CN215143902U - Multifunctional modular aluminum profile stamping line - Google Patents

Multifunctional modular aluminum profile stamping line Download PDF

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Publication number
CN215143902U
CN215143902U CN202120296319.9U CN202120296319U CN215143902U CN 215143902 U CN215143902 U CN 215143902U CN 202120296319 U CN202120296319 U CN 202120296319U CN 215143902 U CN215143902 U CN 215143902U
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China
Prior art keywords
punching press
ejection
positioning
compact
section
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CN202120296319.9U
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Chinese (zh)
Inventor
屠世顺
蔡军杰
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Xingsanxing Cloud Technology Co ltd
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Xingsan Xingyun Technology Co Ltd
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Abstract

The utility model belongs to the technical field of the punching press, especially, relate to a multi-functional modularization aluminium alloy press line. The utility model discloses degree of automation is low among the prior art, and production efficiency remains the problem of improvement, provides a multi-functional modularization aluminium alloy press line, including the punching press lathe, be equipped with lower bolster and cope match-plate pattern on the punching press lathe, the cope match-plate pattern is located the top of lower bolster, have the punching press space that is used for holding the punching press material in the lower bolster, still carry the feed mechanism to the punching press space including being used for with the punching press material, feed mechanism is located one side of punching press lathe, at least one side in punching press space is equipped with ejection of compact subassembly, removes ejection of compact face that ejection of compact subassembly can be on the ejection of compact subassembly and removes to the top in punching press space by the below in punching press space. The utility model discloses utilize feed mechanism to realize automatic feeding, after the punching press of punching press lathe, utilize ejection of compact subassembly to realize automatic unloading, degree of automation is high to production efficiency has been improved.

Description

Multifunctional modular aluminum profile stamping line
Technical Field
The utility model belongs to the technical field of the punching press, especially, relate to a multi-functional modularization aluminium alloy press line.
Background
At present, a stamping die is a process equipment for processing materials into workpieces or semi-finished products in stamping processing, and is a main process equipment for industrial production. The stamping die can be used for producing parts and components by adopting rolled steel plates or steel belts which are produced in large quantities in a metallurgical plant as blanks, and heating is not needed in production, so that the stamping die has the advantages of high production efficiency, good quality, light weight and low cost. Stamping die among the prior art mostly adopts manual unloading of going up, and degree of automation is low, and production efficiency remains to be improved.
For example, chinese utility model patent discloses a stamping die [ application number: 201721207513.5], the utility model comprises: the material conveying table is used for bearing the material strips, a pressing station is arranged on the material conveying table, and the material conveying table is further used for conveying the material strips towards the pressing station; the stamping module is used for entering or leaving the pressing station; the stamping die further comprises: the automatic control detection device is electrically connected with the stamping module and is used for being triggered by the material strip when the part of the material strip to be stamped is completely conveyed into the stamping station; the automatic control detection device is further used for starting the stamping module after being triggered by the material strips, and the stamping module is further used for entering the pressing station after being started, pressing the material strip part currently conveyed to the pressing station and cutting the material strips.
The utility model discloses a patent has and makes the accurate punching press of stamping die break the material strip, can improve production quality and production efficiency's advantage, but it still does not solve above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem, a multi-functional modularization aluminium alloy press line that degree of automation is high is provided.
In order to achieve the above purpose, the utility model adopts the following technical proposal:
the utility model provides a multi-functional modularization aluminium alloy press line, includes the punching press lathe, be equipped with lower bolster and cope match-plate pattern on the punching press lathe, the cope match-plate pattern is located the top of lower bolster, have the punching press space that is used for holding the punching press material in the lower bolster, still including being used for carrying the feed mechanism to the punching press space with the punching press material, feed mechanism is located one side of punching press lathe, at least one side in punching press space is equipped with ejection of compact subassembly, and the discharge surface that removes ejection of compact subassembly can be on the ejection of compact subassembly removes to the top in punching press space by the below in punching press space, feed mechanism's upper surface is less than the lower surface in punching press space, or feed mechanism's upper surface flushes lower surface mutually with the lower surface in punching press space.
In foretell multi-functional modularization aluminium alloy press line, ejection of compact subassembly includes the discharge bar and the driver of being connected with the discharge bar drive, the discharge surface is located the discharge bar, and the discharge bar is located one side in punching press space, driver drive discharge bar can make the discharge surface remove to the top in punching press space by the below in punching press space.
In foretell multi-functional modularization aluminium alloy press line, the discharge bar is including fixed connection's drive section, linkage segment, ejection of compact section and the section of unloading in proper order, the driver is connected with the drive section drive, the discharge surface is located the upper surface of ejection of compact section, the discharge bar rotates through articulated locus and lower bolster to be connected, the articulated locus is located between ejection of compact section and the section of unloading and rotates the discharge bar along articulated locus and can make the section of unloading slope downwards.
In foretell multi-functional modularization aluminium alloy press line, be equipped with the subtract matter through-hole of at least one link up linkage segment both sides on the linkage segment, be equipped with the slot hole groove of link up drive section both sides on the drive section, the tip of driver actuating lever is located the relative slip along the slot hole groove of the driver emergence of slot hole inslot drive section relatively.
In foretell multi-functional modularization aluminium alloy press line, still be equipped with the lower mould on the lower bolster and insert, the lower mould is inserted and can be dismantled with the lower bolster and be connected, one side that the lower mould was inserted still is equipped with the slip guide subassembly, the length direction of slip guide subassembly along the lower bolster extends, the one end that the lower mould was inserted is connected on the slip guide subassembly and the lower mould is inserted and is in when dismantling the state with the lower bolster, and the lower mould is inserted and can take place the slip of relative lower bolster along the slip guide subassembly.
In the multifunctional modular aluminum profile stamping line, the sliding guide assembly comprises a mounting table positioned on one side of the lower die insert, a guide piece is fixedly connected to the mounting table, the guide piece extends along the length direction of the lower die plate, the sliding piece is connected with the guide piece in a sliding mode, and the sliding piece is fixedly connected to the lower die insert.
In foretell multi-functional modularization aluminium alloy press line, the guide includes both ends fixed connection guide bar on the mount table, the slider establish on the guide bar and with guide bar sliding connection's sliding sleeve including the cover, the last fixedly connected with connecting plate of sliding sleeve, connecting plate fixed connection is served at the lower mould one of inserting, still be equipped with the screw rod mounting hole on the lower mould is inserted, the connection can be dismantled in the screw rod mounting hole to the screw rod, the screw rod mounting hole is located the lower mould respectively with the connecting plate and inserts relative both sides, ejection of compact subassembly one end is connected on the connecting plate, and the other end is connected on the lower mould is inserted.
In foretell multi-functional modularization aluminium alloy press line, be equipped with the reference column on the lower bolster, reference column one end protrusion lower bolster surface, have the location passageway in the lower mould insert, location passageway one end link up the lower mould side of inserting, and the other end communicates the reference column surface, still includes the locating part, the one end of locating part runs through the location passageway and presses and establish on the reference column.
In the multifunctional modular aluminum profile stamping line, the limiting part comprises a limiting bolt, the surface of the limiting bolt is provided with an external thread, the surface of the positioning channel is provided with an internal thread, the limiting bolt is in threaded connection with the positioning channel, one end of the limiting bolt can be pressed on the positioning column by rotating the limiting bolt, a positioning groove which is sunken towards the inside of the positioning column is arranged on the surface of one side of the positioning column, which is close to the positioning channel, the positioning groove is internally provided with a positioning groove, one end of the limiting bolt can be pressed in the positioning groove by rotating the limiting bolt, the surface of the positioning groove is provided with an internal thread, and the end part of the limiting bolt is in threaded connection with the positioning groove; or the end part of the limiting bolt is in interference fit with the positioning groove.
In foretell multi-functional modularization aluminium alloy press line, still be equipped with the prepositioning hole on the lower mould is inserted, the one end that the lower mould side of inserting is kept away from to the location passageway communicates with the prepositioning hole, the cross-sectional area of reference column is less than the cross-sectional area of prepositioning hole, and the one end of reference column is located the prepositioning downthehole, the prepositioning hole includes three at least sides that are sharp form, and two adjacent sides are connected through being curved arc limit, and removal lower mould is inserted and can be made reference column surface and arc limit laminate mutually, the diameter on arc limit equals with the diameter of reference column, and the centre of a circle on at least one arc limit is located the axis line of location passageway.
Compared with the prior art, the utility model has the advantages of:
1. the utility model discloses utilize feed mechanism to realize automatic feeding, after the punching press of punching press lathe, utilize ejection of compact subassembly to realize automatic unloading, degree of automation is high to production efficiency has been improved.
2. The utility model discloses an ejection of compact subassembly can not cause interference processing to the punching press material at the punching press in-process, has avoided the risk that punching press material surface was crushed, has guaranteed product quality.
3. The utility model discloses insert by detachable lower bolster and lower mould and constitute, when needing adjustment length in the face of the punching press demand of difference, only need insert the lower mould and dismantle the position of installing on the lower bolster with the adjustment, and need not to wholly dismantle lower bolster or wholly change, reduced the mould cost, improved production efficiency.
4. The utility model discloses a slip when sliding sleeve realizes the lower mould and inserts the adjustment to increase moment through the screw rod, use manpower sparingly, make the position that single-operator adjustment lower mould was inserted become possible.
5. The utility model discloses a locating part gets into and cooperatees the installation location that realizes the mould with the reference column from the mould side, so do not receive the limited current situation restriction in stamping die upper and lower space, and die assembly is more convenient, the high accuracy location of realization mould that can be simple and convenient.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a right side view of the present invention;
FIG. 3 is an enlarged view at A in FIG. 2;
FIG. 4 is a schematic view of the discharge bar construction;
FIG. 5 is a front view of the lower die insert assembled to the lower platen;
FIG. 6 is a schematic view of the lower die insert;
FIG. 7 is a schematic view of the internal structure of the lower die insert assembled to the lower die plate;
FIG. 8 is a top view of a portion of the structure of the present invention;
FIG. 9 is a front view of a portion of the structure of the present invention;
fig. 10 is a left side view of a part of the structure of the present invention;
in the figure: the stamping die comprises a lower die plate 1, a lower die insert 2, a limiting part 3, a discharging component 4, an upper die plate 5, a positioning column 11, a positioning groove 12, a stamping space 13, a die scale 14, a positioning channel 21, a pre-positioning hole 22, a side 23, an arc edge 24, a screw mounting hole 25, a screw 26, a limiting bolt 31, a discharging surface 41, a discharging rod 42, a driver 43, a sliding guide component 100, a mounting table 101, a guide piece 102, a sliding piece 103, a guide rod 104, a sliding sleeve 105, a connecting plate 106, a stamping machine tool 200, a stamping material 300, a driving section 421, a connecting section 422, a discharging section 423, a discharging section 424, a hinge joint point 425, a quality reduction through hole 426 and a long hole groove 427.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
With reference to fig. 1-3, a multi-functional modularization aluminium alloy press line, with reference to fig. 1-3, including punching press lathe 200, be equipped with lower bolster 1 and cope match-plate pattern 5 on the punching press lathe 200, cope match-plate pattern 5 is located the top of lower bolster 1, have the punching press space 13 that is used for holding punching press material 300 in the lower bolster 1, still including being used for carrying punching press material 300 to the feed mechanism 400 of punching press space 13, feed mechanism 400 is located one side of punching press lathe 200, punching press space 13 at least one side is equipped with ejection of compact subassembly 4, and removal ejection of compact subassembly 4 can ejection of compact face 41 on the ejection of compact subassembly 4 be removed to the top of punching press space 13 by the below of punching press space 13.
The utility model discloses, during the use, carry punching press material 300 to punching press space 13 in through punching press lathe 200, punching press lathe 200 drive cope match-plate pattern 5 accomplishes the punching press to punching press material 300, upward movement ejection of compact subassembly 4 for ejection of compact face 41 is removed to the top in punching press space 13 by the below in punching press space 13, and at this in-process, ejection of compact face 41 is outside punching press material 300 lifting to punching press space 13, in order to accomplish the ejection of compact. The event the utility model discloses utilize feed mechanism 400 to realize automatic feeding, after the punching press lathe 200 punching presses, utilize ejection of compact subassembly 4 to realize automatic unloading, degree of automation is high to production efficiency has been improved.
Preferably, the discharging assembly 4 is provided in parallel with a plurality of discharging assemblies. When the material is discharged, the discharging components 4 can simultaneously support one stamping material 300 to realize discharging, and the stability of the stamping material 300 in the discharging process is ensured.
The prior art also has a mode of discharging by using a spring thimble. However, the stamping material of the spring thimble of the mode is already floated on the surface of the spring thimble when stamping is not started, that is, the spring thimble is always in a state of being in contact with the stamping material in the stamping process, so that the stamping process of the stamping material is interference processing, distortion cannot be accurately positioned, the surface of the stamping material can be crushed, and ejection cannot be performed with probability. The event the utility model discloses a set up ejection of compact subassembly 4 in punching press space 13 side, and the stamping process goes out the discharge surface 41 and reduces to punching press space 13 below in order to avoid this problem.
As shown in fig. 3, the discharging assembly 4 includes a discharging rod 42 and a driver 43 in driving connection with the discharging rod 42, the discharging surface 41 is located on the discharging rod 42, the discharging rod 42 is located at one side of the stamping space 13, and the driver 43 drives the discharging rod 42 to move the discharging surface 41 from below the stamping space 13 to above the stamping space 13.
As shown in fig. 5-7, the lower die plate 1 is further provided with a lower die insert 2, the lower die insert 2 is detachably connected to the lower die plate 1, one side of the lower die insert 2 is further provided with a sliding guide assembly 100, the sliding guide assembly 100 extends along the length direction of the lower die plate 1, one end of the lower die insert 2 is connected to the sliding guide assembly 100, and when the lower die insert 2 and the lower die plate 1 are in a detachable state, the lower die insert 2 can slide relative to the lower die plate 1 along the sliding guide assembly 100.
The utility model discloses, during the use, the lower mould is inserted 2 and is installed to lower bolster 1 on, and the punching press is realized to the cooperation cope match-plate pattern. When the length needs to be changed, the lower die insert 2 is dismounted and slid along the slide guide assembly 100 and then remounted to another position of the lower die plate 1, so that the change of the punching length is realized. The event the utility model discloses insert 2 by detachable lower bolster 1 and lower mould and constitute, in the face of different punching press demands and when needing adjustment length, only need insert 2 with the lower mould and dismantle the position of installing on lower bolster 1 with the adjustment, and need not to wholly dismantle lower bolster 1 or wholly change, reduced the mould cost, improved production efficiency.
Specifically, the sliding guide assembly 100 comprises a mounting table 101 located at one side of the lower die insert 2, a guide 102 is fixedly connected to the mounting table 101, the guide 102 extends along the length direction of the lower die plate 1, a sliding part 103 is slidably connected with the guide 102, and the sliding part 103 is fixedly connected to the lower die insert 2.
The specific structure of the sliding member 103 and the guiding member 102 is not limited in the present invention, as long as they can cooperate with each other to realize guiding sliding. For example, the guide member 102 includes a guide rail fixedly connected to the mounting table 101, and the sliding member 103 includes a slider slidably connected to the guide rail.
Preferably, however, the guide member 102 includes a guide rod 104 fixedly connected to the mounting table 101 at two ends, the sliding member 103 includes a sliding sleeve 105 sleeved on the guide rod 104 and slidably connected to the guide rod 104, a connecting plate 106 is fixedly connected to the sliding sleeve 105, and the connecting plate 106 is fixedly connected to one end of the lower die insert 2.
During sliding, a force is applied to one end of the lower die insert 2 away from the connecting plate 106, so that the lower die insert 2 and the connecting plate 106 rotate around the sliding sleeve 105 to form a state shown in fig. 3, and the lower die insert 2 is pushed to slide the sliding sleeve 105 along the guide rod 104.
As shown in fig. 7, the lower die insert 2 is further provided with a screw mounting hole 25, and a screw 26 is detachably connected in the screw mounting hole 25. The utility model discloses a slip when sliding sleeve 105 realizes that 2 adjustments are inserted to the lower mould to increase moment through screw rod 26, use manpower sparingly, make the position that single-man operation adjustment lower mould was inserted possible.
Preferably, the screw mounting hole 25 and the connecting plate 106 are respectively located on two opposite sides of the lower die insert 2. This ensures that the lower die insert 2 is easily lifted.
Preferably, at least two screw mounting holes 25 are provided, and the axial lines of each screw mounting hole 25 are parallel to each other. The screws 26 connected to the screw mounting holes 25 are thus ensured to be parallel to each other, which is more convenient for the user to apply force.
As shown in fig. 5, the lower template 1 is provided with positioning pillars 11, and one ends of the positioning pillars 11 protrude out of the surface of the lower template 1 and are embedded in the lower die insert 2. The positioning column 11 can realize positioning and limiting before the lower die insert 2 is installed on the lower die plate 1.
As shown in fig. 5, a mold scale 14 is provided on one side of the lower template 1. The die scale 14 is convenient for a user to judge whether the lower die insert 2 slides to a proper position.
As shown in fig. 5, the lower die plate 1 is connected with the lower die insert 2 through an outer hexagonal screw 27 arranged on the lower die insert 2. The outer hexagonal screw 27 is adopted and matched with a ratchet wrench, so that the disassembly is free from interference.
As shown in fig. 3 and 4, the discharging rod 42 includes a driving section 421, a connecting section 422, a discharging section 423 and a discharging section 424, which are fixedly connected in sequence, the driver 43 is drivingly connected to the driving section 421, the discharging surface 41 is located on the upper surface of the discharging section 423, the discharging rod 42 is rotatably connected to the lower die plate 1 through a hinge joint 425, for example, the hinge joint 425 may be disposed on the lower die insert 2, the hinge joint 425 is located between the discharging section 423 and the discharging section 424, and the discharging section 424 is inclined downward by rotating the discharging rod 42 along the hinge joint 425.
One end of the discharging component 4 is connected to the connecting plate 106, and the other end is connected to the lower die insert 2. I.e. the actuator 43 is connected to the web 106 and the hinge points 425 are connected to the lower die insert 2. The discharging component 4 is integrally connected to the lower die insert 2 and can synchronously slide when the lower die insert 2 slides, so that when the position of the lower die insert 2 is adjusted due to the change of the stamping length, the distance between the discharging surface 41 and the stamping space 13 is a fixed value, namely the position of the discharging component 4 does not need to be adjusted, and the operation is simplified.
Preferably, the connecting section 422 is provided with at least one mass-reducing through hole 426 penetrating through both sides of the connecting section 422. This can reduce the overall weight of the connecting section 422.
As shown in fig. 4, the driving section 421 is provided with a long hole groove 427 penetrating through both sides of the driving section 421, and the end of the driving rod of the driver 43 is located in the long hole groove 427 so that the driving section 421 can slide along the long hole groove 427 relative to the driver 43. Thus, when the driver 43 drives the driving section 421, the driving section 421 can move relatively to the driver 43 along the long hole 427, so as to prevent the hinge joint 425 from being damaged by a large horizontal force.
As shown in fig. 8, a positioning column 11 is arranged on the lower template 1, one end of the positioning column 11 protrudes out of the surface of the lower template 1, a positioning channel 21 is arranged in the lower die insert 2, one end of the positioning channel 21 penetrates through the side surface of the lower die insert 2, the other end of the positioning channel communicates with the surface of the positioning column 11, and the lower die insert further comprises a limiting part 3, wherein one end of the limiting part 3 penetrates through the positioning channel 21 and is pressed on the positioning column 11.
The utility model discloses, during the use, 2 places on lower bolster are inserted to the lower mould, and the position that 2 were inserted to the adjustment lower mould makes the one end of positioning channel 21 communicate reference column 11 surface, and locating part 3 presses through positioning channel 21 to establish on reference column 11 in order to realize the location between 2 that lower bolster 1 and lower mould are inserted. The event the utility model discloses a locating part 3 gets into from the mould side and cooperatees the installation location who realizes the mould with reference column 11, so do not receive the limited current situation restriction in stamping die upper and lower space, and die assembly is more convenient, the high accuracy location of realization mould that can be simple and convenient.
Preferably, the axis of the positioning column 11 is perpendicular to the axis of the limiting member 3. The mutually perpendicular arrangement can make the cooperation between reference column 11 and the locating part 3 more firm stable.
Preferably, the height of the positioning column 11 protruding out of the surface of the lower template 1 is equal to the thickness of the lower die insert 2. After the lower die insert 2 is installed on the lower template 1, the upper end of the positioning column 11 is just flush with the upper surface of the lower die insert 2.
Preferably, a plurality of positioning columns 11 are arranged in parallel, the positioning channels 21 are arranged in one-to-one correspondence with the positioning columns 11, and the positioning channels 21 are parallel to each other. This improves the stability and accuracy of the positioning.
Referring to fig. 8 and 10, the limiting member 3 includes a limiting bolt 31, the surface of the limiting bolt 31 has an external thread, the surface of the positioning channel 21 has an internal thread, the limiting bolt 31 is connected with the positioning channel 21 by a thread, and one end of the limiting bolt 31 is pressed on the positioning column 11 by rotating the limiting bolt 31.
As shown in fig. 10, a positioning groove 12 recessed toward the inside of the positioning column 11 is formed on a side surface of the positioning column 11 close to the positioning channel 21, and one end of the limiting bolt 31 is pressed in the positioning groove 12 by rotating the limiting bolt 31. One end of the limiting bolt 31 can be embedded into the positioning groove 12, so that pressure is provided between the positioning column 11 and the limiting bolt 31, and supporting force along the axial direction of the positioning column 11 is provided, and the combination firmness between the lower template 1 and the lower die insert 2 is ensured.
Specifically, the surface of the positioning groove 12 is provided with internal threads, and the end part of the limiting bolt 31 is in threaded connection with the positioning groove 12; or the end part of the limit bolt 31 is in interference fit with the positioning groove 12.
As shown in fig. 9, the lower die insert 2 is further provided with a pre-positioning hole 22, one end of the positioning channel 21 away from the side surface of the lower die insert 2 is communicated with the pre-positioning hole 22, the cross-sectional area of the positioning column 11 is smaller than that of the pre-positioning hole 22, and one end of the positioning column 11 is located in the pre-positioning hole 22. The pre-positioning hole 22 can play a role of pre-positioning, and the lower die insert 2 generally has a large mass, so that more time is often needed for one-step accurate assembly, which causes inconvenience in assembly. Therefore, the pre-positioning hole 22 with a larger cross section area is arranged, so that the lower die insert 2 can be quickly assembled to the surface of the mounting plate 1, the pre-assembly is completed, the accurate positioning is further carried out, and the difficulty of the assembly positioning is reduced.
Specifically, the pre-positioning hole 22 includes at least three straight side edges 23, two adjacent side edges are connected by an arc-shaped arc edge 24, and the outer surface of the positioning column 11 can be attached to the arc edge 24 by moving the lower die insert 2. The arc edge 24 is arranged, so that a larger contact area is formed between the positioning column 11 and the pre-positioning hole 22, and the positioning stability and accuracy are ensured.
Preferably, the diameter of the arc edge 24 is equal to the diameter of the positioning column 11, and the center of at least one arc edge 24 is located on the axial center line of the positioning channel 21. The included angle between two adjacent side edges 23 is 45-75 degrees. Further preferably, the included angle between two adjacent side edges 23 is 60 degrees.
The utility model discloses a theory of operation is: during the use, install lower mould insert 2 location to the suitable position of lower bolster 1 according to the needs of punching press length on, carry punching press material 300 to punching press space 13 in through punching press lathe 200, punching press lathe 200 drive cope match-plate pattern 5 accomplishes the punching press to punching press material 300, start driver 43 and promote drive section 421 upward movement, drive section 421 drives linkage segment 422, ejection of compact section 423 and unloading section 424 take place to use articulated site 425 as the rotation of center, ejection of compact face 41 on ejection of compact section 423 surface is lifted gradually and is lifted punching press material 300 outside punching press space 13 this moment, unloading section 424 is in the tilt state this moment, punching press material 300 is along unloading section 424 roll-off in order to accomplish the ejection of compact. When the punching length needs to be changed, the outer hexagon screw 27 is screwed, so that the lower die insert 2 and the lower die plate 1 are in a detachable state. The screw 26 is screwed into the screw mounting hole 25, a force is applied to the screw 26, so that the lower die insert 2 and the connecting plate 106 rotate around the sliding sleeve 105 to form a state shown in fig. 10, the screw 26 is pushed to drive the lower die insert 2 and the sliding sleeve 105 to slide along the guide rod 104, the lower die insert 2 is slid to a proper position according to the die scale 14, so that the stamping length is changed, the lower die insert 2 is placed on the surface of the lower template 1 again through rotation, the positioning column 11 is embedded into the lower die insert 2 at this time, and positioning and limiting are realized before the lower die insert 2 is mounted on the lower template 1. The event the utility model discloses utilize feed mechanism 400 to realize automatic feeding, after the punching press lathe 200 punching presses, utilize ejection of compact subassembly 4 to realize automatic unloading, degree of automation is high to production efficiency has been improved.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.
Although the terms of the lower die plate 1, the lower die insert 2, the limiting member 3, the discharging assembly 4, the upper die plate 5, the positioning column 11, the positioning groove 12, the stamping space 13, the die scale 14, the positioning channel 21, the pre-positioning hole 22, the side edge 23, the circular arc edge 24, the screw mounting hole 25, the screw 26, the limiting bolt 31, the discharging surface 41, the discharging rod 42, the driver 43, the sliding guide assembly 100, the mounting table 101, the guide member 102, the sliding member 103, the guide rod 104, the sliding sleeve 105, the connecting plate 106, the stamping machine 200, the stamping material 300, the driving section 421, the connecting section 422, the discharging section 423, the discharging section 424, the hinge joint 425, the reducing through hole 426, the long hole 427, and the like are used more frequently, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention; they are to be construed in a manner that is inconsistent with the spirit of the invention.

Claims (10)

1. The utility model provides a multi-functional modularization aluminium alloy press line, includes punching press lathe (200), be equipped with lower bolster (1) and cope match-plate pattern (5) on punching press lathe (200), cope match-plate pattern (5) are located the top of lower bolster (1), have punching press space (13) that are used for holding punching press material (300) in lower bolster (1), its characterized in that: still including feed mechanism (400) that is used for carrying punching press material (300) to stamping space (13), feed mechanism (400) are located one side of punching press lathe (200), at least one side of stamping space (13) is equipped with ejection of compact subassembly (4), and removal ejection of compact subassembly (4) can ejection of compact face (41) on ejection of compact subassembly (4) be moved to the top of stamping space (13) by the below of stamping space (13), the upper surface of feed mechanism (400) is less than the lower surface of stamping space (13), or the upper surface of feed mechanism (400) flushes with the lower surface of stamping space (13) mutually.
2. The multifunctional modular aluminum profile stamping line of claim 1, wherein: ejection of compact subassembly (4) include discharge bar (42) and driver (43) be connected with discharge bar (42) drive, ejection of compact face (41) are located discharge bar (42), and discharge bar (42) are located one side of punching press space (13), driver (43) drive discharge bar (42) can make discharge face (41) remove to the top of punching press space (13) by the below of punching press space (13).
3. The multifunctional modular aluminum profile stamping line of claim 2, wherein: discharge rod (42) are including drive section (421), linkage segment (422), ejection of compact section (423) and the section of unloading (424) of fixed connection in proper order, driver (43) are connected with drive section (421) drive, ejection of compact face (41) are located the upper surface of ejection of compact section (423), ejection of compact rod (42) are rotated through articulated locus (425) and are connected with lower bolster (1), articulated locus (425) are located between ejection of compact section (423) and the section of unloading (424) and along articulated locus (425) rotate ejection of compact rod (42) and can make section of unloading (424) slope downwards.
4. The multifunctional modular aluminum profile stamping line of claim 3, wherein: the connecting section (422) is provided with at least one mass reduction through hole (426) penetrating through two sides of the connecting section (422), the driving section (421) is provided with a long hole groove (427) penetrating through two sides of the driving section (421), and the end part of the driving rod of the driver (43) is positioned in the long hole groove (427), so that the driving section (421) can slide relative to the driver (43) along the long hole groove (427).
5. The multifunctional modular aluminum profile stamping line of claim 1, wherein: still be equipped with the lower mould on lower bolster (1) and insert (2), the lower mould is inserted (2) and can be dismantled with lower bolster (1) and be connected, one side that lower mould was inserted (2) still is equipped with sliding guide subassembly (100), sliding guide subassembly (100) extend along the length direction of lower bolster (1), the one end that lower mould was inserted (2) is connected on sliding guide subassembly (100) and the lower mould was inserted (2) and is in when dismantling the state with lower bolster (1), and the lower mould was inserted (2) and can be followed sliding guide subassembly (100) and take place the slip of relative lower bolster (1).
6. The multifunctional modular aluminum profile stamping line of claim 5, wherein: the sliding guide assembly (100) comprises an installation table (101) located on one side of the lower die insert (2), a guide piece (102) is fixedly connected to the installation table (101), the guide piece (102) extends along the length direction of the lower template (1), a sliding piece (103) is in sliding connection with the guide piece (102), and the sliding piece (103) is fixedly connected to the lower die insert (2).
7. The multifunctional modular aluminum profile stamping line of claim 6, wherein: guide (102) include guide bar (104) of both ends fixed connection on mount table (101), slider (103) establish on guide bar (104) and with guide bar (104) sliding connection's slip sleeve (105) including the cover, fixedly connected with connecting plate (106) on slip sleeve (105), connecting plate (106) fixed connection is in one of lower mould insert (2) and serves, still be equipped with screw rod mounting hole (25) on lower mould insert (2), connection in screw rod mounting hole (25) can be dismantled in screw rod mounting hole (26), screw rod mounting hole (25) are located the relative both sides of lower mould insert (2) respectively with connecting plate (106), ejection of compact subassembly (4) one end is connected on connecting plate (106), and the other end is connected on lower mould insert (2).
8. The multifunctional modular aluminum profile stamping line of claim 5, wherein: be equipped with reference column (11) on lower bolster (1), reference column (11) one end protrusion lower bolster (1) surface, the lower mould is inserted and is had location passageway (21) in (2), location passageway (21) one end link up the lower mould and insert (2) side, and the other end communicates reference column (11) surface, still includes locating part (3), the one end of locating part (3) runs through location passageway (21) and presses and establish on reference column (11).
9. The multifunctional modular aluminum profile stamping line of claim 8, wherein: the limiting part (3) comprises a limiting bolt (31), an external thread is arranged on the surface of the limiting bolt (31), an internal thread is arranged on the surface of the positioning channel (21), the limiting bolt (31) is in threaded connection with the positioning channel (21), one end of the limiting bolt (31) can be pressed on the positioning column (11) by rotating the limiting bolt (31), a positioning groove (12) which is sunken towards the inside of the positioning column (11) is arranged on the surface of one side, close to the positioning channel (21), of the positioning column (11), one end of the limiting bolt (31) can be pressed in the positioning groove (12) by rotating the limiting bolt (31), an internal thread is arranged on the surface of the positioning groove (12), and the end part of the limiting bolt (31) is in threaded connection with the positioning groove (12); or the end part of the limiting bolt (31) is in interference fit with the positioning groove (12).
10. The multifunctional modular aluminum profile stamping line of claim 8, wherein: the lower die insert (2) is further provided with a pre-positioning hole (22), one end, far away from the side face of the lower die insert (2), of the positioning channel (21) is communicated with the pre-positioning hole (22), the cross sectional area of the positioning column (11) is smaller than that of the pre-positioning hole (22), one end of the positioning column (11) is located in the pre-positioning hole (22), the pre-positioning hole (22) comprises at least three straight side edges (23), every two adjacent side edges are connected through an arc-shaped arc edge (24), the outer surface of the positioning column (11) can be attached to the arc edge (24) by moving the lower die insert (2), the diameter of the arc edge (24) is equal to that of the positioning column (11), and the circle center of at least one arc edge (24) is located on the axis of the positioning channel (21).
CN202120296319.9U 2021-02-02 2021-02-02 Multifunctional modular aluminum profile stamping line Active CN215143902U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120296319.9U CN215143902U (en) 2021-02-02 2021-02-02 Multifunctional modular aluminum profile stamping line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120296319.9U CN215143902U (en) 2021-02-02 2021-02-02 Multifunctional modular aluminum profile stamping line

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Publication Number Publication Date
CN215143902U true CN215143902U (en) 2021-12-14

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Country Link
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Address after: 314415 No. 12 Anren Road, Jiaxing City, Zhejiang Province, Jianshan New District, Haining City

Patentee after: Xingsanxing Cloud Technology Co.,Ltd.

Address before: 314415 No. 12 Anren Road, Jiaxing City, Zhejiang Province, Jianshan New District, Haining City

Patentee before: XINGSAN XINGYUN TECHNOLOGY Co.,Ltd.