首页 / 国际专利分类库 / 作业;运输 / 机床;其他类目中不包括的金属加工 / 齿轮或齿条的制造 / 用样板控制仿形制造齿轮齿,样板外形与所要求齿形或其一部分相配,或与一个不同比例的复制样件相配(仿形系统或装置本身入B23Q35/00)
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 一种圆柱齿轮铣齿装刀主轴结构 CN201410120914.1 2014-03-28 CN103894631A 2014-07-02 王维
一种圆柱齿轮铣齿装刀主轴结构,包括装刀轴,装刀轴上间隔设有一对同步转动的左侧和右侧齿轮,左侧和右侧齿轮之间设有铣刀盘,铣刀盘两侧固设有左、右拨盘,左侧和右侧齿轮通过键带动两拨盘转动,继而拨盘带动铣刀盘转动,左侧齿轮的左端外侧设有左侧轴承法兰盘,左侧齿轮和左侧轴承法兰盘之间设有圆锥滚子轴承,圆锥滚子轴承外侧设有左端盖圈;右侧齿轮的右端外侧设有右侧轴承法兰盘,右侧齿轮和右侧轴承法兰盘之间设有双列圆柱滚子轴承,双列圆柱滚子轴承外侧设有右端盖圈,左、右侧轴承法兰盘与外侧的装刀架固连。本发明可克服铣齿刀切削过程中产生的轴向和径向力,减少铣刀盘的振动,从而提高铣刀片的耐用度和机床的加工精度
2 Method and apparatus for machining racks for steering gear EP84304739.0 1984-07-11 EP0132347B1 1987-01-07 Bishop, Arthur Ernest; Roeske, Klaus Jürgen
3 Gear hobbing machine US29159572 1972-09-25 US3813988A 1974-06-04 HODGSON B
A gear hobbing machine comprising a hob head, a table for supporting a workpiece to be hobbed, a template mounted on one of said parts and arranged to traverse past a stylus during relative axial movement of the hob and workpiece to perform first and second cuts, means controlled by the stylus for effecting relative radial movement between the hob and the workpiece and thereby perform a crowning or taper hobbing operation on the workpiece, a push rod mounted on the part carrying the stylus and arranged to move the stylus into contact with the template during radial advance of said part towards the other part and means for automatically reducing the effective length of the push rod after the hob has made a first cut and prior to commencement of a second cut by the hob.
4 Machine-tool for machining gear teeth US19518271 1971-11-03 US3803767A 1974-04-16 KVITKO M; KIRICHINSKY I; KOTOV V
A machine for form grinding a tooth side of a spiral bevel gear having a wide pitch angle and a profile angle variable between the tooth ends comprising a spindle carrying a gear blank in a fixed position, the spindle being mounted on a carrier swingable about a horizontal axis; a rotary tool oscillatable about a vertical axis; and a means for simultaneously effecting the swinging movement of the carrier and the oscillating movement of the rotary tool.
5 Apparatus for producing variable ratio gearing US3732780D 1970-10-01 US3732780A 1973-05-15 WYDLER R; RUESCH E
A variable ratio gear component, such as a motor vehicle steering segment, is produced by arranging that relative motion between a workpiece forming the component and a tool includes a normal generating component and a graduated additional generating component, the latter being imparted to the workpiece tangentially to the generating path of the tool and workpiece. An adaptation of a gear cutting machine is described to provide for the inclusion of such an additional motion derived from the rotation of the workpiece relative to the table.
6 Pressure feeding apparatus for a gear honing machine US81740559 1959-06-01 US3017728A 1962-01-23 DAVIS KENNETH J
7 Worm gear cutting attachment for milling machines US14038550 1950-01-25 US2622484A 1952-12-23 BIRRELL DAVID M
8 Machine for cutting gear teeth US30056839 1939-10-21 US2324242A 1943-07-13 SEECK FERDINAND W
9 Method of beveling tooth end surface of work with tooth to roof shape and beveling section manufactured through said method and device for executing said method JP20672685 1985-09-20 JPS6179518A 1986-04-23 YOHAN SHIYUPENSUBERUGAA; HAINRITSUHI FUITSUSHIYAA; RIHIYARUTO MIYURAA
10 JPS506400B1 - JP7047870 1970-08-13 JPS506400B1 1975-03-13
11 Machine tool for variable gear ratio racks JP11609880 1980-08-23 JPS5741121A 1982-03-08 ANDOU MASAHISA; KATOU KEIGO
PURPOSE:To produce variable rackes through grinding work with high productivity by combining the rotary movement generated by the engagement of a master rack and reciprocating movement of a cutting tool and the relative shift of the master rack and a worked material. CONSTITUTION:A part of a master rack 13 is protruded on the front surface of a shifting base 1, and the teeth having a fixed gear ratio is formed on the protruded part. The rack 13 and a cutting tool 17 are engaged, so the tool 7 is provided with rotary movement by the rack 13 during reciprocating movement. As the left end part of the cam surface of a cam plate 27 has the curvature convex upward, the relative shift speed of this rack 13 for the shift base 11 decreases gradually accompanied with the shift of the shift base 11, and the teeth having the equal pitch to the rack 13 is formed. As the working process proceeds, the teeth having the gradually varying pitch namely variable racks are manufactured in high productivity through a gear-ratio changing mechanism.
12 Machine for shaving or rolling teeth of gear JP1148876 1976-02-06 JPS51132154A 1976-11-17 KEE BUYUU DOO
13 Verfahren zum Abdachen der stirnseitigen Zahnenden von verzahnten Werkstücken und Vorrichtung zum Ausführen des Verfahrens EP85109857.4 1985-08-06 EP0178410B1 1989-01-11 Spensberger, Johann; Fischer, Heinrich; Müller, Richard
14 Toothed gear or similar work piece with roof-shaped parts for facilitating shifting EP88104586 1985-08-06 EP0278533A3 1988-10-12 Spensberger, Johann
15 JPH0122092B2 - JP14978784 1984-07-20 JPH0122092B2 1989-04-25 AASAA AANESUTO BISHOTSUPU; KURAUSU YURUGEN RESUKE
16 Machining device for variable pitch rack JP14978784 1984-07-20 JPS6076915A 1985-05-01 AASAA AANESUTO BISHIYOTSUPU; KURAUSU YURUGEN RESUKE
17 JPS6014647B2 - JP11609880 1980-08-23 JPS6014647B2 1985-04-15 ANDO MASAHISA; KATO KEIGO
18 Method for chamfering the axially facing ends of toothed workpieces, a meshing engagement aid manufactured according to this method, and an apparatus for performing the method US777666 1985-09-18 US4717293A 1988-01-05 Johann Spensberger; Heinrich Fischer; Richard Mueller
A method and an apparatus for the chamfering of the axially facing ends of toothed cylindrical or conical workpieces in which a cutting tool arranged on a rocking lever is moved back and forth in response to the peripheral speed of the workpiece which constantly rotates about its axis. The cutting edge of the tool acts chip-removingly during each stroke that is directed onto or toward the axially facing surface of each tooth of the workpiece. The cutting edge moves along a circular segment path, the axis of which extends at least approximately parallel to a radial of the workpiece, which radial starts out from the workpiece axis and extends through the tooth which is to be worked or machined.
19 Apparatus for milling a gear for a double enveloping worm gear drive US431724 1982-09-30 US4534684A 1985-08-13 Bernard H. Johnson
Apparatus for milling a gear for a double enveloping worm gear drive. A rotating milling cutter is advanced toward a workpiece spindle to mill a flank of a gear tooth by tilting the milling cutter supporting frame about an axis that passes through the axis of rotation of the workpiece spindle to form a predetermined change in the helix angle from the top to the root of the tooth. The initial tilt setting of the cutter is adjusted to suit the root helix angle.
20 Gear teeth rotary-shaving or roll-finishing machine US924344 1978-07-13 US4212572A 1980-07-15 Que Vu-Do
Machine for finishing gear wheel teeth by shaving or rolling by means of a toothed rotary tool adapted to operate in tight meshing engagement with the gear wheel for finishing the teeth thereof, which comprises means for supporting the tool along its axis of rotation, a motor for rotatably driving said tool, means for supporting said gear wheel along its axis of rotation, the two axes of rotation of the tool and gear wheel, respectively, having at least one common perpendicular, and motor means for generating between said tool support means and said gear wheel support means, three powered relative movements comprising a movement in a direction parallel to said common perpendicular and two movements transverse to each other in planes respectively perpendicular to said common perpendicular, the motor for rotatably driving said tool and the motors for producing said two transverse movements being responsive to synchronous programmable servo-control means.
QQ群二维码
意见反馈