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
261 JPS4966550A - JP9965773 1973-09-04 JPS4966550A 1974-06-27
262 TOOL HEAD, ADJUSTER RING AND CUTTING MACHINE IN PARTICULAR A SCALPING MACHINE PCT/DE0303516 2003-10-20 WO2004037471A3 2004-09-16 GREUEL HEINZ-WILLI; GEHRER UDO; LINDBUECHL JOERG; JUNG LUDWIG; BARTZ ALFRED
According to the invention, the wear in the region of the tool head (201) of a tool machine, in particular a scalping machine for machining long workpieces with a round cross-section may be reduced, whereby a tool head (201) with a tool holder (204) is adjustable essentially radially to the rotation axis (206) and an adjuster device (202) essentially adjustable axially to the rotation axis (206), in which the tool holder (204) and the adjuster device each have planar slide surfaces (208, 220) which correspond to each other.
263 METHOD AND INSTALLATION FOR INTRODUCING A CORED WIRE INTO A BATH OF MOLTEN METAL PCT/FR2007052072 2007-10-03 WO2008040915A3 2008-07-17 POULALION ANDRE
The method for introducing a cored wire (2) into a bath (3) of molten metal consists in extracting the cored wire from a reel (9), especially from the core of the reel and in making it run into the molten metal bath (3), one part of the path travelled by the cored wire being formed in a guide tube (13), the distal end (32) of which is at a defined height (H) above the surface (PP') of the metal bath (3). The cored wire (2) is driven and subjected to a straightening operation under conditions practically not altering its substantially circular cross section and allowing it to be introduced and penetrate into the depth of the bath in a vertical direction. The installation (1) includes means (12) for driving said cored wire from a reel (9), in which the wire is extracted from the core of the reel, a guide tube (13) for guiding the cored wire (2), the distal end (32) of the tube being at a defined height (H) above the surface of the bath (3) and having a vertical direction, and means (12) for straightening the cored wire (2) that are placed in front of its entry into the guide tube (13), said straightening means being capable of giving the cored wire (2) a straight direction without altering its circular cross section. Preferably, the straightening means consist of a plurality of sets of two press rolls, the contact between the cored wire and each press roll being along a contact surface or along at least two lines of contact.
264 AUTOMATIC TWO-STATION ADIABATIC BLANK CUT-OFF AND PART FORMING SYSTEM PCT/US0144418 2001-11-27 WO0243885A3 2002-08-15 LINDELL LENNART J
A system for automatically producing formed parts from feedstock using two successive adiabatic processing stations, a first station (100) performing adiabatic cut-off of blanks from the feedstock (103), and the second station (150) performing adiabatic forming of the blanks into the formed parts. The first station operates cooperatively with a feedstock feeder assembly (101) which feeds feedstock to the first station and also charges blanks produced at the first station into a transfer capsule (146) of a transferer assembly (148). The first and second stations cooperatively operate with the blank transferer assembly which transfers in the transfer capsule blanks from the first to the second station. The second station includes means for positioning blanks relative to a forming cavity before blanks are adiabatically shaped to conform to the forming cavity (160) and also means for ejecting (177) formed parts from tooling that defines the forming cavity. The system includes automation means (130) that synchronizes and sequences subassembly operations.
265 HOLDING DEVICE FOR HOLDING AN OBJECT SUCH AS A WIRE BLANK PCT/IB2010002981 2010-10-18 WO2011048501A3 2011-06-16 FORSBERG BENGT
Device for holding an elongate object (3) in a working position in a working machine for machining and also for rotation of the object. A holder part (4) has a seat (7) for the object and is rotatable about a centre of rotation which corresponds with the axis for the object in its extent in the seat. The holder part is supported in a fixed suspension device (2) by means of a motion- transmitting mechanism. This is provided with bearing arms (17, 18) connected between a drive device (30) and the holder part via pivot points (21, 22, 24, 25, 27, 28). These are situated at a distance from the centre of rotation (34) so as to create a torque on the holder part for its rotation. A locking device (5) is switched between a securement position for the object and a release position. A support mechanism (32) is situated between the suspension device and the holder part on a level with the seat and has a fixed support arm (33) having fixed support surfaces (36-40) which interact with movable support surfaces (41-45) on a support portion movable together with the holder part.
266 AUTOMATED APPARATUS FOR THE DIFFERENTIAL ADVANCEMENT OF METAL RODS AND/OR BARS FOR THE CONSTRUCTION OF RECTILINEAR AND/OR CURVILINEAR ELECTRO-WELDED ELEMENTS, AND ASSOCIATED PRODUCTION METHOD PCT/EP2010057102 2010-05-25 WO2010136421A3 2011-02-03 BERNARDINIS CLAUDIO
The present invention relates to an automated apparatus for the differential advancement of metal rods and/or bars for the construction of rectilinear and/or curvilinear electro-welded elements for the production of electro-welded flat metal nets and/or of three-dimensional elements, wherein the automated apparatus comprises two similar lateral advancement assemblies which are arranged to face each other in the horizontal plane of the automated apparatus and to move in a step-by-step manner on respective paths which are parallel, the paths being also parallel to the feeding direction of the longitudinal metal rods and/or bars of the rectilinear and/or curvilinear electro-welded elements into the automated apparatus, each of the two similar lateral advancement assemblies having a respective protruding hinging arm, the two similar lateral advancement assemblies being mutually connected by a crossbar fitted with automated grippers to act on the longitudinal metal rods and/or bars, the automated grippers being adjustable along the length of the crossbar, the automated grippers being controlled to grab the longitudinal metal rods and/or bars in a retracted position, drag the longitudinal metal rods and/or bars forwards along the feeding direction thereof, release the longitudinal metal rods and/or bars in a forward position, and return to the retracted position, the crossbar being hinged to one of the protruding hinging arms by means of a simple hinge and to the other one of the protruding hinging arm by means of a double hinge. The invention also relates to a corresponding method.
267 ワイヤネット及びワイヤネット用の螺旋体を製造する方法 JP2018012884 2018-01-29 JP2018122360A 2018-08-09 コリンナ ヴェンデラー−ゲッゲルマン
【課題】ワイヤネット及びワイヤネット用の螺旋体を製造する方法を提供する。
【解決手段】本発明は、互いに編み組まれた複数の螺旋体を有するワイヤネット、特にセーフティネットに基づいており、複数の螺旋体のうちの少なくとも1つの螺旋体12aが、特に高張鋼を有する少なくとも1つのワイヤ18aと共に、少なくとも1つの単一ワイヤ、ワイヤ束、ワイヤストランド、ワイヤロープ、及び/又は別の長手要素16aから折り曲げられている。少なくとも1つの螺旋体12aは、少なくとも1つの第1脚部20aと、少なくとも1つの第2脚部22aと、第1脚部と第2脚部を互いに接続する少なくとも1つの折り曲げ領域24aとを有する。長手要素16aは、第1脚部、及び/又は第2脚部の輪郭に沿って、それ自体内において少なくとも実質的に捩れを有していない状態において、折り曲げられる。
【選択図】図10
268 金属ワイヤ用引き出しおよび矯正装置と、対応する引き出しおよび矯正方法 JP2015559591 2014-02-26 JP6327756B2 2018-05-23 デル ファブロ、ジョルジオ
269 線材供給装置 JP2015094781 2015-05-07 JP2016209902A 2016-12-15 関谷 弘二
【課題】環状の線材束から線材を引出す際に、当該線材の捻り癖をより効果的に抑制できるようにすることを目的とする。
【解決手段】線材供給装置20は、環状の線材束10から線材12を連続的に供給するための装置である。線材供給装置20は、線材束10を配設可能な線材束セット部30と、線材束セット部30を回転駆動する回転駆動機構50とを備える。例えば、回転駆動機構50は、線材12の引出速度とは非同期な回転速度で回転駆動する。また、回転駆動機構50は、線材12の引出開始により回転駆動を開始し、線材12の引出停止により回転駆動を停止する。
【選択図】図1
270 電線矯正装置 JP2013256050 2013-12-11 JP5954303B2 2016-07-20 加藤 純一
271 線材を線材加工機に送給する装置 JP2013532056 2011-09-05 JP5740000B2 2015-06-24 ヴォルフ、ユルゲン; ヴェイグマン、ウーヴェ−ペーター; シュタインマイアー、ラルフ; イェッター、シュテファン
272 グリップ部材リンク装置を有する材料送り装置及びその作動方法 JP2012537167 2010-11-01 JP5643832B2 2014-12-17 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
273 ワイヤブランク等の物体を保持する保持装置 JP2012534794 2010-10-18 JP5624151B2 2014-11-12
274 Send Kyusuru device wire to wire processing machine JP2013532056 2011-09-05 JP2013544650A 2013-12-19 ヴォルフ、ユルゲン; ヴェイグマン、ウーヴェ−ペーター; シュタインマイアー、ラルフ; イェッター、シュテファン
線材を線材加工機に送給する装置1の場合では、線材8は、線材のコイル2を受け入れていて軸を中心に回転することができるリール3から引き出され、線材加工機の上流に配置された線材引き込み手段6に送給され、線材引き出し方向xにおけるリール3の下流には、少なくとも1つの線材偏向装置4が配置され、少なくとも1つの線材偏向装置4によって、リール3から引き出された線材8は線材引き込み手段6まで案内されると共に送られ、線材引き込み手段6の上流には、線材貯留デバイス7が設けられ、線材貯留デバイス7は、閉ループを形成する案内路を予め定め、案内路上を線材8が通り、案内路の直径は、案内路の内側半径方向位置に対応する小さい方の値と、案内路の外側半径方向位置に対応する大きい方の値との間で可変であり、案内路は、その外側半径方向位置をとる方向にばね付勢される。
275 Tool head, adjusting ring and cutting machine, especially Sukarupa JP2005501507 2003-10-20 JP4475422B2 2010-06-09 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).
276 Method and apparatus for introducing cored wire in the molten metal bath JP2009530919 2007-10-03 JP2010506042A 2010-02-25 プーラリオン,アンドレ
コアードワイヤー2を溶融金属浴3内に導入する方法は、コアードワイヤーをリール9から引き出す工程と、該ワイヤーを溶融金属浴3内に進ませる工程とから成っている。 コアードワイヤーが進む経路の一部分は、案内管13内に形成される。 案内管13の末端32は、金属浴3の面PP´から上方へと規定された高さHにある。 コアードワイヤー2は、その円形である断面を変化させず、且つ、垂直方向に向けて浴の中に導入され且つ侵入することを許容される状態下にて、駆動され且つ直線化工程を受ける。 装置1は、リール9から引き出されるコアードワイヤーを駆動する手段12と、コアードワイヤー2を案内する案内管13とを備える。 案内管13の末端32は、浴3の表面から上方へと規定された高さHにある。 案内管13は、垂直方向に配置される。 案内管13への入口の前方には、コアードワイヤー2を直線化する手段12が配置される。 直線化手段12は、コアードワイヤー2の円形断面を変化させずに、コアードワイヤー2に対し直線状の向きを与えることができる。 好ましくは、直線化手段は、複数組の2つの加圧ロールから成っている。 コアードワイヤーと各加圧ロールとの間の接触は、接触面又は少なくとも2つの接触線に沿うものとする。
【選択図】 図1
277 Pull-out assembly for a bending apparatus JP21516897 1997-08-08 JP4350812B2 2009-10-21 デル ファブロ ジョルジオ; デル ファブロ マルチェロ
278 Spring winding machine JP2000527376 1999-01-08 JP4302884B2 2009-07-29 ヘレスク、ステェファン
279 Electric wire feeder and electric wire measuring and cutting device having the same JP2007166580 2007-06-25 JP2009004315A 2009-01-08 ISHIBASHI TERUYUKI; HIGUCHI KOJI
PROBLEM TO BE SOLVED: To provide an electric wire measuring and cutting device having an electric wire feeder capable of smoothly supplying an electric wire without having any kink and easily handled. SOLUTION: The electric wire measuring and cutting device 1A comprises an electric wire feeder 14 having an electric wire reel 2, a movement device 5 for making the electric wire 12 wound around the electric wire reel 2 move along the longitudinal direction of the electric wire 12, a reforming device 4 for reforming a bending tendency of the electric wire 12, and a rotation regulation device 3 arranged at an upstream side of the reforming device 4. The rotation regulation device 3 regulates the rotation of the electric wire 12 around its axis by sandwiching the electric wire 12 between a pair of rollers 31A, 31B urged in the mutually-approached direction, and permits the electric wire 12 to move along in the longitudinal direction of the electric wire 12. Thus, the rotation regulation device 3 restrains the electric wire 12 located between the electric wire reel 2 and the rotation regulation device 3 from twisting. COPYRIGHT: (C)2009,JPO&INPIT
280 Long member supporting mechanism and long member supporting unit using the supporting mechanism, and deflection preventing method for preventing long member deflection JP2007179145 2007-07-09 JP2008093731A 2008-04-24 UMEMURA MITSUGI
PROBLEM TO BE SOLVED: To provide a mechanism for supporting a long member, which can suppress the deflection or warpage of the long member, when worked, and which can prevent the damage to the long member. SOLUTION: The long member supporting mechanism comprises: a sphere group C composed of a first sphere group C1 and a second sphere group C2 arranged on the center axis of a long member W, a plurality of movable holding members 1 arranged to abut against the outer circumference of the sphere group C; and a coil spring 2 acting as bias means for biasing the individual holding members 1 toward the center axis of the long member W. COPYRIGHT: (C)2008,JPO&INPIT
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