TWM412227U - Spring damping hinge and control device thereof - Google Patents

Spring damping hinge and control device thereof Download PDF

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Publication number
TWM412227U
TWM412227U TW99221107U TW99221107U TWM412227U TW M412227 U TWM412227 U TW M412227U TW 99221107 U TW99221107 U TW 99221107U TW 99221107 U TW99221107 U TW 99221107U TW M412227 U TWM412227 U TW M412227U
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Taiwan
Prior art keywords
hole
slider
seat
spring
rotating shaft
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TW99221107U
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Chinese (zh)
Inventor
Fang-Xing Hong
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E Tai Entpr Co Ltd
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Priority to TW99221107U priority Critical patent/TWM412227U/en
Publication of TWM412227U publication Critical patent/TWM412227U/en

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  • Fluid-Damping Devices (AREA)

Description

M412227 五、新型說明: 【新型所屬之技術領域】 本創作有關於-種適用於破續門的敍鍊,尤指—種彈 簧阻尼鉸鍊及其控制裝置。 【先前技術】 按’ -般公共場所或淋浴房之門戶大都以玻璃門為主 ’因為玻制大都設計有自動歸位的設計,而方便使 在開門後會自動復位關門,藉以減少關門的動作。f 玻璃門係贿雜接㈣定設置―壁或玻璃板上 =的鉸鍊以·提供玻朝自鱗 ^ 時會產生較大的撞擊。 里u邮關門 緣是,本創作人有感上述缺失 究並配合學理之運用,終於提 又。乃特,曰、研 上述缺失之本創作。 種设計合理且有效改善 【新型内容】 本創作之主要目的,在於 控制裝置,以彈簧單元提供^一種彈簧阻尼鉸鍊及其 制裝置提供油壓阻尼的效果,,歸位的力量’另以控 撞擊。 在關門時可避免產生較大的 本創作之另一目的’在於 控制裝置,以節流閥調整液壓^,彈簧阻尼鉸鍊及其 閉的速度。 /的’藉以控制門體關 為了達成上述之目的, 包括:一轉轴座,該轉 ^提供-種彈簧阻尼_ 一轉軸孔及一容置孔,誃容/、虿—座體,該座體内設有 體内設有一油路,該油=各=孔與該轉軸孔相連通,該座 兩端分別連接於該轉軸孔及該溶 M412227 ,. · · · 置孔;一轉軸,該轉軸可轉動的容置於該座體的轉軸孔内 ,該轉軸的一側設有一定位面;一滑塊套,該滑塊套容置 於該座體的容置孔内;一滑塊,該滑塊一端設有一穿孔, 該滑塊可滑動的設置於該滑塊套内部,該滑塊與該滑塊套 内部形成一油室,該油室内儲存有液壓油,該滑塊一端抵 頂於該轉軸的定位面;一彈簧單元,該彈簧單元設置於該 - 滑塊套與該滑塊之間;一止回單元,該止回單元設置於該 油室内;一節流閥,該節流閥設置於該轉軸座上,該節流 Φ 閥伸入該油路中;一第一連接件,該第一連接件連接於該 轉軸座;以及一第二連接件,該第二連接件連接於該轉軸 〇 本創作另提供一種彈簀阻尼鉸鍊的控制裝置,包括: 一轉軸座,該轉軸座具有一座體,該座體内設有一轉轴孔 及一容置孔,該容置孔與該轉軸孔相連通,該座體内設有 一油路,該油路兩端分別連接於該轉軸孔及該容置孔;一 轉軸,該轉軸可轉動的容置於該座體的轉軸孔内,該轉軸 I 的一側設有一定位面;一滑塊套,該滑塊套容置於該座體 . 的容置孔内;一滑塊,該滑塊一端設有一穿孔,該滑塊可 滑動的設置於該滑塊套内部,該滑塊與該滑塊套内部形成 一油室,該油室内儲存有液壓油,該滑塊一端抵頂於該轉 軸的定位面;一彈簧單元,該彈簧單元設置於該滑塊套與 該滑塊之間;一止回單元,該止回單元設置於該油室内; 以及一節流閥,該節流閥設置於該轉軸座上,該節流閥伸 入該油路中。 本創作具有以下有益的效果: 本創作以轉軸座、轉軸、滑塊套、滑塊、彈簧單元、 5/15 止回單元及節流閥等構成一控制裝置,該控制裝置内部形 成有油室,並設有可供液壓油循環的油路。當關閉門體時 滑塊受彈簧單元彈力的影響,而會連動轉軸的定位 復至原狀態,此時滑塊是背向滑塊套位移,液壓油會推動 止回閥門抵觸於止回閥座的閥孔,能提供液壓油止;效果 ,使得液壓油只能經由油路流回至油室内,該油路中設有 一節流閥,可調整油路令液壓油的流量,提供油壓阻尼的 效果,在關門時可避免產生較大的撞擊。 為使能更進一步瞭解本創作的特徵及技術内容,請參 閱以下有關本創作的詳細說明與附圖,然而所附圖式僅提 供參考與說明用,並非用來對本創作加以限制者。 【實施方式】 請參閱1圖至圖3,本創作提供一種彈簧阻尼鉸鍊, 該鉸鍊可用於將門體(如玻璃門)樞接於牆壁或玻璃板上 ,本實施例為—種用於將玻簡樞接於玻璃板的玻對玻 裂式的鉸鍊。 該彈簧阻尼鉸鍊包括有一轉軸座丄、一轉軸2、一滑 塊套3、—滑塊4、一彈簧單元5、一止回單元6、一節 流閥7、-第-連接件8及一第二連接件9,其中該轉軸 座1具有一座體11’該座體11内設有-轉軸孔12及 -容置孔1 3,該轉軸孔]_ 2兩端貫穿至座體工工相對的 兩側,該容置孔1 3-端貫穿至座體工χ另一侧,該容置 孔13另-端與轉轴孔i 2相連通。該座體工工内另設有 -油路J 4,該油路i 4兩端分別連接於轉軸孔丄2及容 該轉軸2可轉動的容置於座體i工的轉轴孔12内, 6/15 mum 该轉軸2兩端與座體1 1之間分別設置有一軸承丄5,使 轉軸2與轉軸座1之間可順暢的轉動。該轉轴2兩端穿出 轉轴座1,以便於固定在第二連接件9上,該轉轴2的一 側對應於門體(如玻璃門)所需定位的角度削平設有一定 位面21,該定位面21對應於容置孔丄3。 該滑塊套3為-中空套體,該滑塊套3容置於座體丄 ' 1的谷置孔1 3内’該滑塊套3外緣設置有__ 〇型環3工 • ,該0型環31位於滑塊套3外緣與容置孔i 3内緣之間 • ’用以增加密封性。該滑塊套3可在㈣注人液璧油後, 用以封密容置孔13-端。該滑塊套3一側設有一通孔3 4,該通孔3 4可與油路14相連通。 該滑塊4為一中空筒體,該滑塊4一端設有一穿孔4 1 ’另-端卿賴口狀。該滑塊4可㈣的設置於滑塊 套3内部’該滑塊4可於滑塊套3内往復運動,滑塊接 滑塊套3内部形成-油室4 2,其内儲存有液壓油(圖略 )。該滑塊4 一端抵頂於轉軸2的定位面2 1。 • 該彈簧單元5包含至少一彈簧,在本實施例中包含有 • 彈菁5 1及一第二彈簧5 2,該第一彈簧5工及第 二彈百5 2設置於油室4 2内,該第一彈簧5丄及第二彈 黃52-端抵頂於滑塊套3,另一端則可頂推滑塊4 以將彈簧單元5設置於滑塊套3與滑塊4之間,該彈菩^ 元5可推動滑塊4,進而使滑塊4彈性的抵頂於轉轴g的 定位面21,以利用彈簧單元5提供門體自動歸位的 〇 王 、”該止回單元6設置於油室42内’該止回單元6的構 k並不限制,只要能用以提供液壓油止回的功能即可,在 7/15 本實施例中該止回單元6包含有一止回閥座61及一止回 閥門6 2,該止回閥座6 χ上設有一閥孔6丄丄,該止回 閥門6 2設於止回閥座6 1—侧並對應於閥孔6丄i,該 止回閥門6 2位於止回閥座6 i與滑塊4的穿孔4丄之^ ,從而能提供液壓油單向流動的止回效果,亦即油室4 2 内的液壓油只能經過止回閥座6 i丄流 4的穿孔41。當液壓油反向流動時,液壓油隨即推動止 回閥門6 2抵觸於止回閥座6丄的閥孔6 i卜 ^ 1形成封·態’以提供液壓油止回效果。該彈等單元 5 (= 一彈簧51及第二彈簧52)另—端抵頂於止回 J吏該第一彈簧5 1及第二彈簧5 2的彈力可透 4回閥座61傳遞至滑塊4,使彈簧單元5可推動滑塊 閥7^1:旧7 *置於轉軸座1上,在本實施射該節流 具2=轉軸座1的座體11上,該節流闊7-端 4声,Ϊ 1 ’該錐部71伸人油路14中鄰近通孔3 ,以料藉由即流閥7調整油路1 4中液壓油的流量 環 '壓阻尼的效果。該節流閥7外緣設置有-〇型 ,用韻該0型%7 2位於節流閥7外緣與座體1 1之間 用以增加密封性。 及鼓^連接件8及第二連接件9分別連接於轉軸座1 壓拓》9 ’遠第—連接件8具有—第—壓板8 1及一第二 3,第一壓板81及第二壓板8 2之間設有墊片8 壓板8 1係以兩固定件(如螺絲)8 4鎖附固 座1上。該第一壓板81及第二壓板8 2可利用 口疋件8 5鎖固夾持於玻璃板上。 8/15 M412227 ,第二連接件9具有—第三壓板91及-第四壓板9 2,第二壓板9 1及第四壓板9 2之間設有墊片9 3,該 第二壓板9 1 1可湘賴及膠黏方式固定有-密封墊 片9 4 ’該密封塾片9 4設於轉軸座χ與第二連接件9之 間,可增加密封性。該第三壓板91及第四壓板9 2可利 用固定件9 5鎖m失持於門體(如玻璃門)上,使得門體 可利用鉸鍊減於固定的玻魏上,以便進行開啟及關閉 的動作。 ❼閲圖4至圖6 ’本實施例為_種用於將玻璃門框 接於,壁的玻對檣型式的鉸鍊,與上述實施例的差異僅在 於該第賴件8具有一固定座86,該固定座86固定 於轉軸座1上。該固定座8 6可利用固定件(圖略)鎖固 於牆壁上。 本創作以彈黃單元5提供門體自動歸位的力量,如圖 ΓΓ、隹的狀態,此時該彈簧單元5可推動滑 术門神錢4彈性的抵頂於轉軸2的定位面21。 :丄二t璃門)旋轉開門時(圖略),該第二連接件9 抿到、、心4於,軸孔1 2内旋轉,以使該轉軸2的周緣壓 :」二=步愿縮彈簧單元5,而使門體能夠被推開 連二:丄:滑塊4受彈簧單元5彈力的影響,而會 位的狀。白勺定位面21回復至原狀態,以形成自動歸 .單、轉軸2、滑塊套3、滑塊4、彈 控制裝置内部形閥7等構成-控制裝置’該 油路i4。當門’ “2’亚设有可供液壓油循環的 田喊侧門時,該雜2的周緣壓抵到滑 9/15 M412227 • · % · = 壓縮彈箸單元5,而使門體能夠被推開,此時 =塊4疋朝向滑塊套3位移,使油室42體積變室 42内的液壓油會被壓编,允 至 !—回^^二^座6 1的間孔6 ^ w^ ^ _閥庋61側^向另一側,此時控制 、a 4阻尼的效果,使門體可順利的被開啟。 s關閉門體時’滑塊4受彈簧單元 =動:轉軸2的定位面21回復至原狀態,此時魏: 2向π塊套3位移,使油室4 2體積變大,液壓油會反 ^動,並推動止回閥門6 2抵觸於止回閥座6 i的闊孔 上1 1 ’使閥孔611形成封閉狀態,以提供液壓油止回 =果’使得液壓油只能經由旁邊的油路14流回至油室4 内》亥油路14中並設有一節流閥7,可調整油路 ^液壓油的流量,提供油壓阻尼的效果,在關Η時可避免 產生較大的撞擊。 先 惟以上所述僅為本創作之較佳實施例,非意欲侷限本 f作的專娜護範圍,故舉凡制本創作說明書及圖式内 容所為的等效變化’均_皆包含於本創作的權利保護範 圍内’合予陳明。 【圖式簡單說明】 圖1為本創作彈簧阻尼鉸鍊之立體分解圖。 圖2為本創作彈簧阻尼鉸鍊之立體圖。 圖3為本創作彈簧阻尼鉸鍊之剖視圖。 圖4為本作彈耳阻尼鉸鍊另—實施例之立體分解圖。 圖5為本創作彈黃阻尼绞鍊另—實施例之立體圖。 圖6為本創娜簧阻尼鉸鍊另—實施例之剖視圖。 10/15 M412227 【主要元件符號說明】 1 轉軸座 1 1座體 1 2轉轴孔 1 3容置孔 1 4油路 1 5軸承 2 轉軸 2 1定位面 3 滑塊套 3 1 0型環 3 4通孔 4 滑塊 4 1穿孔 4 2油室 5 彈簧單元 51第一彈簧 5 2第二彈簧 6 止回單元 6 1止回閥座 6 2止回闊門 6 1 1閥孔 7 節流閥 7 1錐部 7 2 0型環 M412227 8 第一連接件 81第一壓板 8 2第二壓板 8 3墊片 8 4固定件 8 5固定件 8 6固定座 9 第二連接件 91第三壓板 9 2第四壓板 9 3墊片 9 4密封墊片 ,9 5固定件M412227 V. New description: [New technical field] This creation has a description of the type of chain that is suitable for the broken door, especially the spring damping hinge and its control device. [Prior Art] According to the '--the public place or the shower room, most of the portals are mainly glass doors' because most of the glass systems are designed with automatic homing, and it is convenient to automatically close the door after opening the door, so as to reduce the action of closing the door. . f Glass door bribery (4) set the wall or glass plate = hinge to provide a large impact on the glass. In the end, the creator of the post is that the creator feels the above-mentioned lack of research and cooperates with the application of the theory, and finally mentions it again. Naite, Yan, Yan, the above-mentioned missing creation. Reasonable design and effective improvement [New content] The main purpose of this creation is to control the device, provide a spring damping hinge and its device to provide hydraulic damping effect by the spring unit, and the power of homing is controlled separately. Impact. Another purpose of avoiding the creation of a larger copy of the creation is to control the device, adjust the hydraulic pressure with the throttle valve, the spring damper hinge and its closing speed. In order to achieve the above purposes, the following includes: a shaft seat, the turn provides a kind of spring damping _ a shaft hole and a receiving hole, the capacity /, 虿 - seat, the seat The body is provided with an oil passage in the body, and the oil=each hole is connected with the shaft hole, and the two ends of the seat are respectively connected to the shaft hole and the dissolved M412227, . . . · a hole; The rotating shaft is rotatably received in the rotating shaft hole of the seat body, and one side of the rotating shaft is provided with a positioning surface; a slider sleeve is disposed in the receiving hole of the seat body; a slider One end of the slider is provided with a through hole. The slider is slidably disposed inside the slider sleeve. The slider forms an oil chamber with the inside of the slider sleeve. The oil chamber stores hydraulic oil, and the slider is at one end. a positioning surface of the rotating shaft; a spring unit disposed between the slider sleeve and the slider; a check unit, the non-return unit is disposed in the oil chamber; a throttle valve, the throttle a valve is disposed on the rotating shaft seat, the throttle Φ valve extends into the oil passage; a first connecting member, the first connection Connecting to the rotating shaft seat; and a second connecting member connected to the rotating shaft. The present invention further provides a control device for the elastic damping hinge, comprising: a rotating shaft seat having a body, the rotating shaft seat The housing body is provided with a shaft hole and a receiving hole, and the receiving hole is in communication with the shaft hole. The body is provided with an oil passage. The two ends of the oil passage are respectively connected to the shaft hole and the receiving hole. a rotating shaft, the rotating shaft is rotatably received in the rotating shaft hole of the seat body, one side of the rotating shaft I is provided with a positioning surface; and a slider sleeve is disposed on the seat body. a slider, the slider is provided with a through hole at one end thereof, the slider is slidably disposed inside the slider sleeve, and the slider forms an oil chamber with the inside of the slider sleeve, and the oil chamber stores hydraulic oil One end of the slider abuts against the positioning surface of the rotating shaft; a spring unit disposed between the slider sleeve and the slider; a check unit, the non-return unit is disposed in the oil chamber; a throttle valve, the throttle valve is disposed on the shaft seat, the throttle Extending into the oil passage. The creation has the following beneficial effects: The creation constitutes a control device with a rotating shaft seat, a rotating shaft, a slider sleeve, a slider, a spring unit, a 5/15 check unit and a throttle valve, and an oil chamber is formed inside the control device. There is also an oil circuit for circulating hydraulic oil. When the door body is closed, the slider is affected by the elastic force of the spring unit, and the positioning of the rotating shaft is restored to the original state. At this time, the slider is displaced away from the slider sleeve, and the hydraulic oil pushes the check valve against the check valve seat. The valve hole can provide hydraulic oil; the effect is that the hydraulic oil can only flow back to the oil chamber via the oil passage. The oil passage is provided with a throttle valve, which can adjust the flow of the oil passage to provide hydraulic oil flow and provide oil pressure damping. The effect is to avoid a large impact when closing the door. In order to further understand the features and technical contents of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings are only for reference and explanation, and are not intended to limit the creation. [Embodiment] Referring to Fig. 1 to Fig. 3, the present invention provides a spring damper hinge which can be used for pivoting a door body (such as a glass door) to a wall or a glass plate, which is used for the purpose of The glass-to-glass split hinge hinged to the glass plate. The spring damping hinge includes a rotating shaft seat, a rotating shaft 2, a slider sleeve 3, a slider 4, a spring unit 5, a check unit 6, a throttle valve 7, a first connecting member 8 and a first The two connecting members 9 , wherein the rotating shaft seat 1 has a body 11 ′. The seat body 11 is provided with a rotating shaft hole 12 and a receiving hole 13 3 . The rotating shaft hole _ 2 is penetrated to the opposite side of the seat body. On both sides, the receiving end 1 3-end penetrates to the other side of the seat body, and the other end of the receiving hole 13 communicates with the rotating shaft hole i 2 . An oil path J 4 is further disposed in the working body, and the two ends of the oil path i 4 are respectively connected to the rotating shaft hole 2 and the rotating shaft 2 is rotatably received in the rotating shaft hole 12 of the seat , 6/15 mum A bearing 丄 5 is respectively arranged between the two ends of the rotating shaft 2 and the seat body 1 1 , so that the rotating shaft 2 and the rotating shaft seat 1 can smoothly rotate. Both ends of the rotating shaft 2 pass through the rotating shaft seat 1 so as to be fixed on the second connecting member 9. One side of the rotating shaft 2 is corresponding to the angle at which the door body (such as a glass door) needs to be positioned, and a positioning surface is provided. 21, the positioning surface 21 corresponds to the receiving aperture 3. The slider sleeve 3 is a hollow sleeve body, and the slider sleeve 3 is received in the valley hole 1 3 of the seat body 丄 '1. The outer edge of the slider sleeve 3 is provided with a __ 〇 type ring 3 work. The 0-ring 31 is located between the outer edge of the slider sleeve 3 and the inner edge of the receiving hole i 3 • 'to increase the sealing property. The slider sleeve 3 can be used to seal the 13-end of the receiving hole after (4) injecting liquid oil. One side of the slider sleeve 3 is provided with a through hole 34, and the through hole 34 can communicate with the oil passage 14. The slider 4 is a hollow cylinder, and one end of the slider 4 is provided with a through hole 4 1 'end-end end. The slider 4 can be disposed inside the slider sleeve 3 (the slider 4 can reciprocate in the slider sleeve 3, and the slider is connected to the inside of the slider sleeve 3 to form an oil chamber 4 2, in which hydraulic oil is stored (figure omitted). One end of the slider 4 abuts against the positioning surface 21 of the rotating shaft 2. The spring unit 5 includes at least one spring. In this embodiment, the elastic spring 5 1 and the second spring 52 are included. The first spring 5 and the second spring 52 are disposed in the oil chamber 42. The first spring 5 丄 and the second spring 52-end end against the slider sleeve 3, and the other end can push the slider 4 to set the spring unit 5 between the slider sleeve 3 and the slider 4. The ejector element 5 can push the slider 4, thereby causing the slider 4 to elastically abut against the positioning surface 21 of the rotating shaft g, so as to provide the king of the door body with the spring unit 5 automatically homing, "the check unit 6 is disposed in the oil chamber 42. The configuration k of the check unit 6 is not limited as long as it can be used to provide a hydraulic oil check function. In the present embodiment, the check unit 6 includes a stop. The check valve seat 61 and a check valve 6 2 are provided with a valve hole 6 χ on the check valve seat 6 , and the check valve 6 2 is disposed on the side of the check valve seat 6 1 and corresponds to the valve hole 6丄i, the check valve 62 is located at the check valve seat 6 i and the through hole 4 of the slider 4, so as to provide a non-return effect of the one-way flow of the hydraulic oil, that is, the hydraulic oil in the oil chamber 4 2 Can only pass through the check valve seat 6 i. The perforation 41 of the turbulent flow 4. When the hydraulic oil flows in the reverse direction, the hydraulic oil then pushes the check valve 6 2 against the valve hole 6 of the check valve seat 6 卜1 to form a seal state to provide hydraulic oil. The rebounding effect. The unit 5 (= a spring 51 and the second spring 52) of the projectile is further abutted against the check J. The elastic force of the first spring 5 1 and the second spring 5 2 can pass through the valve seat. 61 is transmitted to the slider 4, so that the spring unit 5 can push the slider valve 7^1: the old 7* is placed on the rotating shaft seat 1, and in this embodiment, the throttle device 2 is mounted on the seat body 11 of the rotating shaft seat 1, which The throttle is wide 7-end 4, Ϊ 1 'the cone 71 extends into the oil passage 14 adjacent to the through hole 3, so as to adjust the flow rate of the hydraulic oil in the oil passage 14 by the flow valve 7 The outer edge of the throttle valve 7 is provided with a -〇 type, and the 0 type % 7 2 is located between the outer edge of the throttle valve 7 and the seat body 1 1 for increasing the sealing property. The second connecting members 9 are respectively connected to the rotating shaft seat 1 and the bottom portion of the connecting member 8 has a first platen 8 1 and a second portion 3, and a pad is arranged between the first platen 81 and the second platen 8 2 . Sheet 8 Press plate 8 1 is attached with two fixing members (such as screws) 8 4 The first pressure plate 81 and the second pressure plate 8 2 can be locked and clamped to the glass plate by the mouth piece 85. 8/15 M412227, the second connection piece 9 has a third pressure plate 91 and a fourth A pressure plate 9 2 is disposed between the second pressure plate 9 1 and the fourth pressure plate 9 2 . The second pressure plate 9 1 1 can be fixed with a sealing gasket 9 4 '. The piece 94 is disposed between the rotating shaft seat and the second connecting member 9 to increase the sealing property. The third pressing plate 91 and the fourth pressing plate 91 can be lost to the door body by using the fixing member 9.5 lock m (such as a glass door). ), so that the door body can be reduced by the hinge on the fixed glass, in order to open and close the action. 4 to FIG. 6 'This embodiment is a glass-to-shoulder type hinge for connecting a glass door to a wall, and the difference from the above embodiment is that the first member 8 has a fixing seat 86. The fixing base 86 is fixed to the rotating shaft seat 1. The fixing seat 86 can be locked to the wall by means of a fixing member (not shown). In the present invention, the elastic yellow unit 5 provides the power of the door body to automatically homing, as shown in the figure, the state of the cymbal, and the spring unit 5 can push the sliding door 4 to elastically abut against the positioning surface 21 of the rotating shaft 2. : 丄二t玻璃门) When the door is rotated (not shown), the second connecting member 9 is turned into, the core 4 is rotated in the shaft hole 12, so that the circumference of the rotating shaft 2 is pressed: "two = step The spring unit 5 is contracted to enable the door body to be pushed open: 丄: The slider 4 is affected by the spring force of the spring unit 5, and is in a position. The positioning surface 21 is returned to the original state to form an automatic returning unit, the rotating shaft 2, the slider sleeve 3, the slider 4, the internal control valve 7 of the elastic control device, and the like - the control device 'the oil passage i4. When the door '2' is provided with a side door for hydraulic oil circulation, the circumference of the miscellaneous 2 is pressed against the slip 9/15 M412227 • · % · = compresses the magazine unit 5, enabling the door body to When it is pushed open, at this time, the block 4疋 is displaced toward the slider sleeve 3, so that the hydraulic oil in the volume chamber 42 of the oil chamber 42 is pressed and spliced, and the hole 6 is returned to the hole 6 of the seat 6 ^ w^ ^ _ valve 庋 61 side ^ to the other side, at this time control, a 4 damping effect, so that the door can be smoothly opened. s when closing the door body 'slider 4 by the spring unit = move: shaft The positioning surface 21 of 2 returns to the original state, at this time Wei: 2 displacement to the π block 3, so that the volume of the oil chamber 42 becomes larger, the hydraulic oil will reverse, and push the check valve 6 2 against the check valve The wide hole 1 1 ' of the seat 6 i causes the valve hole 611 to be closed to provide hydraulic oil check = fruit 'so that the hydraulic oil can only flow back to the oil chamber 4 via the adjacent oil passage 14" There is a throttle valve 7 in the middle, which can adjust the flow rate of the oil circuit ^ hydraulic oil, and provide the effect of oil pressure damping, which can avoid large impact when it is closed. Embodiment, non It is intended to limit the scope of the special care of this f, so the equivalent changes in the creation of the manual and the contents of the drawings are included in the scope of the rights protection of this creation. Fig. 1 is a perspective exploded view of the spring damper hinge. Fig. 2 is a perspective view of the spring damper hinge. Fig. 3 is a cross-sectional view of the spring damper hinge. Fig. 4 is a damper hinge of the present invention. Fig. 5 is a perspective view showing another embodiment of the elastic yellow damping hinge. Fig. 6 is a cross-sectional view showing another embodiment of the damper hinge. 10/15 M412227 [Main component symbol description] 1 1 1 seat body 1 2 shaft hole 1 3 accommodating hole 1 4 oil circuit 1 5 bearing 2 shaft 2 1 positioning surface 3 slider sleeve 3 1 0 ring 3 4 through hole 4 slider 4 1 perforation 4 2 oil chamber 5 spring unit 51 first spring 5 2 second spring 6 check unit 6 1 check valve seat 6 2 check wide door 6 1 1 valve hole 7 throttle valve 7 1 taper 7 2 0 ring M412227 8 first Connecting member 81 first pressure plate 8 2 second pressure plate 8 3 spacer 8 4 fixing member 8 5 fixing member 8 6 fixing seat 9 Two third connecting member 91 pressing plate 92 pressing plate 93 of the fourth seal gasket 94, fixing member 95

Claims (1)

”、申請專利範圍: i 種彈黄阻尼鉸鍊,包括: 及-容置孔,^轉轴座具有—座體,該座體内設有-轉車由孔 路,該油路雨=置孔與該轉轴孔相連通,該座體内設有一油 -轉::別連接於該轉轴孔及該容置孔; 轴的設有轉動的容置於該座體的轉韩孔内,該轉 套,Ϊ滑塊套容置於該座體的容置孔内; 該滑塊套内部:塊—端設有一穿孔,該滑塊可滑動的設置於 儲存有液髮油與該滑塊套内部形成一油室,該油室内 —彈亥滑塊-端抵頂於該轉軸的定位面; -止回ίΓΓ簧單71設置於該滑塊套與該滑塊之間; -β 回早元設置於該油室内; 油路中h閱’該節流間設置於該轉轴座上,該節流間伸入該 :ί:=: 接於該轉H 2、 如申气W苐—連接件連接於該轉轴。 轉勒座與該第2^=1所述之彈倾尼錢鍊,其中該 雜件之間設有-密封塾片。 3、 如_請專利範園第2項 彈簧單元包含有-第〜彈箬及一第 7尼鉸鍊,其中該 二彈簧設置於該油室内, κ,δ亥第—彈箐及該第 * 該第一彈簧及該第二强贫 表月塊套,該第一彈簧及該第二彈菩另 ^^育-端抵頂於 4、如申請專利範圍第i、2或3 =該滑塊。 ,其中該止回單元包含—止_座及彈簧阻尼鉸鍊 上叹有閥孔,該止回間門設於該止回間座该业回閥座 、IJ遂對應於該閥孔 13/15 m U221 ’該彈黃單元抵頂於該止回閥座。 5、 如申請專利範圍第1、2或3項所述之彈簧阻尼鉸鍊 ,其中該轉軸兩端與該座體之間分別設置有一軸承。 6、 如申請專利範圍第1、2或3項所述之彈簣阻尼鉸鍊 ,其中該滑塊套一側設有一通孔,該通孔與該油路—端相連通 ,該節流閥螺接設置於該轉轴座的座體上,該節流閥一端具有 一錐部,該錐部伸入該油路中鄰近該通孔處。 7、 如申請專利範圍第1、2或3項所述之彈簧阻尼鉸鍊 ,其中該第一連接件具有一第一壓板及一第二壓板,該第一壓 板及該第二壓板之間設有墊片,該第一壓板固定於該轉軸座上 〇 8、 如申δ月專利範圍第1、2或3項所述之彈晉阻尼鉸鍊 ,其中該第二連接件具有一第三壓板及一第四壓板,該第三壓 板及該第四壓板之間設有塾片。 9、 如申請專利範圍第1、2或3項所述之彈簧阻尼鉸鍊 ,其中該第一連接件具有一固定座,該固定座固定於該轉軸座 上。 10、 一種彈簧阻尼鉸鍊的控制裝置,包括: 一轉軸座,該轉軸座具有一座體,該座體内設有一轉軸孔 及一容置孔,該容置孔與該轉軸孔相連通,該座體内設有一油 路’該油路兩端分別連接於該轉軸孔及該容置孔; 一轉軸’該轉軸可轉動的容置於該座體的轉軸孔内,該轉 轴的一側設有一定位面; 一滑塊套’該滑塊套容置於該座體的容置孔内; 一滑塊,該滑塊一端設有一穿孔,該滑塊可滑動的設置於 該滑塊套内°卩,δ亥滑塊與έ亥滑塊套内部形成一油室,該油室内 14/15 M412227 錯存,該概—端抵頂於該熟的定位面; 間 ;以及 卽流閱,該 元,鄉簣單元設置於該滑塊套與該滑塊之 此回早兀,該止回單元設置於該油室内 卽 油路中。 肩設置於該轉軸座上,該節流間伸入該 11、如申請專利範圍第i 〇項所 制裝置,1中兮锼较^ 又弹戶、阻尼鉸鍊的控 第-彈复《 ^貫早7"包含有―苐—彈簧及-第二彈簧,該 彈箬料二彈f設置於該油㈣,該第—彈簧及該第二 彈貫端抵頂於該滑塊套,亡亥第一彈铉;^ # 人 一 推該滑塊。 u套μ ^及轉二彈簧另-端頂 鍊的範圍第1Q或11項所述之彈簧阻尼鉸 ^裝/、中該止回單70包含一止回閥座及-止回閥門 ^回閥座上設有閥孔,該止回閥Η設於該止關座-侧並 對應於該閥孔’該彈簧單元抵頂於該止回閱座。 13、 如申請專利範圍第1〇或11項所述之彈簧阻尼铲 鍊的控制裝置’其中該轉軸兩端與該㈣之間分別設置有 承。 14、 如申請專利範圍第1〇或11項所述之彈簧阻尼鉸 鍊的控制裝置,其中該滑塊套一侧設有一通孔,該通孔與該= 路一端相連通,該節流閥螺接設置於該轉軸座的座體上,該節 流閥一端具有一錐部,該錐部伸入該油路中鄰近該通孔處。 15/15Scope of application: i kinds of elastic yellow damping hinges, including: and - accommodating holes, ^ rotating shaft seat has a seat body, the seat body is provided - the transfer car is a hole road, the oil road rain = set hole and The shaft hole is connected to the shaft, and the oil body is provided with an oil-rotation: not connected to the shaft hole and the receiving hole; the shaft is provided with a rotating hole accommodated in the rotating hole of the seat body, a sleeve, the slider sleeve is placed in the receiving hole of the seat body; the slider sleeve has a perforation at the block end, and the slider is slidably disposed to store the liquid hair oil and the slider sleeve An oil chamber is formed inside, and the oil chamber-elastic slider-end end abuts against the positioning surface of the rotating shaft; - a check-off spring spring 71 is disposed between the slider sleeve and the slider; -β回早元Set in the oil chamber; in the oil circuit, h read 'the throttle is set on the shaft seat, and the throttle extends into the: ί:=: connected to the turn H 2, such as Shen gas W苐 - connection The piece is connected to the rotating shaft. The rotating seat and the spring money chain described in the second ^=1, wherein the miscellaneous piece is provided with a sealing cymbal. 3, such as _ please patent Fanyuan item 2 Spring unit contains - a magazine and a 7th hinge, wherein the two springs are disposed in the oil chamber, κ, δ海第-弹箐 and the first * the first spring and the second strong poor month block, the first The spring and the second spring are further slid to the top, as in the patent application range i, 2 or 3 = the slider. wherein the non-return unit comprises a shackle and a spring damper hinge sigh There is a valve hole, the check door is disposed in the check seat, the return valve seat, IJ遂 corresponds to the valve hole 13/15 m U221 'the spring element is abutted against the check valve seat. The spring damper hinge of claim 1, wherein the bearing is provided with a bearing between the two ends of the shaft and the seat body. 6. As described in claim 1, 2 or 3. a spring damper hinge, wherein a side of the slider sleeve is provided with a through hole, the through hole is in communication with the oil passage end, and the throttle valve is screwed on the seat body of the shaft seat, the throttle valve One end has a tapered portion that extends into the oil passage adjacent to the through hole. 7. A spring damper hinge as described in claim 1, 2 or 3. The first connecting member has a first pressing plate and a second pressing plate, and a gasket is disposed between the first pressing plate and the second pressing plate, and the first pressing plate is fixed on the rotating shaft seat, such as δ The damper hinge of the first aspect of the invention, wherein the second connecting member has a third pressing plate and a fourth pressing plate, and the third pressing plate and the fourth pressing plate are provided with a cymbal piece 9. The spring damper hinge of claim 1, wherein the first connecting member has a fixing base fixed to the rotating shaft seat. 10. A spring damper hinge control The device includes: a rotating shaft seat having a body, the rotating body shaft is provided with a rotating shaft hole and a receiving hole, the receiving hole is communicated with the rotating shaft hole, and an oil passage is disposed in the seat body The two ends of the oil passage are respectively connected to the rotating shaft hole and the receiving hole; a rotating shaft 'the rotating shaft is rotatably received in the rotating shaft hole of the rotating body, and one side of the rotating shaft is provided with a positioning surface; 'The slider sleeve is placed in the receiving hole of the seat; a slider One end of the slider is provided with a through hole, and the slider is slidably disposed in the slider sleeve. The δhai slider forms an oil chamber inside the slider cover, and the oil chamber 14/15 M412227 is staggered. The terminating end is disposed on the cooked positioning surface; and the turbulent flow reading, the element is set in the slider sleeve and the slider is returned earlier, the check unit is disposed on the oil Indoor simmering oil road. The shoulder is disposed on the rotating shaft seat, and the throttling portion extends into the device of the eleventh item according to the scope of the patent application, and the control device of the damper hinge and the damper hinge is The early 7" includes a 苐-spring and a second spring, and the second spring f is disposed on the oil (four), and the first spring and the second elastic end abut against the slider sleeve, A magazine; ^ # people push the slider. u sets the μ ^ and the two springs and the other end of the chain. The spring damping hinge described in item 1Q or 11 includes a check valve seat and a check valve. A valve hole is disposed on the seat, and the check valve is disposed on the side of the check seat and corresponds to the valve hole. The spring unit abuts against the check seat. 13. The control device for a spring damper chain as described in claim 1 or 11, wherein the ends of the shaft and the (four) are respectively provided with bearings. 14. The control device for a spring damper hinge according to claim 1 or 11, wherein a side of the slider sleeve is provided with a through hole, and the through hole communicates with one end of the road, the throttle snail The throttle body is disposed on the seat body of the shaft seat, and the throttle valve has a tapered portion at one end thereof, and the cone portion extends into the oil passage adjacent to the through hole. 15/15
TW99221107U 2010-11-01 2010-11-01 Spring damping hinge and control device thereof TWM412227U (en)

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Application Number Priority Date Filing Date Title
TW99221107U TWM412227U (en) 2010-11-01 2010-11-01 Spring damping hinge and control device thereof

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TW99221107U TWM412227U (en) 2010-11-01 2010-11-01 Spring damping hinge and control device thereof

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI470145B (en) * 2012-10-23 2015-01-21 Univ Southern Taiwan Sci & Tec Hinges with cushioning and positioning functions
US10563443B1 (en) 2019-03-20 2020-02-18 Ever Yang Industry Co., Ltd. Door hinge
CN111021860A (en) * 2018-10-09 2020-04-17 茗旸工业股份有限公司 Hinges for glass doors

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI470145B (en) * 2012-10-23 2015-01-21 Univ Southern Taiwan Sci & Tec Hinges with cushioning and positioning functions
CN111021860A (en) * 2018-10-09 2020-04-17 茗旸工业股份有限公司 Hinges for glass doors
US10563443B1 (en) 2019-03-20 2020-02-18 Ever Yang Industry Co., Ltd. Door hinge

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