首页 / 国际专利分类库 / 作业;运输 / 基本上无切削的金属机械加工;金属冲压 / 金属线材的加工或处理 / 在线材加工机械或设备中进给线材(也适用于棒材或带材的供给入B21D43/00)
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
301 成形機用の送給装置 JP2016093376 2016-05-06 JP2016209932A 2016-12-15 アンドレアス ジグ; ウーベ−ペーター ウェイグマン
【課題】高い信頼性での機能と共に、送給ローラの迅速な交換が可能で送給ローラのそばにわずかな設置空間しか必要としない、送給装置を提供することにある。
【解決手段】ワークを備蓄部から成形装置(120)に送給する送給装置は、互いに平行な回転軸を有し、互いに逆回転で駆動可能に配置され形状加工された円周方向面(410)でワークを通過案内するための送給挟持部を画定する2つの送給ローラ(400)を有する送給ローラ対を有する。各送給ローラは、ローラテンションシステムで付随する送給シャフト(300)の一端部に回転的に固定され交換可能に締結されている。テンションシステムはねじ山部分(520)とねじ山部分に比べ幅広な頭部部分(510)とを有するテンションねじ(500)を有し、その内部には、テンション工具を導入するために非円形係合断面形状の頭部側に向かい開放した空間(530)が形成されている。
【選択図】図3
302 グリッパ駆動用部材及びリンク装置を有する材料送り装置 JP2012537168 2010-11-01 JP5803040B2 2015-11-04 ジェンティル ジョセフ ピー; ジェンティル ブライアン ピー; マーティン ヴォーン エイチ
303 コアードワイヤーを溶融金属浴中に導入する方法及び装置 JP2009530919 2007-10-03 JP5612858B2 2014-10-22 プーラリオン,アンドレ
304 Wire delivery device, wire Kenshaku cutting apparatus having it JP2007166580 2007-06-25 JP5297605B2 2013-09-25 輝之 石橋; 樋口  浩二
An electric wire sizing-cutting apparatus including an electric wire delivery apparatus, which is easily handled and can smoothly supply the electric wire without generating a kink, is provided. The electric wire delivery apparatus includes: a transfer means transferring an electric wire, which is delivered from an electric wire reel, along a longitudinal direction of the electric wire; a correcting means arranged between the electric wire reel and the transfer means and correcting a bending habit of the electric wire by allowing the electric wire to pass through between a plurality of rollers arranged zigzag; and a rotation controlling means arranged on an upstream-side of the correcting means and putting the electric wire between a pair of rollers biased in a direction approaching each other.
305 Material feeding device having a gripper driving member and link equipment JP2012537168 2010-11-01 JP2013509304A 2013-03-14 ジョセフ ピー ジェンティル; ブライアン ピー ジェンティル; ヴォーン エイチ マーティン
本発明は、ワークピースの間欠送り用の装置に関する。 装置は、直線的に案内されるグリッパ機構(3)を有し、グリッパ機構(3)は、ワークピース(100)を送る第1方向6及びその反対方向に移動可能である。 グリッパ機構(3)の第2グリップ部材(15)は、ワークピース(100)を把持するように第1グリップ部材(30)に対して移動可能である。 装置は、リバーシブルロータリ型のグリッパ機構駆動用のアクチュエータ(60)と、アクチュエータ(60)と一緒に回転する駆動部材(34)と、連結リンク(32)を有する。 連結リンク(32)の第1端部は、駆動部材(34)の第1端部に枢動可能に連結され、第2端部は、グリッパ機構(3)を第1方向及びその反対方向に移動させるように、グリッパ機構(3)に枢動可能に連結される。
306 Wire feeder JP14200197 1997-05-30 JP4018777B2 2007-12-05 ウィリアム・エイチ・ハイト
307 Tool head, adjusting ring and cutting machine, especially Sukarupa JP2005501507 2003-10-20 JP2006502877A 2006-01-26 グレウエル,ハインツーウィリ; ゲーレル,ウド; ジュング,ルドウィグ; バーツ,アルフレッド; リンドブヒル,ジョルグ
The tool head (1) has radially adjustable tool holders (4) and a setting device axially adjustable relative to the axis of rotation (6). The tool holders and setting device have corresponding sliding surfaces (8). These sliding surfaces are either flat or with a constant radius of curvature relative to the axis of rotation, and one of them may have an inlay (9).
308 Spring manufacturing machine JP2003031809 2003-02-10 JP2004237350A 2004-08-26 TSURITANI KATSUHIDE
PROBLEM TO BE SOLVED: To provide a spring manufacturing machine in which the moving locus of a tip of a tool 55 provided on a tool fitting piece 54 is a straight line in the direction orthogonal to the center line W of a wire passage (not shown) of a final wire guide 13. SOLUTION: A tool operating device 22 has a position adjustment table 23 which is movable forward and backward and movable to an arbitrary position in an imaginary vertical plane parallel to a front wall 5 of an upper side part 2B of a fixed frame 2, a rotating body 46 which is rotatably provided on the position adjustment table 23 around the axis C of rotation parallel to the center line W of a wire passage (not shown) of the final wire guide 13, and the tool fitting piece 54 which is provided on the rotating body 46 in a parallel-movable manner in the direction orthogonal to the axis C of rotation. COPYRIGHT: (C)2004,JPO&NCIPI
309 Wire feeder JP2002044881 2002-02-21 JP2002316230A 2002-10-29 MUENSTER BRUNO
PROBLEM TO BE SOLVED: To provide a wire feeder capable of reliably guiding a wire to a wire working device in a predetermined form, in particular, to a binding head of a binding device. SOLUTION: A radial pocket 11 in the radial direction is provided at least on one side of a wire guide within an arc-shaped wire turning range 10. Wire grinding powder and wire tips are carried outside from the inside of the wire guide through the wire feed or oscillation to automatically clean a wire guide device. COPYRIGHT: (C)2002,JPO
310 Twist removing method from coillike deformed wire rod coiled by laying type coiler JP6951798 1998-03-03 JPH11244938A 1999-09-14 FUJII SUKENARI; SATO MIKIHIKO; IMANISHI TADAHIKO; IDESAKO TOSHIFUMI
PROBLEM TO BE SOLVED: To preliminarily remove twist from a coillike deformed wire rod in order to facilitate welding work for joining both ends by obtaining desired precision wherein distortion is small and the variance of a shape is extremely few when bent materials as building and civil engineering materials such as a hoop bar are manufactured from a coil which is coiled by a laying type coiling method. SOLUTION: When a deformed wire rod 1 is delivered from a coil 2 in order to introduce it into a bending machine, a deformed wire rod 1 is drawn out in the direction of the axial line 2a of the coil. Thus, twist is imparted to the deformed wire rod 1 itself and offset against twist generated inside the entry pipe of a laying head device, and whereby useless deformation in bending at the time of manufacturing secondary processed goods such as the hoop bar after that time is restrained as much as possible. Materials wherein the hoop bar is high in flatness, butt welding of an end part is easy and desired strength is displayed are manufactured.
311 Drawing built-up body for bending device JP21516897 1997-08-08 JPH1094822A 1998-04-14 DEL FABRO MARCELLO; DEL FABRO GIORGIO
PROBLEM TO BE SOLVED: To provide a drawing built-up body with which a drawing device is adequately touched to a round material so as to prevent rotation and twist during straightening stage especially the stage for drawing the round material (metallic wire). SOLUTION: The drawing devices 12 includes at least two opposed cylinders, whose diameters are <180mm, which are proximately arranged to each other and cooperated with the outer periphery of a rotary drum 17 whose diameter is at least 300mm, the opposed cylinders 18 act so as to partially wind the round material 11 around the rotary drum 17 and a deflecting built-up body 16 for deforming the round material 11 into a loop shape is provided on the just upstream side of the rotary drum 17. The diameter of the loop is at least 80mm and the round material 11 is cooperated with a 1st straightening/stretching roll 24 in the outlet region of the rotary drum 17.
312 Apparatus for applying the method and the fiber add a reinforcing fiber in concrete injection type supplied to the concrete injection type JP51076095 1994-10-05 JPH09503458A 1997-04-08 スオメラ、ジュッカ; ノルディン、アルネ
(57)【要約】 補強ファイバーを製造し、これらを生コンクリート原料に加える方法。 ファイバーは、連続する線材(6)から線材の断片製造手段によって連続して線材から分離されてファイバーを形成し、次ぎに、これらに付与された運動エネルギーによって、混練機内で混練を受けつつある生コンクリートに吹き飛ばされる。 この方法を実施する適切な装置は、計量器上に装架される線材スプールを含み、線材(6)が前記スプールから線材推進ユニット(4)に走行し、線材推進ユニットの後方に、推進ユニットから前方に供給される線材と係合するファイバー分離ユニット(8)が設けられており、線材から線材の断片を一貫して分離する。 こうして分離されたファイバーは、ファイバー分離ユニット(8)の下流側に設けられたノズル管(46)を通過し、前記ノズル管がファイバーを生コンクリート原料を保持する付随的な混練機へと案内する。 線材推進ユニット(4)とファイバー分離ユニット(8)は、それぞれ、線材と係合する被駆動ホイール(10,28)と、これらのホイールと協働する案内ロール(12,30)とを有する。
313 Wire reversing device for wire processing device JP21259092 1992-08-10 JPH0660956A 1994-03-04 OISHI MASAHIRO
PURPOSE:To prevent of a bend of terminal parts of a wire, and improve the working quality of the terminal parts, and make the wire applicable to the existing wire working device by providing a driving gear shaft of a turn table so as to be displaced from the center. CONSTITUTION:One end part 1a of a wire 1 supplied from a wire supply device is pinched between a side wall part 15a1 of a loop-formed wall 15 of the turn table 13 and a wire clamp claw 19. Under this pinch condition, a loop-like wire 1' is formed. A driving gear shaft 37 of the turn table 13 is provided so as to be displaced to the supply side of the wire 1. As a result, at the time when the wire 1' is moved by a carrying chain 5 in the direction crossing the delivery direction thereof, interference of one end part of the wire 1' with the driving gear shaft 37 is eliminated to prevent the generation of bend from occurring.
314 Method and apparatus for measuring wire feeding JP4233091 1991-02-15 JPH04213012A 1992-08-04 SUIIRII PEPIN
PURPOSE: To accurately feed a wire by judging whether the wire is fed at a predetermined length or not at the time of slipping during the wire feeding, and feeding the wire in the forward or reverse direction until the feeding length reaches a predetermined value. CONSTITUTION: The wire 12 is frictionally engaged with upper and lower feeding parts 16A, 16B of wire feeding belts 16, 18 during wire feeding operation. If there is no slip to the wire 12 when the belts 16, 18 move forward by a predetermined distance, the wire is fed at a predetermined length. When the slip occurs, a measuring wheel 24 senses it, an encoder indicates it to a controller 30, which judges whether the wire 12 is fed by the predetermined length or not. If it is a predetermined value or less, a servo motor 20 is rotated forward until it reaches the predetermined value. If it is the predetermined value or more, the motor 20 is reversely rotated until it reaches the predetermined value. Thus, the motor 20 is rotated forward or reversely to correct the wire length to perform the accurate wire feeding.
315 JPH0410440B2 - JP2968084 1984-02-21 JPH0410440B2 1992-02-25
316 JPH0358818B2 - JP18663183 1983-10-04 JPH0358818B2 1991-09-06 TAKESHITA NAOTAKA; MATSURA TOMYASU
317 JPH03503746A - JP50228790 1990-01-19 JPH03503746A 1991-08-22
318 JPH0211343B2 - JP9926081 1981-06-25 JPH0211343B2 1990-03-13 TOWATA TOSHUKI
319 JPH0129613B2 - JP14159482 1982-08-14 JPH0129613B2 1989-06-13 ROOGERU KURIBURETSUTSU; RAIMONDO SHEENENBERUGERU
320 JPS6213093B2 - JP1637878 1978-02-15 JPS6213093B2 1987-03-24 OTSUTOO BIIRAA; EZUARUTO BURYUURAA
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