201137301 六、發明說明: 【發明所屬之技術領域】 本發明係提供-種散熱n散熱片與熱管的緊配組合結 構’主要是利用散熱片的異形孔(如多邊形孔)配合衝塵模 具針對熱管管身進行衝壓,使熱管管身受到異形孔的匹配 塵擠’相對變形產生異形邊壁形態,使散熱片與熱管呈緊 配結合。 、 【先前技術】201137301 VI. Description of the Invention: [Technical Field] The present invention provides a heat-dissipating heat sink and a heat pipe tightly-fitted combination structure. The main purpose is to use a profiled hole of a heat sink (such as a polygonal hole) to match a dusting die for a heat pipe. The pipe body is stamped, so that the heat pipe body is subjected to the matching dust of the shaped hole and the relative deformation produces the profiled side wall form, so that the heat sink and the heat pipe are tightly coupled. [Prior Art]
習知散熱器,主要構件係包含散熱片、熱管及底座, :中針對散熱片與熱管的結合,最常見是採用烊接方式, 為利用_、錫膏或雜财製紅序或加王媒介物,而 將散熱片與熱管焊接結合,但並不符合環保要求。 已知關於散熱片與熱管的結合技術, ==通孔的穿槽,利用頭端呈連續凹』 料’再沖壓成型可壓迫熱管與通孔緊結的 心f到緊結―體的效果;但上述習知技術,主要是在 ^的官身沖壓形成複數個點狀間隔的凹部,因此當 造成複數個間隔的相對凸部,故仍會縮小 =熱官的⑽’依舊還是會造成熱管内液體流通的阻力 【發明内容】 本發明之主要目的,乃在於提供 熱管的緊配組合結構,# υ&熱片與 埶其β产― 係匕括複數個政熱片、一個以上的 …s m散熱片係與底座結合,熱f為分別貫穿 201137301 嵌合於散熱片與底座,其中,各散熱片的上端面係開設一 個以上的凹孔槽,且凹孔槽底部係延伸形成一不同於熱管 管身形狀的異形孔,乃利用複數相鄰的凹孔槽串連構成一 可容許衝壓模具通過的長槽溝,並將熱管對應置入凹孔槽 底部的異形孔内,因此配合治具再藉衝壓模具通過長槽溝 ,以針對熱管的管身進行衝壓,使熱管的管身受到異形孔 的匹配壓擠,進而相對變形產生異形邊壁形態,使散熱片 與熱管獲得緊配的組合。 本發明之次要目的,乃在於提供一種散熱器散熱片與 熱管的緊配組合結構,所述散熱片凹孔槽底部的異形孔, 其係可為一多邊形孔,或可為其它呈規則或不規則的任意 幾近形狀孔,使熱管的管身受到該異形孔的匹配壓擠後, 可依異形孔的形狀而相對變形為各種匹配的邊壁形態。 本發明之另一目的,乃在於提供一種散熱器散熱片與 熱管的緊配組合結構,所述散熱片的上端面係可開設二個 以上的凹孔槽,以供配合二個以上的熱管形成相反方向的 緊配組合。 本發明之再一目的,乃在於提供一種散熱器散熱片與 熱管的緊配組合結構,所述散熱片的異形孔係從側面方向 延伸具有相同異形的托持部,因此可前後相鄰並銜接構成 一可容納熱管的管形空間,使散熱片與熱管緊配組合時, 能產生更佳緊配的包置結合。 本發明之又一目的,乃在於提供一種散熱器散熱片與 熱管的緊配組合結構,所述的散熱片並在本體的兩側分別 設有一個以上的扣接片,以使前後相鄰的各散熱片可藉此 201137301 形成緊密的扣接連結。 本發明之又一目的,乃在於提供一種 ,官的緊配組合結構,所述散熱片與底座的結合月,^可^ :座尾凸部,而在散熱片底部相對設有_鳩尾凹 °且可在底座鳩尾凸部的兩側增設複數道的倒勾齒, 座時’能獲得更穩固的緊配結合而不會脫離 亦確保政熱片、熱管與底座各構件的組合更緊密紫實。 【實施方式】 、。 茲依附圖實施例將本發明結構特徵及其他作 詳細說明如下: 的 ,本發明所為「散熱器散熱片 係包括複數個散熱片i、一個 如第一圖至第五圖所示 與熱管的緊配組合結構」, 以上的熱管2及一底座3,其中: μ複數個散熱片1,如第三、四圖所示,各散熱片U &面均開設-個以上的凹孔槽η,且凹孔槽u的底 延伸形成-不同於熱管管身形狀的異形孔111(如圖的 或各種多邊形孔’或亦可為其它呈規則或不規則的 任思幾近形狀孔),乃利用複數相鄰的凹孔槽前後串連而 構成-可容許衝壓模具4通過的長槽溝削(如第五、 一個以上的熱官2 ’為分別貫穿敌合於散熱片1與底 座3,與底座3的結合端為吸熱端,而與散熱片 端則為散熱端,所述熱管2是習知構件,係—封閉的^ 管體,且管體内部已預先填裝工作液; … -底座3,係-銘質或銅質等金屬座體,其底端面係 201137301 可貼觸於熱源(如CPU),上端面係供結合散熱片工; 如第六圖及第七圖所示,本發明係通過上述複數相鄰 的凹孔槽11串連構成一可容許衝壓模具4通過的長槽溝 110,並將熱管2對應置人凹孔槽丨丨底部的異形孔lu内, 再配合治具(未顯示)及衝壓模具4通過長槽溝110,以針對 熱管2的管身進行衝壓(如第八圖所示),使熱管2的管身 受到異形孔111的匹配壓擠(如第九圖所示),進而使熱管 相對變形產生異形邊壁21 (如呈多邊形邊壁或呈相對匹配 2規則或不規則的幾近形狀邊壁),以達到散熱片i與熱 管2可獲緊配組合的目的。 、 Μ如圖中的實施例所示,其係於各散熱片工的上端面開 ,四個(二個以上)凹孔槽u ’以供配合四個(二個以上)熱 官2形成同一方向的緊配組合(如第一圖所示)。 … 如第十圖及第十-圖所示,係分別顯示本 =底)部:異形r,進一㈣ 口 亦可5又為六邊形孔(如第十一圖),惟此僅 ;=:的代表圖’並非用以限制本發明的申請範圍或 ~2理可知,如第十二圖的另—種實施例所示,亦是於 >片1的上端面開設四個(二個以上)凹孔槽n,作可配 二個以上)熱管2形成相反方向的緊配組合,因此 係合於散熱片1與底座3的形態,其 向的相錯緊配嵌合。D的緊配嵌合’當然亦可實施為不同方 依第三圖顯示,本發明中各散熱片1的異形孔ηι係可 201137301 從侧面方向延伸具有相同異形的托持部112,因此可利前後 相鄰的托持部112而銜接構成—可容納熱管2的管形空間 使政熱片1與熱官2於緊配組合時,能產生更佳緊配的 、其次’本發明的散熱片1,並可在散熱片本體的兩側 有—個以上的扣接片12(如第三圖),使前後相鄰的 u i可藉著前後匹配的扣接片12而形成緊密的扣接 如第十二、十四圖所示’本發明依上述第十二圖組成 =散熱器’所述的熱管2吸熱端均是集中嵌插於底座3的 央’且熱官2的散熱端係分散嵌插於散熱片工的兩側, :此組成’於散熱片工表面再鎖設結合一風扇組5,因風 扇組5最強風力係集中在扇葉周邊(扇葉中心風力為最微 弱),故能迅速帶走兩側熱管散熱端的熱氣,使熱源(如 cpu)快速獲的降溫效果。 如圖實施例顯示,本發明中熱管2與底座3的嵌合組 •、’熱官2係貫穿嵌入迫合於底座3,並呈貼底露出而與 氏座1的底面形成切齊壓平面;但前述的熱管2,於必要 時亦可實施為不貼底、不露出的組合形能。 此外’依第十二圖至十四圖所示,有關本發明散熱片 ”底座3的結合’其亦可在底座3設有-4尾凸部3卜 而在政熱片1底部相對設有一填尾凹部U, 尾凸部Μ的兩側再增設複數道的倒勾齒3ιι,因此於散3 1嵌入底座3_,即能獲得更穩固的緊配結合而確保散熱 片1與底座3不會發生脫離,進而使所述散熱片丄、熱管 201137301 2與底座3各構件的組合更為緊密紮實,整體的緊配效果 更療完善。 ' 上述的衝壓模具4,其係搭配相關的治具使用,如利 用⑺具預先靠持於各散熱片1的兩側面,再以衝壓模具4 通過長槽溝110,㈣十對熱管2的管身進行衝壓,所述_ 壓模具4均呈一長條板體,且模具刀口皆為平整狀,因此 衝壓時只會造成熱管2的管身受到異形孔lu的匹配壓擠 ,使熱管2管身產生相對的變形,並產生異形邊壁2],故 能達到散熱片1與熱管2緊配組合的效果,整體散熱器的 緊配更為牢固穩定,全部的構件結合均完全不需 焊接。 如圖中的散熱片1,係可在散熱片本體表面的適當位 置開設-個以上的_14,利關槽14以供配 的扣具進行扣持結合。 八 綜上所述,可知本創作所為「散熱器散熱片與熱管的 緊配組合結構」設計,其組成形態於申請前並無相同應用 體手&應用確為新穎首創,整體結構明顯與習知散 熱器不同’ ^功效顯著進步,料審查賜准專利為禱。 【圖式簡單說明】 第一圖為本發明的組合立體圖。 第二圖為本發明的組合正視圖。 第三圖為本發明的散熱片立體圖。 第四圖為本發明的散熱片正視圖。 ^五圖為本發明尚未置人熱管時組合立體圖。 第六圖為本發明於組裝前的狀態示意圖。 201137301 第七圖為本發明於衝壓模具衝壓前的狀態示意圖。 第八圖為本發明於衝壓模具衝壓前的放大示意圖。 第九圖為本發明於衝壓模具衝壓時的放大示意圖。 第十圖為本發明中散熱片異形孔設為其它幾近形狀孔 的實施例示意圖。 第十一圖為本發明中散熱片異形孔設為六邊形孔的實 施例示意圖。 第十二圖為本發明中熱管呈不同方向嵌合的實施例圖 第十二圖為本發明結合一風扇組的實施例圖。 第十四圖為第十三圖的底視圖。 【主要元件符號說明】 1 散熱片 2 執營 3 底座 11 凹孔槽 111 異形孔 4 衝壓模具 110 長槽溝 21 異形邊壁 112 托持部 12 扣接片 5 風扇组 31 鳩尾凸部 13 鳩尾凹部 311 倒勾齒 14 開槽Conventional radiators, the main components are heat sinks, heat pipes and bases. The combination of heat sinks and heat pipes is most commonly used in the form of splicing, for the use of _, solder paste or miscellaneous financial order or plus medium And the heat sink is welded to the heat pipe, but it does not meet the environmental requirements. Knowing the combination technology of the heat sink and the heat pipe, == the through hole of the through hole, and the continuous end of the through hole is used to re-press the shape of the core f to the tightness of the heat pipe and the through hole; The conventional technique is mainly to form a plurality of dot-shaped recesses in the body of the ^, so that when a plurality of spaced apart relative convex portions are caused, the shrinkage is still reduced = the thermal officer's (10)' still causes liquid circulation in the heat pipe. Resistance [Invention] The main object of the present invention is to provide a tightly-assembled combination structure of heat pipes, #υ&Hot film and ββ production--including a plurality of political heat sheets, one or more ...sm heat sink system In combination with the base, the heat f is fitted to the heat sink and the base through the 201137301 respectively, wherein the upper end surface of each heat sink has more than one concave hole groove, and the bottom of the concave hole groove extends to form a shape different from the heat pipe body. The special-shaped hole is formed by a plurality of adjacent concave groove grooves in series to form a long groove which can allow the punching die to pass, and the heat pipe is correspondingly placed into the special-shaped hole at the bottom of the concave hole groove, so Press mold to carry out through the long groove for the tube body heat pipe stamping the pipe body of the heat pipe by matching pressing profiled hole, thereby the relative deformation profiled side walls form the heat sink and a heat pipe to obtain a combination of tightly assigned. A secondary object of the present invention is to provide a tight combination structure of a heat sink fin and a heat pipe. The shaped hole at the bottom of the recessed groove of the heat sink may be a polygonal hole, or may be other regular or Irregularly any of the nearly shaped holes, so that the tube body of the heat pipe is subjected to the matching and pressing of the shaped hole, and can be relatively deformed into various matching side wall forms according to the shape of the shaped hole. Another object of the present invention is to provide a tight combination structure of a heat sink fin and a heat pipe. The upper end surface of the heat sink can have two or more recessed holes for matching two or more heat pipes. A tightly matched combination of opposite directions. A further object of the present invention is to provide a tight combination structure of a heat sink fin and a heat pipe, wherein the shaped holes of the heat sink extend from the side direction and have the same shaped holding portion, so that they can be adjacent to each other and connected Forming a tubular space that can accommodate the heat pipe, so that when the heat sink is tightly combined with the heat pipe, a better fit package connection can be produced. Another object of the present invention is to provide a tight combination structure of a heat sink fin and a heat pipe, and the heat sink is respectively provided with one or more fastening pieces on both sides of the body so as to be adjacent to each other. Each heat sink can be used to form a tight snap connection with 201137301. Another object of the present invention is to provide a tight-fit combination structure of the official, the combination of the heat sink and the base, the protrusion of the tail, and the opposite end of the heat sink. A plurality of inverted hook teeth can be added on both sides of the base dovetail portion, and the seat can be more stable and tightly coupled without being separated, and the combination of the heat piece, the heat pipe and the base member is more compact. . [Embodiment] The structural features and other details of the present invention are described in detail below with reference to the accompanying drawings. The "heat sink heat sink" includes a plurality of heat sinks i, and a heat pipe as shown in the first to fifth figures. With the combined structure", the above heat pipe 2 and a base 3, wherein: μ a plurality of heat sinks 1, as shown in the third and fourth figures, each of the heat sink U & faces are provided with more than one concave groove η, And the bottom extension of the recessed hole groove u is formed - an irregular hole 111 different from the shape of the heat pipe body (as shown in the figure or various polygonal holes) or may be other regular or irregularly shaped holes, which are utilized A plurality of adjacent concave groove grooves are formed in series before and after - a long groove cutting which allows the punching die 4 to pass (for example, the fifth, one or more heat officials 2' respectively penetrates the heat sink 1 and the base 3, respectively The combined end of the base 3 is a heat absorbing end, and the heat sink end is a heat radiating end. The heat pipe 2 is a conventional component, which is a closed tubular body, and the inside of the pipe body is prefilled with a working fluid; , metal body such as inscription or copper, the bottom end of the system is 20113730 1 can be attached to a heat source (such as a CPU), and the upper end surface is provided for combining heat sinks; as shown in the sixth and seventh figures, the present invention is constructed by the above-mentioned plurality of adjacent recessed holes 11 being formed in series to allow The long groove 110 passes through the stamping die 4, and the heat pipe 2 is correspondingly placed in the shaped hole lu at the bottom of the concave groove groove, and then matched with a jig (not shown) and a stamping die 4 through the long groove 110 to target the heat pipe The body of the tube 2 is stamped (as shown in the eighth figure), so that the tube body of the heat pipe 2 is subjected to the matching pressing of the shaped hole 111 (as shown in FIG. 9), thereby causing the heat pipe to be deformed relative to each other to produce the profiled side wall 21 (eg A polygonal side wall or a relatively close-shaped side wall that is relatively matched with 2 rules or irregularities to achieve the purpose of tightly assembling the heat sink i and the heat pipe 2. Μ, as shown in the embodiment of the figure, Opened on the upper end surface of each heat sink, four (two or more) recessed holes u' for matching four (two or more) thermal officials 2 to form a tight combination in the same direction (as shown in the first figure) ... As shown in the tenth and tenth-figure, the system shows the bottom part: the alien shape r, the first one (four) It can also be a hexagonal hole (as shown in the eleventh figure), but only the representative image of '=: is not intended to limit the scope of the application of the present invention, or the other is known as the twelfth figure. In the embodiment, four (two or more) recessed holes n are formed in the upper end surface of the sheet 1 and two or more heat pipes 2 can be matched in the opposite direction, so that they are bonded to each other. The form of the fins 1 and the base 3 are tightly fitted to each other. The fitting fit of D can of course be implemented as different parties. According to the third figure, in the present invention, the shaped holes ηι of each of the fins 1 can extend from the side direction and have the same shaped holding portion 112 from the side surface, so that The front and rear adjacent holding portions 112 are connected to form a tubular space that can accommodate the heat pipe 2, so that when the hot sheet 1 and the heat official 2 are tightly combined, a better fit can be produced, followed by the heat sink of the present invention. 1, and more than one fastening piece 12 (such as the third figure) on both sides of the heat sink body, so that the front and rear adjacent ui can form a tight fastening by the front and rear matching fastening pieces 12 The heat absorbing end of the heat pipe 2 according to the twelfth and fourteenth drawings of the present invention is composed of the heat sink end of the heat pipe 2 and is integrally inserted into the center of the base 3 and the heat dissipating end of the heat officer 2 is dispersed. Inserted on both sides of the heat sink, this composition is re-locked on the surface of the heat sink and combined with a fan group 5, because the strongest wind power of the fan group 5 is concentrated around the fan blade (the wind force in the center of the fan blade is the weakest). Therefore, it can quickly remove the hot air from the heat dissipation ends of the heat pipes on both sides, so that the heat source (such as cpu) can be quickly cooled. fruit. As shown in the embodiment, in the present invention, the heat pipe 2 and the base 3 are assembled, and the 'hot official 2' is embedded and engaged with the base 3, and is exposed at the bottom to form a tangent plane with the bottom surface of the seat 1. However, the heat pipe 2 described above may be implemented as a combined shape energy that does not adhere to the bottom and is not exposed when necessary. In addition, according to the twelfth to fourteenth drawings, the combination of the heat sink "base 3" of the present invention may also be provided with a -4 convex portion 3 on the base 3 and a opposite portion on the bottom of the political heat sheet 1 Filling the recess U, and adding a plurality of inverted teeth 3 ιι on both sides of the tail convex Μ, so that the scatter 3 1 is embedded in the base 3 _, that is, a more stable tight fit can be obtained to ensure that the heat sink 1 and the base 3 do not The detachment occurs, and the combination of the heat sink 丄, the heat pipe 201137301 2 and the components of the base 3 is more compact, and the overall tight fitting effect is more complete. 'The above-mentioned stamping die 4 is matched with the relevant jig. If the (7) is pre-held on both sides of each of the fins 1, and then the stamping die 4 is passed through the long groove 110, and (four) ten pairs of the heat pipe 2 are stamped, the _ press die 4 is a strip The plate body and the die edge are flat, so that the pipe body of the heat pipe 2 is only subjected to the matching and pressing of the shaped hole lu, so that the pipe body of the heat pipe 2 is relatively deformed, and the profiled side wall 2] is generated. Can achieve the effect of the heat sink 1 and the heat pipe 2 tightly combined, the overall heat sink tight The assembly is more stable and stable, and all the components are combined without welding. As shown in the heat sink 1 of the figure, more than one _14 can be opened at the appropriate position on the surface of the heat sink body, and the sealing groove 14 is provided for matching. The buckle is combined with the buckle. As shown in the above, it can be seen that the design of the "heat sink heat sink and heat pipe tight combination structure" design, its composition form does not have the same application before application and application is indeed new The first, the overall structure is obviously different from the conventional radiator. ^ ^ The effect is significantly improved, and it is expected that the patent will be granted as a prayer. BRIEF DESCRIPTION OF THE DRAWINGS The first figure is a combined perspective view of the present invention. The second figure is a front view of the combination of the present invention. The third figure is a perspective view of the heat sink of the present invention. The fourth figure is a front view of the heat sink of the present invention. ^五图 is a combined perspective view of the invention when the heat pipe has not been placed. The sixth figure is a schematic view of the state of the invention before assembly. 201137301 The seventh figure is a schematic view of the state of the invention before stamping of the stamping die. The eighth figure is an enlarged schematic view of the invention before stamping of the stamping die. The ninth drawing is an enlarged schematic view of the present invention when stamping a stamping die. The tenth figure is a schematic view showing an embodiment in which the fin of the heat sink is set to other near-shaped holes in the present invention. Fig. 11 is a schematic view showing an embodiment in which the fin of the heat sink is set as a hexagonal hole in the present invention. Fig. 12 is a view showing an embodiment in which the heat pipes are fitted in different directions in the present invention. Fig. 12 is a view showing an embodiment of the present invention in combination with a fan group. Figure 14 is a bottom view of the thirteenth figure. [Main component symbol description] 1 Heat sink 2 Operation 3 Base 11 Groove hole 111 Shaped hole 4 Stamping die 110 Long groove 21 Shaped side wall 112 Holding part 12 Fastening piece 5 Fan set 31 Dovetail 13 Tail recess 311 inverted hook 14 slot