200903923 九、發明說明: 【發明所屬之技術領域】 本項發明是一個絕緣電纜接頭,可用其生產帶有自動 閉塞電絕緣栓的電纜配件,比如用於容納電纜末端。 【先前技術】 在電子技術中電纜接頭用於電纜段或者電纜末端的 電連接。同一種類的電纜接頭通常由一部分或者幾部分組 成,並且每個末端都有一個開口可以容納一根電纜芯線。 收縮軟管、連接接合子或者絕緣體系統用於電絕緣、防止 潮濕或者用於電纜連接的機械保護。 要連接的電纜芯線末端以及電纜接頭末端的電接觸 以及機械固定可以通過冷鍛實現,比如六角壓縮,也可以 使用合適的固定手段通過接線柱連接來實現。在壓縮連接 時,電觀的每個導線截面都必須有一個專門的電繞接頭’ 因為電纜接頭的端面開口必須要與電纜芯線的外直徑相 匹配,以便通過侧面的壓縮能夠持續保持持續有效的接 觸。然而在螺旋連接時,目前技術中有多種解決辦法。安 全連接所必需的用於將電纜芯線末端固定在電纜接頭中 的接觸電動勢通常使用致斷螺釘實現,在達到一定轉矩 時,螺釘頭會在外殼面高度斷開以實現絕緣。 在連接電纜時要做到電纜芯線末端縱向不能活動。為 了能夠把電纜芯線放入電纜接頭的端面開口中,必須在一 定範圍内將電纜芯線邊上的一部分折成s形。這就要求在 200903923 地下鋪設的電纜中地下的接頭孔要足夠大。另外,原本的 女裝步驟(即連接導線截面較大的電纜芯線)非常困難, 口 ==術輔助手段是無法完成的。所以我們研製了這 κ接頭’該電纜接頭至少能為—個電㈣線末端 打開’並且能夠在將電㈣,線末端裝人後重新合上。… 技“69 044中是—個擁有相互分離的套管的接 :於將導線固定在孔裏的工具以及一:::管:= 持二其中部有-個恒定橫截面。對於 —:=::=:管_處有-個附 電動勢。從某種意義釘才能產生接觸 起的兩個電纜終端。 、k過螺釘連接在一 ΕΡ 0 563 164中是—個有多個 管都可用於容納一根電導線的末端。;=;中母個套 二二有-個可將導線從侧面裝入 ; 將攸側面裝入的導線蓋 ^ 個盍子 匹配的套管。該電接頭整體上Hr通道和蓋子相 截面的圓柱體。但它的缺點是需疋要」:部有-個恒定橫 緊’這不僅會增加電接頭的生 付加的套管來夾 要將套管放到與相應的電m末^且在安褒之前還 置’這就要求安裝工在安裝時要 $配的過渡位 電欖絕緣中可能需要去 此外,在厚壁 “緣層。該電接頭還有一個 200903923 缺點:用於對套管進行定位的螺釘必須要從蓋子的螺紋孔 中取出,這可能會弄髒螺紋,從而導致螺釘無法進入。 DE 103 139 44是一個有兩個單獨的半外殼構成的電 接頭,這兩個半外殼擁有容納電導線的空間。每個外殼中 間都有一個堅固的錠坯,該錠坯有一個容納螺釘的孔。兩 個半外殼跟它們的錠坯一起構成相對的支座。所需的接觸 電動勢通過一個螺釘實現:螺釘穿過兩個半外殼並將其往 一起擰壓,電導線會自動被夾在兩個半外殼間。然而這種 電接頭的缺點是:只能通過一個螺釘來產生使電接頭的機 械功能和電功能毫無差錯地得以實現的接觸電動勢。 此外還有由一個開放外殼構成的電接頭,電纜的導線 可裝入該開放外殼。在安裝時用蓋子將外殼從電接頭的末 端封上。為了能夠保證機械穩定性,蓋子和外殼都有一個 互補燕尾形制導系統。另外,蓋子還有用於固定導線的 孔。固定導線時^同時貫現導線和外殼間的電接觸。這種 接頭的缺點是:蓋子必須從接頭末端推入。根據芯線絕緣 的程度,必須要有相應的安裝空間,以便導線能夠與其他 物品保持足夠的距離。 DE 10 2005 017 472中是一個由一部分或多個部分組 成的用於生產中壓電纜配件的絕緣系統。該絕緣系統有一 個環形銜接元件,該銜接元件被卡鎖在另一個絕緣體端面 岸禺合面的互補容納元件中。使用傳統圓形電接頭時,像EP 〇 669 044和EP 056 3 164中所描述的一樣,構成鎖栓的線 環形銜接元件要求在對絕緣體進行幾何設計時,不能將其 8 200903923 閉鎖範圍内的外部幾何圖形設計成圓形。 【發明内容】 有自^:的主要任務是研製—種絕緣電鏡接頭用於帶 才 1基電絕緣栓的電缓配件的生產。用這種電纜接頭 安的安裝條件下安全無誤地連接電纜芯線,並且 過渡位置,在後來的絕緣中,芯 〜=據本*明的設計’絕緣讀接頭用於帶有自動閉爽 二:電纜配件的生產(比如用以容納電纜末端“ 發明,可導展的鎖检f件和一個絕緣體。根據本 面是用於容:第、:全凡件包括三個截面。其中第一個外截 是用於容:第晴的夹緊截面,第二個外截面 之間的二=線的夹緊戴面,位於兩個外截面 兩個夹緊截面相二:制動絕緣體的容納截面。與 件上的絕緣體4朝小。裝在鎖栓元 _面’㈣、_二二r二,?環形 斷面在安裝絕緣電縵接頭 二:度广形橫 電規芯線間的電流直…/凡件讀。連接的兩端 到達第二個夹緊截面,同時截面通過容納截面 流路徑中附加接觸點的破壞I接和機械連接不會受到電 在本發明的气Λ, 個是設計成帶有二:端:::=卜截面至少有- 门口用於谷納電纜芯線的套 200903923 …㈣有一個孔用於容納固定工 二至少有-個是由兩個互補並且相容的構固外截面 及一個橫向用於容納固定工具的孔截面有—個端面開口以 這裏我們使用致斷螺針作為 線的固定工具。螺針要根據要鎖進夾緊HI兩根電镜芯 的橫截面來測定,同時還者、” 的電纜芯線 通過中到所需的致斷轉矩。 上並且相互二:外截面被固定在它們各自的位置 截面的外截面相比’橫斷面較小的中間 J大夂努疋.安裝絕緣電境 電的鎖栓元件上的絕緣體在軸向上不合:動::能夠導 證持續的電絕緣和防m 0動’廷樣就能保 為了達到鎖栓元件和絕緣體間的相互合型(尤並 鎖栓元件的中間戴面範圍内) (尤,、疋在 與鎖栓元件中間截面的輪摩要互相匹配讀㈣面的輪廓 由於生產工藝的原因,錯於 圓形,兩個外截面要=f:件的三個橫截面設計成 個外截面的橫斷面小。外截面哥兩 面設計成圓錐形或是平面,以 二線 側末端中至少二::二鎖检元件的兩個遠 成彎的或圓錐形的。卜截面的兩個外端面要設計 x貝毛明’兩個互相相容的半外殼都有-個制導 丁’母個制導系統都有兩個固定在半外殼邊緣地帶的導 10 200903923 軌,兩個導執要呈彈簧槽式相接。 兩個半外殼耦合的另外 個半外殼上裝有兩個 /、有‘勢的可能性是,兩 直,兩個電橋之間有離電橋/=個半外殼的縱向垂 的半外殼時,兩個半外衣兩個插入電缓芯線 為了確保料個半外殼準韻行2接在;起。 半外殼要有—個附加的制動器。 至夕其中-個 安裝時’兩個耦合的 合 體,其直徑要與構成套管的成—個閉合的圓柱 屬的二:表面和(或者)套管的内表面有向其所 夾緊_===?輪.或者切㈣時,兩個 就顯得非常有利。电觸-閉合以及附加的機械固定 裝在鎖栓元件上的絕緣體既 由多個元件構成 疋早構件的,也可以 面…件的兩個夾緊截面被-個浐齡 面切其橫斯面的容納截面分開的 T個_ 由多個元件構成,那麼本义 = D果絕緣體是 栌你占 本么明的優勢就會非常明顯。奋陴 ^ ’絕緣體是由兩個橫向分開的互補套管,邑_只示 的,每個套管絕緣體的端面都有一個環二=緣體構成 緣電、咖時,在達到鎖栓元件容納::=3:物 環形橫斷面接觸,也可能編^:的為,兩個 在二 起。為了能使它們連接 個八 時f絕緣體在端面的_合面上至少# 銜接元件,該純元件被切在另體 铫面耦合面的互補容納元件中。 心緣體 200903923 安裝絕緣電纜接頭時,首先要將電纜芯線從端面插入 一個用作套管的鎖栓元件的夾緊截面裏,並借助套管内一 個與電纜芯線軸向垂直的致斷螺釘進行固定。接著將第二 根電纜芯線裝入與中間截面(容納截面)相接的半外殼 内。通過第二個夾緊截面的開放的外殼設計,能夠避免其 内部的電纜芯線彎曲。電纜芯線可以從上面插入下面的半 外殼,並且不受導線橫斷面大小的限制。本發明的另一個 優點是:電纜末端的自由製作會小一點。接下來借助上面 互補的半外殼將下面的開放半外殼關閉。為了達到這個目 的,兩個半外殼都有導執或者電橋,通過它們能夠將上面 的半外殼推向下面的半外殼,或者兩個半外殼鉸鏈式連 接。兩個半外殼的電橋被設計成互補電橋,也就是說下面 半外殼的電橋嵌入上面半外殼電橋的間隙中,或者上面半 外殼的電橋嵌入下面半外殼電橋的間隙中。將電纜芯線裝 入兩個半外殼的夹緊截面後,上面的半外殼從中間截面出 發圍繞過梁寬度移動,並被推入下面的半外殼中。這樣推 動距離大大縮短,而且電纟覽上也不需要上面半外殼的過渡 位置。上面半外殼也可以有多個元件組成,每個元件都要 有用於容納固定工具以及致斷螺釘的孔。每個元件可以分 散地、也可以靈活連接在一起(比如通過薄膜敍鏈連接) 裝到下面外殼上並將其推到它們最終的位置。由多個元件 組成的上面半外殼不受夾緊截面縱軸上電橋的外形限 制。耦合狀態下,兩個半外殼準確連接在一起,形成一個 圓柱體,圓柱體的橫斷面與作為套管的第一個夾緊截面的 200903923 橫斷面相吻合。使用固定工具(優先選擇致斷螺釘)將上 =殼Γ面半外殼進行機械連接,以產生所需的接觸 栓元件的中間截面的直徑不必與鎖栓元件外截 比外栓Α件中職面的直徑 47? f面直到、,並且將其設計成能容㈣El〇20〇5017 規定的橫向分開的套管絕緣體上環形嵌入元件的截 面’以保證本發明中够缝帝辨&妨_ -5 θ > 私产 m纟見接頭具有優勢的圓柱形外部 _郭。絕緣㈣朗横斷面㈣μ㈣ 安:輸,並以此來抵抗在I作狀態下所產 j負何。餘元件外截㈣兩斜端 者圓錐形。鎖栓元件的,声4又。t成弓的或 ㈣長度或者軸㈣展取決於絕緣體的 緣體内側的耳子嵌人鎖栓元件橫斷面減小 =;,,=心邑緣體的機械負荷(尤其是軸向上的機械 约伴心H 式,本項發3种鎖栓元件的横截面能 緣體的高度敎性。此外,鎖拴元件的中間截面 允:從中間截面出發將上面半外殼推進下面半外殼。這 置,緣’鎖检元件的末端部分不需要過渡位 是:與目前的技術水準相比,本項發明顯著的優點和特徵 組成部分被安全地鎖定在 鎖栓元件卜:面減小的鎖栓元件的容納截面,裝在 對絕緣1 緣體能触其_料子難,並且持續 相=找位。如果絕緣體由多個元件組成,其各個 起,並且在軸向上不能移動 13 200903923 鎖私兀件額截自的構錢各個崎 向其他絕緣體移動。 犯夠很好地 在電境末端不需要鎖栓元件的過渡位 兩個半外殼中的-個從容納截面推到下面的半夕::以將 由於需要的配件少,所以能夠減 耗,同時也能降低成本。 以耗和存儲消 由兩料外殼構成的m面使得在有限 件下也能實現芯線連接,因為有 、、'木 上面插人這個夾緊截面。有有根4電境能夠從 ㈣、Γί體的外部輪廓可以設計成圓柱形,這樣能夠避免 機械力作用於絕緣電纜接頭導致的危險。 緣能二形嵌入元件良好的穩定性能夠提高絕緣體的電絕 /絕緣體的圓㈣外形設計使崎的外料護能夠在 很低的生產消耗下得以實現。 【實施方式】 仔細閱讀以下對本項發明所偏冑的設計宰 描述以及圖解後,能更好地理解和評價本項發明的目的以 及優點: πσ圖1展不了本項發明中的絕緣電鏡接頭⑴t帶有-個 單面開放的外夹緊截面(3.1)的鎖栓元件(3)。根據本項發 明,能夠縱㈣展且導電的圓柱形鎖栓元件(3)有三個截面 (3.〗,3.2),根據圓3_6將其中兩個外截面(31)設計成各用 14 200903923 6:二 芯線(2·υ的夾緊截面(3·1);根據叫^ 外截面αι)之間、橫斷面小於外截面橫斷面 緣體間截面(3.2)設計成用於容納和制動絕 、表體的令納截面(3.2)。位於觀察者左侧的外截面 :=有為―:端面開口的套管(4)用於容納第-根電麗: 了在套管内對電纜芯線㈤)進行制動,安裝一 =未顯示出來的致斷螺釘,該螺針裝在與其相匹配的 孔7與端面孔垂直。根據圖1和圖2,位於觀突 者右侧的外截面门η 士 、减〜 ί2η η 於容納第二根電纜芯線 如半外殼(5)構成。兩財_5)端面都 钉:口以及一個用於容納-個圖中未顯示的致斷螺 和圖2’兩個半外殼⑺都有—個 二 It 兩個電橋間有一定的過梁寬度。根據圖4, 二二、、鱼·Ό放入後’在安裝兩個半外殼(5)時,這兩個電 二二:V根據圖3,將電纜芯線(2·υ裝入後,上面半 (=Γ寬度向連接兩個外截面αι)的中間截面 _ . 至下面半外殼的制動器被移動(如圖4所 :二^力;個圖中未顯示的致斷螺釘能夠持續對右面外 ,面αυ中的電纜芯線⑽進行定位。在這個安裝步驟之 <兩個作為夹緊截面的截面外直徑相同,如圖4所示。 ;著如圖兩= 分::套门,緣體被推到它們的最終位 、“立, ΰ所不,同時兩個套管絕緣體的端面相互 輕合。兩個與容納截面(3.2)相連的夹緊截面⑴)的 、面⑹破設計成圓錐形,以方便以後安裝位於過渡位置中 200903923 作為套管絕緣體的絕 面(10)的外部輪产雇版1 )。兩個套管絕緣體的環形橫斷 輪廓相匹配,以便二1彳王元件(3)的容納截面(3.2)的外部 安裝時能將其固定在一起。 【圖式簡單說明】 圖】是關於對帶有 不意圖; 截面的鎖栓元件的200903923 IX. Description of the invention: [Technical field to which the invention pertains] The present invention is an insulated cable joint which can be used to produce a cable fitting with an automatic occlusion electric insulating plug, such as for accommodating a cable end. [Prior Art] In electronic technology, cable connectors are used for electrical connection of cable segments or cable ends. The same type of cable connector usually consists of a part or parts and each end has an opening to accommodate a cable core. Shrink hoses, connecting splicing or insulator systems for electrical insulation, protection against moisture or mechanical protection for cable connections. The electrical contact at the end of the cable core to be connected and the end of the cable connector and the mechanical fixing can be achieved by cold forging, such as hex compression, or by means of suitable fixing means via the terminal connection. When compressing the connection, each conductor section of the electrical connection must have a special electrical winding joint' because the end opening of the cable joint must match the outer diameter of the cable core so that it can be continuously and effectively maintained by the side compression. contact. However, there are several solutions in the current technology when screwing. The contact electromotive force necessary for the safety connection to secure the end of the cable core wire in the cable gland is usually achieved by means of a breaking screw which, at a certain torque, is disconnected at the height of the outer casing surface for insulation. When connecting the cable, the end of the cable core must not be movable longitudinally. In order to be able to place the cable core into the end opening of the cable connector, a portion of the cable core must be folded into an s shape within a certain range. This requires that the joint holes in the underground cable to be laid underground in 200903923 should be large enough. In addition, the original women's step (that is, the cable core with a large cross-section of the connecting wire) is very difficult, and the mouth == surgical aid cannot be completed. So we have developed this κ connector' which can be opened at least for the end of an electric (four) wire and can be re-closed after the electric (4), the end of the wire is loaded. ... "Technology "69 044 is a connection with separate sleeves: a tool for fixing the wires in the holes and a:::tube:= holding two constant cross sections in the middle. For -:= ::=: There is an electromotive force at the tube_. It can be used to make two cable terminals in contact with each other. The k-screw connection is in one ΕΡ 0 563 164. There are multiple tubes available. The end of the electric wire is accommodated;;=; the middle mother and the second set have one - the wire can be loaded from the side; the wire cover which is mounted on the side of the crucible is a sleeve matched with the tweezers. Hr channel and the cylinder with the cross section of the cover. However, its shortcoming is that it needs to be "there is a constant cross-tightness". This will not only increase the number of bushings of the electrical connector, but also clamp the casing to the corresponding The end of the electric m ^ and before the ampoules are still set 'this requires the installer to be installed at the time of the transition. The insulation may need to go in addition to the thick-walled "edge layer. The electrical connector also has a 200903923 Disadvantages: The screws used to position the bushing must be removed from the threaded holes in the cover, which may Thread, which leads to the inaccessibility of the screw. DE 103 139 44 is an electrical connector with two separate half-shells, which have space for the electrical conductors. There is a solid ingot in the middle of each housing. The ingot has a hole for receiving the screw. The two halves together with their ingot form an opposite abutment. The required contact electromotive force is achieved by a screw: the screw passes through the two halves and is screwed together The electrical conductors are automatically clamped between the two housing halves. However, the disadvantage of this electrical connector is that the contact electromotive force can be produced with only one screw to achieve an error-free operation of the mechanical and electrical functions of the electrical connector. There is also an electrical connector consisting of an open casing into which the cable conductor can be inserted. The cover is used to seal the casing from the end of the electrical connector. To ensure mechanical stability, the cover and the casing have a complementary A dovetail guide system. In addition, the cover also has a hole for fixing the wire. When the wire is fixed, the electrical contact between the wire and the outer casing is simultaneously observed. The disadvantage of the joint is that the cover must be pushed in from the end of the joint. Depending on the degree of insulation of the core, there must be a corresponding installation space so that the conductor can be kept at a sufficient distance from other items. DE 10 2005 017 472 is a part or more An insulating system for the production of medium-voltage cable fittings. The insulating system has an annular engaging element that is locked in a complementary receiving element of the other insulating end face banking surface. In the case of a joint, as described in EP 〇 669 044 and EP 056 3 164, the wire-to-loop connecting element constituting the bolt requires that the outer geometry of the 8 200903923 lockout cannot be designed in the geometric design of the insulator. Round. SUMMARY OF THE INVENTION The main task of self-hardening is to develop an insulating electrical mirror joint for the production of electric slow fittings with a 1 base electrical insulating plug. With this type of cable connector, the cable core is safely connected under the installation conditions, and the transition position, in the subsequent insulation, the core ~= according to the design of this * insulation read connector for automatic closing two: cable The production of accessories (such as to accommodate the end of the cable "invented, guideable lock inspection f and an insulator. According to this surface is used for: the first: all parts include three sections. The first one It is used for: the clear clamping section of the second, the clamping line of the two = line between the second outer section, the two clamping sections of the two outer sections are two: the receiving section of the brake insulator. The insulator 4 on the upper side is small. It is installed in the lock bolt element _ face '(4), _2 2 r 2, ? ring section in the installation of insulated electric 缦 joint two: degree wide transverse electric gauge core wire between the straight line / / pieces Read. Both ends of the connection reach the second clamping section, while the section passes through the damage I and the mechanical connection of the additional contact points in the flow path of the receiving section are not subjected to the gas in the present invention, and are designed to have two :End:::=Bu Section at least - Doorway for Guna Cable Core Set 200903923 ... (d) has a hole for accommodating the fixed work 2 at least one is composed of two complementary and compatible structural outer cross section and a transverse cross section for accommodating the fixing tool has an end face opening for use here The broken screw is used as a fixing tool for the wire. The screw is determined according to the cross section of the two electron mirror cores to be locked into the clamping HI, and at the same time, the cable core of the cable passes through the required breaking torque. Upper and second: the outer section of the outer section is fixed at their respective positions. The outer section of the cross section is smaller than the middle section of the smaller cross section. The insulator on the insulating electrical plug is not axially aligned. :Moving:: It can be instructed that continuous electrical insulation and anti-m 0 motion can be guaranteed in order to achieve the mutual fit between the latching element and the insulator (especially within the middle wear surface of the latching element) (especially, , the wheel in the middle section of the bolt with the bolt element should match each other. The contour of the (four) plane is wrong with the circle due to the production process. The two outer sections are = f: the three cross sections of the piece are designed as an outer section. Small cross section Both sides of the face are designed to be conical or flat, with at least two of the two-line side ends: two of the two locking elements are far-bent or conical. The two outer faces of the cross-section are designed to be x. 'The two mutually compatible half-shells have a single guide'. The mother guide system has two guides 200903923 fixed on the edge of the half-shell. The two guides are connected in spring slots. The other half of the half-shell is fitted with two /, and there is a possibility that there is a potential, two straight, between the two bridges, there is a longitudinally hanging half-shell between the bridge /= half-shell, two Two half outer garments are inserted into the electric slow core wire to ensure that the material is half-shelled and the second half of the casing is connected; the semi-shell has an additional brake. In the evening, one of the two installations, the two coupled bodies, the diameter It is very advantageous to have the two surfaces of the closed cylindrical body that constitute the casing: the surface and/or the inner surface of the casing to be clamped _===? wheel or cut (four). . The electric contact-closing and the additional mechanical fixing of the insulator mounted on the bolt element are composed of a plurality of elements which constitute the early member, or the two clamping sections of the surface can be cut by the two-dimensional face. The T _ that separates the section of the _ is composed of multiple components, so the original meaning = D fruit insulator is the advantage of your possession.奋陴 ^ 'Insulator is composed of two laterally separated complementary sleeves, 邑 _ only shown, each end of the sleeve insulator has a ring two = edge body to form the edge of the electricity, when the lock element is reached ::=3: The object has a circular cross-section contact, and it is also possible to edit the two: two. In order to connect them to the eight-time f-insulator at least the #-joining element on the end face, the pure element is cut into the complementary receiving element of the other kneading surface. Heart edge body 200903923 When installing an insulated cable joint, first insert the cable core wire from the end face into a clamping section of the bolt element used as a bushing, and fix it by means of a breaking screw in the bushing that is perpendicular to the cable core. . The second cable core is then placed in a half-shell that is in contact with the intermediate section (accommodating section). With the open housing design of the second clamping section, it is possible to avoid bending of the cable core inside it. The cable core can be inserted into the lower half of the housing from above and is not limited by the cross-sectional size of the conductor. Another advantage of the present invention is that the free production of the cable ends is smaller. The lower open half-shell is then closed by means of the complementary half-shell above. To achieve this, both halves have a guide or bridge through which the upper half of the housing can be pushed towards the lower half of the housing or the two halves are hingedly connected. The two half-shelled bridges are designed as complementary bridges, that is to say the bridges of the lower half-shells are embedded in the gaps of the upper half-shell bridges, or the bridges of the upper half-shells are embedded in the gaps of the lower half-shell bridges. After the cable core is loaded into the clamping section of the two halves, the upper half of the casing moves from the middle section around the width of the web and is pushed into the lower half of the casing. In this way, the pushing distance is greatly shortened, and the transition position of the upper half casing is not required in the electric viewing. The upper half of the outer casing may also be composed of a plurality of elements, each of which has a hole for receiving a fixing tool and a breaking screw. Each element can be detached or flexibly connected (such as by a thin film chain) to the lower casing and pushed to their final position. The upper half of the housing consisting of multiple components is not limited by the shape of the bridge on the longitudinal axis of the clamping section. In the coupled state, the two half-shells are accurately joined together to form a cylinder whose cross-section coincides with the 200903923 cross-section of the first clamping section that is the casing. Use a fixing tool (preferably the breaking screw) to mechanically connect the upper/shell half-shell to the diameter of the intermediate section of the desired contact plug element without having to be externally compared to the bolt element. The diameter of the 47? f surface is up to, and is designed to accommodate the cross-section of the annularly-inserted component of the laterally separated sleeve insulator as defined by (4) El 〇 20 〇 5017 to ensure that the invention is capable of splicing & 5 θ > Private production m see joints have an advantageous cylindrical outer _ Guo. Insulation (four) cross section (four) μ (four) An: Loss, and in order to resist the production in the state of I. The remaining components are cut off (four) and the two oblique ends are conical. The lock element, the sound 4 again. The length of the bow or the length of the shaft or the axis (four) depends on the inner side of the body of the insulator. The cross-section of the lug intrusion is reduced. =,, = mechanical load of the iliac body (especially the mechanical mechanism in the axial direction) In the case of the H-type, the cross-sectional energy of the three types of latching elements is highly elastic. In addition, the intermediate section of the locking element allows the upper half-shell to be pushed from the middle section to the lower half-shell. The end portion of the edge-locking component does not require a transitional position: the significant advantages and features of the present invention are safely locked to the latching component compared to the current state of the art: a reduced-faced latching component The accommodating section, which is mounted on the insulator 1 can touch the material, and the continuous phase = find the position. If the insulator consists of multiple components, they are each, and can not move in the axial direction 13 200903923 The self-constructed money moves to the other insulators. It is good enough that there is no need for the transition position of the latching element at the end of the electric field. The one of the two half-shells is pushed from the receiving section to the lower half of the eve: Less need for accessories Therefore, it is possible to reduce the cost and at the same time reduce the cost. The m-face formed by the two-material casing is consumed and stored so that the core wire connection can be realized under the limited piece, because there is a 'clamping section on the top of the wood. The root 4 environment can be designed from the outer contour of the (4), Γ body to be cylindrical, which can avoid the danger caused by mechanical forces on the insulated cable joint. The good stability of the edge energy embedded component can improve the insulation of the insulator /The round (4) shape design of the insulator enables the outer material protection of the Saki to be realized at a very low production cost. [Embodiment] The following can be better understood by carefully reading the description and illustration of the design of the invention. And evaluating the object and advantages of the present invention: πσ Figure 1 shows the insulating electron mirror joint (1) t of the present invention with a single-sided open outer clamping section (3.1) of the latching element (3). According to the invention, the cylindrical latching element (3) capable of longitudinally and electrically conductive has three sections (3., 3.2), and two of the outer sections (31) are designed to be used according to the circle 3_6. 14 200903923 6: The core wire (2·υ clamping section (3·1); according to the outer section αι), the cross section is smaller than the cross section of the cross section of the outer section (3.2) is designed to accommodate and brake, The allowable cross section of the body (3.2). The outer section on the left side of the observer: = Yes -: The sleeve (4) with the end opening is used to accommodate the first root: the cable core (5) in the casing To perform braking, install a = unillustrated breaking screw that is mounted perpendicular to the end face of the hole 7 that matches it. According to Fig. 1 and Fig. 2, the outer sectional door η 士 , minus ί 2 η η located on the right side of the observer is constituted by a second cable core such as a half casing (5). Both _5) end face nails: mouth and one for accommodating - a broken snail not shown in the figure and Figure 2 'two half shells (7) have - two two It has a certain lintel width between the two bridges . According to Figure 4, two, two, after the fish is placed in the 'after installing the two half shells (5), the two electric two: V according to Figure 3, the cable core wire (2 · υ after loading, above The middle section of the half (=Γ width to the two outer sections αι) is moved to the lower half of the outer casing (as shown in Figure 4: two force; the broken screw not shown in the figure can continue to the right The cable core wire (10) in the surface αυ is positioned. In this installation step, the outer diameters of the two sections as the clamping section are the same as shown in Fig. 4. Fig. 2 = points:: the door, the edge They are pushed to their final position, "standing, squatting, while the end faces of the two bushing insulators are lightly coupled to each other. The faces (6) of the two clamping sections (1) connected to the receiving section (3.2) are designed to be tapered. Shaped to facilitate the installation of the outer wheel in the transition position 200903923 as the outer insulator of the bushing insulator (10) 1). The annular cross-sectional profiles of the two bushing insulators are matched so that the two elements are 3) The external section of the accommodating section (3.2) can be fixed together. [Simplified illustration] Figure] is about a pair of bolts with a non-intentional; cross-section
圖2是關於開放击替I 圖3是關於第半外殼的示意圖; 的絕緣體的鎖栓元件的示意圖;贡有-個由兩部分組成 的奶圖4疋關於第二個安裝;驟中帶有—個由 的絕緣體的鎖拴元件的示意圖;,個由兩部分組成 圖5是關於第三個安裝步驟中 的絕緣體的鎖栓元件的示意圖;以及 目由兩部分組成 圖6是關於在最後安裝階 意圖。 巴緣的電纜接頭的示 【主要元件符號說明】 1 :絕緣電纜接頭 2 電纜末端 2·1 :電纜芯線 3 ’鎖检元件 3·1 .夾緊截面、外截面 3·2 .容納截面、中間截面 16 200903923 4 :套管 5 :半外殼 5.1 :電橋 6 :端面Figure 2 is a schematic view of the open displacement I. Figure 3 is a schematic view of the first half of the outer casing; the interlocking element of the insulator; a two-part milk Figure 4疋 with respect to the second installation; A schematic view of a lock element of an insulator; one consisting of two parts. FIG. 5 is a schematic view of the lock element of the insulator in the third mounting step; and the two parts are composed of FIG. 6 regarding the final installation Order intention. Explanation of the cable joints of the rim [Main component symbol description] 1 : Insulated cable joint 2 Cable end 2·1 : Cable core 3 'Locking element 3·1. Clamping section, outer section 3·2. Containing section, middle Section 16 200903923 4 : Sleeve 5 : Half-shell 5.1 : Bridge 6 : End face
7 :子L 8 :制導糸統 9 :絕緣體 10 :橫斷面 177: Sub L 8 : Guide 9 9 : Insulator 10 : Cross section 17