CN106270826A - A kind of lathe is with four station arbor flanges - Google Patents

A kind of lathe is with four station arbor flanges Download PDF

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Publication number
CN106270826A
CN106270826A CN201610858685.2A CN201610858685A CN106270826A CN 106270826 A CN106270826 A CN 106270826A CN 201610858685 A CN201610858685 A CN 201610858685A CN 106270826 A CN106270826 A CN 106270826A
Authority
CN
China
Prior art keywords
clamping body
rotating disk
lathe
reamer
fixing seat
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.)
Granted
Application number
CN201610858685.2A
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Chinese (zh)
Other versions
CN106270826B (en
Inventor
王浩宇
马永伟
黄波
何鹏
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Jiangsu University
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Jiangsu University
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 Jiangsu University filed Critical Jiangsu University
Priority to CN201610858685.2A priority Critical patent/CN106270826B/en
Publication of CN106270826A publication Critical patent/CN106270826A/en
Application granted granted Critical
Publication of CN106270826B publication Critical patent/CN106270826B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G3/00Arrangements or accessories for enabling machine tools not specially designed only for thread cutting to be used for this purpose, e.g. arrangements for reversing the working spindle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G5/00Thread-cutting tools; Die-heads

Abstract

The invention discloses a kind of lathe four station arbor flanges, including fixing seat, rotating disk, fixing axle, centre drill clamping body, straight shank twist drill clamping body, screw tap gripping sleeve and reamer gripping sleeve.Rotating disk is fixed on fixing seat by fixing axle, and four side planes of rotating disk are respectively mounted centre drill clamping body, straight shank twist drill clamping body, screw tap clamping body and reamer clamping body, and each clamping body installs corresponding cutters.The present invention adds man-hour in lathe turning, one-time positioning installation can carry out multiple working procedure processing, stir rotating disk and select cutter to can be carried out corresponding working procedure processing.And this mechanism structure is simple, easy to use, change cutter easy, quickly, withdrawing, feed and to the cutter time can be saved, improve work efficiency.Meanwhile, the present invention ensures the positioning precision of cutter, it is simple to process high-quality parts.

Description

A kind of lathe is with four station arbor flanges
Technical field
The invention belongs to metal cutting process field, be specifically related to a kind of lathe four station arbor flanges.
Background technology
Time on engine lathe by tool sharpening External Shape, need processing part is carried out multiple turning operation, example As: tapping again after punching, after punching, fraising waits other multiple working procedure, and all process steps cannot be realized by same cutter, therefore exists Cutter fixing on lathe must be changed while converting process.The cutter clamping device front end of traditional structure can only clamping one Cutter, when changing cutter, it is necessary to the cutter of a upper operation is unloaded completely, then the cutter that clamping is new again, change cutter mistake Journey is loaded down with trivial details, inefficiency, and labor strength is big, and owing to tool damage caused workpiece scrappage is the highest.
Summary of the invention
The technical problem that the present invention is directed to above-mentioned existence makes improvement, proposes a kind of lathe four station arbor flanges, should Mechanism structure is simple, easy to use, changes cutter easy, quickly.Lathe turning is processed when, arrive as long as stirring rotating disk Corresponding tool position can be carried out multicutter, multistage manufacturing processes, eliminates withdrawing, feed and the operation to cutter, saves Plenty of time, work efficiency have also been obtained bigger raising.
This practicality invention is achieved through the following technical solutions:
A kind of lathe is with four station arbor flanges, including fixing seat, fixing axle, rotating disk, centre drill clamping body, staight shank fiber crops Flower bores clamping body, screw tap spacer shell, screw tap clamping body, reamer spacer shell and reamer clamping body;Fixing seat is arranged on lathe side's cutter On frame, rotating disk is connected with fixing seat by fixing axle, is provided with compression spring and unilateral thrust in the middle of rotating disk and fixing seat Ball bearing, rotating disk outer face is fixed nut check by band;Described centre drill clamping body, straight shank twist drill clamping body, silk Attack spacer shell and reamer spacer shell is placed in the blind hole of four sides of rotating disk, compress above-mentioned four by interior hexagonal holding screw Part;Screw tap clamping body is arranged on screw tap and crosses in set, and screw tap installs compression spring additional in crossing set, screw tap clamping body key point groove face is by interior six Band shoulder location, angle screw is fixed on screw tap spacer shell and prevents screw tap clamping body from rotating, and reamer clamping body is arranged on reamer spacer shell In, fluting threaded and jump ring fix, use floating connection.
The most fixing seat is T-type structure, and centre has screwed hole, both sides to have steel ball to position hole.
The most fixing axle is bolt structure, middle milling flat, and there are screw thread, one end and fixing seat neutral threaded hole in two ends Connecting, the other end is connected nut with the band being made up of bakelite handle, connecting rod and nut.
Further rotating disk be cylinder and on side uniform four planes, each plane is processed identical Blind hole, there is the screwed hole installing holding screw end face side, and opposite side has steel ball location sphere.
Beneficial effect:
1. this four stations arbor flange is arranged on lathe square tool post, it is simple to the operation of cutter and use.The present invention is abundant Make use of the self-acting feed function of lathe saddle, eliminate use lathe tailstock, save every procedure and adjust tailstock back and forth Time, decrease the labor intensity of operator, improve labor productivity, reduce production cost.
2. using rotating disk periphery uniform Cutting tool installation manner mode, rotating disk is freely rotatable, it is possible to want according to part processing Ask, suitable cutter model and specification are installed, the manufacturing procedure of part, beneficially product multicutter can be reduced and add the mass in man-hour Produce, improve the production efficiency of lathe.
3. rotating disk periphery actuator installing hole uses uniform sizes tolerance fit with actuator connector, improves The interchangeability of actuator, as long as changing the clamping body of actuator, so that it may to change tool specification and type, expanded this cutter The range of tool clamping mechanism.
4. screw tap clamping body uses with screw tap spacer shell and is slidably connected, and relies on compression spring to provide reset force, screw tap and folder Tight body is fixed, auto-feed in tapping process, relies on spring force to reset during retrogressing, avoids the unaccommodated lathe of selection and enters The human cost waste that the refining losses caused to speed or hand feed bring.
5. reamer clamping body uses floating structure with reamer spacer shell, realizes reaming on lathe, improves car The range of bed.
Accompanying drawing explanation
Fig. 1 is one lathe of the present invention four station disc type cutter frame structure schematic diagrams.
Fig. 2 is rotating mechanism structural representation of the present invention.
Fig. 3 is actuator centre drill mounting structure schematic diagram of the present invention.
Fig. 4 is actuator straight shank twist drill mounting structure schematic diagram of the present invention.
Fig. 5 is actuator screw tap mounting structure schematic diagram of the present invention.
Fig. 6 is actuator reamer installation structure schematic diagram of the present invention.
Fig. 7 is fixed mechanism structural representation of the present invention.
Fig. 8 is rotating disk detail view of the present invention.
Fig. 9 is that the present invention fixes seat detail view.
Figure 10 is Fig. 5 screw tap mounting structure detail view.
Figure 11 is Fig. 6 reamer installation structure detail view.
Figure 12 is the photo in traditional method machining center hole.
Figure 13 is traditional method boring photo.
Figure 14 is traditional method tapping.
Figure 15 is traditional method fraising photo.
Figure 16 is drill centers photo of the present invention.
Figure 17 is that the present invention boresHole photo.
Figure 18 is that the present invention attacks M8 photo.
Figure 19 is the present inventionFraising photo.
(1)-fixing seat in figure;(2)-positioning ball;(3)-steel ball compression spring;(4)-interior hexagonal holding screw M10 × 25;(5)-single direction thrust ball bearing;(6)-compression spring;(7)-cross recessed countersunk head sscrew;(8)-stage clip catch;(9)-screw tap folder Tight body compression spring;(10)-screw tap spacer shell;(11)-bearing pin;(12)-screw tap clamping body;(13)-interior hexagonal holding screw M6 ×16;(14)-interior hexagonal belt shoulder location screw;(15)-fluting threaded;(16)-reamer clamping body;(17)-reamer spacer shell; (18)-jump ring;(19)-bakelite handle;(20)-connecting rod;(21)-nut;(22)-big flat washer circle;(23)-fixing axle;(24)-rotation Rotating disk;(25)-interior hexagonal holding screw M6 × 8;(26)-centre drill clamping body;(27)-interior hexagonal holding screw M6 × 12; (28)-straight shank twist drill clamping body.
Detailed description of the invention
Below in conjunction with embodiment and accompanying drawing, present invention is illustrated.
A kind of lathe is with four station arbor flanges, it is characterised in that include fixing seat 1, fix axle 23, rotating disk 24, in The heart bores clamping body 26, straight shank twist drill clamping body 28, screw tap spacer shell 10, screw tap clamping body 12, reamer spacer shell 17 and reamer Clamping body 16.
Described fixing seat 1 is arranged on lathe square tool post, has screwed hole and bearing mounting hole in the middle of fixing seat, and there is steel both sides Hole, pearl location;Fixing axle 23 two ends have screw thread, one end to be connected with fixing seat 1 neutral threaded hole, and positioning ball 2 passes through compression spring And interior hexagonal holding screw 4 is arranged on the hole, both sides steel balls location of fixing seat 1 (3);
In the middle of described rotating disk 24 and fixing seat 1, compression spring 6, single direction thrust ball bearing 5 are installed, by fixing axle 23 even Connect, rotating disk 24 outer face by big flat washer circle 22 and the band that is made up of bakelite handle 19, connecting rod 20, nut 21 nut check Fixing, rotating disk 24 contacts end face with fixing seat 1 location sphere, contacts location with locking ball 2;
Described centre drill clamping body 26, straight shank twist drill clamping body 28, screw tap spacer shell 10 and reamer spacer shell 17 are placed in In the blind hole of 24 4 sides of rotating disk, interior hexagonal holding screw 25 compresses above-mentioned four by rotating disk 24 end face outside screwed hole Individual parts;Centre drill clamping body 26 intermediate throughholes, centre drill is installed in through hole, and uniform by centre drill clamping body 26 head Four interior hexagonal holding screws 27 are fixed;Straight shank twist drill clamping body 28 intermediate throughholes, straight shank twist drill is installed in through hole, and Four the interior hexagonal holding screws 13 uniform by straight shank twist drill clamping body 28 head are fixed;Screw tap is installed in screw tap spacer shell 10 Clamping body 12, compression spring 8, screw tap clamping body 12 one end central blind hole installs screw tap, and by uniform four the interior hexagonals of periphery Holding screw 13 is fixed, other end screwed hole of centre, off-center pin-and-hole, is pressed into bearing pin 11, and the face of cylinder has keyway, and interior six Band shoulder location, angle screw 14 stretches in keyway by screw tap spacer shell 10, and compression spring 9 is passed through stage clip by cross recessed countersunk head sscrew 7 Catch 8 loads in screw tap spacer shell 10;Reamer clamping body 16 is installed, by fluting threaded 15 and jump ring 18 in reamer spacer shell 17 Fixing, reamer clamping body 16 intermediate throughholes, reamer is installed in through hole, and by uniform four of reamer clamping body 16 head six Angle holding screw 27 is fixed.
Described fixing seat 1 is T-type structure, rotating disk 24 be cylinder and on side uniform four planes.
Described rotating disk 24 is connected through fixing axle 23 with fixing seat 1, installs compression bullet between rotating disk 24 and fixing seat 1 Spring 6, single direction thrust ball bearing 5, compression spring 6 and single direction thrust ball bearing 5 ensure that rotating disk 24 can freely be stirred.
Described a kind of lathe, with four station arbor flanges, including rotating mechanism, is fixed on the four of four sides of rotating disk The actuator of station and fixed mechanism;Described rotating mechanism is connected to fixed mechanism end face outside, and is positioned by positioning ball; Described rotating mechanism includes rotating disk 24, interior hexagonal holding screw 25;Described actuator includes centre drill clamping body 26, staight shank Fluted drill clamping body 28, screw tap spacer shell 10, screw tap clamping body 12, reamer spacer shell 17 and reamer clamping body 16;Described fixing Mechanism includes fixing seat 1, fixing axle 23, and fixing axle 23 is threadedly attached in the center screw of fixing seat 1, and by fixing seat (1) big face positions with knife rest lateral surface to ensure its position degree requirement.
This lathe rotatable tool clamping mechanism is arranged on lathe saddle, and rotating mechanism drives actuator around fixing Mechanism rotates, and rotary shaft is vertical with machine tool chief axis, and fixing seat is parallel with machine tool chief axis.
On 24 4 sides of described rotating disk, blind hole can adjust the multiple cutter spacer shell of installation, and spacer shell has tightening Hole, and fixed by holding screw.
The executable portion cutter of described actuator is placed in clamping body, and is fixed by holding screw;Screw tap clamping body 12 It is placed in screw tap spacer shell 10, and is slided by keyway, compression spring 8 provide reset force;Reamer clamping body 16 is placed in reamer Fixed by fluting threaded 15 and jump ring 18 in spacer shell 17, use floating structure.
In conjunction with accompanying drawing 1,2 and 7 one kind of lathe with four station arbor flanges, including fixing seat 1, fixing axle 23, rotating disk 24 The fixed mechanism constituted and rotating mechanism;Fixing seat 1 is installed on the square tool post of engine lathe, in rotating disk 24 and fixing seat 1 Between install compression spring 6, single direction thrust ball bearing 5, connected by fixing axle 23;Big flat washer circle 22 is passed through in rotating disk 24 outer face With the band being made up of bakelite handle 19, connecting rod 20, nut 21, nut check being fixed, rotating disk 24 contacts end face with fixing seat 1 There is location sphere, contact location, and the good center of centering with locking ball 2.
In conjunction with accompanying drawing 1,3,4,5 and 6 one kind of lathe with four station arbor flanges, including centre drill clamping body 26, staight shank fiber crops Flower bores clamping body 28, screw tap spacer shell 10, screw tap clamping body 12, reamer spacer shell 17 and reamer clamping body 16 and connects.
Equipped with centre drill clamping body 26, fluted drill clamping body 28, screw tap spacer shell 10, screw tap clamping body in rotating disk 24 12, reamer spacer shell 17 and reamer clamping body 16.
The example course of processing:Drill reaming is processed:
Be respectively mounted on corresponding clamping body centre drill,Fluted drill,Reamer.
Rotate rotating disk, make centre drill correspondence process part, utilize the most mobile of lathe to start main shaft, so to workpiece After feeding at a slow speed (i.e. work is entered) machining center hole to required size.
Centre bore quickly exits after completing to home, rotates rotating disk, makesFluted drill correspondence processing part, becomes Changing the speed of mainshaft, at fast feed to workpiece, then work enters processingHole.
Hole work quickly exits after proceeding to required working depth to home, rotates rotating disk, makesReamer is corresponding Processing part, converts the speed of mainshaft, and work enters processingHole, until reamed then withdrawing to home,Drill reaming is complete Become.
Manufacturing batch part needs repeat the above steps.
M8 boring, the tapping course of processing:
Be respectively mounted on corresponding clamping body centre drill,Fluted drill, M8 screw tap.
Rotate rotating disk, make centre drill correspondence process part, utilize the most mobile of lathe to start main shaft, so to workpiece After feeding at a slow speed (i.e. work is entered) machining center hole to required size.
Centre bore quickly exits after completing to home, rotates rotating disk, makesFluted drill correspondence processing part, becomes Changing the speed of mainshaft, at fast feed to workpiece, then work enters processingHole.
Hole work quickly exits after proceeding to required working depth to home, rotates rotating disk, makes screw tap correspondence add Work part, converts the speed of mainshaft, and knife rest is to feeding, until tapping completes main shaft reversion then, screw tap is in screw tap spacer shell The lower withdrawing of stage clip traction, after tapping knot speed, rapid return is to home;
Manufacturing batch part needs repeat the above steps.
Contrast:
Engine lathe carries out drilling and tapping to part
1, traditional handicraft (as a example by attacking M8) need to repeatedly be changed cutter and pull tail stock back and forth
1) drill centers: load drill chuck in tailstock, drill point not Clamping Center is bored and is pulled tail stock near treating At workpiece, then locking tailstock starts main shaft, the crank on manual rotation's tailstock, makes the drill chuck on barrel of tail stock advance, Carry out being cut to required chamfer dimesion.(owing to manual rotation old place method keeps the feeding of average rate).
2) boreHole, after drill centers completes, pulls tailstock and leaves to safe distance, unload centre drill and replace with Fluted drill, or replace with equipped withFluted drill chuck adjusts the set speed of mainshaft to pull tailstock at workpiece, and the course of processing is ibid.
3) attack M8, pull tailstock to home, barrel of tail stock is changed the Special Tapping Clamp equipped with M8 screw tap, then Mobile tailstock adjusts the set speed of mainshaft, completes main shaft reversion after silk, utilizes special fixture to exit screw tap and complete tapping.
One, on engine lathe, part holed, ream.
1, traditional handicraft (withAs a example by), step is substantially with processing M8.
1) drill centers as shown 12.
2) boreHole as shown 13.
3) fraising.
Two, utilizing this fixture to carry out drilling and tapping or boring, the fraising of bulk of components, dish or the knife rest of the present invention are installed on On the square tool post of engine lathe, and the good center of centering.
On arbor flange equipped with centre drill,Fluted drill, M8 screw tap.
The course of processing: 1 rotates arbor flange, makes centre drill correspondence process part, utilizes the most mobile to workpiece of lathe Place starts main shaft, and feeding the most at a slow speed (i.e. work is entered) machining center hole is to required size.
Centre bore quickly exits after completing to home, rotates arbor flange, makesFluted drill correspondence processing part, The conversion speed of mainshaft, at fast feed to workpiece, then work enters processingHole.
Hole is quickly exited after completing required working depth to home, rotates arbor flange, makes screw tap correspondence add Work part, converts the speed of mainshaft, and knife rest is to feeding, until main shaft reversion then of having reamed, screw tap draws at the stage clip of fixture Lower withdrawing, after tapping knot speed, rapid return is to home.
Manufacturing batch part needs repeat the above steps.
Tapping clamping fixture the most ibid, only need to be replaced by fraising clamping fixture by boring, reaming procedure, changes corresponding Fluted drill and clamping fixture.
Described embodiment is the preferred embodiment of the present invention, but the present invention is not limited to above-mentioned embodiment, is not carrying on the back In the case of the flesh and blood of the present invention, those skilled in the art can make any conspicuously improved, replace or Modification belongs to protection scope of the present invention.

Claims (7)

1. a lathe is with four station arbor flanges, it is characterised in that include fixing seat (1), fixing axle (23), rotating disk (24), centre drill clamping body (26), straight shank twist drill clamping body (28), screw tap spacer shell (10), screw tap clamping body (12), reamer Spacer shell (17) and reamer clamping body (16);
Described fixing seat (1) is arranged on lathe square tool post, has screwed hole and bearing mounting hole in the middle of fixing seat, and there is steel ball both sides Hole, location;Fixing axle (23) two ends have screw thread, one end to be connected with fixing seat (1) neutral threaded hole, and positioning ball (2) is by compression Spring (3) and interior hexagonal holding screw (4) are arranged on the hole, steel ball location, both sides of fixing seat (1);
Compression spring (6), single direction thrust ball bearing (5) are installed, by fixing axle in the middle of described rotating disk (24) and fixing seat (1) (23) connecting, rotating disk (24) outer face is by big flat washer circle (22) with by bakelite handle (19), connecting rod (20), nut (21) group Nut check fixed by the band become, and rotating disk (24) contacts end face with fixing seat (1) location sphere, connects with locking ball (2) Touch location;
Described centre drill clamping body (26), straight shank twist drill clamping body (28), screw tap spacer shell (10) and reamer spacer shell (17) Being placed in the blind hole of (24) four sides of rotating disk, interior hexagonal holding screw (25) passes through rotating disk (24) end face outside screwed hole Compress aforementioned four parts;Centre drill clamping body (26) intermediate throughholes, centre drill is installed in through hole, and by centre drill clamping body (26) four interior hexagonal holding screws (27) that head is uniform are fixed;Straight shank twist drill clamping body (28) intermediate throughholes, staight shank fiber crops Flower brill is installed in through hole, and solid by four interior hexagonal holding screws (13) that straight shank twist drill clamping body (28) head is uniform Fixed;Screw tap clamping body (12), compression spring (8), screw tap clamping body (12) one end central blind hole are installed in screw tap spacer shell (10) Screw tap is installed, and is fixed by four interior hexagonal holding screws (13) that periphery is uniform, other end screwed hole of centre, off-center pin Hole, press-in bearing pin (11), the face of cylinder has keyway, interior hexagonal belt shoulder location screw (14) is stretched into by screw tap spacer shell (10) In keyway, compression spring (9) is loaded in screw tap spacer shell (10) by stage clip catch (8) by cross recessed countersunk head sscrew (7);Reamer Reamer clamping body (16) is installed in spacer shell (17), fluting threaded (15) and jump ring (18) fixes, reamer clamping body (16) Intermediate throughholes, reamer is installed in through hole, and by uniform four the interior hexagonal holding screws (27) of reamer clamping body (16) head Fixing.
A kind of lathe the most according to claim 1 is with four station arbor flanges, it is characterised in that described fixing seat (1) is T Type structure, rotating disk (24) be cylinder and on side uniform four planes.
A kind of lathe the most according to claim 1 is with four station arbor flanges, it is characterised in that described rotating disk (24) is worn Cross fixing axle (23) to be connected with fixing seat (1), compression spring (6), unilateral thrust are installed between rotating disk (24) and fixing seat (1) Ball bearing (5), compression spring (6) and single direction thrust ball bearing (5) ensure that rotating disk (24) can freely be stirred.
A kind of lathe the most according to claim 1 is with four station arbor flanges, it is characterised in that includes rotating mechanism, consolidate The actuator of four stations and fixed mechanism due to four sides of rotating disk;Described rotating mechanism is connected to outside fixed mechanism End face, and positioned by positioning ball;Described rotating mechanism includes rotating disk (24), interior hexagonal holding screw (25);Described execution Mechanism include centre drill clamping body (26), straight shank twist drill clamping body (28), screw tap spacer shell (10), screw tap clamping body (12), Reamer spacer shell (17) and reamer clamping body (16);Described fixed mechanism includes fixing seat (1), fixing axle (23), fixing axle (23) be threadedly attached in the center screw of fixing seat (1), and by the big face of fixing seat (1) and knife rest lateral surface location with Ensure its position degree requirement.
A kind of lathe the most according to claim 1 is with four station arbor flanges, it is characterised in that this lathe rotatable knife Tool clamping mechanism is arranged on lathe saddle, and rotating mechanism drives actuator to rotate around fixed mechanism, rotary shaft and lathe master Axle is vertical, and fixing seat is parallel with machine tool chief axis.
A kind of lathe the most according to claim 1 is with four station arbor flanges, it is characterised in that described rotating disk (24) four On individual side, blind hole can adjust the multiple cutter spacer shell of installation, spacer shell has tightening hole, and is fixed by holding screw.
A kind of lathe the most according to claim 4 is with four station arbor flanges, it is characterised in that holding of described actuator Row part cutter is placed in clamping body, and is fixed by holding screw;Screw tap clamping body (12) is placed in screw tap spacer shell (10), and Slided by keyway, compression spring (8) provide reset force;It is interior by slotting that reamer clamping body (16) is placed in reamer spacer shell (17) Threaded (15) and jump ring (18) are fixed, and use floating structure.
CN201610858685.2A 2016-09-28 2016-09-28 A kind of four station arbor flanges of lathe Expired - Fee Related CN106270826B (en)

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Application Number Priority Date Filing Date Title
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CN106270826B CN106270826B (en) 2018-02-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110722175A (en) * 2019-10-25 2020-01-24 郭顺合 Automobile parts surface machining treatment facility

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Publication number Priority date Publication date Assignee Title
US20110137452A1 (en) * 2008-08-11 2011-06-09 Barrie John Boyes A universal tool mounting system for a machining centre
CN103158041A (en) * 2011-12-08 2013-06-19 哈恩和特斯基工件指数有限商业两合公司 Machine tool
CN203171000U (en) * 2013-04-17 2013-09-04 孙效 Fast tool changing mechanism
CN204194848U (en) * 2014-11-03 2015-03-11 黄河科技学院 The General tool mounting structure of numerically controlled lathe multi-cutter-position device
CN104785809A (en) * 2015-04-24 2015-07-22 昆山天成锋精机有限公司 VDI type servo power tool turret

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110137452A1 (en) * 2008-08-11 2011-06-09 Barrie John Boyes A universal tool mounting system for a machining centre
CN103158041A (en) * 2011-12-08 2013-06-19 哈恩和特斯基工件指数有限商业两合公司 Machine tool
CN203171000U (en) * 2013-04-17 2013-09-04 孙效 Fast tool changing mechanism
CN204194848U (en) * 2014-11-03 2015-03-11 黄河科技学院 The General tool mounting structure of numerically controlled lathe multi-cutter-position device
CN104785809A (en) * 2015-04-24 2015-07-22 昆山天成锋精机有限公司 VDI type servo power tool turret

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110722175A (en) * 2019-10-25 2020-01-24 郭顺合 Automobile parts surface machining treatment facility

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