CN114260367A - Diversified stamping die that fixes a position and user equipment thereof - Google Patents

Diversified stamping die that fixes a position and user equipment thereof Download PDF

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Publication number
CN114260367A
CN114260367A CN202111565877.1A CN202111565877A CN114260367A CN 114260367 A CN114260367 A CN 114260367A CN 202111565877 A CN202111565877 A CN 202111565877A CN 114260367 A CN114260367 A CN 114260367A
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plate
forming step
base
fixedly arranged
guillotine
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CN202111565877.1A
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CN114260367B (en
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魏海娃
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Yueyang Jingzhao Xing Mold Manufacturing Co ltd
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Individual
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Abstract

The invention discloses a multi-azimuth positioning stamping die and use equipment thereof, and relates to the technical field of steel structure stamping processing, wherein the multi-azimuth positioning stamping die comprises a base, the base is horizontally fixed on the ground, a supporting plate which is upright at the top end of the base is fixedly arranged on the top surface of the base, a top supporting plate is fixedly arranged at the top end of the supporting plate, a reciprocating push rod assembly is fixedly arranged at the top end of the top supporting plate, a lifting push rod extends downwards from the reciprocating push rod assembly, a workbench is fixedly arranged at the bottom end of the lifting push rod, a raised guillotine is fixedly arranged on the left side of the bottom end surface of the workbench, a corner guillotine is fixedly arranged on the right side of the bottom end surface of the workbench, and a multi-order bending block is arranged at the middle position of the corner guillotine and the guillotine; according to the invention, the plate is conveyed intermittently by the plate feeding mechanism and is matched with intermittent stamping of the reciprocating push rod assembly, so that continuous processing without disassembly of the plate is realized, and the efficiency of bending and molding the plate in batches by the die is effectively improved.

Description

Diversified stamping die that fixes a position and user equipment thereof
Technical Field
The invention relates to the technical field of steel structure stamping, in particular to a multi-directional positioning stamping die and using equipment thereof.
Background
The stamping die is a special process equipment for processing materials (metal or nonmetal) into parts (or semi-finished products) in cold stamping processing, and is called a cold stamping die (commonly called a cold stamping die). The press working is a press working method in which a material is pressed at room temperature by a die mounted on a press machine to be separated or plastically deformed, thereby obtaining a desired part, and the die may be classified into five types, i.e., a punching die, a bending die, a drawing die, a forming die, and a compression die, according to the difference in the product working method.
Currently, patent number CN202022656782.8 discloses a sheet metal stamping die, belongs to the technical field of dies, and this sheet metal stamping die includes the bottom plate, first mounting groove has been seted up at the middle part of bottom plate upper surface, the inside swing joint of first mounting groove has the lower bolster, one side swing joint that the medial surface of bottom plate is close to first mounting groove has the fore-set, the last fixed surface of bottom plate is connected with the hydraulic stem. This sheet metal stamping die, through first mounting groove, the fore-set, adjust pole and infra red ray induction ware's setting, the lower bolster is fixed inside first mounting groove, the fore-set links to each other with adjusting the pole, rotate the tight dynamics of clamp that the regulation pole can change the fore-set, press from both sides tightly the lower bolster, the offset takes place for the lower bolster under the effect of the impact force when avoiding the punching press, the quality of very big improvement panel punching press, the installation is dismantled conveniently, the infra red ray induction ware prevents that the staff from stretching into the mould of in service at the during operation careless handle, increase the protection to staff's personal safety.
The multi-azimuth positioning stamping die and the use equipment thereof disclosed by the patent still have some defects in actual construction, and the specific defects are as follows:
one, current, stamping die is when punching press to panel, when bending the punching press piece of a plurality of drum structure into with panel punching press, often cut to required width through earlier with panel width, the shaping of bending is once only convoluteed to panel after will cutting again, this kind of mode needs two machines to carry out the cooperation work at least, and need carry out secondary or a lot of clamping to panel, still need the manual work to install and roll over and unload in the in-process of bending, such mode can make panel punching press efficiency very low.
Disclosure of Invention
The invention aims to provide a multi-azimuth positioning stamping die and use equipment thereof, and solves the technical problem that in the prior art, when the stamping die is used for stamping a plate and bending the plate into a plurality of stamping sheets with a cylindrical structure, the stamping die usually cuts the plate to the required width firstly and then winds and bends the cut plate once to form the plate, at least two machines are required to be matched in the mode, the plate needs to be clamped for two times or more, and the plate still needs to be manually installed and disassembled in the bending process, so that the plate stamping efficiency is very low.
The technical problem to be solved by the invention is realized by adopting the following technical scheme: a multi-azimuth positioning stamping die and using equipment thereof comprise a base, wherein the base is horizontally fixed on the ground, a supporting plate standing upright at the top end of the base is fixedly arranged on the top surface of the base, a top supporting plate is fixedly arranged at the top end of the supporting plate, a reciprocating push rod assembly is fixedly arranged at the top end of the top supporting plate, a lifting push rod extends downwards from the reciprocating push rod assembly, a workbench is fixedly arranged at the bottom end of the lifting push rod, a raised breaking knife is fixedly arranged on the left side of the bottom end surface of the workbench, a corner guillotine is fixedly arranged on the right side of the bottom end surface of the workbench, and a multi-order bending block is arranged at the middle position of the corner guillotine and the guillotine;
the top end of the base is fixedly provided with a bottom forming table, the top end face of the bottom forming table is provided with a plate sliding groove, the plate sliding groove is communicated with the left side and the right side of the top end face of the bottom forming table, and the middle part of the bottom face of the plate sliding groove is provided with a forming cavity;
the base top fixed mounting has panel feeding mechanism, and panel feeding mechanism sets up in the right side on end forming table top on the base top, and panel feeding mechanism carries panel intermittent type nature at end forming table top surface.
As a preferred technical scheme of the invention, the plate feeding mechanism comprises a first shifting wheel, a first supporting leg is vertically fixed on the top surface of the base, a first sliding frame is fixedly installed at the top end of the first supporting leg, a first sliding rod is connected onto the first sliding frame in a sliding manner, a plate clamping jaw is fixedly installed at the top end of the left side of the first sliding rod, and a plate is clamped on the plate clamping jaw;
the bottom surface of the first sliding rod is provided with a rack, the top surface of the base is provided with a rotating meshing gear, the front end surface of the meshing gear is fixedly provided with a first grooved wheel, the top surface of the base close to the periphery of the first grooved wheel is provided with a first thumb wheel, the first thumb wheel is provided with a motor for driving rotation, and the motor is fixedly arranged on the top surface of the base.
As a preferable technical scheme of the present invention, the reciprocating push rod assembly includes a motor housing fixedly mounted on the top surface of the top support plate, a third motor is fixedly mounted inside the motor housing, a third transmission belt is mounted on the third motor, a third incomplete gear is fixedly mounted inside the motor housing, the third motor drives the third incomplete gear to rotate through the third transmission belt, the lifting push rod is connected to the bottom surface of the motor housing in a lifting and sliding manner, a rack is disposed on one side of the lifting push rod, the rack on one side of the lifting push rod is engaged with the third incomplete gear, and a third support spring is disposed on one side of the lifting push rod.
As a preferred technical scheme of the invention, the top surface of the bottom forming table comprises a forming cavity arranged on the top surface of the bottom forming table, the middle part of the inner wall of the forming cavity is sequentially provided with a first-stage forming step, a second-stage forming step, a third-stage forming step and a forming step column from right to left, the front side wall and the rear side wall of the first-stage forming step, the second-stage forming step, the third-stage forming step and the forming step column which are sequentially arranged from right to left are gradually reduced, the difference between the adjacent first-stage forming step and the second-stage forming step and the difference between the front side wall and the rear side wall of the second-stage forming step and the front side wall of the third-stage forming step are equal, and the forming step column is arranged on the left side of the third-stage forming step.
As a preferred technical scheme of the present invention, the top surface of the forming stepped column is a smooth arc surface, the bottom of the forming stepped column is a smooth curved surface, the left and right sides of the forming stepped column are symmetrically and fixedly provided with a first reciprocating simple intermittent pushing case, the first reciprocating simple intermittent pushing case on each side is provided with a bending plate in the direction of the forming stepped column, and the bending plate corresponds to the surface profile of the forming stepped column.
As a preferred technical scheme of the invention, the first reciprocating simple intermittent pushing case comprises a case shell which is embedded and fixed on the inner wall of the forming cavity, a second motor is fixedly installed inside the case shell, a second transmission belt is installed on the second motor, an incomplete gear is installed on the inner wall of the case shell, the second motor drives the incomplete gear to rotate through the second transmission belt, a reciprocating sliding push plate is connected to the inner wall of the case shell in a sliding manner, a rack is arranged on the surface of the reciprocating sliding push plate, the rack on the surface of the reciprocating sliding push plate is meshed and connected with the incomplete gear, a compression spring is arranged on the other side of the outer surface of the reciprocating sliding push plate, the other end of the reciprocating sliding push plate extends out of the case shell, and a bending plate is fixed at the top end of the reciprocating sliding push plate extending out of the case shell.
As a preferred technical scheme of the invention, the multistage bending blocks are in a convex state at the bottom of the workbench, the surfaces of the multistage bending blocks are provided with profiles matched with the forming cavities, and the bottom surfaces of the multistage bending blocks are provided with profiles matched with the first-stage forming steps, the second-stage forming steps, the third-stage forming steps and the forming step columns.
According to a preferable technical scheme, the corner guillotine is provided with two pieces on the bottom end face of the workbench, the two pieces of corner guillotine are linearly and parallelly distributed on the bottom end face of the workbench, the top end face of the bottom forming table is provided with a guillotine abdicating groove matched with the corner guillotine, and the guillotine abdicating groove is a sunken groove.
Compared with the prior art, the invention at least comprises the following beneficial effects:
according to the invention, the plate is intermittently conveyed, so that the plate is intermittently moved to the top surface of the bottom forming table from right to left and intermittently pauses, the plate is intermittently stamped downwards through the working table in the pausing process below the working table, the plate is subjected to cutting stamping forming, the process steps of cutting and multiple stamping and bending forming after one-time mounting of the plate are realized, the traditional complex operation that multiple machines are used for simultaneously matching and processing is reduced, the plate is conveyed intermittently through the plate feeding mechanism, and the continuous processing without dismounting is realized for the plate by matching with the intermittent stamping of the reciprocating push rod assembly, so that the efficiency of batch bending and forming of the plate by the die is effectively improved.
The plate is bent in multiple stages through the first-stage forming step, the second-stage forming step, the third-stage forming step and the forming step column in the forming cavity of the top surface of the bottom forming table, intermittent feeding is carried out on the plate by matching with a plate feeding mechanism, the plate is moved to the position of one forming step at one time on the top surface of the bottom forming table, and the plate moved to the leftmost side of the top surface of the bottom forming table is cut off by the guillotine and falls into the material collecting box through gate cutting processing of the corner guillotine and the guillotine on the bottom surface of the workbench. The plate which just enters the forming cavity is subjected to gate cutting by the corner guillotine, the corners of the front side and the rear side of the plate which just enters the forming cavity are gated off, and the plate after the gate opening is conveniently subjected to multiple graded bending by the first-stage forming step, the second-stage forming step, the third-stage forming step and the forming step column, so that the plate is finally bent into a cylinder structure.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic diagram of a front view of the multi-orientation positioning and stamping die and the apparatus used therein according to the present invention;
FIG. 2 is a schematic left-view structural diagram of the multi-orientation stamping die and the apparatus used therein according to the present invention;
FIG. 3 is a cross-sectional view of the reciprocating push rod assembly of the present invention;
FIG. 4 is a left side view structural diagram of the plate bent by the bending plates on two sides on the forming step pillar according to the present invention;
FIG. 5 is a schematic left side cross-sectional view of a bending assembly of the present invention;
FIG. 6 is a schematic top view of the top surface of the bottom forming table of the present invention;
FIG. 7 is a schematic view of the bottom surface of the worktable according to the present invention;
FIG. 8 is a schematic structural view of the plate of the present invention after being cut by the corner guillotine;
FIG. 9 is a schematic structural diagram of a finished plate after bending and forming the plate according to the present invention;
in the figure: 1. a base; 2. a support plate; 3. a top support plate; 4. a reciprocating push rod assembly; 401. a third motor; 402. a third belt; 403. a third incomplete gear; 405. a third support spring; 406. a motor housing; 5. a lifting push rod; 6. a work table; 7. corner guillotines; 8. multi-step bending blocks; 9. a material collecting box; 10. a bottom forming table; 1001. a molding cavity; 1002. a plate sliding groove; 1003. a yielding groove; 1004. forming a step at one stage; 1005. forming a step at the second stage; 1007. forming a step column; 1008. forming a step at three stages; 11. a plate feeding mechanism; 1101. a first thumb wheel; 1102. a first sheave; 1103. a first support leg; 1104. a first sliding frame; 1105. a meshing gear; 1106. a first slide lever; 1107. a plate clamping jaw; 13. a positioning pin; 13. an electric motor; 14. bending the assembly; 1401. a first reciprocating simple intermittent pushing case; 1402. bending the plate; 1403. forming a step column; 1404. an incomplete gear; 1405. a reciprocating push rod; 1406. a compression spring; 1407. a housing of the chassis; 1408. a reciprocating sliding push plate; 1409. a second motor; 1410. a second belt; 15. and cutting off the cutter.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further explained below by combining the specific drawings.
It will be understood that when an element is referred to as being "secured to" another element, it can be on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and similar expressions are used herein for illustrative purposes only and do not represent the only embodiments.
Example 1
Please refer to fig. 1-9, which are schematic diagrams illustrating an overall structure of a multi-directional positioning stamping die and an apparatus using the same;
a multi-azimuth positioning stamping die and a using device thereof comprise a base 1, wherein the base 1 is horizontally fixed on the ground, a supporting plate 2 standing upright at the top end of the base 1 is fixedly arranged on the top surface of the base 1, a top supporting plate 3 is fixedly arranged at the top end of the supporting plate 2, a reciprocating push rod assembly 4 is fixedly arranged at the top end of the top supporting plate 3, a lifting push rod 5 extends downwards from the reciprocating push rod assembly 4, a workbench 6 is fixedly arranged at the bottom end of the lifting push rod 5, a convex guillotine 15 is fixedly arranged at the left side of the bottom end surface of the workbench 6, a corner guillotine 7 is fixedly arranged at the right side of the bottom end surface of the workbench 6, a multi-order bending block 8 is arranged at the middle position of the corner guillotine 7 and the guillotine 15, the multi-order bending block 8 is in a convex state on the bottom end surface of the workbench 6, and the bottom surface of the multi-step bending block 8 is provided with a surface profile matched with the first-stage forming step 1004, the second-stage forming step 1005, the third-stage forming step 1008 and the forming step column 1007.
The top end of the base 1 is fixedly provided with a bottom forming table 10, the top end surface of the bottom forming table 10 is provided with a plate sliding groove 1002, the plate sliding groove 1002 is communicated with the left side and the right side of the top end surface of the bottom forming table 10, and the middle part of the bottom surface of the plate sliding groove 1002 is provided with a forming cavity 1001;
wherein, the panel groove 1002 that slides in the panel groove 1002 at bottom moulding platform 10 top, slides through panel groove 1002 that slides and makes panel carry to slide more steady, also is convenient for fix a position the panel of removal in-process, improves the blanking and bends accurate nature.
The top end of the base 1 is fixedly provided with a plate feeding mechanism 11, the plate feeding mechanism 11 is arranged on the right side of the top end of the bottom forming table 10 at the top end of the base 1, and the plate feeding mechanism 11 intermittently conveys plates on the top surface of the bottom forming table 10.
According to the invention, the plate feeding mechanism 11 comprises a first dial wheel 1101, a first supporting leg 1103 is vertically fixed on the top surface of a base 1, a first sliding frame 1104 is fixedly installed at the top end of the first supporting leg 1103, a first sliding rod 1106 is connected to the first sliding frame 1104 in a sliding manner, a plate clamping jaw 1107 is fixedly installed at the top end of the left side of the first sliding rod 1106, and a plate is clamped on the plate clamping jaw 1107;
in the invention, a rack is arranged on the bottom surface of a first sliding rod 1106, a rotary meshing gear 1105 is arranged on the top surface of a base 1, a first grooved wheel 1102 is fixedly arranged on the front end surface of the meshing gear 1105, a first thumb wheel 1101 is arranged on the top surface of the base 1 close to the periphery of the first grooved wheel 1102, a motor 13 is arranged on the first thumb wheel 1101 and is driven to rotate, and the motor 13 is fixedly arranged on the top surface of the base 1.
The plate feeding mechanism 11 is engaged with the first pulley 1101 through the first grooved pulley 1102, so that the plate clamping jaw 1107 pushes the plate to intermittently move in the plate sliding groove 1002 on the top surface of the bottom forming table 10.
According to the invention, the reciprocating push rod assembly 4 comprises a motor shell 406 fixedly arranged on the top surface of the top support plate 3, a third motor 401 is fixedly arranged in the motor shell 406, a third transmission belt 402 is arranged on the third motor 401, a third incomplete gear 403 is fixedly arranged in the motor shell 406, the third motor 401 drives the third incomplete gear 403 to rotate through the third transmission belt 402, the lifting push rod 5 is connected to the bottom surface of the motor shell 406 in a lifting and sliding manner, a rack is arranged on one side of the lifting push rod 5, the rack on one side of the lifting push rod 5 is meshed with the third incomplete gear 403, and a third support spring 405 is arranged on one side of the lifting push rod 5.
The reciprocating push rod assembly 4 of the present invention is driven to rotate by the third motor 401, so that the third incomplete gear 403 rotates, and the lifting push rod 5 is pushed to fall downwards to perform punching by the rotation of the third incomplete gear 403, wherein the lifting push rod 5 is normally in a lifted state in the motor housing 406 by the action of the third supporting spring 405, and the lifting push rod 5 is quickly lifted upwards and hovered after being pressed downwards by the cooperation of the rotation of the third incomplete gear 403 and the third supporting spring 405, and intermittent downward punching is realized.
The plate feeding mechanism 11 is used for driving the plate feeding mechanism to enable the plate to intermittently move in the plate sliding groove 1002 on the top surface of the bottom forming table 10, and when the plate stops in the plate sliding groove 1002 on the top surface of the bottom forming table 10, the reciprocating push rod assembly 4 drives the workbench 6 to descend downwards to be matched with the multi-stage bending blocks 8 and the forming cavity 1001 on the top surface of the bottom forming table 10 for punch forming.
In the invention, the top surface of the bottom forming table 10 comprises a forming cavity 1001 arranged on the top surface of the bottom forming table 10, a first-stage forming step 1004, a second-stage forming step 1005, a third-stage forming step 1008 and a forming step column 1007 are sequentially arranged in the middle of the inner wall of the forming cavity 1001 from right to left, the front side wall and the rear side wall of the first-stage forming step 1004, the second-stage forming step 1005, the third-stage forming step 1008 and the forming step column 1007 which are sequentially arranged from right to left are gradually reduced, the difference between the adjacent first-stage forming step 1004 and the second-stage forming step 1005 is equal to the difference between the front side wall and the rear side wall of the second-stage forming step 1005 and the front side wall and the rear side wall of the third-stage forming step 1008 are equal, and the forming step column 1007 is arranged on the left side of the third-stage forming step 1008.
In the invention, the top surface of the forming step pillar 1007 is set to be a smooth arc surface, the bottom of the forming step pillar 1007 is set to be a smooth curved surface, the left side and the right side of the forming step pillar 1007 are symmetrically and fixedly provided with a first reciprocating simple intermittent pushing case 1401, the first reciprocating simple intermittent pushing case 1401 at each side is provided with a bending plate 1402 towards the forming step pillar 1007, and the bending plate 1402 corresponds to the surface profile of the forming step pillar 1007.
In the invention, a first reciprocating simple pushing case 1401 comprises a case shell 1407 embedded and fixed on the inner wall of a forming cavity 1001, a second motor 1409 is fixedly arranged in the case shell 1407, a second driving belt 1410 is arranged on the second motor 1409, an incomplete gear 1404 is arranged on the inner wall of the case shell 1407, the second motor 1409 drives the incomplete gear 1404 to rotate through the second driving belt 1410, a reciprocating sliding push plate 1408 is connected on the inner wall of the case shell 1407 in a sliding way, a rack is arranged on the surface of the reciprocating sliding push plate 1408, the rack on the surface of the reciprocating sliding push plate 1408 is meshed and connected with the incomplete gear 1404, a compression spring 1406 is arranged on the other side of the outer surface of the reciprocating sliding push plate 1408, the other end of the reciprocating sliding push plate 1408 extends towards the outside of the case shell 1407, and a bending plate 1402 is fixed on the top end of the reciprocating sliding push plate 1408 extending towards the outside of the case shell 1407.
In the invention, the multistage bending block 8 is in a convex state on the bottom surface of the workbench 6, the surface of the multistage bending block 8 is provided with a contour matched with the molding cavity 1001, and the bottom surface of the multistage bending block 8 is provided with a contour matched with the first-stage molding step 1004, the second-stage molding step 1005, the third-stage molding step 1008 and the molding step column 1007.
In the invention, two corner guillotines 7 are arranged on the bottom end face of the workbench 6, the two corner guillotines 7 are linearly and parallelly distributed on the bottom end face of the workbench 6, the top end face of the bottom forming table 10 is provided with a switch blade receding groove 1009 matched with the corner guillotine 7, and the switch blade receding groove 1009 is a sunken sinking groove.
Wherein, the invention intermittently moves the sheet material in the sheet material sliding groove 1002, when the sheet material stops after moving in the sheet material sliding groove 1002 on the top surface of the bottom forming table 10, the working table 6 descends to punch and form the plate staying in the plate sliding groove 1002 on the top surface of the bottom forming table 10, through the matching of the multi-step bending blocks 8 on the bottom surface of the workbench 6 and the first-stage forming step 1004, the second-stage forming step 1005, the forming step column 1007 and the third-stage forming step 1008 in the forming cavity 1001 on the top surface of the bottom forming table 10, bending, blanking and forming the plates in the plate sliding grooves 1002, intermittently feeding the plates in the plate sliding grooves 1002 by matching with a plate feeding mechanism 11, moving the plates at the position of one forming step at a time on the top surface of the bottom forming table, and the plate which is moved to the leftmost side of the top surface of the bottom forming table is cut off by the guillotine 15 and falls into the material collecting box 9 through the gate cutting processing of the corner guillotine 7 and the guillotine 15 on the bottom surface of the workbench 6. The plate which just enters the forming cavity is cut by the corner guillotine 7, the front and rear corners of the plate which just enters the forming cavity are cut, and the plate which is cut by the corner guillotine is conveniently bent by the first-stage forming step 1004, the second-stage forming step 1005, the forming step pillar 1007 and the third-stage forming step 1008 in a grading manner for a plurality of times, so that the plate is finally bent into a cylindrical structure.
The bending assemblies 14 are symmetrically arranged on the front side and the rear side of the forming stepped column 1007, when a plate intermittently moves in the plate sliding groove 1002 and stops moving after moving in the plate sliding groove 1002 on the top surface of the bottom forming table 10, the workbench 6 descends to perform punch forming on the plate staying in the plate sliding groove 1002 on the top surface of the bottom forming table 10, the bending plates 1402 of the bending assemblies 14 on the two sides press the plate, and the lower portion of the plate is attached and formed along the surface of the forming stepped column 1007, so that the required shape is obtained.
The bending assembly 14 disclosed by the invention is matched with the reciprocating push rod group 4 and the plate feeding mechanism 11, so that the plate can be cut and punched.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The multi-azimuth positioning stamping die using equipment is characterized by comprising a base, wherein the base is horizontally fixed on the ground, a supporting plate standing upright at the top end of the base is fixedly arranged on the top surface of the base, a top supporting plate is fixedly arranged at the top end of the supporting plate, a reciprocating push rod assembly is fixedly arranged at the top end of the top supporting plate, a lifting push rod extends downwards from the reciprocating push rod assembly, a workbench is fixedly arranged at the bottom end of the lifting push rod, a raised guillotine is fixedly arranged on the left side of the bottom end surface of the workbench, a corner guillotine is fixedly arranged on the right side of the bottom end surface of the workbench, and a multi-order bending block is arranged in the middle position of the corner guillotine and the guillotine;
the top end of the base is fixedly provided with a main bottom forming table, the top end face of the bottom forming table is provided with a plate sliding groove, the plate sliding groove is communicated with the left side and the right side of the top end face of the bottom forming table, and the middle part of the bottom face of the plate sliding groove is provided with a forming cavity;
the base top fixed mounting has panel feeding mechanism, and panel feeding mechanism sets up in the right side on end forming table top on the base top, and panel feeding mechanism carries panel intermittent type nature at end forming table top surface.
2. The multi-orientation stamping die using apparatus as claimed in claim 1, wherein: the plate feeding mechanism comprises a first shifting wheel, the first supporting leg is vertically fixed on the top surface of the base, a first sliding frame is fixedly mounted at the top end of the first supporting leg, a first sliding rod is connected onto the first sliding frame in a sliding mode, a plate clamping jaw is fixedly mounted at the top end of the left side of the first sliding rod, and a plate is clamped on the plate clamping jaw;
the bottom surface of the first sliding rod is provided with a rack, the top surface of the base is provided with a rotating meshing gear, the front end surface of the meshing gear is fixedly provided with a first grooved wheel, the top surface of the base close to the periphery of the first grooved wheel is provided with a first thumb wheel, the first thumb wheel is provided with a motor for driving rotation, and the motor is fixedly arranged on the top surface of the base.
3. The multi-orientation stamping die using apparatus as claimed in claim 1, wherein: reciprocating rod subassembly includes reciprocating rod subassembly and includes the motor casing of fixed mounting in top backup pad top surface, the inside fixed mounting of motor casing has the third motor, install the third drive belt on the third motor, the inside fixed mounting of motor casing has the incomplete gear of third, the third motor passes through the incomplete gear of third drive belt drive third rotatory, lifting rod goes up and down sliding connection in motor casing bottom surface, lifting rod's wherein one side is equipped with the rack, lifting rod wherein the rack and the incomplete gear engagement of third of one side, one of them side of lifting rod is provided with third supporting spring.
4. The utility model provides a diversified positioning stamping die which characterized in that: the multi-azimuth positioning stamping die is installed in the multi-azimuth positioning stamping die using equipment as claimed in any one of claims 1 to 3, and comprises a forming cavity arranged on the top surface of a bottom forming table, wherein the middle part of the inner wall of the forming cavity is sequentially provided with a first-stage forming step, a second-stage forming step, a third-stage forming step and a forming step column from right to left, the front side wall and the rear side wall of the first-stage forming step, the second-stage forming step, the third-stage forming step and the forming step column which are sequentially arranged from right to left are gradually reduced, the difference between the front side wall and the rear side wall of the adjacent first-stage forming step and the second-stage forming step and the difference between the front side wall and the rear side wall of the second-stage forming step are equal, and the forming step column is arranged on the left side of the third-stage forming step.
5. The multi-orientation stamping die of claim 4, wherein: the top surface of the forming step column is set to be a smooth arc-shaped surface, the bottom of the forming step column is set to be a smooth curved surface, first reciprocating simple intermittent pushing machine boxes are symmetrically and fixedly arranged on the left side and the right side of the forming step column, a bending plate is installed on each first reciprocating simple intermittent pushing machine box in the direction of the forming step column, and the bending plate corresponds to the surface profile of the forming step column.
6. The multi-orientation stamping die of claim 5, wherein: first reciprocal letter is passed machine case intermittently and is fixed in the casing of the forming chamber inner wall including the embedding, the inside fixed mounting of casing has the second motor, install the second drive belt on the second motor, incomplete gear is installed to casing inner wall, the second motor passes through the incomplete gear of second drive belt drive and rotates, casing inner wall sliding connection of casing has reciprocal push pedal that slides, reciprocal push pedal surface that slides is provided with the rack, the rack on reciprocal push pedal surface that slides is connected with incomplete gear engagement, the surface opposite side of reciprocal push pedal that slides is provided with compression spring, the other end of reciprocal push pedal that slides stretches out to casing outside, stretches out to casing outside reciprocal push pedal top fixed bending plate that slides.
7. The multi-orientation stamping die of claim 1, wherein: the multistage piece of bending is protruding state at the workstation bottom, multistage piece surface of bending is provided with the profile with shaping chamber matched with, just multistage piece bottom surface of bending is provided with the profile with one-level shaping step, second grade shaping step, tertiary shaping step and shaping step post matched with.
8. The multi-orientation stamping die of claim 1, wherein: the corner guillotine is equipped with two at the workstation bottom end face altogether, two the corner guillotine is sharp parallel distribution at the workstation bottom end face, end forming table top end face is seted up and is stepped down the groove with corner guillotine matched with plug-in strip, the plug-in strip groove of stepping down is sunken heavy groove.
CN202111565877.1A 2021-12-20 2021-12-20 Multidirectional positioning stamping die and using equipment thereof Active CN114260367B (en)

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CN116652028A (en) * 2023-05-11 2023-08-29 昆山施宝得精密模具有限公司 A continuous multi-mode stamping die
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