CN102554364A - Numerical control five-shaft linkage internal cyclone milling machine - Google Patents

Numerical control five-shaft linkage internal cyclone milling machine Download PDF

Info

Publication number
CN102554364A
CN102554364A CN2011104575752A CN201110457575A CN102554364A CN 102554364 A CN102554364 A CN 102554364A CN 2011104575752 A CN2011104575752 A CN 2011104575752A CN 201110457575 A CN201110457575 A CN 201110457575A CN 102554364 A CN102554364 A CN 102554364A
Authority
CN
China
Prior art keywords
axle
whirlwind
numerical control
milling machine
inclination angle
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN2011104575752A
Other languages
Chinese (zh)
Inventor
孙秋云
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nanjing Caiyun Machinery & Electronic Manufacturing Co Ltd
Original Assignee
Nanjing Caiyun Machinery & Electronic Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nanjing Caiyun Machinery & Electronic Manufacturing Co Ltd filed Critical Nanjing Caiyun Machinery & Electronic Manufacturing Co Ltd
Priority to CN2011104575752A priority Critical patent/CN102554364A/en
Publication of CN102554364A publication Critical patent/CN102554364A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Gear Processing (AREA)

Abstract

The invention provides an internal cyclone cutting machine tool for precise forming, which can realize machining of a planar double enveloping worm, a variable diameter and variable pitch worm and a variable diameter and variable pitch extruded screw, and has the surface roughness of Ra 0.8 for a machined part and high production efficiency. The internal cyclone cutting machine tool comprises a body, a main shaft box, a Z-axis longitudinal sliding table, an X-axis transverse sliding table and an A-axis revolving table which is arranged on the X-axis transverse sliding table, wherein a cutter disc inclination angle adjusting box and a supporting seat are arranged on the revolving working table; a cyclone tool rest comprises a tool rest body, a cutter disc and a main motor which is fixed on the tool rest body; the main motor is used for driving the cutter disc provided with a milling cutter through a transmission mechanism; the cutter disc inclination angle adjusting box and the supporting seat are arranged on the two sides of the tool rest body through revolving supports respectively; a cutter disc inclination angle adjusting mechanism for driving the tool rest body to rotate around the axis (U axis) constituted by the revolving supports on the two sides of the tool rest body is arranged in the cutter disc inclination angle adjusting box; and the inclination angle of the cutter disc is adjusted through the driving of a servo motor.

Description

Whirlwind milling machine in the numerical control five-axle interlock
Technical field
Present technique relates to envelope stock-removing machine in a kind of whirlwind, and it can realize five-axle linkage, is mainly used in processing spiral camber part (worm screw, extrusion screw rod etc.), specifically, is whirlwind milling machine in a kind of five-axle linkage.
Background technology
Existing planar double enveloping worm process equipment mainly is that mode such as, finger cutter milling circumscribed through turning, dish-type cutter is processed; Its shortcoming is: the theoretical center of worm and wheel is apart from being determined by the radius of gyration of cutter on rotary table; When the theoretical center of worm and wheel apart from less than 150mm or greater than 400mm the time, the processing very difficulty that just becomes.And existing equipment is huge, has limited the production application of enveloping worm;
Extrusion screw rod is a reducing, varying pitch class part, and existing extrusion screw rod process equipment is a screw-thread miller, adopts the processing of finger cutter milling mode.
The said equipment not only production efficiency is low, and the workpiece surface roughness that processes is poor.
Summary of the invention
The purpose of present technique provides a kind of interior cyclone cutting machine tool of precise forming, and it can realize planar double enveloping worm, reducing varying pitch worm screw and reducing varying pitch machining of Extrusion Screw, and the work piece surface roughness reaches Ra0.8, and production efficiency is high.
Whirlwind milling machine in this numerical control five-axle linkage comprises control system, lathe bed, main spindle box, main shaft (C axle), is arranged on the vertical slide unit of Z axle on the lathe bed, is arranged on the horizontal slide unit of X axle on vertical slide unit, is arranged on A axle panoramic table on the horizontal slide unit, is arranged on the whirlwind knife rest that has cutterhead inclination angle adjusting tank and supporting seat on the panoramic table.
The beneficial effect of present technique: under the control of control system; The inclination angle that U axle servomotor adjustment cutterhead to enveloping worm requires; The whirlwind knife rest relies on the interlock of X axle, Z axle, and along the orbiting motion of imaginary pitch circle of wormwheel, rotary table also links and turns round the center of circle that makes the cutter surfaces of revolution pass through imaginary pitch circle of wormwheel all the time simultaneously; Combine the interlock of main shaft C axle again, realize the processing of enveloping worm; Under the control of control system,, realize displacement is become the processing of helical pitch extruding screw through the interlock of C axle, X axle, Z axle and U axle; Cutterhead adopts inward turning air knife dish, and workpiece is carried out inscribe processing, and machining accuracy is high; The two end supports of tool-post structure is dual-support structure on cutterhead inclination angle adjusting tank and supporting seat, the space that not only good rigidly, and tool-post structure rotates is big.In process, U axle servomotor drives tool-post structure through the cutterhead dip angle regulating device and rotates, thereby constantly changes the cutterhead inclination angle.That is to say that in the present technique, not only rotation at a high speed under the drive of motor of cutterhead can also through the cutterhead oscillating motion, be satisfied the processing request of reducing varying pitch class part under the situation of C axle, Z axle, the interlock of X axle.The overall structure good rigidly of present technique vibrates for a short time, and the worm screw surface roughness that processes reaches Ra0.8.
The whirlwind knife rest comprises tool-post structure, cutterhead and is fixed on the main motor on the tool-post structure.Main motor drives the cutterhead rotation that milling cutter is housed through transmission mechanism; Cutterhead inclination angle adjusting tank and supporting seat are installed in the both sides of tool-post structure respectively through pivoting support, have in the adjusting tank of cutterhead inclination angle to drive the cutterhead dip angle adjusting mechanism that tool-post structure winds axis (U axle) rotation that is made up of its pivoting support center of circle, both sides.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, the cutter centre of gyration is through cutterhead inclination angle adjustment axis (U axle).This structure makes the cutterhead inclination angle adjust arbitrarily, and centre-height is constant.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, it also comprises the tailstock that is arranged on the lathe bed; The central shaft of tailstock is coaxial with main shaft.Tailstock belongs to prior art, can withstand by the rear end of the workpiece of main shaft clamping through tailstock.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, main motor links to each other with cutterhead through tape handler or gear drive.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, cutterhead is an inward turning air knife dish.That is to say that tool-post structure is equivalent to interior cyclone milling head.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, what the cutterhead dip angle regulating device adopted is the worm and wormwheel auxiliary structure.That is to say, drive tool-post structure through worm-gears and rotate, thereby change the cutterhead inclination angle.
Whirlwind milling machine in the above-mentioned numerical control five-axle interlock, main spindle box is the worm and wormwheel structure, is directly driven by servomotor.That is to say that servomotor drives main shaft through worm-gears and rotates.
Description of drawings
Fig. 1 is whirlwind milling machine vertical view in the numerical control five-axle interlock;
Fig. 2 is whirlwind milling machine front view in the numerical control five-axle interlock;
Fig. 3 is the sketch map of horizontal slide unit, vertical slide unit, panoramic table, whirlwind knife rest etc.;
Fig. 4 is the sketch map (right view of Fig. 3) of horizontal slide unit, vertical slide unit, panoramic table, whirlwind knife rest etc.
Fig. 5 is the A-A cutaway view among Fig. 4.
The specific embodiment
Reach embodiment with reference to the accompanying drawings and further specify the present technique scheme.
Referring to the linkage machine tool of numerical control five-axle shown in Fig. 1-2, the vertical slide unit 4 (Z axle) that mainly comprises lathe bed 1, is distributed in main spindle box 2 and the tailstock 18 of lathe bed 1 both sides, is installed on the lathe bed 1 and drives by Z axle servomotor 5 through guide rail 15; Be installed in the horizontal slide unit 6 (X axle) that drives by X axle servomotor 7 on vertical slide unit 4, be installed in the panoramic table 8 (A axle) that drives by A axle servomotor 9 on the horizontal slide unit 6, be installed in whirlwind milling mechanism, control system, electrical system, hydraulic system, cooling system above the panoramic table 8.
Main spindle box 2 comprises the C axle servomotor 3 of main shaft (C axle) and driving main shaft.
The whirlwind milling mechanism is made up of cutterhead inclination angle adjusting tank 10, tool-post structure 11 and supporting seat 12.Cutterhead inclination angle adjusting tank 10 and supporting seat 12 are installed in the both sides of tool-post structure 11 respectively through pivoting support, have in the cutterhead inclination angle adjusting tank 10 to drive the cutterhead dip angle adjusting mechanism that tool-post structure winds axis (U axle) rotation that is made up of its pivoting support center of circle, both sides.The cutterhead dip angle adjusting mechanism comprises the U axle servomotor 21 that is fixed on the cutterhead inclination angle adjusting tank 10, the worm couple that is positioned at cutterhead inclination angle adjusting tank 10 etc.Cutterhead 14 is installed in the tool-post structure 11, and main motor 13 is fixed on tool-post structure top, and main motor drives cutterhead 14 through band or gear drive; Symmetry is installed some profile milling cutter (cutting knife) 16 on the cutterhead 14.Workpiece 17 is installed on main shaft and the tailstock 18.
Link five and refer to: main shaft C axle, panoramic table A axle, vertical slide unit Z axle, horizontal slide unit X axle, a cutterhead inclination angle adjustment axle U axle.
Start main motor 13, drive cutter 16 rotation at a high speed on the cutterhead 14.Under the control of digital control system; X, Z axle drive the cutter 16 of rotation at a high speed and do circular arc or linear interpolation motion, and the A axle then changes the angle of overlooking of cutter 16 surfaces of revolution and C axle in the driving turning down of A axle servomotor 9; Constantly change the teeth directional of workpiece thus; 21 driving cutters 16 of U axle servomotor constantly change the inclination angle around the revolution of U axle, make to meet the lead angle that workpiece 17 changes.Main shaft then under the drive of C axle servomotor, according to certain speed ratio rotation, makes to meet the pitch that workpiece 17 changes.
Through the interlock of above five different modes, can process dissimilar enveloping worms and reducing varying pitch extrusion screw rod, realize to mill generation mill, High-efficient Production.

Claims (12)

1. whirlwind milling machine in the numerical control five-axle interlock is characterized in that: comprise control system, lathe bed, main spindle box, main shaft, be arranged on the vertical slide unit of Z axle on the lathe bed, be arranged on the horizontal slide unit of X axle on vertical slide unit, be arranged on A axle panoramic table on the horizontal slide unit, be arranged on the whirlwind knife rest that has cutterhead inclination angle adjusting tank and supporting seat on the panoramic table.
2. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1; It is characterized in that: the whirlwind knife rest comprises tool-post structure, cutterhead and is fixed on the main motor on the tool-post structure; Main motor drives the cutterhead that milling cutter is housed through transmission mechanism; Cutterhead inclination angle adjusting tank and supporting seat are installed in the both sides of tool-post structure respectively through pivoting support, have in the adjusting tank of cutterhead inclination angle to drive the cutterhead dip angle adjusting mechanism that tool-post structure winds the axis rotation that is made up of its pivoting support center of circle, both sides.
3. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1, it is characterized in that: the vertical, horizontal slide unit is cross distribution, on the one of which slide unit rotary table is installed.
4. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1, it is characterized in that: rotary table is turned round by A axle driven by servomotor.
5. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1, it is characterized in that: the whirlwind knife rest is installed on the rotary table through cutterhead inclination angle adjusting tank and supporting seat.
6. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1, it is characterized in that: also comprise the tailstock that is arranged on the lathe bed, the central shaft of tailstock is coaxial with main shaft.
7. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 2, it is characterized in that: cutterhead on the whirlwind knife rest and main motor are through belt or gear drive.
8. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 2 is characterized in that: inward turning air knife dish is installed on the whirlwind knife rest, workpiece is carried out cutting in the envelope.
9. require whirlwind milling machine in the interlock of described numerical control five-axle like right 2, it is characterized in that: whirlwind knife rest and rotary table be connected to double supporting structure.
10. require whirlwind milling machine in the described numerical control five-axle interlock like right 2, it is characterized in that: holder is the folding bearing block structure.
11. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 2 is characterized in that: a wherein supporting base of double supporting structure is installed cutterhead inclination angle adjustment worm-gears, by U axle driven by servomotor adjustment cutterhead inclination angle.
12. whirlwind milling machine in the numerical control five-axle interlock as claimed in claim 1, it is characterized in that: main spindle box is the worm and wormwheel slowing-down structure, is directly driven by C axle servomotor.
CN2011104575752A 2011-12-31 2011-12-31 Numerical control five-shaft linkage internal cyclone milling machine Pending CN102554364A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011104575752A CN102554364A (en) 2011-12-31 2011-12-31 Numerical control five-shaft linkage internal cyclone milling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011104575752A CN102554364A (en) 2011-12-31 2011-12-31 Numerical control five-shaft linkage internal cyclone milling machine

Publications (1)

Publication Number Publication Date
CN102554364A true CN102554364A (en) 2012-07-11

Family

ID=46401713

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011104575752A Pending CN102554364A (en) 2011-12-31 2011-12-31 Numerical control five-shaft linkage internal cyclone milling machine

Country Status (1)

Country Link
CN (1) CN102554364A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106425344A (en) * 2016-12-08 2017-02-22 南京彩云机械电子制造集团有限公司 Step short shaft processing method
CN108971670A (en) * 2018-08-23 2018-12-11 中山迈雷特智能装备有限公司 A kind of whirling mill and its working method
CN110102837A (en) * 2019-06-06 2019-08-09 山西风源机械制造有限公司 Nine axis twice-enveloping worm screw multifunctional cyclone milling machine tool of numerical control
CN114473083A (en) * 2021-12-16 2022-05-13 上海齐耀膨胀机有限公司 Processing method of variable pitch screw rotor
CN116441642A (en) * 2023-05-12 2023-07-18 扬州济贵传动机械有限公司 Pitch-variable worm machining equipment

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001121351A (en) * 1999-10-25 2001-05-08 Oooka Seisakusho:Kk Cutting method, cutting material and cutting device
CN1911575A (en) * 2006-08-25 2007-02-14 郑州机械研究所 Device capable of processing arbitrary screw angle tbread or worm
CN2915334Y (en) * 2006-06-16 2007-06-27 王隆太 Cyclone enveloped digital control screw bolt milling machine
JP2008238380A (en) * 2007-03-29 2008-10-09 Senjo Seiki Kk Working apparatus
CN101543921A (en) * 2009-05-04 2009-09-30 南京彩云机械电子制造有限公司 Universal cyclone milling head
CN101569979A (en) * 2009-06-01 2009-11-04 广州市敏嘉制造技术有限公司 Processing method and processing center for detecting external thread on line
CN202527799U (en) * 2011-12-31 2012-11-14 南京彩云机械电子制造有限公司 Numerical control five-axle linkage internal whirlwind milling machine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001121351A (en) * 1999-10-25 2001-05-08 Oooka Seisakusho:Kk Cutting method, cutting material and cutting device
CN2915334Y (en) * 2006-06-16 2007-06-27 王隆太 Cyclone enveloped digital control screw bolt milling machine
CN1911575A (en) * 2006-08-25 2007-02-14 郑州机械研究所 Device capable of processing arbitrary screw angle tbread or worm
JP2008238380A (en) * 2007-03-29 2008-10-09 Senjo Seiki Kk Working apparatus
CN101543921A (en) * 2009-05-04 2009-09-30 南京彩云机械电子制造有限公司 Universal cyclone milling head
CN101569979A (en) * 2009-06-01 2009-11-04 广州市敏嘉制造技术有限公司 Processing method and processing center for detecting external thread on line
CN202527799U (en) * 2011-12-31 2012-11-14 南京彩云机械电子制造有限公司 Numerical control five-axle linkage internal whirlwind milling machine

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106425344A (en) * 2016-12-08 2017-02-22 南京彩云机械电子制造集团有限公司 Step short shaft processing method
CN108971670A (en) * 2018-08-23 2018-12-11 中山迈雷特智能装备有限公司 A kind of whirling mill and its working method
CN110102837A (en) * 2019-06-06 2019-08-09 山西风源机械制造有限公司 Nine axis twice-enveloping worm screw multifunctional cyclone milling machine tool of numerical control
CN110102837B (en) * 2019-06-06 2024-09-27 山西风源机械制造有限公司 Numerical control nine-axis secondary enveloping worm multifunctional whirling milling machine tool
CN114473083A (en) * 2021-12-16 2022-05-13 上海齐耀膨胀机有限公司 Processing method of variable pitch screw rotor
CN116441642A (en) * 2023-05-12 2023-07-18 扬州济贵传动机械有限公司 Pitch-variable worm machining equipment
CN116441642B (en) * 2023-05-12 2024-04-12 扬州济贵传动机械有限公司 A variable pitch worm processing equipment

Similar Documents

Publication Publication Date Title
CN202527799U (en) Numerical control five-axle linkage internal whirlwind milling machine
CN101362229B (en) CNC five-axis three-linkage planar enveloping toroidal worm cyclone cutting machine tool
US20160250701A1 (en) Machining head for a gear cutting machine and method for toothing a workpiece, in particular a worm shaft or toothed rack
CN101342617A (en) Four-shaft four-linkage numerical control spiral bevel gear milling machine arrangement
CN101041194A (en) Numerical control machine for processing huge conical gear with curved teeth
CN102554364A (en) Numerical control five-shaft linkage internal cyclone milling machine
CN115889899B (en) Processing machine tool and processing method for circular-arc toothed-line cylindrical internal gear
CN101733483A (en) Spiral bevel gear cutting machine tool and gear cutting method
CN108581078A (en) Planar double enveloping worm flank of tooth double-side grinding lathe based on the virtual centre of gyration
CN202716139U (en) Multifunctional molding grinding machine tool
CN108311963A (en) A kind of six axis knife sharpeners
CN2915334Y (en) Cyclone enveloped digital control screw bolt milling machine
CN201249304Y (en) Numerical control five-axis three-linked motion plane annular enveloping worm cyclone cutting machine tool
CN103418852A (en) Novel efficient numerical control gear grinding machine
CN202804376U (en) Precise forming numerical control four-axis linkage inner cyclone milling machine
CN102528173A (en) Numerical controlled four-axis linkage inner whirlwind milling machine
CN201871820U (en) Numerical control chamfering machine with two axles
CN201267903Y (en) Ring surface worm screw numerically controlled machine of virtual rotation center
CN201186354Y (en) Double-shaft double-station NC lathe
CN108406453B (en) Numerical control knife sharpener
CN2117969U (en) Gringing machine with numerical control four shaft linkage ring face worm
CN102729126A (en) Multifunctional forming grinding machine tool
CN214980045U (en) Double-station synchronous machining module capable of translating
WO2024027597A1 (en) Tool grinding machine
CN205660450U (en) Integration double knives utensil lathe

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C12 Rejection of a patent application after its publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20120711