201231908 六、發明說明: 【發明所屬之技術領域】 -種散熱結構及其製造方法,尤指—種以單 灌注或射出之方式,將至少-管體包覆形成—基座,並該管體= ==成水道,藉以達到節省成本及防止渗漏的散熱結構 【先前技術】 按,隨著電子設備體魏日漸,細部所設置 元件於運作時會產生大量熱量,财缺奸轉上設 =物增峨峨喊職躲,轉熱器與散孰 .,·、曰片僅糟由輻射方式作散熱,所達到之散熱效果有限,故習、 =術便大量_具梭冷式散細轉騎錄紐能之解決 p辆精触料賴_林紅散賴 =將:冷式散熱模組係由一水冷頭、-浦、-水箱及-_ :以述各7G件φ接喊—散熱循環迴路所構成。 管^材質’並於細部赠有概錢並透過前述 4核献水財接,當财 導熱量時,透過縣浦將水箱内之散觸並傳 内部之七f A * I、*體加堡而达㈣水冷頭 該水箱倾交換流雜财冷撕_之熱量傳遞帶回 月'J述水冷頭内部之水道主要 冷頭一側__成,再㈣-二=:: 201231908 成該水道。 水冷頭之材料選用係通常會以導熱效率較佳之材質作為首選 (如銅材料),在對該銅材料進行加工’但水冷頭僅只一側與熱源 接觸傳導熱源,故其餘部分則為無效區域,對於材料之成本甚為 浪費。 再者,由於水冷頭使用一段時間後該材料本身可能因氧化或高 溫劣化而產生破損,造隸熱流體於水道巾產生向外滲漏之情= 發生,故對於與其配合使狀電子設備是—卿常嚴重之破^ 故習知技術具有下列缺點: 1.容易造成溢漏; 么生產成本較高。 【發明内容】 方法 本發明之轉㈣械供—種领止渗 本發明另-目的在提供-種可降鋪造成本構製玄 為達上述目的’本發明係提出一種散熱結構,係包含:一) 座;該基座具有-本體及至少一管體,所述管體具有一入鳴 :出口端及-管身部,該管身部係對應設於該本體内= 及入口端係凸伸於該本體外部。 抑 包含述目的,本翻係糾—種散熱結構製造方法1 提供一具模穴之模具及一管體; 將該管體設於該模具之槿々 模八内,並透過灌注之方式成型-結賴 ,201231908 體將該管體包覆。 為達到上述目的’本發明係提出—種賴結構 包含下列步驟: 电係 提供一具模穴之模具及-基座及—管體; 將該管體設置於該基座之一側,並同時放置於該模具 内,於該基座之-側成型—結構體將該基座及該管體^ 令該結構體及該基座與該管體結合為一體。 4 、、為達到上述目的,本發卿提出—種散熱結構製造方法 述散熱結構製造方法,係包含下列步驟: 提供-具歓域具及-有輯之基座及一管體; 將該管體設置於縣座切勒,朗時放置贿模具之模广 内’於《座之-纖型—結構體將絲座及該管體包覆,人 该結構體及該基座與該管體結合為一體。 1 ^發明係透過使用單_複數種以上之材料製成散熱結 搭配管體之設置麟散鱗構之料為水道之制,猶可 郎省材料成本外’更可防止渗漏之情事發生;故本發明具有下列 優點· 1. 節省成本; 2. 可防止滲漏。 【實施方式】 本發明之上述目的及其結顺舰上的紐,將依據所附圖 式之較佳實施例予以說明。 請參閱第卜2圖,係為本發明之散熱結構第一實施例之立體 圖及分解圖,如圖所示,所述散熱結構,係包含:一美座1 · 201231908 -入=ΓΓ體11及至少—管體12,所述管體具有 應設於該本體U—Γ該Γ==123,_ u外部。 ^ 122及入口蠕121係凸伸於該本體 解圖,Lt為本㈣之散熱結構第二實糊之立體分 故在此將不㈣例之部分結構係與前述第實施例相同, 欠在I:將不再^述,惟本實施例與前 述本體11更具有-第-部分⑴及1二部^=處係為所 111與該第二部分112對接,所述管體12之 =Γ_一部分111及該第二部分112之間。 ’係林㈣之散_構第三實蘭之立體分 m ,本實關,分結_赌«二麵例相同, ===贅述,惟本實施例與前述第二實施例不同處係為該 丨、-第:鶴具有至第一溝槽m卜該第二部分112具有至 )-:-溝槽⑽’該第一、二溝槽lm、1121相互對應接合, 戶術體12之管身部_應容設於該第—、二溝槽ιιη、ιΐ2ΐ 内0 月】述第、—、二實施例中之基座丨及管體I〗之材質係為 銅材質及崎質及補鋪#射任―;該第二部分⑴係為非 金屬材質(如轉)或散熱效率較佳之材f (如蹄質及銅材質 其中任一)其中又以鋁材質為較佳。 料第二、三實施例之所述第—部分111及該第二部分112 及e亥g體12係呈包射為-體;透過此—結構體係可將異種材料搭 配組合’進而達到節省材料成本之目的。 201231908 再者,透過以管體12作為水道之設置係可防止外部材 ^部分111及第二部分112鹏化或劣化而產生渗漏之情事發 =一併參閱第卜2、5、6、7圖,係為本翻之散熱結構第 實施例之立體及局部剖視圖及散熱結構製造方法第一實施例之 3=加工示意圖,如圖所示,所述散熱結構製造方“二 S1 :提供一具模穴之模具及一管體; 係提供-具有模穴21之模具2及至少一管體(即管體 所述管體(㈣體12)材健為導鮮映之侧(如鋼材 質及銘材質及不銹鋼材質)其中又以不錄鋼材質為較佳。 S2 :將該管體設於職具之歡内,並透卿注之方 一結構體將該管體包覆。 取玉 將前述管體(即管體12)對應放置於該模穴21中 具2蓋合,其後透騎域型之方式細—射出結髓(即3 11)將該管體(即管體12)㈣固設於結構體(即本體i , 令該管體(即管體12)於該結構體(即本體1υ中形成流道,本 實施例中之射出成型係可為塑膠射出成型及金屬射出成型其中任 * 0 一二一併參Γ卜2、5、8、9圖’係為本發明之散熱結構第 -貫關之立體及局㈣制及散熱結構製造方法第二實施例之 流程圖及加工示意圖,如騎示,所述散熱結構製造方法係包含 下列步驟: 3 本實施例步驟S1係與前述第一實施例相同,故在此將不再贅 201231908 述’惟本實施顺前述第—實施例之不同處係如下述: S2 .將5亥官體設於該模具之模穴内,並透過灌注之方式成型 一結構體將該管體包覆。 本實施例係將該(即管體12)置人—鑄模3之模穴31内成型, "玄、、’σ構體(即本體U)透過麟(即鑄造法.)之方式灌注炫融之 金屬4進人5辑模3之模穴31内成型該結構體(即本體u),即 可成^該本體U _該管體(即管體12)包覆於其_形成流道。 請i參閱第3、1G、1卜12圖’係為本發明之散熱結構第 立體刀解圖及散熱結構製造方法第三實施例之流程圖 及加工L ’如圖所示,所述散熱結構製造方法係包含下列步 XI :提供一具模穴之模具及一基座及一管體; 及=4有模穴21之模具2,及—基座(即第—部分111), 及一官體(即為管體12)。 虹:將該管體設置於該基座之一側,並同時放置於 基座之一側成型一結構體將該基座及該;包覆, 7該、、、Q構體及該基座與該管體結合為一體。 將該管體(即為管體12)設置於該基座(即第—部八 侧’並同時將該管體(即為管體12)及該基座“ 1放置於該模具2之模穴21内,並透過射出㈣ = 成型或金屬射出成型其中任一)於該基座(即第—部,一 側成型—結構體(即第二部分1⑵將該基座(即= =體(即為管體⑴包覆,令該結構體(即第二 座(即第一部分1U)與該管體(即為管體12)結合為一 201231908 體 f ^ Γ 3、1G、13、14圖,係為本發明之散熱結構第 及=例=體_及散熱結構製造方法第四實施例之流裎圖 =工L ’如圖所示,所述散熱結構製造方法係包含下列步 鄉· 本實施例步驟X1係與前述第三實施例相同,故在此將不再資 述,惟本實施例與前述第三實施例之不同處係如下述· X2 :將該管體設該基座之―側,朗時放置於該模具之 杈八内’於魏座之—側細—結構體將該基纽該管體 令該結構體及該基额該管體結合為一體。 將該管體(即為管體12)設置於該基座(即第一部分叫 之-側’並同時_管體(即為管體12)及縣座(即第一部分 111)置入-鑄模3之模穴31内成型,並透過洗鳍(即禱造法( ,方=灌注舰之金屬4進人該鑄模3之模穴31内成型該結構體 二一邛刀112)’將該基座(即第一部分lu)及該管體(即 為管體12)包覆,令該結構體(即第二部分112)及該基座(即 第一部分111)與該管體(即為管體12)結合為—體,並於該基 座(即第—部分111)及該結構體(即第二部分112)間形成流道。 請:併參閱第4、15、16、17、18圖,係為本發明之散熱結 構第三實施例之立體分解圖及散熱結構製造方法第五實施例之流 程圖及加ol示意圖,如圖卿,所述散熱結構製造方法係包含下 列步驟: Y1 :提供一具模穴之模具及一側具有凹槽之基座及一管體; 提供一具有模穴21之模具2,及一外部具有凹槽(即第一溝槽 201231908 mi)之基座(即第-部分叫,及—管體(即為 ι將該管體設置_基座之㈣内 )° 之模穴内,於該基座之-侧成型一結構體將該模具 覆,令該結獅及絲座與該管體結合為—體。〜1 4管體包 將該管體(即為管體12)設置於該基座(即第 :::7第一溝槽出1)内’並同時將該管體(即為管體 二二即第一部分111)放置於該模具2之模穴21内,並透過 射出成型(塑膠射出成型或金屬射出成型其中任 過 =即第-部分⑴)之-側成型—結構體(即第二 ,二座(即第—部分U1)及該管體(即為管體12)包覆’入 =❻第二部請)及該基座(即第-部分m)L; 體(即為管體12)結合為一體。 " 構第請=參閱第4、15、19、2G、21圖,係為本發明之散熱結 貫_之立齡解圖及散熱結構製造方法第六實施例之流 歹^二加工7^意圖’如圖所示’所述散熱結構製造方法係包含下 、,〔本貫施例步驟Y1係與前述第五實施例相同,故在此將不再贅 述准本實施例與前述第五實施例之不同處係如下述: Y2將δ亥官體設置於該基座之凹槽内,並同時放置於該模具 之模穴内,於兮y·— 、 八i 亥基座之一侧成型一結構體將該基座及該管體包 1 ’令該結構體倾基座與該管體結合為-體。 之將°亥官體(即為管體12)設置於該基座(即第-部分in) 凹槽(即第一溝槽U11)内,並同時將該管體(即為管體12)及 /基座(即第一部分111)置入一鑄模3之模穴31内成型,並透 201231908 過洗禱(即鎊造法)之方式難熔融之金屬4進人輯模3之楛 穴31内成型該結構體(即第二部分112),將該基座(即第一部八 ⑴)及該管體(即管體12)包覆,令該結碰(即第二部分^ 及該基座(即第-部分lu)與該管體(即管體⑵結合為一體, 並於該基座(即第-部分lu)及該結構體(即第二 形成流道。 ;厂曰] 、藉由前述散熱結構之第―、二、三實施例及該等結構之製造 方法步驟流程’係可以單種或兩種以上不同材質搭配组合製成散 熱結構财僅可降低生產成本,更可減少工時;此外,亦可選用 導’’’、效率#xr^之材料(如鋼材質)搭配散熱效率較高之材料(如 材質)、、σσ s體12 -體包射或鑄造成型,更達到提升散熱 之目的。 τ 再者,以管體12之設置取代習知散熱結構之水道,不僅可防 ^參漏之情事發生外’更可減少習知開設水道之加工工時的浪 費’ f而_提升良率及降低生產成本者。 【圖式簡單說明】 第1圖係為本發明之散熱結構第-實施例之立體圖; 圖係為本發明之越結構第-實施例之局部剖視圖; 圖係為柄明之賴結構第二實闕之立體分解圖; 圖係為本《0月之政熱結構第三實施例之立體分解圖; =係為本發明之散熱結構製造方法第—實施例之流程圖; =林發明之散熱結構製造方法第—實關加工示意圖; 第8 本發明之散熱結構製造方法第—實施例加工示意圖; 第8圖係為本發明之散触構製造方法第二實施例加X示意圖; 201231908 第9圖係為本發明之散熱結構製造方法第二實施例加工示意圖; 第10圖係為本發明之散熱結構製造方法第三實施例之流程圖; 第11圖係為本發明之散熱結構製造方法第三實施例加工示意圖; 第12圖係為本發明之散熱結構製造方法第三實施例加工示意圖; 第13圖係為本發明之散熱結構製造方法第四實施例加工示意圖; 第14圖係為本發明之散熱結構製造方法第四實施例加工示意圖; 第15圖係為本發明之散熱結構製造方法第五實施例之流程圖; 第16圖係為本發明之散熱結構製造方法第五實施例加工示意圖; 第17圖係為本發明之散熱結構製造方法第五實施例加工示意圖; 第18圖係為本發明之散熱結構製造方法第五實施例加工示意圖; 第19圖係為本發明之散熱結構製造方法第六實施例加工示意圖; 第20圖係為本發明之散熱結構製造方法第六實施例加工示意圖; 第21圖係為本發明之散熱結構製造方法第六實施例加工示意圖。 【主要元件符號說明】 基座1 本體11 第一部分111 第一溝槽1111 第二部分112 第一溝槽1121 管體12 八^端121 出口端122 管身部123 201231908 模具2 模穴21 鑄模3 模穴31 熔融之金屬4201231908 VI. Description of the invention: [Technical field to which the invention pertains] - a heat dissipating structure and a method of manufacturing the same, in particular, a method of coating at least a tube body into a pedestal in a single perfusion or injection manner, and the tube body = == into the waterway, in order to achieve cost savings and prevent leakage of the heat dissipation structure [previous technology] Press, as the electronic equipment body is growing, the components set in the details will generate a lot of heat when operating, the property is turned into a set = Things are increased, shouting, hiding, heat transfer and divergence.,·,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,, Riding the record of New Energy can solve the problem of p-class precision __林红散赖=将:The cooling type cooling module is made up of a water-cooled head, -pu,-water tank and -_: The loop circuit is composed of. Tube ^Material' and donated money in detail and through the aforementioned 4 nuclear donations, when the amount of heat transfer, through the county Pu will be inside the water tank and pass the internal seven f A * I, * body plus Fort And up to (four) water-cooled head, the water tank is diverted, the flow of miscellaneous wealth, the cold tears _ the heat transfer belt back to the moon 'J's water cold head inside the main cold head side __ into, then (four)-two =:: 201231908 into the waterway. The material selection of the water-cooled head is usually preferred because the material with better heat conduction efficiency (such as copper material) is processed in the copper material. However, only one side of the water-cooled head is in contact with the heat source to conduct the heat source, so the rest is an ineffective area. The cost of materials is very wasteful. Furthermore, since the material itself may be damaged by oxidation or high temperature deterioration after using the water-cooled head for a period of time, the heat-generating fluid in the waterway towel may cause outward leakage = occurrence, so that the electronic device is matched with it. Qing often severely breaks. Therefore, the conventional technology has the following disadvantages: 1. It is easy to cause spills; SUMMARY OF THE INVENTION The present invention provides a heat dissipating structure, and the present invention provides a heat dissipating structure, which comprises: a base; the base has a body and at least one tube body, the tube body has a sounding: an outlet end and a body portion, the body portion is correspondingly disposed in the body body = and the inlet end is convex Extends outside the body. Including the purpose of the description, the method for manufacturing the heat dissipation structure 1 provides a mold cavity and a tube body; the tube body is placed in the mold 8 of the mold, and is formed by perfusion method - According to the 201231908 body, the tube is covered. In order to achieve the above object, the present invention proposes that the structure comprises the following steps: the electric system provides a mold cavity and a base and a pipe body; the pipe body is disposed on one side of the base, and at the same time Placed in the mold, formed on the side of the base - the structure connects the base and the tube body to integrate the structure and the base with the tube body. In order to achieve the above object, the present invention proposes a method for manufacturing a heat dissipation structure, which comprises the following steps: providing a pedestal and a pedestal and a tube; The body is set in the county seat of Chele, Langshi placed the mold of the brim mold in the 'seat-fibre-structure body wrapped with the silk seat and the tube body, the structure and the base combined with the tube body As one. 1 ^Inventions through the use of a single _ more than a variety of materials to make the heat-dissipation of the tube body set with the material of the squamous squama structure for the water channel, the material cost of the province of the province can prevent leakage. Therefore, the present invention has the following advantages: 1. Cost saving; 2. Prevents leakage. [Embodiment] The above object of the present invention and its advantages on the ship will be described in accordance with a preferred embodiment of the drawings. Please refer to FIG. 2, which is a perspective view and an exploded view of the first embodiment of the heat dissipation structure of the present invention. As shown in the figure, the heat dissipation structure includes: a beauty seat 1 · 201231908 - input = body 11 and At least - the tube body 12, the tube body should be disposed outside the body U - Γ = = 123, _ u. ^ 122 and the entrance creep 121 are protruded from the body solution, and Lt is the fourth embodiment of the heat dissipation structure of the heat dissipation structure of (4). Here, the partial structure of the (4) example is the same as that of the foregoing embodiment, and is owed to I. It will not be described again, but the embodiment and the body 11 have more - the first part (1) and the second part ^= is the interface 111 and the second part 112, the tube body 12 = Γ _ A portion 111 is between the second portion 112. 'The line of the forest (four) _ constitutive third solid blue three-dimensional sub-m, the actual closed, the _ _ _ _ two sides are the same, === description, but this embodiment is different from the second embodiment The 丨, - the first: the crane has a first groove m, the second portion 112 has a -: - groove (10) 'the first and second grooves lm, 1121 are mutually coupled, and the tube of the body 12 The body _ should be accommodated in the first -, second groove ιιη, ιΐ2ΐ in the month of the first, the second, the second embodiment of the pedestal 管 and the body I material is copper material and texture and complement Shop #射任-; The second part (1) is a non-metallic material (such as turn) or a heat-dissipating material f (such as any of hoof and copper), which is preferably made of aluminum. The first portion 111 and the second portion 112 and the ehai body 12 of the second and third embodiments are encapsulated into a body; through the structure system, the dissimilar materials can be combined and combined to achieve material saving. The purpose of cost. 201231908 Furthermore, by using the pipe body 12 as a waterway arrangement system, it is possible to prevent the external material portion 111 and the second portion 112 from being deteriorated or deteriorated, and leakage occurs. Refer to Chapters 2, 5, 6, and 7 together. The figure is a perspective view and a partial cross-sectional view of the first embodiment of the heat dissipation structure and a 3: machining diagram of the first embodiment of the heat dissipation structure manufacturing method. As shown in the figure, the heat dissipation structure manufacturing side "two S1: provide one a die and a tube body of the cavity; a mold 2 having a cavity 21 and at least one pipe body (ie, the pipe body ((4) body 12) of the pipe body is a side of the guide wire (such as steel material and Ming material and stainless steel material) It is better to use non-recorded steel material. S2: The pipe body is set in the joy of the work tool, and the pipe body is covered by the square body structure. The tube body (ie, the tube body 12) is placed in the mold cavity 21 correspondingly with a cover, and then is finely passed through the field type to emit the pulp (ie, 3 11) to the tube body (ie, the tube body 12). (4) being fixed to the structure body (ie, the body i such that the pipe body (ie, the pipe body 12) forms a flow path in the structure body (ie, the body 1υ), this embodiment The injection molding system can be used for plastic injection molding and metal injection molding. * 0 1-2 Γ Γ 2、 2, 5, 8, 9 ' ' is the heat dissipation structure of the invention - the three-dimensional and bureau (4) The flow chart and the processing schematic of the second embodiment of the manufacturing method and the heat dissipation structure, such as riding, the heat dissipation structure manufacturing method comprises the following steps: 3 Step S1 of the embodiment is the same as the first embodiment, so here It will no longer be described in 201231908, but the difference between the implementation and the first embodiment is as follows: S2. The 5H official body is placed in the cavity of the mold, and a structure is formed by infusion. In this embodiment, the (ie, the tube 12) is placed in the mold hole 31 of the mold 3, and the "Xuan," 'σ body (ie, the body U) passes through the collar (ie, the casting method). In the manner of injecting the molten metal 4 into the mold hole 31 of the mold 3, forming the structure (ie, the body u), the body U _ the tube body (ie, the tube body 12) is coated thereon _Forming a flow path. Please refer to the 3rd, 1G, 1 and 12 diagrams as the third-dimensional knife solution diagram of the heat dissipation structure of the present invention. The heat dissipation structure manufacturing method is the flowchart of the third embodiment and the processing L'. As shown in the figure, the heat dissipation structure manufacturing method comprises the following step XI: providing a mold cavity and a base and a pipe body; 4 has a mold 2 of the cavity 21, and a base (ie, the first portion 111), and a body (ie, the tube body 12). Rainbow: the tube body is disposed on one side of the base, and at the same time a structure is placed on one side of the base to form a structure, and the base and the cover, 7 and the Q structure and the base are integrated with the tube body. The tube body (ie, the tube body) 12) is disposed on the base (ie, the eighth side of the first portion) and simultaneously places the tube body (ie, the tube body 12) and the base "1" in the cavity 21 of the mold 2, and transmits through (4) = Forming or metal injection molding any one of the bases (ie, the first portion, one side molding - the structure body (ie, the second portion 1 (2) the base (ie, = body (ie, the tube body (1) is coated, The structure (ie, the second seat (ie, the first portion 1U) and the tube body (ie, the tube body 12) are combined into a 201231908 body f ^ Γ 3, 1G, 13, 14 diagram, which is the heat dissipation of the present invention. Structure and Example = Body and Heat Dissipation Structure Manufacturing Method Flowchart of the Fourth Embodiment = Work L' As shown in the figure, the heat dissipation structure manufacturing method includes the following steps. Step X1 of the present embodiment and the foregoing The third embodiment is the same, so it will not be described here, but the difference between this embodiment and the foregoing third embodiment is as follows: X2: the tube body is placed on the side of the base, and the time is placed on the The 杈 内 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于 于The tube body (ie, the tube body 12) is disposed on the base (ie, the first portion is called the side side) and the tube body (ie, the tube body 12) and the county seat (ie, the first portion 111) are placed in the mold. Formed in the cavity 31 of the 3, and through the fin-washing method (that is, the method of praying (the square = the metal of the infusion ship 4 into the cavity 31 of the mold 3, the structure of the structure of the structure of the trowel 112) The seat (ie, the first portion lu) and the tubular body (ie, the tubular body 12) are coated such that the structural body (ie, the second portion 112) and the base (ie, the first portion 111) and the tubular body (ie, the tube) The body 12) is combined into a body and forms a flow path between the base (ie, the first portion 111) and the structure (ie, the second portion 112). Please: and refer to the 4th, 15th, 16th, 17th, and 18th. The figure is a perspective view of a third embodiment of the heat dissipation structure of the present invention and a flow chart of the fifth embodiment of the method for manufacturing the heat dissipation structure, and a schematic diagram of the addition of ol. The heat dissipation structure manufacturing method includes the following steps: Providing a die with a cavity and a base having a groove on one side and a pipe body; providing a die 2 having a cavity 21, and an outer groove (ie, the first groove 20) 1231908 mi) the base (that is, the first part is called, and the tube body (that is, the tube is set to the inside of the base (4)), and a structure is formed on the side of the base. The mold is covered so that the lion and the silk seat are combined with the tube body. The body of the tube is placed on the base (ie, the:::7 A groove is made 1) inside and at the same time the tube body (ie, the tube body 22 or the first portion 111) is placed in the cavity 21 of the mold 2, and is formed by injection molding (plastic injection molding or metal injection molding). Any of the first-part (1)-side forming-structures (ie, the second, the second (ie, the first-part U1) and the tubular body (ie, the tubular body 12) are covered with 'input=❻ second part Please) and the base (ie, the first part m) L; the body (that is, the pipe body 12) is integrated into one. " Construction please refer to the 4th, 15th, 19th, 2G, 21th drawings, which is the present invention The heat dissipation _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ Step Y1 and the aforementioned fifth The embodiment is the same, so the difference between the quasi-negative embodiment and the foregoing fifth embodiment will not be described here as follows: Y2 is disposed in the groove of the base and placed in the mold at the same time. In the cavity of the mold, a structure is formed on one side of the base of the 兮y·—, 八i hai, and the pedestal and the tubular body are packaged to make the structure tilting base and the tubular body into a body. Locating the body (ie, the tube body 12) in the pedestal (ie, the first portion in) groove (ie, the first groove U11), and simultaneously the tube body (ie, the tube body 12) and / The pedestal (ie, the first portion 111) is placed in the cavity 31 of a mold 3, and is formed by the method of 201231908, which is difficult to melt by means of the praying (ie, the pound-making method). Forming the structure (ie, the second portion 112), wrapping the pedestal (ie, the first portion VIII (1)) and the tube body (ie, the tube body 12) to cause the junction (ie, the second portion and the base) The seat (i.e., the first portion) is integrated with the tubular body (i.e., the tubular body (2), and the base (i.e., the first portion) and the structural body (i.e., the second formed flow path).曰 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 、 Cost, can reduce the working hours; in addition, you can also use the material of the ''', efficiency #xr^ (such as steel) with high heat dissipation materials (such as materials), σσ s body 12-body package Or casting molding, to achieve the purpose of improving heat dissipation. τ Furthermore, replacing the water channel of the conventional heat dissipation structure with the arrangement of the pipe body 12 can not only prevent the occurrence of the leakage, but also reduce the waste of the processing time of the conventional waterway. Reduce production costs. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view of a heat dissipation structure according to a first embodiment of the present invention; FIG. 1 is a partial cross-sectional view showing a structure of the structure of the present invention; The three-dimensional exploded view; the figure is the three-dimensional exploded view of the third embodiment of the political thermal structure of the month; = is the flow chart of the first embodiment of the heat dissipation structure manufacturing method of the present invention; The first embodiment of the method for manufacturing a heat dissipating structure of the present invention is a schematic view of the second embodiment of the method for manufacturing the dissipative structure of the present invention; FIG. 8 is a schematic view of the second embodiment of the present invention; FIG. 10 is a flow chart of a third embodiment of a method for manufacturing a heat dissipation structure according to the present invention; FIG. 11 is a third embodiment of a method for manufacturing a heat dissipation structure according to the present invention; FIG. 12 is a schematic view showing the processing of the third embodiment of the heat dissipation structure manufacturing method of the present invention; FIG. 13 is a fourth embodiment of the heat dissipation structure manufacturing method of the present invention. Figure 14 is a schematic view showing the processing of the fourth embodiment of the heat dissipation structure manufacturing method of the present invention; Figure 15 is a flow chart of the fifth embodiment of the heat dissipation structure manufacturing method of the present invention; BRIEF DESCRIPTION OF THE DRAWINGS FIG. 17 is a schematic view showing the processing of the fifth embodiment of the heat dissipation structure manufacturing method of the present invention; FIG. 18 is a schematic view showing the processing of the fifth embodiment of the heat dissipation structure manufacturing method of the present invention; The figure is a schematic view of the sixth embodiment of the heat dissipation structure manufacturing method of the present invention; FIG. 20 is a schematic view of the sixth embodiment of the heat dissipation structure manufacturing method of the present invention; Example processing schematic. [Main component symbol description] Base 1 Body 11 First portion 111 First groove 1111 Second portion 112 First groove 1121 Tube body 12 Eight end 121 Outlet end 122 Body portion 123 201231908 Mold 2 Cavity 21 Mold 3 Cavity 31 molten metal 4