M245507M245507
【新型所屬之技術領域】 本創作係有關於一種導熱管彎折構造,尤指 一種可供電腦中央處理器散熱糸統使用之導熱管 可依所需之角度隨手加以彎折的構造。 【先前技術】 習知有關於電腦中央處理器所使用之導熱管 均為長直形狀,其係用Μ直接吸熱體與散熱片* 將吸熱體在散熱源處所吸收之熱傳導至散熱片來 散熱,由於吸熱體與散熱片是兩種不同造型,不 同體積之構件,導熱管連接於其間有高低差和方 向差存在而必須加Μ克腋,目前用於克腋這種高 低差和方向差的方法是用工具事先將導熱管加以 彎折,如彎折後尚有連接不理想之情況時,則必 須一而再,再而三的重複調節其彎折角度,麻煩 費時且浪費人力成本,再者,習知導熱管為增加 其散熱速度,亦有於導熱管內裝設半圓管形交叉 網或燒結粉粒或於管內壁設溝槽齒紋並於導熱管 內加入液體者,但該半圓管形交叉網、粉粒及溝槽 齒紋經彎折後即會受到破壞,並影響散熱效果, 且交叉網並會在虹吸作用時阻斷水的流暢。 【内容】 本創作之目的係為解決前述習知電腦中央處 理器導.熱管於需彎折時必須使用工具來加Μ彎折 *造成人力浪費的缺失,提供一種「導熱管彎折 構造」,是種彎折構造係創作人於實務經驗中歷 M245507 經多年之研究設計及不斷之探討改進始獲得者, 其主要係於導熱管上適當位置設有至少為一處以 上之彎折溝槽,使導熱管於需彎折時,可依所需 之角度隨手加Μ彎折,其不僅連接使用時可達到 最理想之連接效果,且不必使用Π;具來進行其彎 折工作,省時省事,可節省人力成本並提生競爭 力,此外,該設有彎折溝槽之導熱管在實施例上 亦得於管內裝設管狀交叉編孅網或繞圈彈簧絲(請 參閲第四圖及第五圖)該管形編纖網或繞圈彈簧絲 係以其可伸縮作用裝入導熱#内並緊貼於導熱管 內壁,其不僅可隨著導熱管被彎折而彎折,並可 因導熱管內裝入少許液體而加速熱傳導及散熱之 使用功能。尤其在產生水之虹吸作用時,其編織 網並無阻斷水流暢之憂,為一可增進使用效果又 具有實用價值之創作。 【實施方式】 本創作之構造使用及其功效特點依據附圖所 示之最佳實施例進一步更詳細說明如下: 如第一圖及第二圖所示,本創作「導熱管彎 折構造」主要係於導熱管1上適當位置設有一處或 至少為一處以上由若干溝槽所構成之彎折溝槽2, 每一處彎折溝槽2之溝槽數為若干個,使導熱管1 於需彎折時,可依所需角度隨手加Μ彎折,其不 僅連接使用時可達到最理想之連接效果,且不必 使用工具來進行其彎折工作,省時省力,可節省 人力成本並提升競爭力。 M245507 前述導熱管1在實施例上可作為電腦中央處理 ' 器之導熱管(請參閲第三圖),將其兩端分別連接 於吸熱體3和散熱片4,連接時可Μ利用彎折溝槽 2用手將導熱管1作各種不同角度之彎折,Μ因應 吸熱體3和散熱Η 4間的高低差和方、向差,其不僅 可增加使用之方便性,且不必使用工具,可節省 人力成本並提升競爭力。 * 前述設有一處或至少一處以上彎折溝槽2之導 熱管1為本創作之基本構造,其在實施例上亦得於 ▲ 管內裝設管狀交叉編纖網11或繞圏彈簧絲12(請參 閲第四圖及第五圖),該管形編織網或繞圏彈簧絲 係以其可伸縮作用裝入導熱管1內並緊貼於導熱管 1内壁,其不僅可隨著導熱管1被彎折而彎折,並 可因導熱管1内裝入少許液體而加速熱傳導及散熱 之使用功能。而其編織網並無阻斷水流暢之憂。 綜上所述,本創作「導熱管彎折構造」主要 係於導熱管上適當位置設有一處或至少為一處以 上之彎折溝槽.,每一處彎折溝槽之溝槽數為若干 個,使導熱管於需彎折使用時,能利用該彎折溝 槽隨手加Μ彎折,其彎折溝槽成型於導熱管上及 φ 於導熱管内裝設交叉編織網或繞圏彈簧絲之構造 為前所未見,不僅具有新穎性及進步性,且能增 加使用之方便性,不必使用工具,省時省事又可 節省人力成本並提升競爭力,尤其具有可加速熱 傳導和散熱之使用功能,為一可增進使用效果又 具有實用價值,合於新型專利要件之創作。 8 M245507 【圖式簡單說明】 第一圖為本創作彎折構造一實施例圖。 第二圖為本創作彎折狀態擧例圖。 第三圖為本創作連接吸熱體與散熱片之實施 例圖。 第四圖為本創作導熱管內裝設交叉編織網之 實施例圖 第五圖為本創作導熱管内裝設繞圈彈簧絲之 實施例圖。 圖中: 1.. .導熱管 2 ...彎折溝槽 3 ...吸熱體 4.. .散熱片 11 ..交叉編纖網 1 2 ..繞圈彈簧絲[Technical field to which the new type belongs] This creation relates to a heat-conducting tube bending structure, particularly a heat-conducting tube that can be used by a computer's central processing unit's heat dissipation system, and can be bent at any desired angle. [Previous technology] It is known that the heat transfer tubes used in computer central processors are long and straight. It uses M direct heat sink and heat sink * to conduct heat absorbed by the heat sink at the heat sink to the heat sink to dissipate heat. Because the heat sink and the heat sink are two different shapes and different volume components, the heat pipe is connected between the height difference and the direction difference, and the gram armpit must be added. Currently, the method is used to measure the armpit and the height difference. The tool is used to bend the heat pipe in advance. If the connection is not ideal after bending, you must adjust the bending angle again and again, which is troublesome and time-consuming and wastes labor costs. It is known that in order to increase the heat dissipation speed of heat transfer tubes, there are also semi-circular tube-shaped cross nets or sintered powder particles installed in the heat transfer tubes or grooves on the inner wall of the tube and liquid is added to the heat transfer tubes. The tube-shaped cross netting, powder particles, and groove tooth patterns will be damaged after bending, and the heat dissipation effect will be affected, and the cross netting will block the flow of water when siphoning. [Content] The purpose of this creation is to solve the above-mentioned conventional computer central processing unit. When the heat pipe needs to be bent, tools must be used to add M bending *, which results in the lack of human waste, and provides a "heat pipe bending structure". It is a kind of bending structure. The creator has gained practical experience in M245507. After years of research and design and continuous exploration and improvement, it is mainly obtained by having at least one bending groove in the appropriate position on the heat pipe. When the heat pipe needs to be bent, the M can be bent at any angle according to the required angle. It can not only achieve the best connection effect when connected, but also does not need to use Π; it can perform its bending work, saving time and effort. It can save manpower cost and increase competitiveness. In addition, in the embodiment, the heat transfer pipe with bent grooves can also be installed with a tubular cross-knitted wire mesh or coiled spring wire (see the fourth (Fig. And fifth figure) The tubular braided web or coiled spring wire is inserted into the heat conduction # with its retractable effect and is closely attached to the inner wall of the heat conduction pipe, which can not only be bent as the heat conduction pipe is bent. And can be inserted into the heat pipe Xu liquid accelerated heat conduction and heat dissipation function of the use. Especially when the siphon effect of water is produced, the woven net does not worry about blocking the flow of water. It is a creation that can improve the use effect and has practical value. [Embodiment] The construction use and its functional characteristics of this creation are explained in more detail in accordance with the best embodiment shown in the accompanying drawings. As shown in the first and second figures, the "bent structure of heat transfer tube" in this creation is mainly One or at least one bent groove 2 composed of a plurality of grooves is provided at an appropriate position on the heat pipe 1, and the number of grooves of each of the bent grooves 2 is several, so that the heat pipe 1 When you need to bend, you can easily add M bend according to the required angle. It can not only achieve the best connection effect when connected, but also does not need to use tools to perform its bending work, saving time and labor, saving labor costs and Improve competitiveness. M245507 The foregoing heat pipe 1 can be used as the heat pipe of the computer's central processing unit (see the third figure) in the embodiment, and its two ends are connected to the heat sink 3 and the heat sink 4 respectively, and can be bent when connected. The groove 2 is used to bend the heat conducting tube 1 at various angles by hand. M corresponds to the height difference and the square and direction difference between the heat absorbing body 3 and the heat sink 4. It can not only increase the convenience of use, but also does not require the use of tools. Save labor costs and increase competitiveness. * The aforementioned heat-conducting tube 1 with one or at least one bent groove 2 is the basic structure of the creation. In the embodiment, it can also be installed with a tubular cross-woven web 11 or coiled spring wire in the tube. 12 (please refer to the fourth and fifth figures), the tubular braided wire or coiled spring wire is inserted into the heat transfer tube 1 with its retractable effect and is closely attached to the inner wall of the heat transfer tube 1. The heat transfer tube 1 is bent and bent, and the use of a small amount of liquid in the heat transfer tube 1 can accelerate the use of heat conduction and heat dissipation. And its woven net did not worry about blocking water flow. In summary, the "Heat pipe bending structure" of this creation is mainly provided with one or at least one bent groove at an appropriate position on the heat pipe. The number of grooves of each bent groove is Several, so that when the heat pipe needs to be bent, the bending groove can be used to add M to bend, the bending groove is formed on the heat pipe, and φ is equipped with a cross braided mesh or a coiled spring in the heat pipe. The structure of silk is unprecedented. It is not only novel and progressive, but also increases the convenience of use. It does not require tools, saves time and labor, saves labor costs, and improves competitiveness. It is especially capable of accelerating heat conduction and heat dissipation. The use function is an application that can enhance the use effect and has practical value, which is suitable for the creation of new patent elements. 8 M245507 [Schematic description] The first picture is an embodiment of the creative bending structure. The second picture is an example of the bending state of the creation. The third figure is an embodiment of the creative connection between the heat sink and the heat sink. The fourth figure is an embodiment of a cross braided wire installed in the creative heat transfer pipe. The fifth figure is an embodiment of a coiled spring wire installed in the creative heat transfer pipe. In the picture: 1... Heat transfer tube 2 ... bend groove 3 ... heat sink 4. heat sink 11. Cross braided web 1 2. Coil spring wire