TWM313413U - Water pump device for heat dissipation system - Google Patents

Water pump device for heat dissipation system Download PDF

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Publication number
TWM313413U
TWM313413U TW95216608U TW95216608U TWM313413U TW M313413 U TWM313413 U TW M313413U TW 95216608 U TW95216608 U TW 95216608U TW 95216608 U TW95216608 U TW 95216608U TW M313413 U TWM313413 U TW M313413U
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Taiwan
Prior art keywords
liquid
rotor
blade
water
space
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TW95216608U
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Chinese (zh)
Inventor
Guo-Jung Huang
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Thermotide Technology Inc
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Priority to TW95216608U priority Critical patent/TWM313413U/en
Publication of TWM313413U publication Critical patent/TWM313413U/en

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M313413 八、新型說明: 【新型所屬之技術領域】 本新型是有關於一種散熱系統之水泵裝置,特別是指 一種璺置於一散熱器上,藉該散熱器直接貼觸於一熱源表 面,利用水泵裝置内之葉片,將散熱器吸熱後之水流驅動 形成液流排出再作散熱,整體薄型化之散熱系統之水泵裝 置者。 【先前技術】 散熱系統之水泵裝置,顧名思意,是直接將一電子物 «π内的熱源,利用一泵浦強制帶動水流動對熱源作水冷卻 以運用於水冷式散熱的電腦為例,f知的散熱系統之水 泵裝置’如圖i所示’係在—水泵浦5的上面組設有一馬 達6 ’水泵浦5内設有容液空間5〇並設有一進液道μ及一 出液道52,於該容液空間5〇内並组設有_轴流葉片… 該軸流葉片53相當於一泵浦係組設於馬達6貫穿過散熱器 5並位在容液空間50中心的轉軸6〇上’當外部由儲液桶7 ,提供-液體通常是指「水」’經過—熱源7ι例如㈣, 將熱吸收,帶舰70’經一導管72由進液道以送入容 液空間5G,由容液空間5Q並經由中央進水管路送往軸流葉 片53作離心旋轉帶動,形成液體流動(簡稱為液流),經 由出液道52排出作後續散熱處理後, 丹1曰由另—管道73回 收至儲液桶7作循環處理,該散熱系統之錢裝置因 備。呆音低與壽命長的兩大因素,所以大 、/ 1妹用上述的離心 M313413 式泵浦’因除軸承外無任何機件相互摩擦 定子構造較子極61㈣線圈62是要有1口^2 發出足夠的動力使轉軸60旋轉達 "" 造通當菩招,认 ㈣預疋的扭矩’而定子極構 紐小的’因此在其上所纏繞線圈62要有一定的長 又’長度越長代表所繞的圈數越多,圈數越多馬達6的高 f越南’ $中央進水管路設於散熱器中央,其中央上方得 設置一U度的進水管’因此造成整體散熱系統之水果^M313413 VIII. New description: [New technical field] The present invention relates to a water pump device for a heat dissipation system, in particular to a raft placed on a heat sink, by which the heat sink directly contacts a heat source surface, and utilizes The blade in the water pump device drives the water flow after the heat sink absorbs heat to form a liquid flow discharge for heat dissipation, and the overall thinned heat pump system of the heat dissipation system. [Prior Art] The water pump device of the heat dissipation system, as the name implies, directly takes a heat source in an electronic object «π, using a pump to force the water to flow and heat the heat source to be used for water-cooled heat dissipation. For example, f The water pump device of the known heat dissipation system is shown in Fig. i. The pump unit 5 is provided with a motor 6. The water pump 5 is provided with a liquid storage space 5 and is provided with a liquid inlet channel μ and a The liquid outlet 52 is disposed in the liquid volume 5〇 and is provided with an axial flow vane. The axial flow vane 53 is equivalent to a pumping system, and the motor 6 is disposed through the heat sink 5 and is located in the liquid containing space 50. The center of the shaft 6 〇 'when externally provided by the liquid storage tank 7, the liquid is usually referred to as "water" 'passing through the heat source 7ι, for example (4), the heat is absorbed, and the ship 70' is sent from the inlet channel 72 through a conduit 72. The inlet liquid space 5G is sent from the liquid-containing space 5Q to the axial flow vane 53 via the central water inlet pipe for centrifugal rotation to form a liquid flow (referred to as a liquid flow), and is discharged through the liquid outlet 52 for subsequent heat treatment. Dan 1曰 is recycled from the other pipe 73 to the liquid storage tank 7 for recycling, and the heat dissipation system The money device is indispensable. There are two major factors: low sound and long life. Therefore, the large, / 1 sister uses the above-mentioned centrifugal M313413 type pump. Because there is no friction between the stator and the stator, the stator structure is better than the sub pole 61 (four) coil 62. 2 Sufficient power is given to rotate the shaft 60 up to "" to create a torque, and to recognize (4) the pre-twisted torque 'and the stator pole is small', so the coil 62 wound on it must have a certain length. The longer the length, the more the number of turns, the more the number of turns, the higher the motor 6 is. The central water inlet pipe is located in the center of the radiator, and a U-degree inlet pipe is provided at the center of the center. System fruit ^

置南度Η或者稱厚度無法減少,更無法直接貼設於一熱源 71表面作直接的吸熱’所以送人容液空間5q内的水川, 才需要用-儲液桶7以水7〇經熱源71另外作吸收再作匯 集傳达,所以絕對無法適用於作超薄筆記型電腦的散教, 因此,如何構思製造出一種藉散熱器直接貼觸於一熱源表 面,利用薄型馬達驅動-薄型幫浦内之葉#,將散熱器所 吸收熱源作水冷排出,整體薄龍的散熱系統之水果裝置 ,是一可改進的課題。 【新型内容】 因此,本新型之目的,即在提供一種疊置於一散熱器 上,藉该散熱器直接貼觸於一熱源表面,利用該水泵裝置 内之葉片,將散熱器所吸收熱源水流驅動形成液流排出再 作政熱’整體薄型化之散熱系統之水泵裝置。 於疋,本新型熱系統之水泵裝置,係在一薄型架設座 ,由頂面向下並凹設有一容設空間,該容設空間為一凹槽 ,使該薄型架設座在該方型凹槽的周圍形成有一薄框架, 在該容設空間的底部形成有一底壁,在該底壁的中央部位 6Set the south degree or the thickness can not be reduced, it can not be directly attached to the surface of a heat source 71 for direct heat absorption, so the water in the liquid space 5q is sent to the water, only need to use - the liquid storage tank 7 with water 7 〇 heat source 71 is also used for absorption and collection, so it is absolutely impossible to apply to the teaching of ultra-thin notebook computers. Therefore, how to conceive a kind of direct contact with a heat source surface by a heat sink, using a thin motor drive - thin type Pu Nei's Leaf #, the heat source absorbed by the radiator is discharged as water, and the fruit device of the overall thin dragon's heat dissipation system is an improvement problem. [New content] Therefore, the purpose of the present invention is to provide a heat sink on a heat sink that directly contacts a heat source surface and utilizes the blades in the water pump device to absorb the heat source flow of the heat sink. The water pump device that drives the liquid flow to discharge and then heats the heat thinness of the overall thinning. Yu Yu, the water pump device of the new thermal system is a thin erecting seat, and a receiving space is recessed from the top surface, and the receiving space is a groove, so that the thin erecting seat is seated in the square groove A thin frame is formed around the bottom of the receiving space, and a bottom wall is formed at the bottom of the receiving space.

M313413 貫穿設有通液孔,在該底壁以通液孔為中心點並距離通液 孔一適當距離’凸設有一葉片轉子架設環緣,將容設空間 區隔出一外圍的定子架設空間’内圍的葉片轉子架設空 ’ °亥底土在°亥葉片轉子架設環緣的兩側凸設有一進水凸 緣、-出水凸緣,貫通該出水凸緣設有一出液通道,並貫 穿通過於該處設有葉片轉子架設環緣而連通至葉片轉子架 設空間有一通液口,凸出架壁有一出液口,而該進水凸緣 凸出架壁有-進液口’由進液σ’局部貫通進水凸緣有一 水平進液道再向下並貫通底壁有一垂直進液道,在平行於 進水凸緣、出水凸緣的—對對應架壁與“轉子架設環緣 間的定子架設空間處,相映對稱地定位設有一對定子極, 各定子極具有-扁長繞線區段,於扁長繞線區段上並缠繞 有線圈’在葉片轉子架設空間内並置設入轉子及葉片,轉 子中心設有轉軸,葉片則組設於轉子上,葉片係向著底壁的 中央部位通液孔且在葉片轉子架設空間内可自由旋轉,葉 片轉子架設環緣頂部罩組一密封罩蓋,俾供與該定子架設 空間確實的隔離。 本新型之功效是使一散熱系統之水泵裝置,整體薄型 化增加其適用範圍,尤其適用於超薄筆記型電腦的散熱者 Ο 【實施方式】 有關本新型之前述及其他技術内容、特點與功效,在 以下配合參考圖式之一實施例的詳細說明中,將可清楚的 明白。 ' M313413 圖2疋本新型散熱系統之水泵裝置2的最佳實施例 並配合疊置於-散熱器1上使用之示意圖,其t : 3亥散熱15 1係為—具有液體通道11且頂部開放之薄型 殼座10’該液體通道u呈渦流形狀,具有一中心通道口 110及外圍端通道口1n,該薄型殼座10並具有一底面 12。 一 而本散熱系統之水^ 2,係在_高熱傳性的金屬材 質製成的薄型架設a 20,由頂面2。〇向下並凹設有一容設 121本貝鈿例為一方型凹槽,使該薄型架設座2〇在該 容設空間21的周圍形成有―方型薄框架22,在該容設空間 =的底部形成有n23,在該底壁的中央部位對準散熱 器1的液體通道n的中心通道口 110,貫穿設有通液孔24 ’在忒底壁23以通液孔24為中心點並距離通液孔24 一適 田碓凸。又有一葉片轉子架設環緣25,將容設空間2 j, 區隔出-外圍的定子架設空間21〇,内圍的葉片轉子架設空The M313413 is provided with a liquid-passing hole, and a blade rotor rim is protruded from the bottom wall with the liquid-permeable hole as a center point and an appropriate distance from the liquid-passing hole, and the outer space of the housing is separated by a peripheral stator erecting space. 'The inner rotor blade rotor is erected' °Hai subsoil has a water inlet flange and a water outlet flange on both sides of the circumference of the rotor blade erecting ring, and a water outlet channel is provided through the water outlet flange and penetrates through Wherein the blade rotor is provided with a rim and communicates to the blade rotor erecting space with a liquid outlet, the protruding wall has a liquid outlet, and the inlet flange protrudes from the wall with a liquid inlet The σ' partial through-water inlet flange has a horizontal inlet passage and a downward inlet and a vertical inlet passage through the bottom wall, parallel to the inlet flange and the outlet flange - between the corresponding frame wall and the "rotor mounting rim" At the stator erection space, a pair of stator poles are disposed symmetrically and symmetrically, and each stator pole has a flattened winding section, and a coil is wound on the flat long winding section and disposed in the blade rotor erecting space. Into the rotor and blades, the center of the rotor is provided The rotating shaft and the blade are arranged on the rotor, the blade is through the liquid hole in the central portion of the bottom wall and is freely rotatable in the space where the blade rotor is erected, and the blade rotor is erected with a sealing cover at the top of the ring edge, and the stator is provided with the stator The erection space is indeed isolated. The function of the new model is to make the water pump device of a heat dissipation system increase the overall thickness of the water pump device, and is particularly suitable for the heat sink of the ultra-thin notebook computer. [Embodiment] The foregoing and other related to the present invention The technical content, features and effects will be clearly understood in the following detailed description of an embodiment with reference to the drawings. ' M313413 FIG. 2 is a preferred embodiment of the water pump device 2 of the novel heat dissipation system and is superposed. The schematic diagram of the use on the heat sink 1 has a t: 3 ray heat dissipation 15 1 as a thin shell 10' having a liquid passage 11 and an open top. The liquid passage u has a vortex shape and has a central passage port 110 and a periphery. The end port 1n, the thin case 10 has a bottom surface 12. The water of the heat dissipation system is a thin erection of a metal material of high heat transfer property. 0, from the top surface 2. The cymbal is downwardly and concavely provided with a housing 121. The shell-shaped housing is a one-piece recess, so that the thin-shaped mounting base 2 is formed with a square thin frame 22 around the receiving space 21. An n23 is formed at the bottom of the accommodation space=, and a central passage opening 110 of the liquid passage n of the radiator 1 is aligned at a central portion of the bottom wall, and a through hole 24' is formed through the bottom wall 23 The liquid hole 24 is a center point and is located at a distance from the liquid passage hole 24. A blade rotor is provided with a rim 25 to accommodate the space 2 j, and the outer peripheral stator erecting space 21 〇, the inner circumference of the blade Rotor erection

間2»亥底壁23在該葉片轉子架設環緣25的兩側,向著 方型薄框帛22的-架壁220並凸伸出架壁22〇,另凸連設 有一進水凸緣26、—出水凸緣27,意即進水凸緣%、出^ 凸緣27設於定子架設空間2104 ’貫通出水凸緣27設有一 出液通道27G,並貝穿出葉片轉子架言史環緣連通葉片轉 子架設空間211有一通液口 271,凸出架壁22〇有一出液口 272’進水凸緣26凸出架壁22〇有一進液口剔,由進液口 260,局部貫通進水凸緣26有一水平進液道26ι再向下並貫 通底壁23有一垂直進液道262並連通散熱器丨液體通道u M313413 的外圍端通道口 111,在平行於進水凸緣26、出水凸緣27 的一對對應架壁221與葉片轉子架設環緣25間的定子架設 空間21〇處,對稱地定位設有一定子極28,各定子極“具 有一扁長繞線區段280,於扁長繞線區段28〇上並纏繞有線 圈281,在葉片轉子架設空間211内並置設入轉子29〇及葉 片291,轉子290中心設有轉軸292,葉片291則組設於轉子 290上,葉片291係向著底壁23的中央部位通液孔24且在 葉片轉子架設空間211内可自由旋轉,葉片轉子架設環緣 25頂部罩組一密封罩蓋29,該密封罩蓋”是防止葉片轉子 架設空間211頂部與定子架設空間21〇相連通,例如防水由 葉片轉子架設空間211滲進定子架設空間21〇。 本案是直接以散熱器1的底面12,貼觸於一熱源4的 上表面作吸熱,該熱源4可為一 CPU或筆記型電腦内會發 熱的零件,而類似習知的仍由外部儲液桶7,提供一液體 70由進液口 260送入,該液體7〇通常是指「水溶液」或純 水,當電源啟動時,通電線圈281產生磁場以驅動轉子29〇 帶動葉片291旋轉,形成一吸力,將液體7〇由進液口 26〇 ,經水平進液道261、垂直進液道262,送入散熱器i的液 體通道11的外圍端通道口 m,在液體通道n形成強勁的 水流,而確實對熱源4的所吸收的熱全部帶往中心通道口 110,經通液孔24充滿葉片轉子架設空間211,藉由葉片 291旋轉離心作用將其作擾動強制形成液體流動且快速往通 液口 271、出液通道27〇由出液口 272送出作後續的散熱處 理後’-樣再借由另-管道73回收至難桶7作循環處理 M313413 值的-提的是’上述的定子極28、扁長繞線區段28〇 、纏繞的線圈281、轉子290及轉軸292,其實是共構成一 薄型馬達,而在被底壁23及密封罩蓋29所密封的葉片轉子 架設空間211及葉片291,其實是共構成_幫浦,因此配合 圖2、圖4及圖5,可稱為在該薄型架設座2〇的容設空間 21,在底壁23同一水平面區隔出的外圍的定子架設空間 210其内圍的葉片轉子架設空211,意即將馬達線圈281 、幫浦葉片291及進水凸緣26、一出水凸緣27的進水管路 及出水管路,全架設在底壁23的同一水平面上,而呈相互 錯開的配置,得以儘可能的減少各自佔用的高度,而徹底 減少水泵裝置整體的高度,再加上薄型馬達的各定子極28 ,具有一配置在略為離開葉片轉子架設空間21丨區域的扁長 繞線區段280,使得繞線區段可以極大化,而儘可能的增加 繞線里,進而有效的提高馬達的扭矩,且於扁長繞線區段 280上所纏繞的線圈281,可較現有馬達來得長且呈扁狀, 了大幅降低其南度,又散熱器1直接設於水泵即葉片2 91下 方,水改由側部進水凸緣26、一出水凸緣27進水及出水, 中央無需再設置管路而由薄型殼座10内的通道丨丨充當水流 通道’除可吸熱外並降低整體裝置之高度,因此呈薄型化 ’所以可直接貼設於熱源4上,且不會增加太多的高度,因 必了 ^加其適用的範圍’尤其適用於超薄筆記型電腦的散 熱。 惟以上所述者,僅為本新型之較佳實施例而已,當不能 10 M313413 以此限定本新型實施之範圍,即大凡依本新型申請專利範 圍及新型說明書内容所作之簡單的等效變化與修飾,皆應 仍屬本新型專利涵蓋之範圍内。The 2»Hui bottom wall 23 is on both sides of the blade rotor mounting rim 25, and faces the frame wall 220 of the rectangular thin frame 帛22 and protrudes from the frame wall 22, and is further provided with a water inlet flange 26 , the water outlet flange 27, that is, the water inlet flange %, the outlet flange 27 is disposed in the stator installation space 2104 'through the water outlet flange 27 is provided with a liquid outlet channel 27G, and the shell is pierced out of the blade rotor frame The connecting blade rotor erecting space 211 has a liquid passing port 271, and the protruding frame wall 22 has a liquid outlet 272'. The water inlet flange 26 protrudes from the frame wall 22, and has a liquid inlet port, which is partially penetrated by the liquid inlet port 260. The water flange 26 has a horizontal inlet passage 26i and then has a vertical inlet passage 222 which communicates downwardly through the bottom wall 23 and communicates with the peripheral end passage opening 111 of the radiator/liquid passage u M313413, parallel to the inlet flange 26, and the outlet water. a pair of corresponding frame walls 221 of the flange 27 and a stator mounting space 21〇 between the blade rotor mounting rim 25 are symmetrically positioned with a certain sub-pole 28, each stator pole having a flat long winding section 280, A coil 281 is wound around the flat long winding section 28, and the rotor is juxtaposed in the blade rotor mounting space 211. 29〇 and the blade 291, the rotor 290 is provided with a rotating shaft 292 at the center, and the blade 291 is assembled on the rotor 290. The blade 291 is open to the central portion of the bottom wall 23 and is freely rotatable in the blade rotor mounting space 211. The blade rotor erecting the rim 25 is a top cover group and a sealing cover 29 for preventing the top of the blade rotor erecting space 211 from communicating with the stator erecting space 21, for example, the waterproofing is infiltrated into the stator erecting space by the blade rotor erecting space 211. 21〇. In the present case, the bottom surface 12 of the heat sink 1 is directly attached to the upper surface of a heat source 4 for heat absorption. The heat source 4 can be a part of a CPU or a notebook computer that generates heat, and the conventionally known external liquid is still stored. The barrel 7 is provided with a liquid 70 fed from the liquid inlet 260. The liquid 7 is usually referred to as "aqueous solution" or pure water. When the power is turned on, the energizing coil 281 generates a magnetic field to drive the rotor 29 to drive the blade 291 to rotate. With a suction force, the liquid 7〇 is entangled from the liquid inlet port 26, and is fed into the peripheral end passage opening m of the liquid passage 11 of the radiator i via the horizontal inlet passage 261 and the vertical inlet passage 262, forming a strong liquid passage n. The water flow, but the heat absorbed by the heat source 4 is all carried to the central passage port 110, and the blade rotor erecting space 211 is filled through the liquid passage hole 24, and the blade 291 is rotated to centrifugally force it to form a liquid flow and quickly move toward The liquid supply port 271 and the liquid outlet channel 27 are sent out by the liquid outlet 272 for subsequent heat treatment, and then recovered by the other pipe 73 to the difficult barrel 7 for the cycle processing M313413 value. Pole 28, flat long winding area The 28 turns, the wound coil 281, the rotor 290 and the rotating shaft 292 actually constitute a thin motor, and the blade rotor erecting space 211 and the blade 291 sealed by the bottom wall 23 and the sealing cover 29 are actually formed. The pump, therefore, with reference to FIG. 2, FIG. 4 and FIG. 5, can be referred to as a housing space 21 in the thin pedestal holder 2, and a peripheral stator erecting space 210 partitioned from the same horizontal plane of the bottom wall 23 The blade rotor is provided with a space 211, which means that the motor coil 281, the pump blade 291 and the water inlet flange 26, and the water inlet pipe and the water outlet pipe of the water outlet flange 27 are all erected on the same horizontal surface of the bottom wall 23, and The mutually staggered configurations are able to reduce the height occupied by each other as much as possible, and completely reduce the overall height of the water pump device, together with the stator poles 28 of the thin motor, having a flat portion disposed in a region slightly away from the blade rotor mounting space 21丨The long winding section 280 allows the winding section to be maximized, and the winding is increased as much as possible, thereby effectively increasing the torque of the motor, and the coil 281 wound on the flat winding section 280 can be More existing The motor is long and flat, and the south is greatly reduced. The radiator 1 is directly disposed under the water pump, that is, the blade 2 91. The water is changed from the side inlet flange 26 and the water outlet flange 27 to the water and the water. The central portion does not need to be provided with a pipeline, and the channel 丨丨 in the thin-shaped housing 10 acts as a water flow passage. In addition to absorbing heat and reducing the height of the overall device, it is thinned, so it can be directly attached to the heat source 4 without Adding too much height, because of the scope of its application, is especially suitable for the cooling of ultra-thin notebook computers. However, the above is only a preferred embodiment of the present invention, and it is not possible to limit the scope of the present invention by 10 M313413, that is, the simple equivalent change of the scope of the new patent application and the contents of the new specification. Modifications shall remain within the scope of this new patent.

11 M313413 【圖式簡單說明】 圖1是習知散熱系統之水泵裝置之側視簡易示意圖; 圖2是本新型散熱系統之水泵裝置疊置於一散熱器上 使用之局部剖視立體分解示意圖; 圖3是圖2之頂視示意圖; 圖4是圖3之V -V剖視示意圖;及 圖5是圖3之IV -IV剖視示意圖。11 M313413 [Simplified illustration of the drawings] Fig. 1 is a schematic side view of a conventional water pump device of a heat dissipating system; Fig. 2 is a partially exploded perspective view showing the water pump device of the present heat dissipating system stacked on a heat sink; 3 is a top plan view of FIG. 2; FIG. 4 is a cross-sectional view taken along line V-V of FIG. 3; and FIG. 5 is a cross-sectional view taken along line IV-IV of FIG.

12 M313413 【主要元件符號說明】 1 散熱器 271 通液口 10 薄型殼座 272 出液口 11 液體通道 28 定子極 110 中心通道口 280 扁長繞線區段 111 外圍端通道口 281 線圈 12 底面 29 密封罩蓋 2 水泵裝置 290 轉子 20 薄型架設座 291 葉片 200 薄型架設座頂面 292 轉軸 21 容設空間 210 定子架設空間 211 葉片轉子架設空間 22 方型薄框架 220 ^ 221 架壁 23 底壁 24 通液?L 25 葉片轉子架設環緣 26 進水凸緣 260 進液口 261 水平進液道 262 垂直進液道 27 出水凸緣 270 出液通道 1312 M313413 [Main component symbol description] 1 Heat sink 271 Liquid port 10 Thin housing 272 Liquid outlet 11 Liquid passage 28 Stator pole 110 Center passage port 280 Flat long winding section 111 Peripheral end passage port 281 Coil 12 Bottom surface 29 Sealing cover 2 Pump unit 290 Rotor 20 Thin mounting seat 291 Blade 200 Thin pedestal top surface 292 Rotary shaft 21 Included space 210 Stator erected space 211 Blade rotor erection space 22 Square thin frame 220 ^ 221 Wall 23 Bottom wall 24 liquid? L 25 Blade rotor mounting rim 26 Inlet flange 260 Inlet 261 Horizontal inlet 262 Vertical inlet 27 Outlet flange 270 Outlet 13

Claims (1)

M313413 九、申請專利範圍: 1·一種散熱系統之水栗裝置,係在一薄型架設座,由頂面向 y並凹設有一容設空間,該容設空間為一凹槽,使該薄型 架设座在該方型凹槽的周圍形成有形成為一薄框架,在該 谷 < 二間的底部形成有一底壁,在該底壁的中央部位貫穿 設有通液孔,在該底壁以通液孔為中心點並距離通液孔一 適當距離,凸設有_葉片轉子架設環緣,將容設空間,區 ,隔出一外圍的定子架設空間,内圍的葉片轉子架設空間, 5亥底壁在該葉片轉子架設環緣的兩側凸設有一進水凸緣、 出X凸緣貝通该出水凸緣設有一出液通道,並貫穿通 過於該處設有葉片轉子架設環緣而連通至葉片轉子架設空 .間有一通液口,凸出架壁有一出液口,而該進水凸緣凸出 架壁有-進液口,由進液口,局部貫通進水凸緣有一水平 進液道再向下並貫通底壁有一垂直進液道,在平行於進水 凸緣、出水凸緣的一對對應架壁與葉片轉子架設環緣間的 > 定子架設空間處,對稱地定位設有一定子極,各定子極具 有一扁長繞線區段,於扁長繞線區段上並纏繞有線圈,在 葉片轉子架設空間内並置設入轉子及葉片,轉子中心設有 轉軸,葉片則組設於轉子上,葉片係向著底壁的中央部位 通液孔且在葉片轉子架設空間内可自由旋轉,葉片轉子架 U又環緣頂部罩組一岔封罩蓋,俾供與該定子架設空間確實 的隔離。 2.依據中請㈣範圍第1項所述之散熱系統之水泵裝置,其 中D亥線圈、葉片、進水凸緣及出水凸緣,皆係設於底壁之 14 M313413 同一水平面上,以期減少水泵裝置整體厚度者。 3. 依據中請專利範圍第1項或第2項所述之散熱系統之水泵 裝置,其中於該薄型架設座底部,更設置有一散熱器,該 散熱器係為-具有液體通道且頂部開放之薄型殼座,該薄 型殼座是為高熱傳導性材料所製成,其係具有一底面,該 液體通道呈渦流狀並具有一外圍端通道口及中心通道口, 該中心通道口並與薄型架設座底壁的中央部位通液孔相連 通’該外圍端通道口並與薄型架設座垂直進液道相連通。 4. 依據巾請專利範圍第3項所述之散熱系統之水泵裝置,其 中該薄型殼座的高熱傳性材料是為金屬材料。 / 5. 依據中請專利範圍第4項所述之散熱系統之水泵裝置,液 體是由薄型架設座進液口經水平進液道、垂直進液道,經 由散熱器外圍端通道口,經液體通道由中心通道口、薄型 架設座底壁通液孔,送入並充塞該葉片轉子架設空間,藉 由葉片旋轉離心作用將其作擾動強制形成液體流動且快^ 在葉片轉子架設環緣通液口、出液通道由出液口送出。 6. 依據申請專利範圍第5項所述之散熱系統之水泵裝置,該 液體可採用水溶液者。 Μ 7. 依據中請專利範圍第6項所述之散熱系統之水泵裳置,該 水可為一純水者。 15M313413 IX. Patent application scope: 1. A water chest device of a heat dissipation system is a thin erecting seat, and a receiving space is recessed from the top surface y, and the receiving space is a groove, so that the thin erecting seat Formed as a thin frame around the square groove, a bottom wall is formed at the bottom of the valley, and a liquid passage hole is formed in a central portion of the bottom wall, and the liquid is passed through the bottom wall. The hole is at the center point and is at an appropriate distance from the liquid-passing hole. The convex yoke is provided with a rim, which will accommodate the space, the area, and a peripheral stator erection space, and the inner rotor blade erecting space. a water inlet flange is protruded from the wall on both sides of the blade rotor rim, and the X flange is provided. The water outlet flange is provided with a liquid outlet passage, and is connected through the blade rotor rim ring. There is a liquid outlet between the rotor and the rotor, and a liquid outlet is formed on the convex wall, and the water inlet flange protrudes from the wall with a liquid inlet, and the inlet port has a horizontal through the water inlet flange. The inlet channel is further down and through the bottom wall The inlet passage is symmetrically positioned with a certain sub-pole at a stator mounting space parallel to the inlet flange and the pair of corresponding frame walls of the water outlet flange and the blade rotor mounting rim, and each stator pole has a In the flat long winding section, a coil is wound around the flat long winding section, and the rotor and the blade are juxtaposed in the blade rotor erecting space, and the rotor is provided with a rotating shaft at the center, and the blade is set on the rotor, and the blade is oriented The central portion of the bottom wall is through the liquid hole and is freely rotatable in the blade rotor erecting space, and the blade rotor frame U and the rim top cover group are sealed to provide a true isolation from the stator erection space. 2. According to the water pump device of the heat dissipation system described in item (4), the D-hai coil, the blade, the inlet flange and the water outlet flange are all disposed on the same level of the 14 M313413 of the bottom wall, with a view to reducing The overall thickness of the pump unit. 3. The water pump device of the heat dissipation system according to the first or the second aspect of the patent application, wherein a heat sink is disposed at the bottom of the thin pedestal holder, the radiator is a liquid passage and the top is open. a thin shell, which is made of a highly thermally conductive material, has a bottom surface, the liquid passage is vortex-shaped and has a peripheral end passage opening and a central passage opening, and the central passage opening is thinly erected The central portion of the bottom wall of the seat is connected to the through hole and communicates with the vertical inlet passage of the thin pedestal. 4. The water pump device of the heat dissipation system according to the third aspect of the patent application, wherein the high heat transfer material of the thin case is a metal material. / 5. According to the water pump device of the heat dissipation system described in the fourth paragraph of the patent scope, the liquid is from the liquid inlet of the thin erecting seat through the horizontal inlet channel and the vertical inlet channel, through the channel port of the peripheral end of the radiator, through the liquid The passage is provided by the central passage opening and the thin bottom wall of the bottom wall of the seat, and is fed into and filled with the space for erecting the rotor rotor. The centrifugal rotation of the blade causes the liquid to flow and is fast. The mouth and outlet channels are sent out from the outlet. 6. The water pump device of the heat dissipation system according to claim 5, wherein the liquid can be an aqueous solution. Μ 7. According to the water pump of the heat dissipation system described in item 6 of the patent scope, the water may be a pure water. 15
TW95216608U 2006-09-18 2006-09-18 Water pump device for heat dissipation system TWM313413U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410562B (en) * 2007-12-21 2013-10-01 Foxconn Tech Co Ltd Pump
CN114423261A (en) * 2022-03-28 2022-04-29 远峰科技股份有限公司 Water-cooling circulating type intelligent cabin domain heat dissipation system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410562B (en) * 2007-12-21 2013-10-01 Foxconn Tech Co Ltd Pump
CN114423261A (en) * 2022-03-28 2022-04-29 远峰科技股份有限公司 Water-cooling circulating type intelligent cabin domain heat dissipation system
CN114423261B (en) * 2022-03-28 2022-07-05 远峰科技股份有限公司 Water-cooling circulating type intelligent cabin domain heat dissipation system

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