TWM404088U - torque wrench structure - Google Patents

torque wrench structure Download PDF

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Publication number
TWM404088U
TWM404088U TW99218640U TW99218640U TWM404088U TW M404088 U TWM404088 U TW M404088U TW 99218640 U TW99218640 U TW 99218640U TW 99218640 U TW99218640 U TW 99218640U TW M404088 U TWM404088 U TW M404088U
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TW
Taiwan
Prior art keywords
rod
hole
groove
push
push block
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TW99218640U
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Chinese (zh)
Inventor
jin-shun Zheng
Original Assignee
Honiton Ind Inc
jin-shun Zheng
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Application filed by Honiton Ind Inc, jin-shun Zheng filed Critical Honiton Ind Inc
Priority to TW99218640U priority Critical patent/TWM404088U/en
Publication of TWM404088U publication Critical patent/TWM404088U/en

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M404088 五、新型說明: 【新型所屬之技術頜域】 ^本創作係與旋轉扳手結構有關,尤指一種旋轉扳手係M404088 V. New description: [New type of technical jaw domain] ^This creation department is related to the structure of rotary wrenches, especially a rotary wrench system.

。有推柃頂推結構及驅動結構相連動,使該驅動結搆係 可3 6 〇度旋轉’旋轉扳手結構係可控制變換三種不同的 操作方式。 【先前技術】 按吾人先前所知,習用之旋轉扳手結構如美國專利2 9 7 7 8 2 4號’其係包括: -本體(10),該本體(1〇)設有柄部,該本體 王〇 )作用端係設有γ形開σ之支f,該支f端部係設 第樞部,該本體(1〇)柄部縱向位置係設有適當長 ""之溝槽,該本體(1 0 )柄部近支臂處係設有橫向貫穿 之鎖孔; ' _ —驅動頭(2 Q ),該驅動頭(2 0 )二端係設有第 4部,該第二樞部係與本體(丄〇)之第一樞部相樞設, ,驅動碩(2 〇 )係樞設於本體(i 〇 )之支臂處,該驅 力頭(2 0 )係設有套合部,該套合部係供套合套筒驅動 固设件,該固設件係固設於該本體(1 〇 )之鎖孔 該固設件係使本體(1◦)之Y形支臂不往二側外撐 開0 方疋轉扳手主要之優點係在於:該驅動頭(2 〇 )之第 二樞部係與本體(1G) m相樞設,固設件係固 3 M404088 5又於本體(1 0 )之鎖孔内,該固設件係使該本體(i 〇、 之γ型支f不紅側外#開,該驅動頭(2 Q )係以第二 樞部為轴心於支臂處作大於2 7 0度以上之擺動,該驅: j 2 0)之套合部係套合套筒後即可以適當角度旋動固 设件’可大於2 7 0度之旋轉角度係為旋轉扳手之結構 rv "* 該美國專利旋轉扳手結構之缺失係在於:. The push-pull push structure and the drive structure are connected to each other, so that the drive structure can be rotated by 3 ’ degrees. The rotary wrench structure can control and change three different operation modes. [Prior Art] As previously known, conventional rotary wrench structures, such as U.S. Patent No. 2,7,7,8, 2, 4, include: - a body (10) having a handle, the body Wang Wei) The action end is provided with a branch γ of the γ-shaped opening σ, and the end portion of the branch is provided with a first pivot portion, and the longitudinal position of the handle of the body (1〇) is provided with a groove of a suitable length "" The body (10) has a laterally extending locking hole at the proximal arm; ' _ - a driving head (2 Q ), and the driving head (20) has a fourth portion at the two ends, the second The pivoting system is pivoted with the first pivotal portion of the body (丄〇), and the driving master (2 〇) is pivotally disposed at the arm of the body (i 〇), and the driving head (20) is provided a sleeve portion for driving the sleeve to fix the fixing member, the fixing member is fixed to the locking hole of the body (1 〇), the fixing member is configured to make the body (1 ◦) Y-shaped The main advantage of the arm is that the second arm of the driving head (2 〇) is pivoted with the body (1G) m, and the fixing member is fixed 3 M404088 5 is in the keyhole of the body (10), the solid The device is such that the body (i 〇, the γ-type branch f is not red-side, the drive head (2 Q ) is greater than 270 degrees above the arm with the second pivot as the axis. Swing, the drive: j 2 0) The sleeve part can be rotated at a suitable angle after the sleeve is sleeved. The rotation angle of more than 270 degrees can be the structure of the rotary wrench rv "* The missing structure of the patented rotary wrench is:

1、 該驅動頭(2 0)係以第二樞部為軸心於本體Q 之支臂處略做上下擺動,但該驅動頭(2 0)之套合 2呈凸伸狀’該套合部於旋轉時係、會與本體(1 〇 )相 干v,該驅動頭(2 〇 )係無法做 頭(20)之套合部干涉本體 〇 )需逆向旋轉,如此旋轉扳 τ °亥驅動頭(2 摔作。 疋柃扳手紅轉時具有死角而不便於 2、 當驅動頭(2(n之套合部套合套筒驅動之,該 =。頭(2 0)相對本體(10)結構係無法做定位的控 有鑑於上述習用旋轉扳手結構之缺失 年從事相關行業之經驗,坎於亡 不』作人心夕 問世。 q於有一能改善習用弊端之產品 【新型内容】 新型所欲解決之問顳.— 推結構、彈性元件及驅動έ士構1轉扳手係設有推桿、頂 6 0度旋轉,㈣扳切㈣結構係'可3 ^控制受換三種不同的操作 4 M404088 方式。 解決問題之技術手段:—種旋轉扳手結構,勺 二-本體係設有捍體、丫型開口之切、旋轉槽、了一 :桿孔及鎖孔;一推桿係容設於第一容桿孔内,‘ 設有長孔槽、容置槽及第二容桿孔 x于’丁、 ^ ^ 弟一推塊係容置於 合置槽内;-項推結構係組設々I置槽及第於 該頂推結構之頂桿係容置於第二容桿 ;:=孔内’ 私笙如 合忏札處且則端係凸露 一、了谷#孔外;移動第二推塊即帶動頂桿移位,·—彈性 :牛係谷設於苐-容桿孔内,彈性元件係抵於推桿 -固設件係穿伸於鎖孔及推桿之長孔槽内;—驅, 枢設於該支臂處,驅動結構之驅動頭係設有複數第:: ^套2^位部係供頂桿端部容抵定位,驅動頭係凸設 ^套“㉔合縣可通過旋轉槽,驅動頭 6 0度旋轉。 ♦収加王3 對照先前㈣之功效:該本體係組設有推桿、第 ^距:推結構及彈Η件,當推桿向本體柄部末端㈣最 =,:驅動頭之套合部係可通過旋轉槽,該驅動頭係 第一樞部為軸心於支臂處作擺動處作3 6 〇度轉 增加操作時方便性。該驅動結構設有複數第—定位 2當推桿朝柄部末端推移—小距離’該驅動頭係調整至 二而之第一定位部位置後’再將頂桿端部對正第一定位部 ==動結構與本體間即呈相對角度,該驅動結構之驅 角戶2有複數第一定位部,使該驅動頭與本體間係呈多 5 M404088 為使鈞局委員及熟習此項技藝人士對本創作之功 效完全瞭解’茲配合圖式及圖號就本創作之結構、組成說 明於後,惟以下所述者僅為用來解釋本創作之實施例,並 非企圖據以對本創作做任何形式上之限制,是以凡是在本 創作之精神下,所作的任何修飾變更皆仍應屬於本創作之 保護範圍。 【實施方式】 |先請參閱第一圖至第四圖所示,本創作係關於一種 旋轉扳手結構,其係包括: 一本體(1 0 ),該本體(i 〇 )係設有適當長度之 桿體,該本體(i 〇 )一端設有γ型開口之支臂(丄丄), °玄支# ( 1 1 )二側端部係設有第一樞部(1 1 1 ),該 第-框部(1 1 1 )係呈穿孔狀,該支臂(i i )底部與 桿體間係設有旋轉槽(i 2 ),該旋轉槽(丄2 )係具二 定寬度及深度,旋轉槽(i 2)係呈四方槽體狀,旋轉槽 c 1 2 )底部係設有第一容桿孔(i 3 ),該本體(丄〇 ) 縱向位置係設有適當長度之溝槽(1 4 ),溝槽(1 4 ) 係與旋轉槽(i 2 )相通,溝槽(1 4 )與旋轉槽(丄2 ) 連接處係設有穿槽(1 4 1 ),該穿槽(^ 4丄)之寬度 :略大於溝槽(i 4 )寬度’該本體(丄〇 )係設有橫: 貫穿之鎖孔(1 5 ),該鎖孔(1 5 )係與第—容桿孔(丄 3 )呈垂直相通; 一推桿(2 0),該推桿(2 0)係容設於本體 6 iu-r\7TV/〇〇 有-t3)内,該推桿(2 〇)橫向係設 9 2 1 ) ’该長孔槽(2 1 )係與鎖孔(2 5 ) 容置^對正’該推桿(2〇)係設有容置槽(22),該 ;“22)係與穿槽(141)同開口方向 係不與長孔槽(21)相通,該推桿(2〇) ^向位置係設有第二容桿孔(2 3 ),第二容桿孔(2 繁一1依序與容置槽(2 2 )及長孔槽(2 1 )呈相通狀, 兮Lt桿孔(23)開°係與第—容桿孔(1 3)同方向, ^ 干(2 〇 )上下二側係設有第一推塊(2 4 ),二第 &quot;Tm:)係穿伸於穿槽(141)處並凸露於本體 二個至::第二推塊(3〇),該第二推塊(30)係為 ::该母-第二推塊(3 0)係與推桿(2 〇)之第一 呈相對狀’該每一第二推塊(3〇)—端係 凸-有孔狀之結合冑(31),二第二推塊(3 =3 Η係:分別上下容置於推桿⑵)之容置槽(; «玄第—推塊(3 〇 )係靠抵於容置槽(2 2 )之 壁面上; i“曰結構(40)’該頂推結構(4〇)係組設於 推杯(20)之容置槽(22)及第二容桿孔(23)内, 該頂推結構(4 〇 )係包括·· = 係容置於推桿(2〇)之第二容桿孔 ^ °亥頂杯(4 1 )則端係凸露於第二容桿孔(2 °亥頂# (4 1 )係穿伸於第二推塊(3 〇)之結 7 jj4〇4〇88 合部(3 1 )内,兮★曰r 容設於容f # 干(4 1 )係使該第二推塊(3 Ο ) 置槽(22)處1桿(41)係設有環槽(4 外徑係略大於推二)(:、:”形狀扣體’該扣環(4 2 ) 該扣環(42) ^ = t第二容桿孔(23)直徑’ 汽,該扣产“桿(41)之環槽(4 11) :(2、^ ,使該頂桿(4 1 )不脫出第二容桿 上; ’ 5亥扣環(4 2)並靠抵於第二推塊(3 0) X第彈粗(4 3)係套設於頂桿( 一彈體(4 3 ) n姑^ 々干〈4 1 )上,έ亥弟 n w 姊環(42)上H彈體 (4 3)另端係抵於推桿 ?羊- 面上; 之谷置槽(22)内壁 該第二推塊(3 0 )、頂;^ r /1 !、 篦一彈辦Γ」Q、 、杯(4 1 )、扣環(4 2 )及 第弹體(43)係設於推桿(2〇)上,該第 3 )之彈力使該第二推塊彳$卩 ^ ^ίΙ(22) 夕mu 隹尾U 0)而克服第-彈體(4 3 ) ”二:塊(3〇)即帶動頂桿(41)移位, ;^41)即更凸露於推桿(2〇)之第二容桿孔(2 本-=二(5〇),該彈性元件(5〇)係容設於 本粗(1G)之容桿孔(13)内,彈性以 -= 錄於第-容桿孔(1 3)底部而另端抵於推桿(2 0)末知,择性凡件(5 〇)使該推捍(2 〇)於本體(2 8 M404088 Ο )内具彈性位移功效,該推桿(2 〇 )、第二推塊(3 0 )及頂推結構(4 0)受彈性元件(5 〇)頂抵時,推 桿(2 0 )、第二推塊(3 0)及頂推結構(4 〇)係封 閉旋轉槽(1 2); 一固設件(1 8 ) ’該固設件(丄8 )係呈外螺牙紋, 該固設件(1 8)係穿伸於本體(1 〇 )之鎖孔(丄5 ) 及推桿(2 0)之長孔槽(2 1 )内而固設於鎖孔(丄5 ) 上,該固設件(1 8 )係使該γ型支臂(i i )不往二側 外撐開,該固設件(1 8)係將推桿(2 〇)限位於第— 容桿孔(1 3 )内而不脫出本體(i 〇 )夕卜,推動第—推 塊(2 4 ),該長孔槽(2 1 )係受限於固設件(丄8 ), 該推桿(2 Q)係於第-容桿孔(丄3 )内—定距離之位 套件(1 9 ),《套件(丨9 )係彳轉套設於本體 1 0)之桿部’該套件(】9 )係封閉 封閉狀; ,支;構:6〇)’該驅動結構(6〇)係組設於 二i驅動結構(6〇)係為設有PUS 係二冓:,驅動結構(6〇)可正逆旋動或單向旋動,其 該驅動頭(6 1 )二端俜吟右笼_ 該第二樞部(611)#:::有弟-抱部(611), 1)传二η 圓柱狀,該第二框部(61 )係與本體(1 〇)之第—框部(i 驅動頭(6 1 )係以第二樞部( 1 )相框設’该 I V 〇上上)為軸心於支臂(i 9 M404088 驅動頭(61)另二端係設有一 定:立部⑷2),該第一定位部(612)係呈孔狀, 5玄弟-疋位部(6 1 2 )深度方向係與第二樞部(6 I:??直’ 5亥第—定位部(6 1 2 )係供頂桿 (4 1 ) W谷抵定位之,該驅動頭(6 1 )—側係凸执 f套合部(613),該套合部(613)斷面係呈四角又 狀’縣合部(6 1 3 )係可套合套筒而旋動螺合件,告 驅動頭(6 1 )以第二樞部(6 1 1 )於支臂(丄]): 擺動之,該套合部(6工3 )係可通過旋轉槽(^ 使該驅動頭(6 1 )相對本體(丄〇 )係呈3 6 〇度旋轉, 该套合部(6 1 3 )縱向位置係設有貫穿之第—穿孔( 1 4 ) ’該第一穿孔(6丄4)呈二側開口直徑 徑較小之階級孔狀,該套合部(61 3)另側邊係 又$孔6 1 5 ) ’該珠孔(6 1 5 )係與第一穿孔( 1 4 )呈垂直相通; °亥#工制桿(6 2 )係容設於驅動頭(6 1 )之第一穿 :L ( 6 1 4) β,該控制桿(6 2 )係為二不同直徑之: ==制桿(6 2 )直徑較大一端係設有階級部,該 =、、及。fM糸與珠孔(6丄5 )位置相配合,該控制 =係設有第二定位部(621),該第二定位部 係呈孔狀,該第二定位部(6 2丄)係供頂桿 $部容抵定位;該第二彈體(6 3)係套設於控制桿(6 一办上,該第二彈體(6 3)係使該控制桿(6 2 )於第 孔(6 1 4)内具彈性位移功效;該珠體(6 4)係 1VHU4088 係受第二彈體(Θ 3) 之階級部較淺處係對正 係部份凸露於珠孔(6 (6 2 1 )處,該控制桿(6 2 ) 之彈力頂抵’使該控制桿(6 2 ) 珠孔(6 1 5 ),該珠體(6 4 )1. The driving head (20) is slightly swinged up and down with the second pivot as the axis at the arm of the body Q, but the sleeve 2 of the driving head (20) is convexly shaped. When rotating, it will be coherent with the body (1 〇). The drive head (2 〇) cannot make the head (20). The interference part of the body is reversed, so that the rotation is τ ° (2 falls. 疋柃When the wrench is red, it has a dead angle and is not convenient. 2. When the drive head (2 (n's sleeve fits the sleeve drive, the =. head (20) relative to the body (10) structure The control that can't be positioned is based on the experience of the above-mentioned conventional rotary wrench structure in the relevant industry, and it is a singularity. It has a product that can improve the abuses. [New content] New type of solution颞 — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — — Technical means to solve the problem: - a rotary wrench structure, spoon two - this system is equipped with a scorpion, scorpion type Cutting, rotating groove, one: rod hole and keyhole; a push rod is accommodated in the first rod hole, 'providing a long hole groove, a receiving groove and a second hole rod hole x' ^ ^ The brother's push block is placed in the joint slot; the - push structure is set to set the slot and the jack of the pusher structure is placed in the second rod; If the private 笙 忏 处 且 且 且 则 则 则 则 且 且 且 且 且 且 且 且 且 且 且 且 、 、 、 、 ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; ; The component is adapted to the push rod-fixing member to extend through the slot hole and the long hole slot of the push rod; the drive is pivoted at the arm, and the drive head of the drive structure is provided with a plurality of:: The 2^ position is for the end of the ejector pin to be positioned, and the drive head is convexly set. “24 The county can pass the rotating slot and drive the head to rotate at 60 degrees. ♦Adding the king 3 to the previous (4) effect: the book The system group is provided with a push rod and a second distance: a push structure and a spring member. When the push rod is at the end of the body handle (four), the sleeve portion of the drive head can pass through the rotary slot, and the drive head is the first pivot. The part is pivoted at the arm Handle 3 6 twist to increase the convenience of operation. The drive structure is provided with a plurality of positions - positioning 2 when the push rod is moved toward the end of the handle - a small distance 'the drive head is adjusted to the position of the first positioning portion 'The first rod positioning portion is aligned with the first positioning portion== the movable structure and the body are at a relative angle, and the driving structure of the cornering household 2 has a plurality of first positioning portions, so that the driving head and the body are more 5 M404088 In order to make the members of the bureau and those skilled in the art fully understand the function of this creation, the structure and composition of the creation are explained below, but the following are only used to explain the creation. The embodiments are not intended to impose any form of limitation on the present invention, and any modifications made in the spirit of the present invention are still within the scope of this creation. [Embodiment] First, please refer to the first to fourth figures. The present invention relates to a rotary wrench structure, which comprises: a body (10), the body (i 〇) is provided with an appropriate length a rod body having a γ-shaped opening arm (丄丄) at one end of the body (i 〇), and a first pivot portion (1 1 1 ) at the two ends of the 玄玄支# (1 1 ), the first - the frame portion (1 1 1 ) is perforated, and a rotating groove (i 2 ) is disposed between the bottom of the arm (ii) and the rod body, and the rotating groove (丄2) is provided with two widths and depths, and the rotation The groove (i 2) is in the shape of a square groove, and the bottom of the rotating groove c 1 2 ) is provided with a first rod hole (i 3 ), and the longitudinal position of the body (丄〇) is provided with a groove of an appropriate length (1) 4), the groove (1 4 ) is in communication with the rotating groove (i 2 ), and the groove (1 4 1 ) is connected to the groove (14) and the rotating groove (丄2), the through groove (^ 4丄) Width: slightly larger than the width of the groove (i 4 )' The body (丄〇) is provided with a transverse: through the keyhole (1 5 ), the keyhole (15) and the first hole (丄3) is in vertical communication; a push rod (20), the putter 2 0) The system is located in the body 6 iu-r\7TV/〇〇-t3), the push rod (2 〇) is laterally connected 9 2 1 ) 'The long hole groove (2 1 ) is with the keyhole (2 5 ) accommodating ^ aligning 'the push rod (2 〇) is provided with a receiving groove (22), and the "22) is not the same as the long groove (21) in the same opening direction as the through groove (141) (21) In the same way, the push rod (2〇) ^ is provided with a second rod hole (2 3 ) to the position, and the second rod hole (2 1 in sequence and the receiving groove (2 2 ) and the long hole groove) (2 1 ) is in the same direction, the 兮Lt rod hole (23) is opened in the same direction as the first rod hole (1 3), and the first push block is provided on the upper and lower sides of the dry (2 〇) (2 4 And the second push block (30) is: The mother-second push block (30) is opposite to the first one of the push rods (2 〇) 'the second push block (3 〇)-end end convex-hole-shaped joint 胄 (31) ), the second second push block (3 = 3 Η series: respectively, placed on the push rod (2)) accommodating groove (; «Xuan- push block (3 〇) is against the accommodating groove (2 2) On the wall; i "曰 structure (40)' The thrusting structure (4〇) is assembled in the receiving groove (22) of the push cup (20) and the second receiving rod hole (23), and the pushing structure (4 〇) is included in the housing. In the second rod hole of the push rod (2〇), the end cup (4 1 ) is exposed to the second rod hole (2 °Haiding # (4 1 ) is stretched to the second push) The junction of the block (3 〇) 7 jj4〇4〇88 in the joint (3 1 ), 兮★曰r is set in the capacity f #干(4 1 ), so that the second push block (3 Ο ) is grooved ( 22) 1 rod (41) is provided with a ring groove (4 outer diameter is slightly larger than push 2) (:,: "shape button body' the buckle (4 2) the buckle (42) ^ = t second The hole of the rod hole (23) is 'steam', and the ring groove of the rod (41) is produced (4 11): (2, ^, so that the rod (4 1 ) does not come out of the second rod; '5 The buckle ring (4 2) and the second push block (3 0) X the first projectile (4 3) is sleeved on the ejector pin (a body (4 3 ) n gu ^ 々 〈 < 4 1 ) On the top, the έ海弟 nw 姊 ring (42) on the H body (4 3) the other end of the putter? Sheep - face; valley groove (22) inner wall of the second push block (30), top; ^ r /1 !, 篦一弹Γ"Q, , cup (4 1 ), buckle (4 2) and the first body (43) is attached to the push rod (2〇), and the elastic force of the 3rd) overcomes the second push block 彳$卩^^ίΙ(22) mumu 隹 tail U 0) The first-elastic body (4 3 ) ” two: the block (3〇) drives the ejector pin (41) to shift, and the ^41) is the second shank hole that protrudes more from the push rod (2〇) (2 -= two (5〇), the elastic element (5〇) is accommodated in the thick (1G) rod hole (13), and the elasticity is recorded by -= at the bottom of the first rod hole (13). The other end is the final point of the push rod (20). The optional piece (5 〇) makes the push (2 〇) elastic displacement effect in the body (2 8 M404088 Ο ). The putter (2 〇) When the second push block (30) and the push structure (40) are abutted by the elastic member (5 〇), the push rod (20), the second push block (30), and the push structure (4 〇) ) is a closed rotating groove (1 2); a fixing member (18) 'the fixing member (丄8) is an external thread, and the fixing member (18) is threaded to the body (1 〇) )The keyhole (丄5) and the push rod (2 0) The long hole groove (2 1 ) is fixed on the lock hole (丄5 ), and the fixing member (18) is such that the γ-type arm (ii) is not open to the outside, the fixing member (1 8) The push rod (2 〇) is limited to the first rod hole (1 3 ) without disengaging the body (i 〇), pushing the first push block (2 4 ), the long hole groove (2 1 ) is limited to the fixing member (丄8), which is attached to the first-tolerance rod hole (丄3)-position kit (1 9), "kit (丨9) The 彳 套 套 本体 本体 本体 本体 本体 ' ' 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 该 本体 本体 本体The structure (6〇) is provided with a PUS system: the drive structure (6〇) can be reversed or unidirectionally rotated, and the drive head (6 1 ) has two ends and a right cage _ the second The pivot (611)#::: has the brother-holding part (611), 1) transmits the second η cylindrical shape, and the second frame portion (61) is connected to the first frame portion of the body (1 〇) (i driving head (6 1 ) is based on the second pivot ( 1 ) frame set 'the IV 〇 up and up) as the axis of the arm (i 9 M404088 drive head (61) and the other end is fixed: In the part (4) 2), the first positioning part (612) is in the shape of a hole, and the depth direction of the 5th and the squatting part (6 1 2) is the depth direction and the second pivot part (6 I:?? The portion (6 1 2 ) is positioned for the apex (4 1 ) W valley, and the driving head (6 1 ) is flanked by a side portion (613), and the cross section of the sleeve portion (613) In the four corners, the county department (6 1 3) can fit the sleeve and rotate the screw. The drive head (6 1 ) is the second pivot (6 1 1 ) to the arm (丄). : Swinging, the fitting part (6 gong 3) can rotate the driving head (6 1 ) by 3 6 degrees with respect to the body (丄〇) through the rotating groove, the fitting part (6 1 3 The longitudinal position is provided with a through-perforation (14). The first perforation (6丄4) has a class hole shape with a smaller diameter on both sides, and the other side of the sleeve (61 3) Also, the hole 6 1 5 ) 'the bead hole (6 1 5 ) is perpendicularly connected to the first perforation ( 14 ); the ° Hai # industrial rod (6 2 ) is housed in the driving head (6 1 ) The first wear: L (6 1 4) β, the control rod (6 2 ) is of two different diameters: == the rod (6 2 ) has a larger diameter end with a class The =,, and. fM糸 is matched with the position of the bead hole (6丄5), and the control= is provided with a second positioning portion (621), the second positioning portion is in the shape of a hole, and the second positioning portion (6 2丄) is provided for The ejector pin is positioned to be positioned; the second body (63) is sleeved on the control rod (6, the second body (6 3) is such that the lever (6 2 ) is in the first hole (6 1 4) has elastic displacement effect; the bead body (6 4) is 1VHU4088 is subjected to the second body (Θ 3), and the shallow part of the body part is convex to the bead hole (6 (6 ( 6 2 1), the elastic force of the lever (6 2 ) is offset to 'make the lever (6 2 ) the bead hole (6 1 5 ), the bead (6 4 )

1 5 )外而可卡制套筒。 請繼續參閱第八圖所示,係 視圖,第九圖係第八圖之b — b:=-,乍位置之上 二推塊(30)朝支臂(11)方;操作者㈣ (4 1 )係受帶動而壓縮第一彈體 距離、亥頂梓 1)端部係抵於控制桿(62):第(”;’該頂桿(4 二控制桿(6 2 受位移,使該第二彈體心) ==制桿(62)之階級部較深處係與 5)相對正’該珠體(64)係沒入珠 珠體(6 4)係無卡制套筒,套合 筒快速脫離。 (6 13)係可與套 視圖:m第十圖所示,係本創作第二操作位置之 囷弟十一圖係第十圖之B—B處剖視 -推塊(24)或第二推塊(3〇)朝本體(:= 而’推移'大距離’該推桿(2 0 )係壓縮彈性元件( 頁杯(4 1 )係向後方位移而不抵於控制桿( 定位部(6 21)上’此時本體(1〇)干之: 曰(1 2)係呈透空槽狀,驅動頭(6 i )之 13)係可通過旋轉槽(12)處,㈣頭二 部(611)為軸心於支臂(⑴處作三百 M404088 側:第續所示、係本創作第_位置之 =:!塊(24)或第二推塊(3〇)略朝本體“ 端推?::距離,該頂桿(41)端部係與控 (之第一疋位部(6 21)相脫開,該驅動頭 々料係可於支臂(11)處略作上、下調整擺動,例 :使_動頭(61)之套合部(613)與本體( =編直狀態,放開第一推塊(24)或 2)内:該頂桿(41)端部容抵於第-定位部… 2)内疋位,該驅動頭(6 ]、访 固定角度。 、(61)與本體(10)間係呈一 請繼續參Μ十四圖所示,係本創作第二 解圖’該實施例中’該推桿(2 〇 )係不:兔二 4 ),該推桿(2 0 )、第二推塊(]n w 推塊(2 係m而—容桿孔(工3 ), 推塊(3 0 )向後即可帶動推桿(2 Q )向後二、二 =:推塊(3〇)向前係可帶動頂推結構“oil: 請繼續參閱第十五圖所示,係本創 一 結構之分解圖,該第二推塊(3Q)之結^ 分 設有内螺牙紋,該頂桿(4丄) ^ 3 1 )係 -螺合部(412),該第—螺合部(、=卜螺牙紋之第 結合部(31)上,頂桿(41)係與第^^於 相組設,該第-彈體(4 3 )係套設於頂椁^ ( 3 0) 、4 1 )上, M404088 該第一彈體(43)1係抵 第-彈體(4 3)另端係抵於推:=(3㈧上’該 2)内壁面上。 JU)之容置槽(2 請參閱第十六圖所示,係本創作第一 之立體分解圖,二第二推塊(3弟四貫施例部分結構 呈左右相對狀,該第二推塊(3。:了合部(3 1 )係 向前移位。 亦控制頂桿(4 1 ) 請繼續參閱第十七圖所示, 合示意圖’該實施例令,該驅動頭 Μ五貧施例之組 11)係設有苐二螺合部(6]7、1乂之第二樞部(6 1 7)係呈内螺牙紋’並增設二鎖固,:广二^ 相固外螺枝與每―第二螺合部 請繼續參閱第十八圖所示,… 體分解圖,嗜會於加士 乍弟貫妃例之立 :二:驅動頭MU係設有二套合 迕rro八σ -—叫个旳规份 為四刀另一為三分或一為分 -也-八 刀另一為二分或 I側奢:合部(613)係分別設於驅動頭⑺ 1)一側邊’二套合部(613) 夂6 角頭,一為四公l .·巧—個不同規格之四 為 三分另一為二分,二套合部(613)端部處 定位部(616)’該第三定位部(616)係斑第一 ς :部(61;)或第二定位部(621)相同,該定第三 义位部(6 16)係、呈凹孔狀,該第三定位部(6ι 二驗(二1 )端部靠抵定位,本創作之旋轉 係具二端不同規格之套合部(613)以供套合套筒旋: 14 Μ4ϋ4υδΰ 螺合件。 請繼續參閱第十 ^ 體分解圖’該實 本創作第七實施例之立 部(6 i 3),| ^人3亥驅動頭(6 U係設有二套合 套合部(6 1 3 ) #加+ J )係為一四角頭,此 供頂桿…)端定位部(616)以 設有六角槽以供套合 =套合部(6 i 3)係 抵定位。 碩,、角槽可供頂桿(4 1 )靠 φ f創作旋轉扳手結構主要之優點在於: 塊(3二有推桿(20)、第二推 動頭⑼U UHp M i ^ δ亥驅 砮σ邛(6 1 3 )可通過旋轉槽(i 2), Ϊ?”二61 )係可以第二樞部(6 11 )為軸心於支 Η 1 1 )處作擺動處作3 6 ◦度轉動,增加操作時 性。 2、 該本體(! 〇)係組設有推桿(2 〇)與頂推結 構(4 0 ),當頂推結構(4 〇)往前側支臂(1 1 )方 向推移,該頂推結構(4 〇)係控制驅動結構(6 〇)之 P U S Η作動而使驅動頭與套筒間方便脫離,操作者係直 接於本體(1 〇 )柄部處控制驅動結構(6 〇 ) p U s Η 作動。 3、 該驅動結構(6 0 )設有複數第一定位部(6丄 2 ),^推彳干(2 0 )朝桿體末端推移一小距離,該頂桿 15 (4 1 )端部係與控制桿(6 2 ) ^ 相脫開,該驅㈣(6 χ )係 讀部(6 2 1 ) ”)位置後,再將頂桿&quot;;;::=r=6 ,’該驅動結構(6〇)之驅:二()間即呈相 數第-定位部(6 i ^ 6 1 )係設有複 ::;,一本二 移二:==前::,、後_滑 5明麥閱第二圖所示,該推桿(2 〇 —一 (30)'頂推結構(40)及彈性 )〇『二:塊 組設後,再-體容裝組設於本體(1J〇)可先相 組裝便利性,在本 )内,如此而增加 第二推塊(‘V推匕=行= 0 )空間限制。 ’、不較又本體(1 口 6、當推桿(2 〇)及第二推塊(3 〇 王不動狀,該_ (2 Q &gt; *文推移而 二槽(⑴開。呈封閉狀,該=〇) 一 體性。 、丄υ)外覜係具一 設,部設有套件U9)相配合套 19)係封閉本體(10)柄部處結構而增 16 M404088 加美觀。 因此本創作之旋轉扳手結構具有產業利用性、新穎性 及進步性,誠能符合新型專利之申請要件,爰依法提出申 請。1 5) The sleeve can be made externally. Please continue to refer to the figure shown in Figure 8, the ninth figure is the b of the eighth figure b - b: = -, above the 乍 position two push block (30) towards the arm (11); operator (four) (4 1) is driven to compress the distance of the first projectile, and the top of the head is 1) to the control rod (62): ("; 'the top rod (4 2 control rods (6 2 is displaced, so that The second body of the body) == The deeper part of the ruler (62) and the 5) are relatively positive. The bead (64) is immersed in the bead (6 4) without a sleeve, sleeve (6 13) The system can be viewed from the set: m, as shown in the tenth figure, which is the second operation position of the second working position of the creation, the eleventh figure of the tenth figure is the cross-section of the B-B of the tenth figure ( 24) or the second push block (3〇) toward the body (:= and 'shift' large distance' the push rod (20) is a compression elastic element (page cup (4 1) is displaced backwards without control The rod (the positioning portion (6 21) on the 'body body (1〇) is dry: 曰 (1 2) is in the form of a hollow groove, and the driving head (6 i ) 13) can pass through the rotating groove (12) (4) The first two parts (611) are the axis of the arm ((1) is made of three hundred M404088 side: the continuation, the original The _ position =:! block (24) or the second push block (3 〇) slightly toward the body "end push?:: distance, the apex (41) end of the system and control (the first 部 position ( 6 21) The phase is disengaged, and the driving head material can be adjusted to swing up and down slightly at the arm (11). For example, the sleeve part (613) of the _ moving head (61) and the body (= In the straight state, release the first push block (24) or 2): the end of the ejector pin (41) is accommodated in the first positioning portion... 2) the inner clamp position, the drive head (6), access fixed angle. (61) and the body (10) are presented as one. Please continue to see the fourteen figure, which is the second solution of the creation. In this example, the putter (2 〇) is not: rabbit 2 4) , the putter (2 0 ), the second push block (] nw push block (2 lines m - the rod hole (3), the push block (3 0) can drive the push rod (2 Q) backwards 2 , 2 =: push block (3 〇) forward system can drive the push structure "oil: Please continue to refer to the fifteenth figure, which is an exploded view of the structure, the second push block (3Q) ^ There are internal thread patterns, the ejector pin (4丄) ^ 3 1 ) is the system-screw portion (412), the first screw-in part (, = the thread of the thread In the part (31), the jack (41) is assembled with the first phase, and the first body (4 3 ) is sleeved on the top 椁^(3 0), 4 1 ), the M404088 An elastic body (43) 1 is attached to the inner end of the first body (4 3) against the push: = (3 (eight) upper 'the 2' inner wall surface. JU) the receiving groove (2 see the sixteenth figure Shown as the first three-dimensional exploded view of the creation, the second second push block (the three-part four-part embodiment has a left-right opposite structure, the second push block (3. : The joint (3 1 ) is shifted forward. Also control the ejector pin (4 1 ). Please continue to refer to the seventeenth figure. The embodiment shows that the driving head Μ five poverty application group 11 is provided with a second screwing portion (6) 7 The second pivotal part of the 1乂 (6 1 7) is a threaded internal thread and adds two locks.: Guang 2 ^ Solid external screw and every second screw. Please continue to refer to Figure 18. As shown, the body decomposition map, the genius will be in the case of the Jiashi 乍 乍 : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : Points or ones are points - also - eight knives and the other is two points or I side luxury: the joints (613) are respectively located on the drive head (7) 1) one side 'two sets of joints (613) 夂 6 corners, one For the four gongs. 巧 巧 - a different size of the four is three points and the other is two points, the second set of parts (613) at the end of the positioning part (616) 'the third positioning part (616) is the first plaque The portion (61;) or the second positioning portion (621) is the same, and the third position portion (6 16) is in the shape of a concave hole, and the third positioning portion (6 1 end (2 1) end portion depends In response to the positioning, the rotation of the creation is set at two ends with different specifications (613) for the sleeve. Sleeve rotation: 14 Μ4ϋ4υδΰ screw joint. Please continue to refer to the tenth body exploded view 'The real part of the seventh embodiment of the creation (6 i 3), | ^ 人三亥Drive head (6 U system There are two sets of fitting parts (6 1 3 ) #加+J) which are a four-corner head, which is provided with a hexagonal groove for the arranging part (616) for the fitting = fitting part ( 6 i 3) Positioning. The main advantage of the angle groove for the ejector (4 1 ) to create the rotary wrench structure by φ f is: block (3 two with push rod (20), second push head (9) U UHp M i ^ δ 砮 砮 σ邛(6 1 3 ) can be rotated by the rotation groove (i 2), Ϊ?"2 61), and the second pivot portion (6 11 ) can be pivoted at the pivot 1 3) for 3 6 rotation , to increase the operational time. 2. The body (! 〇) system has a push rod (2 〇) and a push-up structure (40), when the thrust structure (4 〇) is forward to the front arm (1 1 ) When the direction is changed, the pushing structure (4 〇) controls the PUS Η actuation of the driving structure (6 〇) to facilitate the separation between the driving head and the sleeve, and the operator controls the driving structure directly at the shank of the body (1 〇). (6 〇) p U s Η actuation 3. The drive structure (60) is provided with a plurality of first positioning portions (6丄2), and the push-pull (20) is moved toward the end of the rod by a small distance. The end of the ejector pin 15 (4 1 ) is disengaged from the control rod (6 2 ) ^, and the drive (4) (6 χ ) is the position of the reading portion (6 2 1 ) ”), and then the ejector pin &quot;;; ::=r=6 , 'The drive structure (6〇) drive: two () The phase number-positioning unit (6 i ^ 6 1 ) is provided with a complex::;, a second shifting two: == front::, after, _sliding 5 Mingmai, as shown in the second figure, the putter (2 〇—一(30)' push-up structure (40) and elasticity) 〇『二: After the block is set, the body-package set is set on the body (1J〇), which can be assembled first, in this) Inside, this increases the second push block ('V push = row = 0) space limit. ', no more than the body (1 mouth 6, when the putter (2 〇) and the second push block (3 〇 king does not move, the _ (2 Q &gt; * text and two slots ((1) open. closed) , the = 〇) unity. 丄υ) 眺 眺 眺 , , , 套件 套件 套件 套件 套件 套件 套件 U U U U U U U U U U U U U U U U U U U U U U U U U U U U U U U U Therefore, the rotary wrench structure of this creation has industrial utilization, novelty and progress, and can meet the application requirements of the new patent, and apply for it according to law.

17 M4U4U66 【圖式簡單說明】 第_圖係'本創作旋轉扳手結構之立體分解圖。 ^二圖、係本創作旋轉扳手結構之組合示意圖。 =二圖、係本創作部份結構之組合前視圖。 第四圖、係本創作货-^ 作弟二圖Α — Α處剖視圖。 f五圖、係本創作旋轉扳手之立體組合圖。 :六圖、係本創作旋轉扳手之上視圖。 第七圖、係本創作第丄 m &gt;弟/、圖之B — β處剖視圖。 =、係本創作第—操作位置之側視圖。 弟九圖、係本創作望 筮+ Ft、Α 乍弟八圖之B — B處剖視圖。 第十θ Q糸本創作第二操作位置之側視圖。 弟十一圖、係本創作第 第十二圖、係太θ B B處剖視圖。 第+— ’:,乍第三操作位置之側視圖。 弟十二圖、係本創 口 第十四® H心 B — B處剖視圖 第十五圖、係本創竹!二!施例之立體分解圖。 第十丄s 第三實施例之立體分解圖。 乐卞^圖、係本創^ 第十七圖、係本創:Γ細之立體分解圖。 第十八圖、係本創作:五:施例之組合示意圖。 第十九圖、係本到作^例之立體分解圖。 【主要元件符號說明】七實施例之立體分解圖。 ^10)本體 1 )支臂 2 )旋轉槽 4 )溝槽 111)第一抱部 13)第—容桿孔 18 M404088 (141)穿槽 (1 8 )固設件 (2 0 )推桿 (2 2 )容置槽 (2 4 )第一推塊 (3 0 )第二推塊 (4 0 )頂推結構 (411)環槽 (4 2 )扣環 (5 0 )彈性元件 (6 0 )驅動結構 (611)第二樞部 (613)套合部 (615)珠孔 (617)第二螺合部 (6 2 1 )第二定位部 (6 4)珠體 (7 0 )鎖固件 (1 5 )鎖孔 (19)套件 (21)長孔槽 (2 3 )第二容桿孔 (31)結合部 (4 1 )頂桿 (4 1 2 )第一螺合部 (4 3 )第一彈體 (6 1 )驅動頭 (6 1 2 )第一定位部 (6 1 4 )第一穿孔 (6 1 6 )第三定位部 (6 2 )控制桿 (6 3 )第二彈體 1917 M4U4U66 [Simple description of the diagram] The _picture is a three-dimensional exploded view of the structure of the rotary wrench. ^Two diagrams, a schematic diagram of the combination of the structure of the rotary wrench. = The second picture is a combination of the front view of the partial structure of the creation. The fourth picture is the cross-sectional view of the creation of the goods. f Five maps, a three-dimensional combination of the creation of the rotary wrench. : Six figures, the top view of the rotating wrench. The seventh picture is a cross-sectional view of the third m &gt; brother /, figure B - β. =, is the side view of the first operation position of this creation. The younger nine maps, the Department of Creation, 筮 + Ft, 乍 乍 八 八 八 八 图 — — — — — — — 。. The tenth θ Q is a side view of the second operational position of the present creation. The eleventh figure, the twelfth figure of the creation, is a cross-sectional view of the θ B B. The +-':, 侧视图 side view of the third operating position. Twelve figures, this is the wound of the fourteenth ® H heart B - B section view The fifteenth figure, the original bamboo! two! An exploded view of the embodiment. Tenth 丄 s is an exploded perspective view of the third embodiment. Le 卞 ^ map, the Department of the creation ^ The seventeenth figure, the Department of the creation: Γ fine three-dimensional decomposition diagram. The eighteenth figure, the original creation: five: a schematic diagram of the combination of the examples. The nineteenth figure is a three-dimensional exploded view of the example. [Description of Main Element Symbols] An exploded perspective view of the seventh embodiment. ^10) body 1) arm 2) rotary groove 4) groove 111) first holding portion 13) first - rod hole 18 M404088 (141) through groove (1 8) fixing member (20) push rod ( 2 2 ) accommodating groove (2 4 ) first push block (3 0 ) second push block ( 4 0 ) push structure (411) ring groove (4 2 ) buckle ring (50) elastic element (60) Drive structure (611) second pivot portion (613) sleeve portion (615) bead hole (617) second screw portion (6 2 1 ) second positioning portion (6 4) bead body (70) lock ( 1 5) Keyhole (19) Kit (21) Long Hole Groove (2 3) Second Rod Hole (31) Joint (4 1 ) Jack (4 1 2) First Screw (4 3 ) a body (6 1 ) driving head (6 1 2 ) first positioning portion (6 1 4 ) first perforation (6 1 6 ) third positioning portion (6 2 ) control rod (6 3 ) second body 19

Claims (1)

六、申請專利範圍: 1、一種旋轉扳手結構,其係包括·· 7本體’該本體係設有桿體,該本體—端設有¥型開 :二該支臂底部與桿體間係設有旋轉槽,旋轉槽底 容桿孔’該本體縱向位置係設有溝槽,溝槽 :與係設有橫向貫穿之鎖孔,該鎖孔 rr::桿亡該推桿係容設於本體之第一容桿孔内,該推 = 有—長孔槽,該長孔槽係,與鎖孔位置相對正, 二推桿係設有容置槽,該容置槽係與溝槽同開口方向 谷置槽係不與長孔槽相通,該推桿前端縱向位置係設有第 -容桿孔’第二容桿孔係依序與容置槽 狀,第二容桿孔開口係與第一容桿孔同方向; 當^第—推塊’該第二推塊—端係凸設有結合部, =rf狀結合部係容置於推桿之容置槽内,該第二推塊 .'V,#抵於容置槽之壁面上: 一頂推結構’該·結構係組設於推桿之容置槽及第 :容桿孔内’該頂推結構係包括:一頂桿係容置於推桿之 ^了谷才干孔處’該頂桿前端係凸露於第二容桿孔外,該頂 =係與第二推塊之結合部相結合,該頂桿係使該第二推塊 γ於谷置槽處;該第二推塊及頂桿係設於推桿上,移動 第一推塊,该第二推塊即帶動貞彳 於第二容桿孔外;k動頂才干移位、亥頂桿即更凸露 -彈性4’_性元件絲設於本體之第—容桿孔 20 M404088 100.Sixth, the scope of application for patents: 1. A rotary wrench structure, which comprises: · 7 body 'The system is provided with a rod body, the body end is provided with a ¥ type opening: 2 the bottom of the arm is connected with the rod body There is a rotating groove, and the bottom of the rotating groove is provided with a groove. The longitudinal position of the body is provided with a groove, and the groove is provided with a transversely penetrating key hole. The locking hole rr:: the rod is contained in the body. In the first rod hole, the push = has a long hole groove, the long hole groove system is opposite to the position of the key hole, and the second push rod is provided with a receiving groove, and the receiving groove is open to the same groove The direction valley groove is not communicated with the long hole groove, and the longitudinal position of the front end of the push rod is provided with a first-to-cap hole, the second hole of the rod is sequentially and accommodating, and the second hole is open. a second rod block is provided with a joint portion, and a second joint portion of the push rod is disposed in the receiving groove of the push rod, and the second push block is .V,# is on the wall of the receiving groove: a pushing structure 'the structure is set in the receiving groove of the push rod and the inside: the hole of the rod rod'. The pushing structure comprises: a top The rod system is placed at the hole of the push rod of the push rod. The front end of the rod is exposed outside the second rod hole, and the top portion is combined with the joint portion of the second push block. The second push block γ is located at the valley slot; the second push block and the ejector rod are disposed on the push rod to move the first push block, and the second push block is driven to be outside the second rod hole; k movable top displacement, the apex rod is more convex - elastic 4' _ sex element wire is set on the body - the rod hole 20 M404088 100. 内,彈性元件一 末端; 端係抵於第一容桿孔底部Inside, one end of the elastic member; the end is at the bottom of the first rod hole 而另端抵於〗隹桿 不一作巩汉頂推結構受彈性元件頂The other end is the same as the mast. 胸曰/ 推移—大距離,該推桿係壓縮彈性元件,該 、干糸向後方位移’該本體之旋轉槽係呈透空槽狀; -固設件,設件係料於本體之鎖孔及㈣之 設件錢該支h往二料撐開,該固設ί :將胸于限位於第—容桿孔内而不脫出本體外,推動第一 推塊’該長孔槽係受限於固設件,該推桿係於第— 内一定距離之位移; 社麻該軸結構絲設於該處,該驅動 :構純括:-驅動頭另二端係設有複數第_定位部,該 人泣疋位部係供頂桿端部容抵定位,該驅動頭係凸設有套 = 6::=係可通過旋轉槽,使該驅動頭相對本體係 2、 如請求項丄所述之旋轉扳手結構,其中,該頂推 =之頂桿係設有環槽;設有—扣環,該扣環係呈C形狀 該扣環外徑係略大於推桿之第二容桿孔直徑,該扣 =扣設於頂桿之環槽處,該扣環係使該頂桿不脫出第二 =㈣’該扣環並靠抵於第二推塊上;該第二推塊、頂 :及扣%係設於推桿上,移動第二推塊即帶動頂桿移位, 该頂桿即更凸露於推桿之第二容桿孔外。 3、 如請求項2所述之旋轉扳手結構,其中,該頂推 21 M404088 有一第-彈體,該第-彈體係套設於頂桿上,該 ==係抵於扣環上’該第-彈體另端係抵於推桿 夕 a J面上,该第二推塊、頂桿、扣環及第一彈體 η:上,該第:彈體之彈力使該第二推塊靠抵於容 # 一曰^’移動第二推塊而克服第-彈體之彈力,該 容桿孔夕卜 。亥頂卜即更凸露於推桿之第二 4、如請求項3所述之旋轉扳手結構,i巾,二 =Γΐ:係設有内螺牙紋’該τ_係設有 :文之第-螺δ部,該第—螺合部係螺設於結合部上, 桿係與第二推塊相組設。 μ頁 ” 5、如請求項4所述之旋轉扳手結構,其中 彈體係套設於頂桿上,該第—彈體1係抵於第二^ 上=第一彈體另端係抵於推桿之容置槽内壁面上一,飞第 -推塊、頂桿及第一彈體係設於推 力使該第二推塊靠抵於容置槽之内壁卜,=7:;^ 克服第-彈體之彈力,該第二推塊即帶動2 =推塊而 桿即更凸露於推桿之第二容桿孔外。、于多位’違頂 盆中,9本或或4或5所述之旋轉扳手結構, ^中林體之支臂二側端部係設有第L㈣ 第係Γ有動第二樞部’該第二樞部係與本體之 t罷L ,该驅動頭係以第二枢部為轴心於支臂處 7、如請求項6所述之旋轉扳手結構,其中,該驅動 22 M404088 結構係設有P U S H結構;該驅動頭之套合部縱向德 設有=穿之第-穿孔,該套合部係設有珠孔,該珠孔係與 第一牙孔呈垂直相通;-控制桿係容設於驅動頭之第 孔内’該控制桿係設有階級部,該階級部係與珠孔位 配合,該控制桿另端係設有第二定位部,該第二定位部传 供頂桿端部容抵定位;一第二彈體係套設於控制桿上,該 第二彈體係使該控制桿於第—穿孔内具彈性位移功效.一/ 珠體係容設於珠孔内,該珠體係抵於控制桿之階級部上, =珠體係隨控制桿位移而凸露或沒人珠 第二彈體及相係騎工具之PUSH 往支臂方向推移,該頂推結構係控制驅動結構:;= 作動。 —8、如請求項7所述之旋轉扳手結構,其中,該驅 =套合部斷面係呈四角狀,該本體之旋轉槽係呈四方槽 ^、如請求項8所述之旋轉扳手結構,其t,該楚— 狀,該===中段處直徑較小之階級孔 大一她益 為同直從之圓柱體,該控制桿直徑較 控制桿另階級部係與珠孔位置相配合,該 部容抵定位Γ 位部’該第二^位部係供頂桿端 、如請求項9所述之旋轉扳手結 二該套件係樞轉套設於本體上,該套件係二= 23 M404088 1 1、如請求項工〇所述之旋轉扳手^構,其中,該 溝轉槽連接處係設有穿槽,該穿槽之寬度係略大於 溝才曰寬度,而不抵於控制桿之第二定位部上。 '推r請求項11所述之旋轉扳手結構,其中,該 .一則係设有第一推塊,二第一推塊係穿伸於穿槽 .:推二::本體外’該第一推塊或第二推塊朝本體柄部末 推移-大㈣’該推桿係壓縮彈性 修方位移而不抵於控制桿之第二定位部上。咏係向後 A辟13、如請求項12所述之旋轉扳手結構,其令,咳 第-樞部係呈穿孔狀’該驅動頭之第二樞部係呈凸 楚」4:如請求項13所述之旋轉扳手結構,其中,該 呈相對狀。 母弟一推塊係與推桿之第—推塊 每一 i5掩,014_线_手結構’其令,該 •第一推塊一端係凸設有孔狀之結合部,二第二 結合部係分別上下容置於推桿之容置槽内。.·一…“ 固設件係呈12項15所述之旋轉板手結構,其令,該 桿之長孔⑽’該111設件係穿伸於本體之鎖孔及推 仵之長孔槽内而固設於鎖孔上。 y、如請求項!6所述之旋轉扳手結構 夂該第一定位部深度方向係與第二樞 。中向呈相互垂直’該第二定位部係呈孔狀。 η、如請求項17所述之旋轉扳手結構,其令,該 24 M404088 驅動頭之第二樞部係 _ 内螺牙紋,並增設二鎖固件第二螺合部’該第二螺合部係呈 每一第二螺合部相^ 母—鎖时係呈外螺牙紋與 9巧求項1 8所述之旋轉扳手結構,盆中,’ 驅動頭係設有二套入Α _ /、中该 邊,-套套合部係分別設於驅動頭二側 遠一套邓處係設有第三定 與第一定位部或第-弟一疋位邛係 狀,”-定2 同,該第三定位部係呈凹孔 第二疋位部以供頂桿端部靠抵定位。 2 0如。月求項丄8所述之旋轉板手結構, 驅動頭係設有二套合部,其—套合料為1角頭,此= =部端部處似有第三定位部以供頂桿端部靠抵定位,另 部㈣有六角槽以供套合起子頭,六角槽可 靠抵定位。 1干 25Chest / shift - large distance, the push rod compresses the elastic element, and the dry head is displaced rearward. 'The rotating groove of the body is in the shape of a hollow groove; - the fixing member is set to the keyhole of the body And (4) the set of money, the branch h to the second material to open, the fixed ί: the chest is limited to the first - the rod hole without leaving the body, pushing the first push block 'the long hole groove is subject to Limited to the fixing member, the push rod is displaced at a certain distance within the first inner portion; the mechanical structure of the shaft is provided at the position, the driving: the structure is pure: - the other end of the driving head is provided with a plurality of _ positioning Department, the person's weeping position is for the end of the ejector pin, the drive head is convexly sleeved = 6::= can be rotated through the slot, so that the drive head is relative to the system 2, as requested The rotary wrench structure, wherein the ejector pin is provided with a ring groove; and the buckle is provided with a C shape, the outer diameter of the buckle is slightly larger than the second capacity of the push rod The diameter of the hole, the buckle is buckled at the ring groove of the jack, the buckle is such that the jack does not come out of the second = (four) 'the buckle and rests on the second push block; the second push block Top: and provided a 30 percent based on the push rod, the push block that is driven by movement of the second ram displacement, i.e. the jack is more convex exposed outside of the second plunger accommodating bore rod. 3. The rotary wrench structure of claim 2, wherein the jacking 21 M404088 has a first-elastic body, the first-elastic system is sleeved on the jack, and the == is on the buckle. - the other end of the body is against the pusher 夕 a J face, the second push block, the ejector pin, the buckle and the first body η: upper, the elastic force of the first body: the second push block In the case of the tolerance #一曰^' moving the second push block to overcome the elastic force of the first-elastic body, the hole is holed. The top of the putter is more exposed to the second of the putter 4, the rotary wrench structure as claimed in claim 3, i towel, two = Γΐ: is provided with internal thread pattern 'The τ_ system is provided: Wenzhi The first-spiral δ portion is screwed to the joint portion, and the rod system is assembled with the second push block. 5. The rotary wrench structure according to claim 4, wherein the elastic system is sleeved on the ejector pin, and the first elastic body 1 is attached to the second y = the other end of the first elastic body is pressed against the push On the inner wall surface of the receiving groove of the rod, the fly-pushing block, the ejector rod and the first elastic system are arranged on the thrust so that the second push block abuts against the inner wall of the receiving groove, =7:;^ overcomes the first The elastic force of the projectile, the second push block drives 2 = push block and the rod is more exposed outside the second rod hole of the push rod. In a plurality of 'overhead basins, 9 or 4 or 5 In the structure of the rotary wrench, the two ends of the arms of the middle forest body are provided with an Lth (fourth) first system, and the second pivot portion, the second pivot system and the body, the drive head system The rotary wrench structure according to claim 6, wherein the drive 22 M404088 structure is provided with a PUSH structure; the drive head sleeve portion is provided with a vertical direction = a first perforation, the sleeve is provided with a bead hole, and the bead hole is perpendicular to the first perforation; the control rod is received in the first hole of the driving head. The second part of the control rod is provided with a second positioning portion, and the second positioning portion transmits the end portion of the ejector pin to receive the positioning; a second elastic system is sleeved on the control rod, The second elastic system has an elastic displacement effect in the first through hole. The one/bead system is accommodated in the bead hole, and the bead system is on the step portion of the control rod, and the bead system is displaced with the control rod. The PUSH of the convex or unmanned bead second body and the phase riding tool is moved toward the arm, and the pushing structure controls the driving structure:; = actuation. - 8. The rotary wrench structure as claimed in claim 7 Wherein, the drive/sleeve portion has a quadrangular cross section, and the rotating groove of the body is a square groove, and the rotary wrench structure according to claim 8, wherein t, the Chu-like, the === middle section The smaller diameter of the class hole, the first one, is the same as the straight cylinder. The diameter of the control rod is matched with the position of the other part of the control rod and the hole of the bead. The position is provided for the ejector end, the rotary wrench as described in claim 9, and the kit is pivotally sleeved in the present In the body, the kit is two = 23 M404088 1 1. The rotary wrench structure as described in the claim item, wherein the groove is connected with a groove, and the width of the groove is slightly larger than the groove.曰 Width, not on the second positioning portion of the control rod. The rotary wrench structure described in claim 11, wherein the first push block is provided, and the first push block is stretched. In the trough:: push two:: the external body 'the first push block or the second push block toward the end of the body handle - large (four) 'the push rod is compressed elastic repair square displacement does not reach the second of the control rod In the positioning portion, the shackle is rearward A. The rotary wrench structure according to claim 12, wherein the cough-hub is perforated, and the second pivot of the driving head is convex. 4: The rotary wrench structure of claim 13, wherein the rotating wrench structure is opposite. The mother-in-law pushes the block system and the pusher's first-push block each i5 cover, 014_line_hand structure', and the first push block has a hole-shaped joint at one end and two second joints. The department is placed up and down in the receiving groove of the push rod. . . . a "fixed member is a rotating wrench structure according to the item 12, wherein the long hole (10) of the rod extends through the keyhole of the body and the long hole of the pusher. The inside of the rotary wrench structure is as described in claim 6! The first positioning portion has a depth direction and a second pivot. The middle portion is perpendicular to each other. The second positioning portion is a hole. η. The rotary wrench structure according to claim 17, wherein the second arm portion of the 24 M404088 driving head is _ internal thread, and two second locking portions are added to the second screw portion. The merging system is in the form of a rotating screw of the outer thread of each of the second screwing parts, and the two of the driving heads are arranged in the bowl. _ /, the middle side, - the sleeve part is set on the two sides of the drive head, and the set of Deng Department is equipped with a third set and a first positioning part or a first-part one." The third positioning portion is a second hole of the recessed hole for positioning the end of the jack. 2 0 such as. The rotary wrench structure described in item 丄8, the drive head is provided with two sets of joints, and the sleeve is a 1st corner, and the = part of the end portion has a third positioning portion for the ejector The end is abutted against the positioning, and the other part (4) has a hexagonal groove for fitting the screwdriver head, and the hexagonal groove is reliably positioned. 1 dry 25
TW99218640U 2010-09-28 2010-09-28 torque wrench structure TWM404088U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI400145B (en) * 2011-06-17 2013-07-01
TWI745140B (en) * 2020-10-28 2021-11-01 張文芊 Hand tool for loading and unloading

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI400145B (en) * 2011-06-17 2013-07-01
TWI745140B (en) * 2020-10-28 2021-11-01 張文芊 Hand tool for loading and unloading

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