is provided with storage tank, and described soaking plate is inserted in described storage tank.
7. terminal device as claimed in claim 1, it is characterized in that, the sidewall of described wind guide tank is provided with opening, and described opening is used for the wind in described wind guide tank to export to outside described wind guide tank.
8. terminal device as claimed in claim 7, it is characterized in that, described web member is provided with multiple heat dissipation metal post, and multiple described heat dissipation metal post is arranged at the described opening part outside described wind guide tank.
9. terminal device as claimed in claim 7, it is characterized in that, described radiating subassembly also comprises air guide member, described air guide member is arranged in described wind guide tank, described air guide member can move relative to the bottom surface of described wind guide tank, and described air guide member is used for a part of wind in described wind guide tank to be exported to outside described wind guide tank by described opening.
10. the terminal device as described in any one of claim 1 to 9, is characterized in that, described terminal device is notebook computer or panel computer.
CN201420674797.9U 2014-11-06 2014-11-06 Terminal device Active CN204229298U (en)

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CN201420674797.9U CN204229298U (en) 2014-11-06 2014-11-06 Terminal device

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105116983A (en) * 2015-10-02 2015-12-02 汪凯 Novel heat dissipation module
CN110597356A (en) * 2019-09-12 2019-12-20 华为技术有限公司 Notebook computer
CN113107885A (en) * 2021-04-08 2021-07-13 合肥联宝信息技术有限公司 Heat dissipation structure and heat dissipation method for bottom surface of notebook computer

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105116983A (en) * 2015-10-02 2015-12-02 汪凯 Novel heat dissipation module
CN110597356A (en) * 2019-09-12 2019-12-20 华为技术有限公司 Notebook computer
CN113107885A (en) * 2021-04-08 2021-07-13 合肥联宝信息技术有限公司 Heat dissipation structure and heat dissipation method for bottom surface of notebook computer
CN113107885B (en) * 2021-04-08 2022-04-12 合肥联宝信息技术有限公司 Heat dissipation structure and heat dissipation method for bottom surface of notebook computer

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