CN210702275U - Translation cutter module - Google Patents

Translation cutter module Download PDF

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Publication number
CN210702275U
CN210702275U CN201921216920.1U CN201921216920U CN210702275U CN 210702275 U CN210702275 U CN 210702275U CN 201921216920 U CN201921216920 U CN 201921216920U CN 210702275 U CN210702275 U CN 210702275U
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CN
China
Prior art keywords
bird
seat
translational
bottom plate
fixing
Prior art date
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Active
Application number
CN201921216920.1U
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Chinese (zh)
Inventor
叶松威
龙建明
周小红
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Huizhou Oudimei Technology Machinery Co ltd
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Huizhou Oudimei Technology Machinery 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.)
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Application filed by Huizhou Oudimei Technology Machinery Co ltd filed Critical Huizhou Oudimei Technology Machinery Co ltd
Priority to CN201921216920.1U priority Critical patent/CN210702275U/en
Priority to TW108213779U priority patent/TWM592351U/en
Application granted granted Critical
Publication of CN210702275U publication Critical patent/CN210702275U/en
Priority to JP2020002908U priority patent/JP3228380U/en
Priority to KR2020200002631U priority patent/KR200494993Y1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F3/00Coiling wire into particular forms
    • B21F3/02Coiling wire into particular forms helically
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F35/00Making springs from wire

Abstract

The utility model relates to a translation cutter module, which comprises a linear slide rail mechanism, a bird seat fixing mechanism, a translation cutter seat and a striking device; the linear slide rail mechanism comprises a translational bird seat bottom plate and a translational slide seat bottom plate arranged below the translational bird seat bottom plate, wherein a first guide rail capable of driving the bird seat fixing mechanism to move along a track is arranged in the middle of the surface of the translational bird seat bottom plate; the bird seat fixing mechanism comprises a positive bird seat arranged above the first guide rail, a translational bird seat arranged above the translational bird seat bottom plate and a positive bird fixing plate, wherein a fixing groove is formed in the translational bird seat, the positive bird seat is positioned between the translational bird seat and the positive bird fixing plate, and the positive bird seat is arranged on the fixing groove of the translational bird seat through the positive bird fixing plate; a latch block is also arranged on the lateral side of the translation bird seat; the utility model discloses overall structure is novel, and reasonable in design has effectively improved the unable problem that is less than 90 dog-ears to spring processing of translation slide about now.

Description

Translation cutter module
Technical Field
The utility model relates to a spring processing technology especially relates to a translation cutter module.
Background
When a traditional spring forming machine is used for producing springs, the translation cutter modules are assembled on the machine table sliding seat, the common translation cutter modules can only translate left and right and can perform actions of coils and folding angles, but the folding angles are equal to or larger than 90 degrees, and the folding angles smaller than 90 degrees cannot be processed.
SUMMERY OF THE UTILITY MODEL
In order to overcome the above-mentioned drawbacks of the prior art, the present invention provides a translation tool module, which solves the problem that the translation tool module in the prior art cannot process a bevel smaller than 90 °.
The utility model provides a translation cutter module, which comprises a linear slide rail mechanism, a bird seat fixing mechanism, a translation cutter seat and a striking device;
the linear slide rail mechanism comprises a translational bird seat bottom plate and a translational slide seat bottom plate arranged below the translational bird seat bottom plate, wherein a first guide rail capable of driving the bird seat fixing mechanism to move along a track is arranged in the middle of the surface of the translational bird seat bottom plate;
the bird seat fixing mechanism comprises a positive bird seat arranged above the first guide rail, a translational bird seat arranged above the translational bird seat bottom plate and a positive bird fixing plate, wherein a fixing groove is formed in the translational bird seat, the positive bird seat is positioned between the translational bird seat and the positive bird fixing plate, and the positive bird seat is arranged on the fixing groove of the translational bird seat through the positive bird fixing plate; a latch block is also arranged on the lateral side of the translation bird seat;
the translational tool apron comprises a tool apron, a pin hole and a plurality of tool mounting holes which are arranged on the outer side of the tool apron and used for clamping tools, the tool apron is positioned on the lateral side of the translational bird seat bottom plate, and the pin hole corresponds to a pin block to fix the translational tool apron on the bird seat fixing mechanism;
the striking device comprises a striking bearing arranged at the corner of the translational bird seat, and a striking block which is arranged on the external equipment of the translational cutter module and collides with the striking bearing, wherein the striking block is arranged on a path through which the striking bearing passes, and the striking block collides with the striking bearing to make the cutter perform the action of inner buckling.
As an improvement of the utility model, translation bird seat side still is provided with one and can drives the eccentric link mechanism of bird seat fixed establishment side to side sway, eccentric link mechanism includes eccentric drive assembly and link assembly.
As an improvement of the utility model, eccentric transmission assembly includes the eccentric shaft, is used for eccentric shaft's eccentric axle bed, cover to establish the eccentric shaft bearing that eccentric axle bed inner wall is used for bearing the eccentric shaft motion, the eccentric shaft still is connected with a motor.
As an improvement of the utility model, link assembly includes connecting rod, connecting rod bearing and sways the fixing base, the connecting rod both sides are provided with the through-hole, connecting rod one end is cup jointed on eccentric drive assembly, connecting rod bearing links to each other with the other end that sways the fixing base and pass through the connecting rod.
As an improvement of the utility model, translation cutter module outside still is provided with a positive bird limit seat, positive bird limit seat middle part is provided with hits a fixed orifices, it passes to hit the piece and hits a fixed orifices and fix on positive bird limit seat to hit the piece, positive bird limit seat top still is provided with the briquetting, still be provided with an adjusting screw on the positive bird limit seat, it has still opened an adjusting hole still to hit a middle part, adjusting screw passes briquetting, positive bird limit seat top, hits a adjusting hole and adjusts the upper and lower position that hits the piece, and positive bird limit seat is used for the supplementary piece of hitting to fix.
As an improvement of the utility model, translation slide bottom plate top is provided with a plurality of roller guide rails for along the orbit motion when removing about the translation bird seat bottom plate, can not break away from translation bird seat bottom plate, it is more stable.
As an improvement of the utility model, still be provided with the speed reducer between motor and the eccentric shaft, it is used for reducing the rotational speed, increases the torque.
To sum up, the bolt port of the translational cutter module of the utility model corresponds to the bolt block to fix the translational cutter holder on the bird seat fixing mechanism, the collision block is arranged on the path through which the collision bearing passes, and the cutter can make the action of inner buckle through the collision of the collision block and the collision bearing; the eccentric link mechanism converts the rotary motion of the motor into the left and right movement of the bird straightening seat; the adjusting screw penetrates through the pressing block, the top of the bird righting side seat and the collision block adjusting hole to adjust the upper position and the lower position of the collision block, and the bird righting side seat is used for assisting the collision block to fix; the roller guide rail moves along the track when the bottom plate of the translational bird seat moves left and right, and can not be separated from the bottom plate of the translational bird seat, so that the bird seat is more stable; the speed reducer is used for reducing the rotating speed and increasing the torque; the utility model discloses overall structure is novel, and reasonable in design has effectively solved present translation slide about can't be less than the problem of 90 dog-ears to spring processing.
Drawings
Fig. 1 is an exploded view of the translation tool module of the present invention;
FIG. 2 is a combination view of the translation tool module of the present invention;
FIG. 3 is an exploded view of a translation tool module optimization scheme;
FIG. 4 is an assembly drawing of an optimized solution for the translation tool module;
FIG. 5 is an exploded view of the slide module and the translation tool module of the present invention;
FIG. 6 is an assembly view of the slide carriage module and the translation tool module of the present invention;
FIG. 7 is an exploded view of the right bird seat of the present invention;
FIG. 8 is a front view of the slide carriage module and the translation tool module of the present invention;
FIG. 9 is a front view of the slide module, the spindle and the translation tool module of the present invention
FIG. 10 is a schematic view of the translation tool module according to the present invention during corner folding;
FIG. 11 is a schematic view of the translation tool module according to the present invention after corner folding;
FIG. 12 is a schematic view of the translation tool module of the present invention performing winding;
fig. 13 is a schematic view of the translation tool module of the present invention completing a winding;
FIG. 14 is a schematic view of the angle bending operation of the translation tool module of the present invention;
in the drawings are labeled: 1. the bird-driving device comprises a motor, 21, an eccentric shaft, 22, an eccentric shaft seat, 23, an eccentric shaft bearing, 31, a connecting rod, 32, a connecting rod bearing, 33, a swinging fixing seat, 41, a translational bird seat bottom plate, 43, a translational sliding seat bottom plate, 44, a first guide rail, 51, a bird-straightening seat, 52, a translational bird seat, 53, a bird-straightening fixing plate, 54, a fixing groove, 55, a bolt block, 61, a tool apron, 62, a bolt opening, 63, a tool loading opening, 71, a collision bearing, 72, a collision block, 100, a roller guide rail, 104, a bird-straightening seat, 105, a collision block fixing hole, 106, an adjusting screw, 108, a speed reducer, 109, a pressing block, 110, an adjusting hole, 200, a sliding seat module, 201, a second guide rail, 300, a shaft core, 400.
Detailed Description
The following describes a translational cutting tool module according to the present invention in further detail with reference to the following embodiments and accompanying drawings.
Fig. 1-14 illustrate a translation tool module according to the present disclosure, the translation tool module including a linear slide rail mechanism, a bird seat fixing mechanism, a translation tool holder, and a striking device;
the linear slide rail mechanism comprises a translational bird seat bottom plate 41 and a translational slide seat bottom plate 43 arranged below the translational bird seat bottom plate 41, and a first guide rail 44 capable of driving the bird seat fixing mechanism to move along a track is arranged in the middle of the surface of the translational bird seat bottom plate 41;
the bird seat fixing mechanism comprises a positive bird seat 51 arranged above the first guide rail 44, a translational bird seat 52 arranged above the translational bird seat bottom plate 41 and a positive bird fixing plate 53, wherein a fixing groove 54 is formed in the translational bird seat 52, the positive bird seat 51 is positioned between the translational bird seat 52 and the positive bird fixing plate 53, and the positive bird seat 51 is arranged on the fixing groove 54 of the translational bird seat 52 through the positive bird fixing plate 53; a latch block 55 is also arranged on the side of the translation bird seat 52;
the translational cutter holder comprises a cutter holder 61, a plug pin port 62 and a plurality of knife mounting ports 63 which are arranged on the outer side of the cutter holder 61 and used for clamping cutters, the cutter holder 61 is positioned on the side edge of the translational bird holder bottom plate 41, and the plug pin port 62 corresponds to the plug pin block 55 to fix the translational cutter holder on the bird holder fixing mechanism;
the impacting device comprises an impacting bearing 71 arranged at the corner position of the translation bird seat 52 and an impacting block 72 which is arranged on the external equipment of the translation cutter module and is collided with the impacting bearing 71, wherein the impacting block 72 is arranged on the path passed by the impacting bearing 71, and the cutter is enabled to do the action of inner buckling through the collision of the impacting block 72 and the impacting bearing 71.
In the above-mentioned translation tool module, hit the piece 72 and belong to the part that sets up in translation tool module outside, again with striking bearing 71 and strike the relevant motion, hit the piece 72 and be located striking bearing 71's motion route, after hitting piece 72 and striking bearing 71 collision, striking bearing 71 is blockked, can carry out evasion formula and shift up or glide movement, drives upright bird seat 51 and translation blade holder simultaneously and shifts up or glide, in the embodiment of the utility model, hit piece 72 and striking bearing 71 and collide and make the cutter to the interior knot of upwarping of axle core 300 direction.
As the preferred scheme of the utility model, translation bird seat 52 side still is provided with one and can drives the eccentric link mechanism of bird seat fixed establishment side to side sway, and eccentric link mechanism includes eccentric drive assembly and connecting rod 31 subassembly.
As the preferred scheme of the utility model, eccentric transmission assembly includes eccentric shaft 21, is used for the eccentric shaft seat 22, the cover of fixed eccentric shaft 21 to establish the eccentric shaft bearing 23 that eccentric shaft seat 22 inner wall is used for bearing the motion of eccentric shaft 21, and eccentric shaft 21 still is connected with a motor 1.
As the utility model discloses a preferred scheme, connecting rod 31 subassembly includes connecting rod 31, connecting rod bearing 32 and sways fixing base 33, and connecting rod 31 both sides are provided with the through-hole, and connecting rod 31 one end is cup jointed on eccentric drive assembly, and connecting rod bearing 32 links to each other through connecting rod 31's the other end with swaying fixing base 33.
Fig. 7-9 show the bird side seat 104 of the present invention, wherein the middle portion of the bird side seat 104 is provided with a striking block fixing hole 105, the striking block passes through the striking block fixing hole 105 and is fixed on the bird side seat 104, the top of the bird side seat 104 is further provided with a pressing block 109, the bird side seat 104 is further provided with an adjusting screw 106, the middle portion of the striking block 72 is further provided with an adjusting hole 110, the adjusting screw 106 passes through the pressing block 109, the top of the bird side seat 104 and the adjusting hole 110 to adjust the up-down position of the striking block 72, the bird side seat 104 is used for assisting the striking block 72 to be fixed, and the adjusting screw 106 is used for adjusting the up-down position of the striking block 72; the collision block 72 further comprises a collision head and a collision rod, the collision head is arranged on the inner side of the translation cutter module and collides with the collision bearing 71, the collision rod penetrates through a nut to fix the collision block 72 on the regular bird side seat 104, and the nut is screwed after the height of the collision block 72 is adjusted.
As the preferred scheme of the utility model, translation slide bottom plate 43 top is provided with a plurality of roller guide rails 100 for along the orbit motion when removing about translation bird seat bottom plate 41, can not break away from translation bird seat bottom plate 41, more stable.
As the preferred scheme of the utility model, still be provided with speed reducer 108 between motor 1 and the eccentric shaft 21, it is used for reducing the rotational speed, increases the torque.
In the present embodiment, the motor 1 is a servo motor; the bottom plate of the translational slide seat bottom plate 43 is provided with a sliding groove, the sliding groove is arranged on the second guide rail 201 of the slide seat module 200, and the servo motor 1 and the crank rocker mechanism of the slide seat module 200 drive the translational slide seat bottom plate 43 to move along the second guide rail 201, namely move towards the shaft core 300 of the spring machine; the bird's side seat 104 is arranged at the side of the sliding seat module 200; the combination of the eccentric transmission mechanism and the swinging connecting rod 31 mechanism is similar to a crank rocker mechanism, wherein the eccentric shaft 21 is fixed on a rotating shaft of the motor 1 through an eccentric hole, and does cam motion when the motor 1 is started, and then the rotating motion of the motor 1 is converted into the left-right swing of the translation sliding seat bottom plate 43 through the connecting rod 31; specifically, the connecting rod 31 drives the connecting rod bearing 32 and the swinging fixing seat 33 to move, and the swinging fixing seat 33 is fixed on the first guide rail 44, so that the swinging fixing seat 33 drives the translational bird seat bottom plate 41 to move left and right, and the left and right movement of the translational bird seat 52 drives the positive bird seat 51 and the translational knife seat to move left and right.
The working principle is as follows: when the cutter is fed, the translation sliding seat bottom plate 43 moves towards the direction of the shaft core 300, the impact bearing 71 impacts the impact block 72 in the moving process, the positive bird seat 51 drives the cutter to perform upwarping back buckling action, and the folded angle of the spring 400 is smaller than 90 degrees; when the cutter is withdrawn, the bottom plate 43 of the translation sliding seat moves away from the shaft core 300, and the positive bird seat 51 drives the cutter to return; after feeding and retracting are completed by one stroke, the eccentric transmission mechanism and the swinging connecting rod 31 mechanism of the translational cutter module drive the translational sliding seat bottom plate 43 to swing left and right, and as the translational bird seat bottom plate 41 is arranged on the translational sliding seat bottom plate 43 and the positive bird seat 51 is arranged on the translational bird seat bottom plate 41, the translational bird seat bottom plate 41 and the positive bird seat 51 can swing left and right along with the translational sliding seat bottom plate 43, and the cutter can be switched once when lateral movement is performed every time, so that the translational cutter module is suitable for a multi-stroke processing mode; the utility model discloses translation cutter module passes through PLC integration in the DCS system, and the time of advancing the cutter and withdrawing the cutter is adjusted as required, realizes automatic control.
To sum up, the latch hole 62 of the translational cutter module of the present invention corresponds to the latch block 55 to fix the translational cutter holder on the bird seat fixing mechanism, the collision block 72 is disposed on the path through which the collision bearing 71 passes, and the collision block 72 collides with the collision bearing 71 to make the cutter perform the action of inner buckling; the eccentric link mechanism converts the rotary motion of the motor 1 into the left and right movement of the bird straightening seat 51; the adjusting screw 106 penetrates through the pressing block 109, the top of the bird side seat 104 and the adjusting hole 110 of the collision block 72 to adjust the upper position and the lower position of the collision block 72, and the bird side seat 104 is used for assisting the collision block 72 to be fixed; the roller guide rail 100 enables the translational bird seat bottom plate 41 to move along a track when moving left and right, so that the translational bird seat bottom plate 41 cannot be separated from the translational bird seat bottom plate, and the stability is higher; the speed reducer 108 is used for reducing the rotating speed and increasing the torque; the utility model discloses overall structure is novel, and reasonable in design has effectively solved present translation slide about can't be less than the problem of 90 dog-ears to spring 400 processing.
While the invention has been described in conjunction with the specific embodiments set forth above, it is evident that many alternatives, modifications, and variations will be apparent to those skilled in the art in light of the foregoing description. Accordingly, it is intended to embrace all such alternatives, modifications, and variations that fall within the spirit and scope of the appended claims.

Claims (7)

1. A translation tool module is characterized by comprising a linear slide rail mechanism, a bird seat fixing mechanism, a translation tool apron and an impacting device;
the linear slide rail mechanism comprises a translational bird seat bottom plate and a translational slide seat bottom plate arranged below the translational bird seat bottom plate, wherein a first guide rail capable of driving the bird seat fixing mechanism to move along a track is arranged in the middle of the surface of the translational bird seat bottom plate;
the bird seat fixing mechanism comprises a positive bird seat arranged above the first guide rail, a translational bird seat arranged above the translational bird seat bottom plate and a positive bird fixing plate, wherein a fixing groove is formed in the translational bird seat, the positive bird seat is positioned between the translational bird seat and the positive bird fixing plate, and the positive bird seat is arranged on the fixing groove of the translational bird seat through the positive bird fixing plate; a latch block is also arranged on the lateral side of the translation bird seat;
the translational tool apron comprises a tool apron, a pin hole and a plurality of tool mounting holes which are arranged on the outer side of the tool apron and used for clamping tools, the tool apron is positioned on the lateral side of the translational bird seat bottom plate, and the pin hole corresponds to a pin block to fix the translational tool apron on the bird seat fixing mechanism;
the striking device comprises a striking bearing arranged at the corner of the translational bird seat, and a striking block which is arranged on the external equipment of the translational cutter module and collides with the striking bearing, wherein the striking block is arranged on a path through which the striking bearing passes, and the striking block collides with the striking bearing to make the cutter perform the action of inner buckling.
2. The translational tool module according to claim 1, wherein the translational bird seat is further provided at a side thereof with an eccentric link mechanism capable of driving the bird seat fixing mechanism to swing left and right, the eccentric link mechanism comprising an eccentric transmission assembly and a link assembly.
3. The translational tool module set forth in claim 2, wherein the eccentric transmission assembly comprises an eccentric shaft, an eccentric shaft seat for fixing the eccentric shaft, and an eccentric shaft bearing disposed on an inner wall of the eccentric shaft seat for supporting the movement of the eccentric shaft, the eccentric shaft further having a motor connected thereto.
4. The translational tool module according to claim 2, wherein the connecting rod assembly comprises a connecting rod, a connecting rod bearing and a swinging fixing seat, through holes are formed in two sides of the connecting rod, one end of the connecting rod is sleeved on the eccentric transmission assembly, and the connecting rod bearing and the swinging fixing seat are connected through the other end of the connecting rod.
5. The translational tool module as set forth in claim 1, wherein a right bird side seat is further provided at the exterior of the translational tool module, a striking block fixing hole is provided at the middle of the right bird side seat, the striking block passes through the striking block fixing hole and is fixed on the right bird side seat, a pressing block is further provided at the top of the right bird side seat, an adjusting screw is further provided on the right bird side seat, an adjusting hole is further provided at the middle of the striking block, and the adjusting screw passes through the pressing block, the top of the right bird side seat and the striking block adjusting hole to adjust the up-down position of the striking block.
6. The translational tool module according to claim 1, wherein a plurality of roller guides are arranged above the bottom plate of the translational slide seat, so that the bottom plate of the translational bird seat moves along a track when moving left and right without being separated from the bottom plate of the translational bird seat, and is more stable.
7. The translating tool module of claim 3 wherein a speed reducer is further disposed between the motor and the eccentric shaft.
CN201921216920.1U 2019-07-30 2019-07-30 Translation cutter module Active CN210702275U (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
CN201921216920.1U CN210702275U (en) 2019-07-30 2019-07-30 Translation cutter module
TW108213779U TWM592351U (en) 2019-07-30 2019-10-18 Shifting cutter module
JP2020002908U JP3228380U (en) 2019-07-30 2020-07-14 Advection knife module
KR2020200002631U KR200494993Y1 (en) 2019-07-30 2020-07-21 Displaceable tool module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921216920.1U CN210702275U (en) 2019-07-30 2019-07-30 Translation cutter module

Publications (1)

Publication Number Publication Date
CN210702275U true CN210702275U (en) 2020-06-09

Family

ID=70768057

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921216920.1U Active CN210702275U (en) 2019-07-30 2019-07-30 Translation cutter module

Country Status (4)

Country Link
JP (1) JP3228380U (en)
KR (1) KR200494993Y1 (en)
CN (1) CN210702275U (en)
TW (1) TWM592351U (en)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2978075B2 (en) * 1994-10-07 1999-11-15 旭精機工業株式会社 Swing cut type wire cutting device for coiling machine
JP3329692B2 (en) 1997-05-23 2002-09-30 旭精機工業株式会社 Spring forming equipment
KR101479035B1 (en) 2013-10-08 2015-01-05 (주)에이텍 Manufacturing device of wire products with tool position change function
TWM541340U (en) 2016-09-29 2017-05-11 Boluo Shiwan Union Precision Hardware Co Ltd Servo-rotating all-function tool module for use in spring forming machine

Also Published As

Publication number Publication date
TWM592351U (en) 2020-03-21
JP3228380U (en) 2020-10-22
KR20210000334U (en) 2021-02-10
KR200494993Y1 (en) 2022-02-08

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