TWM252069U - A structure of a radiator made of composite material - Google Patents

A structure of a radiator made of composite material Download PDF

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Publication number
TWM252069U
TWM252069U TW93202768U TW93202768U TWM252069U TW M252069 U TWM252069 U TW M252069U TW 93202768 U TW93202768 U TW 93202768U TW 93202768 U TW93202768 U TW 93202768U TW M252069 U TWM252069 U TW M252069U
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Taiwan
Prior art keywords
heat
heat sink
aluminum
copper
convex
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TW93202768U
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Chinese (zh)
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Jin-Hu Guo
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Jin-Hu Guo
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Priority to TW93202768U priority Critical patent/TWM252069U/en
Publication of TWM252069U publication Critical patent/TWM252069U/en

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  • Cooling Or The Like Of Electrical Apparatus (AREA)

Description

M252069 四、創作說明(1) 【新型所 本創作係 指一種在叙材 接觸面處,設 ,增加兩者間 更為優良之複 【先前技 按,由於 熱的現象必需 甚至是令晶片 以快速散熱的 該散熱器 座(2 )〔參 的基部(1 1 該銅材導熱座 (1 1 )底端 :據此,即可 方,且與晶片 (2 )具有良 時產生之高熱 紹材散熱片本 之風扇將高熱 然而,就 性,而將散熱 屬之技術領域 有關於一 散熱片本 有彼此對 的接觸面 合材質之 術】 晶片在執 予以排除 損壞;而 方式,皆 具有一鋁 第一圖〕 )上成型 (2 )結 ,同時在 將銅材導 (10) 好的熱傳 ,同時經 體(1 ) 溫度吹散 此一習知 片本體採 複:材質之散熱器結構,尤其是 及同熱傳導係數之銅材導熱座的 應嗜咬=凸齒,俾利用凸齒的設立 : 提π熱傳導效率,使散熱效果 散熱器結構的創新設計。 行運算 ’否則 一般在 是利用 材散熱 ,其中 有數多 合於铭 散熱鰭 熱座( 上表面 導性, 此銅材 ,而由 ,達到 的散熱 用鋁材 的過程中會 將會影響晶 將晶片運算 散熱器。 片本體(1 ,該鋁材散 的散熱鰭片 材散熱片本 片(1 2 ) 2 )固定在 相貼觸,以 快速吸收晶 導熱座(2 銘材散熱片 散熱降溫之 器結構雖然 、導熱座採 產生高熱,而高 片的正常動作, 時產生之高熱予 )及一銅 熱片本體 (12) 體(1 ) 的上方組 晶片(1 利用銅材 片(1 0 )將熱能 本體(1 目的。 已因應材 用銅材, 材導熱 (1 ) ,並將 的基部 立風扇 0 )上 導熱座 )運作 傳導予 )上方 質的特 只是該 ΙΙΗM252069 IV. Creation Instructions (1) [The new type of book creation refers to a kind of design which is added at the contact surface of the narrative material to increase the better between the two. [Previous technique, due to the phenomenon of heat, it is necessary to even make the chip quickly. The base of the heat sink (2) [the base of the reference (1 1 the bottom end of the copper heat conducting base (1 1): according to this, it can be square, and has a high heat generated by the wafer (2) when the heat is good.) The fan of the tablet will be high in heat, however, and the field of heat dissipation is related to the technical field of a heat sink that has mutually facing contact surfaces and materials.] The chip is to be removed to prevent damage; and the methods all have an aluminum cap. (A picture))) forming the (2) junction, and at the same time conducting the good heat transfer of the copper material (10), and at the same time the body (1) temperature is blown away. The conventional film body is recovered: the heat sink structure of the material, especially It is the same as the copper heat conduction seat with the same thermal conductivity. Biting = convex teeth, and the use of convex teeth: to improve the heat conduction efficiency of π and make the heat sink innovative design. Performing calculations, otherwise, generally use materials to dissipate heat. Among them, there are many more heat sinks on the surface of the fins (the upper surface is conductive, this copper material, and the process of reaching the heat dissipation aluminum material will affect the crystal chip). Computing radiator. The sheet body (1, the aluminum fins, fins, fins, and fins (1 2) 2) are fixed in contact with each other to quickly absorb the crystal heat sink (2 Ming material radiating and cooling device) Although the structure, the heat conduction seat generates high heat, and the normal operation of the high plate, the high heat generated during the normal operation) and a copper heat plate body (12) the upper group of wafers (1 using copper sheet (1 0) will The body of thermal energy (1 purpose. Copper material has been used according to the material, the material conducts heat (1), and the base stand fan 0) is operated to conduct heat to the top) The only thing above is ΙΙΗ

第6頁 M252069 四、創作說明(2) 結材散熱片本體與銅材導熱座之間係呈面 ’其彼此之接觸面積及界面合金化接合體 傳導的效率亦因此而大打折扣。 今’創作人即是鑑於習知散熱器之鋁 材導熱座間接觸面積有待改善的情形下, 累積的專業知識、技術的輔佐,以創設出 散熱片體及鋼材導熱座間之接觸面積的散 【新型内容】 的貼觸接合狀態 積有限,導致熱 材散熱片體及銅 故而藉助本身所 一種可增加鋁材 熱器。 本創作係有關 係於構成散熱器之 面,採取呈凸齒狀 使該铭材散熱片 的接合效果,以及 效率之功效者。 【實施方式】 而為令本創作 併參閱所揭圖式及 首先,請參閱 的鋁材散熱片本體 金化接合成為一體 艘(3 )的下方為 成型有數多散熱鰭 面具有數多尖狀之 二側邊等長,使該 於一種複合材質之散熱器結構, 铭材散熱片本體及銅材導熱座間 的凹凸嚙咬配合,俾以藉此方式 本體及銅材導熱座之間具有良好 接合面積大、散熱面積大,以提 其主要 的接觸 之設計 且堅固 高散熱 之技術内容能夠更清楚的揭露, 圖號,並於下詳細說明之: 第二圖,本創作之散熱器係由不 (3)及銅材導熱座(4)利用 方式所形成,其中,在該銘材散 一基部(31),該基部(3工 片(32),另在基部(3ι) 凸齒(33),且每一凸齒(3 凸齒(3 3)猶如一等腰三角形 兹請一 同材質 界面合 熱片本 )之上 的底端 3 )的 :繼於Page 6 M252069 4. Creation instructions (2) The surface between the heat sink body of the material and the copper heat conduction seat is a surface ′, its contact area with each other, and the efficiency of the interface alloyed joint conduction are greatly reduced. Today's creator is in view of the need to improve the contact area between the aluminum heat conduction seat of the known radiator, and the accumulated expertise and technology are supplemented to create a dispersion of the contact area between the heat sink body and the steel heat conduction seat. Contents] The contact bonding state product is limited, which causes the heat material fin body and copper to increase the aluminum heater with its own type. This creation is about the surface that forms the heat sink and adopts convex teeth to make the joining effect of the heat sink of the Ming material and the effect of efficiency. [Embodiment] In order to make this creation and refer to the disclosed drawings and first, please refer to the aluminum metal fin body metallized and joined to form an integrated boat (3). The bottom of the fin is formed with a plurality of fins with a plurality of pointed shapes. The two sides are of equal length, which makes the heat sink structure of a composite material, the concave-convex bite fit between the heat sink body of the Ming material and the copper heat conduction seat, so as to have a good joint area between the body and the copper heat conduction seat. Large, large heat dissipation area, in order to mention its main contact design and sturdy and high heat dissipation technology content can be more clearly disclosed, figure number, and detailed description below: The second picture, the heat sink of this creation is not ( 3) and the copper heat conduction seat (4), wherein a base portion (31), a base portion (3 work piece (32), and a base portion (3ι) convex teeth (33), And the bottom end of each convex tooth (3 convex teeth (3 3) is like an isosceles triangle, so please use the material interface and heat plate together): following

M252069 四、創作說明(3) 銅材導熱座(4)的上端面亦設有數多尖狀之凸齒(4工 ),且每一凸齒(4 1 )的二侧邊等長,使之形成等腰三 角形形狀,同時,銅材導熱座(4)上的各凸齒(41) 適與鋁材散熱本體(3)之各凸齒(3 3)對應嚙咬〔如 第三圖所示〕。M252069 Fourth, creation instructions (3) The upper end surface of the copper heat conduction seat (4) is also provided with a number of pointed convex teeth (4 workers), and the two sides of each convex tooth (4 1) are equal in length, so that Forming an isosceles triangle shape, at the same time, each convex tooth (41) on the copper heat conducting seat (4) is suitable for biting corresponding to each convex tooth (3 3) of the aluminum heat sink body (3) [as shown in the third figure] 〕.

由於該散熱器之鋁材散熱片本體(3 )與銅材導熱座 (4 )之間的接觸面係利用凸齒(3 3 )與凸齒(4工) 的嚙咬貼合,使得鋁材散熱片本體(3 )與銅材導熱座( 4)間的接觸面積界面合金化接合體積大幅增加,而因接 觸面積的大小與熱傳導效率的高低呈正比,所以,本創作 如此,結構設計,可提昇鋁材散熱片體(3 )與銅材導熱 座的熱傳導效率,i進而加快晶片(i 〇 )的散 復如 材散熱本 面(5 2 應貼觸設 配合之波 、(6 與銅材導 幅增加, 的熱傳導 經由 習用結構 第四圖 體(5 ),而 立的銅 浪狀凹 1 )的 熱座( 提昇銘 效率, 以上的 為佳之 所示,為本創作 )的基部(5 1 與銘材散熱本體 材導熱座(6 ) 凸面(6 1 ), 彼此凹凸配合使 4 )間的接觸面 材散熱片體(3 並進而加快晶片 實施說明,可知 效果達成,如: 之另一實施例,其係在鋁 )底端形成波浪狀的凹凸(5)凹凸面(52)對 的上端面則形成與之凹凸 據此,利用凹凸面(5 2 <寻^&材散熱片本體(3 ) 積界面合金化接合體積大 )與鋼材導熱座(4)間 (1 0 )的散熱速度。 本創作之結構設計具有較Because the contact surface between the aluminum heat sink body (3) and the copper heat conducting seat (4) of the heat sink is made by the engagement of the convex teeth (3 3) and the convex teeth (4 workers), the aluminum material The contact area of the contact area between the heat sink body (3) and the copper heat conducting seat (4) has a large increase in the volume of alloyed joints, and because the size of the contact area is directly proportional to the level of heat conduction efficiency, this creation is so, the structural design, can Improve the heat conduction efficiency of the aluminum heat sink body (3) and the copper heat conduction seat, and then accelerate the dispersal of the chip (i 〇). The heat dissipation surface (5 2 should be in contact with the matching wave, (6 and copper) The increase of the conduction amplitude is through the base of the thermal base (5 1) of the fourth structure (5) of the conventional structure, and the raised copper wave-shaped recess 1) (improving the efficiency of the inscription, which is better shown above, for this creation) (5 1 and The heat-conducting base (6) of the heat-dissipating body of the Ming material (6) has a convex surface (6 1), and the concave-convex cooperation between the two makes the contact surface material radiating body (3) and further accelerates the implementation of the chip. It can be seen that the effect is achieved, such as: , It is formed on the bottom end of aluminum) (5) Concave-convex surface is formed on the upper end face of the pair of concave-convex surface (52). Based on this, the concave-convex surface (5 2 < finding fin & material fin body (3) has a large interface alloying volume) is used to conduct heat to the steel. The cooling speed of the base (4) (1 0). The structural design of this creation has a

第8頁 M252069 四、創作說明(4) 1·由於該鋁材散熱片本體與鋼材導熱座間的接觸面係 呈彼此嚙咬的凸齒狀或凹凸配合的波浪狀,所以可令二者 間的界面合金化接合體積增加,使接合效果更為堅固。 2·又,正因該鋁材散熱片本體與鋼材導熱座間的接觸 面係呈彼此嚙咬的凸齒狀或凹凸配合的波浪狀,所以可令 二者間的接觸面積加大’並據此提昇散熱之效率。 綜上所述’本創作實施例確能達到所預期之使用功效 ,又其所揭露之具體構造,不僅未曾見諸於同類產品中, 亦未曾公開於申請前,誠已完全符合專利法之規定與要求 ,爰依法提出新型專利之申請,懇請惠予審查,並賜准專 利,則實感德便。Page 8 M252069 4. Creation instructions (4) 1. Since the contact surface between the aluminum heat sink body and the steel heat conduction seat is wavy with convex teeth or concave and convex shapes that bite each other, the The interface alloying joint volume increases, making the joint effect stronger. 2. Also, because the contact surface between the aluminum heat sink body and the steel heat-conducting seat is a convex tooth shape or an undulating wave shape that engages with each other, the contact area between the two can be increased. Improve the efficiency of heat dissipation. In summary, 'This creative embodiment can indeed achieve the expected use effect, and the specific structure disclosed has not only been seen in similar products, nor has it been disclosed before the application. It has fully complied with the provisions of the Patent Law. In accordance with the law, the application for a new type of patent was submitted in accordance with the law, and I begged to examine it and grant the patent.

M252069 圖式簡單說明 【圖式簡單說明】 第一圖:習用結構立體分解圖 第二圖··本創作結構立體分解圖 第三圖:本創作結構組合側視圖 第四圖:本創作之另一實施例 〔參照圖號〕 <習用> (I) 鋁材散熱片本體 (10) (II) 基部 (12) (2 ) 銅材導熱座 <本創作> (3) 鋁材散熱片本體 (31) (32) 鰭片 (33) (4) 銅材導熱座 (41) (5) 鋁材散熱片本體 (51) (52) 凹凸面 (6) (61) 凸凸面 晶片 鰭片 基部 凸齒 凸齒 基部 銅材導熱座M252069 Schematic illustrations [Schematic description] The first picture: a stereoscopic exploded view of the conventional structure. The second picture. The stereoscopic exploded view of this creative structure. The third picture: the side view of the composition of the creative structure. The fourth picture: another of this creative work. Example [Ref. No.] < Conventional > (I) Aluminum heat sink body (10) (II) Base (12) (2) Copper heat conduction seat < Original creation > (3) Aluminum heat sink Body (31) (32) Fin (33) (4) Copper heat sink (41) (5) Aluminum heat sink body (51) (52) Convex surface (6) (61) Convex convex chip fin base Convex tooth base copper heat conduction seat

第10頁Page 10

Claims (1)

M252069 五、申請專利範圍 1. 一種 材散熱 成;其 之上成 狀之凸 齒並令 對應嚙 銅材導 積大、 2· ,其中 等長, 3· 質的鋁 式所形 該基部 狀的凹 材導熱 俾以藉 之間具 面積大 片本 中, 型有 齒, 銅材 咬, 熱座 散熱 如申 ,鋁 而形 一種 材散 成; 之上 凸面 座的 此方 有良 以提 複合材質之散熱器結構,其係由不同材質的鋁 體及銅材導熱座利用界面合金化接合方式所形 在該鋁材散熱片本體的下方為一基部,該基部 數多散熱鰭片,另在基部的底端面具有數多尖 繼於銅材導熱座的上端面亦設有數多尖狀之凸 導熱座上的各凸齒適與鋁材散熱片體之各凸齒 俾以藉此方式之設計,使該鋁材散熱片本體及 之間具有良好且堅固的接合效果,以及接合面 面積大以提高散熱效率之功效。 請專利範圍第1項所述複合材質之散熱器結構 材散熱片本體及銅材導熱座上的凸齒的二側邊 成等腰三角形形狀。 複合材質之散熱器結構,,其中,其係由不同材 熱片本體及銅材導熱座利用界面合金化接合方 其中,在該鋁材散熱片本體的下方為一基部, 成型有數多散熱鰭片,另在基部底端形成波浪 ,而與鋁材散熱本體凹凸面對應貼觸設立的銅 上端面則形成與之凹凸配合之波浪狀凹凸面, 式之設計,使該鋁材散熱片本體及銅材導熱座 好且堅固的接合效果,以及接合面積大、散熱 高散熱效率之功效。M252069 5. Scope of patent application 1. A material for heat dissipation; the convex teeth formed on it and the corresponding lead of copper rods are large, 2 ·, of which the length is equal to 3 ·, and the base is shaped like aluminum. The heat conduction of the concave material is based on the large area of the book, which has teeth, copper bites, and the heat seat is as heat dissipation as the aluminum, and the aluminum is dispersed into a single material. The upper side of the convex seat has a good heat sink for composite materials. The structure is formed by an aluminum body and a copper heat conducting seat of different materials using an interface alloying bonding method. A base portion is formed below the aluminum heat sink body, and the base portion includes a plurality of heat dissipation fins, and the bottom end surface of the base portion The convex teeth on the upper end surface of the copper heat conducting seat with a plurality of tips are also provided with a plurality of pointed convex heat conducting seats. The convex teeth of the aluminum heat sink body are designed in this way to make the aluminum The heat sink body and the material have a good and strong joint effect, and the area of the joint surface is large to improve the efficiency of heat dissipation. The heat sink structure of the composite material described in item 1 of the patent, please use the two sides of the convex teeth on the body of the heat sink and the copper heat conduction seat to form an isosceles triangle. A heat sink structure made of composite materials, wherein the heat sink body and copper heat-conducting seat of different materials are alloyed by an interface. Among them, a base is formed below the aluminum heat sink body, and a plurality of heat sink fins are formed. In addition, waves are formed at the bottom end of the base, and the copper upper end surface corresponding to the concave and convex surface of the aluminum heat sink body is formed with a wavy concave and convex surface that matches the concave and convex. The design makes the aluminum heat sink body and copper The material heat-conducting seat has a good and sturdy bonding effect, and the effect of large bonding area and high heat dissipation efficiency. 第11頁Page 11
TW93202768U 2004-02-26 2004-02-26 A structure of a radiator made of composite material TWM252069U (en)

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