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TW202217504A - Knockdown water-cooling unit latch device structure - Google Patents

Knockdown water-cooling unit latch device structure Download PDF

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Publication number
TW202217504A
TW202217504A TW109135953A TW109135953A TW202217504A TW 202217504 A TW202217504 A TW 202217504A TW 109135953 A TW109135953 A TW 109135953A TW 109135953 A TW109135953 A TW 109135953A TW 202217504 A TW202217504 A TW 202217504A
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Taiwan
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fastener
water
cooling unit
combined
joint
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TW109135953A
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Chinese (zh)
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TWI751742B (en
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黃冠霖
邱俊春
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奇鋐科技股份有限公司
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Priority to TW109135953A priority Critical patent/TWI751742B/en
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Publication of TW202217504A publication Critical patent/TW202217504A/en

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Abstract

A knockdown water-cooling unit latch device structure includes a latch device assembly having multiple latch members. The latch members are correspondingly assembled with each other around a water-cooling unit. The latch members are connected with each other via at least one connection member. Alternatively, the latch members are directly assembled with each other by means of engagement or lap joint. The latch members of the latch device assembly are assembled with the water-cooling unit so that when the latch device assembly is assembled with the water-cooling unit, the latch members will not interfere with the water-cooling unit.

Description

組合式水冷單元扣具結構Combined water cooling unit fastener structure

一種組合式水冷單元扣具結構,尤指一種透過將扣具構件區分複數等分並分別框設於該水冷單元外部後,再將該等扣具構件固定結合的水冷單元扣具結構。A combined water-cooling unit fastener structure, especially a water-cooling unit fastener structure by dividing the fastener components into plural equal parts and framing them on the outside of the water-cooling unit, and then fixing and combining the fastener components.

隨著大數據及雲端運端計算服務的需求大幅度提升,相關電子產品的散熱需求也越來越高,尤其是大型運算中心的服務器,其運算密度提高,同尺寸的空間中所產生的廢熱也大幅提升,為了降低散熱所消耗的能源,散熱器的設計漸漸由傳統使用風扇的氣冷,轉變成使用液體將熱源從服務器中帶走以其他方式散熱,以解決高密度廢熱產生的問題。 過往使用風冷的電子產品,各個晶片對應為單體的散熱器(Heat Sink),若系統內有多個晶片亦對應多組風冷散熱器;而轉變成液冷的產品時,需要於有限的機殼空間內配置水路管線,而在狹小的空間內,影響到管線配置的主要因素有:主機板配置、水冷板進出口方向、管線內外徑、管線最小折彎半徑等。 在從氣冷轉變為液冷的過程中,往往發生客戶端主機板配置以氣冷的思維設計完成並無法進行設計變更,造成下游廠商在配置水冷單元的管線時處處受到限制,並且帶來大量水冷產品設計變更等影響。 參閱第9、10圖,係為習知水冷頭及扣具立體分解及組合圖,如圖所示,水冷頭3因使用銅質或鋁質材料特性較軟之材質,因此無法承受高磅數的上鎖壓力,無法直接鎖固於發熱源上,故需透過先與一扣具底板4組合後,再藉由扣具底板4與發熱源(圖中未示)周邊的鎖固結構進行鎖固,而水冷頭3上所設置之進水管31及出水管32通常為了防止滲漏,係透過焊接之方式與該水冷頭3進行結合。 又為了防止滲漏該進水管31及出水管32透過焊接之進行固定於水冷頭3上方,因此當扣具底板4套接於水冷頭3外部時,又會受到該進水管31或出水管32阻礙產生干涉而無法結合,而該進水管31及出水管32無法透過旋轉改變方向而防止與該扣具底板4的干涉問題。 故當水冷頭3與該扣具底板4產生干涉時,則透過將該扣具底板4開設至少一凹槽41,透過該凹槽41之設置令該扣具底板4與該進水管31及出水管32解除干涉之問題,但針對不同方向的進水管31及出水管32則必需另外開設模具重新製造與該水冷頭3相對應而不干涉之扣具底板4構件,而開設不同模具相當耗費製造成本,並且對於開設不同角度的凹槽41也會影響該扣具底板4之結構強度。 故如何改善扣具底板與水冷頭結合上的問題,則為首要解決之重點。 先前技術之作法及缺點 1.    水冷頭進水管方向受限於核心水冷頭安裝方式。 2.    水冷頭在面對晶片設計趨勢,可能會有結構強度不足的情況。組裝工序須先安裝轉接扣具底板後才可安裝水路管線。 考慮到上述缺失,為了增加液冷模組能對應更多客戶的使用需求,故必須針對水冷頭進行優化,增加水冷頭進出入口的自由度。 With the substantial increase in the demand for big data and cloud computing services, the heat dissipation requirements of related electronic products are also increasing, especially for servers in large computing centers. It has also been greatly improved. In order to reduce the energy consumption for heat dissipation, the design of the radiator has gradually changed from the traditional air cooling using fans to using liquid to take away the heat source from the server and dissipate heat in other ways to solve the problem of high-density waste heat generation. For electronic products that used air cooling in the past, each chip corresponds to a single heat sink (Heat Sink). The water pipeline is configured in the space of the large casing, and in the narrow space, the main factors affecting the pipeline configuration are: the configuration of the main board, the direction of the inlet and outlet of the water cooling plate, the inner and outer diameter of the pipeline, and the minimum bending radius of the pipeline, etc. In the process of changing from air cooling to liquid cooling, it often happens that the configuration of the client motherboard is completed with the thinking of air cooling and design changes cannot be made, which causes downstream manufacturers to be restricted everywhere when configuring the pipelines of the water cooling unit, and brings a lot of Water-cooled product design changes, etc. Refer to Figures 9 and 10, which are the three-dimensional exploded and combined views of the conventional water block and the buckle. As shown in the figure, the water block 3 cannot withstand high pounds due to the use of copper or aluminum materials which are relatively soft. The locking pressure cannot be directly locked on the heat source, so it needs to be locked by the locking structure around the base plate 4 of the buckle and the heat source (not shown in the figure) after being combined with a base plate 4 of the buckle. In order to prevent leakage, the water inlet pipe 31 and the water outlet pipe 32 provided on the water block 3 are usually combined with the water block 3 by welding. In order to prevent leakage, the water inlet pipe 31 and the water outlet pipe 32 are fixed above the water block 3 by welding, so when the bottom plate 4 of the fastener is sleeved outside the water block 3, the water inlet pipe 31 or the water outlet pipe 32 will be affected by the water inlet pipe 31 or the water outlet pipe 32. The obstruction causes interference and cannot be combined, and the water inlet pipe 31 and the water outlet pipe 32 cannot be rotated to change directions to prevent the problem of interference with the bottom plate 4 of the fastener. Therefore, when the water-cooled head 3 interferes with the bottom plate 4 of the fastener, at least one groove 41 is formed in the bottom plate 4 of the fastener, and the bottom plate 4 of the fastener and the water inlet pipe 31 and the outlet are made through the setting of the groove 41. The water pipe 32 eliminates the problem of interference, but for the water inlet pipe 31 and the water outlet pipe 32 in different directions, additional molds must be opened to re-manufacture the fastener base plate 4 that corresponds to the water block 3 and does not interfere, and it is quite expensive to open different molds. cost, and the structural strength of the bottom plate 4 of the fastener will be affected for the grooves 41 with different angles. Therefore, how to improve the problem of the combination of the bottom plate of the fastener and the water block is the primary focus. Prior Art Practices and Disadvantages 1. The direction of the water block inlet pipe is limited by the installation method of the core water block. 2. In the face of the chip design trend, the water block may have insufficient structural strength. The assembly process must first install the adapter bottom plate before installing the water pipeline. Considering the above deficiencies, in order to increase the liquid cooling module to meet the needs of more customers, it is necessary to optimize the water cooling head and increase the degree of freedom of the inlet and outlet of the water cooling head.

爰此,為有效解決上述之問題,本發明之主要目的,係提供一種透過將扣具劃分為複數個扣具構件,再分別框設於該水冷單元外部後再將該等扣具構件固定結合的水冷單元扣具結構。 為達上述之目的,本發明係提供一種組合式水冷單元扣具結構,係包含:一扣具組,具有複數扣具構件,該等扣具構件相互對應組設於一水冷單元外側,並透過至少一連接件將該等扣具構件連接固定或透過該等扣具構件相互拼接或搭接之方式進而將該等扣具構件連結組合固定。 本發明主要透過將扣具劃分為複數扣具構件,並分別對應組設於該水冷單元外圍,再透過至少一連接件或透過該等扣具構件彼此間直接拼接或搭接之方式連結組合,藉此當該扣具與水冷單元進行組設時可避免相互干涉而無法組裝之缺失。 Therefore, in order to effectively solve the above-mentioned problems, the main purpose of the present invention is to provide a fastener by dividing the fastener into a plurality of fastener components, and then frame them respectively outside the water-cooling unit, and then fix and combine the fastener components. The water-cooled unit buckle structure. In order to achieve the above-mentioned purpose, the present invention provides a combined water-cooling unit fastener structure, which includes: a fastener group having a plurality of fastener components, the fastener components are correspondingly assembled on the outside of a water-cooling unit, and pass through At least one connecting piece connects and fixes the fastener elements or connects and assembles the fastener elements in a manner of splicing or overlapping the fastener elements with each other. The present invention mainly divides the fastener into a plurality of fastener components, which are respectively assembled on the periphery of the water-cooling unit, and then connected and assembled through at least one connector or by direct splicing or overlapping of the fastener components. Therefore, when the fastener and the water-cooling unit are assembled, the lack of mutual interference and inability to be assembled can be avoided.

本發明之上述目的及其結構與功能上的特性,將依據所附圖式之較佳實施例予以說明。 請參閱第1、2圖,係為本發明之組合式水冷單元扣具結構之第一實施例之立體分解及組合圖,如圖所示,所述組合式水冷單元扣具結構,係包含: 一扣具組1,具有複數扣具構件,該等扣具構件相互對應組設於一水冷單元2外側,並透過至少一連接件11將該等扣具構件連結組合固定,所述水冷單元2係為一水冷頭或水冷板其中任一。 本實施例扣具組1係具有一第一扣具構件12及一第二扣具構件13,所述第一扣具構件12具有一第一結合端121及一第二結合端122,所述第一、二結合端121、122分設於該第一扣具構件12之兩端,並在第一、二結合端121、122之間具有一第一凹槽123,並該第一扣具構件12呈一U字形。 所述第二扣具構件13具有一第三結合端131及一第四結合端132,所述第三、四結合端131、132分設於該第二扣具構件13之兩端,並在第三、四結合端131、132之間具有一第二凹槽133,並該第二扣具構件13呈一U字形。 所述第一、二扣具構件12、13水平對應設置,並該第一、三結合端121、131相互對應並透過前述連接件11串聯組合,所述第二、四結合端122、132相互對應並透過前述連接件11串(接)聯組合,並該第一、二扣具構件12、13之第一、二凹槽123、133共同組成一容置空間14,並該容置空間14可供前述水冷單元2容設與該扣具組1結合,並透過該扣具組1以組合之方式進行結合,可避免與該水冷單元2組合時產生干涉而無法進行結合之缺失。 前述連接件11與前述第一、二扣具構件12、13透過螺鎖、嵌接、夾合、插接、緊迫等其中任一方式結合,本實施例係透過螺鎖之方式作為說明實施例,所述連接件11與前述第一、二、三、四結合端121、122、131、132對應之處開設有螺孔121a、122a、131a、132a,並透過一螺鎖元件3進行螺鎖加強固定,藉以防止該第一、二扣具構件12、13分離,確保該第一、二扣具構件12、13可緊密結合於該水冷單元2之外部保護該水冷單元2外,進一步可將該水冷單元2鎖固於對應組設之發熱源的上側。 請參閱第3、4圖,係為本發明之組合式水冷單元扣具結構之第二實施例之立體分解及組合圖,如圖所示,本實施例部分結構與前述第一實施例相同故在此將不再贅述,惟本實施例與前述第一實施例之不同處在於所述第一、三結合端121、131與該第二、四結合端122、132與該連接件11之間可透過凹、凸之方式進行卡制結合,所述卡制結合之結構係可透過將所述第一、三結合端121、131共同組成一第一鳩尾座15,即表示該第一結合端121具有該第一鳩尾座15一半之結構形狀,該第三結合端131具有該第一鳩尾座15一半之結構形狀,兩者拼接後共同組成該第一鳩尾座15。 該第二、四結合端122、132共同組成一第二鳩尾座16,即表示該第二結合端122具有該第二鳩尾座16一半之結構形狀,該第四結合端132具有該第二鳩尾座16一半之結構形狀,兩者拼接後共同組成該第二鳩尾座16。 所述連接件11具有一鳩尾槽17,並該等連接件11透過鳩尾槽17與前述第一、二鳩尾座15、16嵌入結合,藉此透過該連接件11之鳩尾槽17與前述第一、二鳩尾座15、16之配合令所述第一、二扣具構件可緊密結合。 本實施例僅為提供一種凹、凸結構之組設配合實施例,當然亦可以其他種類凹、凸結構進行組設配合。 請參閱第5、6圖,係為本發明之組合式水冷單元扣具結構之第三實施例之立體分解及組合圖,如圖所示,本實施例部分結構與前述第一實施例相同故在此將不再贅述,惟本實施例與前述第一實施例之不同處在於所述第一、二 、三、四結合端121、122、131、132分別具有一第一孔洞121b、一第二孔洞122b、一第三孔洞131b、一第四孔洞132b,所述第一、三孔洞121b、131b水平對應設置,所述第二、四孔洞122b、132b水平對應設置,所述連接件11具有一第一插接端11a及一第二插接端11b,並該等連接件11透過該第一、二插接端11a、11b對應插接於第一、三孔洞121b、131b與第二、四孔洞122b、132b,藉以令該連接件串接該第一、二扣具構件12、13緊密結合。 請參閱第7、8圖,係為本發明之組合式水冷單元扣具結構之第四實施例之立體分解及組合圖,如圖所示,本實施例部分結構與前述第一實施例相同,故在此將不再贅述,惟本實施例與前述第一實施例之不同處在於所述扣具組更具有一第三扣具構件18及一第四扣具構件19,所述第一、三扣具構件12、18透過嵌接之方式進行結合,所述第二、四扣具構件13、19透過嵌接之方式進行結合,本實施例嵌接之結構係為一凹與一凸之配合,並不特別限定,並該第一、二扣具構件12、13一端再由該連接件11進行連接結合,所述第三、四扣具構件18、19一端再透過連接件11進行連接結合,並本實施例之連接件11與該第一、二 、三、四扣具構件12、13、18、19透過螺鎖之方式進行結合。 上述第一、二扣具構件12、13及連接件11係可選擇銅合金、鋁合金、鈦合金、不銹鋼、純鈦、塑膠其中任一,並該第一、二扣具構件12、13及該連接件11亦可為相同或相異材質。 本發明主要透過以組合之方式將扣具構件劃分為複數等分再與水冷單元進行組合,由此可避免水冷單元結構與該扣具組合時產生干涉無法組裝之問題,進而可節省模具開發之成本,也可改善組裝干涉之問題。 The above-mentioned objects of the present invention and their structural and functional characteristics will be described with reference to the preferred embodiments of the accompanying drawings. Please refer to Figures 1 and 2, which are three-dimensional exploded and combined views of the first embodiment of the combined water-cooled unit fastener structure of the present invention. As shown in the figures, the combined water-cooled unit fastener structure includes: A fastener assembly 1 has a plurality of fastener components. The fastener components are assembled on the outside of a water-cooling unit 2 corresponding to each other, and the fastener components are connected and fixed through at least one connecting piece 11 . The water-cooling unit 2 It is either a water-cooled head or a water-cooled plate. The fastener set 1 of the present embodiment has a first fastener member 12 and a second fastener member 13 . The first fastener member 12 has a first coupling end 121 and a second coupling end 122 . The first and second joint ends 121 and 122 are respectively disposed at two ends of the first fastener member 12, and there is a first groove 123 between the first and second joint ends 121 and 122, and the first fastener The member 12 is in a U shape. The second fastener member 13 has a third joint end 131 and a fourth joint end 132, the third and fourth joint ends 131 and 132 are respectively disposed at two ends of the second fastener member 13, A second groove 133 is formed between the third and fourth joint ends 131 and 132 , and the second fastener member 13 is in a U-shape. The first and second fastener members 12 and 13 are horizontally arranged correspondingly, and the first and third joint ends 121 and 131 correspond to each other and are connected in series through the aforementioned connecting piece 11 . The second and fourth joint ends 122 and 132 are connected to each other. The first and second grooves 123 and 133 of the first and second fastener members 12 and 13 are correspondingly connected in series (connected) through the aforementioned connecting pieces 11 to form an accommodating space 14 , and the accommodating space 14 The aforementioned water-cooling unit 2 can be accommodated and combined with the fastener set 1 , and the fastener set 1 can be combined in a combined manner, so as to avoid the lack of interference and failure to combine with the water-cooling unit 2 . The aforementioned connector 11 is combined with the aforementioned first and second fastener members 12 and 13 by any means of screw locking, inlaying, clamping, inserting, pressing, etc. This embodiment is an illustrative embodiment by means of screw locking. , the connector 11 is provided with screw holes 121a, 122a, 131a, 132a corresponding to the aforementioned first, second, third, and fourth joint ends 121, 122, 131, 132, and is screwed through a screw locking element 3 Strengthen the fixation, so as to prevent the separation of the first and second fastener members 12, 13, to ensure that the first and second fastener members 12, 13 can be tightly combined with the outside of the water-cooling unit 2 to protect the water-cooling unit 2, and further can be The water cooling unit 2 is locked on the upper side of the corresponding heating source. Please refer to Figures 3 and 4, which are three-dimensional exploded and combined views of the second embodiment of the combined water-cooling unit fastener structure of the present invention. As shown in the figures, part of the structure of this embodiment is the same as that of the first embodiment described above. The details will not be repeated here, but the difference between this embodiment and the aforementioned first embodiment is that between the first and third joint ends 121 , 131 , the second and fourth joint ends 122 , 132 and the connecting member 11 The snap joint can be performed by means of concave and convex. The structure of the snap joint can be formed by combining the first and third joint ends 121 and 131 to form a first dovetail seat 15, which means the first joint end. The 121 has a half structural shape of the first dovetail seat 15 , the third joint end 131 has a half structural shape of the first dovetail seat 15 , and the two together form the first dovetail seat 15 after splicing. The second and fourth joint ends 122 and 132 together form a second dovetail seat 16 , which means that the second joint end 122 has a half structural shape of the second dovetail seat 16 , and the fourth joint end 132 has the second dovetail Half of the structural shape of the seat 16 , the second dovetail seat 16 is formed together after the two are joined together. The connecting member 11 has a dovetail groove 17, and the connecting members 11 are embedded and combined with the first and second dovetail seats 15 and 16 through the dovetail groove 17, so that the first and second dovetail seats 15 and 16 are inserted through the dovetail groove 17 of the connecting member 11. The cooperation of the two dovetail seats 15 and 16 enables the first and second fastener components to be tightly combined. This embodiment only provides an example of assembling and cooperating with one kind of concave and convex structures, of course, other kinds of concave and convex structures can also be assembled and matched. Please refer to Figures 5 and 6, which are three-dimensional exploded and combined views of the third embodiment of the combined water-cooling unit fastener structure of the present invention. As shown in the figures, part of the structure of this embodiment is the same as that of the first embodiment. The details will not be repeated here, but the difference between this embodiment and the aforementioned first embodiment is that the first, second, third, and fourth joint ends 121 , 122 , 131 , 132 respectively have a first hole 121 b , a first Two holes 122b, a third hole 131b, and a fourth hole 132b, the first and third holes 121b, 131b are arranged correspondingly horizontally, the second and fourth holes 122b, 132b are arranged correspondingly horizontally, and the connecting member 11 has A first plug end 11a and a second plug end 11b, and the connectors 11 are correspondingly plugged into the first and third holes 121b, 131b and the second, The four holes 122b and 132b are used to make the connector connect the first and second fastener members 12 and 13 tightly together. Please refer to Figures 7 and 8, which are three-dimensional exploded and combined views of the fourth embodiment of the combined water-cooling unit fastener structure of the present invention. As shown in the figures, part of the structure of this embodiment is the same as that of the first embodiment. Therefore, it will not be repeated here, but the difference between this embodiment and the aforementioned first embodiment is that the fastener set has a third fastener member 18 and a fourth fastener member 19, the first, The three fastener members 12 and 18 are combined by means of embedding, and the second and fourth fastener members 13 and 19 are combined by means of embedding. In this embodiment, the structure of embedding is a concave and a convex. The matching is not particularly limited, and one end of the first and second fastener members 12 and 13 is connected and combined by the connector 11, and one end of the third and fourth fastener members 18 and 19 is connected through the connector 11. In combination, the connector 11 of this embodiment is combined with the first, second, third, and fourth fastener members 12, 13, 18, and 19 by means of screw locks. The first and second fastener components 12, 13 and the connector 11 can be selected from copper alloy, aluminum alloy, titanium alloy, stainless steel, pure titanium, and plastic, and the first and second fastener components 12, 13 and The connecting member 11 can also be made of the same or different materials. The present invention mainly divides the fastener components into a plurality of equal parts in a combined manner and then combines them with the water-cooling unit, thereby avoiding the problem that the water-cooling unit structure and the fastener cannot be assembled when they are combined, thereby saving the development of the mold. cost, and can also improve the problem of assembly interference.

1:扣具組 11:連接件 11a:第一插接端 11b:第二插接端 12:第一扣具構件 121:第一結合端 121b:第一孔洞 122:第二結合端 122b:第二孔洞 123:第一凹槽 13:第二扣具構件 131:第三結合端 131b:第三孔洞 132:第四結合端 132b:第四孔洞 133:第二凹槽 14:容置空間 121a、122a、131a、132a:螺孔 3:螺鎖元件 15:第一鳩尾座 16:第二鳩尾座 17:鳩尾槽 a:凸條 b:凹槽 c:穿孔 d:貫穿孔 18:第三扣具構件 19:第四扣具構件 2:水冷單元 1: Buckle set 11: Connectors 11a: The first plug end 11b: The second plug terminal 12: The first fastener component 121: first binding end 121b: first hole 122: Second binding end 122b: Second hole 123: First groove 13: Second buckle member 131: The third binding end 131b: third hole 132: Fourth binding end 132b: Fourth hole 133: Second groove 14: Accommodating space 121a, 122a, 131a, 132a: screw holes 3: Screw lock element 15: The first dovetail 16: Second Dovetail 17: Dovetail slot a: convex strip b: groove c: perforated d: through hole 18: The third fastener component 19: Fourth Buckle Member 2: Water cooling unit

第1圖係為本發明之組合式水冷單元扣具結構之第一實施例之立體分解圖; 第2圖係為本發明之組合式水冷單元扣具結構之第一實施例之立體組合圖; 第3圖係為本發明之組合式水冷單元扣具結構之第二實施例之立體分解圖; 第4圖係為本發明之組合式水冷單元扣具結構之第二實施例之立體組合圖; 第5圖係為本發明之組合式水冷單元扣具結構之第三實施例之立體分解圖; 第6圖係為本發明之組合式水冷單元扣具結構之第三實施例之立體組合圖; 第7圖係為本發明之組合式水冷單元扣具結構之第四實施例之立體分解圖; 第8圖係為本發明之組合式水冷單元扣具結構之第四實施例之立體組合圖; 第9圖係為習知水冷頭及扣具立體分解圖; 第10圖係為習知水冷頭及扣具立體組合圖。 Figure 1 is an exploded perspective view of the first embodiment of the combined water-cooling unit fastener structure of the present invention; Figure 2 is a three-dimensional combined view of the first embodiment of the combined water-cooling unit fastener structure of the present invention; Figure 3 is an exploded perspective view of the second embodiment of the combined water-cooling unit fastener structure of the present invention; FIG. 4 is a three-dimensional combined view of the second embodiment of the combined water-cooling unit fastener structure of the present invention; Figure 5 is an exploded perspective view of the third embodiment of the combined water-cooling unit fastener structure of the present invention; FIG. 6 is a three-dimensional combined view of the third embodiment of the combined water-cooling unit fastener structure of the present invention; FIG. 7 is an exploded perspective view of the fourth embodiment of the combined water-cooling unit fastener structure of the present invention; FIG. 8 is a three-dimensional combined view of the fourth embodiment of the combined water-cooling unit fastener structure of the present invention; Figure 9 is a three-dimensional exploded view of a conventional water block and a fastener; FIG. 10 is a three-dimensional combined view of a conventional water block and a fastener.

1:扣具組 1: Buckle set

2:水冷單元 2: Water cooling unit

11:連接件 11: Connectors

12:第一扣具構件 12: The first fastener component

13:第二扣具構件 13: Second buckle member

121:第一結合端 121: first binding end

122:第二結合端 122: Second binding end

123:第一凹槽 123: First groove

131:第三結合端 131: The third binding end

132:第四結合端 132: Fourth binding end

133:第二凹槽 133: Second groove

14:容置空間 14: Accommodating space

121a、122a、131a、132a:螺孔 121a, 122a, 131a, 132a: screw holes

3:螺鎖元件 3: Screw lock element

Claims (9)

一種組合式水冷單元扣具結構,係包含: 一扣具組,具有複數扣具構件,該等扣具構件相互對應組設於一水冷單元外側,並透過至少一連接件將該等扣具構件連結組合固定。 A combined water-cooling unit fastener structure, comprising: A fastener set has a plurality of fastener components, the fastener components are assembled on the outside of a water-cooling unit corresponding to each other, and the fastener components are connected and fixed through at least one connecting piece. 如請求項第1項所述之組合式水冷單元扣具結構,其中所述扣具組具有一第一扣具構件及一第二扣具構件,所述第一扣具構件具有一第一結合端及一第二結合端,所述第一、二結合端分設於該第一扣具構件之兩端,所述第二扣具構件具有一第三結合端及一第四結合端,所述第三、四結合端分設於該第二扣具構件之兩端,所述第一、二扣具構件水平對應設置,並該第一、三結合端相互對應並透過前述連接件串聯組合,所述第二、四結合端相互對應並透過前述連接件串聯組合。The combined water-cooling unit fastener structure according to claim 1, wherein the fastener set has a first fastener member and a second fastener member, and the first fastener member has a first joint and a second joint end, the first and second joint ends are respectively located at two ends of the first fastener member, the second fastener member has a third joint end and a fourth joint end, the The third and fourth joint ends are respectively arranged at two ends of the second fastener member, the first and second fastener members are arranged correspondingly horizontally, and the first and third joint ends correspond to each other and are connected in series through the aforementioned connecting piece , the second and fourth combined ends correspond to each other and are combined in series through the aforementioned connecting piece. 如請求項第2項所述之組合式水冷單元扣具結構,其中所述連接件與前述第一、二扣具構件透過螺鎖、嵌接、夾合其中任一方式結合。The combined water-cooling unit fastener structure according to claim 2, wherein the connector is combined with the first and second fastener components through any one of screw locking, inserting, and clamping. 如請求項第3項所述之組合式水冷單元扣具結構,其中所述連接件與前述第一、二、三、四結合端對應之處開設有螺孔,並透過螺鎖元件進行螺鎖加強固定。The combined water-cooling unit fastener structure according to claim 3, wherein the connector is provided with a screw hole corresponding to the first, second, third, and fourth joint ends, and is screwed through a screw locking element Strengthen the fixation. 如請求項第3項所述之組合式水冷單元扣具結構,其中其中所述第一、三結合端與該第二、四結合端與該連接件之間可透過凹、凸之方式進行卡制結合,所述卡制結合之結構係可透過將所述第一、三結合端共同組成一第一鳩尾座,該第二、四結合端共同組成一第二鳩尾座,所述連接件具有一鳩尾槽,並該等連接件透過鳩尾槽與前述第一、二鳩尾座嵌入結合。The combined water-cooling unit fastener structure according to claim 3, wherein the first and third joint ends, the second and fourth joint ends and the connecting piece can be locked by concave and convex means The structure of the snap-fit combination can be achieved by combining the first and third joint ends to form a first dovetail seat, the second and fourth joint ends together to form a second dovetail seat, and the connecting piece has A dovetail slot, and the connecting pieces are embedded and combined with the first and second dovetail seats through the dovetail slot. 如請求項第2項所述之組合式水冷單元扣具結構,其中該第一扣具構件具有一第一凹槽,所述第二扣具構件具有一第二凹槽,該第一、二凹槽相互對應組成一容置空間,所述第一、二凹槽分別框設於該水冷單元外側,即該水冷單元設置於該容置空間中與該第一、二扣具構件結合。The combined water-cooling unit fastener structure according to claim 2, wherein the first fastener member has a first groove, the second fastener member has a second groove, the first and second fasteners The grooves correspond to each other to form an accommodating space, and the first and second grooves are respectively framed outside the water-cooling unit, that is, the water-cooling unit is disposed in the accommodating space and combined with the first and second fastener members. 如請求項第1項所述之組合式水冷單元扣具結構,其中所述水冷單元係為一水冷頭或水冷板其中任一。The combined water-cooling unit fastener structure according to claim 1, wherein the water-cooling unit is either a water-cooling head or a water-cooling plate. 如請求項第1項所述之組合式水冷單元扣具結構,其中所述第一、二 、三、四結合端分別具有一第一孔洞、一第二孔洞、一第三孔洞、一第四孔洞,所述第一、三孔洞水平對應設置,所述第二、四孔洞水平對應設置,所述連接件具有一第一插接端及一第二插接端,並該等連接件透過該第一、二插接端對應插接於第一、三孔洞與該第二、四孔洞。The combined water-cooling unit fastener structure according to claim 1, wherein the first, second, third, and fourth joint ends respectively have a first hole, a second hole, a third hole, and a fourth hole Holes, the first and third holes are arranged correspondingly horizontally, the second and fourth holes are arranged correspondingly horizontally, the connecting piece has a first plug end and a second plug end, and the connecting pieces pass through the hole The first and second plug terminals are correspondingly plugged into the first and third holes and the second and fourth holes. 如請求項第1項所述之組合式水冷單元扣具結構,其中所述第一、二扣具構件及該連接件係可選擇銅合金、鋁合金、鈦合金、不銹鋼、純鈦、塑膠其中任一,並該第一、二扣具構件及該連接件亦可為相同或相異材質。The combined water-cooled unit fastener structure as claimed in claim 1, wherein the first and second fastener components and the connector can be selected from copper alloys, aluminum alloys, titanium alloys, stainless steel, pure titanium, and plastics. Either, the first and second fastener components and the connecting piece can also be made of the same or different materials.
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TWI785409B (en) * 2020-10-30 2022-12-01 大陸商深圳昂湃技術有限公司 Easily expanded liquid-cooled heat sink

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