CN202480159U - Punch machine - Google Patents
Punch machine Download PDFInfo
- Publication number
- CN202480159U CN202480159U CN 201220009698 CN201220009698U CN202480159U CN 202480159 U CN202480159 U CN 202480159U CN 201220009698 CN201220009698 CN 201220009698 CN 201220009698 U CN201220009698 U CN 201220009698U CN 202480159 U CN202480159 U CN 202480159U
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- China
- Prior art keywords
- pedestal
- feeding
- stamping knife
- head
- guide rail
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- Withdrawn - After Issue
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- Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)
Abstract
The utility model discloses a punch machine, comprising a principal shaft which is arranged in a machine head and driven by a drive motor to rotate, a longitudinal drive substrate which is slidingly arranged in the machine head and driven by the principal shaft to move up and down by a drive mechanism, a stamping knife which is fixedly arranged on the longitudinal drive substrate and is used for punching materials, a working table which is arranged below the machine head and is used for holding materials and a feeding mechanism which is arranged at the working table and used for clamping materials and can perform feed movement at the horizontal X direction and Y direction by the drive of a feeding drive mechanism. The feeding mechanism delivers the punching position of materials to the position below the stamping knife and the longitudinal drive substrate drives the stamping knife to move downwards to punch the materials by the drive of the drive motor.
Description
Technical field
The utility model relates to a kind of perforating press that is used for punching on thin material.
Background technology
In commercial production, often need carry out the punching operation to thin material such as cloth, plastic film etc.Patent of invention title: a kind of nonwoven punching shaped device; Number of patent application: 201010202137.7 disclose a kind of nonwoven punching shaped device; This device comprises pneumatic decompressor, cutting die device, electronic conveyer and motor casing, and pneumatic decompressor is located at the top of this device, and cutting die device is connected the bottom of pneumatic decompressor; These cutting die device support and connection are on motor casing end face platform, and electronic conveyer is located at the top of motor casing.The disclosed nonwoven punching of this patent shaped device owing to adopt pneumatic decompressor, so the efficient of punching is low, can't rapid Continuous carry out punching.Electronic conveyer can only be with material by input direction to the outbound course unidirectional delivery; Therefore once can only dash a row hole; And the yardstick of the uncontrollable material feeding of electronic conveyer; The spacing in each hole can only be regulated by the transfer rate of electronic conveyer when punching, can't accurately control and regulate the spacing between each hole.The conveying mechanism of electronic conveyer is driving wheel and driven pulley, and the band that hangs tight that can only be used for after the extrusion molding is carried, and scope of application limitation is big.
Summary of the invention
The utility model technical problem to be solved is to above-mentioned prior art present situation, and a kind of perforating press is provided, and has overcome hole punched device punching quickly and efficiently in the prior art, and can't accurately locate the technical barrier of punching position.
The utility model solves the problems of the technologies described above the technical scheme that is adopted: a kind of perforating press comprises: be located at the main shaft in the head, by the drive motors driven rotary; Slip is arranged at the vertical transmission pedestal in the head, drives it by main shaft through transmission mechanism and moves up and down; Be fixedly installed on the stamping knife on vertical transmission pedestal, be used for to the material punching; Be located at the workbench of head below, be used to place material; Be arranged on the feed mechanism on the workbench, be used for the clamping material and under the feeding driving mechanism drives, can do feed motion in the directions X and the Y direction of level; Feed mechanism is delivered to the stamping knife below with the punching position of material, and under the drive of said drive motors, vertically the transmission pedestal drives stamping knife and moves downward punching on material.
For optimizing technique scheme, the utility model also comprises following improved technical scheme.
Be provided with holder in the above-mentioned head, vertically be provided with guide rail structure longitudinally between transmission pedestal and the holder; Vertically the transmission pedestal moves up and down along its guide rail structure under the drive of main shaft and transmission mechanism.
Above-mentioned vertical transmission pedestal is composed of a fixed connection by header board and back plate; Holder is fixed with longitudinal rail, is shaped on chute in the both sides of longitudinal rail; Vertically the transmission pedestal is located in the chute, and header board is fixedly connected with stamping knife, and back plate is connected with the front end of main shaft through transmission mechanism.
Above-mentioned transmission mechanism comprises the eccentric wheel that is fixed on front-end of spindle, is arranged at the connecting axle on vertical transmission pedestal, and the crank between eccentric wheel and vertical transmission pedestal.
Above-mentioned stamping knife comprises knife rest, and knife rest is equipped with stamping knife head and presser foot device.
Above-mentioned presser foot device comprises the presser feet that is sheathed on outside the stamping knife head, is provided with back-moving spring between presser feet and the knife rest; Presser feet is positioned at the below of stamping knife head, before punching, prior to stamping knife head contact material and push down, under action of reset spring, keeps during punching pushing down material, and after punching, delays in the stamping knife head and break away from material.
Above-mentioned feed mechanism comprises the pedestal that is connected with the feeding driving mechanism, and pedestal is set with delivery sheet and actuating arm; Actuating arm is provided with holding pad that can move up and down and the driving cylinder that is used for the motion of drive pressure flitch.
Above-mentioned feeding driving mechanism comprises first guide rail structure and second guide rail structure of stock support, phase quadrature, and the first synchronous band and second of phase quadrature is with synchronously; Pedestal is slidingly arranged on the stock support through first guide rail structure, and the first synchronous band is arranged on the stock support and with pedestal and is connected, and stock support is provided with the driven in synchronism that drives the first synchronous band and takes turns, and the driven in synchronism wheel matches with the spline driving shaft; Stock support is arranged on second guide rail structure, and is connected with the second synchronous band.
Above-mentioned stock support is along the directions X setting; First guide rail structure comprises the 3rd feeding guide and the 4th feeding guide that is arranged on the stock support, and pedestal is fixedly installed on the 4th feeding slide block of the 3rd feeding slide block and the 4th feeding guide of the 3rd feeding guide; First synchronously band for being arranged on X between the 3rd feeding guide and the 4th feeding guide to synchronous band; First driven in synchronism wheel is taken turns to driven in synchronism to the X of synchronous band for driving X; The spline drive shaft turns is arranged in the support, and an end of spline driving shaft matches to drive motors with X, drives the rotation of spline driving shaft by X to drive motors; X is sheathed on the spline driving shaft to the driven in synchronism wheel, and can endwisely slipping along the spline driving shaft.
The second above-mentioned guide rail structure comprises along the Y direction and is arranged on first feeding guide and second feeding guide in the support, second synchronously band for being arranged on Y between first feeding guide and second feeding guide to synchronous band.
Compared with prior art; A kind of perforating press of the utility model; The main shaft that adopts drive motors to drive is arranged at the vertical transmission pedestal in the head with sliding, and drives it by main shaft through transmission mechanism and moves up and down, have simple in structure, punching speed fast, be convenient to the advantage of installing and debugging.On each stamping knife, also be provided with presser foot device; Before punching prior to stamping knife head contact material and push down; Under action of reset spring, keep during punching pushing down material, and after punching, delay, have advantage simple in structure, easy for installation, as to be convenient to change the stamping knife head in stamping knife head disengaging material.The feed mechanism of the utility model adopts delivery sheet and holding pad clamping material, and holding pad drives through driving cylinder on the actuating arm and linkage, can freely move up and down with respect to delivery sheet, is convenient to place material.The feeding driving mechanism comprises first guide rail structure and second guide rail structure that stock support, phase quadrature are provided with, and the first synchronous band and second that the phase quadrature is provided with is with synchronously.Pedestal is slidingly arranged on the stock support through first guide rail structure, can move along the first guide rail structure direction with respect to stock support.Stock support is arranged on second guide rail structure, and pedestal and stock support can be used as whole edge second guide rail structure and move.Through first band and second driving of band synchronously synchronously, feed mechanism can be in the directions X and the motion fast arbitrarily of Y direction of level, and the stamping knife below is delivered in the position of will punching exactly.
Description of drawings
Fig. 1 is the perspective view of the utility model preferred embodiment.
Fig. 2 is the perspective view of head intraware among Fig. 1.
Fig. 3 is the front view of Fig. 2.
Fig. 4 is the right view of Fig. 3.
Fig. 5 is the assembling decomposing schematic representation of Fig. 2.
Fig. 6 is the perspective view of support among Fig. 1.
Fig. 7 is the perspective view of base inner assembly among Fig. 6.
Fig. 8 is the front plan view of Fig. 7.
Fig. 9 is the assembling decomposing schematic representation of Fig. 7.
The specific embodiment
Embodiment to the utility model describes in further detail below in conjunction with accompanying drawing.
Fig. 1 is extremely shown in Figure 9 to be the structural representation of the utility model.
Reference numeral wherein is: head 1; Holder 11; Chute 11a; Longitudinal rail 12; Longitudinal sliding block 13; Stamping knife slide rail 14; Stamping knife slide block 15; Main shaft 2; Eccentric wheel 21; Eccentrically weighted shaft 21a; Crank 22; Drive motors 23; Power output shaft 24; Vertical transmission pedestal 3; Header board 3a; Connecting axle 3b; Back plate 3c; Stamping knife 4; Knife rest 41; Stamping knife head 43; Presser feet pedestal 45; Presser feet support 46; Presser bar 47; Back-moving spring 48; Presser feet 49; Stamping knife hole 49a; Feed mechanism 6; Pedestal 61; Delivery sheet 62; Holding pad 63; Actuating arm 64; Pressing plate guide rail 65; Pressing plate slide block 66; Drive cylinder 67; Linkage 68; Support 7; Workbench 71; The first synchronous wheel seat 72; First synchronizing wheel 73; Spline driving shaft 74; X is to drive motors 75; Bottom support bracket 76; The second relief hole 76a; Counterdie mounting bracket 77; The first relief hole 77a; Bed die 78; Tool bore 78a; First feeding guide 81; The first feeding slide block 81a; Second feeding guide 82; The second feeding slide block 82a; Y is to being with 84 synchronously; Y is to drive motors 85; Y is to driven in synchronism wheel 86; Fixed head 87; Stock support 9; X is to being with 91 synchronously; The 3rd feeding guide 92; The 3rd feeding slide block 92a; The 3rd feeding guide 92; The 4th feeding guide 93; The 4th feeding slide block 93a; The second synchronous wheel seat 94; Second synchronizing wheel 95; X is to driven in synchronism wheel 96.
The perforating press of present embodiment comprises head 1 and support 7.The rear portion of head 1 is fixedly connected with the rear portion of support 7.Be provided with workbench 71 in the upper surface of support 7, the front portion of head 1 is provided with stamping knife 4, and stamping knife 4 is positioned at the top of workbench 71.Workbench 71 is provided with the feed mechanism 6 that is used to clamp thin material, in support 7, is provided with to drive the feeding driving mechanism of feed mechanism 6 along horizontal X direction or the accurate feeding of Y direction.
In the utility model, stamping knife 4 is driven by drive motors 23 and Drive Structure and does the punching campaign.Drive Structure comprises vertical transmission pedestal 3 that can move up and down, and the main shaft 2 of drive motors 23 interlocks and be arranged on the transmission mechanism between vertical transmission pedestal 3 and the main shaft 2.
, in head 1, be provided with bearing, and be fitted with the main shaft 2 that can rotate to shown in Figure 5 like Fig. 2 through bearing.The front end of main shaft 2 is connected with head 1 anterior interior vertical transmission pedestal 3 through transmission mechanism, and the tail end of main shaft 2 is connected with the power output shaft 24 of drive motors 23, drives main shafts 2 rotations by drive motors 23.Can directly be connected between the power output shaft 24 of main shaft 2 and drive motors 23, also can connect, perhaps connect through transmission mechanisms such as travelling gear or driving belts through shaft coupling.
Be fixed with holder 11 in the front portion of head 1.On holder 11, be fixed with longitudinal rail 12, vertically transmission pedestal 3 is connected with longitudinal sliding block 13 on the longitudinal rail 12, simultaneously vertically transmission pedestal 3 through the front end of transmission mechanism connection main shaft 2.Under the rotation of main shaft 2 drove, vertical transmission pedestal 3 longitudinally guide rail 12 moved up and down.
In the present embodiment, vertically transmission pedestal 3 is composed of a fixed connection by header board 3a and back plate 3c.Be shaped on chute 11a in the both sides of longitudinal rail 12.Vertically transmission pedestal 3 is located among the chute 11a, and vertically the header board 3a of transmission pedestal 3 is fixed with stamping knife 4, and vertically the back plate 3c of transmission pedestal 3 is connected through the front end of transmission mechanism with main shaft 2.Vertically transmission pedestal 3 moves up and down along chute 11a and longitudinal rail 12 under the rotation of main shaft 2 drives.
The transmission mechanism of present embodiment comprises the eccentric wheel 21 that is fixed on main shaft 2 front ends, is arranged at the connecting axle 3b of vertical transmission pedestal 3 back plate 3c, and the crank 22 between eccentric wheel 21 and vertical transmission pedestal 3.One end of crank 22 is rotationally connected through eccentrically weighted shaft 21a and eccentric wheel 21, and the other end is rotationally connected with the connecting axle 3b at vertical transmission pedestal 3 rear portions.Transmission mechanism is converted into pumping of vertical transmission pedestal 3 with rotatablely moving of main shaft 2, and longitudinal rail 12 plays the effect of guiding in moving up and down.
Stamping knife 4 comprises knife rest 41, and knife rest 41 is fixedly connected with header board 3a, in the bottom of knife rest 41 stamping knife head 43 is installed.Be connected with presser foot device on the knife rest 41.Presser foot device comprises presser feet pedestal 45, and presser feet pedestal 45 is fixed with presser feet support 46, presser feet support 46 be provided with can be up and down presser bar 47, between presser bar 47 and presser feet support 46, be provided with back-moving spring 48.One end of back-moving spring 48 matches with presser feet support 46, and the other end is connected cooperation with presser bar 47.Be connected with presser feet 49 in the lower end of presser bar 47, be shaped on the stamping knife hole 49a that is used to pass stamping knife head 43 on the presser feet 49, the stamping knife hole 49a of presser feet 49 is sheathed on outside the stamping knife head 43.Presser feet 49 can move up and down with presser bar 47.When not working, presser bar 47 is under the elastic force effect of back-moving spring 48, and presser bar 47 is in the lower limit of its stroke, and this moment, presser feet 49 was positioned at the below of stamping knife head 43.
When stamping knife 4 carried out the punching action, stamping knife 4 moved downward under the active force of slip drive rod 31, and the presser feet 49 of stamping knife 4 is pushed down material prior to stamping knife head 43 contact materials.Stamping knife 4 continues to move downward subsequently, and presser feet 49 keeps pushing down the state of material, and presser bar 47 overcomes spring force and moves upward with respect to presser feet support 46, and back-moving spring 48 is compressed.Stamping knife head 43 passes the stamping knife hole 49a of presser feet 49, and after going out the hole on the material, stamping knife 4 moves upward.Stamping knife head 43 moves upward away from material prior to presser feet 49, and presser bar 47 time-delay under back-moving spring 48 effects keeps pushing down the material state, prevents that stamping knife head 43 from causing that material upwarps when breaking away from material.
To shown in Figure 9, be provided with the workbench 71 that is used to place material like Fig. 6, on workbench 71, be provided with the feed mechanism 6 that is used for the clamping material and drive the feeding driving mechanism that feed mechanism 6 moves along horizontal X direction and Y direction on the top of support 7.In Fig. 8, the left and right directions of directions X and drawing coincides, and the above-below direction of Y direction and drawing coincides.
Feed mechanism 6 comprises the pedestal 61 that is connected with the feeding driving mechanism, on pedestal 61, is set with delivery sheet 62 and actuating arm 64.The front portion of actuating arm 64 is shaped on pressing plate guide rail 65 longitudinally, and the pressing plate slide block 66 on the pressing plate guide rail 65 is fixed with holding pad 63.Holding pad 63 can move up and down along pressing plate guide rail 65, is used to cooperate delivery sheet 62 to compress material.Be respectively arranged with in the both sides of actuating arm 64 and drive cylinder 67, the piston rod that drives cylinder 67 connects pressing plate slide blocks 66 through linkage 68, drives pressing plate slide block 66 and moves up and down along pressing plate guide rail 65, thereby lift or depress holding pad 63.
The feeding driving mechanism comprises first guide rail structure and second guide rail structure of stock support 9, phase quadrature, and the first synchronous band and second of phase quadrature is with synchronously; Pedestal 61 is slidingly arranged on the stock support 9 through first guide rail structure; The first synchronous band is arranged on the stock support 9 and with pedestal 61 and is connected; Described stock support 9 is provided with the driven in synchronism wheel that drives the first synchronous band, and described driven in synchronism wheel matches with spline driving shaft 74; Stock support 9 is arranged on second guide rail structure, and is connected with the second synchronous band.
In the present embodiment, in support 7, be fixed with along i.e. second guide rail structure of first feeding guide 81 of Y direction and second feeding guide, 82, the first feeding guides 81 and second feeding guide 82.
Be fixed with the stock support 9 that is provided with along directions X on the second feeding slide block 82a of the first feeding slide block 81a of first feeding guide 81 and second feeding guide 82.Be provided with Y in the bottom of stock support 9 to being with 84 synchronously, Y is to being with 84 promptly second to be with synchronously synchronously.Stock support 9 and Y be to being with 84 to be connected synchronously, and at Y to being with 84 effect lower edges, first feeding guide 81 and second feeding guide 82 to move back and forth synchronously in the Y direction.
In support 7, be fixed with the first synchronous wheel seat 72, Y to driven in synchronism wheel 86 and Y to drive motors 85.Be provided with first synchronizing wheel 73 in the first synchronous wheel seat 72, Y is to being with 84 to be arranged at first synchronizing wheel 73 and Y between driven in synchronism wheel 86 synchronously.Y matches to driven in synchronism wheel 86 with Y through travelling gear to drive motors 85, and drives Y to being with 84 to rotate synchronously.Y is to be with 84 to be provided with fixed head 87 synchronously, and fixed head 87 is fixedly connected with the middle part of stock support 9.
Stock support 9 is provided with X to synchronously with 91 and the 3rd feeding guide 92 and the 4th feeding guide 93 that are provided with along directions X.In the present embodiment, X is to be with 91 promptly first to be with synchronously synchronously, and the 3rd feeding guide 92 and the 4th feeding guide 93 i.e. first guide rail structure.The pedestal 61 of feed mechanism 6 is fixedly installed on the 4th feeding slide block 93a of the 3rd feeding slide block 92a and the 4th feeding guide 93 of the 3rd feeding guide 92, and pedestal 61 can move on directions X with respect to stock support 9.
One end of stock support 9 be set with second synchronous wheel seat 94, the second synchronous wheel seats 94 be provided with X to synchronously with 91 second synchronizing wheels 95 that match.The other end of stock support 9 is provided with X to driven in synchronism wheel 96.X is to being with 91 to be arranged on second synchronizing wheel 95 and X between driven in synchronism wheel 96 synchronously, and the second synchronous wheel seat 94, X to be with synchronously 91 and X take turns 96 to driven in synchronism and can on the Y direction, move with stock support 9 integral body.X is sheathed on the spline driving shaft 74 to driven in synchronism wheel 96, and can endwisely slipping along spline driving shaft 74.Spline driving shaft 74 rotates and is arranged in the support 7, and an end of spline driving shaft 74 matches to drive motors 75 with X, drives 74 rotations of spline driving shaft by X to drive motors 75.X both can drive X and be with 91 motions to synchronously with 74 rotations of spline driving shaft again along the endwisely slipping of spline driving shaft 74 to driven in synchronism wheel 96.X preferably adopts stepper motors with Y to drive motors 85 to drive motors 75, can accurately control the move distance of stock support 9 on directions X and Y direction.
The feeding driving mechanism of present embodiment also can be made simple transformation; Stock support 9 like the feeding driving mechanism can be laid along the Y direction; On stock support 9, be provided with Y to synchronous band and Y to guide rail, stock support 9, Y to synchronous band and Y to guide rail can be whole along X to guide rail movement.
Support 7 is fixedly connected with bottom support bracket 76, and bottom support bracket 76 is positioned at the below of stamping knife 4.On bottom support bracket 76, be fixed with counterdie mounting bracket 77, be embedded with bed die 78 in the counterdie mounting bracket 77.Be shaped on the tool bore 78a that matches with stamping knife head 43 on the bed die 78, stamping knife head 43 descend with tool bore 78a be engaged in go out the hole on the material after, the waste material that sweeps away is through the second relief hole 76a discharge of the first relief hole 77a and the bottom support bracket 76 of counterdie mounting bracket 77.
The most preferred embodiment of the utility model is illustrated, and various variations of being made by those of ordinary skills or remodeling can not break away from the scope of the utility model.
Claims (10)
1. a perforating press is characterized in that comprising: be located at the main shaft (2) in the head (1), by drive motors (23) driven rotary; Slip is arranged at the vertical transmission pedestal (3) in the head (1), drives it by main shaft (2) through transmission mechanism and moves up and down; Be fixedly installed on the stamping knife (4) on vertical transmission pedestal (3), be used for to the material punching; Be located at the workbench (71) of head (1) below, be used to place material; Be arranged on the feed mechanism (6) on the workbench (71), be used for the clamping material and under the feeding driving mechanism drives, can do feed motion in the directions X and the Y direction of level; Described feed mechanism (6) is delivered to stamping knife (4) below with the punching position of material, and under the drive of said drive motors (23), vertically transmission pedestal (3) drives stamping knife (4) and moves downward punching on material.
2. a kind of perforating press according to claim 1 is characterized in that: be provided with holder (11) in the described head (1), vertically be provided with guide rail structure longitudinally between transmission pedestal (3) and the holder (11); Vertically transmission pedestal (3) moves up and down along its guide rail structure under the drive of main shaft (2) and transmission mechanism.
3. a kind of perforating press according to claim 2 is characterized in that: described vertical transmission pedestal (3) is composed of a fixed connection by header board (3a) and back plate (3c); Described holder (11) is fixed with longitudinal rail (12), is shaped on chute (11a) in the both sides of longitudinal rail (12); Vertically transmission pedestal (3) is located in the chute (11a), and described header board (3a) is fixedly connected with stamping knife (4), and described back plate (3c) is connected through the front end of transmission mechanism with main shaft (2).
4. a kind of perforating press according to claim 3; It is characterized in that: described transmission mechanism comprises the eccentric wheel (21) that is fixed on main shaft (2) front end; Be arranged at the connecting axle (3b) on vertical transmission pedestal (3), and be positioned at the crank (22) between eccentric wheel (21) and the vertical transmission pedestal (3).
5. a kind of perforating press according to claim 1 is characterized in that: described stamping knife (4) comprises knife rest (41), and described knife rest (41) is equipped with stamping knife head (43) and presser foot device.
6. a kind of perforating press according to claim 5 is characterized in that: described presser foot device comprises the presser feet (49) that is sheathed on outside the stamping knife head (43), is provided with back-moving spring (48) between presser feet (49) and the knife rest (41); Presser feet (49) is positioned at the below of stamping knife head (43), before punching, prior to stamping knife head (43) contact material and push down, keeps down pushing down material in back-moving spring (48) effect during punching, and after punching, delays in stamping knife head (43) disengaging material.
7. according to claim 1 or 3 or 6 described a kind of perforating press, it is characterized in that: described feed mechanism (6) comprises the pedestal (61) that is connected with the feeding driving mechanism, and described pedestal (61) is set with delivery sheet (62) and actuating arm (64); Described actuating arm (64) is provided with the holding pad (63) that can move up and down and is used for the driving cylinder (67) of drive pressure flitch (63) motion.
8. a kind of perforating press according to claim 7 is characterized in that: described feeding driving mechanism comprises first guide rail structure and second guide rail structure of stock support (9), phase quadrature, and the first synchronous band and second of phase quadrature is with synchronously; Described pedestal (61) is slidingly arranged on the stock support (9) through first guide rail structure; The described first synchronous band is arranged at stock support (9) and upward and with pedestal (61) is connected; Described stock support (9) is provided with the driven in synchronism wheel that drives the first synchronous band, and described driven in synchronism wheel matches with spline driving shaft (74); Described stock support (9) is arranged on second guide rail structure, and is connected with the second synchronous band.
9. a kind of perforating press according to claim 8 is characterized in that: described stock support (9) is along the directions X setting; Described first guide rail structure comprises the 3rd feeding guide (92) and the 4th feeding guide (93) that is arranged on the stock support (9), and described pedestal (61) is fixedly installed on the 4th feeding slide block (93a) of the 3rd feeding slide block (92a) and the 4th feeding guide (93) of the 3rd feeding guide (92); Described first synchronously band for being arranged on X between the 3rd feeding guide (92) and the 4th feeding guide (93) to synchronous band (91); Described first driven in synchronism wheel is taken turns (96) to the X of synchronous band (91) to driven in synchronism for driving X; Described spline driving shaft (74) rotates and is arranged in the support (7), and an end of spline driving shaft (74) matches to drive motors (75) with X, drives spline driving shaft (74) rotation by X to drive motors (75); Described X is sheathed on the spline driving shaft (74) to driven in synchronism wheel (96), and can endwisely slipping along spline driving shaft (74).
10. a kind of perforating press according to claim 9; It is characterized in that: described second guide rail structure comprises along the Y direction and is arranged on first feeding guide (81) and second feeding guide (82) in the support (7), described second synchronously band be to be arranged on Y between first feeding guide (81) and second feeding guide (82) to synchronous band (84).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220009698 CN202480159U (en) | 2012-01-11 | 2012-01-11 | Punch machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220009698 CN202480159U (en) | 2012-01-11 | 2012-01-11 | Punch machine |
Publications (1)
Publication Number | Publication Date |
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CN202480159U true CN202480159U (en) | 2012-10-10 |
Family
ID=46954616
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN 201220009698 Withdrawn - After Issue CN202480159U (en) | 2012-01-11 | 2012-01-11 | Punch machine |
Country Status (1)
Country | Link |
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CN (1) | CN202480159U (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102514041A (en) * | 2012-01-11 | 2012-06-27 | 宁波舒普机电科技有限公司 | Punching machine |
CN106737944A (en) * | 2016-12-30 | 2017-05-31 | 广东瑞洲科技有限公司 | A kind of cutting head |
CN117719024A (en) * | 2024-02-07 | 2024-03-19 | 天津晨虹新材料有限公司 | Leather punching machine |
-
2012
- 2012-01-11 CN CN 201220009698 patent/CN202480159U/en not_active Withdrawn - After Issue
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102514041A (en) * | 2012-01-11 | 2012-06-27 | 宁波舒普机电科技有限公司 | Punching machine |
CN106737944A (en) * | 2016-12-30 | 2017-05-31 | 广东瑞洲科技有限公司 | A kind of cutting head |
CN117719024A (en) * | 2024-02-07 | 2024-03-19 | 天津晨虹新材料有限公司 | Leather punching machine |
CN117719024B (en) * | 2024-02-07 | 2024-04-09 | 天津晨虹新材料有限公司 | Leather punching machine |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20121010 Effective date of abandoning: 20130306 |
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RGAV | Abandon patent right to avoid regrant |